Abdulhameed, S., Ratschbacher, L., Jonckheere, R., Gągała, Ł., Enkelmann, E., Käßner, A., et al. (2020). Tajik basin and southwestern Tian Shan, northwestern India‐Asia collision zone: 2. Timing of basin inversion, Tian Shan mountain building, and relation to Pamir‐plateau advance and deep India‐Asia indentation. Tectonics, 39, e2019TC005873.
Allen, M.B., Windley, B.F., Zhang, C., et al. (1993). Evolution of the Turfan Basin, Chinese central Asia. Tectonics, 12(4), 889-896.
Allen, M.B., Vincent, S.J., Wheeler, P.J. (1999). Late cenozoic tectonics of the kepingtage thrust zone: interactions of the tien shan and tarim basin, northwest china. Tectonics, 18(4), 639-654.
Amidon, W.H., Hynek, S.A. (2010). Exhumational history of the north central pamir. Tectonics, 29(5), TC5017, doi:10.1029/2009TC002589.
Arrowsmith, J.R., Pollard, D.D., Rhodes, D.D. (1996). Hillslope development in areas of active tectonics. Journal of Geophysical Research: Solid Earth, 101(B3), 6255-6275.
Arrowsmith, J.R., Strecker, M.R. (1999). Seismotectonic range-front segmentation and mountain-belt growth in the pamir-alai region, kyrgyzstan (india-eurasia collision zone). GSA Bulletin (1999) 111 (11): 1665–1683.
Avouac J.P., Peltzer G. (1993). Active tectonics in southern Xinjiang, China: analysis of terrace riser and normal fault scarp degradation along the Hotan–Qira fault system. Journal of Geophysical Research: Solid Earth 98: 21773– 21807.
Avouac J.P., Tapponnier P., Bai M., You H., Wang G. (1993). Active thrusting and folding along the northern Tien Shan and late Cenozoic rotation of the Tarim relative to Dzungaria and Kazakhstan. Journal of Geophysical Research: Solid Earth 98: 6755– 6804.
Avouac J.P. (1993). Analysis of scarp profiles: evaluation of errors in morphologic dating. Journal of Geophysical Research: Solid Earth 98: 6745– 6754.
Avouac, J.P., Tapponnier, P. (1993). Kinematic model of active deformation in central asia. Geophysical Research Letters, 20(10).
Avouac, J.P., Burov, E.B. (1996). Erosion as a driving mechanism of intracontinental mountain growth. Journal of Geophysical Research Atmospheres, 101(8), 17747-17770.
Bande, A., Sobel, E.R. Mikolaichuk, A., Acosta, V.T. (2017). Talas –fergana fault cenozoic timing of deformation and its relation to pamir indentation. Geological Society London Special Publications, SP427.1.
Bande, A., Radjabov, S., Sobel, E.R., Sim, T. (2015). Cenozoic palaeoenvironmental and tectonic controls on the evolution of the northern Fergana basin. Geological Society of London Special Publications, 135-8.
Bande, A., Sobel, E.R., Mikolaichuk, A., Schmidt, A., Stockli, D.F. (2017). Exhumation history of the western Kyrgyz Tien Shan: Implications for intramontane basin formation, Tectonics, 36, 163–180, doi:10.1002/2016TC004284.
Bazhenov, M.L. , Perroud, H., Chauvin, A., Burtman, V.S., Thomas, J.C. (1994). Paleomagnetism of Cretaceous red beds from Tadzhikistan and Cenozoic deformation due to India-eurasia collision. Earth & Planetary Science Letters, 124(1-4), 1-18.
Bershaw J., Garzione C., Schoenbohm L., Gehrels G., Li T. (2012). Cenozoic evolution of the Pamir plateau based on stratigraphy, zircon provenance, and stable isotopes of foreland basin sediments at Oytag (Wuyitake) in the Tarim Basin (west China). Journal of Asian Earth Sciences, 44, 136-148.
Blayney, T., et al. (2016), Indentation of the Pamirs with respect to the northern margin of Tibet: Constraints from the Tarim basin sedimentary record, Tectonics, 35, 2345–2369, doi:10.1002/2016TC004222.
Blayney, T., Dupont‐Nivet, G., Najman, Y., Proust, J.N., Meijer, N., Roperch, P., et al. (2019). Tectonic evolution of the Pamir recorded in the western Tarim basin (China): Sedimentologic and magnetostratigraphic analyses of the Aertashi section. Tectonics, 38.
Bosboom, R.E., Dupont-Nivet, G., Houben, A., Brinkhuis, H., Villa, G., Mandic, O., et al. (2011). Late eocene sea retreat from the tarim basin (west china) and concomitant asian paleoenvironmental change. Palaeogeography Palaeoclimatology Palaeoecology, 299(3-4), 385-398.
Bosboom, R., Dupont-Nivet, G., Huang, W., Yang, W., Guo Z.J. (2014), Oligocene clockwise rotations along the eastern Pamir: Tectonic and paleogeographic implications, Tectonics, 33, 53–66, doi:10.1002/2013TC003388.
Bosboom, R., Dupont-Nivet, G., Grothe, A., et al. (2014). Timing, cause and impact of the late eocene stepwise sea retreat from the tarim basin (west china). Palaeogeography, Palaeoclimatology, Palaeoecology 403 (2014) 101–118.
Bourgeois, O., Cobbold, P.R., Rouby, D., Thomas, J.C., Shein, V. (1997). Least squares restoration of Tertiary thrust sheets in map view, Tajik depression, central Asia. Journal of Geophysical Research Solid Earth, 102(B12), 27553-27573.
Brookfield, M.E., Hashmat, A. (2001). The geology and petroleum potential of the North Afghan platform and adjacent areas (northern Afghanistan, with parts of southern tTurkmenistan, Uzbekistan and Tajikistan). Earth-Science Reviews, 55(1–2), 41-71.
Brunel, M., Arnaud, N. (1994). Kongur Shan normal fault: Type example of mountain building assisted by extension (Karakoram fault, eastern Pamir). Geology, 22(8), 707-710.
Bufe, A., Paola, C., Burbank, D.W. (2016). Fluvial bevelling of topography controlled by lateral channel mobility and uplift rate. Nature Geoscience, 9(9), 706–710.
Bufe, A., Burbank, D.W., Liu, L., Bookhagen, B., Qin, J., Chen, J., Yang, H. (2017). Variations of lateral bedrock erosion rates control planation of uplifting folds in the foreland of the Tian Shan, NW China. Journal of Geophysical Research: Earth Surface, 122, 2431–2467.
Bufe, A., Bekaert, D.P.S., Hussain, E., Bookhagen, B., Burbank, D.W., Thompson Jobe, J.A., Gan, W. (2017). Temporal changes in rock-uplift rates of folds in the foreland of the Tian Shan and the Pamir from geodetic and geologic data. Geophysical Research Letters, 44.
Burbank, D. Causes of recent Himalayan uplift deduced from deposited patterns in the Ganges basin. Nature 357, 680–683 (1992).
Burchfiel, B.C., Cowan, D.S., Davis, G.A. (1992). Tectonic overview of the Cordilleran orogen in the western United States. Geological Society of America, (2015), 407-14 DOI: 10.1130/dnag-gna-g3.407.
Burchfiel, B.C., Chen, Z., Liu, Y., Royden, L.H. (1995). Tectonics of the longmen shan and adjacent regions, central china. International geology review: vol 37, no 8.
Burchfiel, B.C., Brown, E.T., Qidong, Deng, Xianyue, Feng, Jun, Li, Molnar, P., Jianbang, Shi, Zhangming, Wu; Huichuan You, (1999): Crustal Shortening on the Margins of the Tien Shan, Xinjiang, China, International Geology Review, 41:8, 665-700. http://dx.doi.org/10.1080/00206819909465164
Burtman, V.S., Skobelev, S.F., Molnar, P. (1996). Late Cenozoic slip on the Talas-Ferghana fault, the Tien Shan, central Asia. Geological Society of America Bulletin, 108(8), 1004-1021.
Burtman, V.S. (2000). Cenozoic crustal shortening between the Pamir and Tien Shan and a reconstruction of the Pamir-Tien Shan transition zone for the Cretaceous and Paleogene. Tectonophysics, 319(2), 69-92.
Burtman, V.S. (2010). Tien Shan, Pamir, and Tibet: History and geodynamics of phanerozoic oceanic basins. Geotecton. 44, 388-404.
Cao, K., Wang, G., van der Beek, P., Bernet, M., Zhang, K., (2013). Cenozoic thermo-kinematic evolution of the northeastern Pamir revealed by zircon and apatite fission-track thermochronology. Tectonophysics, 589: 17-32, doi: 10.1016/j.tecto.2012.12.038.
Cao, K., Bernet, M., Wang, G., van der Beek, P., Wang, A., Zhang, K., Enkelmann, E., 2013. Focused Pliocene–Quaternary exhumation of the Eastern Pamir domes, western China. Earth and Planetary Science Letters, 363: 16-26, doi: 10.1016/j.epsl.2012.12.023.
Cao, K., Xu Y. D., Wang G.C., Zhang K.X., van der Beek, P., Wang C.W., Jiang S.S., Bershaw, J., 2014. Neogene source-to-sink relations between the Pamir and Tarim Basin: insights from stratigraphy, detrital zircon geochronology and whole-rock geochemistry. The Journal of Geology, 122: 433-454, doi: 10.1086/676478.
Cao, K., Wang G.C., Bernet M., van der Beek, P., Zhang K.X., 2015. Exhumation history of the West Kunlun Mountains, northwestern Tibet: evidence for a long-lived, rejuvenated orogeny. Earth and Planetary Science Letters, 432: 391-403, doi: 10.1016/j.epsl.2015.10.033.
Carrapa, B., Shazanee, F.M., Schoenbohm, L.M., Cosca, M., Sobel, E.R., DeCelles, P.G., Russell, J., 2014. Multi-dating of modern river detritus from Tajikistan and China: implications for crustal evolution and exhumation of the Pamir. Litho-sphere. http://dx.doi.org/10.1130/L360.1
Carrapa, B., Decelles, P.G., Wang, X., Clementz, M.T., Mancin, N., Stoica, M., et al. (2015). Tectono-climatic implications of Eocene Paratethys regression in the Tajik basin of central asia. Earth and Planetary Science Letters 424, 168–178.
Caves, J.K., Winnick, M.J., Graham, S.A., et al. (2015). Role of the westerlies in Central Asia climate over the Cenozoic. Earth and Planetary Science Letters 428 33-43.
Chang, J., Qiu, N., Li, J. (2012). Tectono-thermal evolution of the northwestern edge of the Tarim Basin in China: Constraints from apatite (U-Th)/He thermochronology. Journal of Asian Earth Sciences, 61, 187-198.
Chang, J., Glorie, S., Qiu, N., Min, K., Xiao, Y., & Xu, W. (2021). Late Miocene (10.0∼6.0 Ma) rapid exhumation of the Chinese South Tianshan: Implications for the timing of aridification in the Tarim Basin. Geophysical Research Letters, 48, e2020GL090623.
Chapman, J.B., Carrapa, B., Ballato, P., DeCelles, P.G., Worthington, J., Oimahmadov, I., Ketcham, R. (2017). Intracontinental subduction beneath the Pamir Mountains: Constraints from thermokinematic modeling of shortening in the Tajik fold‐and‐thrust belt. GSA Bulletin, 129, 1450–1471.
Chapman, J.B., Robinson, A.C., Carrapa, B., Villarreal, D., Worthington, J., DeCelles, P., Gehrels, G. (2018). Cretaceous shortening and exhumation history of the South Pamir terrane. Lithosphere, 10, 494–511.
Chapman, J.B., Carrapa, B., DeCelles, P.G., Worthington, J., Mancin, N., Cobianchi, M., Stoica, M., Wang, X., Gadoev, M., Oimahmadov, I. (2019). The Tajik Basin: A composite record of sedimentary basin evolution in response to tectonics in the Pamir. Basin Research. DOI: 10.1111/bre.12381.
Charreau, J., Chen, Y., Gilder, S., Dominguez, S., Avouac, J.P., Sen, S., Sun, D.J., Li, Y.A., Wang, M.W., 2005, Magnetostratigraphy and rock magnetism of the Neogene Kuitun He section (northwest China): Implications for late Cenozoic uplift of the Tianshan mountains. Earth and Planetary Science Letters, v. 230, p. 177–192, doi: 10.1016/j.epsl.2004.11.002.
Charreau, J., Gilder, S., Chen, Y., Dominguez, S., Avouac, J.-P., Sevket, S., Jolivet, M., Li, Y., Wang, W., 2006, Magnetostratigraphy of the Yaha section, Tarim Basin (China): 11 Ma acceleration in erosion and uplift of the Tian Shan Mountains. Geology, v. 34, p. 181–184.
Charreau, J., Avouac, J.-P., Chen, Y., Dominguez, S., Gilder, S., 2008. Miocene to present kinematics of fault-bend folding across the Huerguosi anticline, north-ern Tianshan (China), derived from structural, seismic, and magnetostratigraphic data. Geology36, 871–874. http://dx.doi.org/10.1130/G25073A.1
Charreau, J., Chen, Y., Gilder, S., Barrier, L., Dominguez, S., Augier, R., Sen, S., Avouac, J.-P., Gallaud, A., Graveleau, F., Li,Y., (2009a) .Neogene uplift pulses of the Tianshan mountains observed in the magnetic record of the Jingou River section (Northwest China). Tectonics 28, http://dx.doi.org/10.1029/2007TC002137
Charreau, J., Gumiaux, C., Avouac, J.-P., Augier, R., Chen, Y., Barrier, L., Gilder, S., Dominguez, S., Charles, N., Wang, Q., (2009b). The Neogene Xiyu Formation, a diachronou prograding gravel wedge at front of the Tianshan: climatic and tectonic implications. Earth Planet. Sci. Lett. 287, 283–310.
Charreau, J., Blard, P.H., Puchol, N., Avouac, J.P., Lallier-Vergès, E., Bourlès, D., Braucher, R., Gallaud, A., Finkel, R., Jolivet, M., Chen, Y., Roy, P., 2011. Paleo-erosion rates in Central Asia since 9Ma: a transient increase at the onset of Qua-ternary glaciations? Earth Planet. Sci. Lett. 304, 85–92. http://dx.doi.org/10.1016/j.epsl.2011.01.018
Charreau, J., Kent-Corson, M.L., Barrier, L., Augier, R., Ritts, B.D., Yan, C., et al. (2012). A high-resolution stable isotopic record from the Junggar Basin (nw china): implications for the paleotopographic evolution of the Tianshan Mountains. Earth and Planetary Science Letters, 341-344, 158-169. http://dx.doi.org/10.1016/j.epsl.2012.05.033
Charreau, J., Saint-Carlier, D., Dominguez, S., Lavé, J., et al. (2017). Denudation outpaced by crustal thickening in the eastern tianshan. Earth and Planetary Science Letters, 479, 179-191. http://dx.doi.org/10.1016/j.epsl.2017.09.025
Cheng, X., Chen, H., Lin, X. et al. Deformation geometry and timing of the Wupoer thrust belt in the NE Pamir and its tectonic implications. Front. Earth Sci. 10, 751–760 (2016).
Cheng, X., Chen, H., Lin, X., Wu, L., Gong, J. (2017). Geometry and kinematic evolution of the Hotan-Tiklik Segment of the western Kunlun thrust belt: constrained by structural analyses and apatite fission track thermochronology. Journal of Geology, 125(1), 65-82.
Chen, J., Burbank, D.W., Scharer, K.M., Sobel, E., Yin, J., Rubin, C., Zhao R. (2002), Magnetostratigraphy of the Upper Cenozoic strata in the southwestern Chinese Tian Shan: Rates of Pleistocene folding and thrusting. Earth Planet. Sci. Lett., 195, 113– 130.
Chen, J., Heermance, R., Burbank, D.W., Scharer, K.M., Miao, J., Wang, C. (2007). Quantification of growth and lateral propagation of the Kashi anticline, southwest Chinese Tian Shan. Journal of Geophysical Research, 112(B3), B03S16.
Chen, X., Chen, H., Cheng, X., Shen, Z., and Lin, X., (2015). Sedimentology and magnetostratigraphy of the Tierekesazi Cenozoic section in the foreland region of south West Tian Shan in Western China: Tectonophysics, v. 654, p. 156–172
Chen, X., Chen, H., Lin, X., Cheng, X., Yang, R., Ding, W., Gong, J., Wu, L., Zhang, F., Chen, S., Zhang, Y., and Yan, J., (2018). Arcuate Pamir in the Paleogene? Insights from a review of stratigraphy and sedimentology of the basin fills in the foreland of NE Chinese Pamir, western Tarim Basin: Earth-Science Reviews, v. 180, p. 1–16,
Chen, X., Chen, H., Sobel, E.R., Lin, X., Yang, S. (2019). Convergence of the Pamir and the South Tian shan in the late Cenozoic: Insights from provenance analysis in the Wuheshalu section at the convergence area. Lithosphere, 11(4).
Chevalier, M.-L., Li, H., Pan, J., Pei, J., Wu, F., Xu, W., Sun, Z., Liu, D. (2011). Fast slip-rate along the northern end of the Karakorum fault system, western Tibet. Geophys. Res. Lett.38. http://dx.doi.org/10.1029/2011GL049921.
Chevalier, M.-L., Tapponnier, P., Van Der Woerd, J., Ryerson, F.J., Finkel, R.C., Li, H. (2012). Spatially constant slip rate along the southern segment of the Karakorum fault since 200 ka. Tectonophysics 530–531, 152–179. http://dx.doi.org/10.1016/j.tecto.2011.12.014.
Chevalier, M.-L., Pan, J., Liu, D., Li, H., Wang, M. (2015). Quantification of both normal and right-lateral late Quaternary activity along the Kongur Shan ex-tensional system, Chinese Pamir. Terra Nova27 (5), 379–391. http://dx.doi.org/10.1111/ter.12170.
Chevalier, M.-L., Pan, J., Li, H. (2016). Comment on "no late quaternary strike-slip motion along the northern karakoram fault" published by robinson et al. in epsl, 2015. Earth and Planetary Science Letters, 443, 216-219. http://dx.doi.org/10.1016/j.epsl.2016.03.033
Coutand, I., Strecker, M.R., Arrowsmith, J.R., Hilley, G., Thiede, R.C., Korjenkov, A., et al. (2002). Late Cenozoic tectonic development of the intramontane Alai Valley, (Pamir-Tien Shan region, central Asia): An example of intracontinental deformation due to the Indo-Eurasia collision. Tectonics, 21(6), 3-1-3-19.
Cowgill, E., A. Yin, X. F.Wang, and Q. Zhang, (2000). Is the North Altyn fault part of a strike-slip duplex along the Altyn Tagh fault system?, Geology, 28(3), 255–258.
Cowgill, E., Yin, A., Harrison, T.M., Wang, X.F. (2003). Reconstruction of the Altyn Tagh fault based on U-Pb ion microprobe geochronology: Role of back thrusts, mantle sutures, and heterogeneous crustal strength in the Tibetan Plateau. Journal of Geophysical Research, v.108, B2346, doi: 10.1029/2002JB002080.
Cowgill, E. (2010). Cenozoic right-slip faulting along the eastern margin of the Pamir salient, northwestern China. GSA Bulletin, v. 122; no. 1/2; p. 145–161; doi: 10.1130/B26520.1.
Cunningham, W.D., Mann, P. (2017). Tectonics of Strike-Slip Restraining and Releasing Bends. Geological Society, London, Special Publications, 290, 1–12.
Dai, S., Fang, X., Song, C. (2005). Early tectonic uplift of the northern Tibetan plateau. Chinese Science Bulletin, Vol. 50 No. 15 1642—16.
DeGrave, J., Glorie, S., Buslov, M.M., Izmer, A., Fournier-Carrie, A., Batalev, V.Y., et al. (2011). The thermo-tectonic history of the Song-Kul plateau, Kyrgyz Tien Shan: Constraints by apatite and titanite thermochronometry and zircon U/Pb dating. Gondwana Research, 20(4), 745-763.
DeGrave, J., Glorie, S., Ryabinin, A., Zhimulev, F., Buslov, M.M., et al. (2012). Late Palaeozoic and Meso-Cenozoic tectonic evolution of the southern Kyrgyz Tien Shan: Constraints from multi-method thermochronology in the Trans-Alai, Turkestan-Alai segment and the southeastern Ferghana Basin. Journal of Asian Earth Sciences 44, 149–168.
Dedow, R., Franz, M., Szulc, A., Schneider, J. W., Brückner, J., Ratschbacher, L., et al. (2020). Tajik Basin and Southwestern Tian Shan, Northwestern India‐Asia collision zone: 3. Preorogenic to synorogenic retro‐foreland basin evolution in the eastern Tajik depression and linkage to the Pamir hinterland. Tectonics, 39, e2019TC005874.
Ducea, M.N., Lutkov, V., Minaev, V.T., Hacker, B., Metcalf, J. (2003). Building the Pamirs: The view from the underside. Geology, 31, 849-852. .1
Ducea M.N. (2016). Understanding continental subduction: A work in progress. Geology 2016; 44 (3): 239–240.
Dupont-Nivet. G., Butler, R.F., Yin, A., et al. (2003). Paleomagnetism indicates no Neogene rotation of the northeastern Tibetan Plateau. Journal of Geophysical Research Atmospheres, 108.
Fan, J., Xu, H., Shi, W., Guo, Q., Zhang, S., Wei, X., Cai, M., Huang, S., Wang, J., Xiao, J. (2022). A ~28 kyr Continuous Lacustrine Paleoseismic Record of the Intraplate, Slow-Slipping Fuyun Fault in Northwest China. Front. Earth Sci. 10:828801. doi: 10.3389/feart.2022.828801.
Fan, G., Ni, J. F., & Wallace, T.C. (1994). Active tectonics of the Pamirs and Karakorum. Journal of Geophysical Research: Solid Earth, 99(B4).
Fang, X., Zhao, Z., Jijun, LI., Yan, M., Pan, B., & Song, C., et al. (2005). Magnetostratigraphy of the late Cenozoic Laojunmiao anticline in the northern Qilian Mountains and its implications for the northern Tibetan Plateau uplift. Science in China Series D-Earth Sciences, Volume 48, Issue 7: 1040-1051.
Fraser, J.E., Searle, M.P., Parrish, R.R., & Noble, S.R. (2001). Chronology of deformation, metamorphism, and magmatism in the southern Karakoram Mountains. Geological Society of America Bulletin, 113(11), 1443-1455.
Fu, B., Ninomiya, Y., & Guo, J. (2011). Slip partitioning in the northeast Pamir–Tian Shan convergence zone. Tectonophysics 483, 344–364.
Fuchs, M. C., Gloaguen, R., Krbetschek, M., & Szulc, A. (2014). Rates of river incision across the main tectonic units of the Pamir identified using optically stimulated luminescence dating of fluvial terraces. Geomorphology, 216, 79-92.
Fuchs, M. C., Gloaguen, R., Merchel, S., Pohl, E., Sulaymonova, V. A., Andermann, C., & Rugel, G. (2015). Denudation rates across the Pamir based on 10Be concentrations in fluvial sediments: dominance of topographic over climatic factors. Earth Surface Dynamics, 3(3), 423-439.
Gapais, D., Cobbold, P. R., Bourgeois, O., Rouby, D., & de Urreiztieta, M. (2000). Tectonic significance of fault-slip data. Journal of Structural Geology, 22(7), 881-888.
Gavillot, Y., Axen, G. J., Stockli, D. F., Horton, B. K., & Fakhari, M. D. (2010). Timing of thrust activity in the High Zagros fold-thrust belt, Iran, from (U-Th)/He thermochronometry. Tectonics, 29(4).
Gilder, S. A., Leloup, P. H., Courtillot, V., Chen, Y., Coe, R. S., Zhao, X., Xiao, W., Halim, N., Cogné, J.-P., & Zhu, R. (1999). Tectonic evolution of the Tancheng-Lujiang (Tan-Lu) fault via Middle Triassic to Early Cenozoic paleomagnetic data. Journal of Geophysical Research: Solid Earth, 104(B7), 15365-15390.
Glorie, S., De Grave, J., Buslov, M. M., Zhimulev, F. I., Stockli, D. F., Batalev, V. Y., Izmer, A., Van den haute, P., Vanhaecke, F., & Elburg, M. A. (2011). Tectonic history of the Kyrgyz South Tien Shan (Atbashi-Inylchek) suture zone: The role of inherited structures during deformation-propagation. Tectonics, 30(6).
Grin, E., Ehlers, T. A., Schaller, M., Sulaymonova, V., Ratschbacher, L., & Gloaguen, R. (2016). 10Be surface-exposure age dating of the Last Glacial Maximum in the northern Pamir (Tajikistan). Quaternary Geochronology, 34, 47-57.
Guilbaud, C., Simoes, M., Barrier, L., Laborde, A., Van der Woerd, J., Li, H., Tapponnier, P., Coudroy, T., & Murray, A. (2017). Kinematics of Active Deformation Across the Western Kunlun Mountain Range (Xinjiang, China) and Potential Seismic Hazards Within the Southern Tarim Basin. Journal of Geophysical Research: Solid Earth, 122(12), 10,398-10,426.
Hamburger, M. W., Sarewitz, D. R., Pavlis, T. L., & Popandopulo, G. A. (1992). Structural and seismic evidence for intracontinental subduction in the Peter the First Range, Central Asia. Geological Society of America Bulletin, 104(4), 397-408.
He, J., Kapp, P., Chapman, J. B., DeCelles, P. G., & Carrapa, B. (2019). Structural setting and detrital zircon U–Pb geochronology of Triassic–Cenozoic strata in the eastern Central Pamir, Tajikistan. Geological Society, London, Special Publications, 483(1), 605-630. https://pubs.geoscienceworld.org/books/book/2208/chapter/123343611/Structural-setting-and-detrital-zircon-U-Pb
He, P., Wen, Y., Xu, C., Liu, Y., & Fok, H. S. (2015). New evidence for active tectonics at the boundary of the Kashi Depression, China, from time series InSAR observations. Tectonophysics, 653, 140-148.
Heermance, R. V., Chen, J., Burbank, D. W., & Miao, J. (2008). Temporal constraints and pulsed Late Cenozoic deformation during the structural disruption of the active Kashi foreland, northwest China. Tectonics, 27(6).
Heermance, R. V., Chen, J., Burbank, D. W., & Wang, C. (2007). Chronology and tectonic controls of Late Tertiary deposition in the southwestern Tian Shan foreland, NW China. Basin Research, 19(4), 599-632.
Heermance, R. V., Pearson, J., Moe, A., Langtao, L., Jianhong, X., Jie, C., Richter, F., Garzione, C. N., Junsheng, N., & Bogue, S. (2018). Erg deposition and development of the ancestral Taklimakan Desert (western China) between 12.2 and 7.0 Ma. Geology, 46(10), 919-922.
Hendrix, M. S., Graham, S. A., Carroll, A. R., Sobel, E. R., McKnight, C. L., Schulein, B. J., & Wang, Z. (1992). Sedimentary record and climatic implications of recurrent deformation in the Tian Shan: Evidence from Mesozoic strata of the north Tarim, south Junggar, and Turpan basins, northwest China. Geological Society of America Bulletin, 104(1), 53-79.
Hildebrand, P. R., Noble, S. R., Searle, M. P., Waters, D. J., & Parrish, R. R. (2001). Old origin for an active mountain range: Geology and geochronology of the eastern Hindu Kush, Pakistan. Geological Society of America Bulletin, 113(5), 625. h
Hu, G., Chen, J., Zhang, W., Di, N., Li, Y., & Li, S. H. (2021a). Out‐of‐Sequence Backthrusting Since the Middle Pleistocene Revealed by the Jiangnanmiao Thrust Fault Along the Northern Tian Shan, China. Tectonics, 40(4).
Huang, B., Piper, J., Peng, S., Liu, T., Li, Z., Wang, Q., & Zhu, R. (2006). Magnetostratigraphic study of the Kuche Depression, Tarim Basin, and Cenozoic uplift of the Tian Shan Range, Western China. Earth and Planetary Science Letters, 251(3-4), 346-364.
Huang, B., Piper, J. D. A., Qiao, Q., Wang, H., & Zhang, C. (2010). Magnetostratigraphic and rock magnetic study of the Neogene upper Yaha section, Kuche Depression (Tarim Basin): Implications to formation of the Xiyu conglomerate formation, NW China. Journal of Geophysical Research, 115(B1).
Huang, W.-l., Yang, X.-p., Li, A., Pierce, I. K. D., Thompson, J. A., Angster, S. J., & Zhang, L. (2015). Late Pleistocene shortening rate on the northern margin of the Yanqi Basin, southeastern Tian Shan, NW China. Journal of Asian Earth Sciences, 112, 11-24.
Huang, W.-l., Yang, X.-p., Li, A., Thompson, J. A., & Zhang, L. (2014). Climatically controlled formation of river terraces in a tectonically active region along the southern piedmont of the Tian Shan, NW China. Geomorphology, 220, 15-29. ht
Huang, W., Yang, X., Thompson Jobe, J. A., Li, S., Yang, H., & Zhang, L. (2019). Alluvial plains formation in response to 100-ka glacial–interglacial cycles since the Middle Pleistocene in the southern Tian Shan, NW China. Geomorphology, 341, 86-101.
Hubert-Ferrari, A. (2005). Irregular earthquake cycle along the southern Tianshan front, Aksu area, China. Journal of Geophysical Research, 110(B6).
Hubert-Ferrari, A., Suppe, J., Gonzalez-Mieres, R., & Wang, X. (2007). Mechanisms of active folding of the landscape (southern Tian Shan, China). Journal of Geophysical Research, 112(B3).
Jepson, G., Glorie, S., Konopelko, D., Gillespie, J., Danišík, M., Evans, N. J., Mamadjanov, Y., & Collins, A. S. (2018). Thermochronological insights into the structural contact between the Tian Shan and Pamirs, Tajikistan. Terra Nova, 30(2), 95-104.
Jia, Y., Fu, B., Jolivet, M., & Zheng, S. (2015). Cenozoic tectono-geomorphological growth of the SW Chinese Tian Shan: Insight from AFT and detrital zircon U–Pb data. Journal of Asian Earth Sciences, 111, 395-413.
Jian, H., Gong, W., Li, Y., & Wang, L. (2022). Bayesian Inference of Fault Slip and Coupling Along the Tuosuo Lake Segment of the Kunlun Fault, China. Geophysical Research Letters, 49(7).
Jiang, Z., Jiang, S., Lan, X., Wang, B., Huang, S., & Zhang, H. (2017). Neotectonic evolution of the Tarim Basin Craton from Neogene to quaternary. International Geology Review, 60(10), 1213-1230.
Jin, X., Wang, J., Chen, B., & Ren, L. (2003). Cenozoic depositional sequences in the piedmont of the west Kunlun and their paleogeographic and tectonic implications. Journal of Asian Earth Sciences, 21(7), 755-765.
Kapp, P., & DeCelles, P. G. (2019). Mesozoic–Cenozoic geological evolution of the Himalayan-Tibetan orogen and working tectonic hypotheses. American Journal of Science, 319(3), 159-254.
Käßner, A., Ratschbacher, L., Jonckheere, R., Enkelmann, E., Khan, J., Sonntag, B.-L., Gloaguen, R., Gadoev, M., & Oimahmadov, I. (2016). Cenozoic intracontinental deformation and exhumation at the northwestern tip of the India-Asia collision-southwestern Tian Shan, Tajikistan, and Kyrgyzstan. Tectonics, 35(9), 2171-2194.
Kaya, M. Y., Dupont‐Nivet, G., Proust, J. N., Roperch, P., Meijer, N., Frieling, J., Fioroni, C., Özkan Altiner, S., Stoica, M., Aminov, J., Mamtimin, M., & Guo, Z. (2020). Cretaceous Evolution of the Central Asian Proto‐Paratethys Sea: Tectonic, Eustatic, and Climatic Controls. Tectonics, 39(9).
Kelsey, H. M., Sherrod, B. L., Nelson, A. R., & Brocher, T. M. (2008). Earthquakes generated from bedding plane-parallel reverse faults above an active wedge thrust, Seattle fault zone. Geological Society of America Bulletin, 120(11-12), 1581-1597.
Klocke, M., Voigt, T., Kley, J., Pfeifer, S., Rocktäschel, T., Keil, S., & Gaupp, R. (2017). Cenozoic evolution of the Pamir and Tien Shan mountains reflected in syntectonic deposits of the Tajik Basin. Geological Society, London, Special Publications, 427(1), 523-564. https://pubs.geoscienceworld.org/gsl/books/book/2046/chapter/112400909/Cenozoic-evolution-of-the-Pamir-and-Tien-Shan
Konopelko, D., Seltmann, R., Apayarov, F., Belousova, E., Izokh, A., & Lepekhina, E. (2013). U–Pb–Hf zircon study of two mylonitic granite complexes in the Talas-Fergana fault zone, Kyrgyzstan, and Ar–Ar age of deformations along the fault. Journal of Asian Earth Sciences, 73, 334-346.
Kraatz, B. P., & Geisler, J. H. (2010). Eocene–Oligocene transition in Central Asia and its effects on mammalian evolution. Geology, 38(2), 111-114.
Laborde, A., Barrier, L., Simoes, M., Li, H., Coudroy, T., Van der Woerd, J., & Tapponnier, P. (2019). Cenozoic deformation of the Tarim Basin and surrounding ranges (Xinjiang, China): A regional overview. Earth-Science Reviews, 197, 102891.
Li, A., Ran, Y., Gomez, F., Thompson Jobe, J. A., Liu, H., & Xu, L. (2020a). Segmentation of the Kepingtage thrust fault based on paleoearthquake ruptures, southwestern Tianshan, China. Natural Hazards, 103(1), 1385-1406.
Li, C., Wang, S., & Wang, L. (2019a). Tectonostratigraphic history of the southern Tian Shan, western China, from seismic reflection profiling. Journal of Asian Earth Sciences, 172, 101-114.
Li, K., Qin, J., Chen, J., Shen, J., & Li, S.-H. (2021a). Multi-Method Luminescence Dating of Old Fluvial Sediments from Northern Tian Shan, China. Geochronometria, 48(1), 339-350.
Li, T., Chen, J., Thompson, J. A., Burbank, D. W., & Xiao, W. (2012). Equivalency of geologic and geodetic rates in contractional orogens: New insights from the Pamir Frontal Thrust. Geophysical Research Letters, 39(15).
Li, T., Chen, J., Thompson, J. A., Burbank, D. W., & Yang, H. (2015a). Hinge‐migrated fold‐scarp model based on an analysis of bed geometry: A study from the Mingyaole anticline, southern foreland of Chinese Tian Shan. Journal of Geophysical Research: Solid Earth, 120(9), 6592-6613.
Li, T., Chen, J., Thompson, J. A., Burbank, D. W., & Yang, X. (2013a). Quantification of three-dimensional folding using fluvial terraces: A case study from the Mushi anticline, northern margin of the Chinese Pamir. Journal of Geophysical Research: Solid Earth, 118(8), 4628-4647. 6
Li, T., Chen, J., Thompson, J. A., Burbank, D. W., & Yang, X. (2015b). Active flexural-slip faulting: A study from the Pamir-Tian Shan convergent zone, NW China. Journal of Geophysical Research: Solid Earth, 120(6), 4359-4378.
Li, T., Chen, J., Thompson Jobe, J. A., & Burbank, D. W. (2017). Active Flexural-Slip Faulting: Controls Exerted by Stratigraphy, Geometry, and Fold Kinematics. Journal of Geophysical Research: Solid Earth, 122(10), 8538-8565.
Li, T., Chen, J., Thompson Jobe, J. A., Burbank, D. W., Cheng, X., Xu, J., Li, Z., Zheng, W., & Zhang, P. (2018a). Active Bending-Moment Faulting: Geomorphic Expression, Controlling Conditions, Accommodation of Fold Deformation. Tectonics, 37(8), 2278-2306.
Li, T., Schoenbohm, L. M., Chen, J., Yuan, Z., Feng, W., Li, W., Xu, J., Owen, L. A., Sobel, E. R., Zhang, B., Zheng, W., & Zhang, P. (2019c). Cumulative and Coseismic (During the 2016 Mw 6.6 Aketao Earthquake) Deformation of the Dextral‐Slip Muji Fault, Northeastern Pamir Orogen. Tectonics, 38(11), 3975-3989.
Li, Y.-P., Robinson, A. C., Gadoev, M., & Oimuhammadzoda, I. (2020c). Was the Pamir salient built along a Late Paleozoic embayment on the southern Asian margin? Earth and Planetary Science Letters, 550, 116554.
Li, Z., Ding, L., Lippert, P. C., & Wei, H. (2013b). Paleomagnetic constraints on the Cenozoic kinematic evolution of the Pamir plateau from the Western Kunlun Shan foreland. Tectonophysics, 603, 257-271.
Li, Z., Li, T., Almeida, R., Zhang, P., Zheng, W., Sun, C., Jia, D., Chen, Z., & Wang, W. (2019d). Lateral Fault Growth in the Kashi Anticline (Chinese Tian Shan): Insights From Seismic Interpretation, Shortening Distribution, and Trishear Methods. Journal of Geophysical Research: Solid Earth, 124(7), 7303-7319.
Li, Z., Zhang, P., Zheng, W., Jia, D., Hubbard, J., Almeida, R., Sun, C., Shi, X., & Li, T. (2018c). Oblique Thrusting and Strain Partitioning in the Longmen Shan Fold‐and‐Thrust Belt, Eastern Tibetan Plateau. Journal of Geophysical Research: Solid Earth, 123(5), 4431-4453.
Liu, D., Li, H., Sun, Z., Cao, Y., Wang, L., Pan, J., Han, L., & Ye, X. (2017). Cenozoic episodic uplift and kinematic evolution between the Pamir and Southwestern Tien Shan. Tectonophysics, 712-713, 438-454.
Lu, R., Xu, X., He, D., Liu, B., Tan, X., & Wang, X. (2016). Coseismic and blind fault of the 2015 Pishan Mw 6.5 earthquake: Implications for the sedimentary‐tectonic framework of the western Kunlun Mountains, northern Tibetan Plateau. Tectonics, 35(4), 956-964.
Lu, H., Li, B., Wu, D., Zhao, J., Zheng, X., Xiong, J., & Li, Y. (2019). Spatiotemporal patterns of the Late Quaternary deformation across the northern Chinese Tian Shan foreland. Earth-Science Reviews, 194, 19-37.
Lu, H., Wang, X., Wang, X., Chang, X., Zhang, H., Xu, Z., ... & Han, Z. (2019). Formation and evolution of Gobi Desert in central and eastern Asia. Earth-Science Reviews, 194, 251-263.
Lü, L., Li, T., Chen, Z., Chen, J., Jobe, J. T., & Fang, L. (2021). Active Structural Geometries and Their Correlation With Moderate (M 5.5‐7.0) Earthquakes in the Jiashi‐Keping Region, Tian Shan Southwestern Front. Tectonics, 40(12), e2021TC006760.
Lü, L., Sun, J., Zhang, Z., Jia, Y., Li, T., Li, C., ... & Cao, M. (2019). Cenozoic deformation and crustal shortening in the foreland of southern Tian Shan, NW China, as a response to the India-Asia collision. Journal of Asian Earth Sciences, 183, 103960.
Macaulay, E. A., Sobel, E. R., Mikolaichuk, A., Landgraf, A., Kohn, B., & Stuart, F. (2013). Thermochronologic insight into late Cenozoic deformation in the basement‐cored Terskey Range, Kyrgyz Tien Shan. Tectonics, 32(3), 487-500.
Macaulay, E. A., Sobel, E. R., Mikolaichuk, A., Kohn, B., & Stuart, F. M. (2014). Cenozoic deformation and exhumation history of the Central Kyrgyz Tien Shan. Tectonics, 33(2), 135-165.
Malatesta, L. C., & Avouac, J. P. (2018). Contrasting river incision in north and south Tian Shan piedmonts due to variable glacial imprint in mountain valleys. Geology, 46(7), 659-662.
Matte, P., Tapponnier, P., Arnaud, N., Bourjot, L., Avouac, J. P., Vidal, P., ... & Yi, W. (1996). Tectonics of Western Tibet, between the Tarim and the Indus. Earth and Planetary Science Letters, 142(3-4), 311-330. https://doi.org/10.1016/0012-821X(96)00086-6
McNab, F., Sloan, R. A., & Walker, R. T. (2019). Simultaneous orthogonal shortening in the Afghan-Tajik Depression. Geology, 47(9), 862-866.
Molnar, P., & Tapponnier, P. (1975). Cenozoic Tectonics of Asia: Effects of a Continental Collision: Features of recent continental tectonics in Asia can be interpreted as results of the India-Eurasia collision. science, 189(4201), 419-426. DOI: 10.1126/science.189.4201.419
Molnar, P., & Tapponnier, P. (1978). Active tectonics of Tibet. Journal of Geophysical Research: Solid Earth, 83(B11), 5361-5375.
Molnar, P., & Lyon-Caent, H. (1989). Fault plane solutions of earthquakes and active tectonics of the Tibetan Plateau and its margins. Geophysical Journal International, 99(1), 123-153.
Molnar, P., & Ghose, S. (2000). Seismic moments of major earthquakes and the rate of shortening across the Tien Shan. Geophysical Research Letters, 27(16), 2377-2380.
Mugnier, J. L., Baby, P., Colletta, B., Vinour, P., Bale, P., & Leturmy, P. (1997). Thrust geometry controlled by erosion and sedimentation: A view from analogue models. Geology, 25(5), 427-430. https://doi.org/10.1130/0091-7613(1997)025<0427:TGCBEA>2.3.CO;2
Nachtergaele, S., De Pelsmaeker, E., Glorie, S., Zhimulev, F., Jolivet, M., Danišík, M., ... & De Grave, J. (2018). Meso-Cenozoic tectonic evolution of the Talas-Fergana region of the Kyrgyz Tien Shan revealed by low-temperature basement and detrital thermochronology. Geoscience Frontiers, 9(5), 1495-1514.
Patriat, P., & Achache, J. (1984). India–Eurasia collision chronology has implications for crustal shortening and driving mechanism of plates. Nature, 311(5987), 615-621.
Patyniak, M., Landgraf, A., Dzhumabaeva, A., Baikulov, S., Williams, A. M., Weiss, J. R., ... & Strecker, M. R. (2021). The Pamir Frontal Thrust Fault: Holocene Full‐Segment Ruptures and Implications for Complex Segment Interactions in a Continental Collision Zone. Journal of Geophysical Research: Solid Earth, 126(12), e2021JB022405.
Pavlis, T. L., Hamburger, M. W., & Pavlis, G. L. (1997). Erosional processes as a control on the structural evolution of an actively deforming fold and thrust belt: An example from the Pamir‐Tien Shan region, central Asia. Tectonics, 16(5), 810-822.
Poisson, B., & Avouac, J. P. (2004). Holocene hydrological changes inferred from alluvial stream entrenchment in north Tian Shan (northwestern China). The Journal of Geology, 112(2), 231-249.
Pozzi, J. P., & Feinberg, H. (1991). Paleomagnetism in the Tajikistan: Continental shortening of European margin in the Pamirs during Indian Eurasian collision. Earth and Planetary Science Letters, 103(1-4), 365-378. https://doi.org/10.1016/0012-821X(91)90173-F
Qiao, Q., Huang, B., Piper, J. D., Deng, T., & Liu, C. (2016). Neogene magnetostratigraphy and rock magnetic study of the Kashi Depression, NW China: Implications to neotectonics in the SW Tianshan Mountains. Journal of Geophysical Research: Solid Earth, 121(3), 1280-1296.
Qiao, Q., Huang, B., Biggin, A. J., & Piper, J. D. (2017). Late Cenozoic evolution in the Pamir-Tian Shan convergence: New chronological constraints from the magnetostratigraphic record of the southwestern Tianshan foreland basin (Ulugqat area). Tectonophysics, 717, 51-64.
Qiao, Q. Q., Piper, J. D. A., Huang, B. C., Wu, M. J., Liao, S. B., & Fan, S. Q. (2019). Neotectonic deformation in the Southwestern Tian Shan, Western China: evidence from paleomagnetic study of Quaternary sediments from the Mingyaole Anticline. Tectonics, 38(7), 2540-2554.
Qin, J., Chen, J., & Li, K. (2021). Characteristics of Pulsed Blue and Green Light Stimulated Luminescence Signals of Quartz and Feldspars. Geochronometria, 48(1), 138-146.
Rao, G., Lin, A., Yan, B., Jia, D., & Wu, X. (2014). Tectonic activity and structural features of active intracontinental normal faults in the Weihe Graben, central China. Tectonophysics, 636, 270-285.
Reiter, K., Kukowski, N., & Ratschbacher, L. (2011). The interaction of two indenters in analogue experiments and implications for curved fold-and-thrust belts. Earth and Planetary Science Letters, 302(1-2), 132-146.
Robinson, A. C., Yin, A., Manning, C. E., Harrison, T. M., Zhang, S. H., & Wang, X. F. (2004). Tectonic evolution of the northeastern Pamir: Constraints from the northern portion of the Cenozoic Kongur Shan extensional system, western China. Geological Society of America Bulletin, 116(7-8), 953-973.
Robinson, A. C., Yin, A., Manning, C. E., Harrison, T. M., Zhang, S. H., & Wang, X. F. (2007). Cenozoic evolution of the eastern Pamir: Implications for strain-accommodation mechanisms at the western end of the Himalayan-Tibetan orogen. Geological Society of America Bulletin, 119(7-8), 882-896.
Robinson, A. C. (2009). Evidence against Quaternary slip on the northern Karakorum Fault suggests kinematic reorganization at the western end of the Himalayan–Tibetan orogen. Earth and Planetary Science Letters, 286(1-2), 158-170.
Robinson, A. C. (2009). Geologic offsets across the northern Karakorum fault: Implications for its role and terrane correlations in the western Himalayan-Tibetan orogen. Earth and Planetary Science Letters, 279(1-2), 123-130.
Robinson, A. C., Yin, A., & Lovera, O. M. (2010). The role of footwall deformation and denudation in controlling cooling age patterns of detachment systems: An application to the Kongur Shan extensional system in the Eastern Pamir, China. Tectonophysics, 496(1-4), 28-43.
Robinson, A. C., Ducea, M., & Lapen, T. J. (2012). Detrital zircon and isotopic constraints on the crustal architecture and tectonic evolution of the northeastern Pamir. Tectonics, 31(2).
Robinson, A. C., Owen, L. A., Chen, J., Schoenbohm, L. M., Hedrick, K. A., Blisniuk, K., ... & Mertz-Kraus, R. (2015). No late Quaternary strike-slip motion along the northern Karakoram fault. Earth and Planetary Science Letters, 409, 290-298.
Robinson, A. C., Owen, L. A., Chen, J., Schoenbohm, L. M., Hedrick, K. A., Blisniuk, K., ... & Mertz-Kraus, R. (2016). Response to comment on" No late Quaternary strike-slip motion along the northern Karakoram fault". Earth and Planetary Science Letters, 443, 220-223. 10.1016/j.epsl.2016.03.033
Rolland, Y., Alexeiev, D. V., Kröner, A., Corsini, M., Loury, C., & Monié, P. (2013). Late Palaeozoic to Mesozoic kinematic history of the Talas–Ferghana strike-slip fault (Kyrgyz West Tianshan) as revealed by 40Ar/39Ar dating of syn-kinematic white mica. Journal of Asian Earth Sciences, 67, 76-92.
Royden, L. H., Burchfiel, B. C., & van der Hilst, R. D. (2008). The geological evolution of the Tibetan Plateau. science, 321(5892), 1054-1058. DOI: 10.1126/science.1155371
Rumelhart, P. E., Yin, A., Cowgill, E., Butler, R., Qing, Z., & Xiao-Feng, W. (1999). Cenozoic vertical-axis rotation of the Altyn Tagh fault system. Geology, 27(9), 819-822. https://doi.org/10.1130/0091-7613(1999)027<0819:CVAROT>2.3.CO;2
Rust, D., Korzhenkov, A., & Tibaldi, A. (2018). Geologic slip‐rate determinations on the Talas‐Fergana Fault: Mismatch with geodetic slip rate. Geophysical Research Letters, 45(9), 3880-3888.
Rutte, D., Ratschbacher, L., Schneider, S., Stübner, K., Stearns, M. A., Gulzar, M. A., & Hacker, B. R. (2017). Building the Pamir‐Tibetan Plateau—Crustal stacking, extensional collapse, and lateral extrusion in the Central Pamir: 1. Geometry and kinematics. Tectonics, 36(3), 342-384.
Rutte, D., Ratschbacher, L., Khan, J., Stübner, K., Hacker, B. R., Stearns, M. A., ... & Tichomirowa, M. (2017). Building the Pamir‐Tibetan Plateau—Crustal stacking, extensional collapse, and lateral extrusion in the Central Pamir: 2. Timing and rates. Tectonics, 36(3), 385-419.
Scharer, K. M., Burbank, D. W., Chen, J., Weldon, R. J., Rubin, C., Zhao, R., & Shen, J. (2004). Detachment folding in the Southwestern Tian Shan–Tarim foreland, China: shortening estimates and rates. Journal of Structural Geology, 26(11), 2119-2137.
Scharer, K. M., Burbank, D. W., Chen, J., & Weldon, R. J. (2006). Kinematic models of fluvial terraces over active detachment folds: Constraints on the growth mechanism of the Kashi-Atushi fold system, Chinese Tian Shan. Geological Society of America Bulletin, 118(7-8), 1006-1021.
Schildgen, T. F., Hodges, K. V., Whipple, K. X., Reiners, P. W., & Pringle, M. S. (2007). Uplift of the western margin of the Andean plateau revealed from canyon incision history, southern Peru. Geology, 35(6).
Schmidt, J., Hacker, B. R., Ratschbacher, L., Stübner, K., Stearns, M., Kylander-Clark, A., . . . Minaev, V. (2011). Cenozoic deep crust in the Pamir. Earth and Planetary Science Letters, 312(3-4), 411-421.
Schneider, D. A., Edwards, M. A., Kidd, W. S. F., Asif Khan, M., Seeber, L., & Zeitler, P. K. (1999). Tectonics of Nanga Parbat, western Himalaya: Synkinematic plutonism within the doubly vergent shear zones of a crustal-scale pop-up structure. Geology, 27(11), 999-1002. https://doi.org/10.1130/0091-7613(1999)027<0999:TONPWH>2.3.CO;2
Schwab, M., Ratschbacher, L., Siebel, W., McWilliams, M., Minaev, V., Lutkov, V., . . . Wooden, J. L. (2004). Assembly of the Pamirs: Age and origin of magmatic belts from the southern Tien Shan to the southern Pamirs and their relation to Tibet. Tectonics, 23(4), n/a-n/a.
Searle, M. P. (1996). Geological evidence against large‐scale pre‐Holocene offsets along the Karakoram Fault: Implications for the limited extrusion of the Tibetan Plateau. Tectonics, 15(1), 171-186.
Selander, J., Oskin, M., Ormukov, C., & Abdrakhmatov, K. (2012). Inherited strike-slip faults as an origin for basement-cored uplifts: Example of the Kungey and Zailiskey ranges, northern Tian Shan. Tectonics, 31(4), n/a-n/a.
Smit, M. A., Ratschbacher, L., Kooijman, E., & Stearns, M. A. (2014). Early evolution of the Pamir deep crust from Lu-Hf and U-Pb geochronology and garnet thermometry. Geology, 42(12), 1047-1050.
Sobel, E., Chen, J., & Heermance, R. (2006). Late Oligocene–Early Miocene initiation of shortening in the Southwestern Chinese Tian Shan: Implications for Neogene shortening rate variations. Earth and Planetary Science Letters, 247(1-2), 70-81.
Sobel, E. R. (1995). Basin analysis and apatite fission-track thermochronology of the Jurassic-Paleogene southwest Tarim basin, NW China (Doctoral dissertation, Stanford University). https://www.proquest.com/openview/32ab81161a2bb18746ec2d6e66a5869c/1
Sobel, E. R., Chen, J., Schoenbohm, L. M., Thiede, R., Stockli, D. F., Sudo, M., & Strecker, M. R. (2013). Oceanic-style subduction controls late Cenozoic deformation of the Northern Pamir orogen. Earth and Planetary Science Letters, 363, 204-218.
Sobel, E. R., & Dumitru, T. A. (1997). Thrusting and exhumation around the margins of the western Tarim basin during the India‐Asia collision. Journal of Geophysical Research: Solid Earth, 102(B3), 5043-5063.
Sobel, E. R., Oskin, M., Burbank, D., & Mikolaichuk, A. (2006). Exhumation of basement-cored uplifts: Example of the Kyrgyz Range quantified with apatite fission track thermochronology. Tectonics, 25(2), n/a-n/a.
Sobel, E. R., Schoenbohm, L. M., Chen, J., Thiede, R., Stockli, D. F., Sudo, M., & Strecker, M. R. (2011). Late Miocene–Pliocene deceleration of dextral slip between Pamir and Tarim: Implications for Pamir orogenesis. Earth and Planetary Science Letters, 304(3-4), 369-378.
Sobel, E. R. (1999). Basin analysis of the Jurassic–Lower Cretaceous southwest Tarim basin, northwest China. Geological Society of America Bulletin, 111(5), 709-724. https://doi.org/10.1130/0016-7606(1999)111<0709:BAOTJL>2.3.CO;2
Song, C., Fang, X., Li, J., Gao, J., Zhao, Z., & Fan, M. (2001). Tectonic uplift and sedimentary evolution of the Jiuxi Basin in the northern margin of the Tibetan Plateau since 13 Ma BP. Science in China Series D: Earth Sciences, 44(1), 192-202.
Stearns, M. A., Hacker, B. R., Ratschbacher, L., Lee, J., Cottle, J. M., & Kylander-Clark, A. (2013). Synchronous Oligocene-Miocene metamorphism of the Pamir and the north Himalaya driven by plate-scale dynamics. Geology, 41(10), 1071-1074.
Stearns, M. A., Hacker, B. R., Ratschbacher, L., Rutte, D., & Kylander-Clark, A. R. C. (2015). Titanite petrochronology of the Pamir gneiss domes: Implications for middle to deep crust exhumation and titanite closure to Pb and Zr diffusion. Tectonics, 34(4), 784-802.
Strecker, M. R., Frisch, W., Hamburger, M. W., Ratschbacher, L., Semiletkin, S., Zamoruyev, A., & Sturchio, N. (1995). Quaternary deformation in the eastern Pamirs, Tadzhikistan and Kyrgyzstan. Tectonics, 14(5), 1061-1079.
Strecker, M. R., Hilley, G. E., Arrowsmith, J. R., & Coutand, I. (2003). Differential structural and geomorphic mountain-front evolution in an active continental collision zone: The northwest Pamir, southern Kyrgyzstan. Geological Society of America Bulletin, 115(2), 166-181. https://doi.org/10.1130/0016-7606(2003)115<0166:DSAGMF>2.0.CO;2
Stübner, K., Grin, E., Hidy, A. J., Schaller, M., Gold, R. D., Ratschbacher, L., & Ehlers, T. (2017). Middle and Late Pleistocene glaciations in the southwestern Pamir and their effects on topography. Earth and Planetary Science Letters, 466, 181-194.
Stübner, K., Ratschbacher, L., Rutte, D., Stanek, K., Minaev, V., Wiesinger, M., & Gloaguen, R. (2013). The giant Shakhdara migmatitic gneiss dome, Pamir, India-Asia collision zone: 1. Geometry and kinematics. Tectonics, n/a-n/a.
Stübner, K., Ratschbacher, L., Weise, C., Chow, J., Hofmann, J., Khan, J., . . . Stearns, M. A. (2013). The giant Shakhdara migmatitic gneiss dome, Pamir, India-Asia collision zone: 2. Timing of dome formation. Tectonics, 32(5), 1404-1431.
Sun, J., Alloway, B., Fang, X., & Windley, B. F. (2015). Refuting the evidence for an earlier birth of the Taklimakan Desert. Proc Natl Acad Sci U S A, 112(41), E5556-5557.
Sun, J., & Jiang, M. (2013). Eocene seawater retreat from the southwest Tarim Basin and implications for early Cenozoic tectonic evolution in the Pamir Plateau. Tectonophysics, 588, 27-38.
Sun, J., Li, Y., Zhang, Z., & Fu, B. (2009). Magnetostratigraphic data on Neogene growth folding in the foreland basin of the southern Tianshan Mountains. Geology, 37(11), 1051-1054.
Sun, J., Liu, W., Liu, Z., Deng, T., Windley, B. F., & Fu, B. (2017). Extreme aridification since the beginning of the Pliocene in the Tarim Basin, western China. Palaeogeography, Palaeoclimatology, Palaeoecology, 485, 189-200. margin of the Tarim Basin in the late Eocene. Journal of Asian Earth Sciences, 116, 222-231.
Sun, J., Xiao, W., Windley, B. F., Ji, W., Fu, B., Wang, J., & Jin, C. (2016). Provenance change of sediment input in the northeastern foreland of Pamir related to collision of the Indian Plate with the Kohistan-Ladakh arc at around 47 Ma. Tectonics, 35(2), 315-338.
Sun, J., Xu, Q., & Huang, B. (2007). Late Cenozoic magnetochronology and paleoenvironmental changes in the northern foreland basin of the Tian Shan Mountains. Journal of Geophysical Research: Solid Earth, 112(B4).
Sun, J., Zhang, L., Deng, C., & Zhu, R. (2008). Evidence for enhanced aridity in the Tarim Basin of China since 5.3Ma. Quaternary Science Reviews, 27(9-10), 1012-1023.
Sun, J., & Zhang, Z. (2008). Palynological evidence for the Mid-Miocene Climatic Optimum recorded in Cenozoic sediments of the Tian Shan Range, northwestern China. Global and Planetary Change, 64(1-2), 53-68.
Sun, J., Zhang, Z., & Zhang, L. (2009). New evidence on the age of the Taklimakan Desert. Geology, 37(2), 159-162. rim Basin, NW China. Journal of Earth Science, 25(1), 169-182.
Tang, Z., Dong, X., Wang, X., & Ding, Z. (2015). Oligocene‐Miocene magnetostratigraphy and magnetic anisotropy of theBaxbulak section from thePamir‐TianShan convergence zone. Geochemistry, Geophysics, Geosystems, 16(10), 3575-3592.
Tapponnier, P., & Molnar, P. (1977). Active faulting and tectonics in China. Journal of Geophysical Research, 82(20), 2905-2930.
Tapponnier, P., & Molnar, P. (1979). Active faulting and Cenozoic tectonics of the Tien Shan, Mongolia, and Baykal regions. Journal of Geophysical Research: Solid Earth, 84(B7), 3425-3459.
Taylor, M., & Yin, A. (2009). Active structures of the Himalayan-Tibetan orogen and their relationships to earthquake distribution, contemporary strain field, and Cenozoic volcanism. Geosphere, 5(3), 199-214.
Thiede, R. C., Sobel, E. R., Chen, J., Schoenbohm, L. M., Stockli, D. F., Sudo, M., & Strecker, M. R. (2013). Late Cenozoic extension and crustal doming in the India-Eurasia collision zone: New thermochronologic constraints from the NE Chinese Pamir. Tectonics, 32(3), 763-779.
Thomas, J. C., Chauvin, A., Gapais, D., Bazhenov, M. L., Perroud, H., Cobbold, P. R., & Burtman, V. S. (1994). Paleomagnetic evidence for Cenozoic block rotations in the Tadjik depression (Central Asia). Journal of Geophysical Research: Solid Earth, 99(B8), 15141-15160.
Thomas, J. C., Perroud, H., Cobbold, P. R., Bazhenov, M. L., Burtman, V. S., Chauvin, A., & Sadybakasov, E. (1993). A paleomagnetic study of Tertiary formations from the Kyrgyz Tien‐Shan and its tectonic implications. Journal of Geophysical Research: Solid Earth, 98(B6), 9571-9589.
Thompson, J. A., Burbank, D. W., Li, T., Chen, J., & Bookhagen, B. (2015). Late Miocene northward propagation of the northeast Pamir thrust system, northwest China. Tectonics, 34(3), 510-534.
Thompson, J. A., Chen, J., Yang, H., Li, T., Bookhagen, B., & Burbank, D. (2018). Coarse- versus fine-grain quartz OSL and cosmogenic 10 Be dating of deformed fluvial terraces on the northeast Pamir margin, northwest China. Quaternary Geochronology, 46, 1-15.
Thompson Jobe, J. A., Li, T., Bookhagen, B., Chen, J., & Burbank, D. (2018). Dating growth strata and basin fill by combining 26Al/10Be burial dating and magnetostratigraphy: Constraining active deformation in the Pamir–Tian Shan convergence zone, NW China. Lithosphere, 10(6), 806-828.
Thompson Jobe, J. A., Li, T., Chen, J., Burbank, D. W., & Bufe, A. (2017). Quaternary tectonic evolution of the Pamir‐Tian Shan convergence zone, Northwest China. Tectonics, 36(12), 2748-2776.
Tian, Z., Sun, J., Windley, B. F., Zhang, Z., Gong, Z., Lin, X., & Xiao, W. (2016). Cenozoic detachment folding in the southern Tianshan foreland, NW China: Shortening distances and rates. Journal of Structural Geology, 84, 142-161.
Turner, S. A., Cosgrove, J. W., & Liu, J. G. (2010). Controls on lateral structural variability along the Keping Shan Thrust Belt, SW Tien Shan Foreland, China. Geological Society, London, Special Publications, 348(1), 71-85.
Van der Voo, R., Levashova, N. M., Skrinnik, L. I., Kara, T. V., & Bazhenov, M. L. (2006). Late orogenic, large-scale rotations in the Tien Shan and adjacent mobile belts in Kyrgyzstan and Kazakhstan. Tectonophysics, 426(3-4), 335-360.
Wang, C., Cheng, X., Chen, H., Ding, W., Lin, X., Wu, L., . . . Li, Y. (2016). The effect of foreland palaeo-uplift on deformation mechanism in the Wupoer fold-and-thrust belt, NE Pamir: Constraints from analogue modelling. Journal of Geodynamics, 100, 115-129.
Wang, C., Cheng, X.-G., Chen, H.-L., Li, K., Fan, X.-G., & Wang, C.-Y. (2016). From folding to transpressional faulting: the Cenozoic Fusha structural belt in front of the Western Kunlun Orogen, northwestern Tibetan Plateau. International Journal of Earth Sciences, 105(5), 1621-1636.
Wang, C., Dai, J., Zhao, X., Li, Y., Graham, S. A., He, D., . . . Meng, J. (2014). Outward-growth of the Tibetan Plateau during the Cenozoic: A review. Tectonophysics, 621, 1-43.
Wang, C.-y., Chen, H.-l., Cheng, X.-g., & Li, K. (2013). Evaluating the role of syn-thrusting sedimentation and interaction with frictional detachment in the structural evolution of the SW Tarim basin, NW China: Insights from analogue modeling. Tectonophysics, 608, 642-652.
Wang, E. (2003). Late Cenozoic geological evolution of the foreland basin bordering the West Kunlun range in Pulu area: Constraints on timing of uplift of northern margin of the Tibetan Plateau. Journal of Geophysical Research, 108(B8).
Wang, Q., Li, S., & Du, Z. (2009). Differential uplift of the Chinese Tianshan since the Cretaceous: constraints from sedimentary petrography and apatite fission-track dating. International Journal of Earth Sciences, 98(6), 1341-1363.
Wang, W., Kirby, E., Peizhen, Z., Dewen, Z., Guangliang, Z., Huiping, Z., . . . Chizhang, C. (2012). Tertiary basin evolution along the northeastern margin of the Tibetan Plateau: Evidence for basin formation during Oligocene transtension. Geological Society of America Bulletin, 125(3-4), 377-400.
Wang, X., Sun, D., Chen, F., Wang, F., Li, B., Popov, S. V., . . . Li, Z. (2014). Cenozoic paleo-environmental evolution of the Pamir–Tien Shan convergence zone. Journal of Asian Earth Sciences, 80, 84-100.
WANG, Z., & WANG, X. (2016). Late Cenozoic deformation sequence of a thrust system along the eastern margin of Pamir, northwest China. Acta Geologica Sinica‐English Edition, 90(5), 1664-1678.
Wei, H.-H., Meng, Q.-R., Ding, L., & Li, Z.-Y. (2013). Tertiary evolution of the western Tarim basin, northwest China: A tectono-sedimentary response to northward indentation of the Pamir salient. Tectonics, 32(3), 558-575.
Wei, X., Zheng, H., Wang, P., Tada, R., Clift, P. D., Jourdan, F., . . . Chen, H. (2018). Miocene Volcaniclastic Sequence Within the Xiyu Formation from Source to Sink: Implications for Drainage Development and Tectonic Evolution in Eastern Pamir, NW Tibetan Plateau. Tectonics, 37(9), 3261-3284.
Wen-Jun, Z., Hui-Ping, Z., Pei-Zhen, Z., Molnar, P., Xing-Wang, L., & Dao-Yang, Y. (2013). Late Quaternary slip rates of the thrust faults in western Hexi Corridor (Northern Qilian Shan, China) and their implications for northeastward growth of the Tibetan Plateau. Geosphere, 9(2), 342-354.
Whipple, K., & Meade, B. (2006). Orogen response to changes in climatic and tectonic forcing. Earth and Planetary Science Letters, 243(1-2), 218-228.
Willemse, E. J., Pollard, D. D., & Aydin, A. (1996). Three-dimensional analyses of slip distributions on normal fault arrays with consequences for fault scaling. Journal of Structural Geology, 18(2-3), 295-309.
Windley, B. F., Allen, M. B., Zhang, C., Zhao, Z. Y., & Wang, G. R. (1990). Paleozoic accretion and Cenozoic redeformation of the Chinese Tien Shan range, central Asia. Geology, 18(2), 128-131.
Wu, C., Ren, G., Yu, J., Zheng, W., Li, X., Liu, J., . . . Zhang, D. (2020). Oblique Right‐Lateral Faulting Along the Northern Margin of the Ili Basin in the Northern Tian Shan, Northwest China. Tectonics, 39(10).
Wu, C., Zheng, W., Zhang, P., Zhang, Z., Jia, Q., Yu, J., . . . Chen, J. (2019). Oblique Thrust of the Maidan Fault and Late Quaternary Tectonic Deformation in the Southwestern Tian Shan, Northwestern China. Tectonics, 38(8), 2625-2645.
Xiao, W. J., Windley, B. F., Liu, D. Y., Jian, P., Liu, C. Z., Yuan, C., & Sun, M. (2005). Accretionary tectonics of the Western Kunlun Orogen, China: a Paleozoic–Early Mesozoic, long-lived active continental margin with implications for the growth of Southern Eurasia. The Journal of Geology, 113(6), 687-705.
Xiao, W. J., Windley, B. F., Chen, H. L., Zhang, G. C., & Li, J. L. (2002). Carboniferous-Triassic subduction and accretion in the western Kunlun, China: Implications for the collisional and accretionary tectonics of the northern Tibetan Plateau. Geology, 30(4), 295-298.
Xu, J., Arrowsmith, J. R., Chen, J., Schoenbohm, L. M., Li, T., Yuan, Z., & Owen, L. A. (2020). Evaluating young fluvial terrace riser degradation using a nonlinear transport model: Application to the Kongur Normal Fault in the Pamir, northwest China. Earth Surface Processes and Landforms, 46(1), 280-295.
Xu, J., Chen, J., Arrowsmith, J. R., Li, T., Zhang, B., Di, N., & Pang, W. (2020). Growth Model and Tectonic Significance of the Guman Fold Along the Western Kunlun Mountain Front (Xinjiang, China) Derived From Terrace Deformation and Seismic Data. Frontiers in Earth Science, 8.
Yang, W., Dupont-Nivet, G., Jolivet, M., Guo, Z., Bougeois, L., Bosboom, R., . . . Heilbronn, G. (2015). Magnetostratigraphic record of the early evolution of the southwestern Tian Shan foreland basin (Ulugqat area), interactions with Pamir indentation and India–Asia collision. Tectonophysics, 644-645, 122-137.
Yang, W., Jolivet, M., Dupont-Nivet, G., & Guo, Z. (2014). Mesozoic – Cenozoic tectonic evolution of southwestern Tian Shan: Evidence from detrital zircon U/Pb and apatite fission track ages of the Ulugqat area, Northwest China. Gondwana Research, 26(3-4), 986-1008.
Yang, Y., & Liu, M. (2002). Cenozoic deformation of the Tarim plate and the implications for mountain building in the Tibetan Plateau and the Tian Shan. Tectonics, 21(6), 9-1-9-17.
Yin, A. (2006). Cenozoic tectonic evolution of the Himalayan orogen as constrained by along-strike variation of structural geometry, exhumation history, and foreland sedimentation. Earth-Science Reviews, 76(1-2), 1-131.
Yin, A. (2010). Cenozoic tectonic evolution of Asia: A preliminary synthesis. Tectonophysics, 488(1-4), 293-325. 2
Yin, A., & Harrison, T. M. (2000). Geologic evolution of the Himalayan-Tibetan orogen. Annual review of earth and planetary sciences, 28(1), 211-280.
Yin, A., Rumelhart, P. E., Butler, R., Cowgill, E., Harrison, T. M., Foster, D. A., ... & Raza, A. (2002). Tectonic history of the Altyn Tagh fault system in northern Tibet inferred from Cenozoic sedimentation. Geological Society of America Bulletin, 114(10), 1257-1295.
Yin, G., Liu, C., Yuan, R., Han, F., Ding, R., & Bahain, J.-J. (2021). ESR Chronology of Bedrock Fault Activity in Carbonate Area: Preliminary Results from the Study of the Lijiang-Xiaojinhe Fault, Southeastern Tibet, China. Geochronometria, 48(1), 215-221.
Yu, J., Zheng, W., Kirby, E., Zhang, P., Lei, Q., Ge, W., . . . Zhang, N. (2016). Kinematics of late Quaternary slip along the Yabrai fault: Implications for Cenozoic tectonics across the Gobi Alashan block, China. Lithosphere, 8(3), 199-218.
Zech, R., Abramowski, U., Glaser, B., Sosin, P., Kubik, P. W., & Zech, W. (2017). Late Quaternary glacial and climate history of the Pamir Mountains derived from cosmogenic 10Be exposure ages. Quaternary Research, 64(2), 212-220.
Zech, R., Glaser, B., Sosin, P., Kubik, P. W., & Zech, W. (2005). Evidence for long-lasting landform surface instability on hummocky moraines in the Pamir Mountains (Tajikistan) from 10Be surface exposure dating. Earth and Planetary Science Letters, 237(3-4), 453-461.
Zhang, T., Fang, X., Song, C., Appel, E., & Wang, Y. (2014). Cenozoic tectonic deformation and uplift of the South Tian Shan: Implications from magnetostratigraphy and balanced cross-section restoration of the Kuqa depression. Tectonophysics, 628, 172-187.
Zhang, Y., Yang, S., Chen, H., Dilek, Y., Cheng, X., Lin, X., . . . Zhu, T. (2019). The effect of overburden thickness on deformation mechanisms in the Keping fold-thrust belt, southwestern Chinese Tian Shan Mountains: Insights from analogue modeling. Tectonophysics, 753, 79-92.
Zhang, Z., Shen, Z., Sun, J., Wang, X., Tian, Z., Pan, X., & Shi, L. (2015). Magnetostratigraphy of the Kelasu section in the Baicheng depression, Southern Tian Shan, northwestern China. Journal of Asian Earth Sciences, 111, 492-504.
Zhang, Z., & Sun, J. (2020). Cenozoic tectonic rotations in different parts of the NE Pamir: implications for the evolution of the arcuate orogen. International Journal of Earth Sciences, 109(6), 1921-1939.
Zhang, Z., Sun, J., Lü, L., Tian, S., Cao, M., Su, B., . . . Li, Y. (2019). Late Cenozoic Clockwise Rotations in the Westernmost Part of the Arcuate Qiulitage Fold‐and‐Thrust Belt of Southern Tian Shan Foreland and Its Tectonic Implications. Tectonics, 38(6), 2036-2058.
Zhang, Z., Sun, J., Lü, L., Wang, W., & Li, Y. (2018). Neogene Paleomagnetic Study of the Western Baicheng Depression: Implications for the Intensified Deformation of Tian Shan Since the Latest Miocene. Journal of Geophysical Research: Solid Earth.
Zhang, Z., Sun, J., Tian, Z., & Gong, Z. (2016). Magnetostratigraphy of syntectonic growth strata and implications for the late Cenozoic deformation in the Baicheng Depression, Southern Tian Shan. Journal of Asian Earth Sciences, 118, 111-124.
Zheng, H., Huang, X., & Butcher, K. (2006). Lithostratigraphy, petrography and facies analysis of the Late Cenozoic sediments in the foreland basin of the West Kunlun. Palaeogeography, Palaeoclimatology, Palaeoecology, 241(1), 61-78.
Zheng, H., Powell, C. M., An, Z., Zhou, J., & Dong, G. (2000). Pliocene uplift of the northern Tibetan Plateau. Geology, 28(8), 715-718.
Zheng, H., Powell, C. M., Butcher, K., & Cao, J. (2003). Late Neogene loess deposition in southern Tarim Basin: tectonic and palaeoenvironmental implications. Tectonophysics, 375(1-4), 49-59.
Zheng, H., Tada, R., Jia, J., Lawrence, C., & Wang, K. (2010). Cenozoic sediments in the southern Tarim Basin: implications for the uplift of northern Tibet and evolution of the Taklimakan Desert. Geological Society, London, Special Publications, 342(1), 67-78.
Zheng, H., Wei, X., Tada, R., Clift, P. D., Wang, B., Jourdan, F., . . . He, M. (2015). Late Oligocene-early Miocene birth of the Taklimakan Desert. Proc Natl Acad Sci U S A, 112(25), 7662-7667.
Zheng, H., Wei, X., Tada, R., Clift, P. D., Wang, B., Jourdan, F., . . . He, M. (2015). Reply to Sun et al.: Confirming the evidence for Late Oligocene-Early Miocene birth of the Taklimakan Desert. Proc Natl Acad Sci U S A, 112(41), E5558-5559. 311-1312. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=20080022&st=alljournals
蔡佳, 王华, 赵忠新, 陈少平, 杨道庆, & 林社卿. (2008). 焉耆盆地博湖坳陷形成过程及动力学机制. 地球科学(中国地质大学学报)(04), 555-563. http://www.earth-science.net/article/id/1723
曹凯, 麦洪涛, 王国灿, & 张克信. (2018). 帕米尔构造结中新生代构造地貌演化及对塔里木盆地海退的影响. 第四纪研究, 38(1), 15-38. http://www.dsjyj.com.cn//article/id/dsjyj_11427.
常健, 邱楠生, & 李佳蔚. (2012). 塔里木盆地与南天山的耦合关系:来自(U-Th)/He年龄的新证据. 地学前缘, 19(05), 234-243. http://www.earthsciencefrontiers.net.cn/CN/article/advancedSearchResult.do
陈楚铭, 卢华复, 贾东, & 贾承造. (1999). 塔里木盆地北缘库车再生前陆褶皱逆冲带中丘里塔格前锋带的构造与油气. 地质论评(04), 423-433.
陈楚铭, 卢华复, 贾东, & 谢晓安. (1998). 塔里木盆地晚第三纪—第四纪沉积特征、构造变形与石油地质意义. 沉积学报(02), 113-116+123. http://www.cjxb.ac.cn/article/id/3233
陈楚铭, 卢华复, 王国强, 贾东, & 蔡东升. (1998). 塔里木盆地塔北隆起叠加构造分析. 高校地质学报(03), 55-63. https://geology.nju.edu.cn/CN/Y1998/V4/I3/294
陈刚, 吴仕虎, 李小刚, & 陈辉. (2010). 焉耆盆地原型盆地性质及构造演化特征研究. 地质学刊, 34(04), 372-376. http://www.journalofgeology1977.com/ch/reader/view_abstract.aspx?flag=1&file_no=20100495&journal_id=dzxk
陈汉林, 陈沈强, & 林秀斌. (2014). 帕米尔弧形构造带新生代构造演化研究进展. 地球科学进展, 29(08), 890-902. http://www.adearth.ac.cn/CN/10.11867/j.issn.1001-8166.2014.08.0890
陈汉林, 罗俊成, 郭群英, 廖林, 肖中尧, 程晓敢, . . . 王步清. (2009). 塔里木盆地东南缘中新生代变形史与构造演化. 大地构造与成矿学, 33(01), 38-45. http://doi.org/10.16539/j.ddgzyckx.2009.01.009
陈汉林, 杨树锋, 董传万, 竺国强, 贾承造, 魏国齐, & 汪振国. (1997). 塔里木盆地地质热事件研究. 科学通报(10), 1096-1099. https://www.sciengine.com/CSB/article?doi=10.1360/csb1997-42-10-1096&scroll=
陈汉林, 张芬芬, 程晓敢, 廖林, 罗俊成, 师骏, . . . 陈立峰. (2010). 帕米尔东北缘地区构造变形特征与盆山结构. 地质科学, 45(01), 102-112. http://www.dzkx.org/article/id/geology_8397
陈槚俊, & 何登发. (2018). 乌泊尔断裂带构造几何学与运动学. 地质科学, 53(1), 25-45. https://d.wanfangdata.com.cn/periodical/dzkx201801002.
陈剑, 卢华复, & 王胜利. (2002). 库车断层相关褶皱的切角检验. 地质论评(01), 74-79. http://doi.org/10.16509/j.georeview.2002.01.013
陈剑, 卢华复, 于景宗, & 王胜利. (2005). 断层相关褶皱的几何学模型及其应用. 地球学报(01), 89-92. http://www.cagsbulletin.com/dqxbcn/ch/reader/view_abstract.aspx?flag=1&file_no=20050114&journal_id=dqxbcn
陈杰, M, S. K., W, B. D., R, H., & 王昌盛. (2005). 西南天山明尧勒背斜的第四纪滑脱褶皱作用. 地震地质(04), 530-547. https://www.dzdz.ac.cn/CN/Y2005/V27/I4/530
陈杰, M, S. K., W, B. D., & 王昌盛. (2005). 利用河流阶地限定活动褶皱的类型和生长机制:运动学模型. 地震地质(04), 513-529. https://www.dzdz.ac.cn/CN/Y2005/V27/I4/513
陈杰, R.V.Heermance, D.W.Burbank, K.M.Scharer, & 王昌盛. (2007). 中国西南天山西域砾岩的磁性地层年代与地质意义. 第四纪研究(04), 576-587. http://www.dsjyj.com.cn/article/id/dsjyj_8762
陈杰, Wyrwoll, K. H., 卢演俦, Krapez, B., 万景林, & 刘进峰. (2006). 祁连山北缘玉门砾岩的磁性地层年代与褶皱过程. 第四纪研究(01), 20-31. http://www.dsjyj.com.cn/article/id/dsjyj_8610
陈杰, 丁国瑜, Burbank, D.W., Scharer, K., . . . 赵瑞斌. (2001). 中国西南天山山前的晚新生代构造与地震活动. 中国地震(02), 34-55. http://dx.chinadoi.cn/10.3969/j.issn.1001-4683.2001.02.005
陈杰, 李涛, 李文巧, & 袁兆德. (2011). 帕米尔构造结及邻区的晚新生代构造与现今变形. 地震地质, 33(02), 241-259. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2011.02.001
陈杰, 卢演俦, & 丁国瑜. (1998). 祁连山西段酒西盆地区阶地构造变形的研究. 西北地震学报(01), 29-37. http://dzgcxb.ijournals.cn/xbdz/article/abstract/19980105?st=search
陈杰, 卢演俦, & 丁国瑜. (2001). 塔里木西缘晚新生代造山过程的记录——磨拉石建造及生长地层和生长不整合. 第四纪研究(06), 528-539. http://www.dsjyj.com.cn/article/id/dsjyj_9416
陈杰, & 南凌. (1992). 活动褶皱研究及其识别. 内陆地震(01), 25-38. http://doi.org/10.16256/j.issn.1001-8956.1992.01.005
陈杰, 曲国胜, 胡军, & 冯先岳. (1997). 帕米尔北缘弧形推覆构造带东段的基本特征与现代地震活动. 地震地质(04), 14-25. https://www.dzdz.ac.cn/CN/Y1997/V19/I4/301
陈杰, & 尹金辉. (1998). 帕米尔卡兹克阿尔特山的晚新生代构造变形. 第四纪研究(03), 286. http://www.dsjyj.com.cn/article/id/dsjyj_9724
陈杰, 尹金辉, 曲国胜, & 张克旗. (2000). 塔里木盆地西缘西域组的底界、时代、成因与变形过程的初步研究. 地震地质(S1), 104-116. https://www.dzdz.ac.cn/CN/ISSN:0253-4967.0.2000-S1-014
陈杰,卢演俦,丁国瑜. (1996). 祁连山西段及酒西盆地区第四纪构造运动的阶段划分. 第四纪研究(03), 263-271. http://www.dsjyj.com.cn/article/id/dsjyj_9794
陈立春, 陈桂华, 陈立泽, 冉勇康, & 杨晓平. (2006). 柯坪塔格推覆系活动构造的ETM影像特征与解译. 地震地质(02), 289-298. https://www.dzdz.ac.cn/CN/Y2006/V28/I2/289
陈宁华, 汪新, & 李世琴. (2009). 南天山秋里塔格构造带中段地表变形遥感定量解译. 地质科学, 44(03), 931-944. http://www.dzkx.org/article/id/geology_8360
陈锐明, 张克信, 陈奋宁, 徐亚东, 叶荷, & 陈林. (2011). 新疆其木干剖面新近纪沉积序列与西昆仑隆升的耦合. 地质科技情报, 30(04), 55-64. 文章详细信息 (chinajournal.net.cn)
陈书平, 漆家福, 于福生, & 杨桥. (2007). 准噶尔盆地南缘构造变形特征及其主控因素. 地质学报(02), 151-157. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=20070219&st=alljournals
陈书平, 汤良杰, & 余一欣. (2008). 天山南北前陆盆地新生代变形与天山造山带的波动耦合. 中国科学(D辑:地球科学)(S1), 55-62. https://www.sciengine.com/publisher/scp/journal/Sci%20Sin%20Terrae-D/38/%E5%A2%9E%E5%88%8A%E2%85%A0/10.1360/zd2008-38-zk1-55?slug=fulltext
陈新, 卢华复, 舒良树, 陈新, 王惠民, & 张国清. (2002). 准噶尔盆地构造演化分析新进展. 高校地质学报(03), 257-267. https://geology.nju.edu.cn/CN/Y2002/V8/I3/257
陈正乐, 宫红良, 李丽, 王小凤, 陈柏林, & 陈宣华. (2006). 阿尔金山脉新生代隆升-剥露过程. 地学前缘(04), 91-102. http://www.earthsciencefrontiers.net.cn/CN/Y2006/V13/I4/0
陈正乐, 刘健, 孙知明, 王小凤, 裴军令, & 宫红良. (2005). 阿尔金山脉新生代剥露历史——前陆盆地沉积记录. 地质通报(04), 302-308. http://dzhtb.cgs.cn/gbc/ch/reader/view_abstract.aspx?file_no=20050461&flag=1
陈正乐, 鲁克改, 王果, 陈柏林, 李丽, 蒋荣宝, . . . 宫红良. (2009). 天山两侧山前新生代构造变形特征及其成因刍议. 地学前缘, 16(03), 149-159. http://www.earthsciencefrontiers.net.cn/CN/Y2009/V16/I3/149
陈正乐, 张岳桥, 王小凤, 陈宣华, Z., W., & J., A. (2001). 新生代阿尔金山脉隆升历史的裂变径迹证据. 地球学报(05), 413-418. http://www.cagsbulletin.com/dqxbcn/ch/reader/view_abstract.aspx?flag=1&file_no=20010506&journal_id=dqxbcn
程建武, 冉勇康, 杨晓平, & 徐锡伟. (2006). 西南天山柯坪塔格前缘断裂带东段晚第四纪活动特征. 地震地质(02), 258-266+268+267. https://www.dzdz.ac.cn/CN/Y2006/V28/I2/258
程晓敢, 黄智斌, 陈汉林, 杜治利, 李康, & 师骏. (2012). 西昆仑山前冲断带断裂特征及构造单元划分. 岩石学报, 28(08), 2591-2601. http://www.ysxb.ac.cn/ysxb/ch/reader/view_abstract.aspx?flag=1&file_no=20120824&journal_id=ysxb
程晓敢, 廖林, 陈汉林, 陈立锋, 杨树锋, 王步清, . . . 罗俊成. (2008). 塔里木盆地东南缘新生代构造变形特征研究. 岩石学报, 24(04), 645-654. http://www.ysxb.ac.cn/ysxb/ch/reader/view_abstract.aspx?flag=1&file_no=20080403&journal_id=ysxb
崔军文, 郭宪璞, 丁孝忠, 李朋武, & 张晓卫. (2006). 西昆仑—塔里木盆地盆-山结合带的中、新生代变形构造及其动力学. 地学前缘(04), 103-118. http://www.earthsciencefrontiers.net.cn/CN/Y2006/V13/I4/0
邓洪菱, 张长厚, 李海龙, & 邹云. (2009). 褶皱相关断裂构造及其地质意义. 自然科学进展, 19(03), 285-296. https://mall.cnki.net/magazine/article/CJFD/ZKJZ200903007.htm
邓金花, 韩非, 李涛, 张博譞, 许建红, & 姚远. (2020). 帕米尔东北部木吉断层晚第四纪运动性质和滑动速率的约束. 第四纪研究, 40(01), 114-123. http://www.dsjyj.com.cn/article/doi/10.11928/j.issn.1001-7410.2020.01.11
邓起东, P.Molnar, E.T.Brown, 李军, B.C.Burchfiel, 冯先岳, . . . 沈军. (2001). 天山南缘北轮台断裂库尔楚段晚第四纪的最新活动和滑动速率. 内陆地震(04), 289-298. http://doi.org/10.16256/j.issn.1001-8956.2001.04.001
邓起东, 陈立春, & 冉勇康. (2004). 活动构造定量研究与应用. 地学前缘(04), 383-392. http://www.earthsciencefrontiers.net.cn/CN/Y2004/V11/I4/0
邓起东, 冯先岳, 张培震, 杨晓平, 徐锡伟, 彭斯震, & 李军. (1999). 乌鲁木齐山前坳陷逆断裂-褶皱带及其形成机制. 地学前缘(04), 191-201. http://dx.chinadoi.cn/10.3321/j.issn:1005-2321.1999.04.001
邓起东, & 闻学泽. (2008). 活动构造研究——历史、进展与建议. 地震地质(01), 1-30. https://www.dzdz.ac.cn/CN/Y2008/V30/I1/1
邓起东, 张培震, 冉勇康, 杨晓平, 闵伟, & 陈立春. (2003). 中国活动构造与地震活动. 地学前缘(S1), 66-73. http://www.earthsciencefrontiers.net.cn/CN/Y2003/V10/ISuppl./0
邓起东, 张培震, 冉勇康, 杨晓平, 闵伟, & 楚全芝. (2002). 中国活动构造基本特征. 中国科学(D辑:地球科学)(12), 1020-1030+1057. https://www.sciengine.com/publisher/scp/journal/Sci%20Sin%20Terrae-D/32/12/10.1360/zd2002-32-12-1020?slug=fulltext
丁道桂, & 罗月明. (2005). 帕米尔地区碰撞构造与塔里木盆地的改造. 石油与天然气地质(01), 57-63+77. http://ogg.pepris.com/CN/10.11743/ogg20050108
丁跃潮. (1995). 微量元素及重矿物判别分析在西昆仑山前第三系划分对比中的应用. 新疆地质(03), 275-282. https://mall.cnki.net/magazine/article/CJFD/XJDI503.009.htm
杜治利, & 王清晨. (2007). 中新生代天山地区隆升历史的裂变径迹证据. 地质学报(08), 1081-1101. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=200708128&st=alljournals
范湘涛, 卢华复, 郭华东, & 邵芸. (2000). 库车冲断带新构造遥感分析. 地质论评(05), 499-506+561-562. http://doi.org/10.16509/j.georeview.2000.05.010
范小根, 程晓敢, 陈汉林, 王聪, & 王春阳. (2015). 塔西南新生代前陆盆地东段盆山结构与冲断带变形特征. 大地构造与成矿学, 39(02), 241-249. http://doi.org/10.16539/j.ddgzyckx.2015.02.004
方茂龙, 王树红, 韩晓青, & 赵世勤. (2009). 新疆柯坪新生代推覆岩席的走向连接与成因分析. 中国地质, 36(02), 322-333. http://geochina.cgs.gov.cn/geochina/ch/reader/view_abstract.aspx?file_no=20090206&flag=1
方小敏. (2017). 青藏高原隆升阶段性. 科技导报, 35(06), 42-50. http://www.kjdb.org/CN/abstract/abstract14226.shtml
冯先岳, 陈杰, 李军, 赵瑞斌, 邓起东, 张培震, . . . 杨晓平. (1993). 霍尔果斯活动构造的断裂扩展褶皱作用. 内陆地震(04), 335-343. 霍尔果斯活动构造的断裂扩展褶皱作用-【维普期刊官网】- 中文期刊服务平台 (cqvip.com)
付碧宏, & 贾营营. (2010). 南天山乌什前陆逆冲褶皱构造带的晚新生代构造地貌特征与地震活动. 地质科学, 45(04), 917-929. http://www.dzkx.org/article/id/geology_8458
付碧宏, 林爱明, 狩野谦一, 丸山正, & 郭建明. (2003). 中国西北帕米尔东北缘的活动断裂研究(英文). 新疆地质(01), 8-7. http://www.cnki.com.cn/Article/CJFDTotal-XJDI200301002.htm
葛肖虹, 任收麦, 马立祥, 吴光大, 刘永江, & 袁四化. (2006). 青藏高原多期次隆升的环境效应. 地学前缘(06), 118-130. http://www.earthsciencefrontiers.net.cn/CN/Y2006/V13/I6/0
管树巍, 李本亮, 何登发, H.Shaw, J., & 陈竹新. (2009). 构造楔形体的识别与勘探——以准噶尔盆地南缘为例. 地学前缘, 16(03), 129-137. http://www.earthsciencefrontiers.net.cn/CN/Y2009/V16/I3/129
管树巍, 李本亮, 何登发, 汪新, Suppe, J., & 雷刚林. (2007). 晚新生代以来天山南、北麓冲断作用的定量分析. 地质学报(06), 725-744. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=20070687&st=alljournals
管树巍, 汪新, 杨树锋, 赵卫东, 徐峰, & 雷刚林. (2003). 南天山库车秋里塔格褶皱带三维构造分析. 地质论评(05), 464-473. http://www.geojournals.cn/georev/ch/reader/view_abstract.aspx?file_no=20030579
管树巍, 张朝军, 何登发, 石昕, Suppe, J., 汪新, & 吴晓智. (2006). 前陆冲断带复杂构造解析与建模——以准噶尔盆地南缘第一排背斜带为例. 地质学报(08), 1131-1140. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=200608189&st=alljournals
郭峰, 庄红红, & 刘文成. (2013). 塔里木盆地昆仑山前古近系沉积特征. 新疆地质, 31(02), 141-146. 塔里木盆地昆仑山前古近系沉积特征-【维普期刊官网】- 中文期刊服务平台 (cqvip.com)
郭战峰, 刘新民, & 刘颉. (2004). 塔里木盆地柯坪、巴楚断隆志留-泥盆系砂岩碎屑组分与构造背景关系分析. 河南石油(04), 7-10+81. http://www.cqvip.com/qk/98131x/200404/10346950.html
郭召杰, 张志诚, 钱祥麟, & 李茂松. (1998). 新疆焉耆盆地构造特征及其石油地质意义. 石油实验地质(03), 3-7.
郭召杰, 张志诚, 吴朝东, 方世虎, & 张锐. (2006). 中、新生代天山隆升过程及其与准噶尔、阿尔泰山比较研究. 地质学报(01), 1-15. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=20060107&st=alljournals
韩非, 陈杰, & 尹功明. (2015). 西域砾岩宇宙成因核素26Al/10Be埋藏定年探索. 第四纪研究, 35(1), 109-117. http://www.dsjyj.com.cn/article/doi/10.11928/j.issn.1001-7410.2015.01.10
何登发. (1994). 塔里木盆地新生代构造演化与油气聚集. 石油勘探与开发(03), 1-8+127. http://www.cqvip.com/qk/90664x/199403/1474348.html
何登发, SUPPE, J., & 贾承造. (2005). 断层相关褶皱理论与应用研究新进展. 地学前缘(04), 353-364. http://www.earthsciencefrontiers.net.cn/CN/Y2005/V12/I4/0
何登发, 白武明, & 孟庆任. (1998). 塔里木盆地地球动力学演化与含油气系统旋回. 地球物理学报(S1), 77-87. http://www.geophy.cn/article/id/cjg_7378
何登发, 贾承造, 德生, 张朝军, 孟庆任, & 石昕. (2005). 塔里木多旋回叠合盆地的形成与演化. 石油与天然气地质(01), 64-77.
http://ogg.pepris.com/CN/10.11743/ogg20050109
何登发, 李德生, 何金有, & 吴晓智. (2013). 塔里木盆地库车坳陷和西南坳陷油气地质特征类比及勘探启示. 石油学报, 34(02), 201-218. http://www.syxb-cps.com.cn/CN/10.7623/syxb201302001
何登发, 杨庚, 管树巍, 石昕, 张朝军, 王桂宏, & 王晓波. (2005). 前陆盆地构造建模的原理与基本方法. 石油勘探与开发(03), 7-14. http://www.cpedm.com/CN/abstract/abstract1103.shtml
何登发, 周新源, 杨海军, 管树巍, & 张朝军. (2008). 塔里木盆地克拉通内古隆起的成因机制与构造类型. 地学前缘(02), 207-221. http://www.earthsciencefrontiers.net.cn/CN/Y2008/V15/I2/0
何登发,李德生. (1995). 沉积盆地动力学研究的新进展. 地学前缘(03), 53-58+88. http://www.earthsciencefrontiers.net.cn/CN/Y1995/V2/I3/0
何光玉, 卢华复, & 李树新. (2003). 库车盆地秋里塔格构造带构造圈闭及油气勘探方向. 地质科学(04), 506-513. http://www.dzkx.org/CN/abstract/abstract9557.shtml
何光玉, 卢华复, 王良书, 贾东, 王胜利, 印栋浩, & 李树新. (2003). 塔里木盆地库车地区早第三纪伸展盆地的证据. 南京大学学报(自然科学版)(01), 40-45. https://d.wanfangdata.com.cn/periodical/njdxxb200301005
何光玉, 卢华复, 杨树锋, & 李树新. (2004). 库车中新生代盆地沉降特征. 浙江大学学报(理学版)(01), 110-113+120. https://www.zjujournals.com/sci/CN/abstract/abstract31849.shtml
何光玉, 赵庆, 李树新, 卢华复, 王良书, 贾东, . . . 张国伟. (2005). 库车盆地北部冲断带气源的构造地质学证据. 北京大学学报(自然科学版)(04), 570-576. 库车盆地北部冲断带气源的构造地质学证据 (pku.edu.cn)
何文渊, 李江海, 钱祥麟, & 郑多明. (2002). 塔里木盆地柯坪断隆断裂构造分析. 中国地质(01), 37-43. http://geochina.cgs.gov.cn/geochina/ch/reader/view_abstract.aspx?file_no=20020106&flag=1
贺电, & 李江海. (2009). 库车前陆冲断带秋里塔格构造带水系形态与褶皱生长. 地质学报, 83(08), 1074-1082. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=20090070&st=alljournals
胡斌, 齐丽军, 张辉, 冯全东, & 方江雪. (2006). 平衡剖面在焉耆盆地构造演化分析中的应用. 西南石油学院学报(04), 17-21+102. http://journal15.magtechjournal.com/Jwk_xnzk/CN/10.3863/j.issn.1000-2634.2006.04.005
胡建中, 谭应佳, 张平, & 张艳秋. (2008). 塔里木盆地西南缘山前带逆冲推覆构造特征. 地学前缘(02), 222-231. http://www.earthsciencefrontiers.net.cn/CN/Y2008/V15/I2/0
胡玲, 胡道功, 何登发, & 温长顺. (2004). 准噶尔盆地南缘霍尔果斯和吐谷鲁断裂带断层泥分形特征与断裂活动关系. 地学前缘(04), 519-525. http://www.earthsciencefrontiers.net.cn/CN/Y2004/V11/I4/0
胡望水, 陈毓遂, 肖安成, 刘学锋, & 刘生国. (1997). 塔西南坳陷构造演化与含油气系统. 石油勘探与开发(01), 14-17+92. http://www.cqvip.com/qk/90664x/199701/2459901.html
胡望水, 陈毓遂, 肖安成, 刘学锋, & 刘生国. (1997). 塔西南坳陷主要断裂带构造特征及其控油作用. 新疆石油地质(03), 201-207+191. http://www.zgxjpg.com/CN/Y1997/V18/I3/201
黄伟亮, 杨晓平, 李安, & 张玲. (2011). 和静逆断裂-褶皱带的第四纪构造地貌与侧向扩展. 地震地质, 33(04), 765-776. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2011.04.003
黄泽光, 翟常博, & 徐宏节. (2002). 塔里木盆地塔西南与库车坳陷形变特征的对比分析. 石油实验地质(06), 501-505+516. http://www.sysydz.net/cn/article/doi/10.11781/sysydz200206501
贾承造. (2009). 环青藏高原巨型盆山体系构造与塔里木盆地油气分布规律. 大地构造与成矿学, 33(01), 1-9. http://www.ddgzyckx.com/oa/DArticle.aspx?type=view&id=200901001
贾承造, 陈汉林, 杨树锋, 卢华复, & 周宇章. (2003). 库车坳陷晚白垩世隆升过程及其地质响应. 石油学报(03), 1-5+15. http://www.syxb-cps.com.cn/CN/10.7623/syxb200303001
贾东, 卢华复, 魏东涛, 陈竹新, 贾承造, & 魏国齐. (2002). 断弯褶皱和断展褶皱中的油气运移聚集行为. 南京大学学报(自然科学版)(06), 747-755. http://www.cqvip.com/qk/95251x/200206/7121161.html
贾东, 卢华夏, 蔡东升, & 陈楚铭. (1997). 塔里木盆地北缘库车前陆褶皱──冲断构造分析. 大地构造与成矿学(01), 1-8. http://www.ddgzyckx.com/oa/DArticle.aspx?type=view&id=199701001
金之钧, & 吕修祥. (2000). 塔西南前陆盆地油气资源与勘探对策. 石油与天然气地质(02), 110-113+117. http://ogg.pepris.com/CN/10.11743/ogg20000204
康竹林,翟光明. (1995). 中国的前陆盆地与油气聚集. 石油学报(04), 1-8. http://www.syxb-cps.com.cn/CN/10.7623/syxb199504001
雷刚林, 廖林, 师俊, 杜治利, 罗俊成, 程晓敢, & 陈汉林. (2011). 西昆仑中新世晚期—上新世早期隆升活动的沉积记录:来自塔西南棋北3井沉积物重矿物的证据. 地质学报, 85(08), 1334-1342. www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=2010368&st=alljournals
黎敦朋, 赵越, 胡健民, 万景林, 李新林, 周小康, . . . 裴军令. (2007). 青藏高原西北缘高原面与陡坡地貌形成过程的裂变径迹热年代学约束. 岩石学报(05), 900-910. http://www.ysxb.ac.cn/ysxb/ch/reader/view_abstract.aspx?flag=1&file_no=20070586&journal_id=ysxb
黎敦朋, 赵越, 刘健, 潘燕兵, 裴军令, & 何哲峰. (2010). 青藏高原西北缘晚新生代构造变形研究. 地质学报, 84(03), 293-310. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=20080160&st=alljournals
李安, 冉勇康, 刘华国, & 徐良鑫. (2016). 西南天山柯坪推覆系西段全新世构造活动特征和古地震. 地球科学进展, 31(04), 377-390. http://www.adearth.ac.cn/CN/10.11867/j.issn.1001-8166.2016.04.0377.
李安, 冉勇康, 徐良鑫, 刘华国, & 李彦宝. (2011). 西南天山东柯坪推覆系古地震初步研究. 地震地质, 33(04), 752-764. https://www.dzdz.ac.cn/CN/article/advancedSearchResult.do
李安, 杨晓平, 黄伟亮, & 伊力亚尔. (2011). 焉耆盆地北缘哈尔莫敦背斜区的活动断裂及其形成机制. 地震地质, 33(04), 789-803. https://www.dzdz.ac.cn/CN/article/advancedSearchResult.do
李安, 杨晓平, 黄伟亮, & 伊力亚尔. (2012). 焉耆盆地北缘和静逆断裂-褶皱带第四纪变形. 地震地质, 34(02), 240-253. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2012.02.004
李本亮, 管树巍, 陈竹新, Shaw, J. H., 雷永良, 王丽宁, & 赵星. (2012). 楔形构造在山前冲断构造位移量消减中的作用——以准噶尔盆地南缘为例. 地质学报, 86(06), 890-897. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=2010244&st=alljournals
李本亮, 贾承造, 庞雄奇, 管树巍, 杨庚, 石昕, & 李传新. (2007). 环青藏高原盆山体系内前陆冲断构造变形的空间变化规律. 地质学报(09), 1200-1207. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=200709139&st=alljournals
李传新, & 郭召杰. (2011). 晚新生代天山北缘构造变形定量研究. 地质科学, 46(03), 709-722. http://www.dzkx.org/article/id/geology_9173
李丹梅, 汤达祯, 邢卫新, 林文姬, 陶树, & 张松航. (2008). 塔西南前陆冲断带油气成藏地质条件的分段性. 地学前缘(02), 178-185. http://www.earthsciencefrontiers.net.cn/CN/Y2008/V15/I2/0
李德威, 夏义平, & 徐礼贵. (2009). 大陆板内盆山耦合及盆山成因——以青藏高原及周边盆地为例. 地学前缘, 16(03), 110-119. http://www.earthsciencefrontiers.net.cn/CN/Y2009/V16/I3/110
李海兵, 杨经绥, 许志琴, 孙知明, TAPPONNIER, P., WOERD, J. V. D., & MERIAUX, A.-S. (2006). 阿尔金断裂带对青藏高原北部生长、隆升的制约. 地学前缘(04), 59-79. http://www.earthsciencefrontiers.net.cn/CN/Y2006/V13/I4/0
李建华, 张家声, & 单新建. (2002). 西昆仑—西南天山地区断裂活动性研究. 地质学报(03), 347-353+433-434. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=20020372&st=alljournals
李江海, 蔡振忠, 罗春树, & 耿玉海. (2007). 塔拉斯-费尔干纳断裂带南端构造转换及其新生代区域构造响应. 地质学报(01), 23-31. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=20070104&st=alljournals
李世琴, 汪新, & 陈宁华. (2009). 南天山库车秋里塔格中段构造结变形特征和变形机理. 地质科学, 44(03), 945-956. http://www.dzkx.org/article/id/geology_8361
李涛, & 陈杰. (2014). 利用河流阶地限定活动逆断层相关褶皱晚第四纪变形机制和速率:方法与认识. 地震地质, 36(02), 478-488. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2014.02.016
李涛, 陈杰, 黄明达, & 余松. (2009). 逆断层型地震地表破裂带滑动矢量计算方法探讨——以汶川地震为例. 第四纪研究, 29(03), 524-534. http://www.dsjyj.com.cn/article/doi/10.3969/j.issn.1001-7410.2009.03.13
李涛, 陈杰, & 肖伟鹏. (2013). 帕米尔-天山对冲带明尧勒背斜西南倾伏端晚第四纪褶皱变形. 地震地质, 35(02), 234-246. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2013.02.004
李涛, 陈杰, & 肖伟鹏. (2014). 滑脱褶皱陡坎的变形特征和运动学模型:以帕米尔-南天山前陆地区明尧勒背斜为例. 地震地质, 36(03), 677-691. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2014.03.011
李涛, 陈杰, 肖伟鹏, W, B. D., J, T., & 杨晓东. (2011). 西南天山前缘乌拉根背斜南翼逆断层的发现及其地质意义. 地震地质, 33(02), 277-288. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2011.02.003
李涛, 陈杰, 肖伟鹏, W, B. D., 黄明达, & J, T. (2011). 利用变形河流阶地限定帕米尔北缘木什背斜的缩短、隆升和侧向扩展. 地震地质, 33(02), 308-322. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2011.02.005
李向东, & 王克卓. (2000). 塔里木盆地西南及邻区特提斯格局和构造意义. 新疆地质(02), 113-120. http://www.alljournals.cn/view_abstract.aspx?pcid=E62459D214FD64A3C8082E4ED1ABABED5711027BBBDDD35B&cid=621CF755B1A341E5&jid=8627C489C8D71CC68218662948F793F1&aid=76853F16369D5E58&yid=9806D0D4EAA9BED3
李向东, & 王克卓. (2003). 帕米尔隆升过程中地壳的一种重要缩短机制——以齐姆根构造转换域为例. 新疆地质(01), 9-15. http://www.alljournals.cn/view_abstract.aspx?pcid=E62459D214FD64A3C8082E4ED1ABABED5711027BBBDDD35B&cid=621CF755B1A341E5&jid=8627C489C8D71CC68218662948F793F1&aid=AA664E5F8F4DFBBB&yid=D43C4A19B2EE3C0A
李岩峰, 曲国胜, & 张进. (2007). 弧形构造研究进展. 地球科学进展(07), 708-715. http://www.adearth.ac.cn/CN/10.11867/j.issn.1001-8166.2007.07.0708
李有利, 谭利华, 段烽军, & 杨景春. (2000). 甘肃酒泉盆地河流地貌与新构造运动. 干旱区地理(04), 304-309. http:// doi.org/10.13826/j.cnki.cn65-1103/x.2000.04.003
李曰俊, 杨海军, 赵岩, 罗俊成, 郑多明, & 刘亚雷. (2009). 南天山区域大地构造与演化. 大地构造与成矿学, 33(01), 94-104. http://www.ddgzyckx.com/oa/DArticle.aspx?type=view&id=200901012
梁瀚, 杜治利, 王宇, & 王易斌. (2012). 西昆仑山前东段新生代褶皱冲断带及其锥形楔机制. 地质科学, 47(03), 808-823. http://www.dzkx.org/article/id/geology_10817
梁瀚, 汪新, 陈伟, & 王宇. (2014). 西昆仑山前和田-柯克亚挤压构造带新生代变形时序及其地质意义. 大地构造与成矿学, 38(01), 27-37. http://www.ddgzyckx.com/oa/DArticle.aspx?type=view&id=201401003
廖林, 陈汉林, 程晓敢, 林秀斌, 赵学钦, 姚琪, . . . 白琰. (2012). 帕米尔东北缘新生代隆升活动:来自奥依塔格剖面砾石统计的证据. 地球科学(中国地质大学学报), 37(04), 791-800+803-804+801-802. http://www.earth-science.net/article/doi/10.3799/dqkx.2012.088
廖林, 程晓敢, 王步清, 陈汉林, 罗俊成, & 师骏. (2010). 塔里木盆地西南缘中生代沉积古环境恢复. 地质学报, 84(08), 1195-1207. http://www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=2010003&st=alljournals
廖林, 王步清, 程晓敢, 雷刚林, 陈汉林, & 姚琪. (2012). 帕米尔东北缘冲断带新生代构造变形特征及油气控制作用. 中国矿业大学学报, 41(05), 776-782. 帕米尔东北缘冲断带新生代构造变形特征及油气控制作用 (wanfangdata.com.cn)
刘聃, 陈汉林, 林秀斌, WYRWOLL, K.-H., BATT, G. E., 程晓敢, . . . 王芳. (2012). 南天山西部山前新生代晚期三期构造活动:来自乌鲁克恰提剖面砾石统计的证据. 岩石学报, 28(08), 2414-2422. http://www.ysxb.ac.cn/ysxb/ch/reader/view_abstract.aspx?flag=1&file_no=20120810&journal_id=ysxb
刘栋梁, 李海兵, 潘家伟, Marie-Luce, C., 裴军令, 孙知明, . . . 许伟. (2011). 帕米尔东北缘-西昆仑的构造地貌及其构造意义. 岩石学报, 27(11), 3499-3512. http://www.ysxb.ac.cn/ysxb/ch/reader/view_abstract.aspx?flag=1&file_no=20111128&journal_id=ysxb
刘洁, 曲国胜, 童晓光, 宋惠珍, 周庆, & 张宁. (2004). 库车坳陷深浅构造变形与地震关系浅析. 地震地质(02), 236-247. https://www.dzdz.ac.cn/CN/Y2004/V26/I2/236
刘亢, 曲国胜, & 许华明. (2008). 前陆盆地构造作用的沉积响应. 新疆石油地质(06), 778-781. http://www.alljournals.cn/view_abstract.aspx?pcid=5B3AB970F71A803DEACDC0559115BFCF0A068CD97DD29835&cid=E8CFCA71B77A2FF3&jid=15525F022883C1E0C6EF7372E0943887&aid=E8D614F97B3943C33BA38AEF25839E6F&yid=67289AFF6305E306
刘浪涛, 陈杰, & 李涛. (2017). 帕米尔、南天山及其会聚带现代河流沉积物碎屑锆石U-Pb测年. 地震地质, 39(03), 497-516. https://www.dzdz.ac.cn/CN/10.3969/j.issn.0253-4967.2017.03.005
刘生国, 肖安成, & 胡望水. (2001). 塔西南坳陷西南缘构造类型与圈闭特征. 西安石油学院学报(自然科学版)(02), 1-4+9-5. http://www.alljournals.cn/view_abstract.aspx?pcid=01BA20E8BA813E1908F3698710BBFEFEE816345F465FEBA5&cid=96E6E851B5104576C2DD9FC1FBCB69EF&jid=6496335D3E4FD2AA8F847CF5BCEC32D3&aid=CF5694424BAA7034&yid=14E7EF987E4155E6
刘胜, 邱斌, 陈新安, 李勇, 赵卫东, 张现军, & 郑亚芳. (2006). 塔里木盆地西端中生界沉积环境与油气地质特征. 新疆石油地质(01), 10-14. http://www.alljournals.cn/view_abstract.aspx?pcid=5B3AB970F71A803DEACDC0559115BFCF0A068CD97DD29835&cid=E8CFCA71B77A2FF3&jid=15525F022883C1E0C6EF7372E0943887&aid=2C6B7FF7F0BDFD9E&yid=37904DC365DD7266
刘胜, 邱斌, 尹宏, 李建立, 翟胜敏, & 李文华. (2005). 西昆仑山前乌泊尔逆冲推覆带构造特征. 石油学报(06), 16-19. http://www.syxb-cps.com.cn/CN/article/advancedSearchResult.do
刘胜, 汪新, 伍秀芳, & 邱斌. (2004). 塔西南山前晚新生代构造生长地层与变形时代. 石油学报(05), 24-28. http://www.syxb-cps.com.cn/CN/article/advancedSearchResult.do
刘学锋,陈毓遂,肖安成,胡望水,刘生国. (1995). 塔西南坳陷北缘新生代构造形变特征. 石油与天然气地质(03), 233-239. http://ogg.pepris.com/CN/10.11743/ogg19950306
刘训, 王军, 张招崇, & 王永. (2002). 第四纪磨拉石组分与青藏高原隆升的关系——对新疆叶城柯克亚剖面第四系砾石成分测量结果的认识. 地质通报(11), 759-763. http://dzhtb.cgs.cn/gbc/ch/reader/view_abstract.aspx?file_no=2002011170&flag=1
刘志宏, 卢华复, 贾承造, & 雷刚林. (1999). 库车再生前陆逆冲带造山运动时间的厘定. 地学前缘(04), 236. http://www.earthsciencefrontiers.net.cn/CN/Y1999/V6/I4/0
刘志宏, 卢华复, 贾承造, 雷刚林, 陈楚铭, 王国强, & 范湘涛. (2000). 库车再生前陆逆冲带造山运动时间、断层滑移速率的厘定及其意义. 石油勘探与开发(01), 35-38+34+13. http://www.alljournals.cn/view_abstract.aspx?pcid=5B3AB970F71A803DEACDC0559115BFCF0A068CD97DD29835&cid=E8CFCA71B77A2FF3&jid=F042E92CF544940B230D1CA2D0B3FB27&aid=DF6245FF79048617E4957864A345DCE8&yid=9806D0D4EAA9BED3
刘志宏, 卢华复, 贾承造, 雷刚林, 齐英民, & 谢会文. (2001). 库车再生前陆盆地的构造与油气. 石油与天然气地质(04), 297-303. http://ogg.pepris.com/CN/10.11743/ogg20010403
刘志宏, 卢华复, 李西建, 贾承造, 雷刚林, 陈楚铭, . . . 范湘涛. (2000). 库车再生前陆盆地的构造演化. 地质科学(04), 482-492. http://www.dzkx.org/article/id/geology_9742
卢华复, 陈楚铭, 刘志宏, 贾东, 王国强, & 贾承造. (2000). 库车再生前陆逆冲带的构造特征与成因. 石油学报(03), 18-24+108. http://www.syxb-cps.com.cn/CN/10.7623/syxb200003004
卢华复, 贾承造, 贾东, 陈楚铭, 刘志宏, 王国强, & 王胜利. (2001). 库车再生前陆盆地冲断构造楔特征. 高校地质学报(03), 257-271. https://geology.nju.edu.cn/CN/Y2001/V7/I3/257
卢华复, 贾东, 陈楚铭, 刘志宏, 王国强, & 贾承造. (1999). 库车新生代构造性质和变形时间. 地学前缘(04), 215-221. http://www.earthsciencefrontiers.net.cn/CN/Y1999/V6/I4/0
卢华复, 王胜利, & 贾承造. (2007). 准噶尔南缘新生代断裂的形成机制. 地学前缘(04), 168-174. http://www.earthsciencefrontiers.net.cn/CN/Y2007/V14/I4/0
卢华复, 王胜利, 贾东, 王良书, & 刘绍文. (2005). 塔里木盆地与天山山脉晚新生代盆山耦合机制. 高校地质学报(04), 493-503. https://geology.nju.edu.cn/CN/Y2005/V11/I4/493
卢华复, 王胜利, 印栋豪, 阎福礼, 陈剑, J.Suppe, & A.Hubert-Ferrari. (2002). 天山中段南麓的第四纪褶皱作用. 科学通报(21), 1675-1679+1684-1686. 天山中段南麓的第四纪褶皱作用 (sciengine.com)
罗金海, & 何登发. (1999). 西昆仑北缘冲断带和田段的构造特征. 石油与天然气地质(03), 237-241. http://ogg.pepris.com/CN/10.11743/ogg19990313
罗金海, 雷刚林, 刘良, 肖中尧, 魏红兴, & 车自成. (2009). 阿尔金构造带对塔东南油气地质条件的制约. 大地构造与成矿学, 33(01), 76-85. http://www.ddgzyckx.com/oa/DArticle.aspx?type=view&id=200901010
罗金海, 周新源, 邱斌, 杨芝林, 尹宏, & 李建立. (2004). 塔拉斯——费尔干纳断裂对喀什凹陷的控制作用. 新疆石油地质(06), 584-587. http://www.alljournals.cn/view_abstract.aspx?pcid=5B3AB970F71A803DEACDC0559115BFCF0A068CD97DD29835&cid=E8CFCA71B77A2FF3&jid=15525F022883C1E0C6EF7372E0943887&aid=31949671B7CC7AFA&yid=D0E58B75BFD8E51C
罗金海, 周新源, 邱斌, 杨芝林, 尹宏, & 尚新璐. (2004). 塔里木盆地西部喀什凹陷褶皱冲断带的构造特征. 石油与天然气地质(02), 199-203. http://ogg.pepris.com/CN/10.11743/ogg20040214
罗开平, & 范小林. (2003). 塔西南英吉沙地区构造地质特征. 天然气工业(06), 37-41+176-177. http://trqgy.paperonce.org/#/digest?ArticleID=6998
罗梦, 朱文斌, 郑碧海, & 朱晓青. (2012). 库车盆地中新生代构造演化:磷灰石裂变径迹证据. 地球科学(中国地质大学学报), 37(05), 893-902. http://www.earth-science.net/en/article/doi/10.3799/dqkx.2012.098
吕红华, 李有利, 刘运明, 司苏沛, & 赵洪壮. (2008). 新疆塔西河地区8Ma以来沉积环境演化及其构造意义. 第四纪研究(02), 243-252. http://www.dsjyj.com.cn/CN/article/downloadArticleFile.do?attachType=PDF&id=8871
吕红华, 李有利, 南峰, & 司苏沛. (2008). 天山北麓黄土发育特征及形成年代. 地理科学(03), 375-379. http://geoscien.neigae.ac.cn/CN/10.13249/j.cnki.sgs.2008.03.375
吕红华, 李有利, 南峰, 司苏沛, 刘运明, 钱蟒, & 赵洪壮. (2008). 天山北麓河流阶地序列及形成年代. 地理学报(01), 65-74. http://www.geog.com.cn/CN/10.11821/xb200801007
吕红华, & 周祖翼. (2010). 前陆盆地陆源沉积序列的特征与成因机制. 地球科学进展, 25(07), 706-714. http://www.adearth.ac.cn/CN/10.11867/j.issn.1001-8166.2010.07.0706
彭守涛, 李忠, 黄宝春, 刘涛, & 王清晨. (2005). 库车坳陷北部白垩系磁性地层划分. 科学通报(19), 90-98. 库车坳陷北部白垩系磁性地层划分 (sciengine.com)
马华东,杨子江.(2003).塔里木盆地西南新生代盆地演化特征. 新疆地质(01),92-95. 塔里木盆地西南新生代盆地演化特征 (wanfangdata.com.cn)
马宗晋,曲国胜,李涛,赵瑞斌 & 许建东.(2008).准噶尔盆地盆山构造耦合与分段性. 新疆石油地质(03),271-277.
http://www.zgxjpg.com/CN/
毛炜峄,孙本国,王铁,罗光明,张传荣 & 霍丽.(2006).近50年来喀什噶尔河流域气温、降水及径流的变化趋势. 干旱区研究(04),531-538. doi:10.13866/j.azr.2006.04.003. 近50年来喀什噶尔河流域气温、降水及径流的变化趋势 (wanfangdata.com.cn)
南峰,李有利,邱祝礼.(2005).新疆奎屯河流域山前河流地貌特征及演化. 水土保持研究(04),10-13. http://dx.chinadoi.cn/10.3969/j.issn.1005-3409.2005.04.004
潘家伟,李海兵,Jerome Van Der Woerd,孙知明,裴军令,Laurie Barrier & 司家亮.(2007).西昆仑山前冲断带晚新生代构造地貌特征. 地质通报(10),1368-1379. 西昆仑山前冲断带晚新生代构造地貌特征-Late Cenozoic morphotectonic features of the thrust belt in the front of the West Kunlun Mountains (cgs.cn)
潘家伟,李海兵,J.Vander Woerd,孙知明,裴军令,司家亮 & 邱祝礼.(2009).青藏高原西北部帕米尔东北缘构造地貌与活动构造研究. 第四纪研究(03),586-598. 青藏高原西北部帕米尔东北缘构造地貌与活动构造研究 (dsjyj.com.cn)
钱蟒,李有利,司苏沛,吕胜华 & 王怡然.(2012).新疆独山子的冲沟发育与断层新活动. 地理学报(05),681-688.
曲国胜,陈杰,陈新安,张兴林,李涛,尹军平,周洪清.(1998).西昆仑—帕米尔造山带及其北缘前陆盆地板内变形构造. 地质论评(04),419-429. doi:10.16509/j.georeview.1998.04.012. 西昆仑—帕米尔造山带及其北缘前陆盆地板内变形构造-Intraplate Deformation in the Front of the West Kunlun-Pamir Arcuate Orogenic Belt and the Southwest Tarim Foreland Basin (geojournals.cn)
曲国胜,李亦纲,陈杰,宁宝坤,李岩峰,李军,尹军平.(2003).柯坪塔格推覆构造几何学、运动学及其构造演化. 地学前缘(S1),142-152. http://dx.chinadoi.cn/10.3321/j.issn:1005-2321.2003.z1.021
曲国胜,张宁,刘洁,李亦纲,李岩峰.(2004).塔北隆起—库车坳陷区中新生代基底-盖层构造变形机理. 地质通报(02),113-119. 塔北隆起-库车坳陷区中新生代基底-盖层构造变形机理-Structural deformation mechanism of the Meso-Cenozoic basement and cover in the north Tarim uplift-Kuqa depression (cgs.cn)
曲国胜,李亦纲,张宁,李岩峰,陈杰,陈新安,尹军平,张兴林,Joseph CANEROT,Joachin DERAMOND,Jacques REY.(2004).塔里木西南缘(齐姆根弧)前陆构造及形成机理. 地质论评(06),567-576+668. doi:10.16509/j.georeview.2004.06.003. 塔里木西南缘(齐姆根弧)前陆构造及形成机理-A Study on the Foreland Structure of the Qimugen Arc in Southwest Tarim and Its Genetic Mechanism (geojournals.cn)
曲国胜,马宗晋,陈新发,李涛 & 张宁.(2009).论准噶尔盆地构造及其演化. 新疆石油地质(01),1-5. 论准噶尔盆地构造及其演化 (wanfangdata.com.cn)
尚新璐,陈新卫,吴超,罗金海.(2004).塔里木盆地西部喀什地区的新生代冲断构造. 地质科学(04),543-550+603. 塔里木盆地西部喀什地区的新生代冲断构造 (dzkx.org)
沈军,汪一鹏,赵瑞斌,陈杰,曲国胜.(2001).帕米尔东北缘及塔里木盆地西北部弧形构造的扩展特征. 地震地质(03),381-389. https://www.dzdz.ac.cn/CN/
沈忠悦,陈汉林,方大钧,丁敬海,张师本,黄智斌,李猛.(2004).塔里木盆地西南部同由路克剖面海相白垩系古地磁结果. 中国科学(D辑:地球科学)(08),712-720. 塔里木盆地西南部同由路克剖面海相白垩系古地磁结果 (sciengine.com)
史兴民,杨景春,李有利,南峰.(2004).天山北麓玛纳斯河河流阶地变形与新构造运动. 北京大学学报(自然科学版)(06),971-978. doi:10.13209/j.0479-8023.2004.140. 天山北麓玛纳斯河河流阶地变形与新构造运动 (pku.edu.cn)
史兴民,李有利 & 杨景春.(2007).玛纳斯河流域地貌初步研究. 四川师范大学学报(自然科学版)(03),406-410. 玛纳斯河流域地貌初步研究 (paperopen.com)
史兴民,李有利 & 杨景春.(2007).天山北麓褶皱丘陵的特征与演化. 水土保持研究(02),311-314. 天山北麓褶皱丘陵的特征与演化-《水土保持研究》 (paperonce.org)
史兴民,李有利,杨景春 & 南峰.(2008).新疆玛纳斯河山前地貌对构造活动的响应. 地质学报(02),281-288. www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=20080240&st=alljournals
舒良树,郭召杰,朱文斌,卢华复,王博.(2004).天山地区碰撞后构造与盆山演化. 高校地质学报(03),393-404. https://geology.nju.edu.cn/CN/
司家亮,李海兵,裴军令,孙知明,潘家伟 & 邱祝礼.(2011).塔里木盆地玛扎塔格第四纪沉积环境演变及构造学意义. 岩石学报(01),321-332. 塔里木盆地玛扎塔格第四纪沉积环境演变及构造学意义 (ysxb.ac.cn)
宋方敏,闵伟,韩竹军 & 徐锡伟.(2006).柯坪塔格推覆体的新生代变形与扩展. 地震地质(02),224-233. https://www.dzdz.ac.cn/CN/
宋方敏,闵伟,韩竹军 & 徐锡伟.(2007).南天山柯坪塔格推覆体前缘断裂活动性质及速率. 地震地质(02),272-281. https://www.dzdz.ac.cn/CN/
宋扬,胡建中,王瑞江,李瑞清,田斌 & 李世杰.(2011).帕米尔弧东段逆冲推覆构造特征. 现代地质(01),15-21. http://www.geoscience.net.cn/CN/
孙家振.(1991).前陆盆地逆冲断层类型与形成机制——以鄂尔多斯地块西缘和塔里木盆地北缘为例. 石油与天然气地质(04),406-416. 前陆盆地逆冲断层类型与形成机制——以鄂尔多斯地块西缘和塔里木盆地北缘为例 (pepris.com)
田勤俭,丁国瑜 & 郝平.(2006).南天山及塔里木北缘构造带西段地震构造研究. 地震地质(02),213-223. https://www.dzdz.ac.cn/CN/
万景林,王二七.(2002).西昆仑北部山前普鲁地区山体抬升的裂变径迹研究. 核技术(07),565-567. 核技术 (sinap.ac.cn)
汪新,贾承造,杨树锋,AureliaHubert-Ferrari,JohnSuppe.(2002).南天山库车冲断褶皱带构造变形时间——以库车河地区为例. 地质学报(01),55-63. www.geojournals.cn/dzxb/ch/reader/view_abstract.aspx?file_no=20020113&st=alljournals
汪新,贾承造,杨树锋.(2002).南天山库车褶皱冲断带构造几何学和运动学. 地质科学(03),372-384. 南天山库车褶皱冲断带构造几何学和运动学 (dzkx.org)
汪新,唐鹏程,谢会文,雷刚林 & 黄少英.(2009).库车坳陷西段新生代盐构造特征及演化. 大地构造与成矿学(01),57-65. doi:10.16539/j.ddgzyckx.2009.01.012. 库车坳陷西段新生代盐构造特征及演化-《大地构造与成矿学》 (ddgzyckx.com)
王浩然,陈杰,李涛,李跃华 & 张博譞.(2020).北天山前陆盆地前缘西湖背斜带第四纪褶皱作用. 地震地质(04),791-805. https://www.dzdz.ac.cn/CN/Y2020/V42/I4/791
王琼,王海涛,赵卫明 & 聂晓红.(2007).喀什—乌恰地区近年来强震活动平静的可能成因. 地震(02),99-111. 喀什—乌恰地区近年来强震活动平静的可能成因 (ief.ac.cn)
王胜利,CHENYan & 卢华复.(2008).天山北麓霍尔果斯背斜晚中新世以来翼旋转方式的生长. 科学通报(12),1414-1421.
王素华,钱祥麟.(2001).塔西南与塔吉克盆地新生代构造与油气聚集. 北京大学学报(自然科学版)(04),523-528. doi:10.13209/j.0479-8023.2001.096. 塔西南与塔吉克盆地新生代构造与油气聚集 (pku.edu.cn)
王彦斌,王永,刘训,傅德荣,王军,王世成.(2001).天山、西昆仑山中、新生代幕式活动的磷灰石裂变径迹记录. 中国区域地质(01),94-99. http://dx.chinadoi.cn/10.3969/j.issn.1671-2552.2001.01.018
王莹莹 & 丁文龙.(2015).塔里木盆地巴楚隆起断裂体系分析. 西部探矿工程(06),94-97. http://dx.chinadoi.cn/10.3969/j.issn.1004-5716.2015.06.028
王永,李德贵,王军,王彦斌.(2003).西昆仑山前晚新生代沉积岩磁组构及构造意义. 新疆地质(01),74-77. http://dx.chinadoi.cn/10.3969/j.issn.1000-8845.2003.01.012
魏占玉,何宏林,高伟,徐锡伟,甘卫军 & 卫蕾华.(2014).基于LiDAR数据开展活动断层填图的实验研究——以新疆独山子背斜-逆冲断裂带为例. 地震地质(03),794-813. https://www.dzdz.ac.cn/CN/Y2014/V36/I3/794
伍致中.(1996).塔里木盆地西部及邻区构造形成机制. 新疆石油地质(02). http://www.zgxjpg.com/CN/
伍致中,刘东海.(1996).塔里木盆地西南坳陷的形成演化. 新疆石油地质(03). http://www.zgxjpg.com/CN/
肖安成,贾承造,杨树锋,魏国齐,陈汉林,张春生.(2000).中国南天山西部冲断褶皱系前缘区的运动学特征. 沉积学报(03),439-444. doi:10.14027/j.cnki.cjxb.2000.03.019. 中国南天山西部冲断褶皱系前缘区的运动学特征 (cjxb.ac.cn)
肖安成,杨树锋,王清华,陈汉林,谢会文,李曰俊.(2002).塔里木盆地巴楚—柯坪地区南北向断裂系统的空间对应性研究. 地质科学(S1),64-72. 塔里木盆地巴楚隆起断裂系统主要形成时代的新认识 (dzkx.org)
肖安成,杨树锋,李曰俊,王清华,陈汉林.(2005).塔里木盆地巴楚-柯坪地区新生代断裂系统. 石油与天然气地质(01),78-85. http://ogg.pepris.com/CN/Y2005/V26/I1/78
肖安成,杨树锋,李曰俊,王清华,陈汉林,程晓敢.(2005).塔里木盆地巴楚隆起断裂系统主要形成时代的新认识. 地质科学(02),291-302. 塔里木盆地巴楚隆起断裂系统主要形成时代的新认识 (dzkx.org)
肖伟鹏,陈杰,李涛,李文巧 & Thompson J.(2011).帕米尔北缘木什背斜第四纪滑脱褶皱作用与北翼逆断裂的生长. 地震地质(02),289-307. https://www.dzdz.ac.cn/CN/Y2011/V33/I2/289
肖文交,方爱民,李继亮,周辉,BFWindley,袁超,陈汉林,张国成.(2003).西昆仑造山带复式增生楔的构造特征与演化. 新疆地质(01),31-36. http://dx.chinadoi.cn/10.3969/j.issn.1000-8845.2003.01.005
肖序常,刘训,高锐,罗照华.(2002).西昆仑及邻区岩石圈结构构造演化——塔里木南—西昆仑多学科地学断面简要报道. 地质通报(02),63-68. 西昆仑及邻区岩石圈结构构造演化——塔里木南—西昆仑多学科地学断面简要报道-Lithospheric structure and tectonic evolution of the West Kunlun and Its adjacent areas-Brief report on the South Tarim-West Kunlun Multidisciplinary geoscience transect (cgs.cn)
肖序常,王军.(2004).西昆仑—喀喇昆仑及其邻区岩石圈结构、演化中几个问题的探讨. 地质论评(03),285-294. doi:10.16509/j.georeview.2004.03.014. 西昆仑-喀喇昆仑及其邻区岩石圈结构、演化中几个问题的探讨-Discussion on the Lithospheric Structure and Evolution of the West Kunlun Mountains--Karakorum Mountains and Their Adjacent Areas (geojournals.cn)
谢会文,许旺松,王步清,黄智斌 & 陈汉林.(2012).新生代阿尔金断裂活动对周缘盆地构造变形的影响. 新疆石油地质(01),10-13. 新生代阿尔金断裂活动对周缘盆地构造变形的影响 (wanfangdata.com.cn)
谢晓安,胡素云,卢华复.(1998).探讨塔里木盆地巴楚断隆的正反转构造. 地质论评(01),1-6. doi:10.16509/j.georeview.1998.01.001. 探讨塔里木盆地巴楚断隆的正反转构造-Positive Inversion Structure in the Bachu Fault-Uplift in the Tarim Basin (geojournals.cn)
徐杰,周本刚,杨晓平,汪祥余,周庆,陈国光,冉洪流,刘占坡.(2003).1949年新疆库车7.4/级地震的地震构造条件. 地震地质(03),450-459. https://www.dzdz.ac.cn/CN/
徐锡伟,于贵华,陈桂华,李陈侠,张兰凤,Yann Klinger... & 刘静.(2007).青藏高原北部大型走滑断裂带近地表地质变形带特征分析. 地震地质(02),201-217. https://www.dzdz.ac.cn/CN/
阎福礼,卢华复,贾东,于际民.(2003).塔里木盆地库车坳陷中、新生代沉降特征探讨. 南京大学学报(自然科学版)(01),31-39. http://dx.chinadoi.cn/10.3321/j.issn:0469-5097.2003.01.004
杨庚,郭华.(2003).塔里木盆地西北缘柯坪逆冲构造带与巴楚隆起的叠加关系. 铀矿地质(01),1-7. http://dx.chinadoi.cn/10.3969/j.issn.1000-0658.2003.01.001
杨庚.(2003).塔里木西北缘北西向古隆起的存在及油气勘探前景. 新疆地质(02),157-162. http://dx.chinadoi.cn/10.3969/j.issn.1000-8845.2003.02.003
杨庚,石昕,贾承造,张君峰,张朝军,何登发... & 孙方源.(2008).塔里木盆地西北缘柯坪-巴楚地区皮羌断裂与色力布亚断裂空间关系. 铀矿地质(04),201-207. 塔里木盆地西北缘柯坪-巴楚地区皮羌断裂与色力布亚断裂空间关系 (briug.cn)
杨庚,李本亮,杨海军,陈竹新,王晓波,张朝军 & 雷永良.(2012).塔里木盆地巴楚隆起北缘阿恰基底卷入构造. 地质论评(01),32-40. doi:10.16509/j.georeview.2012.01.014. 塔里木盆地巴楚隆起北缘阿恰基底卷入构造-Basement Involved wedge shaped Structure of Aqia Fault in Northern Magin of Bachu Uplift in Northwestern Tarim Basin, Northwest China (geojournals.cn)
杨海军,李曰俊,冯晓军,郑民,张春莲 & 赵岩.(2007).塔里木盆地玛扎塔格构造带断裂构造分析. 地质科学(03),506-517. 塔里木盆地玛扎塔格构造带断裂构造分析 (dzkx.org)
杨海军,李曰俊,师骏,肖安成,黄少英,吴根耀... & 刘亚雷.(2010).南天山晚新生代褶皱冲断带构造特征. 第四纪研究(05),1030-1043. 南天山晚新生代褶皱冲断带构造特征 (dsjyj.com.cn)
杨景春,谭利华,李有利,段烽军.(1998).祁连山北麓河流阶地与新构造演化. 第四纪研究(03),229-235+235-237. 祁连山北麓河流阶地与新构造演化 (dsjyj.com.cn)
杨树锋,贾承造,陈汉林,魏国齐,程晓敢,贾东... & 郭召杰.(2002).特提斯构造带的演化和北缘盆地群形成及塔里木天然气勘探远景. 科学通报(S1),36-43.
杨树锋,陈汉林,程晓敢,肖安成,周宇章,卢华复,贾承造,魏国齐.(2003).南天山新生代隆升和去顶作用过程. 南京大学学报(自然科学版)(01),1-8. http://dx.chinadoi.cn/10.3321/j.issn:0469-5097.2003.01.001
杨树锋,陈立峰,肖中尧,罗俊成,陈汉林,王步清... & 廖林.(2009).塔里木盆地东南缘新生代断裂系统. 大地构造与成矿学(01),33-37. doi:10.16539/j.ddgzyckx.2009.01.008. 塔里木盆地东南缘新生代断裂系统-《大地构造与成矿学》 (ddgzyckx.com)
杨晓东,陈杰,李涛,李文巧,刘浪涛 & 杨会丽.(2014).塔里木西缘明尧勒背斜的弯滑褶皱作用与活动弯滑断层陡坎. 地震地质(01),14-27. https://www.dzdz.ac.cn/CN/Y2014/V36/I1/14
杨晓平,邓起东,冯先岳,张培震,徐锡伟,李军,赵瑞斌.(1997).中国新疆北天山的活动逆断裂褶皱带及其大地震的位置预测(英). 内陆地震(04),361-378. doi:10.16256/j.issn.1001-8956.1997.04.011. 中国新疆北天山的活动逆断裂褶皱带及其大地震的位置预测(英)-【维普期刊官网】- 中文期刊服务平台 (cqvip.com)
杨晓平,邓起东,张培震,徐锡伟,于贵华,冯先岳.(1998).北天山地区活动逆断裂-褶皱带构造与潜在震源区估计. 地震地质(03). https://www.dzdz.ac.cn/CN/
杨晓平,沈军.(2000).天山内部博罗可努断裂精河—阿拉山口段晚更新世以来的活动特征. 地震地质(03),305-315. 天山内部博罗可努断裂精河-阿拉山口段晚更新世以来的活动特征 (dzdz.ac.cn)
杨晓平,周本刚,李军,孙建宝.(2001).新疆南天山亚肯背斜晚更新世以来的隆起和缩短. 地震地质(04),501-509. https://www.dzdz.ac.cn/CN/
杨晓平,邓起东,P.Molnar,E.T.Brown,李军,B.C.Burchfiel,冯先岳.(2004).新疆天山南麓库尔楚西北冲洪积扇面的~(10)Be年代. 核技术(02),125-129. 核技术 (sinap.ac.cn)
杨晓平,冉勇康,程建武,陈立春 & 徐锡伟.(2006).柯坪推覆构造中的几个新生褶皱带阶地变形测量与地壳缩短. 中国科学.D辑:地球科学(10),905-913. 柯坪推覆构造中的几个新生褶皱带阶地变形测量与地壳缩短 (sciengine.com)
杨晓平,陈立春,李安,杜龙 & 邓起东.(2009).西南天山阿图什背斜晚第四纪的阶段性隆升. 地学前缘(03),160-170. http://www.earthsciencefrontiers.net.cn/CN/
杨晓平 & 冉洪流.(2010).活动推覆构造区潜在震源的边界和震级上限——以1902年阿图什8(1/4)级地震构造区为例. 震灾防御技术(02),145-156. 活动推覆构造区潜在震源的边界和震级上限——以1902年阿图什8(1/4)级地震构造区为例-【维普期刊官网】- 中文期刊服务平台 (cqvip.com)
杨晓平,李安 & 黄伟亮.(2012).天山北麓活动褶皱带晚第四纪时期隆升的差异性. 中国科学:地球科学(12),1877-1888. 天山北麓活动褶皱带晚第四纪时期隆升的差异性 (sciengine.com)
杨逸畴.(1990).克里雅河地貌的形成与演化. 干旱区地理(01),37-45. doi:10.13826/j.cnki.cn65-1103/x.1990.01.006. 检索结果-【维普期刊官网】- 中文期刊服务平台 (cqvip.com)
尹金辉,陈杰,郑勇刚,李锰,胡军.(2001).卡兹克阿尔特断裂带活动特征. 中国地震(02). http://dx.chinadoi.cn/10.3969/j.issn.1001-4683.2001.02.012
袁正文.(2003).焉耆盆地构造演化分析. 江汉石油学院学报(04),33-35+5. http://dx.chinadoi.cn/10.3969/j.issn.1000-9752.2003.04.012
张广良,张培震,闵伟 & 陈杰.(2006).逆冲-褶皱造山过程中生长地层的识别及应用. 地震地质(02),299-311. 逆冲-褶皱造山过程中生长地层的识别及应用 (dzdz.ac.cn)
张贵宾,高锐,肖序常.(2001).横过西昆仑和塔里木结合带的山隆盆降机制动力学模拟. 地球学报(06),541-546. 《地球学报》编辑部网站欢迎您! (cagsbulletin.com)
张国民,马宏生,王辉,王新岭.(2005).中国大陆活动地块边界带与强震活动. 地球物理学报(03),602-610. 中国大陆活动地块边界带与强震活动 (geophy.cn)
张进江,丁林.(2003).青藏高原东西向伸展及其地质意义. 地质科学(02),179-189. 青藏高原东西向伸展及其地质意义 (dzkx.org)
张培震,邓起东,杨晓平,彭斯震,徐锡伟,冯先岳.(1996).天山的晚新生代构造变形及其地球动力学问题. 中国地震(02). 天山的晚新生代构造变形及其地球动力学问题 (wanfangdata.com.cn)
张培震.(2003).天山及其前陆盆地的晚新生代构造变形. 科学通报(24),2499-2500. 天山及其前陆盆地的晚新生代构造变形 (sciengine.com)
张玉宾.(1999).青藏高原的崛起与塔西南坳陷的形成和演化. 新疆石油地质(01). http://www.zgxjpg.com/CN/
张招崇,肖序常,王军,王永.(2002).西昆仑山普鲁新生代火山岩中包体的发现及其地质意义. 地球科学(04),386-390. http://dx.chinadoi.cn/10.3321/j.issn:1000-2383.2002.04.005
赵洪壮,李有利 & 杨景春.(2009).北天山流域河长坡降指标与Hack剖面的新构造意义. 北京大学学报(自然科学版)网络版(预印本)(02),60-67. 北天山流域河长坡降指标与Hack剖面的新构造意义 (pku.edu.cn)
赵洪壮,李有利,杨景春 & 吕红华.(2009).基于DEM数据的北天山地貌形态分析. 地理科学(03),445-449. http://dx.chinadoi.cn/10.3969/j.issn.1000-0690.2009.03.023
赵洪壮,李有利,杨景春 & 吕红华.(2009).天山北麓河流纵剖面与基岩侵蚀模型特征分析. 地理学报(05),563-570. 天山北麓河流纵剖面与基岩侵蚀模型特征分析 (geog.com.cn)
赵洪壮,李有利,杨景春 & 司苏沛.(2009).天山北麓流域面积高度积分特征及其构造意义. 山地学报(03),285-292. 天山北麓流域面积高度积分特征及其构造意义-《山地学报》 (paperonce.org)
郑洪波,KatherineButcher,ChrisPowell.(2002).新疆叶城晚新生代山前盆地演化与青藏高原北缘的隆升——I地层学与岩石学证据. 沉积学报(02),274-281. 新疆叶城晚新生代山前盆地演化与青藏高原北缘的隆升——I地层学与岩石学证据 (cjxb.ac.cn)
郑洪波,Kutherine Butcher,Chris Powell.(2003).新疆叶城晚新生代山前盆地演化与青藏高原北缘的隆升——Ⅱ沉积相与沉积盆地演化. 沉积学报(01),46-51. 新疆叶城晚新生代山前盆地演化与青藏高原北缘的隆升——Ⅱ沉积相与沉积盆地演化 (cjxb.ac.cn)
郑来林,潘桂棠,金振民,耿全如.(2001).喜马拉雅造山带西构造结研究的启示. 地质论评(04),350-355. doi:10.16509/j.georeview.2001.04.004. 喜马拉雅造山带西构造结研究的启示-Preliminary Study of Western Himalayan Syntaxis and Its Enlightenments (geojournals.cn)
郑来林,金振民,潘桂棠,孙志民,耿全如.(2004).喜马拉雅造山带东、西构造结的地质特征与对比. 地球科学(03),269-277. 喜马拉雅造山带东-西构造结的地质特征与对比 (earth-science.net)
周本刚, 柳覃卓, & 张裕明. (1999). 天山北麓岩石漆显微层理层序的初步建立及其年代学意义. 地震地质, 21(4), 8. https://www.dzdz.ac.cn/CN/abstract/abstract9112.shtml
周辉,李继亮,侯泉林,肖文交,陈海泓.(1999).西昆仑库地大型韧性剪切带的厘定. 科学通报(16),1774-1777. 西昆仑库地大型韧性剪切带的厘定 (sciengine.com)
朱文斌,张志勇,舒良树,万景林,卢华复,王胜利... & 苏金宝.(2007).塔里木北缘前寒武基底隆升剥露史:来自磷灰石裂变径迹的证据. 岩石学报(07),1671-1682. 塔里木北缘前寒武基底隆升剥露史:来自磷灰石裂变径迹的证据 (ysxb.ac.cn)