Wang J, Li Z X. 2003. History of Neoproterozoic rift basins in South China: Implications for Rodinia breakup. Precambrian Res, 122: 141-158
[10]
Wang Q, Li J W, Jian P, et al. 2005. Alkaline syenites in eastern Cathaysia (South China): Link to Permian-Triassic transtension. Earth Planet Sci Lett, 230: 339-354
[11]
Wang Y J, Fan W M, Zhao G C, et al. 2007a. Zircon U-Pb geochronology of gneissic rocks in the Yunkai massif and its implications on the Caledonian event in the South China Block. Gondwana Res, 12: 404-416
[12]
Wang Y J, Fan W M, Sun M, et al. 2007b. Geochronological, geochemical and geothermal constraints on petrogenesis of the Indosinian peraluminous granites in the South China Block: A case study in the Hunan Province. Lithos, 96: 475-502
[13]
Wang Y J, Zhang F F, Fan W M, et al. 2010. Tectonic setting of the South China Block in the early Paleozoic: Resolving intracontinental and ocean closure models from detrital zircon U-Pb geochronology. Tectonics, 29, doi: 10.1029/ 2010TC002750
[14]
Wang Y J, Wu C M, Zhang A M, et al. 2012. Kwangsian and Indosinian reworking of the eastern South China Block: Constraints on zircon U-Pb geochronology and metamorphism of amphibolite and granulite. Lithos, 150: 227-242
[15]
Wang Y J, Fan W M, Zhang G W, et al. 2013. Phanerozoic tectonics of the South China Block: Key observations and controversies. Gondwana Res, 23: 1273-1305
[16]
Xu Y G, Chung S L, Jahn B M, et al. 2001. Petrologic and geochemical constraints on the petrogenesis of Permian-Triassic Emeishan flood basalts in southwestern China. Lithos, 58: 145-168
[17]
Yao J L, Shu L S, Santosh M. 2011. Detrital zircon U-Pb geochronology, Hf-isotopes and geochemistry—New clues for the Precambrian crustal evolution of Cathaysia Block, South China. Gondwana Res, 20: 553-567, doi: 10.1016/j.gr.2011.01.005
[18]
Yao J L, Shu L S, Santosh M, et al. 2012. Precambrian crustal evolution of the South China Block and its realtion to supercontinent history: Constrainrs from U-Pb ages, Lu-Hf isotopes and REE geochemistry of zircons from sandstones and granodiorite. Precambrian Res, 208-211: 19-48
[19]
Yu J H, O''Reilly S Y, Wang L J, et al. 2010. Components and Episodic growth of Precambrian crust in the Cathaysia Block, South China: Evidence from U-Pb ages and Hf isotopes of zircons in Neoproterozoic sediments. Precambrian Res, 181: 97-114
[20]
Zhang Z C, Mao J W, Saunders A D, et al. 2009. Petrogenetic modeling of three mafic-ultramafic layered intrusions in the Emeishan large igneous province, SW China, based on isotopic and bulk chemical constraints. Lithos, 113: 369-392
[21]
Zhang Z J, Xu T, Zhao B. 2012. Systematic variations in seismic velocity and reflection in the crust of Cathaysia: New constraints on intraplate orogeny in the South China continent. Gondwana Res, doi: 10.1016/j.gr.2012.05.018
[22]
Zheng Y F, Xiao W J, Zhao G C. 2013. Introduction to tectonics of China. Gondwana Res, 23: 1189-1206
[23]
Zhou X M, Li W X. 2000. Origin of Late Mesozoic igneous rocks in Southeastern China: Implications for lithosphere subduction and underplating of mafic magmas. Tectonophysics, 326: 269-287
Artemieva I M. 2011. The Lithosphere-An Interdisciplinary Approach. London: Cambridge University Press. 1-733
[69]
Auyelio M A, Pena R E, Taguibao K J L. 2013. Sculpting the Philippine archipelago since the Cretaceous through rifting, oceanic spreading, subduction, obduction, collision and strike-slip faulting: Contribution to IGMA5000. J Asian Earth Sci, 72: 102-107
[70]
Bartolini A, Larson R L. 2001. Pacific microplate and the Pangea supercontinent in the Early to Middle Jurassic. Geology, 29: 735-738
[71]
Boulin J. 1991. Structures in Southwest Asia and evolution of the eastern Tethys. Tectonophysics, 96: 211-268
[72]
Burov N L, Tsenn M C. 1987. Flow properties of continental lithosphere. Tectonophysics, 36: 27-63
[73]
Charvet J, Shu L S, Shi Y S, et al. 1996. The building of south China: Collision of Yangtze and Cathaysia blocks, problems and tentative answers. J Southeast Asian Earth Sci, 13: 223-235
[74]
Charvet J, Shu L S, Faure M, et al. 2010. Structural development of the Lower Paleozoic belt of South China: Genesis of an intracontinental orogen. J Asian Earth Sci, 39: 309-330
[75]
Chen C H, Lee C Y, Hsieh P S, et al. 2008. Approaching the age problem for some metamorphosed Precambrian basement rocks and Phanerozoic granitic bodies in the Wuyishan area: The application of EMP monazite age dating. Geological Journal of China Universities, 14: 1-15
[76]
Condie K C. 2011. Earth as an Evolving Planetary System. 2nd ed. Amsterdam: Elsevier. 1-492
[77]
Dai B Z, Jiang S Y, Jiang Y H, et al. 2008. Geochronology, geochemistry and Hf-Sr-Nd isotopic compositions of Huziyan mafic xenoliths, southern Hunan Province, South China: Petrogenesis and implications for lower crust evolution. Lithos, 102: 65-87
[78]
Dong S W, Gao R, Yin A, et al. 2013. What drove continued continent-continent convergence after ocean closure? Insights from high-resolution seismic-reflection profiling across the Daba Shan in central China. Geology, 41: 671-674, doi: 10.1130/G34161.1
[79]
Faure M, Natal''in B. 1992. The geodynamic evolution of the Eastern Eurasian margin in Mesozoic times. Tectonophysics, 208: 397-411
[80]
Gao J, Klemd R, Long L L, et al. 2009. Adakitic signature formed by fractional crystallization: An interpretation for the Neoproterozoic meta-plagiogranites of the NE Jiangxi ophiolite mélange belt, South China. Lithos, 110: 277-293
[81]
Hilde T W, Uyede C S, Kroenke L. 1977. Evolution of the western Pacific and its Margin. Tectonophyiscs, 38: 145-165
[82]
Hsü K J, Sun S, Li J L, et al. 1988. Mesozoic overthrust tectonics in South China. Geology, 16: 418-421
[83]
Hsü K J, Li J L, Chen H H, et al. 1990. Tectonics of South China: Key to understanding west Pacific geology. Tectonophysics, 183: 9-39
[84]
Ji S C, Xia B. 2002. Rheology of Polyphase Earth Materials. Montreal: Polytechnic International Press. 1-260
[85]
Johnson M R W, Harley S L. 2012. Orogenesis: The Making of Mountains, Cambridge: Cambridge University Press. 1-388
[86]
Kazmin V G. 1991. Collision and rifting in the Tethys Ocean: Geodynamic implication. Tectonophysics, 196: 371-384
[87]
Kearey P, Klepeis K A, Vine F J. 2009. Global Tectonics. 3rd ed. Oxford: Wiley-Blackwell. 1-482
[88]
Kennett B L N, Iaffaldano G. 2012. Role of lithosphere in intra-continental deformation: Central Australia. Gondwana Res, doi://dx.doi.org/ 10.1016/j.gr.2012.10.010
[89]
Koppers A A P, Staudigel H, Duncan R A. 2003. High-resolution 40Ar/39Ar dating of the oldest oceanic basement basalts in the western Pacific basin. Geochem Geophys Geosyst, 4: 8914
[90]
Li S Z, Santosh M, Zhao G C, et al. 2012. Intracontinental deformation in a frontier of super-convergence: A perspective on the tectonic milieu of the South China Block. J Asian Earth Sci, 49: 311-327
[91]
Li Z X, Li X H, Kinney P D, et al. 1999. The break up of Rodinia: Did it start with a mantle plume beneath the South China. Earth Planet Sci Lett, 173: 171-181
[92]
Li Z X, Li X H. 2007. Formation of the 1300-km-wide intracontinental orogen and postorogenic magmatic province in Mesozoic South China: A flat-slab subduction model. Geology, 35: 179-182
[93]
Li Z X, Bogdanova S V, Collins A S, et al. 2008. Assembly, configuration, and break-up history of Rodinia: A synthesis. Precambrian Res, 160: 179-210
[94]
Li Z X, Li X H, Wartho J A, et al. 2010. Magmatic and metamorphic events during the Early Paleozoic Wuyi-Yunkai Orogeny, southeastern South China: New age constraints and P-T conditions. Geol Soc Am Bull, 122: 772-793
[95]
Liu S F, Heller P L, Zhang G W. 2003. Mesozoic basin development and tectonic evolution of the Dabieshan orogenic belt, central China. Tectonics, 22: 1038-1050, doi: 10.1029/2002TC001390
[96]
Liu S F, Steel R, Zhang G W. 2005. Mesozoic sedimentary basin development and tectonic implication, northern Yangtze Block, eastern China: Record of continent-continent collision. J Asian Earth Sci, 25: 9-27
[97]
Maruyama S, Isozaki Y, Kimura G, et al. 1997. Paleogeographic Maps of the Japanese Islands: Plate tectonic systhesis from 750 Ma to the present. Island Arc, 6: 121-142
[98]
Mckenzie D, Jackson J. 2002. Conditions for flow in the continental crust. Tectonics, 21: 1055
[99]
Nemcok M, Schamel S, Gayer R. 2005. Thrustbelts-Structural Architecture, Thermal Regimes and Petroleum System. New York: Cambridge University Press. 1-541
[100]
Northrup C, Royden L, Burchfoel B. 1995. Motion of the Pacific Plate relative to Eurasia and its potential relation to Cenozoic extension along the eastern Margin of Eurasia. Geology, 23: 719-722
[101]
Pollard D D. 2003. New Departure in Structural Geology and Tectonics. http://www.pangea.stanford.edu/~dpollard/NFS/March 23, 2003
[102]
Qiu Y M, Gao S, McNaughton N J, et al. 2000. First evidence of >3.2 Ga continental crust in the Yangtze Craton of South China and its implications for Archean crustal evolution and Phanerozoic tectonics. Geology, 28: 11-14
[103]
Ranali G. 1995. Rheology of the Earth. 2nd ed. New York: Chapman and Hall. 1-413
[104]
Sandford M, Hand M. 1998. Controls on the locus of intraplate deformation in central Australia. Earth Planet Sci Lett, 162: 97-110
[105]
Sandford M, McLaren S. 2002. Tectonic feedback the ordering of heat producing elements within the continental lithosphere. Earth Planet Sci Lett, 204: 133-150
[106]
Shu L S, Michel F, Jiang S Y, et al. 2006. SHRIMP zircon U-Pb age, litho- and biostratigraphic analyses of the Huaiyu Domain in South China— Evidence for a Neoproterozoic orogen, not Late Paleozoic-Early Mesozoic collision. Episodes, 29: 244-252
[107]
Shu L S, Faure M, Wang B, et al. 2008. Late Paleozoic-Early Mesozoic geological features of South China: Response to the Indosinian collision Event in Southeast Asia. C R Geosci, 340: 151-165, doi: 10.1016/j.crte.2007.10.010
[108]
Shu L S, Zhou X M, Deng P, et al. 2009. Mesozoic tectonic evolution of the southeast China block: New insights from basin analysis. J Asian Earth Sci, 34: 376-391
[109]
Shu L S, Faure M, Yu J H, et al. 2011. Geochronological and geochemical features of the Cathaysia block (South China): New evidence for the Neoproterozoic breakup of Rodinia. Precambrian Res, 187: 263-276
[110]
Smith A D. 2007. A plate model for Jurassic to Recent intraplate volcanism in the Pacific Ocean basin. In: Foulger G R, Jurdy D M. eds. Plates, Plumes, and Planetary Processes. Geol Soc Am (Spec Papers), 430: 471-495
[111]
Tapponnier P, Molnar P. 1976. Slip field thoery and large scale continental tectonics. Nature, 264: 319-324
[112]
Tollo R P, Bartholomew M J, Hibbard J P, et al. 2010. From Rodinia to Pangea: The Lithosphere Record of the Appalachian Region (GSA Memoir 206). Boulder: The Geological Society of America Inc. 1-95
[113]
Wan Y S, Liu D Y, Xu M, et al. 2007. SHRIMP U-Pb zircon geochronology and geochemistry of metavolcanic and metasedimentary rocks in Northwestern Fujian, Cathaysia block, China: Tectonic implications and the need to redefine lithostratigraphic units. Gondwana Res, 12: 166-183
[114]
Wan Y S, Liu D Y, Wilde S M, et al. 2010. Evolution of the Yunkai terrane, South China: Evidence from SHRIMP zircon U-Pb dating, geochemistry and Nd isotope. J Asian Earth Sci, 37: 140-153
[115]
Wang D Z, Shu L S, Faure M. 2001. Mesozoic magmatism and granitic dome in the Wugongshan Massif, Jiangxi Province and their genetical relationship to the tectonic events in southeast China. Tectonophysics, 339: 259-277
[116]
Wang D Z, Shu L S. 2012. Late Mesozoic basin and range tectonics and related igneous rock assemblages of Southeast China. Geosci Frontiers, 3: 109-124