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          <citation_list>
            <citation key="10.1016/j.epsl.2017.10.005_br0010">
              <author>Avouac</author>
              <first_page>381</first_page>
              <cYear>2015</cYear>
              <series_title>Treatise on Geophysics</series_title>
              <article_title>Mountain building: from earthquakes to geologic deformation</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0020">
              <journal_title>Nature</journal_title>
              <author>Beaumont</author>
              <volume>414</volume>
              <first_page>738</first_page>
              <cYear>2001</cYear>
              <doi provider="crossref">10.1038/414738a</doi>
              <article_title>Himalayan tectonics explained by extrusion of a low-viscosity crustal channel coupled to focused surface denudation</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0030">
              <journal_title>J. Metamorph. Geol.</journal_title>
              <author>Burg</author>
              <volume>23</volume>
              <first_page>75</first_page>
              <cYear>2005</cYear>
              <doi provider="crossref">10.1111/j.1525-1314.2005.00563.x</doi>
              <article_title>The role of viscous heating in Barrovian metamorphism of collisional orogens: thermomechanical models and application to the Lepontine Dome in the Central Alps</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0040">
              <journal_title>Spec. Pap., Geol. Soc. Am.</journal_title>
              <author>Burtman</author>
              <volume>281</volume>
              <first_page>1</first_page>
              <cYear>1993</cYear>
              <article_title>Geological and geophysical evidence for deep subduction of continental crust beneath the Pamir</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0050">
              <journal_title>Tectonics</journal_title>
              <author>Capitanio</author>
              <volume>33</volume>
              <first_page>2361</first_page>
              <cYear>2014</cYear>
              <doi provider="crossref">10.1002/2014TC003688</doi>
              <article_title>The dynamics of extrusion tectonics: insights from numerical modeling</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0060">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>Chen</author>
              <volume>121</volume>
              <first_page>3118</first_page>
              <cYear>2016</cYear>
              <doi provider="crossref">10.1002/2016JB012872</doi>
              <article_title>The role of lateral lithospheric strength heterogeneities in orogenic plateau growth: insights from 3-d thermo-mechanical modeling</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0070">
              <journal_title>Geology</journal_title>
              <author>Clark</author>
              <volume>28</volume>
              <first_page>703</first_page>
              <cYear>2000</cYear>
              <doi provider="crossref">10.1130/0091-7613(2000)28&lt;703:TOBTEM&gt;2.0.CO;2</doi>
              <article_title>Topographic ooze: building the eastern margin of Tibet by lower crustal flow</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0080">
              <journal_title>Geol. Soc. Am. Bull.</journal_title>
              <author>Cowgill</author>
              <volume>122</volume>
              <first_page>145</first_page>
              <cYear>2010</cYear>
              <doi provider="crossref">10.1130/B26520.1</doi>
              <article_title>Cenozoic right-slip faulting along the eastern margin of the Pamir salient, northwestern China</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0090">
              <journal_title>Lithos</journal_title>
              <author>Faccenda</author>
              <volume>103</volume>
              <first_page>257</first_page>
              <cYear>2008</cYear>
              <doi provider="crossref">10.1016/j.lithos.2007.09.009</doi>
              <article_title>Styles of post-subduction collisional orogeny: influence of convergence velocity, crustal rheology and radiogenic heat production</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0100">
              <journal_title>Phys. Earth Planet. Inter.</journal_title>
              <author>Gerya</author>
              <volume>214</volume>
              <first_page>35</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1016/j.pepi.2012.10.007</doi>
              <article_title>Three-dimensional thermomechanical modeling of oceanic spreading initiation and evolution</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0110">
              <journal_title>Tectonophysics</journal_title>
              <author>Gueydan</author>
              <volume>460</volume>
              <first_page>83</first_page>
              <cYear>2008</cYear>
              <doi provider="crossref">10.1016/j.tecto.2008.08.012</doi>
              <article_title>Continental rifting as a function of lithosphere mantle strength</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0120">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>Hacker</author>
              <volume>108</volume>
              <cYear>2003</cYear>
              <doi provider="crossref">10.1029/2001JB001129</doi>
              <article_title>Subduction factory 2. Are intermediate–depth earthquakes in subducting slabs linked to metamorphic dehydration reactions?</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0130">
              <journal_title>Pure Appl. Geophys.</journal_title>
              <author>Hobbs</author>
              <volume>124</volume>
              <first_page>309</first_page>
              <cYear>1986</cYear>
              <doi provider="crossref">10.1007/BF00875730</doi>
              <article_title>Earthquakes in the ductile regime?</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0140">
              <journal_title>Nat. Geosci.</journal_title>
              <author>John</author>
              <volume>2</volume>
              <first_page>137</first_page>
              <cYear>2009</cYear>
              <doi provider="crossref">10.1038/ngeo419</doi>
              <article_title>Generation of intermediate-depth earthquakes by self-localizing thermal runaway</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0150">
              <journal_title>Nature</journal_title>
              <author>Kelemen</author>
              <volume>446</volume>
              <first_page>787</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1038/nature05717</doi>
              <article_title>A periodic shear-heating mechanism for intermediate-depth earthquakes in the mantle</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0160">
              <journal_title>Geology</journal_title>
              <author>Király</author>
              <volume>44</volume>
              <first_page>715</first_page>
              <cYear>2016</cYear>
              <doi provider="crossref">10.1130/G37912.1</doi>
              <article_title>Subduction zone interaction: controls on arcuate belts</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0170">
              <author>Kirby</author>
              <first_page>195</first_page>
              <cYear>1996</cYear>
              <series_title>Subduction Top to Bottom, vol. 96</series_title>
              <article_title>Intermediate-depth intraslab earthquakes and arc volcanism as physical expressions of crustal and uppermost mantle metamorphism in subducting slabs</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0190">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>Kufner</author>
              <volume>461</volume>
              <first_page>127</first_page>
              <cYear>2017</cYear>
              <doi provider="crossref">10.1016/j.epsl.2016.12.043</doi>
              <article_title>Zooming into the Hindu Kush slab break-off: a rare glimpse on the terminal stage of subduction</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0180">
              <author>Kufner</author>
              <cYear>2016</cYear>
              <series_title>Lithospheric Structure and Seismotectonic Setting of the Hindu Kush, the Tajik–Afghan Basin and the Western Pamir from Analysis of Local- and Teleseismic Data</series_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0200">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>Kufner</author>
              <volume>435</volume>
              <first_page>171</first_page>
              <cYear>2016</cYear>
              <doi provider="crossref">10.1016/j.epsl.2015.11.046</doi>
              <article_title>Deep India meets deep Asia: lithospheric indentation, delamination and break-off under Pamir and Hindu Kush (Central Asia)</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0220">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>Li</author>
              <volume>301</volume>
              <first_page>65</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1016/j.epsl.2010.10.014</doi>
              <article_title>Flat versus steep subduction: contrasting modes for the formation and exhumation of high- to ultrahigh-pressure rocks in continental collision zones</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0210">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>Li</author>
              <volume>380</volume>
              <first_page>98</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1016/j.epsl.2013.08.034</doi>
              <article_title>Collision of continental corner from 3-d numerical modeling</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0230">
              <journal_title>Tectonophysics</journal_title>
              <author>Liao</author>
              <volume>531</volume>
              <first_page>50</first_page>
              <cYear>2014</cYear>
              <doi provider="crossref">10.1016/j.tecto.2014.01.020</doi>
              <article_title>Influence of lithospheric mantle stratification on craton extension: insight from two-dimensional thermo-mechanical modeling</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0240">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>Liao</author>
              <volume>122</volume>
              <first_page>592</first_page>
              <cYear>2017</cYear>
              <doi provider="crossref">10.1002/2016JB013398</doi>
              <article_title>Partitioning of crustal shortening during continental collision: 2-d thermomechanical modeling</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0250">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>Menant</author>
              <volume>442</volume>
              <first_page>93</first_page>
              <cYear>2016</cYear>
              <doi provider="crossref">10.1016/j.epsl.2016.03.002</doi>
              <article_title>3D numerical modeling of mantle flow, crustal dynamics and magma genesis associated with slab roll-back and tearing: the eastern Mediterranean case</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0260">
              <journal_title>Geology</journal_title>
              <author>Molnar</author>
              <volume>7</volume>
              <first_page>58</first_page>
              <cYear>1979</cYear>
              <doi provider="crossref">10.1130/0091-7613(1979)7&lt;58:SOCLSC&gt;2.0.CO;2</doi>
              <article_title>Subduction of continental lithosphere: some constraints and uncertainties</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0270">
              <journal_title>Nature</journal_title>
              <author>Moresi</author>
              <volume>508</volume>
              <first_page>245</first_page>
              <cYear>2014</cYear>
              <doi provider="crossref">10.1038/nature13033</doi>
              <article_title>Dynamics of continental accretion</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0280">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>Negredo</author>
              <volume>259</volume>
              <first_page>212</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1016/j.epsl.2007.04.043</doi>
              <article_title>Modeling the evolution of continental subduction processes in the Pamir–Hindu Kush region</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0290">
              <journal_title>Geochem. Geophys. Geosyst.</journal_title>
              <author>Pusok</author>
              <volume>16</volume>
              <first_page>1378</first_page>
              <cYear>2015</cYear>
              <doi provider="crossref">10.1002/2015GC005732</doi>
              <article_title>Development of topography in 3-D continental-collision models</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0300">
              <journal_title>Geology</journal_title>
              <author>Replumaz</author>
              <volume>44</volume>
              <first_page>943</first_page>
              <cYear>2016</cYear>
              <doi provider="crossref">10.1130/G38276.1</doi>
              <article_title>Asian collisional subduction: a key process driving formation of the Tibetan Plateau</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0310">
              <journal_title>Geol. Soc. Am. Bull.</journal_title>
              <author>Robinson</author>
              <volume>116</volume>
              <first_page>953</first_page>
              <cYear>2004</cYear>
              <doi provider="crossref">10.1130/B25375.1</doi>
              <article_title>Tectonic evolution of the northeastern Pamir: constraints from the northern portion of the Cenozoic Kongur Shan extensional system, western China</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0320">
              <journal_title>Geol. Soc. Am. Bull.</journal_title>
              <author>Robinson</author>
              <volume>119</volume>
              <first_page>882</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1130/B25981.1</doi>
              <article_title>Cenozoic evolution of the eastern Pamir: implications for strain-accommodation mechanisms at the western end of the Himalayan–Tibetan orogen</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0330">
              <journal_title>Tectonics</journal_title>
              <author>Rutte</author>
              <cYear>2017</cYear>
              <article_title>Building the Pamir–Tibet Plateau—crustal stacking, extensional collapse, and lateral extrusion in the Central Pamir: 1. Geometry and kinematics</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0340">
              <journal_title>Tectonics</journal_title>
              <author>Schmid</author>
              <volume>19</volume>
              <first_page>62</first_page>
              <cYear>2000</cYear>
              <doi provider="crossref">10.1029/1999TC900057</doi>
              <article_title>The arc of the western Alps in the light of geophysical data on deep crustal structure</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0350">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>Schneider</author>
              <volume>375</volume>
              <first_page>101</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1016/j.epsl.2013.05.015</doi>
              <article_title>Seismic imaging of subducting continental lower crust beneath the Pamir</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0360">
              <journal_title>Tectonics</journal_title>
              <author>Schurr</author>
              <volume>33</volume>
              <first_page>1501</first_page>
              <cYear>2014</cYear>
              <doi provider="crossref">10.1002/2014TC003576</doi>
              <article_title>Seismotectonics of the Pamir</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0370">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>Sippl</author>
              <volume>118</volume>
              <first_page>1438</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1002/jgrb.50128</doi>
              <article_title>Geometry of the Pamir–Hindu Kush intermediate-depth earthquake zone from local seismic data</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0390">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>Sobel</author>
              <volume>102</volume>
              <first_page>5043</first_page>
              <cYear>1997</cYear>
              <doi provider="crossref">10.1029/96JB03267</doi>
              <article_title>Thrusting and exhumation around the margins of the western Tarim basin during the India–Asia collision</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0380">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>Sobel</author>
              <volume>363</volume>
              <first_page>204</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1016/j.epsl.2012.12.009</doi>
              <article_title>Oceanic-style subduction controls late Cenozoic deformation of the Northern Pamir orogen</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0400">
              <journal_title>Tectonics</journal_title>
              <author>Stübner</author>
              <volume>32</volume>
              <first_page>948</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1002/tect.20057</doi>
              <article_title>The giant Shakhdara migmatitic gneiss dome, Pamir, India–Asia collision zone: 1. Geometry and kinematics</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0410">
              <journal_title>Science</journal_title>
              <author>Tapponnier</author>
              <volume>294</volume>
              <first_page>1671</first_page>
              <cYear>2001</cYear>
              <doi provider="crossref">10.1126/science.105978</doi>
              <article_title>Oblique stepwise rise and growth of the Tibet Plateau</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0420">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>Thielmann</author>
              <volume>359</volume>
              <first_page>1</first_page>
              <cYear>2012</cYear>
              <doi provider="crossref">10.1016/j.epsl.2012.10.002</doi>
              <article_title>Shear heating induced lithospheric-scale localization: does it result in subduction?</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0430">
              <journal_title>Geology</journal_title>
              <author>Thielmann</author>
              <volume>43</volume>
              <first_page>791</first_page>
              <cYear>2015</cYear>
              <doi provider="crossref">10.1130/G36864.1</doi>
              <article_title>Intermediate-depth earthquake generation and shear zone formation caused by grain size reduction and shear heating</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0440">
              <author>Tympel</author>
              <cYear>2015</cYear>
              <series_title>Numerical Modeling of the Cenozoic Pamir–Tien Shan Orogeny</series_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0450">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>van Hunen</author>
              <volume>302</volume>
              <first_page>27</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1016/j.epsl.2010.11.035</doi>
              <article_title>Continental collision and slab break-off: a comparison of 3-d numerical models with observations</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0460">
              <journal_title>Gondwana Res.</journal_title>
              <author>Vogt</author>
              <volume>25</volume>
              <first_page>494</first_page>
              <cYear>2014</cYear>
              <doi provider="crossref">10.1016/j.gr.2012.11.002</doi>
              <article_title>From oceanic plateaus to allochthonous terranes: numerical modelling</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0470">
              <journal_title>Lithosphere</journal_title>
              <author>Webb</author>
              <volume>9</volume>
              <first_page>637</first_page>
              <cYear>2017</cYear>
              <article_title>The Himalaya in 3d: slab dynamics controlled mountain building and monsoon intensification</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0480">
              <journal_title>Earth Planet. Sci. Lett.</journal_title>
              <author>Yamato</author>
              <volume>271</volume>
              <first_page>63</first_page>
              <cYear>2008</cYear>
              <doi provider="crossref">10.1016/j.epsl.2008.03.049</doi>
              <article_title>HP-UHP exhumation during slow continental subduction: self-consistent thermodynamically and thermomechanically coupled model with application to the Western Alps</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0490">
              <journal_title>Annu. Rev. Earth Planet. Sci.</journal_title>
              <author>Yin</author>
              <volume>28</volume>
              <first_page>211</first_page>
              <cYear>2000</cYear>
              <doi provider="crossref">10.1146/annurev.earth.28.1.211</doi>
              <article_title>Geologic evolution of the Himalayan–Tibetan orogen</article_title>
            </citation>
            <citation key="10.1016/j.epsl.2017.10.005_br0500">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>Zhao</author>
              <volume>121</volume>
              <first_page>8720</first_page>
              <cYear>2016</cYear>
              <doi provider="crossref">10.1002/2016JB013310</doi>
              <article_title>Continuity of the Alpine slab unraveled by high-resolution P wave tomography</article_title>
            </citation>
          </citation_list>
        </journal_article>
      </journal>
    </crossref>
  </doi_record>
</doi_records>