<?xml version="1.0" encoding="UTF-8"?>
<doi_records>
  <doi_record owner="10.1038" timestamp="2023-05-18 19:06:28">
    <crossref>
      <journal>
        <journal_metadata language="en">
          <full_title>Nature Geoscience</full_title>
          <abbrev_title>Nature Geosci</abbrev_title>
          <issn media_type="print">1752-0894</issn>
          <issn media_type="electronic">1752-0908</issn>
        </journal_metadata>
        <journal_issue>
          <publication_date media_type="print">
            <month>9</month>
            <year>2015</year>
          </publication_date>
          <journal_volume>
            <volume>8</volume>
          </journal_volume>
          <issue>9</issue>
        </journal_issue>
        <journal_article publication_type="full_text">
          <titles>
            <title>Substantial glacier mass loss in the Tien Shan over the past 50 years</title>
          </titles>
          <contributors>
            <person_name contributor_role="author" sequence="first">
              <given_name>Daniel</given_name>
              <surname>Farinotti</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Laurent</given_name>
              <surname>Longuevergne</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Geir</given_name>
              <surname>Moholdt</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Doris</given_name>
              <surname>Duethmann</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Thomas</given_name>
              <surname>Mölg</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Tobias</given_name>
              <surname>Bolch</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Sergiy</given_name>
              <surname>Vorogushyn</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Andreas</given_name>
              <surname>Güntner</surname>
            </person_name>
          </contributors>
          <publication_date media_type="online">
            <month>8</month>
            <day>17</day>
            <year>2015</year>
          </publication_date>
          <publication_date media_type="print">
            <month>9</month>
            <year>2015</year>
          </publication_date>
          <pages>
            <first_page>716</first_page>
            <last_page>722</last_page>
          </pages>
          <publisher_item>
            <identifier id_type="pii">BFngeo2513</identifier>
          </publisher_item>
          <crossmark>
            <crossmark_version>1</crossmark_version>
            <crossmark_policy>10.1007/springer_crossmark_policy</crossmark_policy>
            <crossmark_domains>
              <crossmark_domain>
                <domain>link.springer.com</domain>
              </crossmark_domain>
            </crossmark_domains>
            <crossmark_domain_exclusive>false</crossmark_domain_exclusive>
            <custom_metadata>
              <assertion group_label="Article History" group_name="ArticleHistory" label="Received" name="received" order="1">10 August 2014</assertion>
              <assertion group_label="Article History" group_name="ArticleHistory" label="Accepted" name="accepted" order="2">21 July 2015</assertion>
              <assertion group_label="Article History" group_name="ArticleHistory" label="First Online" name="first_online" order="3">17 August 2015</assertion>
              <assertion group_label="Competing interests" group_name="EthicsHeading" name="Ethics" order="1">The authors declare no competing financial interests.</assertion>
              <program name="AccessIndicators">
                <license_ref applies_to="tdm">http://www.springer.com/tdm</license_ref>
              </program>
            </custom_metadata>
          </crossmark>
          <doi_data>
            <doi>10.1038/ngeo2513</doi>
            <timestamp>20191003160526881</timestamp>
            <resource content_version="vor">https://www.nature.com/articles/ngeo2513</resource>
            <collection property="crawler-based">
              <item crawler="iParadigms">
                <resource mime_type="application/pdf">http://www.nature.com/articles/ngeo2513.pdf</resource>
              </item>
            </collection>
            <collection property="text-mining">
              <item>
                <resource mime_type="application/pdf">http://www.nature.com/articles/ngeo2513.pdf</resource>
              </item>
              <item>
                <resource mime_type="text/html">http://www.nature.com/articles/ngeo2513</resource>
              </item>
            </collection>
          </doi_data>
          <citation_list>
            <citation key="BFngeo2513_CR1">
              <journal_title>J. Hydrol.</journal_title>
              <author>P Jansson</author>
              <volume>282</volume>
              <first_page>116</first_page>
              <cYear>2003</cYear>
              <doi>10.1016/S0022-1694(03)00258-0</doi>
              <unstructured_citation>Jansson, P., Hock, R. &amp; Schneider, T. The concept of glacier storage: A review. J. Hydrol. 282, 116–129 (2003).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR2">
              <journal_title>Wat. Resour. Res.</journal_title>
              <author>D Viviroli</author>
              <volume>43</volume>
              <first_page>W07447</first_page>
              <cYear>2007</cYear>
              <doi>10.1029/2006WR005653</doi>
              <unstructured_citation>Viviroli, D., Dürr, H., Messerli, B. &amp; Meybeck, M. Mountains of the world, water towers for humanity: Typology, mapping, and global significance. Wat. Resour. Res. 43, W07447 (2007).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR3">
              <journal_title>Science</journal_title>
              <author>W Immerzeel</author>
              <volume>328</volume>
              <first_page>1382</first_page>
              <cYear>2010</cYear>
              <doi>10.1126/science.1183188</doi>
              <unstructured_citation>Immerzeel, W., van Beek, L. &amp; Bierkens, M. Climate change will affect the Asian water towers. Science 328, 1382–1385 (2010).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR4">
              <journal_title>Science</journal_title>
              <author>T Bolch</author>
              <volume>336</volume>
              <first_page>310</first_page>
              <cYear>2012</cYear>
              <doi>10.1126/science.1215828</doi>
              <unstructured_citation>Bolch, T. et al. The state and fate of Himalayan Glaciers. Science 336, 310–314 (2012).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR5">
              <journal_title>Proc. Natl Acad. Sci. USA</journal_title>
              <author>G Kaser</author>
              <volume>107</volume>
              <first_page>20223</first_page>
              <cYear>2010</cYear>
              <doi>10.1073/pnas.1008162107</doi>
              <unstructured_citation>Kaser, G., Großhauser, M. &amp; Marzeion, B. Contribution potential of glaciers to water availability in different climate regimes. Proc. Natl Acad. Sci. USA 107, 20223–20227 (2010).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR6">
              <journal_title>Nature Geosci.</journal_title>
              <author>W Immerzeel</author>
              <volume>5</volume>
              <first_page>841</first_page>
              <cYear>2012</cYear>
              <doi>10.1038/ngeo1643</doi>
              <unstructured_citation>Immerzeel, W. &amp; Bierkens, M. Asia’s water balance. Nature Geosci. 5, 841–842 (2012).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR7">
              <unstructured_citation>AQUASTAT Database (Food and Agriculture Organization of the United Nations, accessed 14 July 2015); 
                    http://www.fao.org/nr/water/aquastat/data/query/index.html</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR8">
              <journal_title>Energy Policy</journal_title>
              <author>JP Dorian</author>
              <volume>34</volume>
              <first_page>544</first_page>
              <cYear>2006</cYear>
              <doi>10.1016/j.enpol.2005.11.009</doi>
              <unstructured_citation>Dorian, J. P. Central Asia: A major emerging energy player in the 21st century. Energy Policy 34, 544–555 (2006).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR9">
              <author>W Lutz</author>
              <cYear>2015</cYear>
              <volume_title>IIASA’s 2007 Probabilistic World Population Projections; IIASA World Population Program Online Data Base of Results 2008</volume_title>
              <unstructured_citation>Lutz, W., Sanderson, W. &amp; Scherbov, S. IIASA’s 2007 Probabilistic World Population Projections; IIASA World Population Program Online Data Base of Results 2008 (IIASA, accessed 14 July 2015); 
                    http://webarchive.iiasa.ac.at/Research/POP/proj07/index.html</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR10">
              <journal_title>Nature Clim. Change</journal_title>
              <author>A Sorg</author>
              <volume>2</volume>
              <first_page>725</first_page>
              <cYear>2012</cYear>
              <doi>10.1038/nclimate1592</doi>
              <unstructured_citation>Sorg, A., Bolch, T., Stoffel, M., Solomina, O. &amp; Beniston, M. Climate change impacts on glaciers and runoff in Tien Shan (Central Asia). Nature Clim. Change 2, 725–731 (2012).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR11">
              <journal_title>Glob. Planet. Change</journal_title>
              <author>K Unger-Shayesteh</author>
              <volume>110</volume>
              <first_page>4</first_page>
              <cYear>2013</cYear>
              <doi>10.1016/j.gloplacha.2013.02.004</doi>
              <unstructured_citation>Unger-Shayesteh, K. et al. What do we know about past changes in the water cycle of Central Asian headwaters? A review. Glob. Planet. Change 110, 4–25 (2013).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR12">
              <unstructured_citation>Glacier Mass Balance Bulletins Vols 1–12 (World Glacier Monitoring Service, 1988–2012); 
                    http://www.geo.uzh.ch/microsite/wgms/gmbb.html</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR13">
              <journal_title>Ann. Glaciol.</journal_title>
              <author>V Aizen</author>
              <volume>43</volume>
              <first_page>202</first_page>
              <cYear>2006</cYear>
              <doi>10.3189/172756406781812465</doi>
              <unstructured_citation>Aizen, V., Kuzmichenok, V., Surazakov, A. &amp; Aizen, E. Glacier changes in the central and northern Tien Shan during the last 140 years based on surface and remote-sensing data. Ann. Glaciol. 43, 202–213 (2006).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR14">
              <journal_title>Remote Sens. Environ.</journal_title>
              <author>T Pieczonka</author>
              <volume>130</volume>
              <first_page>233</first_page>
              <cYear>2013</cYear>
              <doi>10.1016/j.rse.2012.11.020</doi>
              <unstructured_citation>Pieczonka, T., Bolch, T., Junfeng, W. &amp; Shiyin, L. Heterogeneous mass loss of glaciers in the Aksu-Tarim Catchment (Central Tien Shan) revealed by 1976 KH-9 Hexagon and 2009 SPOT-5 stereo imagery. Remote Sens. Environ. 130, 233–244 (2013).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR15">
              <journal_title>Glob. Planet. Change</journal_title>
              <author>T Pieczonka</author>
              <volume>128</volume>
              <first_page>1</first_page>
              <cYear>2015</cYear>
              <doi>10.1016/j.gloplacha.2014.11.014</doi>
              <unstructured_citation>Pieczonka, T. &amp; Bolch, T. Region-wide glacier mass budgets and area changes for the Central Tien Shan between 1975 and 1999 using Hexagon KH-9 imagery. Glob. Planet. Change 128, 1–13 (2015).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR16">
              <journal_title>Nature</journal_title>
              <author>T Jacob</author>
              <volume>482</volume>
              <first_page>514</first_page>
              <cYear>2012</cYear>
              <doi>10.1038/nature10847</doi>
              <unstructured_citation>Jacob, T., Wahr, J., Pfeffer, W. &amp; Swenson, S. Recent contributions of glaciers and ice caps to sea level rise. Nature 482, 514–518 (2012).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR17">
              <journal_title>Science</journal_title>
              <author>A Gardner</author>
              <volume>340</volume>
              <first_page>852</first_page>
              <cYear>2013</cYear>
              <doi>10.1126/science.1234532</doi>
              <unstructured_citation>Gardner, A. et al. A reconciled estimate of glacier contributions to sea level rise: 2003 to 2009. Science 340, 852–857 (2013).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR18">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>S Yi</author>
              <volume>119</volume>
              <first_page>2504</first_page>
              <cYear>2014</cYear>
              <doi>10.1002/2013JB010860</doi>
              <unstructured_citation>Yi, S. &amp; Sun, W. Evaluation of glacier changes in high-mountain Asia based on 10 year GRACE RL05 models. J. Geophys. Res. 119, 2504–2517 (2014).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR19">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>E Schrama</author>
              <volume>119</volume>
              <first_page>6048</first_page>
              <cYear>2014</cYear>
              <doi>10.1002/2013JB010923</doi>
              <unstructured_citation>Schrama, E., Wouters, B. &amp; Rietbroek, R. A mascon approach to assess ice sheet and glacier mass balances and their uncertainties from GRACE data. J. Geophys. Res. 119, 6048–6066 (2014).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR20">
              <journal_title>J. Arid Environ.</journal_title>
              <author>E Lioubimtseva</author>
              <volume>73</volume>
              <first_page>963</first_page>
              <cYear>2009</cYear>
              <doi>10.1016/j.jaridenv.2009.04.022</doi>
              <unstructured_citation>Lioubimtseva, E. &amp; Henebry, G. Climate and environmental change in arid Central Asia: Impacts, vulnerability, and adaptation. J. Arid Environ. 73, 963–977 (2009).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR21">
              <journal_title>Science</journal_title>
              <author>B Tapley</author>
              <volume>305</volume>
              <first_page>503</first_page>
              <cYear>2004</cYear>
              <doi>10.1126/science.1099192</doi>
              <unstructured_citation>Tapley, B., Bettadpur, S., Ries, J., Thompson, P. &amp; Watkins, M. GRACE measurements of mass variability in the Earth system. Science 305, 503–505 (2004).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR22">
              <journal_title>J. Geodesy</journal_title>
              <author>H Save</author>
              <volume>86</volume>
              <first_page>695</first_page>
              <cYear>2012</cYear>
              <doi>10.1007/s00190-012-0548-5</doi>
              <unstructured_citation>Save, H., Bettadpur, S. &amp; Tapley, B. Reducing errors in the GRACE gravity solutions using regularization. J. Geodesy 86, 695–711 (2012).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR23">
              <journal_title>J. Geodyn.</journal_title>
              <author>H Zwally</author>
              <volume>34</volume>
              <first_page>405</first_page>
              <cYear>2002</cYear>
              <doi>10.1016/S0264-3707(02)00042-X</doi>
              <unstructured_citation>Zwally, H. et al. ICESat’s laser measurements of polar ice, atmosphere, ocean, and land. J. Geodyn. 34, 405–444 (2002).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR24">
              <journal_title>Remote Sens. Environ.</journal_title>
              <author>G Moholdt</author>
              <volume>114</volume>
              <first_page>2756</first_page>
              <cYear>2010</cYear>
              <doi>10.1016/j.rse.2010.06.008</doi>
              <unstructured_citation>Moholdt, G., Nuth, C., Hagen, J. &amp; Kohler, J. Recent elevation changes of Svalbard glaciers derived from ICESat laser altimetry. Remote Sens. Environ. 114, 2756–2767 (2010).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR25">
              <journal_title>Nature</journal_title>
              <author>A Kääb</author>
              <volume>488</volume>
              <first_page>495</first_page>
              <cYear>2012</cYear>
              <doi>10.1038/nature11324</doi>
              <unstructured_citation>Kääb, A., Berthier, E., Nuth, C., Gardelle, J. &amp; Arnaud, Y. Contrasting patterns of early twenty-first-century glacier mass change in the Himalayas. Nature 488, 495–498 (2012).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR26">
              <journal_title>Environ. Res. Lett.</journal_title>
              <author>N Neckel</author>
              <volume>9</volume>
              <first_page>014009</first_page>
              <cYear>2014</cYear>
              <doi>10.1088/1748-9326/9/1/014009</doi>
              <unstructured_citation>Neckel, N., Kropáček, J., Bolch, T. &amp; Hochschild, V. Glacier mass changes on the Tibetan Plateau 2003-2009 derived from ICESat laser altimetry measurements. Environ. Res. Lett. 9, 014009 (2014).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR27">
              <author>H Zwally</author>
              <cYear>2011</cYear>
              <volume_title>GLAS/ICESat L1B Global Elevation Data Version 33</volume_title>
              <unstructured_citation>Zwally, H. et al. GLAS/ICESat L1B Global Elevation Data Version 33 (National Snow and Ice Data Center, 2011).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR28">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>M Huss</author>
              <volume>117</volume>
              <first_page>F04010</first_page>
              <cYear>2012</cYear>
              <doi>10.1029/2012JF002523</doi>
              <unstructured_citation>Huss, M. &amp; Farinotti, D. Distributed ice thickness and volume of all glaciers around the globe. J. Geophys. Res. 117, F04010 (2012).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR29">
              <author>D Vaughan</author>
              <first_page>317</first_page>
              <cYear>2013</cYear>
              <volume_title>Climate Change 2013: The Physical Science Basis</volume_title>
              <unstructured_citation>Vaughan, D. et al. in Climate Change 2013: The Physical Science Basis (eds Stocker, T. F. et al.) 317–382 (IPCC, Cambridge Univ. Press, 2013).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR30">
              <journal_title>Int. J. Climatol.</journal_title>
              <author>E Aizen</author>
              <volume>21</volume>
              <first_page>535</first_page>
              <cYear>2001</cYear>
              <doi>10.1002/joc.626</doi>
              <unstructured_citation>Aizen, E., Aizen, V., Melack, J., Nakamura, T. &amp; Ohta, T. Precipitation and atmospheric circulation patterns at mid-latitudes of Asia. Int. J. Climatol. 21, 535–556 (2001).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR31">
              <journal_title>Theor. Appl. Climatol.</journal_title>
              <author>O Bothe</author>
              <volume>108</volume>
              <first_page>345</first_page>
              <cYear>2012</cYear>
              <doi>10.1007/s00704-011-0537-2</doi>
              <unstructured_citation>Bothe, O., Fraedrich, K. &amp; Zhu, X. Precipitation climate of Central Asia and the large-scale atmospheric circulation. Theor. Appl. Climatol. 108, 345–354 (2012).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR32">
              <journal_title>Nature Clim. Change</journal_title>
              <author>T Mölg</author>
              <volume>4</volume>
              <first_page>68</first_page>
              <cYear>2014</cYear>
              <doi>10.1038/nclimate2055</doi>
              <unstructured_citation>Mölg, T., Maussion, F. &amp; Scherer, D. Mid-latitude westerlies as a driver of glacier variability in monsoonal High Asia. Nature Clim. Change 4, 68–73 (2014).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR33">
              <journal_title>J. Clim.</journal_title>
              <author>G Branstator</author>
              <volume>15</volume>
              <first_page>1893</first_page>
              <cYear>2002</cYear>
              <doi>10.1175/1520-0442(2002)015&lt;1893:CTTJSW&gt;2.0.CO;2</doi>
              <unstructured_citation>Branstator, G. Circumglobal teleconnections, the jet stream waveguide, and the North Atlantic Oscillation. J. Clim. 15, 1893–1910 (2002).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR34">
              <journal_title>J. Glaciol.</journal_title>
              <author>M Cao</author>
              <volume>44</volume>
              <first_page>352</first_page>
              <cYear>1998</cYear>
              <doi>10.1017/S0022143000002677</doi>
              <unstructured_citation>Cao, M. Detection of abrupt changes in glacier mass balance in the Tien Shan Mountains. J. Glaciol. 44, 352–359 (1998).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR35">
              <author>J Cogley</author>
              <first_page>197</first_page>
              <cYear>2012</cYear>
              <volume_title>The Future of The World’s Climate</volume_title>
              <doi>10.1016/B978-0-12-386917-3.00008-7</doi>
              <unstructured_citation>Cogley, J. in The Future of The World’s Climate (eds Henderson-Sellers, A. &amp; McGuffie, K.) Ch. 8, 197–222(Elsevier, 2012).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR36">
              <journal_title>Science</journal_title>
              <author>J Oerlemans</author>
              <volume>308</volume>
              <first_page>675</first_page>
              <cYear>2005</cYear>
              <doi>10.1126/science.1107046</doi>
              <unstructured_citation>Oerlemans, J. Extracting a climate signal from 169 glacier records. Science 308, 675–677 (2005).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR37">
              <journal_title>J. Clim.</journal_title>
              <author>C Deser</author>
              <volume>19</volume>
              <first_page>6170</first_page>
              <cYear>2006</cYear>
              <doi>10.1175/JCLI3963.1</doi>
              <unstructured_citation>Deser, C. &amp; Phillips, A. Simulation of the 1976/77 climate transition over the North Pacific: Sensitivity to tropical forcing. J. Clim. 19, 6170–6180 (2006).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR38">
              <author>N Naito</author>
              <first_page>1107</first_page>
              <cYear>2011</cYear>
              <volume_title>Encyclopedia of Snow, Ice and Glaciers</volume_title>
              <doi>10.1007/978-90-481-2642-2_552</doi>
              <unstructured_citation>Naito, N. in Encyclopedia of Snow, Ice and Glaciers (eds Singh, V., Singh, P. &amp; Haritashya, U.) 1107–1108 (Springer, 2011).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR39">
              <journal_title>Hydrol. Earth Syst. Sci.</journal_title>
              <author>A Lutz</author>
              <volume>17</volume>
              <first_page>3661</first_page>
              <cYear>2013</cYear>
              <doi>10.5194/hess-17-3661-2013</doi>
              <unstructured_citation>Lutz, A., Immerzeel, W., Gobiet, A., Pellicciotti, F. &amp; Bierkens, M. Comparison of climate change signals in CMIP3 and CMIP5 multi-model ensembles and implications for Central Asian glaciers. Hydrol. Earth Syst. Sci. 17, 3661–3677 (2013).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR40">
              <journal_title>J. Glaciol.</journal_title>
              <author>W Pfeffer</author>
              <volume>60</volume>
              <first_page>537</first_page>
              <cYear>2014</cYear>
              <doi>10.3189/2014JoG13J176</doi>
              <unstructured_citation>Pfeffer, W. &amp; the Randolph Consortium. The Randolph glacier inventory: A globally complete inventory of glaciers. J. Glaciol. 60, 537–552 (2014).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR41">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>J Wahr</author>
              <volume>103</volume>
              <first_page>30205</first_page>
              <cYear>1998</cYear>
              <doi>10.1029/98JB02844</doi>
              <unstructured_citation>Wahr, J., Molenaar, M. &amp; Bryan, F. Time variability of the Earth’s gravity field: Hydrological and oceanic effects and their possible detection using GRACE. J. Geophys. Res. 103, 30205–30229 (1998).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR42">
              <journal_title>Geophys. J. Int.</journal_title>
              <author>J Guo</author>
              <volume>159</volume>
              <first_page>53</first_page>
              <cYear>2004</cYear>
              <doi>10.1111/j.1365-246X.2004.02410.x</doi>
              <unstructured_citation>Guo, J. et al. Green’s function of the deformation of the Earth as a result of atmospheric loading. Geophys. J. Int. 159, 53–68 (2004).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR43">
              <journal_title>Geophys. J. Int.</journal_title>
              <author>A Geruo</author>
              <volume>192</volume>
              <first_page>557</first_page>
              <cYear>2012</cYear>
              <unstructured_citation>Geruo, A., Wahr, J. &amp; Zhong, S. Computations of the viscoelastic response of a 3-D compressible Earth to surface loading: An application to glacial isostatic adjustment in Antarctica and Canada. Geophys. J. Int. 192, 557–572 (2012).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR44">
              <journal_title>Boreas</journal_title>
              <author>K Lambeck</author>
              <volume>39</volume>
              <first_page>410</first_page>
              <cYear>2010</cYear>
              <doi>10.1111/j.1502-3885.2010.00140.x</doi>
              <unstructured_citation>Lambeck, K., Purcell, A., Zhao, J. &amp; Svensson, N. The Scandinavian ice sheet: From MIS 4 to the end of the Last Glacial Maximum. Boreas 39, 410–435 (2010).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR45">
              <journal_title>J. Geophys. Res.</journal_title>
              <author>J Chen</author>
              <volume>116</volume>
              <first_page>B07406</first_page>
              <cYear>2011</cYear>
              <doi>10.1029/2011JD016244</doi>
              <unstructured_citation>Chen, J., Wilson, C. &amp; Tapley, B. Interannual variability of Greenland ice losses from satellite gravimetry. J. Geophys. Res. 116, B07406 (2011).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR46">
              <author>J Jarvis</author>
              <cYear>2008</cYear>
              <volume_title>Hole-filled SRTM for The Globe CGIAR-CSI SRTM 90 m Database</volume_title>
              <unstructured_citation>Jarvis, J., Reuter, H., Nelson, A. &amp; Guevara, E. Hole-filled SRTM for The Globe CGIAR-CSI SRTM 90 m Database Version 4 (CGIAR Consortium for Spatial Information, 2008); 
                    http://srtm.csi.cgiar.org</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR47">
              <journal_title>Cryosphere</journal_title>
              <author>M Huss</author>
              <volume>7</volume>
              <first_page>877</first_page>
              <cYear>2013</cYear>
              <doi>10.5194/tc-7-877-2013</doi>
              <unstructured_citation>Huss, M. Density assumptions for converting geodetic glacier volume change to mass change. Cryosphere 7, 877–887 (2013).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR48">
              <journal_title>Ann. Glaciol.</journal_title>
              <author>J Cogley</author>
              <volume>52</volume>
              <first_page>69</first_page>
              <cYear>2011</cYear>
              <doi>10.3189/172756411799096277</doi>
              <unstructured_citation>Cogley, J. Present and future states of Himalaya and Karakoram glaciers. Ann. Glaciol. 52, 69–73 (2011).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR49">
              <journal_title>J. Glaciol.</journal_title>
              <author>R Hock</author>
              <volume>45</volume>
              <first_page>101</first_page>
              <cYear>1999</cYear>
              <doi>10.3189/S0022143000003087</doi>
              <unstructured_citation>Hock, R. A distributed temperature-index ice- and snowmelt model including potential direct solar radiation. J. Glaciol. 45, 101–111 (1999).</unstructured_citation>
            </citation>
            <citation key="BFngeo2513_CR50">
              <author>J Oerlemans</author>
              <cYear>2001</cYear>
              <volume_title>Glaciers and Climate Change</volume_title>
              <unstructured_citation>Oerlemans, J. Glaciers and Climate Change (A.A. Balkema Publishers, 2001).</unstructured_citation>
            </citation>
          </citation_list>
        </journal_article>
      </journal>
    </crossref>
  </doi_record>
</doi_records>