<?xml version="1.0" encoding="UTF-8"?>
<doi_records>
  <doi_record owner="10.1007" timestamp="2018-05-29 04:05:37">
    <crossref>
      <journal>
        <journal_metadata language="en">
          <full_title>International Journal of Earth Sciences</full_title>
          <abbrev_title>Int J Earth Sci (Geol Rundsch)</abbrev_title>
          <issn media_type="print">1437-3254</issn>
          <issn media_type="electronic">1437-3262</issn>
        </journal_metadata>
        <journal_issue>
          <publication_date media_type="print">
            <month>6</month>
            <year>2018</year>
          </publication_date>
          <journal_volume>
            <volume>107</volume>
          </journal_volume>
          <issue>4</issue>
        </journal_issue>
        <journal_article publication_type="full_text">
          <titles>
            <title>Reconnaissance study of an inferred Quaternary maar structure in the western part of the Bohemian Massif near Neualbenreuth, NE-Bavaria (Germany)</title>
          </titles>
          <contributors>
            <person_name contributor_role="author" sequence="first">
              <given_name>J.</given_name>
              <surname>Rohrmüller</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>H.</given_name>
              <surname>Kämpf</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>E.</given_name>
              <surname>Geiß</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>J.</given_name>
              <surname>Großmann</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>I.</given_name>
              <surname>Grun</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>J.</given_name>
              <surname>Mingram</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>J.</given_name>
              <surname>Mrlina</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>B.</given_name>
              <surname>Plessen</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>M.</given_name>
              <surname>Stebich</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>C.</given_name>
              <surname>Veress</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>A.</given_name>
              <surname>Wendt</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>N.</given_name>
              <surname>Nowaczyk</surname>
            </person_name>
          </contributors>
          <publication_date media_type="online">
            <month>10</month>
            <day>10</day>
            <year>2017</year>
          </publication_date>
          <publication_date media_type="print">
            <month>6</month>
            <year>2018</year>
          </publication_date>
          <pages>
            <first_page>1381</first_page>
            <last_page>1405</last_page>
          </pages>
          <publisher_item>
            <identifier id_type="pii">1543</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>
              <program name="AccessIndicators">
                <license_ref>http://www.springer.com/tdm</license_ref>
              </program>
            </custom_metadata>
          </crossmark>
          <doi_data>
            <doi>10.1007/s00531-017-1543-0</doi>
            <timestamp>20180529095834634</timestamp>
            <resource>http://link.springer.com/10.1007/s00531-017-1543-0</resource>
            <collection property="crawler-based">
              <item crawler="iParadigms">
                <resource mime_type="application/pdf">http://link.springer.com/content/pdf/10.1007/s00531-017-1543-0.pdf</resource>
              </item>
            </collection>
            <collection property="text-mining">
              <item>
                <resource mime_type="text/html">http://link.springer.com/article/10.1007/s00531-017-1543-0/fulltext.html</resource>
              </item>
              <item>
                <resource mime_type="application/pdf">http://link.springer.com/content/pdf/10.1007/s00531-017-1543-0.pdf</resource>
              </item>
            </collection>
          </doi_data>
          <citation_list>
            <citation key="1543_CR1">
              <journal_title>Remote Sens</journal_title>
              <author>L Andreani</author>
              <volume>6</volume>
              <first_page>7971</first_page>
              <cYear>2014</cYear>
              <doi>10.3390/rs6097971</doi>
              <unstructured_citation>Andreani L, Stanek KP, Gloaguen R, Krentz O, Domínguez-González L (2014) DEM-based analysis of interactions between tectonics and landscapes in the ore mountains and Eger Rift (East Germany and NW Czech Republic). Remote Sens 6:7971–8001. doi:
                        10.3390/rs6097971</unstructured_citation>
            </citation>
            <citation key="1543_CR2">
              <journal_title>J Petrol</journal_title>
              <author>SJ Barnes</author>
              <volume>42</volume>
              <first_page>2279</first_page>
              <cYear>2001</cYear>
              <doi provider="crossref">10.1093/petrology/42.12.2279</doi>
              <unstructured_citation>Barnes SJ, Roeder PL (2001) The range of spinel compositions in terrestrial mafic and ultramafic rocks. J Petrol 42:2279–2302</unstructured_citation>
            </citation>
            <citation key="1543_CR3">
              <author>BE Berglund</author>
              <first_page>455</first_page>
              <cYear>1986</cYear>
              <volume_title>Handbook of holocene palaeoecology and palaeohydrology</volume_title>
              <unstructured_citation>Berglund BE, Ralska-Jasiewiczowa M (1986) Pollen analysis and pollen diagrams. In: Berglund BE (ed) Handbook of holocene palaeoecology and palaeohydrology. Wiley, Chichester, pp 455–484</unstructured_citation>
            </citation>
            <citation key="1543_CR4">
              <author>H-J Beug</author>
              <cYear>2004</cYear>
              <volume_title>Leitfaden der Pollenbestimmung für Mitteleuropa und angrenzender Gebiete</volume_title>
              <unstructured_citation>Beug H-J (2004) Leitfaden der Pollenbestimmung für Mitteleuropa und angrenzender Gebiete. Pfeil, München</unstructured_citation>
            </citation>
            <citation key="1543_CR5">
              <journal_title>J Petrol</journal_title>
              <author>PA Brandl</author>
              <volume>56</volume>
              <first_page>1743</first_page>
              <cYear>2015</cYear>
              <doi>10.1093/petrology/egv052</doi>
              <unstructured_citation>Brandl PA, Genske FS, Beier C, Haase KM, Sprung P, Krumm SH (2015) Magmatic evidence for carbonate metasomatism in the lithospheric mantle underneath the Ohre (Eger) Rift. J Petrol 56:1743–1774. doi:
                        10.1093/petrology/egv052</unstructured_citation>
            </citation>
            <citation key="1543_CR6">
              <journal_title>J Geophys Res</journal_title>
              <author>K Bräuer</author>
              <volume>108</volume>
              <first_page>3</first_page>
              <cYear>2003</cYear>
              <doi provider="crossref">10.1029/2002JB002077</doi>
              <unstructured_citation>Bräuer K, Kämpf H, Strauch G, Weise SM (2003) Isotopic evidence (3He/4He, 13CCO2) of fluid triggered intraplate seismicity. J Geophys Res 108:3–11</unstructured_citation>
            </citation>
            <citation key="1543_CR7">
              <journal_title>Geochim Cosmochim Acta</journal_title>
              <author>K Bräuer</author>
              <volume>68</volume>
              <first_page>4935</first_page>
              <cYear>2004</cYear>
              <doi provider="crossref">10.1016/j.gca.2004.05.032</doi>
              <unstructured_citation>Bräuer K, Kämpf H, Niedermann S, Strauch G, Weise SM (2004) Evidence for a nitrogen flux directly derived from the European subcontinental mantle in the western Eger Rift, central Europe. Geochim Cosmochim Acta 68:4935–4947</unstructured_citation>
            </citation>
            <citation key="1543_CR8">
              <journal_title>Geophys Res Lett</journal_title>
              <author>K Bräuer</author>
              <volume>32</volume>
              <first_page>L08303</first_page>
              <cYear>2005</cYear>
              <doi>10.1029/2004GL022205</doi>
              <unstructured_citation>Bräuer K, Kämpf H, Niedermann S, Strauch G (2005) Evidence for ascending upper mantle-derived melt beneath the Cheb basin, central Europe. Geophys Res Lett 32:L08303. doi:
                        10.1029/2004GL022205</unstructured_citation>
            </citation>
            <citation key="1543_CR9">
              <journal_title>Geochem Geophys Geosys</journal_title>
              <author>K Bräuer</author>
              <volume>9</volume>
              <first_page>Q04018</first_page>
              <cYear>2008</cYear>
              <doi>10.1029/2007GC001921</doi>
              <unstructured_citation>Bräuer K, Kämpf H, Niedermann S, Strauch G, Tesař J (2008) The natural laboratory NW Bohemia—comprehensive fluid studies between 1992 and 2005 used to trace geodynamic processes. Geochem Geophys Geosys 9:Q04018. doi:
                        10.1029/2007GC001921</unstructured_citation>
            </citation>
            <citation key="1543_CR10">
              <journal_title>Geophys Res Lett</journal_title>
              <author>K Bräuer</author>
              <volume>36</volume>
              <first_page>L17309</first_page>
              <cYear>2009</cYear>
              <doi>10.1029/2009GL039615</doi>
              <unstructured_citation>Bräuer K, Kämpf H, Strauch G (2009) Earthquake swarms in non-volcanic regions: what fluids have to say. Geophys Res Lett 36:L17309. doi:
                        10.1029/2009GL039615</unstructured_citation>
            </citation>
            <citation key="1543_CR11">
              <journal_title>Chem Geol</journal_title>
              <author>K Bräuer</author>
              <volume>290</volume>
              <first_page>163</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1016/j.chemgeo.2011.09.012</doi>
              <unstructured_citation>Bräuer K, Kämpf H, Koch U, Strauch G (2011) Monthly monitoring of gas and isotope composition in the free gas phase at degassing locations close to the Nový Kostel focal zone in the western Eger Rift, Czech Republic. Chem Geol 290:163–173</unstructured_citation>
            </citation>
            <citation key="1543_CR12">
              <journal_title>Chem Geol</journal_title>
              <author>K Bräuer</author>
              <volume>356</volume>
              <first_page>193</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1016/j.chemgeo.2013.08.013</doi>
              <unstructured_citation>Bräuer K, Kämpf H, Niedermann S, Strauch G (2013) Indications for the existence of different magmatic reservoirs beneath the Eifel area (Germany): a multi-isotope (C, N, He, Ne, Ar) approach. Chem Geol 356:193–208</unstructured_citation>
            </citation>
            <citation key="1543_CR13">
              <journal_title>J Geophys Res Solid Earth</journal_title>
              <author>K Bräuer</author>
              <volume>119</volume>
              <first_page>5613</first_page>
              <cYear>2014</cYear>
              <doi provider="crossref">10.1002/2014JB011044</doi>
              <unstructured_citation>Bräuer K, Kämpf H, Strauch G (2014) Seismically triggered anomalies in the isotope signatures of mantle-derived gases detected at degassing sites along two neighboring faults in NW Bohemia, central Europe. J Geophys Res Solid Earth 119:5613–5632</unstructured_citation>
            </citation>
            <citation key="1543_CR14">
              <journal_title>Chem Geol</journal_title>
              <author>K Bräuer</author>
              <cYear>2017</cYear>
              <doi>10.1016/j.chemgeo.2017.04.004</doi>
              <unstructured_citation>Bräuer K, Kämpf H, Niedermann S, Wetzel H-U (2017, in press) Regional distribution pattern of carbon and helium isotopes from different volcanic fields in the French Massif Central: evidence for active mantle degassing and water transport. Chem Geol. doi:
                        10.1016/j.chemgeo.2017.04.004</unstructured_citation>
            </citation>
            <citation key="1543_CR15">
              <journal_title>Geol Rundsch</journal_title>
              <author>K Breiter</author>
              <volume>84</volume>
              <first_page>506</first_page>
              <cYear>1995</cYear>
              <doi provider="crossref">10.1007/s005310050021</doi>
              <unstructured_citation>Breiter K, Siebel W (1995) Granitoids in the Rozvadov pluton, Western Bohemia and Oberpfalz. Geol Rundsch 84:506–519</unstructured_citation>
            </citation>
            <citation key="1543_CR16">
              <unstructured_citation>Brötzner A (2011) Gravimetriemessungen südöstlich von Neualbenreuth/Oberpfalz—Erkundung eines vermuteten Maardiatrems (in German). Ludwig-Maximilians-Universität München, unpubl Bachelor thesis, p 29</unstructured_citation>
            </citation>
            <citation key="1543_CR17">
              <author>G Büchel</author>
              <first_page>447</first_page>
              <cYear>1993</cYear>
              <doi provider="crossref">10.1007/BFb0117613</doi>
              <volume_title>Paleolimnology of the European Maar Lakes</volume_title>
              <unstructured_citation>Büchel G, Pirrung BM (1993) Tertiary maars of the hocheifel volcanic field, Germany. In: Negendank JFW, Zolitschka B (eds) Paleolimnology of the European Maar Lakes. Springer, Berlin, pp 447–465</unstructured_citation>
            </citation>
            <citation key="1543_CR18">
              <journal_title>J Volc Geotherm Res</journal_title>
              <author>J Cassidy</author>
              <volume>159</volume>
              <first_page>153</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1016/j.jvolgeores.2006.06.007</doi>
              <unstructured_citation>Cassidy J, France SJ, Locke AA (2007) Gravity and magnetic investigation of maar volcanoes, Auckland volcanic field, New Zealand. J Volc Geotherm Res 159:153–163</unstructured_citation>
            </citation>
            <citation key="1543_CR19">
              <journal_title>Geochem Geophys Geosys</journal_title>
              <author>L Chang</author>
              <volume>15</volume>
              <issue>9</issue>
              <first_page>3612</first_page>
              <cYear>2014</cYear>
              <doi provider="crossref">10.1002/2014GC005411</doi>
              <unstructured_citation>Chang L, Vasiliev I, van Baak C, Krijgsman W, Dekkers MJ, Roberts AP, Gerald JDF, van Hoesel A, Winklhofer M (2014) Identification and environmental interpretation of diagenetic and biogenetic greigite in sediments: A lesson from the Messinian Black Sea. Geochem Geophys Geosys 15(9):3612–3627</unstructured_citation>
            </citation>
            <citation key="1543_CR20">
              <journal_title>Eur J Miner</journal_title>
              <author>VS Coker</author>
              <volume>19</volume>
              <first_page>707</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1127/0935-1221/2007/0019-1758</doi>
              <unstructured_citation>Coker VS, Pearce CI, Lang C, van der Laan G, Pattrikck RAD, Telling ND, Schüler D., Arenholz E, Lloyd R (2007) Cation site occupancy of biogenic magnetite compared to polygenic ferrite spinels determined by X-ray magnetic circular dichroism. Eur J Miner 19:707–716</unstructured_citation>
            </citation>
            <citation key="1543_CR21">
              <journal_title>Sci Drill</journal_title>
              <author>T Dahm</author>
              <volume>16</volume>
              <first_page>93</first_page>
              <cYear>2013</cYear>
              <doi>10.5194/sd-16-93-2013</doi>
              <unstructured_citation>Dahm T, Hrubcová P, Fischer T, Horálek J, Korn M, Buske S, Wagner D (2013) Eger Rift ICDP: an observatory for study of non-volcanic, mid-crustal earthquake swarms and accompanying phenomena. Sci Drill 16:93–99. doi:
                        10.5194/sd-16-93-2013</unstructured_citation>
            </citation>
            <citation key="1543_CR22">
              <journal_title>Tectonophys</journal_title>
              <author>P Dèzes</author>
              <volume>389</volume>
              <first_page>1</first_page>
              <cYear>2004</cYear>
              <doi provider="crossref">10.1016/j.tecto.2004.06.011</doi>
              <unstructured_citation>Dèzes P, Schmid SM, Ziegler PA (2004) Evolution of the European Cenozoic rift system: interaction of the Alpine and Pyrenean orogens with their foreland lithosphere. Tectonophys 389:1–33</unstructured_citation>
            </citation>
            <citation key="1543_CR23">
              <journal_title>Geologie</journal_title>
              <author>J Fiala</author>
              <volume>47</volume>
              <first_page>56</first_page>
              <cYear>1997</cYear>
              <unstructured_citation>Fiala J, Vejnar Z (1997) The Cheb-Dylen Crystalline Unit, relations to the Moldanubian Zone. In: Vrana S, Stedra V (eds) Geological model of western Bohemia related to the KTB borehole in Germany, Sbornik Geologickych Ved, Geologie 47:56–57</unstructured_citation>
            </citation>
            <citation key="1543_CR24">
              <journal_title>Tectonophys</journal_title>
              <author>T Fischer</author>
              <volume>611</volume>
              <first_page>1</first_page>
              <cYear>2014</cYear>
              <doi>10.1016/j.tecto.2013.11.001</doi>
              <unstructured_citation>Fischer T, Horálek J, Hrubcová P, Vavrycuk V, Bräuer K, Kämpf H (2014) Intra-continental earthquake swarms in West-Bohemia and Vogtland: a review. Tectonophys 611:1–27. doi:
                        10.1016/j.tecto.2013.11.001</unstructured_citation>
            </citation>
            <citation key="1543_CR25">
              <journal_title>Earth Planet Sci Lett</journal_title>
              <author>T Fischer</author>
              <volume>460</volume>
              <first_page>60</first_page>
              <cYear>2017</cYear>
              <doi>10.1016/j.epsl.2016.12.001</doi>
              <unstructured_citation>Fischer T, Matyskac C, Heinicke J (2017) Earthquake-enhanced permeability—evidence from carbon dioxide release following the ML3.5 earthquake in West Bohemia. Earth Planet Sci Lett 460:60–67. doi:
                        10.1016/j.epsl.2016.12.001</unstructured_citation>
            </citation>
            <citation key="1543_CR26">
              <journal_title>Int J Earth Sci (Geol Rundsch)</journal_title>
              <author>C Flechsig</author>
              <volume>104</volume>
              <first_page>2087</first_page>
              <cYear>2015</cYear>
              <doi>10.1007/s00531-014-1136-0</doi>
              <unstructured_citation>Flechsig C, Heinicke J, Mrlina J, Kämpf H, Nickschick T, Schmidt A, Bayer T, Günther T, Rücker C, Seidel E, Seidl M (2015) Integrated geophysical and geological methods to investigate the inner and outer structures of the Quaternary Mýtina Maar (W-Bohemia, Czech Republic). Int J Earth Sci (Geol Rundsch) 104:2087–2105. doi:
                        10.1007/s00531-014-1136-0</unstructured_citation>
            </citation>
            <citation key="1543_CR27">
              <unstructured_citation>Geiss E, Rohrmüller J, Wassermann J, Hackl M, Kirschner U, Bachtadse V (2012) Geophysical investigations on a suspected Quaternary volcanic structure in North-Eastern Bavaria, Germany. Geophys Res Abstr 14, EGU2012-11126-1, EGU General Assembly 2012</unstructured_citation>
            </citation>
            <citation key="1543_CR28">
              <journal_title>Zeitsch Geol Wiss</journal_title>
              <author>WH Geissler</author>
              <volume>32</volume>
              <issue>1</issue>
              <first_page>31</first_page>
              <cYear>2004</cYear>
              <unstructured_citation>Geissler WH, Kämpf H, Bankwitz P, Bankwitz E (2004) The Quaternary tephra-tuff deposit of Mýtina (southern rim of the western Eger Graben/Czech Republic): indications for eruption and deformation processes (in German with English summary). Zeitsch Geol Wiss 32(1):31–54</unstructured_citation>
            </citation>
            <citation key="1543_CR29">
              <journal_title>Tectonics</journal_title>
              <author>WH Geissler</author>
              <volume>24</volume>
              <first_page>TC5001</first_page>
              <cYear>2005</cYear>
              <doi>10.1029/2004TC001672</doi>
              <unstructured_citation>Geissler WH, Kämpf H, Kind R, Bräuer K, Klinge K, Plenefisch T, Horálek J, Zedník J, Nehybka V (2005) Seismic structure and location of a CO2 source in the upper mantle of the western Eger rift, Central Europe. Tectonics 24:TC5001. doi:
                        10.1029/2004TC001672</unstructured_citation>
            </citation>
            <citation key="1543_CR30">
              <journal_title>J Volc Geoth Res</journal_title>
              <author>WH Geissler</author>
              <volume>159</volume>
              <first_page>33</first_page>
              <cYear>2007</cYear>
              <doi>10.1016/j.jvolgeores.2006.06.011</doi>
              <unstructured_citation>Geissler WH, Kämpf H, Seifert W, Dulski P (2007) Petrological and seismic studies of the lithosphere in the earthquake swarm region Vogtland/NW Bohemia, central Europe. J Volc Geoth Res 159:33–69. doi:
                        10.1016/j.jvolgeores.2006.06.011</unstructured_citation>
            </citation>
            <citation key="1543_CR31">
              <journal_title>Geophys Res Lett</journal_title>
              <author>B Heuer</author>
              <volume>33</volume>
              <first_page>L05311</first_page>
              <cYear>2006</cYear>
              <doi>10.1029/2005GL025158</doi>
              <unstructured_citation>Heuer B, Geissler WH, Kind R, Kämpf H (2006) Seismic evidence for asthenospheric updoming beneath the western Bohemian Massif, central Europe. Geophys Res Lett 33:L05311. doi:
                        10.1029/2005GL025158</unstructured_citation>
            </citation>
            <citation key="1543_CR32">
              <journal_title>Geol Rundsch</journal_title>
              <author>G Hirschmann</author>
              <volume>86</volume>
              <issue>Suppl.</issue>
              <first_page>S3</first_page>
              <cYear>1997</cYear>
              <doi provider="crossref">10.1007/PL00014663</doi>
              <unstructured_citation>Hirschmann G, Duyster J, Harms U, Kontny A, Lapp M, de Wall H, Zulauf G (1997) The KTB superdeep borehole: petrography and structure of a 9-km-deep crustal section. Geol Rundsch 86(Suppl.):S3–S14</unstructured_citation>
            </citation>
            <citation key="1543_CR33">
              <journal_title>Věst Čes geol Úst</journal_title>
              <author>P Hradecký</author>
              <volume>69</volume>
              <issue>2</issue>
              <first_page>89</first_page>
              <cYear>1994</cYear>
              <unstructured_citation>Hradecký P (1994) Volcanology of Železná and Komorní hůrka in Western Bohemia. Věst Čes geol Úst 69(2):89–92</unstructured_citation>
            </citation>
            <citation key="1543_CR82">
              <unstructured_citation>Hrubcová P, Geissler WH, Bräuer K, Kämpf H, Vavryčuk V, Tomek Č (subm) The Moho and active magmatic underplating in the western Eger Rift, Central Europe. Submitted to Tectonics</unstructured_citation>
            </citation>
            <citation key="1543_CR34">
              <journal_title>EconGeol</journal_title>
              <author>A Johnson</author>
              <volume>85</volume>
              <first_page>1133</first_page>
              <cYear>1990</cYear>
              <doi provider="crossref">10.2113/gsecongeo.85.6.1133</doi>
              <unstructured_citation>Johnson A, Rye DM, Skinner BJ (1990) Petrology and stable isotope geochemistry of the metamorphosed zinc-iron-manganese deposit at Sterling Hill, New Jersy. EconGeol 85:1133–1161</unstructured_citation>
            </citation>
            <citation key="1543_CR35">
              <journal_title>Z Geol Wiss</journal_title>
              <author>H Kämpf</author>
              <volume>21</volume>
              <first_page>117</first_page>
              <cYear>1993</cYear>
              <unstructured_citation>Kämpf H, Seifert W, Ziemann M (1993) Mantel-Kruste-Wechselwirkungen im Bereich der Marienbader Störungszone, Teil 1: Neue Ergebnisse zum quartären Vulkanismus in NW-Böhmen. Z Geol Wiss 21:117–134</unstructured_citation>
            </citation>
            <citation key="1543_CR36">
              <journal_title>Chem Geol</journal_title>
              <author>H Kämpf</author>
              <volume>339</volume>
              <first_page>71</first_page>
              <cYear>2013</cYear>
              <doi>10.1016/j.chemgeo.2012.08.005</doi>
              <unstructured_citation>Kämpf H, Bräuer K, Schumann J, Hahne K, Strauch G (2013) CO2 discharge in an active, non-volcanic continental rift area (Czech Republic): Characterisation (delta C-13, He-3/He-4) and quantification of diffuse and vent CO2 emissions. Chem Geol 339:71–83. doi:
                        10.1016/j.chemgeo.2012.08.005</unstructured_citation>
            </citation>
            <citation key="1543_CR37">
              <journal_title>Geophys J R astron Soc</journal_title>
              <author>JL Kirschvink</author>
              <volume>62</volume>
              <first_page>699</first_page>
              <cYear>1980</cYear>
              <doi provider="crossref">10.1111/j.1365-246X.1980.tb02601.x</doi>
              <unstructured_citation>Kirschvink JL (1980) The least-squares line and plane and the analysis of palaeomagnetic data. Geophys J R astron Soc 62:699–718</unstructured_citation>
            </citation>
            <citation key="1543_CR38">
              <journal_title>Geol</journal_title>
              <author>L Kopecký</author>
              <volume>31</volume>
              <first_page>91</first_page>
              <cYear>1978</cYear>
              <unstructured_citation>Kopecký L (1978) Neoidic taphrogenic evolution and young alkaline volcanism of the Bohemina Massif. Sbor geol Věd. Geol 31:91–107</unstructured_citation>
            </citation>
            <citation key="1543_CR39">
              <journal_title>Paleoceanography</journal_title>
              <author>LE Lisiecki</author>
              <volume>20</volume>
              <first_page>PA1003</first_page>
              <cYear>2005</cYear>
              <doi>10.1029/2004PA001071</doi>
              <unstructured_citation>Lisiecki LE, Raymo ME (2005) A Pliocene-Pleistocene stack of 57 globally distributed benthic δ18O records. Paleoceanography 20:PA1003. doi:
                        10.1029/2004PA001071</unstructured_citation>
            </citation>
            <citation key="1543_CR40">
              <journal_title>Geophysics</journal_title>
              <author>MH Loke</author>
              <volume>60</volume>
              <first_page>1682</first_page>
              <cYear>1995</cYear>
              <doi provider="crossref">10.1190/1.1443900</doi>
              <unstructured_citation>Loke MH, Barker RD (1995) Least-squares deconvolution of apparent resistivity pseudosections. Geophysics 60:1682–1690</unstructured_citation>
            </citation>
            <citation key="1543_CR41">
              <unstructured_citation>Lorentz V (1979) Phreatomagmatic origin of the olivine melilitite diatremes of the Swabian Alb, Germany. In: Boyd FR, Meyer HOA (eds) Kimberlites, diatremes and diamonds: their geology, petrology and geochemistry. Proceedings of the second International Kimberlite Conference, vol 1. Amer Geophys Union, Washington, pp 354–363</unstructured_citation>
            </citation>
            <citation key="1543_CR42">
              <journal_title>J Volc Geoth Res</journal_title>
              <author>V Lorenz</author>
              <volume>159</volume>
              <first_page>285</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1016/j.jvolgeores.2006.02.015</doi>
              <unstructured_citation>Lorenz V (2007) Syn- and post-eruptive hazards of maar-diatreme volcanoes. J Volc Geoth Res 159:285–312</unstructured_citation>
            </citation>
            <citation key="1543_CR43">
              <journal_title>Earth Sci Rev</journal_title>
              <author>M Lustrino</author>
              <volume>81</volume>
              <first_page>1</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1016/j.earscirev.2006.09.002</doi>
              <unstructured_citation>Lustrino M, Wilson M (2007) The circum-Mediterranean anorogenic Cenozoic igneous province. Earth Sci Rev 81:1–65</unstructured_citation>
            </citation>
            <citation key="1543_CR44">
              <journal_title>J Geosci</journal_title>
              <author>B Mlčoch</author>
              <volume>55</volume>
              <first_page>81</first_page>
              <cYear>2010</cYear>
              <unstructured_citation>Mlčoch B, Konopásek J (2010) Pre-Late Carboniferous geology along the contact of the Saxothuringian and Teplá–Barrandian zones in the area covered by younger sediments and volcanics (western Bohemian Massif, Czech Republic). J Geosci 55:81–94</unstructured_citation>
            </citation>
            <citation key="1543_CR45">
              <author>J Mrlina</author>
              <first_page>101</first_page>
              <cYear>2016</cYear>
              <volume_title>Landscapes and landforms of the Czech Republic, World Geomorphological Landscapes</volume_title>
              <doi>10.1007/978-3-319-27537-6_9</doi>
              <unstructured_citation>Mrlina J (2016) Morphology of the youngest little volcanoes in western Bohemian Massif. In: Panek T, Hradecký J (eds) Landscapes and landforms of the Czech Republic, World Geomorphological Landscapes, pp 101–111. Springer, Berlin. doi:
                        10.1007/978-3-319-27537-6_9</unstructured_citation>
            </citation>
            <citation key="1543_CR46">
              <journal_title>Zeitsch geol Wiss</journal_title>
              <author>J Mrlina</author>
              <volume>35</volume>
              <issue>4–5</issue>
              <first_page>213</first_page>
              <cYear>2007</cYear>
              <unstructured_citation>Mrlina J, Kämpf H, Geissler WH, van den Boogart P (2007) Assumed Quaternary maar structure at the Czech/German boundary between Mýtina and Neualbenreuth (western Eger Rift, Central Europe): geophysical, petrochemical and geochronological indications. Zeitsch geol Wiss 35(4–5):213–230</unstructured_citation>
            </citation>
            <citation key="1543_CR47">
              <journal_title>J Volc Geoth Res</journal_title>
              <author>J Mrlina</author>
              <volume>182</volume>
              <first_page>97</first_page>
              <cYear>2009</cYear>
              <doi>10.1016/j.jvolgeores.2009.01.027</doi>
              <unstructured_citation>Mrlina J, Kämpf H, Kroner C, Mingram J, Stebich M, Brauer A, Geissler WH, Kallmeyer J, Matthes H, Seidl M (2009) Discovery of the first Quaternary maar in the Bohemian Massif, Central Europe, based on combined geophysical and geological surveys. J Volc Geoth Res 182:97–112. doi:
                        10.1016/j.jvolgeores.2009.01.027</unstructured_citation>
            </citation>
            <citation key="1543_CR48">
              <journal_title>Int J Earth Sci</journal_title>
              <author>T Nickschick</author>
              <volume>104</volume>
              <first_page>2107</first_page>
              <cYear>2015</cYear>
              <doi>10.1007/s00531-014-1140-4.2017</doi>
              <unstructured_citation>Nickschick T, Kämpf H, Flechsig Ch, Mrlina J, Heinicke J (2015) CO2 degassing in the Hartousov mofette area, western Eger Rift, imaged by CO2 mapping and geoelectrical and gravity surveys. Int J Earth Sci 104:2107–2129. doi:
                        10.1007/s00531-014-1140-4.2017</unstructured_citation>
            </citation>
            <citation key="1543_CR49">
              <journal_title>Int J Earth Sci (Geol Rundsch)</journal_title>
              <author>T Nickschick</author>
              <cYear>2017</cYear>
              <doi>10.1007/s00531-017-1470-0</doi>
              <unstructured_citation>Nickschick T, Flechsig C, Meinel C, Mrlina J, Kämpf H (2017) Architecture and temporal variations of a terrestric CO2 degassing site using electrical resistivity tomography and CO2 gas measurements. Int J Earth Sci (Geol Rundsch). doi:
                        10.1007/s00531-017-1470-0</unstructured_citation>
            </citation>
            <citation key="1543_CR50">
              <journal_title>Geophys J Int</journal_title>
              <author>NR Nowaczyk</author>
              <volume>187</volume>
              <first_page>34</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1111/j.1365-246X.2011.05120.x</doi>
              <unstructured_citation>Nowaczyk NR (2011) Dissolution of titanomagnetite and sulphidization in sediments from Lake Kinneret, Israel. Geophys J Int 187:34–44</unstructured_citation>
            </citation>
            <citation key="1543_CR51">
              <journal_title>Nature</journal_title>
              <author>RK O’Nions</author>
              <volume>341</volume>
              <first_page>391</first_page>
              <cYear>1989</cYear>
              <doi provider="crossref">10.1038/341391a0</doi>
              <unstructured_citation>O’Nions RK, Griesshaber E, Oxburgh ER (1989) Rocks that are too hot to handle. Nature 341:391</unstructured_citation>
            </citation>
            <citation key="1543_CR52">
              <journal_title>Z Geol Wiss</journal_title>
              <author>A Peterek</author>
              <volume>39</volume>
              <issue>5/6</issue>
              <first_page>335</first_page>
              <cYear>2011</cYear>
              <unstructured_citation>Peterek A, Reuther CD, Schunk R (2011) Neotectonic evolution of the Cheb Basin (Northwestern Bohemia, Czech Republic) and its implications for the late Pliocene to Recent crustal deformation in the western part of the Eger Rift. Z Geol Wiss 39(5/6):335–365</unstructured_citation>
            </citation>
            <citation key="1543_CR53">
              <journal_title>Jahrb Geol Reichsanstalt Wien</journal_title>
              <author>E Proft</author>
              <volume>44</volume>
              <first_page>25</first_page>
              <cYear>1894</cYear>
              <unstructured_citation>Proft E (1894) Kammerbühl und Eisenbühl, die Schichtvulkane des Egerer Beckens. Jahrb Geol Reichsanstalt Wien 44:25–85 (Wien)</unstructured_citation>
            </citation>
            <citation key="1543_CR54">
              <author>M Reille</author>
              <cYear>1995</cYear>
              <volume_title>Pollen et spores d’Europe et d’Afrique du Nord, Supplément 1</volume_title>
              <unstructured_citation>Reille M (1995) Pollen et spores d’Europe et d’Afrique du Nord, Supplément 1. Éditions du Laboratoire de botanique historique et palynologie, Marseille</unstructured_citation>
            </citation>
            <citation key="1543_CR55">
              <author>M Reille</author>
              <cYear>1998</cYear>
              <volume_title>Pollen et spores d’Europe et d’Afrique du Nord, Supplément 2</volume_title>
              <unstructured_citation>Reille M (1998) Pollen et spores d’Europe et d’Afrique du Nord, Supplément 2. Éditions du Laboratoire de botanique historique et palynologie, Marseille</unstructured_citation>
            </citation>
            <citation key="1543_CR56">
              <author>M Reille</author>
              <cYear>1999</cYear>
              <volume_title>Pollen et spores d’Europe et d’Afrique du Nord</volume_title>
              <unstructured_citation>Reille M (1999) Pollen et spores d’Europe et d’Afrique du Nord. Éditions du Laboratoire de botanique historique et palynologie, Marseille</unstructured_citation>
            </citation>
            <citation key="1543_CR57">
              <journal_title>Earth-Sci Rev</journal_title>
              <author>AP Roberts</author>
              <volume>151</volume>
              <first_page>1</first_page>
              <cYear>2015</cYear>
              <doi provider="crossref">10.1016/j.earscirev.2015.09.010</doi>
              <unstructured_citation>Roberts AP (2015) Magnetic mineral diagenesis. Earth-Sci Rev 151:1–47</unstructured_citation>
            </citation>
            <citation key="1543_CR58">
              <journal_title>Rev Geophys</journal_title>
              <author>AP Roberts</author>
              <cYear>2011</cYear>
              <doi>10.1029/2010RG000336</doi>
              <unstructured_citation>Roberts AP, Chang L, Rowan CJ, Horng CS, Florindo F (2011) Magnetic properties of sedimentary greigite (Fe3S4): an update. Rev Geophys. doi:
                        10.1029/2010RG000336</unstructured_citation>
            </citation>
            <citation key="1543_CR59">
              <journal_title>Geologica Bavarica</journal_title>
              <author>J Rohrmüller</author>
              <volume>107</volume>
              <first_page>215</first_page>
              <cYear>2003</cYear>
              <unstructured_citation>Rohrmüller J (2003) Die Forschungsbohrung Bayerhof—die Erkundung eines tertiären Maars im Steinwald, Oberpfalz (NE-Bayern). Geologica Bavarica 107:215–220</unstructured_citation>
            </citation>
            <citation key="1543_CR60">
              <unstructured_citation>Rohrmüller J, Horn P, Peterek A, Teipel U (2005) Specification of the Excursion Stops, First day: Geology and structure of the lithosphere, Introduction. In: Kämpf H, Peterek A, Rohrmüller J, Kümpel HJ, Geissler WH (eds) The KTB Deep Crustal Laboratory and the western Eger Graben, Schriftenreihe Dt Ges Geowiss, H, vol 40. Erlangen, pp 37–108</unstructured_citation>
            </citation>
            <citation key="1543_CR61">
              <journal_title>Geophys J Int</journal_title>
              <author>H Ron</author>
              <volume>170</volume>
              <first_page>117</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1111/j.1365-246X.2007.03425.x</doi>
              <unstructured_citation>Ron H, Nowaczyk NR, Frank U, Schwab MJ, Naumann R, Striewski B, Agnon A (2007) Greigite detected as dominating remanence carrier in Late Pleistocene sediments, Lisan formation, from Lake Kinneret (Sea of Galilee), Israel. Geophys J Int 170:117–131</unstructured_citation>
            </citation>
            <citation key="1543_CR62">
              <journal_title>Bull Volcanol</journal_title>
              <author>PS Ross</author>
              <volume>79</volume>
              <first_page>20</first_page>
              <cYear>2017</cYear>
              <doi>10.1007/s00445-016-1097-1</doi>
              <unstructured_citation>Ross PS, Nunez GN, Hayman P (2017) Felsic maar-diatreme volcanoes: a review. Bull Volcanol 79:20. doi:
                        10.1007/s00445-016-1097-1</unstructured_citation>
            </citation>
            <citation key="1543_CR63">
              <journal_title>Int J Earth Sci</journal_title>
              <author>N Seib</author>
              <volume>102</volume>
              <first_page>875</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1007/s00531-012-0829-5</doi>
              <unstructured_citation>Seib N, Kley J, Büchel G (2013) Identification of maars and similar volcanic landforms in the West Eifel Volcanic Field through image processing of DTM data: efficiency of different methods depending on preservation state. Int J Earth Sci 102:875–901</unstructured_citation>
            </citation>
            <citation key="1543_CR64">
              <journal_title>Eur J Mineral</journal_title>
              <author>W Seifert</author>
              <volume>6</volume>
              <first_page>497</first_page>
              <cYear>1994</cYear>
              <doi provider="crossref">10.1127/ejm/6/4/0497</doi>
              <unstructured_citation>Seifert W, Kämpf H (1994) Ba-enrichment in phlogopite of a nephelinite from Bohemia. Eur J Mineral 6:497–502</unstructured_citation>
            </citation>
            <citation key="1543_CR65">
              <journal_title>Vest Ustr Ust Geol</journal_title>
              <author>V Sibrava</author>
              <volume>55</volume>
              <first_page>129</first_page>
              <cYear>1980</cYear>
              <unstructured_citation>Sibrava V, Havlicek P (1980) Radiometric age of Plio-Pleistocene volcanic rocks in the Bohemian Massif. Vest Ustr Ust Geol, 55:129–150, Praha</unstructured_citation>
            </citation>
            <citation key="1543_CR66">
              <journal_title>Am Miner</journal_title>
              <author>BJ Skinner</author>
              <volume>49</volume>
              <first_page>543</first_page>
              <cYear>1964</cYear>
              <unstructured_citation>Skinner BJ, Erd RC, Grimaldi FS (1964) Greigite, the thio-spinel of iron; a new mineral. Am Miner 49:543–555</unstructured_citation>
            </citation>
            <citation key="1543_CR67">
              <journal_title>Geophys J Int</journal_title>
              <author>I Snowball</author>
              <volume>129</volume>
              <first_page>624</first_page>
              <cYear>1997</cYear>
              <doi provider="crossref">10.1111/j.1365-246X.1997.tb04498.x</doi>
              <unstructured_citation>Snowball I (1997) Gyroremanent magnetization and the magnetic properties of greigite-bearing clays in southern Sweden. Geophys J Int 129:624–636</unstructured_citation>
            </citation>
            <citation key="1543_CR68">
              <journal_title>Tectonophysics</journal_title>
              <author>A Špičák</author>
              <volume>336</volume>
              <first_page>151</first_page>
              <cYear>2001</cYear>
              <doi provider="crossref">10.1016/S0040-1951(01)00099-3</doi>
              <unstructured_citation>Špičák A, Horálek J (2001) Possible role of fluids in the process of earthquake swarm generation in the west Bohemia/Vogtland area. Tectonophysics 336:151–161</unstructured_citation>
            </citation>
            <citation key="1543_CR69">
              <author>G Stettner</author>
              <first_page>1</first_page>
              <cYear>1997</cYear>
              <volume_title>Stratigraphische Gliederung Fichtelgebirge und nördlicher Oberpfälzer Wald. In: Stratigraphie von Deutschland II200</volume_title>
              <unstructured_citation>Stettner G (1997) Stratigraphische Gliederung Fichtelgebirge und nördlicher Oberpfälzer Wald. In: Stratigraphie von Deutschland II, vol 200. Cour Forsch-Inst Senckenberg, Frankfurt, pp 1–437</unstructured_citation>
            </citation>
            <citation key="1543_CR70">
              <unstructured_citation>Stettner G (1998) Geologische Karte von Bayern 1:25000: Blatt Nr. 6040/41 Neualbenreuth/Mähring</unstructured_citation>
            </citation>
            <citation key="1543_CR71">
              <journal_title>Geophys J Int</journal_title>
              <author>A Stevenson</author>
              <volume>145</volume>
              <first_page>570</first_page>
              <cYear>2001</cYear>
              <doi provider="crossref">10.1046/j.0956-540x.2001.01434.x</doi>
              <unstructured_citation>Stevenson A, Snowball I (2001) A large gyromagnetic effect in greigite. Geophys J Int 145:570–575</unstructured_citation>
            </citation>
            <citation key="1543_CR72">
              <journal_title>Lithos</journal_title>
              <author>J Ulrych</author>
              <volume>123</volume>
              <first_page>133</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1016/j.lithos.2010.12.008</doi>
              <unstructured_citation>Ulrych J, Dostal J, Adamovič J, Jelínek E, Špaček P, Hegner E, Balogh K (2011) Recurrent Cenozoic volcanic activity in the Bohemian Massif (Czech Republic). Lithos 123:133–144</unstructured_citation>
            </citation>
            <citation key="1543_CR73">
              <journal_title>Can J Earth Sci</journal_title>
              <author>RA Volkert</author>
              <volume>37</volume>
              <first_page>1665</first_page>
              <cYear>2000</cYear>
              <doi provider="crossref">10.1139/e00-050</doi>
              <unstructured_citation>Volkert RA, Johnson CA, Tamashausky AV (2000) Mesoproterozoic graphite deposits, New Jersey highlands: geologic and stable isotopic evidence for possible algal origins. Can J Earth Sci 37:1665–1675</unstructured_citation>
            </citation>
            <citation key="1543_CR74">
              <author>HRV Gaertner von</author>
              <first_page>54</first_page>
              <cYear>1942</cYear>
              <volume_title>Die Schichtgliederung der Phyllitgebiete in Thüringen und Nordbayern und ihre Einordnung in das stratigraphische Schema</volume_title>
              <unstructured_citation>von Gaertner HRV (1942) Die Schichtgliederung der Phyllitgebiete in Thüringen und Nordbayern und ihre Einordnung in das stratigraphische Schema, vol 62. Jb Reichsanst Bodenf, Berlin, pp 54–80</unstructured_citation>
            </citation>
            <citation key="1543_CR75">
              <journal_title>Z Geomorph N F</journal_title>
              <author>T Vylita</author>
              <volume>51</volume>
              <first_page>427</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1127/0372-8854/2007/0051-0427</doi>
              <unstructured_citation>Vylita T, Žák K, Cílek V, Hercman H, Mikšíková L (2007) Evolution of hot-spring travertine accumulation in Karlovy Vary/Carlsbad (Czech Republic) and its significance for the evolution of Teplá valley and Ohře/Eger rift. Z Geomorph N F 51:427–442</unstructured_citation>
            </citation>
            <citation key="1543_CR76">
              <journal_title>Z Geol Wiss</journal_title>
              <author>GA Wagner</author>
              <volume>30</volume>
              <issue>3</issue>
              <first_page>191</first_page>
              <cYear>2002</cYear>
              <unstructured_citation>Wagner GA, Gögen K, Jonckheere R, Wagner I, Woda C (2002) Dating of Quaternary volcanoes Komorni hůrka (Kammerbühl) and Železna hůrka (Eisenbühl), Czech Republic, by TL, ESR, alpharecoil and fission track chronometry. Z Geol Wiss 30(3):191–200</unstructured_citation>
            </citation>
            <citation key="1543_CR77">
              <journal_title>Geophy Res Lett</journal_title>
              <author>PJ Wasilewski</author>
              <volume>6</volume>
              <issue>7</issue>
              <first_page>541</first_page>
              <cYear>1979</cYear>
              <doi provider="crossref">10.1029/GL006i007p00541</doi>
              <unstructured_citation>Wasilewski PJ, Thomas HH, Mayhew MA (1979) The MOHO as a magnetic boundary. Geophy Res Lett 6(7):541–544</unstructured_citation>
            </citation>
            <citation key="1543_CR78">
              <journal_title>Geochim Cosmochim Acta</journal_title>
              <author>FH Weinlich</author>
              <volume>63</volume>
              <issue>3</issue>
              <first_page>653</first_page>
              <cYear>1999</cYear>
              <unstructured_citation>Weinlich FH, Bräuer K, Kämpf H, Strauch G, Tesař J, Weise SM (1999) An active subcontinental mantle volatile system in the western Eger rift, Central Europe: gas flux, isotopic (He, C, and N) and compositional fingerprints. Geochim Cosmochim Acta 63(3):653–653,671</unstructured_citation>
            </citation>
            <citation key="1543_CR79">
              <journal_title>Quat Sci Rev</journal_title>
              <author>C Woda</author>
              <volume>20</volume>
              <first_page>993</first_page>
              <cYear>2001</cYear>
              <doi provider="crossref">10.1016/S0277-3791(00)00043-3</doi>
              <unstructured_citation>Woda C, Magina A, Wagner GA (2001) ESR Dating of xenolithic quartz in volcanic rocks. Quat Sci Rev 20:993–998</unstructured_citation>
            </citation>
            <citation key="1543_CR80">
              <journal_title>Quat Sci Rev</journal_title>
              <author>C Xuan</author>
              <volume>142</volume>
              <first_page>74</first_page>
              <cYear>2016</cYear>
              <doi provider="crossref">10.1016/j.quascirev.2016.04.010</doi>
              <unstructured_citation>Xuan C, Channell JET, Hodell DA (2016) Quaternary magnetic and oxygen isotope stratigraphy in diatom-rich sediments of the southern Gardar Drift (IODP Site U1304, North Atlantic). Quat Sci Rev 142:74–89</unstructured_citation>
            </citation>
            <citation key="1543_CR81">
              <journal_title>KTB Rep</journal_title>
              <author>M Ziemann</author>
              <volume>94-2</volume>
              <first_page>241</first_page>
              <cYear>1994</cYear>
              <unstructured_citation>Ziemann M, Bräuer K, Kämpf H, Seifert W, Thomas R (1994) Megaxenocrysten im quartären Basalt des Eisenbühlerste Untersuchungen an Fest- und Fluideinschlüssen. KTB Rep 94-2:241–250</unstructured_citation>
            </citation>
          </citation_list>
        </journal_article>
      </journal>
    </crossref>
  </doi_record>
</doi_records>