<?xml version="1.0" encoding="UTF-8"?>
<doi_records>
  <doi_record owner="10.1007" timestamp="2024-06-03 23:57:17">
    <crossref>
      <journal>
        <journal_metadata language="en">
          <full_title>Journal of Soils and Sediments</full_title>
          <abbrev_title>J Soils Sediments</abbrev_title>
          <issn media_type="print">1439-0108</issn>
          <issn media_type="electronic">1614-7480</issn>
        </journal_metadata>
        <journal_issue>
          <publication_date media_type="print">
            <month>12</month>
            <year>2014</year>
          </publication_date>
          <journal_volume>
            <volume>14</volume>
          </journal_volume>
          <issue>12</issue>
        </journal_issue>
        <journal_article publication_type="full_text">
          <titles>
            <title>Analysis of runoff, sediment dynamics and sediment yield of subcatchments in the highly erodible Isábena catchment, Central Pyrenees</title>
          </titles>
          <contributors>
            <person_name contributor_role="author" sequence="first">
              <given_name>Till</given_name>
              <surname>Francke</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Sandra</given_name>
              <surname>Werb</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>Erik</given_name>
              <surname>Sommerer</surname>
            </person_name>
            <person_name contributor_role="author" sequence="additional">
              <given_name>José Andrés</given_name>
              <surname>López-Tarazón</surname>
            </person_name>
          </contributors>
          <publication_date media_type="online">
            <month>10</month>
            <day>17</day>
            <year>2014</year>
          </publication_date>
          <publication_date media_type="print">
            <month>12</month>
            <year>2014</year>
          </publication_date>
          <pages>
            <first_page>1909</first_page>
            <last_page>1920</last_page>
          </pages>
          <publisher_item>
            <identifier id_type="pii">990</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 applies_to="tdm">http://www.springer.com/tdm</license_ref>
              </program>
            </custom_metadata>
          </crossmark>
          <doi_data>
            <doi>10.1007/s11368-014-0990-5</doi>
            <timestamp>20141114132208</timestamp>
            <resource>http://link.springer.com/10.1007/s11368-014-0990-5</resource>
            <collection property="crawler-based">
              <item crawler="iParadigms">
                <resource>http://link.springer.com/content/pdf/10.1007/s11368-014-0990-5</resource>
              </item>
            </collection>
            <collection property="text-mining">
              <item>
                <resource mime_type="application/pdf">http://link.springer.com/content/pdf/10.1007/s11368-014-0990-5.pdf</resource>
              </item>
              <item>
                <resource mime_type="text/html">http://link.springer.com/article/10.1007/s11368-014-0990-5/fulltext.html</resource>
              </item>
            </collection>
          </doi_data>
          <citation_list>
            <citation key="990_CR1">
              <journal_title>Hydrol Process</journal_title>
              <author>RM Acornley</author>
              <volume>13</volume>
              <first_page>447</first_page>
              <cYear>1999</cYear>
              <doi provider="crossref">10.1002/(SICI)1099-1085(19990228)13:3&lt;447::AID-HYP749&gt;3.0.CO;2-G</doi>
              <unstructured_citation>Acornley RM, Sear DA (1999) Sediment transport and siltation of brown trout (Salmo trutta L.) spawning gravels in chalk streams. Hydrol Process 13:447–458</unstructured_citation>
            </citation>
            <citation key="990_CR2">
              <journal_title>Limnética</journal_title>
              <author>J Alcázar</author>
              <volume>14</volume>
              <first_page>73</first_page>
              <cYear>1998</cYear>
              <doi provider="crossref">10.23818/limn.14.06</doi>
              <unstructured_citation>Alcázar J, Ferrán I (1998) La vegetación de ribera de los ríos Ésera y Cinca en el tramo afectado por el vaciado del embalse de Joaquín Costa. Limnética 14:73–82</unstructured_citation>
            </citation>
            <citation key="990_CR3">
              <journal_title>Hydrol Process</journal_title>
              <author>NEM Asselman</author>
              <volume>13</volume>
              <first_page>1437</first_page>
              <cYear>1999</cYear>
              <doi provider="crossref">10.1002/(SICI)1099-1085(199907)13:10&lt;1437::AID-HYP821&gt;3.0.CO;2-J</doi>
              <unstructured_citation>Asselman NEM (1999) Suspended sediment dynamics in a large basin: the River Rhine. Hydrol Process 13:1437–1450</unstructured_citation>
            </citation>
            <citation key="990_CR4">
              <unstructured_citation>Avendaño C, Cobo R, Sanz ME, Gómez JL (1997) Capacity situation in Spanish reservoirs. Transactions of the International Congress on Large Dams. ICOLD, Paris, pp 849–862</unstructured_citation>
            </citation>
            <citation key="990_CR5">
              <unstructured_citation>Avendaño C, Sanz ME, Cobo R (2000) State of the art of reservoir sedimentation management in Spain. In: Proceedings of the International Workshop and Symposium on Reservoir Sedimentation Management, Water Resources Environment Technology Center—Japan (WEC), Tokyo, Japan, pp 27–35</unstructured_citation>
            </citation>
            <citation key="990_CR6">
              <journal_title>J Hydrol</journal_title>
              <author>MR Bhutiyani</author>
              <volume>227</volume>
              <first_page>84</first_page>
              <cYear>2000</cYear>
              <doi provider="crossref">10.1016/S0022-1694(99)00174-2</doi>
              <unstructured_citation>Bhutiyani MR (2000) Sediment load characteristics of a proglacial stream Siachen Glacier and the erosion rate in Nubra valley in Karakoram Himalayas, India. J Hydrol 227:84–92</unstructured_citation>
            </citation>
            <citation key="990_CR7">
              <journal_title>Mach Learn</journal_title>
              <author>L Breiman</author>
              <volume>45</volume>
              <first_page>5</first_page>
              <cYear>2001</cYear>
              <doi provider="crossref">10.1023/A:1010933404324</doi>
              <unstructured_citation>Breiman L (2001) Random Forests. Mach Learn 45:5–32</unstructured_citation>
            </citation>
            <citation key="990_CR8">
              <journal_title>J Soils Sediments</journal_title>
              <author>A Brosinsky</author>
              <cYear>2014</cYear>
              <unstructured_citation>Brosinsky A, Foerster S, Segl K, López-Tarazón J, Piqué G, Bronstert (2014) A spectral fingerprinting: characterizing suspended sediment sources by the use of VNIR-SWIR spectral information. J Soils Sediments. doi: 10.1007/s11368-014-0927-z (this issue)</unstructured_citation>
            </citation>
            <citation key="990_CR9">
              <journal_title>Ecol Indic</journal_title>
              <author>C Buendia</author>
              <volume>25</volume>
              <first_page>184</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1016/j.ecolind.2012.09.027</doi>
              <unstructured_citation>Buendia C, Gibbins CN, Vericat D, Batalla RJ, Douglas A (2013) Detecting the structural and functional impacts of fine sediment on stream invertebrates. Ecol Indic 25:184–196</unstructured_citation>
            </citation>
            <citation key="990_CR10">
              <journal_title>Sci Tot Environ</journal_title>
              <author>SJ Clarke</author>
              <volume>266</volume>
              <first_page>103</first_page>
              <cYear>2001</cYear>
              <doi provider="crossref">10.1016/S0048-9697(00)00754-3</doi>
              <unstructured_citation>Clarke SJ, Wharton G (2001) Sediment nutrient characteristics and aquatic macrophytes in lowland English rivers. Sci Tot Environ 266:103–112</unstructured_citation>
            </citation>
            <citation key="990_CR11">
              <journal_title>Earth Surf Process Landf</journal_title>
              <author>J Vente de</author>
              <volume>31</volume>
              <first_page>1017</first_page>
              <cYear>2006</cYear>
              <doi provider="crossref">10.1002/esp.1305</doi>
              <unstructured_citation>de Vente J, Poesen J, Azzoffi P, Van Rompaey A, Verstraeten G, Oesen J (2006) Predicting catchment sediment yield in Mediterranean environments: the importance of sediment sources and connectivity in Italian drainage. Earth Surf Process Landf 31:1017–1034</unstructured_citation>
            </citation>
            <citation key="990_CR12">
              <journal_title>Glob Planet Chang</journal_title>
              <author>J Vente de</author>
              <volume>60</volume>
              <first_page>393</first_page>
              <cYear>2008</cYear>
              <doi provider="crossref">10.1016/j.gloplacha.2007.05.002</doi>
              <unstructured_citation>de Vente J, Poesen J, Verstraeten G, Van Rompaey A, Govers G (2008) Spatially distributed modelling of soil erosion and sediment yield at regional scales in Spain. Glob Planet Chang 60:393–415</unstructured_citation>
            </citation>
            <citation key="990_CR13">
              <journal_title>Phys Chem Earth</journal_title>
              <author>D Fargas</author>
              <volume>22</volume>
              <first_page>355</first_page>
              <cYear>1997</cYear>
              <doi provider="crossref">10.1016/S0079-1946(97)00158-4</doi>
              <unstructured_citation>Fargas D, Martínez-Casasnovas JA, Poch R (1997) Identification of critical sediment source areas at regional level. Phys Chem Earth 22:355–359</unstructured_citation>
            </citation>
            <citation key="990_CR14">
              <unstructured_citation>Francke T (2009) Measurement and Modelling of Water and Sediment Fluxes in Meso-Scale Dryland Catchments. 145 pp., PhD thesis, University of Potsdam, Potsdam, Germany, http://nbn-resolving.de/urn:nbn:de:kobv:517-opus-31525</unstructured_citation>
            </citation>
            <citation key="990_CR15">
              <journal_title>Earth Surf Process Landf</journal_title>
              <author>T Francke</author>
              <volume>33</volume>
              <first_page>2064</first_page>
              <cYear>2008</cYear>
              <doi provider="crossref">10.1002/esp.1654</doi>
              <unstructured_citation>Francke T, López-Tarazón JA, Vericat D, Bronstert A, Batalla RJ (2008a) Flood-based analysis of high-magnitude sediment transport using a non-parametric method. Earth Surf Process Landf 33:2064–2077</unstructured_citation>
            </citation>
            <citation key="990_CR16">
              <journal_title>Hydrol Process</journal_title>
              <author>T Francke</author>
              <volume>22</volume>
              <first_page>4892</first_page>
              <cYear>2008</cYear>
              <doi provider="crossref">10.1002/hyp.7110</doi>
              <unstructured_citation>Francke T, López-Tarazón JA, Schröder B (2008b) Estimation of suspended sediment concentration and yield using linear models, random forests and quantile regression forests. Hydrol Process 22:4892–4904</unstructured_citation>
            </citation>
            <citation key="990_CR17">
              <journal_title>Geomorphol</journal_title>
              <author>F Gallart</author>
              <volume>196</volume>
              <first_page>242</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.1016/j.geomorph.2012.05.028</doi>
              <unstructured_citation>Gallart F, Pérez-Gallego N, Latron J, Catari G, Martínez-Carreras N, Nord G (2013) Short- and long-term studies of sediment dynamics in a small humid mountain Mediterranean basin with badlands. Geomorphol 196:242–251</unstructured_citation>
            </citation>
            <citation key="990_CR18">
              <journal_title>Mar Geol</journal_title>
              <author>A Hatcher</author>
              <volume>168</volume>
              <first_page>115</first_page>
              <cYear>2000</cYear>
              <doi provider="crossref">10.1016/S0025-3227(00)00042-6</doi>
              <unstructured_citation>Hatcher A, Hill P, Grant J, Macpherson P (2000) Spectral optical backscatter of sand in suspension: effects of particle size, composition and colour. Mar Geol 168:115–128</unstructured_citation>
            </citation>
            <citation key="990_CR19">
              <journal_title>Hydrol Process</journal_title>
              <author>O Kisi</author>
              <volume>20</volume>
              <first_page>4351</first_page>
              <cYear>2006</cYear>
              <doi provider="crossref">10.1002/hyp.6166</doi>
              <unstructured_citation>Kisi O, Emin Karahan M, Sen Z (2006) River suspended sediment modelling using a fuzzy logic approach. Hydrol Process 20:4351–4362</unstructured_citation>
            </citation>
            <citation key="990_CR20">
              <unstructured_citation>Larson P, Runyan C (2009) Evaluation of a capacitance water level recorder and calibration methods in an urban environment. 36 pp. Report http://www.umbc.edu/cuere/BaltimoreWTB/pdf/TM_2009_003.pdf</unstructured_citation>
            </citation>
            <citation key="990_CR21">
              <doi provider="crossref">10.1127/0372-8854/2011/0045</doi>
              <unstructured_citation>López-Tarazón JA (2011) The sediment budget of a highly erodible catchment. The River Isábena (Ebro Basin, Central Pyrenees). 319 pp, Dissertation, University of Lleida, Spain</unstructured_citation>
            </citation>
            <citation key="990_CR22">
              <journal_title>Geomorphol</journal_title>
              <author>JA López-Tarazón</author>
              <volume>109</volume>
              <first_page>210</first_page>
              <cYear>2009</cYear>
              <doi provider="crossref">10.1016/j.geomorph.2009.03.003</doi>
              <unstructured_citation>López-Tarazón JA, Batalla RJ, Vericat D, Francke T (2009) Suspended sediment transport in a highly erodible catchment: the River Isábena (Southern Pyrenees). Geomorphol 109:210–221</unstructured_citation>
            </citation>
            <citation key="990_CR23">
              <journal_title>Zeitschrift für Geomorphol</journal_title>
              <author>JA López-Tarazón</author>
              <volume>55</volume>
              <first_page>365</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1127/0372-8854/2011/0045</doi>
              <unstructured_citation>López-Tarazón JA, Batalla RJ, Vericat D (2011) In-channel sediment storage in a highly erodible catchment: the River Isábena (Ebro Basin, Southern Pyrenees). Zeitschrift für Geomorphol 55:365–382</unstructured_citation>
            </citation>
            <citation key="990_CR24">
              <journal_title>Geomorphol</journal_title>
              <author>JA López-Tarazón</author>
              <volume>138</volume>
              <first_page>15</first_page>
              <cYear>2012</cYear>
              <doi provider="crossref">10.1016/j.geomorph.2011.08.020</doi>
              <unstructured_citation>López-Tarazón JA, Batalla RJ, Vericat D, Francke T (2012) The sediment budget of a highly dynamic mesoscale catchment: the River Isábena. Geomorphol 138:15–28</unstructured_citation>
            </citation>
            <citation key="990_CR25">
              <unstructured_citation>Mamede G (2008) Reservoir sedimentation in dryland catchments: modelling and management. PhD thesis, University of Potsdam, Potsdam, Germany, http://opus.kobv.de/ubp/volltexte/2008/1704/</unstructured_citation>
            </citation>
            <citation key="990_CR26">
              <journal_title>Limnética</journal_title>
              <author>JA Martínez-Casasnovas</author>
              <volume>14</volume>
              <first_page>83</first_page>
              <cYear>1998</cYear>
              <doi provider="crossref">10.23818/limn.14.07</doi>
              <unstructured_citation>Martínez-Casasnovas JA, Poch RM (1998) Estado de conservación de los suelos de la cuenca del embalse “Joaquín Costa”. Limnética 14:83–91</unstructured_citation>
            </citation>
            <citation key="990_CR27">
              <journal_title>Hydrol Process</journal_title>
              <author>H McMillan</author>
              <volume>26</volume>
              <first_page>4078</first_page>
              <cYear>2012</cYear>
              <doi provider="crossref">10.1002/hyp.9384</doi>
              <unstructured_citation>McMillan H, Krueger T, Freer J (2012) Benchmarking observational uncertainties for hydrology: rainfall, river discharge and water quality. Hydrol Process 26:4078–4111</unstructured_citation>
            </citation>
            <citation key="990_CR28">
              <journal_title>J Mach Learn Res</journal_title>
              <author>N Meinshausen</author>
              <volume>7</volume>
              <first_page>983</first_page>
              <cYear>2006</cYear>
              <unstructured_citation>Meinshausen N (2006) Quantile Regression Forests. J Mach Learn Res 7:983–999</unstructured_citation>
            </citation>
            <citation key="990_CR29">
              <journal_title>Earth Surf Dyn Discuss</journal_title>
              <author>CH Mohr</author>
              <volume>1</volume>
              <first_page>311</first_page>
              <cYear>2013</cYear>
              <doi provider="crossref">10.5194/esurfd-1-311-2013</doi>
              <unstructured_citation>Mohr CH, Zimmermann A, Korup O, Iroumé A, Francke T, Bronstert A (2013) Seasonal logging, process response, and geomorphic work. Earth Surf Dyn Discuss 1:311–335</unstructured_citation>
            </citation>
            <citation key="990_CR30">
              <journal_title>Prog Phys Geogr</journal_title>
              <author>E Nadal-Romero</author>
              <volume>35</volume>
              <first_page>297</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1177/0309133311400330</doi>
              <unstructured_citation>Nadal-Romero E, Martinez-Murillo JF, Vanmaercke M, Poesen J (2011) Scale-dependency of sediment yield from badland areas in Mediterranean environments. Prog Phys Geogr 35:297–332</unstructured_citation>
            </citation>
            <citation key="990_CR31">
              <journal_title>J Hydraul Eng</journal_title>
              <author>HM Nagy</author>
              <volume>128</volume>
              <first_page>588</first_page>
              <cYear>2002</cYear>
              <doi provider="crossref">10.1061/(ASCE)0733-9429(2002)128:6(588)</doi>
              <unstructured_citation>Nagy HM, Watanabe K, Hirano M (2002) Prediction of sediment load concentration in rivers using artificial neural network model. J Hydraul Eng 128:588–595</unstructured_citation>
            </citation>
            <citation key="990_CR32">
              <journal_title>J Hydrol</journal_title>
              <author>JE Nash</author>
              <volume>10</volume>
              <first_page>282</first_page>
              <cYear>1970</cYear>
              <doi provider="crossref">10.1016/0022-1694(70)90255-6</doi>
              <unstructured_citation>Nash JE, Sutcliffe JV (1970) River flow forecasting through conceptual models. Part I: a discussion of principles. J Hydrol 10:282–290</unstructured_citation>
            </citation>
            <citation key="990_CR33">
              <doi provider="crossref">10.5194/hess-8-1193-2004</doi>
              <unstructured_citation>Navas A, Valero-Garcés BL, Machín J (2004) Research Note: An approach to integrated assessement of reservoir siltation: the Joaquín Costa reservoir as a case study. Hydrol Earth Syst Sci 8:1193–1199</unstructured_citation>
            </citation>
            <citation key="990_CR34">
              <journal_title>Hydrol Process</journal_title>
              <author>O Navratil</author>
              <volume>24</volume>
              <first_page>1318</first_page>
              <cYear>2010</cYear>
              <doi provider="crossref">10.1002/hyp.7594</doi>
              <unstructured_citation>Navratil O, Legout C, Gateuille D, Esteves M, Liebault F (2010) Assessment of intermediate fine sediment storage in a braided river reach (southern French Prealps). Hydrol Process 24:1318–1332</unstructured_citation>
            </citation>
            <citation key="990_CR35">
              <journal_title>J Hydrol</journal_title>
              <author>O Navratil</author>
              <volume>398</volume>
              <first_page>246</first_page>
              <cYear>2011</cYear>
              <doi provider="crossref">10.1016/j.jhydrol.2010.12.025</doi>
              <unstructured_citation>Navratil O, Esteves M, Legout C, Gratiot N, Nemery J, Willmore S, Grangeon T (2011) Global uncertainty analysis of suspended sediment monitoring using turbidimeter in a small mountainous river catchment. J Hydrol 398:246–259</unstructured_citation>
            </citation>
            <citation key="990_CR36">
              <journal_title>Earth Surf Process Landf</journal_title>
              <author>C Oeurng</author>
              <volume>35</volume>
              <first_page>1289</first_page>
              <cYear>2010</cYear>
              <doi provider="crossref">10.1002/esp.1971</doi>
              <unstructured_citation>Oeurng C, Sauvage S, Sánchez-Pérez J-M (2010) Dynamics of suspended sediment transport and yield in a large agricultural catchment, southwest France. Earth Surf Process Landf 35:1289–1301</unstructured_citation>
            </citation>
            <citation key="990_CR37">
              <journal_title>Wat Resour Res</journal_title>
              <author>AI Packman</author>
              <volume>39</volume>
              <first_page>41</first_page>
              <cYear>2003</cYear>
              <doi provider="crossref">10.1029/2002WR001432</doi>
              <unstructured_citation>Packman AI, Mackay JS (2003) Interplay of stream-subsurface exchange, clay deposition and stream bed evolution. Wat Resour Res 39:41–49</unstructured_citation>
            </citation>
            <citation key="990_CR38">
              <journal_title>Limnética</journal_title>
              <author>A Palau</author>
              <volume>5</volume>
              <first_page>1</first_page>
              <cYear>1998</cYear>
              <unstructured_citation>Palau A (1998) Estudio limnológico del ecosistema fluvial afectado por los vaciados del embalse de Barasona. Limnética 5:1–15</unstructured_citation>
            </citation>
            <citation key="990_CR39">
              <journal_title>J Soils Sediments</journal_title>
              <author>G Piqué</author>
              <cYear>2014</cYear>
              <unstructured_citation>Piqué G, López-Tarazón J, Batalla R (2014) Variability of in-channel sediment storage in a river draining highly erodible areas the Isábena, Ebro Basin. J Soils Sediments. doi: 10.1007/s11368-014-0957-6 (this issue)</unstructured_citation>
            </citation>
            <citation key="990_CR40">
              <journal_title>J Soil Wat Conserv</journal_title>
              <author>RM Poch</author>
              <volume>52</volume>
              <first_page>285</first_page>
              <cYear>1997</cYear>
              <unstructured_citation>Poch RM, Martínez-Casasnovas JA (1997) Prevention of reservoir siltation in large watersheds: from sediment source identification to the design of soil conservation measures. J Soil Wat Conserv 52:285–286</unstructured_citation>
            </citation>
            <citation key="990_CR41">
              <journal_title>Hydrobiologia</journal_title>
              <author>JM Quinn</author>
              <volume>248</volume>
              <first_page>235</first_page>
              <cYear>1992</cYear>
              <doi provider="crossref">10.1007/BF00006150</doi>
              <unstructured_citation>Quinn JM, Davies-Colley RJ, Hickey CW, Vickers ML, Ryan PA (1992) Effects of clay discharge on streams, 2: benthic invertebrates. Hydrobiologia 248:235–247</unstructured_citation>
            </citation>
            <citation key="990_CR42">
              <journal_title>Stoch Environ Res Risk Assess</journal_title>
              <author>T Reitan</author>
              <volume>22</volume>
              <first_page>351</first_page>
              <cYear>2007</cYear>
              <doi provider="crossref">10.1007/s00477-007-0119-0</doi>
              <unstructured_citation>Reitan T, Petersen-Øverleir A (2007) Bayesian power-law regression with a location parameter, with applications for construction of discharge rating curves. Stoch Environ Res Risk Assess 22:351–365</unstructured_citation>
            </citation>
            <citation key="990_CR43">
              <unstructured_citation>Reusser DE, Buytaert W, Vitolo C (2012) RHydro—Hydrological models and tools to represent and analyze hydrological data in R. Geophys Res Abstr 14,EGU2012:4166</unstructured_citation>
            </citation>
            <citation key="990_CR44">
              <journal_title>Hydrol Process</journal_title>
              <author>B Rondeau</author>
              <volume>14</volume>
              <first_page>21</first_page>
              <cYear>2000</cYear>
              <doi provider="crossref">10.1002/(SICI)1099-1085(200001)14:1&lt;21::AID-HYP907&gt;3.0.CO;2-7</doi>
              <unstructured_citation>Rondeau B, Cossa D, Gagnon P, Bilodeau L (2000) Budget and sources of suspended sediment transported in the St. Lawrence River, Canada. Hydrol Process 14:21–36</unstructured_citation>
            </citation>
            <citation key="990_CR45">
              <doi provider="crossref">10.1016/j.geomorph.2005.09.016</doi>
              <unstructured_citation>Rovira A, Batalla RJ (2006) Temporal distribution of suspended sediment transport in a Mediterranean basin: The Lower Tordera (NE SPAIN). Geomorphol 79:58–71. doi: 10.1016/j.geomorph.2005.09.016</unstructured_citation>
            </citation>
            <citation key="990_CR46">
              <author>S Schnabel</author>
              <first_page>91</first_page>
              <cYear>2005</cYear>
              <volume_title>Geomorphological processes and human impacts in river basins, IAHS Publ 299</volume_title>
              <unstructured_citation>Schnabel S, Maneta M (2005) Comparison of a neural network and a regression model to estimate suspended sediment in a semiarid basin. In: Batalla RJ, Garcia C (eds) Geomorphological processes and human impacts in river basins, IAHS Publ 299. IAHS, Wallingford, pp 91–100</unstructured_citation>
            </citation>
            <citation key="990_CR47">
              <author>JB Thornes</author>
              <first_page>229</first_page>
              <cYear>2009</cYear>
              <volume_title>The physical geography of the Mediterranean</volume_title>
              <unstructured_citation>Thornes JB, López-Bermúdez F, Woodward JC (2009) Hydrology, river regimes, and sediment yield. In: Woodward JC (ed) The physical geography of the Mediterranean. Oxford University Press, Oxford, pp 229–253</unstructured_citation>
            </citation>
            <citation key="990_CR48">
              <doi provider="crossref">10.1016/S0169-555X(98)00096-8</doi>
              <unstructured_citation>Valero-Garcés BL, Navas A, Machín J, Walling D (1999) Sediment sources and siltation in mountain reservoirs: a case study from the Central Spanish Pyrenees. Geomorphol 28:23–41</unstructured_citation>
            </citation>
            <citation key="990_CR49">
              <journal_title>Ing del Agua</journal_title>
              <author>JM Verdú</author>
              <volume>13</volume>
              <first_page>321</first_page>
              <cYear>2006</cYear>
              <doi provider="crossref">10.4995/ia.2006.10497</doi>
              <unstructured_citation>Verdú JM, Batalla RJ, Martínez-Casasnovas JA (2006) Estudio hidrológico de la cuenca del río Isábena (Cuenca del Ebro). I: Variabilidad de la precipitación. Ing del Agua 13:321–330</unstructured_citation>
            </citation>
            <citation key="990_CR50">
              <journal_title>Catena</journal_title>
              <author>D Vericat</author>
              <volume>82</volume>
              <first_page>77</first_page>
              <cYear>2010</cYear>
              <doi provider="crossref">10.1016/j.catena.2010.05.003</doi>
              <unstructured_citation>Vericat D, Batalla RJ (2010) Sediment transport from continuous monitoring in a perennial Mediterranean stream. Catena 82:77–86</unstructured_citation>
            </citation>
            <citation key="990_CR51">
              <unstructured_citation>Walling DE (1977) Limitations of the rating curve technique for estimating sediment loads, with particular reference to British rivers. In: Erosion and Solid Matter Transport in Inland Water, IAHS Publ 122, IAHS, Wallingford, UK, pp 34–38</unstructured_citation>
            </citation>
            <citation key="990_CR52">
              <journal_title>Env Manag</journal_title>
              <author>PJ Wood</author>
              <volume>21</volume>
              <first_page>203</first_page>
              <cYear>1997</cYear>
              <doi provider="crossref">10.1007/s002679900019</doi>
              <unstructured_citation>Wood PJ, Armitage PD (1997) Biological effects of fine sediment in the lotic environment. Env Manag 21:203–217</unstructured_citation>
            </citation>
            <citation key="990_CR53">
              <author>JC Woodward</author>
              <first_page>365</first_page>
              <cYear>1995</cYear>
              <volume_title>Sediment and water quality in river catchments</volume_title>
              <unstructured_citation>Woodward JC (1995) Patterns of erosion and suspended sediment yield in Mediterranean river basins. In: Foster IDL, Gurnell AM, Webb B (eds) Sediment and water quality in river catchments. Wiley, Chichester, pp 365–389</unstructured_citation>
            </citation>
            <citation key="990_CR54">
              <journal_title>J Hydrol</journal_title>
              <author>A Zimmermann</author>
              <volume>428–429</volume>
              <first_page>170</first_page>
              <cYear>2012</cYear>
              <doi provider="crossref">10.1016/j.jhydrol.2012.01.039</doi>
              <unstructured_citation>Zimmermann A, Francke T, Elsenbeer H (2012) Forests and erosion: insights from a study of suspended-sediment dynamics in an overland flow-prone rainforest catchment. J Hydrol 428–429:170–181</unstructured_citation>
            </citation>
          </citation_list>
        </journal_article>
      </journal>
    </crossref>
  </doi_record>
</doi_records>