<?xml version="1.0" encoding="UTF-8"?><!DOCTYPE article  PUBLIC "-//NLM//DTD Journal Publishing DTD v3.0 20080202//EN" "http://dtd.nlm.nih.gov/publishing/3.0/journalpublishing3.dtd"><article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" dtd-version="3.0" xml:lang="en" article-type="research article"><front><journal-meta><journal-id journal-id-type="publisher-id">AD</journal-id><journal-title-group><journal-title>Archaeological Discovery</journal-title></journal-title-group><issn pub-type="epub">2331-1959</issn><publisher><publisher-name>Scientific Research Publishing</publisher-name></publisher></journal-meta><article-meta><article-id pub-id-type="doi">10.4236/ad.2019.71002</article-id><article-id pub-id-type="publisher-id">AD-89911</article-id><article-categories><subj-group subj-group-type="heading"><subject>Articles</subject></subj-group><subj-group subj-group-type="Discipline-v2"><subject>Social Sciences&amp;Humanities</subject></subj-group></article-categories><title-group><article-title>
 
 
  A Study of Dog Coprolite from Late Neolithic Pile-Dwelling Site in Slovenia
 
</article-title></title-group><contrib-group><contrib contrib-type="author" xlink:type="simple"><name name-style="western"><surname>Tjaša</surname><given-names>Tolar</given-names></name><xref ref-type="aff" rid="aff1"><sup>1</sup></xref><xref ref-type="corresp" rid="cor1"><sup>*</sup></xref></contrib><contrib contrib-type="author" xlink:type="simple"><name name-style="western"><surname>Alfred</surname><given-names>Galik</given-names></name><xref ref-type="aff" rid="aff2"><sup>2</sup></xref></contrib></contrib-group><aff id="aff1"><addr-line>Scientific Research Centre of the Slovenian Academy of Sciences and Arts (ZRC SAZU), Institute of Archaeology, Ljubljana,Slovenia</addr-line></aff><aff id="aff2"><addr-line>Austrian Archaeological Institute, Vienna, Austria</addr-line></aff><pub-date pub-type="epub"><day>14</day><month>01</month><year>2019</year></pub-date><volume>07</volume><issue>01</issue><fpage>20</fpage><lpage>29</lpage><history><date date-type="received"><day>8,</day>	<month>November</month>	<year>2018</year></date><date date-type="rev-recd"><day>12,</day>	<month>January</month>	<year>2019</year>	</date><date date-type="accepted"><day>15,</day>	<month>January</month>	<year>2019</year></date></history><permissions><copyright-statement>&#169; Copyright  2014 by authors and Scientific Research Publishing Inc. </copyright-statement><copyright-year>2014</copyright-year><license><license-p>This work is licensed under the Creative Commons Attribution International License (CC BY). http://creativecommons.org/licenses/by/4.0/</license-p></license></permissions><abstract><p>
 
 
  More than 5000 years old dog’s coprolite was found during rescue excavation at 
  <em>&amp;Ccaron;rnelnik</em> pile-dwelling site in Slovenia. Although human and dog diets may overlap considerably, the content of the consumed and digested food, consisting of plant and/or animal remains biologically diverse. While the investigated fossil excrement contained many fish head bones, scales and teeth of Cyprinidae family, we believe that we are dealing with an individual that had only eaten fish heads, that is why it was suggested to be of dog. Beside the origin and the daily diet of the individual together with the nutritional habits of the dog in the Late Neolithic, the analyses of coprolite provide more important information, for example: the time of year of the deposit, the environmental conditions there, the size and the health of the animal as well as care (or the status) of domesticated animal for humans. The discovery confirms again that animal dung should be an important part of archaeological investigations, specially at waterlogged sites.
 
</p></abstract><kwd-group><kwd>Archaeobiology</kwd><kwd> Nutrition</kwd><kwd> Late Neolithic</kwd><kwd> Coprolite</kwd><kwd> Dog</kwd></kwd-group></article-meta></front><body><sec id="s1"><title>1. Introduction</title><p>Archaeobotany and archaeozoology are important natural sciences that supplement archaeological investigations. Both botany and zoology are closely connected to human activities. Nutrition supplies (for people and domesticated animals), as well as material for building activities or weapon and tool production are all connected with natural materials, both plant and animal. Archaeobiological material can be well preserved in waterlogged conditions where organic remains are often preserved in an uncarbonised state and in large amounts. Circum-Alpine prehistoric lake-shore settlements are typical such archaeological sites. The Ljubljansko barje region in Slovenia with more than 40 pile-dwelling sites from the 5th to the 2nd millennium cal BC  (Velušček, 2004)  is the most southeasterly region of those sites (<xref ref-type="fig" rid="fig1">Figure 1</xref>).</p><p>Archaeological layers of lake-shore pile-dwelling sites are always composed of a variety of components derived from human and animal activity  (Jacomet et al., 2004) . Well preserved coprolites (fossil excrement remains) can often be found as well  (Byrne, 1973;   Akeret &amp; Jacomet, 1997;   K&#252;hn et al., 2013) . They are found whole or fragmented, uncarbonised and from various animals such as mice, sheep/goats, cattle, dogs etc. as well as from humans. Beside the daily diets of the individuals and their nutritional habits, the analyses of coprolites can provide more important information, for example: the time of year of the deposit, the environmental conditions there, the size and the health of the animal, care (or the status) of domesticated animals for humans, endoparasites if present, and finally also an exact C14 dating of the consumed plant/animal macroremains. The organic material of terrestial plants and animals preserved in waterlogged conditions are one of the most suitable archaeological matter for radiocarbon dating. Therefore animal dung should be an important part of archaeological investigations at waterlogged sites. Goat and sheep faeces have been investigated relatively often because they are compact and, therefore, are not always destroyed by sieving  (Akeret &amp; Jacomet, 1997;   Akeret et al., 1999;   K&#252;hn et al., 2013) . Cattle dung is often a mixture of faeces, stable litter, fodder and material that had nothing to do with cattle management  (K&#252;hn et al., 2013) . Not so often, but randomly, dog or human coprolites can be found as well, when the excavation is careful and precise  (Byrne, 1973) . They are compact and therefore easy to</p><p>recognize. While their outer structure and shape are similar to human or pig coprolites, the inner composition may differ  (Byrne, 1973) . While many studies have been made on goat/sheep faeces in order to investigate prehistoric management of domesticated animals and transhumance  (Akeret &amp; Jacomet, 1997;   Akeret et al., 1999;   K&#252;hn et al., 2013) , dog coprolites have not often been analysed, although the osteological investigations on them show that the dog was an important human companion in the Eneolithic  (Bartosiewicz, 1999, 2002) . The probable reason for the previous lack of study is that dog coprolites are not so often found.</p></sec><sec id="s2"><title>2. Materials and Methods</title><p>Presumably dog or human well preserved waterlogged excrement in the cultural layer of the Late Neolithic pile-dwelling site Črnelnik in Slovenia was found in 2014, when the mechanical excavation of the ditch for the sewerage began  (Velušček et al., 2018) . Excrement of Canis familiaris (dog), as well as of human, mostly show an elongated, sometimes segmented shape  (Jones, 1990) . Well-preserved specimens are rarely found  (Br&#246;nnimann et al., 2017) . The one from Črnelnik site was dark brown, with a length of ca. 6 cm, and a width of ca. 2-3 cm (<xref ref-type="fig" rid="fig2">Figure 2</xref>).</p><p>The typical shape, colour and structure suggest that it is of dog or human origin (  Byrne, 1973;   Harrison, 2011;   Br&#246;nnimann et al., 2017  and Link― http://www.scirpus.ca/dung/mammal.php). While the content of the consumed and digested food, consisting of plant and/or animal remains biologically diverse, the content of digested materials was investigated in the archaeobotanical laboratory by the methods of gently disaggregation and washing over 0.056 mm mesh sieve (following  Jouy-Avantin, 2003 ). Then the macroremains caught on the sieve were sorted out and identified using a Leica MZ75 stereomicroscope with up to 50x magnification, with the aid of the reference collection of the plant remains at the Institute of Archaeology, ZRC SAZU and osteological fish bone reference collection at the Austrian Archaeological Institute. Identification atlases and keys were used as well  (Schmid, 1972;   Granadeiro &amp; Silva, 2000;   Cappers et al., 2006) .</p></sec><sec id="s3"><title>3. Results and Discussion</title><p>On the first view, the coprolite showed mineralized structure, it was compact, hard and resistant to pressure, therefore it was not easy to disaggregate it. As the coprolite was waterlogged preserved, the remains caught on the sieve were mostly uncarbonised preserved. They were precisely sorted, counted and identified in wet conditions. All togehter, 20 ml of the organic fraction was caught on the sieve. Animal remains, mostly uncountable unidentifiable flat bone fragments and fish scales and pharyngeal teeth of the Cyprinidae family prevailed. Among plant macroremains, six taxa were identified (<xref ref-type="table" rid="table1">Table 1</xref>; <xref ref-type="fig" rid="fig3">Figure 3</xref>). Some very small fragments of charcoal were present as well.</p><p>We found out that the specimen (most probably the dog) enjoyed diverse food. The scales, teeth of fish, and uncountable unidentifiable flat―most likely skull bone remains of fish heads, prevailed (<xref ref-type="fig" rid="fig3">Figure 3</xref>(a), <xref ref-type="fig" rid="fig3">Figure 3</xref>(b)). Interestingly, there were, except of one individual (<xref ref-type="fig" rid="fig3">Figure 3</xref>(f)), no fish vertebrates included, indicating that the specimen only fish heads had eaten. Therefore we conclude that the excrement most likely belongs to the dog. Rare plant remains testify that the dog also enriched its menu with vegetable food as well.  Jones (1986)  established that less than 10 % of ingested bones survived passage through an animal’s digestive system: beside some skull and cranial elements, the vertebrae survived as well. Beside the absence of the vertebrae, the absence of larger content of plant macroremains (except individual seeds; <xref ref-type="table" rid="table1">Table 1</xref>, <xref ref-type="fig" rid="fig3">Figure 3</xref>(c)) additionally convinced us that this is most probably dog’s excrement.  Byrne (1973)  has recognized the differences between dog coprolites which contain</p><table-wrap id="table1" ><label><xref ref-type="table" rid="table1">Table 1</xref></label><caption><title> The content of macroremains in the coprolite from Črnelnik site</title></caption><table><tbody><thead><tr><th align="center" valign="middle" >Number</th><th align="center" valign="middle" >Content</th></tr></thead><tr><td align="center" valign="middle"  colspan="2"  >PLANT REMAINS</td></tr><tr><td align="center" valign="middle" >4 seeds</td><td align="center" valign="middle" >Rubus fruticosus agg. (blackberry)</td></tr><tr><td align="center" valign="middle" >1 seed</td><td align="center" valign="middle" >Linum usitatissimum (flax)</td></tr><tr><td align="center" valign="middle" >3 seeds</td><td align="center" valign="middle" >Chenopodium album (white goosefoot)</td></tr><tr><td align="center" valign="middle" >1 seed</td><td align="center" valign="middle" >Brassica rapa (turnip)</td></tr><tr><td align="center" valign="middle" >1 seed</td><td align="center" valign="middle" >Betula sp. (birch)</td></tr><tr><td align="center" valign="middle" >1 frg. of fruit and 1 frg. of leaf</td><td align="center" valign="middle" >Trapa natans (water chestnut)</td></tr><tr><td align="center" valign="middle"  colspan="2"  >FISH REMAINS</td></tr><tr><td align="center" valign="middle" >x</td><td align="center" valign="middle" >skull and cranial element fragments</td></tr><tr><td align="center" valign="middle" >x</td><td align="center" valign="middle" >pharyngeal teeth of Cyprinidae</td></tr><tr><td align="center" valign="middle" >x</td><td align="center" valign="middle" >scales of Cyprinidae</td></tr><tr><td align="center" valign="middle" >3 fragments</td><td align="center" valign="middle" >finrays</td></tr><tr><td align="center" valign="middle" >1</td><td align="center" valign="middle" >epihyale</td></tr><tr><td align="center" valign="middle" >1 fragment</td><td align="center" valign="middle" >vertebra fish unident.</td></tr></tbody></table></table-wrap><p>x―many, not counted.</p><p>mainly fish bone fragments, and human coprolites which contain mainly plant remains. The absence of fur or animal hair suggest that we are neither dealing with a wolf, for which larger content of hairs are typical in the excrement (  Skrbinšek, 2010  and Link― http://www.volkovi.si/wp-content/uploads/2014/10/zimsko-sledenje_navodila-koncna.pdf).</p><p>Beside nutrition habits and the diet of the individual, the preserved macroremains give also other important information. The size (the width) of the excrement suggest that the dog was some smaller than a wolf, for example, which excrement measures about 3 cm in width, smaller wolfs 2 cm, while the biggest ones up to 4 cm in width  (Skrbinšek, 2010) .</p><p>Another information gives the remain of birch fruit for example, which extend its seeds from the late summer till the winter time; and also other recognized seeds/fruits (i.e. of water chestnut, flax, turnip, blackberry and goosefoot) are mature in late summer or autumn, what gives the information of the deposit (excrement) period of the year and consequently the settling period, which was most probably permanent (during whole year seasons;  Čufar et al., 2010;   Tolar et al., 2011 ).</p><p>Ecological conditions at and around the site could be discussed as well. Birch and water chestnut evidence marshy ground and the existence of slow flowing river or a lake, while the others (flax, turnip and goosefoot) evidence fields and other antrophogenic areas  (Kreuz &amp; Sch&#228;fer, 2011;   Tolar et al., 2011) . Fishes of the Cyprinidae family, collectively called cyprinids, that includes carp, true minnow, and their relatives, is the largest known fish family with about 3000 living and extinct species in about 370 genera. Some of the fish remains are isolated pharyngeal teeth (<xref ref-type="fig" rid="fig3">Figure 3</xref>(b)) of typical freshwater species like rudd or roach  (Kottelat &amp; Freyhof, 2007) .</p><p>Predominantly uncarbonised remains of fish heads in the coprolite indicate organic refuse management as well. The culture of eating fishes and the importance of the lake for the neolithic economy can be illustrated at various pile-dwelling sites  (Torke, 2000;   Govedič, 2004;   H&#252;ster-Plogmann, 2004;   Jacomet et al., 2004;   J&#246;rg, 2006;   Kottelat &amp; Freyhof, 2007;   Galik, 2009) . One of the explanations could be that humans ate fish bodies, while the heads were thrown to dogs  (Ewersen &amp; Schm&#246;lcke, 2013) , very likely even before roasting, while the fish remains were uncarbonised preserved. More evidences (with more dog coprolite investigations) should be performed to confirm this hypothesis. Aditionally, the care (and the status) of domesticated animal for humans colud be discussed. It seems that dog’s master knew that fish heads are safer food for his dog than fish bodies (with lots of peaked bones), what leads to a suspection that humans took care for dogs, what consequently prove that the dog had an important status for humans  (Bartosiewicz, 2002;   Ewersen &amp; Schm&#246;lcke, 2013;   Janssens et al., 2018) .</p></sec><sec id="s4"><title>4. Conclusions</title><p>Coprolites of Canis familiaris (dog) as well as of human are regularly reported in various archaeological contexts (  Macphail , 2000;</p><p>The presented research is the first investigation of coprolites in Slovenia, the most southeasterly region of Late Neolithic circum-Alpine lake-shore sites, where such finds are not rare. It has an important impact for the development of new research directions there, and on the other hand, it contributes to the database which is already available from comparable prehistoric waterlogged contexts in Europe (  Bouchet  et al., 2003;</p></sec><sec id="s5"><title>Acknowledgement</title><p>The project was financed by the Slovenian Research Agency (funding No. P6-0064 and No. J7-6857). Many thanks to technical assistant Dragotin Valoh for preparing figures and to James Greig for improving the English language.</p></sec><sec id="s6"><title>Conflicts of Interest</title><p>The authors declare no conflicts of interest regarding the publication of this paper.</p></sec><sec id="s7"><title>Cite this paper</title><p>Tolar, T., &amp; Galik, A. (2019). A Study of Dog Coprolite from Late Neolithic Pile-Dwelling Site in Slovenia. Archaeological Discovery, 7, 20-29. https://doi.org/10.4236/ad.2019.71002</p></sec></body><back><ref-list><title>References</title><ref id="scirp.89911-ref1"><label>1</label><mixed-citation publication-type="other" xlink:type="simple">Akeret, &amp;OUML;., &amp; Jacomet, S. (1997) Analysis of Plant Macrofossils in Goat/Sheep Faeces from the Neolithic Lake Shore Settlement of Horgen Scheller—An Indication of Prehistoric Transhumance? Vegetation History and Archaeobotany, 6, 235-239. https://doi.org/10.1007/BF01370444</mixed-citation></ref><ref id="scirp.89911-ref2"><label>2</label><mixed-citation publication-type="other" xlink:type="simple">Akeret, &amp;OUML;., &amp; Rentzel, P. (2001) Micromorphology and Plant Macrofossil Analysis of Cattle Dung from the Neolithic Lake Shore Settlement of Arbon Bleiche 3. Geoarchaeology: An International Journal, 16, 687-700. https://doi.org/10.1002/gea.1016</mixed-citation></ref><ref id="scirp.89911-ref3"><label>3</label><mixed-citation publication-type="other" xlink:type="simple">Akeret, &amp;OUML;., Hass, J. N., Leuzinger, U., &amp; Jacomet, S. (1999) Plant Macrofossil and Pollen in Goat/Sheep Faeces from the Neolithic Lake-Shore Settlement Arbon Bleice 3, Schwitzerland. The Holocene, 9, 175-182. https://doi.org/10.1191/095968399666631581</mixed-citation></ref><ref id="scirp.89911-ref4"><label>4</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Bartosiewicz</surname><given-names> L. </given-names></name>,<etal>et al</etal>. (<year>1999</year>)<article-title>Recent Developments in Archaeozoological Research in Slovenia</article-title><source> Arheoloski Vestnik</source><volume> 50</volume>,<fpage> 311</fpage>-<lpage>322</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.89911-ref5"><label>5</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Bartosiewicz</surname><given-names> L. </given-names></name>,<etal>et al</etal>. (<year>2002</year>)<article-title>Dogs from the Ig Pile Dwellings in the National Museum of Slovenia</article-title><source> Arheoloski Vestnik</source><volume> 53</volume>,<fpage> 77</fpage>-<lpage>89</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.89911-ref6"><label>6</label><mixed-citation publication-type="other" xlink:type="simple">Bouchet, F., Harter, S., &amp; Le Bailly, M. (2003) The State of the Art of Paleoparasitological Research in the Old World. Memorias do Instituto Oswaldo Cruz, 98, 95-101. https://doi.org/10.1590/S0074-02762003000900015</mixed-citation></ref><ref id="scirp.89911-ref7"><label>7</label><mixed-citation publication-type="book" xlink:type="simple">Br&amp;ouml;nnimann, D., Pümpin, C., Ismail-Meyer, K., Rentzel, P., &amp; Egüez, N. (2017) Excrements of Omnivores and Carnivores. In: Nicosia, C. and Stoops, G., Eds., Archaeological Soil and Sediment Micromorphology (pp. 67-82). Oxford, UK: Wiley Blackwell. https://doi.org/10.1002/9781118941065.ch7</mixed-citation></ref><ref id="scirp.89911-ref8"><label>8</label><mixed-citation publication-type="other" xlink:type="simple">Byrne, D. (1973) Prehistoric Coprolites: A Study of Human and Dog Coprolites from Prehistoric Archaeological Sites in the North Island of New Zealand. M.A. Thesis, University of Auckland.</mixed-citation></ref><ref id="scirp.89911-ref9"><label>9</label><mixed-citation publication-type="other" xlink:type="simple">Cappers, R., Bekker, R. M., &amp; Jans, J. E. A. (2006) Digitale Zadenatlas van Nederland (Digital Seed Atlas of the Netherlands). Groningen: Barkhuis Publishing &amp; Groningen University Library.</mixed-citation></ref><ref id="scirp.89911-ref10"><label>10</label><mixed-citation publication-type="other" xlink:type="simple">Cufar, K., Kromer, B., Tolar, T., &amp; Veluscek, A. (2010) Dating of 4th Millenium BC Pile-Dwellings on Ljubljansko Barje, Slovenia. Journal of Archaeological Science, 37, 2031-2039. https://doi.org/10.1016/j.jas.2010.03.008</mixed-citation></ref><ref id="scirp.89911-ref11"><label>11</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Ewersen</surname><given-names> J.</given-names></name>,<name name-style="western"><surname> &amp; Schm&amp;ouml;lcke</surname><given-names> U. </given-names></name>,<etal>et al</etal>. (<year>2013</year>)<article-title>Untersuchungen zur Haltung und Nutzung von Haushunden auf meso-und neolithischen Fundpl&amp;auml;tzen im n&amp;ouml;rdlichen Deutschland. Universit&amp;auml;tsforschungen zur pr&amp;auml;historischen Arch&amp;auml;ologie. B</article-title><source> Ramminger</source><volume> 240</volume>,<fpage> 267</fpage>-<lpage>299</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.89911-ref12"><label>12</label><mixed-citation publication-type="other" xlink:type="simple">Galik, A. (2009) Die Bedeutung des Fischfangs in der Horgener Seeufersiedlung Wallhausen-Ziegelhütte am überlinger See, Hemmenhofener Skripte, 8, 138-144.</mixed-citation></ref><ref id="scirp.89911-ref13"><label>13</label><mixed-citation publication-type="other" xlink:type="simple">Gill, F. L., Crump, M. P., Schouten, R., &amp; Bull, I. D. (2009) Lipid Analysis of a Ground Sloth Coprolite. Quaternary Research, 72, 284-288. https://doi.org/10.1016/j.yqres.2009.06.006</mixed-citation></ref><ref id="scirp.89911-ref14"><label>14</label><mixed-citation publication-type="book" xlink:type="simple">Govedic, M. (2004) Fishes from the Archeological Site at Hocevarica. In: Veluscek, A., Ed., Hocevarica—An Eneolithic Pile Dwelling in Ljubljansko Barje, Opera Instituti Archaeologici Sloveniae, 8, 133-151.</mixed-citation></ref><ref id="scirp.89911-ref15"><label>15</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Granadeiro</surname><given-names> J. P.</given-names></name>,<name name-style="western"><surname> &amp; Silva</surname><given-names> M. A. </given-names></name>,<etal>et al</etal>. (<year>2000</year>)<article-title>The Use of Otoliths and Vertebrae in the Identification and Size-Estimation of Fish in Predator-Prey Studies</article-title><source> Cybium</source><volume> 24</volume>,<fpage> 383</fpage>-<lpage>393</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.89911-ref16"><label>16</label><mixed-citation publication-type="book" xlink:type="simple">Harrison, T. (2011). Coprolites: Taphonomic and Paleoecological Implications. In: Harrison, T., Eds., Paleontology and Geology of Laetoli: Human Evolution in Context (pp. 279-292). Vertebrate Paleobiology and Paleoanthropology Series, Dordrecht: Springer. https://doi.org/10.1007/978-90-481-9956-3_14</mixed-citation></ref><ref id="scirp.89911-ref17"><label>17</label><mixed-citation publication-type="other" xlink:type="simple">Horrocks, M., &amp; Irwin, G. J. (2003). Pollen, Phytoliths and Diatoms in Prehistoric Coprolites from Kohika, Bay of Plenty, New Zealand. Journal of Archaeological Science, 30, 13-20. https://doi.org/10.1006/jasc.2001.0714</mixed-citation></ref><ref id="scirp.89911-ref18"><label>18</label><mixed-citation publication-type="other" xlink:type="simple">http://www.scirpus.ca/dung/mammal.php</mixed-citation></ref><ref id="scirp.89911-ref19"><label>19</label><mixed-citation publication-type="other" xlink:type="simple">http://www.volkovi.si/wp-content/uploads/2014/10/zimsko-sledenje_navodila-koncna.pdf</mixed-citation></ref><ref id="scirp.89911-ref20"><label>20</label><mixed-citation publication-type="book" xlink:type="simple">Hüster-Plogmann, H. (2004). Fischfang und Kleintierbeute. Ergebnisse der Untersuchung von Tierresten aus den Schl&amp;auml;mmproben. In S. Jacomet, U. Leuzinger, &amp; J. Schibler (Eds.), Die jungsteinzeitliche Seeufersiedlung Arbon/Bleiche 3, Umwelt und Wirtschaft. Arch&amp;auml;ologie im Thurgau 12 (pp. 253-276). Kanton: Huber &amp; Co AG.</mixed-citation></ref><ref id="scirp.89911-ref21"><label>21</label><mixed-citation publication-type="other" xlink:type="simple">I&amp;ntilde;iguez, A. M., Araújo, A., Ferreira, L. F., &amp; Vicente, A. C. P. (2003). Analysis of Ancient DNA from Coprolites: A Perspective with Random Amplified Polymorphic DNA-Polymerase Chain Reaction Approach. Mem. Inst. Oswaldo Cruz, 98/1.</mixed-citation></ref><ref id="scirp.89911-ref22"><label>22</label><mixed-citation publication-type="book" xlink:type="simple">Ismail-Meyer, K., &amp; Rentzel, P. (2004). Mikromorphologishe Untersuchung der Schichtabfolge. In S. Jacomet, U. Leuzinger, &amp; J. Schibler (Eds.), Die jungsteinzeitliche Seeufersiedlung von Arbon Bleiche 3, Umwelt und Wirtschaft. Arch&amp;auml;ologie im Thurgau 12 (pp. 66-80). Frauenfeld.</mixed-citation></ref><ref id="scirp.89911-ref23"><label>23</label><mixed-citation publication-type="other" xlink:type="simple">Jacomet, S., Leuzinger, U., &amp; Schibler, J. (2004). Die jungsteinzeitliche Seeufersiedlung Arbon/Bleiche 3. Umwelt und Wirtschaft. Arch&amp;auml;ologie im Thurgau 12 (pp. 1-458). Kanton: Huber &amp; Co AG.</mixed-citation></ref><ref id="scirp.89911-ref24"><label>24</label><mixed-citation publication-type="other" xlink:type="simple">Janssens, L., Giemsch, L., Schmitz, R., Street, M., &amp; Van Dongen, S. (2018). A New Look at an Old Dog: Bonn-Oberkassel Reconsidered. Journal of Archaeological Science, 92, 126-138. https://doi.org/10.1016/j.jas.2018.01.004</mixed-citation></ref><ref id="scirp.89911-ref25"><label>25</label><mixed-citation publication-type="book" xlink:type="simple">Jones, A. K. G. (1986). Fish Bone Survival in the Digestive Systems of the Pig, Dog and Man: Some Experiments. In D. C. Brinkhuizen, &amp; A. T. Clason (Eds.), Fish and Archaeology, Studies in Osteometry, Taphonomy, Seasonality and Fishing Methods (pp. 53-61). BAR International Series 294.</mixed-citation></ref><ref id="scirp.89911-ref26"><label>26</label><mixed-citation publication-type="book" xlink:type="simple">Jones, A. K. G. (1990). Coprolites and Faecal Concretions. In M. Bell (Ed.), Brean down Excavations (1983-1987) (pp. 242-245). Archaeological Report No. 15, London: Historic Buildings and Monuments Commission for England.</mixed-citation></ref><ref id="scirp.89911-ref27"><label>27</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>J&amp;ouml;rg</surname><given-names> S. </given-names></name>,<etal>et al</etal>. (<year>2006</year>)<article-title>. The Economy and Environment of the 4th and 3rd Millennia BC in the Northern Alpine Foreland Based on Studies of Animal Bones</article-title><source> Environmental Archaeology</source><volume> 11</volume>,<fpage> 49</fpage>-<lpage>64</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.89911-ref28"><label>28</label><mixed-citation publication-type="other" xlink:type="simple">Jouy-Avantin, F. (2003). A Standardized Method for the Description and the Study of Coprolites. Journal of Archaeological Science, 30, 367-372. https://doi.org/10.1006/jasc.2002.0848</mixed-citation></ref><ref id="scirp.89911-ref29"><label>29</label><mixed-citation publication-type="other" xlink:type="simple">Kottelat, M., &amp; Freyhof, J. (2007). Handbook of European Freshwater Fishes. Berlin: Kottelat Cornol, Switzerland and Freyhof.</mixed-citation></ref><ref id="scirp.89911-ref30"><label>30</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Kreuz</surname><given-names> A.</given-names></name>,<name name-style="western"><surname> &amp; Sch&amp;auml;fer</surname><given-names> E. </given-names></name>,<etal>et al</etal>. (<year>2011</year>)<article-title></article-title><source> Weed Finds as Indicators for the Cultivation Regime of the Early Neolithic Bandkeramik Culture? Vegetation History and Archaeobotany</source><volume> 20</volume>,<fpage> 333</fpage>-<lpage>348</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.89911-ref31"><label>31</label><mixed-citation publication-type="other" xlink:type="simple">Kühn, M., Maier, U., Herbig, C., Ismail-Meyer, K., Le Bailly, M., &amp; Wick, L. (2013). Methods for the Examination of Cattle, Sheep and Goat Dung in Prehistoric Wetland Settlements with Examples of the Sites Alleshausen-T&amp;auml;schenwiesen and Alleshausen-Grundwiesen (around cal 2900 BC) at Lake Federsee, South-West Germany. Journal of Environmental Archaeology, 18, 43-57. https://doi.org/10.1179/1461410313Z.00000000017</mixed-citation></ref><ref id="scirp.89911-ref32"><label>32</label><mixed-citation publication-type="other" xlink:type="simple">Le Bailly, M., Leuzinger, U., &amp; Bouchet, F. (2003). Dioctophymidae Eggs from Coprolites from Neolithic Site of Arbon-Bleiche 3 (Switzerland). Journal of Parasitology, 89, 1073-1076. https://doi.org/10.1645/GE-3202RN</mixed-citation></ref><ref id="scirp.89911-ref33"><label>33</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Le Bailly</surname><given-names> M.</given-names></name>,<name name-style="western"><surname> Leuzinger</surname><given-names> U.</given-names></name>,<name name-style="western"><surname> Schlichtherle</surname><given-names> H.</given-names></name>,<name name-style="western"><surname> &amp; Bouchet</surname><given-names> F. </given-names></name>,<etal>et al</etal>. (<year>2005</year>)<article-title></article-title><source> Diphyllobothrium: Neolithic Parasite? Journal of Parasitology</source><volume> 91</volume>,<fpage> 957</fpage>-<lpage>959</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.89911-ref34"><label>34</label><mixed-citation publication-type="book" xlink:type="simple">Macphail, R. I. (2000). Soils and Microstratigraphy: A Soil Micromorphological and Micro-Chemical Approach. In A. J. Lawson (Ed.), Animal Husbandry in Later Prehistoric Wiltshire (pp. 47-71). Salisbury: Wessex Archaeology.</mixed-citation></ref><ref id="scirp.89911-ref35"><label>35</label><mixed-citation publication-type="other" xlink:type="simple">Maicher, C., Hoffmann, A., C&amp;ocirc;té, N. M. L., Palomo Pérez, A., Sa&amp;ntilde;a Segui, M., &amp; Le Bailly, M. (2017). Paleoparasitological Investigations on the Neolithic Lakeside Settlement of La Draga (Lake Banyoles, Spain). Holocene, 27, 1659-1668. https://doi.org/10.1177/0959683617702236</mixed-citation></ref><ref id="scirp.89911-ref36"><label>36</label><mixed-citation publication-type="other" xlink:type="simple">Martin, P. S., &amp; Sharrock, F. W. (1964). Pollen Analysis of Prehistoric Human Feces: A New Approach to Ethnobotany. American Antiquity, 30, 168-180. https://doi.org/10.2307/278848</mixed-citation></ref><ref id="scirp.89911-ref37"><label>37</label><mixed-citation publication-type="other" xlink:type="simple">Schmid, E. (1972). Atlas of Animal Bones for Prehistorians, Archaeologists and Quaternary Geologists. Amsterdam, London, New York: Elsevier Publishing Company.</mixed-citation></ref><ref id="scirp.89911-ref38"><label>38</label><mixed-citation publication-type="other" xlink:type="simple">Skrbinsek, T. (2010). Navodila za sodelovanje pri raziskavi volkov s pomocjo genetike. Ljubljana: Univerza v Ljubljani, Biotehniska fakulteta, Oddelek za biologijo. http://www.volkovi.si/wp-content/uploads/2014/10/brosura-genetika-slowolf-web1.pdf</mixed-citation></ref><ref id="scirp.89911-ref39"><label>39</label><mixed-citation publication-type="other" xlink:type="simple">Tolar, T., Jacomet, S., Veluscek, A., &amp; Cufar, K. (2011). Plant Economy at a Late Neolithic Lake Dwelling Site in Slovenia at the Time of the Alpine Iceman. Vegetation History and Archaeobotany, 20, 207-222. https://doi.org/10.1007/s00334-010-0280-0</mixed-citation></ref><ref id="scirp.89911-ref40"><label>40</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Torke</surname><given-names> W. </given-names></name>,<etal>et al</etal>. (<year>2000</year>)<article-title>. Fischreste aus den neolithischen Moorsiedlungen Henauhof I Hart&amp;ouml;schle am Feedersee und aus weiteren Fundpl&amp;auml;tzen Oberschwabens. Berichte zu Ufer-und Moorsiedlungen Südwestdeutschlands III. Materialh, Arch</article-title><source> Baden-Württemberg</source><volume> 52</volume>,<fpage> 345</fpage>-<lpage>357</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref><ref id="scirp.89911-ref41"><label>41</label><mixed-citation publication-type="book" xlink:type="simple">Veluscek, A. (2004). Past and Present Lake-Dwelling Studies in Slovenia. Ljubljansko Barje (the Ljubljana Marsh). In F. Menotti (Ed.), Living on the Lake in Prehistoric Europe, 150 Years of Lake-Dwelling Research (pp. 69-82). London and New York: Routledge.</mixed-citation></ref><ref id="scirp.89911-ref42"><label>42</label><mixed-citation publication-type="journal" xlink:type="simple"><name name-style="western"><surname>Veluscek</surname><given-names> A.</given-names></name>,<name name-style="western"><surname> Podpecan</surname><given-names> B.</given-names></name>,<name name-style="western"><surname> Tolar</surname><given-names> T.</given-names></name>,<name name-style="western"><surname> Toskan</surname><given-names> B.</given-names></name>,<name name-style="western"><surname> Turk</surname><given-names> J.</given-names></name>,<name name-style="western"><surname> Merela</surname><given-names> M.</given-names></name>,<name name-style="western"><surname> &amp; Cufar</surname><given-names> K. </given-names></name>,<etal>et al</etal>. (<year>2018</year>)<article-title>. Crnelnik and Devce, Newly Discovered Copper Age Sites at Ljubljansko Barje</article-title><source> Arheoloski Vestnik</source><volume> 69</volume>,<fpage> 9</fpage>-<lpage>68</lpage>.<pub-id pub-id-type="doi"></pub-id></mixed-citation></ref></ref-list></back></article>