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9 results for “domestic equids”
MALDI-TOF-MS reference spectra and sequence data for domesticated equids (horse and donkey) collagen for Zooarchaeology by Mass Spectrometry (ZooMS)
<p>MALDI-TOF-MS spectra of extracted collagen from modern reference and archaeological bone samples to develop markers for Zooarchaeology by Mass Spectrometry (ZooMS) to distinguish between Equus species. For each sample digestions were done in both trypsin and chymotrypsin separately. Information about the species of the samples can be found in 'sample metadata.csv' file. Information on the extraction and digestion protocol can be found in the associated manuscript. The sequence data contains alignments of the proteins COL1A1 and COL1A2 for available Equus collagen protein sequences. More information on these files can be found in the corresponding manuscript to this dataset.<br> </p>
FIG. 9. — Size comparison within 2800-1700 in Horse size and domestication: Early equid bones from the Czech Republic in the European context
FIG. 9. — Size comparison within 2800-1700 BC. Statistics for Vlíněves and other Únětice c. Czech sites are in Table 3. Statistics for Wattendorf-Motzenstein based on Becker (2008); for Rennweg and Csokor-gasse on Czeika (2010); for Csepel-Háros on Benecke & Driesch (2003); for Békés-Városerdö on Bökönyi (1974); for Föllik on Amschler (1949); re-dated to Litzenkeramik in Benkovsky-Pivovarová et al. (1987). Others as in Figs 3, 6. Abbreviations: CR, Czech Republic; Vl,, Vlíněves site.
FIG. 1 in Horse size and domestication: Early equid bones from the Czech Republic in the European context
FIG. 1. — Map with Czech archaeological sites dated from the beginning of the Neolithic to EBA (Únětice c.) which provided equid bones. A, site locations, sorted alphabetically (chronological order in Table 2); B, position of the Czech Republic in Europe (Bohemia, dark area; Moravia, light area; grey lines, state borders); C, geomorphology of central Europe (http://open-data.europa.eu). Numbers: 1, Baba (district Prague); 2, Blučina-Cezavy; 3, Březno; 4, Bylany; 5, Čelákovice; 6, Černý Vůl; 7, Chotěbudice; 8, Cimburk, 9, Ďáblice (distr. Prague); 10, Dobroměřice; 11, Dřevčice; 12, Homolka; 13, Hostěnice-Brozany; 14, Hostivice; 15, Jezeřany-Maršovice; 16, Kobeřice; 17, Kšely, 18, Kutná Hora-Denemark; 19, Litovice; 20, Makotřasy; 21, Mikulov-Jelení louka; 22, Moravská Nová Ves; 23, Roztoky; 24, Starý Lískovec (distr. Brno); 25, Stránská skála (distr. Brno); 26, Těšetice-Kyjovice; 27, Toušeň-Hradišťko; 28, Tuchoměřice; 29, Úholičky; 30, Ve- drovice; 31, Velké Přílepy; 32, Vlíněves; 33, Vyškov; 34, Žádovice.
FIG. 8. — Size comparison within 3500-2700 in Horse size and domestication: Early equid bones from the Czech Republic in the European context
FIG. 8. — Size comparison within 3500-2700 BC. Statistics for the Czech early-mid Eneolithic based on the same data as in Fig. 3 (statistics are in Table 3). Statistics for Balatonőszöd (separately Boleráz and Baden phase) based on Vörös (2014); for Bronocice (incl. BR III-BR V, 3400-2700 BC, excl. 2 tibiae) based on Milisauskas et al. (2006); for German sites from Benecke & Driesch (2003) and Benecke (2006). Others as in Figs 3, 6. Abbreviations: CR, Czech Republic; KH-Denemark/KH-D, Kutná Hora-Denemark site; TRB, Funnel Beaker c.
FIG. 6 in Horse size and domestication: Early equid bones from the Czech Republic in the European context
FIG. 6. — Size comparison between horses from the Czech Republic (dark boxes and dots) and adjacent regions (light boxes) within: A, 15000-5600 BC; B, 5600- 4200 BC. X-axis, locations (in brackets: culture and/or country). Statistics for Hadí cave and Těšetice-Kyjovice based on the same data as the Magdalenien and early Lengyel, respectively (in Fig. 3; Table 3). Statistics for Mirnoe, Kniegrotte, Bärenkeller, LBK (Germany), Sakarovka and Dereivka taken from Benecke & Driesch (2003), for Lausnitz based on Teichert (1963), for Szabadszállás-Tözegtelep on Vörös (1981). Others as in Fig. 3. Abbreviations: CR, Czech Republic; LBK, Linear Pottery c.
FIG. 4 in Horse size and domestication: Early equid bones from the Czech Republic in the European context
FIG. 4. — LSI distributions of Equus postcranial breadths/depths based on Czech datasets from selected periods and E. przewalskii presented by histograms. Based on the same data as in Fig. 3 (outliers incl.). Period codes correspond to other Tables and Figures. A, period 1 – Late Paleolithic (Magdalenien); B, pe- riod 3 – Early Lengyel (Těšetice-Kyjovice site); C, period 6 – Early Eneolithic (TRB); D, period 8 – Middle Eneolithic (Řivnáč culture); E, period 10 – Early Bronze (Únětice culture); F, period 11 – Late Bronze (KnovÍz culture); G, Equus przewalskii; X axes, LSI scale; Y axes, frequency; Red curve, Kernel density; Dotted curve, fit (estimated) normal distribution. Analysed by Past 3.02 statistical software.
Epigenetic models developed for plains zebras predict age in domestic horses and endangered equids
Open the record for dataset details and reuse information.
FIG. 5 in Horse size and domestication: Early equid bones from the Czech Republic in the European context
FIG. 5. — Comparison of standard deviations and quartile differences based on horse size distribution from the Czech sites (left) and selected collections from other regions (right). Based on the same sources as in Figs 3, 4, 6-9. Arrows, wild populations; Dif. Q3-Q1, interquartile range.
FIG. 7. — Size comparison within 4200-3400 in Horse size and domestication: Early equid bones from the Czech Republic in the European context
FIG. 7. — Size comparison within 4200-3400 BC. Statistics for TRB from the Czech Republic based on the same data as in Fig. 3. Statistics for Cmielów based on Krysiak (1950, 1952), for German sites taken from Benecke & Driesch (2003). Others as in Figs 3, 6. Abbreviations: CR, Czech Republic; LBK, Linear Pottery c; TRB, Funnel Beaker c.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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