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103 results for “Shepherding”
Shepherd (s5326)
<b>-- <a href="https://doi.org/10.5281/zenodo.11582199">Documentation</a> --</b><br><br><u>Name</u>: Shepherd<br><u>musiXplora-ID</u>: s5326<br><u>musiXplora-URI</u>: <a href="https://musixplora.de/mxp/s5326">https://musixplora.de/mxp/s5326</a><br><u>Gender</u>: m<br><u>First Mentioned</u>: 2021<br><u>Sectors</u>: Gewerbe, Verein<br><u>Professions (Musical)</u>: Musikforscher<br><u>Professions (Non-Musical)</u>: Informatiker<br><u>Other Places of Activity</u>: Bonn, Chelmsford, Frankfurt/Main, London, Neu-Isenburg<br><br><br><u>Medien:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>VerfasserInnen</td><td>Verfasser</td><td>Let's Calculate Bach. Applying Information Theory and Statistics to Numbers in Music</td><td><a href="https://musixplora.de/mxp/5033341">5033341</a></td></tr></tbody></table><br><br><u>Changelog</u>:<br> - v0.0.1: Initial Upload.<br>
William N. Shepherd (s4759)
<b>-- <a href="https://doi.org/10.5281/zenodo.11582199">Documentation</a> --</b><br><br><u>Name</u>: William N. Shepherd<br><u>musiXplora-ID</u>: s4759<br><u>musiXplora-URI</u>: <a href="https://musixplora.de/mxp/s4759">https://musixplora.de/mxp/s4759</a><br><u>Gender</u>: m<br><u>Date of Birth</u>: 1932<br><u>Place of Birth</u>: Undefined<br><u>Date of Death</u>: 22 March 1984<br><u>Place of Death</u>: London<br><u>First Mentioned</u>: 1949<br><u>Sectors</u>: Instrumentenbau, Militär<br><u>Professions (Historical)</u>: Kontrabassbauer<br><u>Professions (Musical)</u>: Geigenbauer, Reparateur<br><u>Professions (Non-Musical)</u>: Soldat<br><u>Other Places of Activity</u>: London<br><br><br><u>Portfolio:</u><br><table><tbody><tr><th>Group</th><th>Role</th><th>Name</th><th>mXp-ID</th></tr><tr><td>Sortimente</td><td>Sortiment</td><td>Kontrabass</td><td><a href="https://musixplora.de/mxp/2001461">2001461</a></td></tr></tbody></table><br><u>Titel/Medien:</u><br><table><tbody><tr><th>Role</th><th>Sigel</th><th>Title</th><th>mXp-ID</th></tr><tr><td>Related</td><td>Lütgendorff 1990</td><td>Die Geigen- und Lautenmacher vom Mittelalter bis zur Gegenwart. Teil 3: Ergänzungsband. Erstellt von Thomas Drescher. Lüt3</td><td><a href="https://musixplora.de/mxp/5002060">5002060</a></td></tr></tbody></table><br><br><u>Changelog</u>:<br> - v0.0.1: Initial Upload.<br>
Data and code for Barrett, Martin, and Shepherd (2022) "Manipulation-specific cortical activity as mice handle food"
<p>This dataset contains the tracking data, spiking data, and ethograms necessary to reproduce the results of Barrett, Martin, and Shepherd (2022) "Manipulation-specific cortical activity as mice handle food". Also included is Matlab and R code that generates all of the figures, tables, and stats in the aforementioned paper.</p>
Fig. 2 in Unexpected Echinococcus multilocularis infections in shepherd dogs and wolves in south-western Italian Alps: A new endemic area?
Fig. 2. Multiple alignment of partial mitochondrial cob (124bp) from three specimens identified as Echinococcus multilocularis analyzed in the present paper (the first three input sequences) with: (a) six E. multilocularis sequences retrieved from GenBank after comparison by Local Alignment Search Tool BLAST; (b) five sequences referred to Echinococcus granulosus (Eg, EgG1), E. ortleppi (EgG5), E. canadensis (EgG6-7) and Taenia hydatigena (Thy) retrieved from GenBank. (c) Multiple alignment of partial mitochondrial nad1 (139bp) from three specimens identified as Echinococcus ortleppi analyzed in the present paper (the first three input sequences) with sequences retrieved from GenBank belonging to other representatives of E. ortleppi, E. granulosus, E. canadensis, E. multilocularis, T. krabbei, T. ovis and T. hydatigena. Dots indicate identity with nucleotide of the first sequences listed.
Fig. 1 in Unexpected Echinococcus multilocularis infections in shepherd dogs and wolves in south-western Italian Alps: A new endemic area?
Fig. 1. Locations of wolf (blue dots) and dog (orange dots) fecal samples positive to Echinococcus multilocularis collected during a survey on Echinococcus spp. carried out from June to November 2017 in a mountainous area in the Alps of the Imperia Province, Italy. In the map are also reported the southernmost reports of Echinococcus multilocularis (E. multilocularis) to date in Europe (France, Drs. Boué and Umhang, pers. communication; North-Eastern Italian Alps, Croatia, as in (Beck et al., 2018)). Two dog fecal samples were collected from the same pasture and are represented by a single dot (noted as 2×). (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
TYPES: Male holotype from Panama: Panama: Parque Nacional Altos de Campana, 1 hectare PANCODING Inventory, 895 m, 8.68333°, -79.92972°, June 14–19, 2007, M. Arnedo, D. Dimitrov, G. Hormiga, F. Labarque, M. Ramírez, deposited in MIUP, PBI_OON 42313; same data, 1 male paratype deposited in MACN-Ar 29895, PBI_OON 42312. ETYMOLOGY: A noun in apposition; in Greek religion and mythology, Pan is the god of the wild natural world, of shepherds, flocks, and mountains, and of hunting and rustic music. He has hindquarters, legs, and horns of a goat, and the name is here employed to note the large mac- rosetae at the eye region of males that resemble the horns in some illustrations of this god. DIAGNOSIS: This is one of the most autapomor- phic species from the Americas; males have the labium fused with the sternum (fig. 34B), small chelicerae, shorter than the endite length, with anterior blunt projections, and directed backward in lateral view (fig. 34D, E); clypeus directed back- ward (fig. 34D); two light areas on the sternum just below the endites (fig. 34B), carapace almost flat in lateral view and two strong macrosetae at the eye region, pointing forward (fig. 34C–E). Other characters of the male palp, such as the presence of two apophyses, also distinguish this species from others (fig. 38D–F). MALE (PBI_OON 42312): Total length 1.00. Habitus as in figure 34A–C. CEPHALOTHO- RAX: Carapace orange, with brown stripe along in Taxonomic Revision Of The Jumping Goblin Spiders Of The Genus Orchestina Simon, 1882, In The Americas (Araneae: Oonopidae)
TYPES: Male holotype from Panama: Panama: Parque Nacional Altos de Campana, 1 hectare PANCODING Inventory, 895 m, 8.68333°, -79.92972°, June 14–19, 2007, M. Arnedo, D. Dimitrov, G. Hormiga, F. Labarque, M. Ramírez, deposited in MIUP, PBI_OON 42313; same data, 1 male paratype deposited in MACN-Ar 29895, PBI_OON 42312. ETYMOLOGY: A noun in apposition; in Greek religion and mythology, Pan is the god of the wild natural world, of shepherds, flocks, and mountains, and of hunting and rustic music. He has hindquarters, legs, and horns of a goat, and the name is here employed to note the large mac- rosetae at the eye region of males that resemble the horns in some illustrations of this god. DIAGNOSIS: This is one of the most autapomor- phic species from the Americas; males have the labium fused with the sternum (fig. 34B), small chelicerae, shorter than the endite length, with anterior blunt projections, and directed backward in lateral view (fig. 34D, E); clypeus directed back- ward (fig. 34D); two light areas on the sternum just below the endites (fig. 34B), carapace almost flat in lateral view and two strong macrosetae at the eye region, pointing forward (fig. 34C–E). Other characters of the male palp, such as the presence of two apophyses, also distinguish this species from others (fig. 38D–F). MALE (PBI_OON 42312): Total length 1.00. Habitus as in figure 34A–C. CEPHALOTHO- RAX: Carapace orange, with brown stripe along
Shepherd's dishes YK1B9.5
Republik Baschkortostan, Bezirk Kuyurgazinsky. Nekropole Yalchikaevo-2. Objekt Nr. 1. Bestattung Nr. 9. Topf Nr. 5. Frühe Blockhauskultur. Chronologie: Bronzezeit. Republic of Bashkortostan, Kuyurgazinsky district. Excavations in 2006. The necropolis Yalchikaevo-2. Kurgan No. 1. Burial No. 9. Chronology: Bronze Age. Srubnaya culture. Республика Башкортостан, Куюргазинский район. Некрополь Ялчикаево-2. Курган №1. Захоронение №9. Горшок №5. Ранняя срубная культура. Хронология: Бронзовый век. Source: Objaverse 1.0 / Sketchfab
Fragment of dishes of the shepherds L1R6BN2.
Russia, Republic of Bashkortostan, Baymaksky district. Excavations in 2001. Settlement of the Bronze Age Laimberdy-1. Plot №6. Square Б7. Layer №3. Bronze Age. Chronology: end of the 17th - 16th centuries BC. Alakul culture. Россия, Республика Башкортостан, Баймакский район. Раскопки 2001 года. Поселение Лаимберды-1. Раскоп №6. Квадрат Б7. Штык №3. Бронзовый век. Хронология: конец XVII – XVI века до н.э. Алакульская культура. Source: Objaverse 1.0 / Sketchfab
Fragment of pottery of shepherds L1R2.1108
Russia, Republic of Bashkortostan, Khaibullinsky district. Excavations in 2001. Settlement of the Bronze Age Laimberdy-1. Plot №2. Square ББ11, Level 1. Bronze Age. Chronology: end of the 17th - 16th centuries BC. Alakul culture. Россия, Республика Башкортостан, Хайбуллинский район. Раскопки 2001 года. Посе-ление Лаимберды-1. Раскоп №2. Квадрат ББ11. Штык №1. Бронзовый век. Хронология: конец XVII – XVI века до н.э. Алакульская культура. Source: Objaverse 1.0 / Sketchfab
Tytus Chałubiński's tourist-type Shepherd's axe
ID no.: S/538/MT Museum: The Dr. Tytus Chałubiński Tatra Museum in Zakopane https://muzea.malopolska.pl/en/objects-list/1983 Digitalisation: RDW MIC, Virtual Małopolska project Source: Objaverse 1.0 / Sketchfab
Fragment of dishes of the shepherds L1R2N182
Russia, Republic of Bashkortostan, Baymaksky district. Excavations in 2001. Settlement of the Bronze Age Laimberdy-1. Plot №2. Square A1. Layer №3. Late Bronze Age. Chronology: end of XII - IX centuries BC. Sargarin culture. Россия, Республика Башкортостан, Баймакский район. Раскопки 2001 года. Поселение Лаимберды-1. Раскоп №2. Квадрат А1. Штык №3. Поздний бронзовый век. Хронология: конец XII – IX века до новой эры. Саргаринская культура. Source: Objaverse 1.0 / Sketchfab
Fragment of dishes of the shepherds L1R2N390
Russia, Republic of Bashkortostan, Baymaksky district. Excavations in 2001. Settlement of the Bronze Age Laimberdy-1. Plot №2. Square A8. Layer №2. Late Bronze Age. Chronology: end of XII - IX centuries BC. Sargarin culture. Россия, Республика Башкортостан, Баймакский район. Раскопки 2001 года. Поселение Лаимберды-1. Раскоп №2. Квадрат А8. Штык №2. Поздний бронзовый век. Хронология: конец XII – IX века до новой эры. Саргаринская культура. Source: Objaverse 1.0 / Sketchfab
Fragment of pottery of shepherds L1R2.1328
Russia, Republic of Bashkortostan, Khaibullinsky district. Excavations in 2001. Settlement of the Bronze Age Laimberdy-1. Plot №2. Square EE10, Level 2. Bronze Age. Chronology: end of the 17th - 16th centuries BC. Alakul culture. Russland, Republik Baschkortostan, Bezirk Khaibullinsky. Ausgrabungen im Jahr 2001. Be-siedlung der Bronzezeit Laimberdy-1. Ausgrabungsstätte Nr. 2. Quadrat EE10. Level 2. Bronzezeit. Chronologie: Ende des 17. - 16. Jahrhunderts v. Alakul Kultur. Россия, Республика Башкортостан, Хайбуллинский район. Раскопки 2001 года. Насе-ленный пункт бронзового века Лаимберды-1. Раскоп №2. Квадрат ЕЕ10. Штык №2. Брон-зовый век. Хронология: конец XVII – XVI века до н.э. Алакульская культура. Source: Objaverse 1.0 / Sketchfab
Christ As A Good Shepherd
Material: Ivory. Accession no: HCM 098. Current Location: [The Hunt Museum](https://www.huntmuseum.com/) [Limerick](https://www.geonames.org/7778675/limerick-city.html). A figure of Christ as the Good Shepherd in ivory. Christ is shown as a child sitting with the legs crossed and the chin resting on a hand and a lamb on the lap. The figure is set above a scene with a reclining figure at the base and three lambs around a fountain. Water is pouring from the mouth of a carved head. [Goa](http://www.geonames.org/1271157/goa.html). [More](http:/www.huntmuseum.com/collection/figure-of-christ-as-the-good-shepherd//). Source: Objaverse 1.0 / Sketchfab
Shepherd's whip handle
ID no.: 32267/mek Museum: The Seweryn Udziela Ethnographic Museum in Kraków https://muzea.malopolska.pl/en/objects-list/1500 Digitalisation: RDW MIC, Virtual Małopolska project Source: Objaverse 1.0 / Sketchfab
Supplementary material 1 from: Shepherd KA, Lepschi BJ, Johnson EA, Gardner AG, Sessa EB, S. Jabaily R (2020) The concluding chapter: recircumscription of Goodenia (Goodeniaceae) to include four allied genera with an updated infrageneric classification. PhytoKeys 152: 27-104. https://doi.org/10.3897/phytokeys.152.49604
Summary of GenBank accession numbers, Taxon names, Project numbers, Herbarium Accession numbers, voucher collectors and collection numbers, phylogenetic position and taxonomy and classification according to Shepherd et al.
Data from: Gene flow between wolf and shepherd dog populations in Georgia (Caucasus)
We studied the distribution of the mitochondrial DNA haplotypes and microsatellite genotypes at eight loci in 102 grey wolves, 57 livestock guarding dogs, and 9 mongrel dogs from Georgia (Caucasus). Most of the studied dogs had mitochondrial haplotypes clustered with presumably East Asian dog lineages, and most of the studied wolves had the haplotypes clustered with European wolves, but 20% of wolves and 37% of dogs shared the same mitochondrial haplotypes. Bayesian inference with STRUCTURE software suggested that over 13% of the studied wolves had detectable dog ancestry and over 10% of the dogs had detectable wolf ancestry. 2-3% of the sampled wolves and dogs were identified, with a high probability, as first generation hybrids. These results were supported by the relatedness analysis which showed that 10% of wolves and 20% of dogs had closest relatives from an opposite group. The results of the study suggest that wolf-dog hybridization is a common event in the areas where large livestock guarding dogs are held in a traditional way, and that gene flow between dogs and grey wolves was an important force influencing gene pool of dogs for millennia since early domestication events. This process may have been terminated (1) in areas outside the natural range of grey wolves and (2) since very recent time, when humans started to more tightly control contacts of purebred dogs.
Data from: Genomic signature of successful colonization of Eurasia by the allopolyploid shepherd's purse (Capsella bursa-pastoris)
Polyploidization is a dominant feature of flowering plant evolution. However, detailed genomic analyses of the inter-population diversification of polyploids following genome duplication are still in their infancy, mainly because of methodological limits, both in terms of sequencing and computational analyses. The shepherd's purse (Capsella bursa-pastoris) is one of the most common weed species in the world. It is highly self-fertilizing, and recent genomic data indicate that it is an allopolyploid, resulting from hybridization between the ancestors of the diploid species Capsella grandiflora and Capsella orientalis. Here, we investigated the genomic diversity of C. bursa-pastoris, its population structure and demographic history, following allopolyploidization in Eurasia. To that end, we genotyped 261 C. bursa-pastoris accessions spread across Europe, the Middle East and Asia, using genotyping-by-sequencing, leading to a total of 4,274 SNPs after quality control. Bayesian clustering analyses revealed three distinct genetic clusters in Eurasia: one cluster grouping samples from Western Europe and Southeastern Siberia, the second one centered on Eastern Asia and the third one in the Middle East. Approximate Bayesian computation (ABC) supported the hypothesis that C. bursa-pastoris underwent a typical colonization history involving low gene flow among colonizing populations, likely starting from the Middle East towards Europe and followed by successive human-mediated expansions into Eastern Asia. Altogether, these findings bring new insights into the recent multistage colonization history of the allotetraploid C. bursa-pastoris and highlight ABC and genotyping-by-sequencing data as promising but still challenging tools to infer demographic histories of selfing allopolyploids.
Data from: The shepherds' tale: a genome-wide study across 9 dog breeds implicates two loci in the regulation of fructosamine serum concentration in Belgian shepherds
Diabetes mellitus is a serious health problem in both dogs and humans. Certain dog breeds show high prevalence of the disease, whereas other breeds are at low risk. Fructosamine and glycated hemoglobin (HbA1c) are two major biomarkers of glycaemia where serum concentrations reflect glucose turnover over the past few weeks to months. In this study, we searched for genetic factors influencing variation in serum fructosamine concentration in healthy dogs using data from nine dog breeds. Considering all breeds together, we did not find any genome-wide significant associations to fructosamine serum concentration. However, by performing breed-specific analyses we revealed an association on CFA 3 (pcorrected ≈ 1.68 × 10−6) in Belgian shepherd dogs. The associated region and its close neighborhood harbours interesting candidate genes such as LETM1 and GAPDH that are important in glucose metabolism and have previously been implicated in the aetiology of diabetes mellitus. To further explore the genetics of this breed specificity, we screened the genome for reduced heterozygosity stretches private to the Belgian shepherd breed. This revealed a region with reduced heterozygosity that shows a statistically significant interaction (p = 0.025) with the association region on CFA3. This region also harbours some interesting candidate genes and regulatory regions but the exact mechanisms underlying the interaction are still unknown. Nevertheless, this finding provides a plausible explanation for breed-specific genetic effects for complex traits in dogs. Shepherd breeds are at low risk of developing diabetes mellitus. The findings in Belgian shepherds could be connected to a protective mechanism against the disease. Further insight into the regulation of glucose metabolism could improve diagnostic and therapeutic methods for diabetes mellitus.
Bronze Age Shepherd's Dishes LIE1Z1
Russia, Baymaksky district. Excavations in 2001. Chronology: The Bronze Age, XVII-XVI centuries BC. Bronzezeitliche Hirtengerichte LIE1Z1. Russland, Baymaksky Bezirk. Ausgrabungen im Jahr 2001. Chronologie: Die Bronzezeit, XVII-XVI Jahrhunderte vor Christus. Россия, Баймакский район. Раскопки 2001 года. Поселение Лаимерды-1. Хронология: Эпоха бронзы, XVII-XVI вв. до н.э. Replaced a fragment of the pot with a reconstruction of the full shape of the pot. Source: Objaverse 1.0 / Sketchfab
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