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881por Brown, Sarah Mills, Klaffenböck, Michael, Nevison, Ian Macleod, Lawrence, Alistair Burnett“…The aim of this study was to analyse spontaneous play behaviour in litters of domestic pigs (Sus scrofa) for sources of variation at individual and litter levels and to relate variation in play to measures of pre and postnatal development. …”
Publicado 2015
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882por Elnekave, Ehud, King, Roni, van Maanen, Kees, Shilo, Hila, Gelman, Boris, Storm, Nick, Klement, Eyal“…Overall, 209 samples were tested, comprising sera of 120 wild boar (Sus scrofa lybicus), 64 mountain gazelles (Gazella gazella gazella), 6 water buffaloes (Bubalus bubalis), and 19 Persian fallow deer (Dama dama mesopotamica). …”
Publicado 2016
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883por Pereira, André, Parreira, Ricardo, Nunes, Mónica, Casadinho, Afonso, Vieira, Maria Luísa, Campino, Lenea, Maia, Carla“…METHODS: One hundred and forty one blood samples from free-ranging ungulates including 73 red deer (Cervus elaphus), 65 wild boars (Sus scrofa) and three fallow deer (Dama dama) were tested for the presence of Anaplasma marginale/A. ovis, A. phagocytophilum, Anaplasma/Ehrlichia spp., Babesia/Theileria spp., Borrelia burgdorferi (sensu lato) (s.l.), and Rickettsia spp. …”
Publicado 2016
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884“…METHODS: In this study, single-nucleotide polymorphisms (SNPs) from six populations of pig (Sus scrofa) were screened by PCR-sequencing and genotyped, and its association with backfat thickness was analyzed in a population of New Huai line (NHP, n = 117). …”
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885“…Crucially, the observed virulence of the different serotypes and mutants was in agreement with virulence observed in piglets (Sus scrofa) and the zebrafish larval infection model. …”
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886por Guo, Yuanmei, Huang, Yixuan, Hou, Lijuan, Ma, Junwu, Chen, Congying, Ai, Huashui, Huang, Lusheng, Ren, Jun“…RESULTS: We identified 44 chromosomal regions that were associated with the nine traits, including four genome-wide significant single nucleotide polymorphisms (SNPs) on SSC2 (SSC for Sus scrofa chromosome), 4, 7 and X. Compared to the single-population GWAS, the meta-analysis was less powerful for the identification of SNPs with population-specific effects but more powerful for the detection of SNPs with population-shared effects. …”
Publicado 2017
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887por Derks, Martijn F. L., Megens, Hendrik-Jan, Bosse, Mirte, Lopes, Marcos S., Harlizius, Barbara, Groenen, Martien A. M.“…RESULTS: We examined three commercial pig (Sus scrofa) populations for potentially deleterious genetic variation based on 80 K SNP-chip genotypes, and estimate the effects on reproductive traits. 24,000 pigs from three populations were analyzed for missing or depletion of homozygous haplotypes. …”
Publicado 2017
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888por Jori, Ferran, Relun, Anne, Trabucco, Bastien, Charrier, François, Maestrini, Oscar, Chavernac, David, Cornelis, Daniel, Casabianca, François, Etter, Eric Marcel Charles“…Wild boars and domestic pigs belong to the same species (Sus scrofa). When sympatric populations of wild boars, feral pigs, and domestic pigs share the same environment, interactions between domestic and wild suids (IDWS) are suspected to facilitate the spread and maintenance of several pig pathogens which can impact on public health and pig production. …”
Publicado 2017
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889por Gerofke, Antje, Ulbig, Ellen, Martin, Annett, Müller-Graf, Christine, Selhorst, Thomas, Gremse, Carl, Spolders, Markus, Schafft, Helmut, Heinemeyer, Gerhard, Greiner, Matthias, Lahrssen-Wiederholt, Monika, Hensel, Andreas“…Therefore, the research project “Safety of game meat obtained through hunting” (LEMISI) has been conducted in Germany, with the aims of determining the concentrations of lead (as well as of copper and zinc) brought into the edible parts of game meat (roe deer (Capreolus capreolus) and wild boar (Sus scrofa)) due to using either lead or non-lead hunting ammunition, whilst concurrently taking geogenic (i.e. …”
Publicado 2018
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890por Kovarnik, Tomas, Navratil, Miroslav, Belohlavek, Jan, Mlcek, Mikulas, Chval, Martin, Chen, Zhi, Jerabek, Stepan, Kittnar, Otomar, Linhart, Ales“…We performed an experiment with 10 crossbred (Landrace × large white) female pigs (Sus scrofa domestica). METHODS: Hypovolemia was induced by bleeding from a femoral artery, in six stages. …”
Publicado 2018
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891por Chermuła, Błażej, Brązert, Maciej, Iżycki, Dariusz, Ciesiółka, Sylwia, Kranc, Wiesława, Celichowski, Piotr, Ożegowska, Katarzyna, Nawrocki, Mariusz J., Jankowski, Maurycy, Jeseta, Michal, Antosik, Paweł, Bukowska, Dorota, Skowroński, Mariusz T., Brussow, Klaus P., Bruska, Małgorzata, Pawelczyk, Leszek, Zabel, Maciej, Nowicki, Michał, Kempisty, Bartosz“…The cells were recovered from mature sus scrofa specimen after slaughter. They were then subjected to enzymatic digestion and culture primarily for a short term. …”
Publicado 2019
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892por Erazo, Diana, Gottdenker, Nicole L., González, Camila, Guhl, Felipe, Cuellar, Monica, Kieran, Troy J., Glenn, Travis C., Umaña, Juan D., Cordovez, Juan“…RESULTS: Eighteen vertebrate species were identified and pigs (Sus scrofa) made up the highest proportion of blood meals in both habitats, followed by house mouse (Mus musculus) and opossum (Didelphis marsupialis). …”
Publicado 2019
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893por Wehr, Nathaniel H., Kinney, Kealohanuiopuna M., Nguyen, Nhu H., Giardina, Christian P., Litton, Creighton M.“…Nonnative, invasive feral pigs (Sus scrofa) modify habitats by disturbing soils and vegetation, which can alter biogeochemical processes. …”
Publicado 2019
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894“…The system can be applied to the individual identification or paternal test of each of the ten common species which are Sus scrofa (pig), Bos taurus (cattle), Capra hircus (goat), Equus caballus (horse), Canis lupus familiaris (dog), Felis catus (cat), Ovis aries (sheep), Oryctolagus cuniculus (rabbit), and Bos grunniens (yak), and Homo sapiens (human). …”
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895por Brązert, Maciej, Kranc, Wiesława, Nawrocki, Mariusz J., Sujka-Kordowska, Patrycja, Konwerska, Aneta, Jankowski, Maurycy, Kocherova, Ievgeniia, Celichowski, Piotr, Jeseta, Michal, Ożegowska, Katarzyna, Antosik, Paweł, Bukowska, Dorota, Skowroński, Mariusz T., Bruska, Małgorzata, Pawelczyk, Leszek, Zabel, Maciej, Piotrowska-Kempisty, Hanna, Nowicki, Michał, Kempisty, Bartosz“…Pig material was used for experimentation, as it possesses similarities to the reproductive processes and general genetic proximities of Sus scrofa to human. Oocytes, isolated from the ovaries of slaughtered animals were assessed via the Brilliant Cresyl Blue test and directed to IVM. …”
Publicado 2020
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896por de Freitas Siqueira Silva, Elís Rosélia Dutra, Neto, Napoleão Martins Argôlo, de Oliveira Bezerra, Dayseanny, de Moura Dantas, Sandra Maria Mendes, dos Santos Silva, Lucilene, da Silva, Avelar Alves, de Moura, Charlys Rhands Coelho, Júnior, Antônio Luíz Gomes, Braz, Débora Cavalcante, Costa, José Ricardo Freitas, de Carvalho Leite, Yulla Klinger, de Carvalho, Maria Acelina Martins“…This study is aimed at evaluating the evolution of genetic stability, viability, and oxidative stress of bone marrow mesenchymal stem cells (MSCBMsu) and renal progenitor cells of the renal cortex (RPCsu) of swine (Sus scrofa domesticus) in culture passages. P2, P5, and P9 were used for MSCBMsu and P1, P2, and P3 for RPCsu obtained by thawing. …”
Publicado 2020
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897por Richomme, Céline, Réveillaud, Edouard, Moyen, Jean-Louis, Sabatier, Perrine, De Cruz, Krystel, Michelet, Lorraine, Boschiroli, Maria Laura“…In France, animal tuberculosis (TB) due to Mycobacterium bovis (M. bovis) affects a multi-host community that include cattle and wildlife species such as wild boars (Sus scrofa), badgers (Meles meles), or wild deer (Cervus elaphus, Capreolus capreolus). …”
Publicado 2020
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898por Viana, Marcus Vinicius Canário, Profeta, Rodrigo, da Silva, Alessandra Lima, Hurtado, Raquel, Cerqueira, Janaína Canário, Ribeiro, Bruna Ferreira Sampaio, Almeida, Marcelle Oliveira, Morais-Rodrigues, Francielly, Soares, Siomar de Castro, Oliveira, Manuela, Tavares, Luís, Figueiredo, Henrique, Wattam, Alice Rebecca, Barh, Debmalya, Ghosh, Preetam, Silva, Artur, Azevedo, Vasco“…The bacterial strain PO100/5 was isolated from a skin abscess taken from a pig (Sus scrofa domesticus) in the Alentejo region of southern Portugal. …”
Publicado 2020
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899por Delgado-Acevedo, Johanna, Zamorano, Angeline, DeYoung, Randy W., Campbell, Tyler A.“…ABSTRACT: Wild pigs (Sus scrofa) alter ecosystems, affect the economy, and carry diseases that can be transmitted to livestock, humans, and wildlife. …”
Publicado 2021
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900por Brinke, Ines, Große-Brinkhaus, Christine, Roth, Katharina, Pröll-Cornelissen, Maren Julia, Klein, Sebastian, Schellander, Karl, Tholen, Ernst“…A genome-wide association analysis revealed 48 significant associations and confirmed a region for SKA on Sus Scrofa chromosome (SSC) 14. For EFP, the results differed between the clusters. …”
Publicado 2021
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