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213 results for “Sus”
Figure 6 in Mitochondrial DNA control region variability of wild boar Sus scrofa with various external phenotypes in Turkey
Figure 6. Bayesian inference tree based on 68 partial D-loop haplotypes of 485 wild boars (both obtained in this study and downloaded from GenBank). Posterior probabilities are indicated at nodes. Haplogroups: A, Asian; NE, Near Eastern; E1, European E1; E2, European E2. Outgroup taxa are Sus barbatus and Phacochoerus aethiopicus.
Figure 1 in Mitochondrial DNA control region variability of wild boar Sus scrofa with various external phenotypes in Turkey
Figure 1. Location map of the 70 samples examined in this study: black dots indicate local samples of one or more individuals and numbers refer to locality names in Table 1. TT (Turkish Thrace, 1–4), SWA (Southwestern Anatolia, 5–11), CA (Central Anatolia, 12–26), NEA (Northeastern Anatolia, 27–30), and SEA (Southeastern Anatolia, 31–34).
Figure 5 in Mitochondrial DNA control region variability of wild boar Sus scrofa with various external phenotypes in Turkey
Figure 5. Maximum likelihood tree based on 68 haplotypes from 485 wild boar D-loop region sequences (both obtained in this study and downloaded from GenBank). Numbers above or below branches indicate bootstrap support values. Haplogroups: A, Asian; NE, Near Eastern; E1, European E1; E2, European E2. Outgroup taxa are Sus barbatus and Phacochoerus aethiopicus.
Figure 4 in Mitochondrial DNA control region variability of wild boar Sus scrofa with various external phenotypes in Turkey
Figure 4. Bayesian phylogenetic tree constructed from haplotypes of the wild boar (Sus scrofa) samples collected in this study, based on the partial D-loop sequences of mtDNA. Posterior probabilities are indicated at nodes. TR numbers refer to current haplotype numbers in Table 1 and H numbers refer to the published haplotype labels downloaded from GenBank (Table 2). E1: European 1 haplogroup/clade in Figure 5, NE: Near East haplogroup/clade in Figure 5.
Fig. 3 in A comparison of detection methods of Alaria alata mesocercariae in wild boar (Sus scrofa) meat
Fig. 3. Probability of detection of DMS using various methods (Digestion, D + P, Compressor) in relation to numbers of DMS in meat sample (basing on AMT method) (n = 43 for D + P, Digest, n = 19 for Compressor, for details, see Methods).
Fig. 1 in A comparison of detection methods of Alaria alata mesocercariae in wild boar (Sus scrofa) meat
Fig. 1. The scheme of the experiment. Legend: P – prevalence of infection has been determined, I – intensity of infection has been determined, S – sensitivity of method has been determined, DMS – Distomum musculorum suis (mesocercariae of Alaria alata), AMT-reference – Alaria alata mesocercariae migration technique – reference method, Compressor – compressor analysis, Digestion – digestion with digestion stirrer, D + P – modified digestion with Pancreatin® bile pancreatic enzymes.
Fig. 2 in A comparison of detection methods of Alaria alata mesocercariae in wild boar (Sus scrofa) meat
Fig. 2. Mean numbers of DMS in meat sample (30 g) and comparison with the Kruskall Wallis test (X2 = 64.34.03; df = 2; P <0.001, N = 43 in all cases) and pairwise comparison with the Mann-Whitney U test (statistical difference was stated in comparison of pairs: AMT-Digestion and AMT-D + P, p <0.001 in both cases).
Fig. 1 in Toxoplasma gondii and Neospora caninum in invasive wild boars (Sus scrofa) and hunting dogs from Brazil
Fig. 1. Map highlighting the cities where wild boar and hunting dog samples were obtained, Brazil, 2024.
Top 200 frases célebres y sus autores
<p>El dataset publicado parte de una extracción de las 200 frases más populares de la web analizada, y la información de cada una de ellas. En concreto mostramos el autor, fecha de nacimiento, muerte, ciudad y país natal del autor, el texto de la frase, sus likes, tags y la fecha de la extracción. Estos datos se obtienen de una página que muestra una gran batería de frases célebres ordenadas de forma descendente por likes, lo que nos permite obtener este top 200. Debido a que los datos de esta web se encuentran protegidos, para publicarlos hemos cambiado el nombre del autor por un código numérico y asignado un valor aleatorio entre 1000 y 3000 al campo likes. Además, hemos reordenado la base por el valor de likes. </p> <p> </p> <p><em>The published dataset is based on an extraction of the 200 most popular quotes from the analyzed website, including detailed information about each quote. Specifically, we display the author, date of birth, date of death, birthplace city, and country, as well as the text of the quote, its number of likes, tags, and the extraction date. These data were obtained from a webpage showcasing a large selection of famous quotes sorted in descending order by likes, allowing us to capture this top 200 selection. Since the data on this site is protected, we have anonymized it by replacing the author's name with a numerical code and assigning a random value between 1000 and 3000 to the likes field. Additionally, we reordered the dataset by the likes value.</em></p>
Confocal micrographs and complete dataset of neuromuscular junction morphology of pelvic limb muscles of the pig (Sus scrofa)
<p>This dataset entails the complete NMJ dataset for three pigs and the three muscles analysed for the publication "Comparative anatomy of the mammalian neuromuscular junction" (https://doi.org/10.1111/joa.13260). This includes spreadsheets (.csv) containing morphometric variables of neuromuscular junction morphology generated using NMJ-morph or aNMJ-morph, as well as muscle fibre diameter (MFD) data for completeness. The three muscles analysed are: extensor digitorum longus (EDL), peroneus longus (PL) and soleus (S). Data contains raw microscope images (.nd2), thresholded and cleaned images of pre- and post-synapse (.tif) and the thresholded and cleaned images of the intermediate muscle endplate (.tif) for the muscle soleus since the "aNMJ-morph" macro saves this intermediate image for measurement of endplate variables.</p> <p>The full data set description is in the readme_file.txt.</p>
Figura 1 in Los cocoideos (Hemiptera: Sternorrhyncha: Coccoidea) presentes en la Cordillera de Guaniguanico, Pinar del Río, Cuba, y la relación con sus hospedantes
Figura 1. Mapa de distribución de las especies de cocoideos en la cordillera de Guaniguanico, Pinar del Río, Cuba.
FIG. 9. — Two young men distributing meat from a domestic pig Sus scrofa Linnaeus, 1758 in Prey into kin: the cosmological role of the pig in the Kelabit Highlands, Sarawak
FIG. 9. — Two young men distributing meat from a domestic pig Sus scrofa Linnaeus, 1758 (berak) at irau in Bario, 1987. Photo credit: Kaz Janowski.
Fig. 1 in Using a spatial mark-resight model to estimate the parameters of a wild pig (Sus scrofa) population in Singapore
Fig. 1. Map showing the location of the Central Catchment Nature Reserve on mainland Singapore. All 27 camera points are indicated with a red circle. Black squares indicate the three camera points added to the 1 km2 grid. The six cage traps are marked with a blue cross. Dotted circles indicate areas the last remaining patches of primary forest in Singapore.
Fig. 3 in Using a spatial mark-resight model to estimate the parameters of a wild pig (Sus scrofa) population in Singapore
Fig. 3. Map of the Central Catchment Nature Reserve showing the day and night fixes of the collared pig. The home ranges are calculated from the monthly 95% Kernel Density Estimate (KDE), while the aggregate home range was calculated from the 99% KDE from all six months. The Seletar Expressway (SLE) is pointed out on the map and the satellite overlay was adapted from Google Earth.
Fig. 2 in Using a spatial mark-resight model to estimate the parameters of a wild pig (Sus scrofa) population in Singapore
Fig. 2. The density map showing the number of activity centres per kilometer square, the locations of the camera points (circles), 143 out of 856 GPS locations from the collared pig (black dots) and the boundary of the Central Catchment Nature Reserve. Only a fraction of the GPS locations was plotted to prevent the colored pixels from being obscured. Each pixel is 1 km2. X and Y coordinates are in kilometers.
FIG. 16 in Re-assessment of the suids from the Sables marins de Montpellier and selection of a lectotype for Sus provincialis Blainville, 1847
FIG. 16. — Bivariate plot of upper and lower third molars of suids from Montpellier (white M) and other Late Miocene and Plio-Pleistocene localities in Europe. The sloping black line separates the upper molars from the lower ones. There are four size groups of suids at Montpellier corresponding in dimensions to Dasychoerus arvernensis for the smallest group, Dasychoerus sp. from Kvabebi for an intermediate sized group, "Sus" provincialis for a slightly larger medium sized group, and Dasychoerus strozzii for the largest one. Abbreviations: A, Val d'Arno; B, Brisighella; C, Corton; D, Dermenji; E, East Runton; F, Villafranca d'Asti; G, Kvabebi; H, Hajnacka; I, Vozarci; K, Khapry; L, Nikolskoe; M, Montpellier; N, Maramena; O, Olivola; P, Perpignan; Q, Bra; R, Red Crag (large specimens possibly belonging to Hippopotamodon major); S, Varghis; T, Çalta; U, Piedrabuena; V, Venta del Moro; W, GÖdÖllÖ; X, Kalnitsa; Y, Alcoy; Z, Musaitu; §, Auvergne; +, Red Crag (small specimens); =, Trévoux; ⁕ – lectotype of Dasychoerus arvernensis, �, lectotype of "Sus" provincialis). Measurements are from Berdondini (1992), Depéret (1885), Gallai & Rook (2011), Geraads et al. (2008), Guérin (pers. comm.), Hellmund (1995), Hünermann (1971), Lydekker (1885), Mazo & Torres (1990), Morales (1984), Mottl (1939), Samson et al. (1971), Titov (2000), Vekua (1972). Measurements of the teeth of Dasychoerus strozzii were kindly supplied by J. Van der Made.
FIG. 15 in Re-assessment of the suids from the Sables marins de Montpellier and selection of a lectotype for Sus provincialis Blainville, 1847
FIG. 15. — Lower molars of "Sus" provincialis Blainville, 1847 (A, B) and Dasychoerus arvernensis (Croizet & Jobert, 1828) (C) from the Sables marins de Montpellier: A, FSL 40 070, right m/2-m/3 in lingual (A1), stereo occlusal (A2) and buccal (A3) views; B, FSL 40 155, left m/3 in buccal (B1), stereo occlusal (B2) and lingual (B3) views; C, FSL 40 154, right m/3 in lingual (C1), stereo occlusal (C2) and buccal (C3) views. Scale bar: 10 mm.
FIG. 14 in Re-assessment of the suids from the Sables marins de Montpellier and selection of a lectotype for Sus provincialis Blainville, 1847
FIG. 14. — Mandibles of "Sus" provincialis Blainville, 1847 (A, B) and Dasychoerus arvernensis (Croizet & Jobert, 1828) (C) from the Sables marins de Montpellier: A, FSL 40 072, left mandible fragment containing m/2-m/3 in buccal (A1), stereo occlusal (A2) and lingual (A3) views; B, FSL 40 061, left mandible fragment containing m/1-m/3 in buccal (B1), stereo occlusal (B2) and lingual (B3) views; C, FSL 40 151, right mandible fragment containing m/1-m/3 in lingual (C1), stereo oclusal (C2) and buccal (C3) views. Scale bar: 10 mm.
FIG. 12 in Re-assessment of the suids from the Sables marins de Montpellier and selection of a lectotype for Sus provincialis Blainville, 1847
FIG. 12. — Mandibles of "Sus" provincialis Blainville, 1847 from the Sables marins de Montpellier: A, FSL 40 881, left mandible containing p/4-m/3 in buccal (A1), stereo occlusal (A2) and lingual (A3) views; B, FSL 40 884, left mandible containing p/2-m/3 in buccal (B1), stereo occlusal (B2) and lingual (B3) views. Scale bar: 10 mm.
FIG. 13 in Re-assessment of the suids from the Sables marins de Montpellier and selection of a lectotype for Sus provincialis Blainville, 1847
FIG. 13. — Mandibles of "Sus" provincialis Blainville, 1847 from the Sables marins de Montpellier: A, FSL 40 171, right mandible containing p/3-m/2 in lingual (A1), stereo occlusal (A2) and buccal (A3) views; B, FSL 40 072, right mandible containing p/1-p/4, m/1-m/3 in lingual (B1), stereo occlusal (B2) and buccal (B3) views. Scale bar: 10 mm.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.