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213 results for “Sus”
Fig. 1 in Redescubrimiento de Callophrys avis (Chapman, 1909) en Sierra Morena (Andalucía) y algunos comentarios sobre sus citas en España (Lepidoptera: Lycaenidae).
Fig. 1.- Citas de Callophrys avis en Sierra Morena (Andalucía) sobre la base de la red UTM 10x10 km: (1) Sierra de Huelva (MORENO DURÁN, 1991); (2) Sierra de Hornachuelos (nueva localidad). Se muestra también la distribución de sus plantas nutricias larvarias Arbutus unedo y Coriaria myrtifolia sobre la base de la red UTM 1x1 km, a partir de GBIF (2017a, b). El ámbito de la cordillera se equipara al del sector biogeográfico mariánico-monchiquense en esta Comunidad (área verde claro seġn REDIAM, 2010).
Fig. 2 in Redescubrimiento de Callophrys avis (Chapman, 1909) en Sierra Morena (Andalucía) y algunos comentarios sobre sus citas en España (Lepidoptera: Lycaenidae).
Fig. 2.- Callophrys avis: Sierra de Hornachuelos, Hornachuelos, Córdoba, 350 m.s.n.m., imago posado sobre su planta nutricia Arbutus unedo, 6-IV-2017.
Fig. 1 in Short communication First documented observation of differential dorsoventral coat colouration in wild boar Sus scrofa (Artyodactyla: Suidae) in Italy
Fig. 1 - The juvenile wild boar object of this note showing the differential dorsoventral colouration pattern (right) next another wild-type individual (left). Additional footage available at: https://youtu.be/gTc0BFSE9kA. / Il giovane esemplare di cinghiale oggetto di questa nota in cui è visibile il pattern cromatico a demarcazione dorsoventrale (a destra) accanto a un altro individuo con la tipica colorazione marrone uniforme (a sinistra). È anche disponibile un filmato aggiuntivo: https://youtu.be/ gTc0BFSE9kA. (Photo and video: / Foto e video: Francesco Gallozzi).
Fig. 1 in Trichinella species circulating in wild boar (Sus scrofa) populations in Poland
Fig. 1. Example of electrophoretic patterns obtained from multiplex PCR on Trichinella larvae collected from wild boar. Lane 1 and 8 molecular weight marker (Fermentas 100 bp DNA Ladder); lanes 2 and 4, T. spiralis; lanes 3 and 5, T. britovi; lane 6, T. spiralis and T. britovi mixed infection; lane 7, negative control.
Fig. 2 in Seroprevalence of Toxoplasma gondii in wild boars (Sus scrofa) hunted in Ukraine
Fig. 2. Box plot of Toxoplasma gondii serology results from wild boars from Ukraine, obtained using a locally available enzyme-linked immunosorbent assay and majority criteria based on results of three tests (locally available enzyme-linked immunosorbent assay (ELISA), commercial ELISA (ID Screen Toxoplasmosis Indirect Multi-Species), and an indirect immunofluorescence test (IFAT)). ELISA proportion (OD sample/mean OD of positive controls *100) using the locally available ELISA is on the Y-axis and majority criteria is on the X-axis.
Fig. 1 in Seroprevalence of Toxoplasma gondii in wild boars (Sus scrofa) hunted in Ukraine
Fig. 1. Seroprevalence of Toxoplasma gondii infection among wild boars by region in Ukraine, based on results from a locally available enzyme-linked immunosorbent assay (ELISA). For regions with at least one seropositive wild boar, the number of seropositive wild boards out of number of tested wild boars is shown.
Fig. 2 in Hepatozoon apri n. sp. (Adeleorina: Hepatozoidae) from the Japanese wild boar Sus scrofa leucomystax (Mammalia: Cetartiodactyla)
Fig. 2. Inflammatory lesion with released merozoites or gamonts in the femoral muscle of Japanese wild boar.
Fig. 1. a–b in Hepatozoon apri n. sp. (Adeleorina: Hepatozoidae) from the Japanese wild boar Sus scrofa leucomystax (Mammalia: Cetartiodactyla)
Fig. 1. a–b) Gamonts of Hepatozoon apri n. sp. in the cytoplasm of neutrophils detected in the blood smear of a boar (ID: 28-11), showing acentric and rounded nuclei (arrows) and a small protrusion containing eosinophilic granules (arrowheads).
Fig. 4 in Hepatozoon apri n. sp. (Adeleorina: Hepatozoidae) from the Japanese wild boar Sus scrofa leucomystax (Mammalia: Cetartiodactyla)
Fig. 4. Phylogenetic analysis of Hepatozoon apri n. sp. based on 18S rDNA sequences (522-bp). Adelina dimidiata (accession no. DQ096835) was chosen as the outgroup to root the phylogeny. Neighbor-joining (NJ) and maximum likelihood (ML) analysis showing the phylogenetic relationships among boar isolates and two Hepatozoon spp. (KF318170, KF318171) detected in Dermacentor ticks collected from wild boar in Thailand. Sequences included in the comparison were downloaded from the DDBJ/EMBL/GenBank databases. Filled circles indicate Hepatozoon species reported from Japan. Nodal support values based on 1000 bootstrap replicates (NJ/ML) are represented on the ML tree. Scale bar represents 0.01 nucleotide substitutions per site.
Fig. 3. a–d in Hepatozoon apri n. sp. (Adeleorina: Hepatozoidae) from the Japanese wild boar Sus scrofa leucomystax (Mammalia: Cetartiodactyla)
Fig. 3. a–d) Various developmental stages of Hepatozoon apri n. sp. detected in the muscles. a) A trophozoite (arrow) in the femoral muscles. The outer layer contains a fibroblast-like nucleus (arrowhead). b–c) Immature meronts found in the heart. d) Mature meront in the femoral muscles. H&E stain. Bar = 20 μm.
Fig. 3 - a in Badenian Small Gastropods From Lăpugiu De Sus (Făget Basin, Romania). Rissoidae Family
Fig. 3 - a Alvania sp. b Manzonia (Manzonia) scalaris (Dubois, 1831). c Manzonia sp. d Rissoina (Phosinella) steinabrunnensis Sacco 1895. e Rissoina (Rissoina) vindobonensis Sacco, 1895. f Rissoina (Rissoina) pusilla (Brocchi, 1814).
Fig. 1 in Badenian Small Gastropods From Lăpugiu De Sus (Făget Basin, Romania). Rissoidae Family
Fig. 1 - Simplified geological map of the studied area (after Lupu et al. 1991). 1 Dolomite and dolomitic limestone (Lower Carboniferous). 2 Limestone and dolomitic limestone (Lower Carboniferous). 3 Quartzitic boulders (Albian). 4 Fossiliferous sandy clays, sands, gravels, tuffs, lapilli (Lower Badenian). 5 Quaternary deposits. 6 Igneous rocks (Maastrichtian- Paleocene).
Fig. 4 in Cystic echinococcosis in wild boars (Sus scrofa) from southern Italy: Epidemiological survey and molecular characterization
Fig. 4. Distribution of the 93 positive wild boars in the study area and details of prevalence, provinces, regional and national parks.
Figuras 12-14 in Sobre el género Chaudoirina Mateu (Coleoptera: Carabidae), aspectos nomenclaturales y patrones de distribución de sus especies, con dos nuevas citas para Chile
Figuras 12-14. Mapas de distribución potencial de Chaudoirina Mateu. 12. Chaudoirina nigrofasciata. 13. C. vianai. 14. C. orfilai.
Figura 11 in Sobre el género Chaudoirina Mateu (Coleoptera: Carabidae), aspectos nomenclaturales y patrones de distribución de sus especies, con dos nuevas citas para Chile
Figura 11. Distribución de géneros y subgéneros de Carabidae distribuidos desde la Región de Coquimbo a la ecorregión de la Selva Templada Valdiviana: A. Cnemalobus, B. Euproctinus (Euproctinus), C. Mimodromites, D. Parhypates (Parhytes), E. Pseudocnices. En verde Selva Templada Valdiviana, en amarillo el Matorral Chileno.
Figura 15 in Sobre el género Chaudoirina Mateu (Coleoptera: Carabidae), aspectos nomenclaturales y patrones de distribución de sus especies, con dos nuevas citas para Chile
Figura 15. Contribución de las variables ambientales para predecir las áreas de distribución potencial. BIO2: Rango diario medio de temperatura; BIO4: Estacionalidad de la temperatura; BIO5, temperatura máxima del mes más cálido; BIO6: Temperatura mÍnima del mes más frÍo; BIO7; rango anual de Temperatura; BIO8: Temperatura media de mes más húmedo; BIO9; Temperatura media de mes más seco; BIO11: Temperatura media del cuartil más seco; BIO13: Precipitación del mes más húmedo; BIO14: Precipitación del mes más seco; BIO15: Estacionalidad de la precipitación; BIO17: Precipitación del cuartil más seco; BIO18: Precipitación del cuartil más húmedo; BIO19: Precipitación del cuartil más frÍo.
Figuras 1-3 in Sobre el género Chaudoirina Mateu (Coleoptera: Carabidae), aspectos nomenclaturales y patrones de distribución de sus especies, con dos nuevas citas para Chile
Figuras 1-3. Hábito adulto de Chaudoirina Mateu. 1. Chaudoirina nigrofasciata. 2 Chaudoirina orfilai. 3. Chaudoirina vianai.
Figure 7 in Mitochondrial DNA control region variability of wild boar Sus scrofa with various external phenotypes in Turkey
Figure 7. Median-joining network of 68 haplotypes from 485 wild boars from different regions of the world. Circle sizes are proportional to haplotype frequencies and numbers refer to haplotype codes in Table 2. Numbers on the branches indicate the number of nucleotide substitutions, if more than one. Major haplogroups are delimited by dashed lines. A, Asian; NE, Near Eastern; E1, European E1; E2, European E2. Haplotypes exclusive to Turkey are labeled in green.
Figure 3 in Mitochondrial DNA control region variability of wild boar Sus scrofa with various external phenotypes in Turkey
Figure 3. Maximum likelihood phylogenetic tree of haplotypes of the Turkish wild boars (Sus scrofa) obtained in the present study, based on the partial D-loop sequences of mtDNA. Numbers above or below branches indicate bootstrap values. 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.
Figure 2 in Mitochondrial DNA control region variability of wild boar Sus scrofa with various external phenotypes in Turkey
Figure 2. Various phenotypes of obtained Turkish wild boar individuals from different localities studied presently.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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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.