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78 results for “Felis”
Fig. 2 in Molecular analysis of blood-associated pathogens in European wildcats (Felis silvestris silvestris) from Germany
Fig. 2. Geographic origin of the 96 European wildcats (Felis silvestris) from Germany included in this study. The gray area represents the geographic distribution of wildcats in Germany according to the National FFH Report 2019, plotted on the 10 × 10 km reference grid ETRS89-LAEA5210 EEA according to a compilation of the German Federal Agency for Nature Conservation (BfN) and monitoring data of the federal states (Bundesamt für Naturschutz, 2020). Abbreviations: Brandenburg (BB), Bremen (B), Berlin (BR), Baden-Württemberg (BW), Bavaria (BY), Hamburg (H), Hesse (HE), Mecklenburg-West Pomerania (MWP), Lower Saxony (LS), North Rhine-Westphalia (NRW), Rhineland-Palatinate (RP), Schleswig-Holstein (SH), Saarland (S), Saxony (SN), Saxony-Anhalt (SA) and Thuringia (TH).
Fig. 1 in Molecular analysis of blood-associated pathogens in European wildcats (Felis silvestris silvestris) from Germany
Fig. 1. Distribution of wildcat samples in total number of wildcats (y-axis) collected per year (x-axis).
Fig. 4 in Molecular analysis of blood-associated pathogens in European wildcats (Felis silvestris silvestris) from Germany
Fig. 4. Co-infection scheme of detected pathogens, excluding M. ovis. Numbers represent counts of European wildcats (Felis silvestris) with respective pathogen (s) detected.
Fig. 3 in Molecular analysis of blood-associated pathogens in European wildcats (Felis silvestris silvestris) from Germany
Fig. 3. Geographical distribution of uninfected (white dots) and infected European wildcats (Felis silvestris) from Germany according to detected pathogens. A: red dots represent detection of Cytauxzoon europaeus; B: red dots represent detection of Hepatozoon silvestris, green dots represent detection of Hepatozoon felis; C: red dots represent detection of Bartonella spp.; D: red dots represent detection of Candidatus Mycoplasma haematominutum; green dots represent detection of Mycoplasma ovis; blue lines represent major rivers; and black lines represent borders of federal states. (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)
Fig. 3 in Detection of Sarcocystis albifronsi, Eimeria alpacae, and Cystoisospora felis in Eurasian lynx (Lynx lynx) in northwestern China
Fig. 3. Phylogenetic tree based on partial gene of the 18S rRNA sequence of Cystoisospora felis (▴) from Eurasian lynx cub #3 obtained in this study in northwestern China. The evolutionary history was inferred using the neighbor-joining method (bootstrap replicates: 1000) with MEGA 7.0.
Fig. 2 in Detection of Sarcocystis albifronsi, Eimeria alpacae, and Cystoisospora felis in Eurasian lynx (Lynx lynx) in northwestern China
Fig. 2. Phylogenetic tree based on partial gene of the COI sequence of Eimeria alpacae (▴) from Eurasian lynx #2 obtained in this study in northwestern China. The evolutionary history was inferred using the neighbor-joining method (bootstrap replicates: 1000) with MEGA 7.0.
Fig. 1 in Detection of Sarcocystis albifronsi, Eimeria alpacae, and Cystoisospora felis in Eurasian lynx (Lynx lynx) in northwestern China
Fig. 1. Phylogenetic tree based on partial gene of the COI sequence of Sarcocystis albifronsi (▴) from Eurasian lynx #2 obtained in this study in northwestern China. The evolutionary history was inferred using the neighbor-joining method (bootstrap replicates: 1000) with MEGA 7.0.
Linked collectors and determiners for: Prey identification of free-ranging domestic cats (Felis catus) from rural and natural areas of Spain through scat analysis.
Natural history specimen data linked to collectors and determiners held within, "Prey identification of free-ranging domestic cats (Felis catus) from rural and natural areas of Spain through scat analysis". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/ef448f77-16de-4e3f-9e3c-247f4f76efff">https://bionomia.net/dataset/ef448f77-16de-4e3f-9e3c-247f4f76efff</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/ef448f77-16de-4e3f-9e3c-247f4f76efff">https://gbif.org/dataset/ef448f77-16de-4e3f-9e3c-247f4f76efff</a>. Formatted as a Frictionless Data package.
FIG. 183. — Felis melas G. Cuvier, 1809 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 183. — Felis melas G. Cuvier, 1809. Timor. Charles-Alexandre Lesueur. Crayon – 14 × 23 cm. Inv. no. 80160r. Credits: MHNH.
FIG. 186. — Felis melas G. Cuvier, 1809 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 186. — Felis melas G. Cuvier, 1809. Timor. Charles-Alexandre Lesueur. Pencil – 10 × 18 cm. Inv. no. 80162. Credits: MHNH.
FIG. 181. — Felis melas G. Cuvier, 1809 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 181. — Felis melas G. Cuvier, 1809. Timor. Charles-Alexandre Lesueur. Watercolour – 21 × 13 cm. Inv. no. 80158r. Credits: MHNH.
FIG. 180. — Felis melas G. Cuvier, 1809 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 180. — Felis melas G. Cuvier, 1809. Timor. Charles-Alexandre Lesueur. Watercolour – 25 × 40 cm. Inv. no. 80157. Credits: MHNH.
FIG. 187. — Felis melas G. Cuvier, 1809 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 187. — Felis melas G. Cuvier, 1809. Timor. Charles-Alexandre Lesueur. Pencil – 21 × 26 cm. Inv. no. 80163. Credits: MHNH.
FIG. 185. — Felis melas G. Cuvier, 1809 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 185. — Felis melas G. Cuvier, 1809. Timor. Charles-Alexandre Lesueur. Crayon – 11 × 23 cm. Inv. no. 80161. Credits: MHNH.
FIG. 184. — Felis melas G. Cuvier, 1809 in Mammals collected and illustrated by the Baudin Expedition to Australia and Timor (1800-1804): A review of the current taxonomy of specimens in the Muséum national d'Histoire naturelle de Paris and the illustrations in the Muséum d'Histoire naturelle du Havre
FIG. 184. — Felis melas G. Cuvier, 1809. Timor. Charles-Alexandre Lesueur. Crayon – 14 × 23 cm. Inv. no. 80160v. Credits: MHNH.
Fig. 1 in First Molecular Detection of Giardia duodenalis Assemblage B in a Free-Living European Wildcat (Felis s. silvestris) from Luxembourg
Fig. 1. Neighbor-joining distance analysis of the β-giardin nucleotide sequences. FS1 – sequence of partial β-giardin gene of the isolate from wildcat (KX685669). Reference human isolates: WB and KC8, (X85958 and AY072723); LD18, Nij5, VAN/90/UBC/44, GH- 202 (AY072727, AY072725, KP687755, AB618785); A101 and – cat isolate, (AY647264 and EU769206); P15 – reference cow isolate, (AY072729); A29 and A27 – reference dog isolates (AY545646 and AY545648). G. muris (AY258618) represents an outgroup.
FIGURE 1 in Felis concolor
FIGURE 1. Adult female Felis concolor hippolestes (photo by K. R. Russell).
Fig. 1 in Felis margarita (Carnivora: Felidae)
Fig. 1.—Adult Felis margarita. Photograph courtesy of Nancy Vandermey used with permission.
Supplementary material and data from: Cranial volume and palate length of cats, Felis spp., under domestication, hybridisation and in wild populations
<p>Reduced brain size, compared with wild individuals, is argued to be a key characteristic among domestic mammal species, and is often thought to be a component of the "domestication syndrome". However, brain size comparisons are often based on old, inaccessible literature and in some cases drew comparisons between domestic animals and wild species that are no longer thought to represent the true progenitor species of the domesticated variant in question. Here we set out to replicate results concerning cranial volumes in domestic cats that were published in the 1960s and 1970s and compared wildcats, domestic cats and their hybrids. In light of new research and ideas surrounding domestication and its effects on domestic animals a replication of these studies is highly relevant. Apart from replicating these studies we also present new data on palate length in Felis cat skulls.</p> <p>Here we provide all data (both new and old digitzed data) upon which we based the analysis discussed in this manuscript. We further provide a link to the code used in the analysis.</p>
Camera trap image of Felis silvestris catus (2017-09-11T12:16:10Z)
Camera Trap Image taken in <a href="https://www.plantentuinmeise.be">Meise Botanic Garden</a>.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.