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832 results for “Anatolia”
Figure 6 in Ecological surveys on the parthenogenetic Artemia populations in the hypersaline lakes of Anatolia, Turkey
Figure 6. Seasonal fluctuations in densities (ind. m–3) of Artemia and percentage of individuals subdivided in different age classes from Acıgöl Lake.
Figure 4 in Ecological surveys on the parthenogenetic Artemia populations in the hypersaline lakes of Anatolia, Turkey
Figure 4. Seasonal fluctuations in densities (ind. m–3) of Artemia and percentage of individuals subdivided in different age classes from Bolluk Lake.
Figure 3 in Ecological surveys on the parthenogenetic Artemia populations in the hypersaline lakes of Anatolia, Turkey
Figure 3. Seasonal fluctuations in densities (ind. m–3) of Artemia and percentage of individuals subdivided in different age classes from Tuz Lake.
Figure 4 in Description of three new species of Geostiba Thomson, 1858 (Coleoptera: Staphylinidae, Aleocharinae) from central western Anatolia
Figure 4. Details of Geostiba karakusensis sp. nov. A) Male forebody; B) female forebody; C) male abdomen in dorsal view; D) head in lateral view; E) male elytra in lateral view; F) male abdomen in lateral view; G) male abdominal tergite VII in dorsal view; H) male abdominal sternite VIII in dorsal view; I) aedeagus in lateral view; J) aedeagus in ventral view; K) spermatheca. Scale bars: 0.5 mm for A–C, F and 0.1 mm for D, E, G–K.
Figure 1 in Description of three new species of Geostiba Thomson, 1858 (Coleoptera: Staphylinidae, Aleocharinae) from central western Anatolia
Figure 1. Distributions of G. ahirensis sp. nov. (open circle); G. sandiklica sp. nov. (open square); G. karakusensis sp. nov. (open triangle); G. fodens Assing, 2011 (filled triangle); G. perfodens Assing, 2011 (filled circle); G. burdurica Assing, 2011 (filled square); and G. akiana Assing, 2011 (filled star).
Figure 2 in Description of three new species of Geostiba Thomson, 1858 (Coleoptera: Staphylinidae, Aleocharinae) from central western Anatolia
Figure 2. Details of Geostiba ahirensis sp. nov. A) Male forebody; B) female forebody; C) male abdomen in dorsal view; D) head in lateral view; E) male elytra in lateral view; F) male abdomen in lateral view; G) male abdominal tergite VII in dorsal view; H) male abdominal sternite VIII in dorsal view; I) aedeagus in lateral view; J) aedeagus in ventral view; K) spermatheca. Scale bars: 0.5 mm for A–C, F and 0.1 mm for Figures D, E, G–K.
Figure 3 in Description of three new species of Geostiba Thomson, 1858 (Coleoptera: Staphylinidae, Aleocharinae) from central western Anatolia
Figure 3. Details of Geostiba sandiklica sp. nov. A) Male forebody; B) female forebody; C) male abdomen in dorsal view; D) head in lateral view; E) male elytra in lateral view; F) male abdomen in lateral view; G) male abdominal tergite VII in dorsal view; H) male abdominal sternite VIII in dorsal view; I) aedeagus in lateral view; J) aedeagus in ventral view; K) spermatheca;. Scale bars: 0.5 mm for A–C, F and 0.1 mm for D, E, G–K.
Figure 3 in Turkey's largest Cinereous vulture population in a recently discovered breeding area in North-west Anatolia
Figure 3. Nest Tree DBH against Canopy Crown Class and Nest Tree Height, categorized by Canopy Crown Class (O: Dominant, 1: Intermediate, 2: Supressed).
Figure 2 in Turkey's largest Cinereous vulture population in a recently discovered breeding area in North-west Anatolia
Figure 2. Density of active nests of the cinereous vulture population at the Köroğlu Mountains, calculated within a grid of 1x1-km squares.
Figure 2 in First record of Brachytemnus porcatus (Germar, 1823) (Coleoptera: Curculionidae) from South-eastern Anatolia (Turkey) and its host Pinus parviflora
Figure 2. Distribution of Brachytemnus porcatus in Turkey: black circle – old records, red circle – new record.
Figure 3 in Occlusal surface variations in genetically-identified specimens of the genus Apodemus (Mammalia: Rodentia) distributed in the Northern Anatolia region and three Turkish islands: Gökçeada, Marmara Island, and Bozcaada
Figure 3. The variations observed in the left upper teeth and their locations. D1: Presence of a bis structure immediately adjacent to the t2 cusp in UM1, D2: Presence of the t12 cusp in UM1, D3: Presence of a spur structure extending posteriorly from the t3 cusp in UM1 but not merging with the t5 cusp, D4: Existence of a bridge between the t1 cusp and t5 cusp in UM1, D5: Connection through a bridge between the t4 cusp and t7 cusp in UM1, D6: Structural swelling and island-like condition of the t7 cusp in UM1, D7: Structural line-like condition of the t7 cusp in UM1, D8: Structural swelling and island-like condition of the t7 cusp in UM2, D9: Line-like structural condition of t7 in UM2, D10: Presence or absence of the t12 cusp in UM2, D11: Presence of a bridge-like structure between the t1 cusp and t5 cusp in UM2, D12: Presence of a bridge between the t4 cusp and t7 cusp in UM2, D13: Existence of a bridge structure between the t1 cusp and t5 cusp in UM3, D14: Presence of a connection between the t6 cusp and t8 cusp in UM3.
Figure 4 in Occlusal surface variations in genetically-identified specimens of the genus Apodemus (Mammalia: Rodentia) distributed in the Northern Anatolia region and three Turkish islands: Gökçeada, Marmara Island, and Bozcaada
Figure 4. The intra- and interspecies schematic diagram of left lower dental variations. Diagram A: refers to the island population of A. sylvaticus, while B: refers to the mainland population of A. sylvaticus. Numbers represent species; 1: A. flavicollis, 2: A. witherbyi, 3: A. sylvaticus, 4: A. uralensis, 5: A. mystacinus. Lowercase letters have been selected as variation characteristics; a: number of cingula in LM1, b: tma in LM1, c: central distoconid in LM1, d: aneroconid complex in LM1, e: number of cingula in LM2, f: central distoconid in LM2.
Figure 1 in Occlusal surface variations in genetically-identified specimens of the genus Apodemus (Mammalia: Rodentia) distributed in the Northern Anatolia region and three Turkish islands: Gökçeada, Marmara Island, and Bozcaada
Figure 1. Map of the locations where the samples were collected and main locations (modified from Çolak et al., 2013) A: The Dardanelles, B: The Bosphorus, C: Kızılırmak, D: Melet River, E: Çoruh River, a: Marmara Adası, b: Gökçeada, c: Bozcaada, 1-Ardahan, 2-Artvin, 3-Rize, 4-Trabzon, 5-Giresun, 6-Ordu, 7-Tokat, 8-Samsun, 9-Sinop, 10-Çorum, 11-Kastamonu, 12-Zonguldak, 13-Bolu, 14-Düzce, 15-Kocaeli, 16-İstanbul, 17-Bursa, 18-Tekirdağ, 19-Kırklareli, 20-Balıkesir, 21-Edirne, 22-Çanakkale.
Figure 1 in The importance of shape analysis of the first upper molar in the separation of two subspecies of the Hazel dormouse (Muscardinus avellanarius (Linnaeus, 1758)) in Northern Anatolia
Figure 1. Worldwide distribution of Muscardinus avellanarius (a) and trapped localities in Northern Anatolia, Turkey (b) [Number of specimens: in the West; Bolu = 23, Bursa = 3, Düzce = 6, and in the East; Giresun = 4, Ordu = 6, Trabzon = 14].
Fig. 3 in The most northeastern record of the Turkish endemic viper, Pelias barani (Böhme and Joger, 1984), from northeastern Anatolia: two viper species in a valley
Fig. 3. Several views of the habitat of Pelias barani from the Çağlayan Valley, Fındıklı, Turkey. Photos by Serkan Gül.
Fig. 2 in The most northeastern record of the Turkish endemic viper, Pelias barani (Böhme and Joger, 1984), from northeastern Anatolia: two viper species in a valley
Fig. 2. Dorsal (A) and ventral (B) views of typical head pattern, and each side of the head (C–D) in a female specimen of Pelias barani from the Çağlayan Valley, Fındıklı, Turkey. Photos by Serkan Gül.
Fig. 1 in The most northeastern record of the Turkish endemic viper, Pelias barani (Böhme and Joger, 1984), from northeastern Anatolia: two viper species in a valley
Fig. 1. Distribution map of Pelias barani and PelIas kaznakovI (created using ArcGIS 10.4). Red stars: Pelias barani from Mebert et al. (2015), blue star: new locality record for Pelias barani, yellow stars: known localities of PelIas kaznakovI. Inset map indicates previously known localities. Photo by Serkan Gül.
Fig. 4 in The most northeastern record of the Turkish endemic viper, Pelias barani (Böhme and Joger, 1984), from northeastern Anatolia: two viper species in a valley
Fig. 4. Proximity of nearest known Pelias barani and Pelias kaznakovI localities (map generated using Google Earth 7.3.2). Blue pin marker: Pelias barani from Mebert et al. (2015), red pin markers: PelIas kaznakovI from Mebert et al. (2015) and Gül et al. (2016b), yellow pin marker: new locality record of Pelias barani in this study. Distance between blue and yellow pin markers is ~19 km. Note that the short distance between Pelias barani and PelIas kaznakovI localities in the Çağlayan Valley indicates a potential contact zone.
Fig. 1 in Herpetofauna of Kilis Province (Southeast Anatolia, Turkey)
Fig. 1. Map of the sites where amphibians and reptiles were surveyed in the province of Kilis (Turkey). The numbering corresponds to the locality numbers and names in Table 1 and the Appendix. Black lines represent province borders, while white lines represent district borders.
Fig. 2. Some representative amphibians and reptiles from the Fig. 3 in Herpetofauna of Kilis Province (Southeast Anatolia, Turkey)
Fig. 2. Some representative amphibians and reptiles from the Fig. 3. Some representative snakes from the province of Kilis. province of Kilis. (A) Pelophylax bedriagae, (B) Hyla savignyi, (A) Eirenis barani, (B) Natrix tessellata, (C) Spalerosophis (C) Stenodactylus grandiceps, (D) Chamaeleo chamaeleon, (E) diadema, (D) Telescopus nigriceps, (E) Walterinnesia morgani. Mauremys rivulata, (F) Ablepharus budaki.
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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.