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4,028 results for “Mammalia”
Fig. 3 in Species Taxonomy, Phylogeny, and Biogeography of the Brontotheriidae (Mammalia: Perissodactyla)
Fig. 3. Anterior views from Osborn (1929a) of (A) the relatively plesiomorphic upper molar of Palaeosyops, and (B) the relatively apomorphic upper molar of the Brontotheriine, Megacerops coloradensis (sensu Mihlbachler et al., 2004b).
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 2 in Unusual finding of chewing louse Quadraceps cf. junceus (Scopoli, 1763) (Phthiraptera: Ischnocera) on Nathusius pipistrelle Pipistrellus nathusii (Keyserling & Blasius, 1839) (Mammalia: Chiroptera) with review of findings of lice reported from bats
Figure 2. Lice of genus Quadraceps parasitizing birds of the genus Tringa: A. Q. furvus; B. Q. junceus; C. Q. obscurus; D. Q. obtusus; E. Q. ochropi; F. Q. similis (Sychra, own data).
Figure4 in Analysis of Behavioural Patterns of the Amazonian Manatee, Trichechus manatus manatus, under Human Care (Mammalia:Sirenia)
Figure4. Space use data of the manatee individuals linked to the referring numbers on the map; 1 - 10 deepwater zone (Z); 11/12 semi-deep-water zone (Y); 13/14 shallow-water zone (X)
Figure3 in Analysis of Behavioural Patterns of the Amazonian Manatee, Trichechus manatus manatus, under Human Care (Mammalia:Sirenia)
Figure3. Map of the manatee tank divided into grid squares, each filled with similar volume of water; 1 - 10 deep-water zone (Z); 11/12 semi-deep-water zone (Y); 13/14 shallow-water zone (X)
Fig. 1 in Occurrence and infestation rates of Streblidae (Diptera, Hippoboscoidea) on bats (Mammalia, Chiroptera) in a semideciduous seasonal forest fragment in western Paraná, Brazil
Fig. 1. MonthlY average precipitation and temperature in Palotina, PR, Brazil, from 1997 to 2016. Source: SIMEPAR, 2018.
Fig. 2 in The phyllostomid bat (Mammalia, Chiroptera) assemblage in a fragmented landscape in Midwestern Brazil
Fig. 2. Similarity between the sampling points of the three landscape formations indicated by the NMDS method (circle, large fragment; sQuare, riparian forest; cross, small fragments).
Fig. 1 in The phyllostomid bat (Mammalia, Chiroptera) assemblage in a fragmented landscape in Midwestern Brazil
Fig. 1. Sampling points at Fazenda Dona Amélia, Mato Grosso do Sul, Brazil (circles, points in the large fragment; stars, points in the riparian forest; triangles, points in the small fragments).
Figs 14-17 in Dental anomalies in Didelphis albiventris (Mammalia, Marsupialia, Didelphidae) from Argentina, Brazil and Uruguay
Figs 14-17. Dental anomalies in Didelphis albiventris Lund, 1840 and D. marsupialis Linnaeus, 1758: 14, MZUSP 2996; 15, MNHN 3963; 16, MACN 24163; 17, MZUSP 4745. White arrows indicate the anomaly. See teXt for details.
Fig. 8 in Análisis geográfico y conservación del zorro andino Lycalopex culpaeus (Mammalia, Canidae) en Colombia
Fig. 8. Distribución del zorro andino considerando cobertura vegetal disponible y áreas protegidas de Colombia.
Figs 5-7. Fig. 5 in Análisis geográfico y conservación del zorro andino Lycalopex culpaeus (Mammalia, Canidae) en Colombia
Figs 5-7. Fig. 5, Fotografía del zorro en la Reserva Natural del Volcán Azufral, Nariño (Colombia); Fig. 6, distribución potencial del zorro andino (color negro) con las localidades (L) de entrenamiento y evaluación en Colombia y Ecuador; Fig. 7, distribución potencial en Colombia. Los departamentos de Nariño y Putumayo presentan frontera al sur con la República de Ecuador. DZ: Distribución del zorro reportada por la UICN.
Figs 3-4 in Análisis geográfico y conservación del zorro andino Lycalopex culpaeus (Mammalia, Canidae) en Colombia
Figs 3-4. Modelo de distribución potencial del zorro andino: Fig. 3, mapa con probabilidades logísticas y mapa de costo de dispersión; Fig. 4, fragmentos (a y b) removidos para la obtención del mapa binario de distribución potencial.
Figs 8-13 in Dental anomalies in Didelphis albiventris (Mammalia, Marsupialia, Didelphidae) from Argentina, Brazil and Uruguay
Figs 8-13. Dental anomalies in Didelphis albiventris Lund, 1840: 8, ZVC 1285; 9, CFA 2663; 10, CFA 10249; 11, MACN 24168; 12, MACN 32.184; 13, MACN 36.734. White arrows indicate the anomaly. See teXt for details.
Figs 2-7 in Dental anomalies in Didelphis albiventris (Mammalia, Marsupialia, Didelphidae) from Argentina, Brazil and Uruguay
Figs 2-7. Dental anomalies in Didelphis albiventris Lund, 1840: 2, CFA 3235; 3, MACN 36753; 4, MACN 24174; 5, MACN 25.23; 6, MNHN 2590; 7, MACN 49.49. White arrows indicate the anomaly. See teXt for details.
Fig. 9 in Análisis geográfico y conservación del zorro andino Lycalopex culpaeus (Mammalia, Canidae) en Colombia
Fig. 9. Cambios del área de distribución del zorro andino en Colombia. La pérdida de área de distribución potencial (DP) fue calculada de la siguiente forma: (DP-AD).
Fig. 1 in Dental anomalies in Didelphis albiventris (Mammalia, Marsupialia, Didelphidae) from Argentina, Brazil and Uruguay
Fig. 1. Map with distribution of the analyzed specimens of Didelphis albiventris Lund, 1840 (grey squares), and distribution of the specimens with dental anomalies (black circles).
Fig. 3 in Phyllostomidae assemblage (Chiroptera: Mammalia) in altitudinal forests at the Parque Estadual do Ibitipoca, Southeast of Minas Gerais, Brazil
Fig. 3. Species accumulation curve of phyllostomid bats captures based on sampling nights in the Parque Estadual do Ibitipoca, MG, Brazil. Dotted lines correspond to the 95% confidence interval obtained by the Mao Tau method.
Fig. 2 in Phyllostomidae assemblage (Chiroptera: Mammalia) in altitudinal forests at the Parque Estadual do Ibitipoca, Southeast of Minas Gerais, Brazil
Fig. 2. Abundances of phyllostomid bat species recorded in Mata de Grota and Mata Grande in Parque Estadual do Ibitipoca, MG, Brazil.
ScienceDex guides
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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.