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680 results for “Sauria”
FIGURA 8 in Actividad reproductiva y dieta de Hemidactylus frenatus (Sauria: Gekkonidae) en el norte de Colombia
FIGURA 8: Variación de la frecuencia de consumo de las presas con mayor valor de importancia durante el periodo de estudio.
FIGURA 7 in Actividad reproductiva y dieta de Hemidactylus frenatus (Sauria: Gekkonidae) en el norte de Colombia
FIGURA 7: Variación del volumen promedio del contenido estomacal y de la precipitación durante el periodo de estudio.
FIGURA 5 in Actividad reproductiva y dieta de Hemidactylus frenatus (Sauria: Gekkonidae) en el norte de Colombia
FIGURA 5: Abundancia de cada tipo de presa en la dieta y en los sitios de forrajeo de H. frenatus. He: Hemiptera; Di: Diptera; Fo: Formicidae; Le: Lepidoptera; Or: Orthoptera; Co: Coleoptera; Ar: Araneae; Is: Isoptera; Hy: Hymenoptera distintos a Formicidae; Bl: Blattodea; Col: Collembola; La: Larvas; Iso: Isopoda; Ac: Acari; Mo: Mollusca; Ps: Pseudoescorpionida; Sc: Scolopendridae (Chilopoda); Hfr: Hemidactylus frenatus (Juvenil); Ne: Neuroptera; Nd: No determinado; Dp: Diplopoda.
FIGURA 3 in Actividad reproductiva y dieta de Hemidactylus frenatus (Sauria: Gekkonidae) en el norte de Colombia
FIGURA 3: Distribución mensual de hembras adultas en diferente estado reproductivo: grávidas (barras grises), vitelogénicas (barras negras), grávidas y vitelogénicas (barras con líneas horizontales) y previtelogénicas (barras blancas). Los asteriscos debajo de cada mes indican la observación de actividad copulatoria.
FIGURA 6 in Actividad reproductiva y dieta de Hemidactylus frenatus (Sauria: Gekkonidae) en el norte de Colombia
FIGURA 6: Comparación del número de presas consumidas (A) y del volumen del contenido estomacal (B) entre machos y hembras de H. frenatus.
Fig. 2 in Morphological Features Of The Digestive Tube In Sand Lizards, Lacerta Agilis (Sauria, Lacertidae)
Fig. 2. Fragment of microscopic structure of stomach wall of sand lizard: 1 — stomach wall; 2 — stomach contents; 3 — gastric glands; 4 — columnar epithelium; 5 — cubic epithelium. Hematoxilin and eosin. ×100; 400.
Fig. 5 in Morphological Features Of The Digestive Tube In Sand Lizards, Lacerta Agilis (Sauria, Lacertidae)
Fig. 5. Fragment of microscopic structure of large intestine of sand lizard: 1 — intestine wall; 2 — epithelial cells; 3 — lymphoid formations. Hematoxilin and eosin. ×100; 400.
Fig. 1 in Morphological Features Of The Digestive Tube In Sand Lizards, Lacerta Agilis (Sauria, Lacertidae)
Fig. 1. The topography of internal organs of sand lizard: (A): 1 — heart; 2 — lung; 3 — liver; 4 — stomach; 5 — small intestine; 6 — large intestine; 7 — ovary; (B): 1 — tongue; (C): 1 — stomach; 2 — pylorus; 3 — small intestine.
Fig. 3 in Morphological Features Of The Digestive Tube In Sand Lizards, Lacerta Agilis (Sauria, Lacertidae)
Fig. 3. Fragment of microscopic structure of duodenum of sand lizard: 1 — wall of villus; 2 — epithelial cells; 3 — stroma of villus. Hematoxilin and eosin. ×100; 400.
Fig. 4 in Morphological Features Of The Digestive Tube In Sand Lizards, Lacerta Agilis (Sauria, Lacertidae)
Fig. 4. Fragment of microscopic structure of jejunum of sand lizard: 1 — wall of villus; 2 — fragment of nutrition between two villi; 3 — epithelial cells; 4 — stroma of villus. Hematoxilin and eosin. ×100; 400.
Fig. 3 in Color Features Of Sand Lizards, Lacerta Agilis (Sauria, Lacertidae), In Kyiv Region (Ukraine)
Fig. 3. Number of scales in 15–17 rows of neck scales between lateral light lines in different color morphs of L. agilis: "NOT" — var. erythro-(viridi-)nota; "3" — trilinear; "2_3" — intermediate form; "2" — bilinear.
Fig. 2 in Color Features Of Sand Lizards, Lacerta Agilis (Sauria, Lacertidae), In Kyiv Region (Ukraine)
Fig. 2. Features of sand lizards coloring in the Kyiv Region: I — 5 types of color and body picture (А — bilinear, B — intermediate form between bilinear and trilinear, С — trilinear, D — var. erythro- (viridi-)nota; E — var. con-(bi-)color); ІІ — calculation of the number of scales in the 15–17 rows; elements of the picture: 1 — dorsal line; 2 — marginal line; 3 — vertebral stripes; 4 — dark dorsal spots.
Fig. 2 in Current Distribution Of The Introduced Rock Lizards Of The Darevskia (Saxicola) Complex (Sauria, Lacertidae, Darevskia) In Zhytomyr Region (Ukraine)
Fig. 2. List and location of the studied sites: 1 — cliffs to east of the resort Denyshy (28.39 E, 50.20 N); 2 — dam across the Teteriv River near the resort Denyshy (28.38 E, 50.20 N); 3 — river bank to the west from the UVD resort (mouth of the Bobrovka River; 28.36 E, 50.21 N); 4 — bridge over the Bobrovka River (28.36 E, 50.21 N); 5 — bay in Buky Village (28.36 E, 50.20 N); 6 — cape in Buky Village (28.35 E, 50.19 N); 7 — cliffs between Buky Village and country houses (28.34 E, 50.19 N); 8 — river bank in Rudnya-Nova Village (28.30 E, 50.19 N); 9 — cape in Rudnya-Nova Village (28.32 E, 50.19 N); 10 — bridge over the Glubochok River (28.36 E, 50.18 N); 11 — river bank in Tryhirya Village (28.37 E, 50.19 N); 12 — right bank of the Teteriv River near dam (28.38 E, 50.20 N). Sites were lizards were found are marked by black color.
Fig. 1 in Current Distribution Of The Introduced Rock Lizards Of The Darevskia (Saxicola) Complex (Sauria, Lacertidae, Darevskia) In Zhytomyr Region (Ukraine)
Fig. 1. Chronological scheme and changes in the number of rock lizards Darevskia (saxicola) near Denyshy Village (after Darevsky, Shcherbak, 1968; Dotsenko, Darevsky, 2005; Darevsky, 2006): arm — D. armeniaca, dahl — D. dahli and mix — D. mixta, — introduction.
Fig. 2. A in Cryptic multicolored lizards in the Polychrus marmoratus Group (Squamata: Sauria: Polychrotidae) and the status of Leiolepis auduboni Hallowell
Fig. 2. A: the paravertebral, lateral and ventral scales of Polychrus marmoratus. B: paravertebral scales of Polychrus auduboni, a single keel per scale. C: paravertebral scales of Polychrus marmoratus with multiple keels per scale (multicarinate). D: ventral scales of Polychrus auduboni with keel extending the length of the scale. E: ventral scales of Polychrus marmoratus showing short keels, with some terminating in a small swollen gland at the apex of some scales (FMNH 3294, Demerara, Guyana).
Fig. 1. A–B in Cryptic multicolored lizards in the Polychrus marmoratus Group (Squamata: Sauria: Polychrotidae) and the status of Leiolepis auduboni Hallowell
Fig. 1. A–B: Polychrus auduboni from the Arima Valley, Trinidad (JCM). C–D: Polychrus marmoratus, probably from Suriname, (Toan Leenders). E: Polychrus sp. from 4.5 km S of Cumanacoa, Venezuela at 300–400 m asl (Walter E. Schargel). F: Polychrus sp. from Vitória do Xingu, Pará, Brazil (Pedro Peloso). G: Polychrus sp. Camamu, Bahia, Brazil. H: Polychrus sp. from Guarapari, Espirito Santo, Brazil (bottom) (Pedro Peloso).
Fig. 5 in Cryptic multicolored lizards in the Polychrus marmoratus Group (Squamata: Sauria: Polychrotidae) and the status of Leiolepis auduboni Hallowell
Fig. 5. On the supraoccipital process, from the posterior perspective, the presence of a median seam that runs the length of the process, down to the rim of the foramen magnum (DW).
Fig. 4 in Cryptic multicolored lizards in the Polychrus marmoratus Group (Squamata: Sauria: Polychrotidae) and the status of Leiolepis auduboni Hallowell
Fig. 4. Localities of members of the Polychrus marmoratus Group. Green pushpins denote localities from which DNA was sampled. Red stars denote locations for Polychrus auduboni, black stars denote locations for P. marmoratus. Black circular markers represent unconfirmed locations for members of the P. marmoratus group based upon the literature and specimens reported in VertNet. The blue star is the type locality for P. marmoratus (Linnaeus). The purple star is the type locality of P. auduboni Hallowell. The green star is the type locality for Polychrus virescens Schniz, the orange star is the type locality for P. neovidanus Wagler.
Fig. 3. Consensus maximum likelihood tree for combined 16S in Cryptic multicolored lizards in the Polychrus marmoratus Group (Squamata: Sauria: Polychrotidae) and the status of Leiolepis auduboni Hallowell
Fig. 3. Consensus maximum likelihood tree for combined 16S and COI sequence data from seventeen Polychrus tissue samples (1,035 bp total). Bootstrap support values are indicated at each node, if greater than 50%. Samples are indicated by their museum accession number and country of origin, if known. The tree is drawn to scale, with branch lengths measured in the number of substitutions per site. For details of analysis, see text.
Figure 2 in Data on nocturnal activity of Darevskia rudis (Bedriaga, 1886) (Sauria: Lacertidae) in Central Black Sea Region, Turkey
Figure 2: The major nocturnal activities of Darevskia rudis. (a: leaving the shelter, b: mobility in its habitat, c: foraging, d: fronting to artificial light source and e: feeding).
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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
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.