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182 results for “Teiidae”
FIG. 5 in On the type locality of Ameivula ocellifera (Spix, 1825) (Squamata, Teiidae), with a neotype designation
FIG. 5. — Ameivula ocellifera (Spix, 1825) neotype male ZUFMS-REP 04144: A, dorsal, ventral, and lateral view of the head; B, ventral view of the right hand; C, ventral view of the right foot. Scale bar: 20 mm.
FIG. 3. — A in On the type locality of Ameivula ocellifera (Spix, 1825) (Squamata, Teiidae), with a neotype designation
FIG. 3. — A, Ameivula ocellifera (Spix, 1825) neotype male ZUFMS-REP 04144 in life; B, habitat of neotype at the Parque das Dunas, municipality of Salvador, state of Bahia, Brazil. Photos: Ricardo Marques.
FIG. 2 in On the type locality of Ameivula ocellifera (Spix, 1825) (Squamata, Teiidae), with a neotype designation
FIG. 2. — Spix and Martius' itinerary on the elevation background, highlighting the province of Bahia in 1825, the current state of Bahia, and São Francisco River. Localities visited: 1, Malhada; 2, Caetité; 3, Livramento do Brumado; 4, Rio de Contas; 5, Sincorá; 6, Maracás; 7, Vila Pedra Branca; 8, São Félix; 9, Salvador; 10, Ilhéus; 11, Almada; 12, Itacaré; 13, Conceição da Feira; 14, Feira de Santana; 15, Coité; 16, Santo Antônio das Queimadas; 17, Senhor do Bonfim; 18, Bendegó; 19, Juazeiro.
FIG. 4 in On the type locality of Ameivula ocellifera (Spix, 1825) (Squamata, Teiidae), with a neotype designation
FIG. 4. — Ameivula ocellifera (Spix, 1825) neotype male ZUFMS-REP 04144: A, dorsal view of the body; B, ventral view of the body; C, lateral view of the body. Scale bar: 20 mm.
APPENDIX 1 in On the type locality of Ameivula ocellifera (Spix, 1825) (Squamata, Teiidae), with a neotype designation
APPENDIX 1. — Neotype (ZUFMS-REP 04144, adult male) of Ameivula ocellifera (Spix, 1825): A, body in dorsal view, showing: two longitudinal rows of enlarged scales in the dorsal region of the forearm (EFA); dorsal scales (DS); paravertebral field (PVF); paravertebral stripe (PVS); dorsolateral field (DLF); dorsolateral stripe (DLS); upper lateral field (ULF); and upper lateral stripe (ULS); B, body in ventral view, showing: longitudinal rows of ventrals (VLR); transverse rows of ventrals (VTR); femoral pores (FP); abdominal pores (AP); enlarged prefemoral scales (EPF); and enlarged scales of preanal plate (EP); C, body in lateral view, showing: dorsolateral field (DLF); dorsolateral stripe (DLS); upper lateral field (ULF); upper lateral stripes (ULS); lower lateral field (LLF); and lower lateral stripe (LLS). Scale bar: 20 mm.
Figure 2 in Oxidative and osmotolerant effects in Salvator merianae (Squamata: Teiidae) red blood cells during hibernation
Figure 2. Logarithmic in base 10 values of oxidative biomolecules level for each period collected (n = 6). Wilcox Test: P = 0.31. Sum symbol (+) is the mean and SD are the horizontal lines; median is the vertical line within the boxes and range is distance from the median to the end of the boxes.
Figure 1 in Oxidative and osmotolerant effects in Salvator merianae (Squamata: Teiidae) red blood cells during hibernation
Figure 1. (a) Osmotic fragility in percentage by saline concentration from both periods studied (GLM: F = 2.56, P = 0.03). No statistical differences were observed between individualized pairs of saline concentrations; (b) Overall osmotic fragility difference between periods considering only periods effect (GLM: F = 9.72, P = 0.01) (n = 6). Sum symbol (+) is the mean and SD are the horizontal lines; median is the vertical line within the boxes and range is distance from the median to the end of the boxes.
Figure 3 in Oxidative and osmotolerant effects in Salvator merianae (Squamata: Teiidae) red blood cells during hibernation
Figure 3. Logarithmic in base 10 values of (a) Enzymatic activity level of glutathione peroxidase – GPx and (b) activity of glutathione reductase - GR of red blood cells in hibernation and active periods (n = 6). T-test, P = 0.68 and P = 0.10, respectively. Sum symbol (+) is the mean and SD are the horizontal lines; median is the vertical line within the boxes and range is distance from the median to the end of the boxes.
Figura 2. O in Uma presa fácil aos olhos do predador: novo registro de predação de uma ave de rapina (Accipitriformes: Accipitridae) sobre Ameiva ameiva (Squamata: Teiidae) no Brasil e o estado do conhecimento atual sobre predadores desta espécie de lagarto
Figura 2. O gavião segurando o lagarto enquanto permanecia alerta. Foto por Luciano de F. Silva. Figure 2. The hawk holding the lizard while staying alert. Photo by Luciano de F. Silva.
Figura 3 in Uma presa fácil aos olhos do predador: novo registro de predação de uma ave de rapina (Accipitriformes: Accipitridae) sobre Ameiva ameiva (Squamata: Teiidae) no Brasil e o estado do conhecimento atual sobre predadores desta espécie de lagarto
Figura 3. Número de registros de predação por grupo de predadores e por método de registro. Grupos de predadores: Decapoda (DEC), Anura (ANR), Serpentes (SPT), Lagartos (LGT), Accipitriformes (ACF), Falconiformes (FCF), Strigiformes (STF), Pelecaniformes (PLF), Cariamiformes (CRF), Carnivora (CNV), Cingulata (CGT), Didelmorphia (DMP). Figure 3. Number of predation records by predator group and by recording method. Predator groups: Decapoda (DEC), Anura (ANR), Serpentes (SPT), Lizards (LGT), Accipitriformes (ACF), Falconiformes (FCF), Strigiformes (STF), Pelecaniformes (PLF), Cariamiformes (CRF), Carnivora (CNV), Cingulata (CGT), Didelmorphia (DMP).
Figura 1 in Uma presa fácil aos olhos do predador: novo registro de predação de uma ave de rapina (Accipitriformes: Accipitridae) sobre Ameiva ameiva (Squamata: Teiidae) no Brasil e o estado do conhecimento atual sobre predadores desta espécie de lagarto
Figura 1. Predação de Heterospizias meridionalis sobre Ameiva ameiva. A. Adulto de H. meridionalis segurando um adulto de A. ameiva no topo de um poste de energia elétrica. B-C. O gavião consumindo partes do lagarto. Foto por Luciano de F. Silva. Figure 1. Predation of Heterospizias meridionalis on Ameiva ameiva. A. Adult H. meridionalis holding an adult A. ameiva on top of an electrical power pole. B-C. The hawk consuming the fleshy parts of the lizard. Photo by Luciano de F. Silva.
Fig. 5 in The effect of environmental enrichment on Salvator merianae (Squamata: Teiidae) under captivity conditions
Fig. 5. Representation of the interactions between individuals in each enclosure, R1 and R2, with (R2 WE) and without enrichment (R2 W/O-E) based on the recorded chase and flight events.MWM: male without mark, MWP: male white point, MYP; male yellow point, F: female. Fig. 5. Representación de las interacciones entre individuos en cada recinto, R1 y R2, con (R2 WE) y sin enriquecimiento (R2 W/O-E) en base a los eventos de persecución y huida registrados. MWM: macho sin marca, MWP: macho punto blanco, MYP; punto amarillo macho, F: hembra.
Fig. 3 in The effect of environmental enrichment on Salvator merianae (Squamata: Teiidae) under captivity conditions
Fig. 3. Comparison in the frequency of Reproductive Behavior in Males between R1 and R2 during the 3 months of the experiment. Fig. 3. Comparación en la frecuencia del Comportamiento Reproductivo en Machos entre R1 y R2 durante los 3 meses del experimento.
Fig. 2 in The effect of environmental enrichment on Salvator merianae (Squamata: Teiidae) under captivity conditions
Fig. 2. Comparison of cumulative proportions of behavioral categories in R1 and R2, with and without enrichment (inner circle: females, outer circle: males). Fig. 2. Comparación de proporciones acumuladas de categorías de comportamiento en R1 y R2, con y sin enriquecimiento (círculo interior: mujeres, círculo exterior: hombres).
Fig. 4 in The effect of environmental enrichment on Salvator merianae (Squamata: Teiidae) under captivity conditions
Fig. 4. Tables of sociometric matrices for each enclosure R1 and R2, with (R2 WE) and without enrichment (R2 W/O-E). MWM: male without mark, MWP: male white point, MYP; male yellow point, F: female. Fig. 4. Cuadros de matrices sociométricas para cada recinto R1 y R2, con (R2 WE) y sin enriquecimiento (R2 W/O-E). MWM: macho sin marca, MWP: macho punto blanco, MYP; punto amarillo macho, F: hembra.
Fig. 1 in The effect of environmental enrichment on Salvator merianae (Squamata: Teiidae) under captivity conditions
Fig. 1. Examples of different environmental enrichment activities carried out in the R2. Fig. 1. Ejemplos de diferentes actividades de enriquecimiento ambiental realizadas en el R2.
Figura 1 in de Bifurcación de la cola en varias especies escamados de las familias Liolaemidae, Tropiduridae, Phyllodactylidae y Teiidae
Figura 1. Especies de lagartos con cola bifurcada: (A) Liolaemus capillitas; (B, C) L. pacha; (D) L. quilmes; (E) L. salinicola; (F) L. wiegmannii; (G) Tropidurus torquatus; (H) Homonota borellii y (I) Ameiva ameiva. Debajo de cada espécimen fijado se resalta la cola bifurcada. Fotos: Folly, H.
FIGURE 1. Scatterplots from multivariate statistical analyses. Ellipses define the 95 in Morphological Variation in a Unisexual Whiptail Lizard (Aspidoscelis exsanguis) and One of Its Bisexual Parental Species (Aspidoscelis inornata) (Reptilia: Squamata: Teiidae): Is the Clonal Species Less Variable?
FIGURE 1. Scatterplots from multivariate statistical analyses. Ellipses define the 95% confidence limits of score distributions. A. Principal component scores of 14 field A. exsanguis, 42 laboratory A. exsanguis of two lineages pooled, and 19 field A. inornata. Axis percentages reflect variance explained by PC1 and PC2 (table 5). B. Canonical variate scores of the same specimens as in A. Axis percentages are relative contributions of CV1 and CV2 to the discrimination (table 5).
FIGURE 5 in Comparative Meristic Variability in Whiptail Lizards (Teiidae, Aspidoscelis): Samples of Parthenogenetic A. tesselata Versus Samples of Sexually Reproducing A. sexlineata, A. marmorata, and A. gularis septemvittata
FIGURE 5. Pattern of meristic variation between parthenogenetic Aspidoscelis tesselata E (○) and gonochoristic A. marmorata (□) depicted by the projection of principal component scores on PC1 and PC2 axes: A. Arroyo del Macho, Chaves County, New Mexico (N = 38 and N = 29, respectively); B. vicinity of Engle, Sierra County, New Mexico (N = 30 and N = 33, respectively). Percentages represent the proportion of meristic variation summarized by each principal component, and ellipses define the 95% confidence limits for score distributions.
FIGURE 3 in Comparative Meristic Variability in Whiptail Lizards (Teiidae, Aspidoscelis): Samples of Parthenogenetic A. tesselata Versus Samples of Sexually Reproducing A. sexlineata, A. marmorata, and A. gularis septemvittata
FIGURE 3. Pattern of meristic variation between parthenogenetic Aspidoscelis tesselata C (○) and gonochoristic A. sexlineata (◊): A. southeastern Colorado (N = 31 for each sample); B. Conchas Lake, New Mexico (N = 30 and N = 31, respectively). Percentages represent the proportion of meristic variation summarized by each principal component, and ellipses define the 95% confidence limits for score distributions.
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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)
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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.