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459 results for “Liolaemidae”
Figura 2 in Ámbito de hogar y uso de microhábitat de Liolaemus forsteri (Iguania: Liolaemidae) en una región altoandina de La Paz, Bolivia
Figura 2. Método de Polígono Mínimo Convexo utilizado para el cálculo del ámbito de hogar de Liolaemus forsteri.
Figure 3 in A new species of the Liolaemus nigroviridis group from the Andes of Central Chile (Iguania: Liolaemidae)
Figure 3. Principal Component Analysis (PCA) plots of the species of the L. nigroviridis group, performed with the snout-vent length as a variable. On the left panels, the individuals are colored according to their species as shown on the legend on the top left corner. Ellipses represent the 95% confidence interval around the centroid for each species. On each axis, the PC is labeled according to its number and the percentage of the total variance that PC explains. On the right, the variable graphs, which illustrate the contribution of each variable to the construction of the axes.
Figure 6 in A new species of the Liolaemus nigroviridis group from the Andes of Central Chile (Iguania: Liolaemidae)
Figure 6. Distributional map for Liolaemus nigrodorsum sp. nov. along with the species of the L. nigroviridis group following the most recent phylogenetic studies (Torres–Pérez et al., 2017; Esquerré et al., 2022). Liolaemus campanae: Blue circles (1 = La Campana, 2 = El Roble, 3 = Chicauma). Liolaemus fuscus: Black circles (1 = Los Molles, 2 = Altos de Jahuel, 3 = La Campana, 4 = El Roble, 5 = Cerro Blanco, 6 = Chicauma, 7 = Farellones, 8 = Quebra de la Plata, 9 = Quebrade de Macul, 10 = San Luis de Macul). Liolaemus nigrodorsum sp. nov: Red circle (El Arpa, type locality) and question mark (Laguna Chepical, possible record). Liolaemus nigroviridis: Green circles (1 = Cerro Conchali, 2 = Farellones, 3 = Lagunillas, 4 = El Yeso). Liolaemus uniformis: pink circle (Laguna Chepical). Liolaemus sp. Cantillana: Yellow circle (Altos de Cantillana).
Figure 2 in A new species of the Liolaemus nigroviridis group from the Andes of Central Chile (Iguania: Liolaemidae)
Figure 2. Principal Component Analysis (PCA) plots of the species of the L. nigroviridis group, performed with the residuals of each character regressed on snout-vent length. On the left panels, the individuals are colored according to their species as shown on the legend on the top right corner. Ellipses represent the 95% confidence interval around the centroid for each species. On each axis, the PC is labeled according to its number and the percentage of the total variance that PC explains. On the right, the variable graphs, which illustrate the contribution of each variable to the construction of the axes.
Figure 5 in A new species of the Liolaemus nigroviridis group from the Andes of Central Chile (Iguania: Liolaemidae)
Figure 5. Species of the Liolaemus nigroviridis group. A) Male of L. campanae (photograph by S. Berhó Fuenzalida). B) Female of L. campanae (photograph by R. Arroyo Castro). C) and D) Males of L. fuscus (photographs by JTP). E) and F) Males of L. nigroviridis (photographs by JTP). G) Female of L. nigroviridis (photograph by JTP). H) and I) Male and female, respectively, of of L. uniformis (photographs by JTP).
Figura 4 in Ámbito de hogar y uso de microhábitat de Liolaemus forsteri (Iguania: Liolaemidae) en una región altoandina de La Paz, Bolivia
Figura 4. Individuos de Liolaemus forsteri perteneciente al sitio de estudio. Izquierda: Hembra adulta. Superior derecha: Macho adulto. Inferior derecha: Individuo subadulto.
Figura 1 in Ámbito de hogar y uso de microhábitat de Liolaemus forsteri (Iguania: Liolaemidae) en una región altoandina de La Paz, Bolivia
Figura 1. Sitio de estudio para la evaluación del ámbito de hogar y uso de hábitat de Liolaemus forsteri, (16º20'18.07'' S, 68º02'15.32 O, 4700 msnm).
Figure 4 in A new species of the Liolaemus nigroviridis group from the Andes of Central Chile (Iguania: Liolaemidae)
Figure 4. Liolaemus nigrodorsum sp. nov. A) and B) Holotype, male SSUC Re 787. C) and D) Paratype, female SSUC Re 792. E) SSUC Re 789 and F) SSUC Re 788, paratypes, males.
Figura 3 in Ámbito de hogar y uso de microhábitat de Liolaemus forsteri (Iguania: Liolaemidae) en una región altoandina de La Paz, Bolivia
Figura 3. Tipos de microhábitat utilizados por Liolaemus forsteri. A) Vegetación alta (≥10 cm), B) Vegetación baja (<10 cm), C) Suelo sin vegetación, compuesto principalmente por material arcilloso de color claro, D) Vegetación en cojín, E) Roca, F) Borde de guarida, G) Cascajo (piedras de diámetro <2,0 cm) y H) Suelo orgánico sin vegetación.
Figure 1 in A new species of the Liolaemus nigroviridis group from the Andes of Central Chile (Iguania: Liolaemidae)
Figure 1. Phylogenetic relationships of the species of the L. nigroviridis complex group, modified from Torres-Pérez et al. (2017), based on the mitochondrial gene cytochrome b, including the bootstrap values for maximum likelihood, the posterior probabilities for Bayesian inference and the number of haplotypes used for each terminal taxon. Liolaemus fuscus is added as the basal species of the group, following Schulte and Moreno-Roark (2010), Troncoso-Palacios et al. (2015) and Esquerré et al. (2022). Specific name L. nigroviridis is used only for the clade that contains the samples from near the type locality. The candidate species Liolaemus sp. Arpa is in red. Male dorsal pattern is compared.
Fig. 9 in Some color in the desert: description of a new species of Liolaemus (Iguania: Liolaemidae) from southern Peru, and its conservation status
Fig. 9. Plot of principal component scores for continuous characters for L. balagueri (yellow stars, n = 12), L. chiribaya (purple circles, n = 10), L. insolitus (red triangles, n = 15), L. nazca (sky blue triangle, n = 7), and L. anqapuka sp. nov. (green squares, n = 7). Eigenvectors, eigenvalues, and percent of variation explained for the first two principal components are summarized in Table 5.
Fig. 7 in Some color in the desert: description of a new species of Liolaemus (Iguania: Liolaemidae) from southern Peru, and its conservation status
Fig. 7. Habitat of Liolaemus anqapuka sp. nov. in (A) dry season and (B) wet season. Photos by A. Quiroz (A), C.S. Abdala (B).
Fig. 2 in Some color in the desert: description of a new species of Liolaemus (Iguania: Liolaemidae) from southern Peru, and its conservation status
Fig. 2. Details of the holotype of Liolaemus anqapuka sp. nov. (MUSA 5573; SVL = 73.5 mm, Tail = 63.9 mm): (A) dorsal and (B) ventral views of body; (C) ventral, (D) dorsal, and (E) lateral views of head; (F) ventral view of precloacal pores. Scale = 10 mm.
Fig. 4 in Some color in the desert: description of a new species of Liolaemus (Iguania: Liolaemidae) from southern Peru, and its conservation status
Fig. 4. Male specimens of the Liolaemus anqapuka sp. nov. Photos by A. Quiroz (A–D) and C.S. Abdala (E).
Fig. 6 in Some color in the desert: description of a new species of Liolaemus (Iguania: Liolaemidae) from southern Peru, and its conservation status
Fig. 6. Geographic distribution of Liolaemus montanus group species from Peru. Symbols with a black dot in the middle represent the type locality of each species. Species with quotation marks in the names belong to the candidate species listed in Aguilar et al. (2016).
Fig. 1 in Some color in the desert: description of a new species of Liolaemus (Iguania: Liolaemidae) from southern Peru, and its conservation status
Fig. 1. Biogeographic regionalization proposed by Morrone (2014), showing the limits of the Desert province and Atacama province. The geoform La Caldera batholith, adapted from Ramos (2008), is also shown.
Fig. 3 in Some color in the desert: description of a new species of Liolaemus (Iguania: Liolaemidae) from southern Peru, and its conservation status
Fig. 3. Adult male of the holotype, Liolaemus anqapuka sp. nov. (MUSA 5573; SVL = 73.5 mm, Tail = 63.9 mm), from the Department of Arequipa, 2,460 m asl. Photos by C.S. Abdala.
Fig. 11 in Some color in the desert: description of a new species of Liolaemus (Iguania: Liolaemidae) from southern Peru, and its conservation status
Fig. 11. Phylogenetic trees showing the relationships between Liolaemus anqapuka sp. nov. and species within the L. montanus group by (A) Total Evidence analysis, (B) molecular phylogenetic analysis, and (C) morphological phylogenetic analysis. The values correspond to the support measure with symmetric resampling.
Figs 5, 6. Liolaemus occipitalis Boulenger, 1885 in Effects of anthropogenic disturbance in the survival of the sand lizard, Liolaemus occipitalis (Squamata: Liolaemidae)
Figs 5, 6. Liolaemus occipitalis Boulenger, 1885 size in State Park of Itapeva (green circle) and Real beach (blue circle), Rio Grande do Sul, Brazil: 5, female; 6, male.
Fig. 1 in Effects of anthropogenic disturbance in the survival of the sand lizard, Liolaemus occipitalis (Squamata: Liolaemidae)
Fig. 1. Location map of sampling areas for the two populations of Liolaemus occipitalis Boulenger, 1885 in the study, Rio Grande do Sul, Brazil. Triangle: Real beach; Circle: State Park of Itapeva (PEI).
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International Brain Laboratory public data
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OpenNeuro
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