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550 results for “mountain range”
Figure 11 from: Moraes LJCL, Almeida AP, Fraga R, Rojas RR, Pirani RM, Silva AAA, de Carvalho VT, Gordo M, Werneck FP (2017) Integrative overview of the herpetofauna from Serra da Mocidade, a granitic mountain range in Northern Brazil . ZooKeys 715: 103-159. https://doi.org/10.3897/zookeys.715.20288
Figure 11 - Phylogenetic relationships of caecilians. Maximum likelihood phylogenetic tree of caecilians families Siphonopidae and Rhinatrematidae, based on a 468bp fragment of the 16S mtDNA. Only bootstrap values >80% are shown (5,000 replicates). The GenBank accession numbers appear after the names of downloaded sequences, and specimens from the Serra da Mocidade are highlighted.
Figure 17 from: Moraes LJCL, Almeida AP, Fraga R, Rojas RR, Pirani RM, Silva AAA, de Carvalho VT, Gordo M, Werneck FP (2017) Integrative overview of the herpetofauna from Serra da Mocidade, a granitic mountain range in Northern Brazil . ZooKeys 715: 103-159. https://doi.org/10.3897/zookeys.715.20288
Figure 17 - Phylogenetic relationships of Dendropsophus. Maximum likelihood phylogenetic tree of some species from Dendropsophus parviceps clade, based on a 350bp fragment of the 16S mtDNA. Only bootstrap values >80% are shown (5,000 replicates). The GenBank accession numbers appear after the names of downloaded sequences, and specimens from the Serra da Mocidade are highlighted.
Figure 13 from: Moraes LJCL, Almeida AP, Fraga R, Rojas RR, Pirani RM, Silva AAA, de Carvalho VT, Gordo M, Werneck FP (2017) Integrative overview of the herpetofauna from Serra da Mocidade, a granitic mountain range in Northern Brazil . ZooKeys 715: 103-159. https://doi.org/10.3897/zookeys.715.20288
Figure 13 - Phylogenetic relationships of Anomaloglossus. Maximum likelihood phylogenetic tree of Anomaloglossus species, based on a 361bp fragment of the 16S mtDNA. Only bootstrap values >80% are shown (5,000 replicates). The GenBank accession numbers appear after the names of downloaded sequences, and specimens from the Serra da Mocidade are highlighted.
Figure 2 from: Medina D, Ibáñez R, Lips KR, Crawford AJ (2019) Amphibian diversity in Serranía de Majé, an isolated mountain range in eastern Panamá. ZooKeys 859: 117-130. https://doi.org/10.3897/zookeys.859.32869
Figure 2 Individual-based rarefaction curves showing the estimated richness as a function of the upper 95% confidence interval (CI) calculated by the function Mao Tao. A Rarefaction curve combining all data obtained for the Serranía de Majé transect B rarefaction curves for low (120 – 150 m), intermediate (797 m), and high elevation (1,240–1,365 m) survey sites.
Figure 3 from: Medina D, Ibáñez R, Lips KR, Crawford AJ (2019) Amphibian diversity in Serranía de Majé, an isolated mountain range in eastern Panamá. ZooKeys 859: 117-130. https://doi.org/10.3897/zookeys.859.32869
Figure 3 Site-level dendrogram based on Jaccard dissimilarities and built with the unweighted pair-group method based on arithmetic averages (UPGMA). This analysis was based on all post-metamorphic amphibians captured at each site.
Figure 4 from: Medina D, Ibáñez R, Lips KR, Crawford AJ (2019) Amphibian diversity in Serranía de Majé, an isolated mountain range in eastern Panamá. ZooKeys 859: 117-130. https://doi.org/10.3897/zookeys.859.32869
Figure 4 Diagram showing a decrease with elevation in the similarities of amphibian species assemblages associated with sites from the Serranía de Piedras-Pacora mountain range and the isolated Serranía de Majé mountain range. The numbers represent the shared species between sites (N), Jaccard similarity coefficients (N) and total number of species at the site level (N). Each color represents an elevation category, where the lowlands (< 400 m) are represented in yellow, mid-elevation sites (400–800 m) in green, and highlands (> 800 m) in blue. NA = no data available.
Figure 1 from: Medina D, Ibáñez R, Lips KR, Crawford AJ (2019) Amphibian diversity in Serranía de Majé, an isolated mountain range in eastern Panamá. ZooKeys 859: 117-130. https://doi.org/10.3897/zookeys.859.32869
Figure 1 Map showing the location of the study sites in the Serranía de Majé and the Serranía de Piedras-Pacora across the valley of the Chepo River.
Supplementary material 1 from: Medina D, Ibáñez R, Lips KR, Crawford AJ (2019) Amphibian diversity in Serranía de Majé, an isolated mountain range in eastern Panamá. ZooKeys 859: 117-130. https://doi.org/10.3897/zookeys.859.32869
: Data type: specimen list.
FIGURE 5 in Carajasia (Rubiaceae), a new and endangered genus from Carajás mountain range, Pará, Brazil
FIGURE 5. Geographic distribution of Carajasia cangae with collections represented by stars.
FIGURE 2 in Critoniopsis hermogenesii (Vernonieae, Asteraceae), a new endemic species from Serra do Mar Mountain Range, São Paulo state, Brazil
FIGURE 2. Distribution map of Critoniopsis hermogenesii in São Paulo state, Brazil.
FIGURE 4 in Notes on the diversity and floristic affinity of mosses (Musci, Bryophyta) from Zambales Mountain Range, Luzon island, Philippines
FIGURE 4. Map showing collection localities of Zambales Mountain Range in the island of Luzon.
FIGURE 5 in A new genus and species of Parastenocarididae Chappuis, 1940 (Copepoda, Harpacticoida) from the Espinhaço Mountain Range (Brazil) with an unclear phylogenetic position within the Fontinalicaridinae Schminke, 2010
FIGURE 5- Tupinicaris rupestris gen. et sp. nov., male. Ventral (A) and lateral (B) views of P5.
FIGURE 1 in A new genus and species of Parastenocarididae Chappuis, 1940 (Copepoda, Harpacticoida) from the Espinhaço Mountain Range (Brazil) with an unclear phylogenetic position within the Fontinalicaridinae Schminke, 2010
FIGURE 1- Map indicating the type locality in the State Park of Rio Preto, Minas Gerais, Brazil.
FIGURE 7 in A new genus and species of Parastenocarididae Chappuis, 1940 (Copepoda, Harpacticoida) from the Espinhaço Mountain Range (Brazil) with an unclear phylogenetic position within the Fontinalicaridinae Schminke, 2010
FIGURE 7- Tupinicaris rupestris gen. et sp. nov., female. P1(A), P2 (B), P3 (C), P4 (D).
FIGURE 4 in A new genus and species of Parastenocarididae Chappuis, 1940 (Copepoda, Harpacticoida) from the Espinhaço Mountain Range (Brazil) with an unclear phylogenetic position within the Fontinalicaridinae Schminke, 2010
FIGURE 4- Tupinicaris rupestris gen. et sp. nov., male. P1(A), P2 (B), P3 (C), P4 (D).
Figure 1 from: dos Santos SA, de Britto MR (2021) The ichthyofauna of a poorly known area in the middle-southern Espinhaço mountain range, state of Minas Gerais, Brazil: diagnostics and identification keys. ZooKeys 1054: 25-66. https://doi.org/10.3897/zookeys.1054.67554
Figure 1 Sample localities in the middle-southern Espinhaço mountain range, Minas Gerais state, Brazil. Numbers matches sample localities in Table 1. Upper rio Paraúna drainages (black circle); upper rio Santo Antônio drainages (blue square); black arrow indicates study area.
Figure 2 from: dos Santos SA, de Britto MR (2021) The ichthyofauna of a poorly known area in the middle-southern Espinhaço mountain range, state of Minas Gerais, Brazil: diagnostics and identification keys. ZooKeys 1054: 25-66. https://doi.org/10.3897/zookeys.1054.67554
Figure 2 Sample localities in the middle-southern Espinhaço mountain range, Minas Gerais state, Brazil. Numbers follow Figure 1 and Table 1.
FIGURE 4 in Faunistic relations between the ranges of the Eastern Arc mountains: relocation of Peronura hildebrandtiana Karsch, 1889 (Tettigoniidae: Phaneropterinae), the description of the male and implications from its phylogeographical pattern
FIGURE 4. Lateral view of male abdominal apices of A. P. uguenoensis and B. P. hildebrandtiana.
Figures 22- 23 from: Burckhardt D, Queiroz DL (2021) Mitrapsylla rupestris sp. nov., a psyllid (Hemiptera, Psylloidea) associated with Poiretia bahiana (Fabaceae) endemic to the Espinhaço mountain range (Brazil, Bahía). Alpine Entomology 5: 69-75. https://doi.org/10.3897/alpento.5.70640
Figures 22- 23 Poiretia bahiana. 22. Plant with folded leaflet (arrow) housing immatures; 23. immatures of Mitrapsylla rupestris sp. nov. (arrows).
Figures 14-21 from: Burckhardt D, Queiroz DL (2021) Mitrapsylla rupestris sp. nov., a psyllid (Hemiptera, Psylloidea) associated with Poiretia bahiana (Fabaceae) endemic to the Espinhaço mountain range (Brazil, Bahía). Alpine Entomology 5: 69-75. https://doi.org/10.3897/alpento.5.70640
Figures 14-21 Mitrapsylla rupestris sp. nov., terminalia. 14. Male terminalia, in profile; 15. inner face of paramere; 16. dorsal view of parameres, setae on right paramere omitted (anterior = up); 17. distal portion of aedeagus; 18. ventral lobe of distal portion of aedeagus with lateral tubercles, in ventral view; 19. female terminalia, in profile; 20. peg setae on female proctiger; 21. female subgenital plate, in ventral view. Scale bars: 0.1 mm (14, 19, 21); 0.05 mm (15–18); 0.03 mm (20).
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Allen Brain Atlas
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International Brain Laboratory public data
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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.