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317 results for “Lesser Antilles”
Figure 5 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 5: Adult male topotype of Tityus smithii: a. carapace; b. pedipalp, dorsal view; c. venter; d. metasoma, lateral view. Photos courtesy František Kovařík.
Figure 4 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 4: Adult male topotype of Tityus smithii: a. entire dorsal view; b. entire ventral view. Photos courtesy František Kovařík.
Figure 3 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 3: Juvenile female topotype of Tityus pictus: a. entire dorsal view; b. sternopectinal region; c. sternite V; d. metasomal segments III–V and telson, lateral view.
Figure 2 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 2: Large adult male topotype of Tityus pictus: a. carapace; b. pedipalp, dorsal view; c. sternopectinal region; d. sternite V; e. metasomal segments I–III, lateral view; f. metasomal segments IV–V and telson, lateral view; g. telson, lateral close-up.
Figure 1 in Redescription of Tityus pictus Pocock, 1893 and Tityus smithii Pocock, 1893, with notes on the Tityus species from the Lesser Antilles (Scorpiones: Buthidae)
Figure 1: Large adult male topotype of Tityus pictus: a. entire dorsal view; b. entire ventral view.
Figs. 26–34 in Two new species and new records of springtails (Collembola: Entomobryidae, Paronellidae) from Nevis, Lesser Antilles
Figs. 26–34. (26–30) Metasinella radkei sp. nov. (26) Inner face of hind leg trochanter and femur showing trochanteral and femoral (enclosed by hatched line) organs, arrow points basally. (27) Hind claw complex. (28) Hind unguis in holotype. (29) Posterior face of collophore. (30) Mucro. (31–32) Lepidocyrtus nigrosetosus. (31) Metathorax. (32) First abdominal segment. (33–34) Pseudosinella violeta. (33) Metathorax. (34) First abdominal segment.
Figs. 21–25 in Two new species and new records of springtails (Collembola: Entomobryidae, Paronellidae) from Nevis, Lesser Antilles
Figs. 21–25. Metasinella radkei sp. nov. Abdominal chaetotaxy on (21) 1st segment; (22) 2nd segment; (23) 3rd segment, hatched line shows alternative insertion of d2; (24) 4th segment; (25) 5th segment.
Figs. 16–20 in Two new species and new records of springtails (Collembola: Entomobryidae, Paronellidae) from Nevis, Lesser Antilles
Figs. 16–20. Metasinella radkei sp. nov. (16) Dorsal chaetotaxy of head. (17) Proximal setae of labial palp. (18) Labial and postlabial setae, all elements are coarsely ciliate. (19) Mesothorax. (20) Metathorax.
Figs. 12–15 in Two new species and new records of springtails (Collembola: Entomobryidae, Paronellidae) from Nevis, Lesser Antilles
Figs. 12–15. Dorsal chaetotaxy of 4th abdominal segment. (12) Dicranocentrus icelosmarias sp. nov. 13–15. Dicranocentrus marias, (13) Nomenclature following Szpetycki (1979). (14–15) Alternative interpretations of homology of inner elements.
Figs. 10–11 in Two new species and new records of springtails (Collembola: Entomobryidae, Paronellidae) from Nevis, Lesser Antilles
Figs. 10–11. Dicranocentrus icelosmarias sp. nov. dorsal chaetotaxy. (10) Second abdominal segment. (11) Third abdominal segment.
Figs. 1–9 in Two new species and new records of springtails (Collembola: Entomobryidae, Paronellidae) from Nevis, Lesser Antilles
Figs. 1–9. Dicranocentrus icelosmarias sp. nov. Open circles, dots, and "v" represent macrosetae, microsetae, and scales, respectively. (1) Dorsal head chaetotaxy. (2) Papilla on distal margin of labrum, inn and out refer to inner and outer papilla, respectively. (3) Basal setae of maxillary palp in holotype. (4) Maxillary palp in paratype. (5) Distribution of postlabial setae, arrow points anteriorly. (6) Mesothorax. (7) Metathorax. (8) First abdominal segment. (9) Hind leg claw complex, basal paired teeth are subequal and aligned, and only 1 is visible in this perspective.
Figures 1–3 in Hylaeus (Hylaeana) dominicalis, a new species and the first colletid bee recorded from Dominica, Lesser Antilles (Hymenoptera: Colletidae: Hylaeinae)
Figures 1–3. Hylaeus (Hylaeana) dominicalis, new species, paratype female. 1. Lateral habitus. 2. Facial view. 3. Dorsal habitus.
Fig. 1 in Unearthing the species diversity of a cryptozoic snake, Tantilla melanocephala, in its northern distribution with emphasis on the colonization of the Lesser Antilles
Fig. 1. (A) Tantilla melanocephala sample localities for this study (red circles) in the northern region of its distribution. (B) The distribution of Tantilla melanocephala in the Neotropics. Locality data are from VertNet and the GBIF databases, as well as the literature (Nogueira et al. 2019). Within the Lesser Antilles, Union Island and the Mustique islands are not shown. Red circles are T. melanocephala localities included in the phylogenetic analyses. The map suggests this species inhabits several different biomes.
Fig. 4 in Unearthing the species diversity of a cryptozoic snake, Tantilla melanocephala, in its northern distribution with emphasis on the colonization of the Lesser Antilles
Fig. 4. Bayesian time tree as inferred by BEAST for the data set of concatenated 12S and 16S rDNA, cytb, and c-mos sequences from Tantilla specimens (in red). Red values by nodes denote the median time estimates, whereas values in brackets denote 95% Highest Posterior Density ranges. Red and black nodes are posterior probabilities (1.00 and> 95–99%), respectively. Photo by J.C. Murphy.
Fig. 3 in Unearthing the species diversity of a cryptozoic snake, Tantilla melanocephala, in its northern distribution with emphasis on the colonization of the Lesser Antilles
Fig. 3. Best Maximum Likelihood tree based on the data set of concatenated 12S and 16S rDNA, cytb, and c-mos sequences. Red clade depicts the genus Tantilla. Values on the left and right sides of a slash (/), are the values indicated at nodes of Maximum Likelihood bootstraps (>70%) and Bayesian Posterior probability values (>95%), respectively. The Tantilla melanocephala pictured is from the western versant of the Occidental slopes in Ecuador (from the Rio Manduriacu Reserve). Photo by R. Maynard.
Fig. 2 in Unearthing the species diversity of a cryptozoic snake, Tantilla melanocephala, in its northern distribution with emphasis on the colonization of the Lesser Antilles
Fig. 2. Specimens of Tantilla melanocephala from (A) Tobago, Pigeon Point, (B) Trinidad, Bush Bush, Nariva Swamp, and (C) Venezuela, Caracas, Distrito Capital. Photos by J.C. Murphy (A–B) and L.A. Rodríguez (C).
Figures 3-4. 3 in First record of the genus Charinus Simon, 1892 from Martinique, Lesser Antilles, with description of a new species (Amblypygi: Charinidae)
Figures 3-4. 3 Adult female paratype of Charinus martinicensis sp. n.: a) photographed alive upon finding; b) natural habitat. 4 Map showing with black squares: a) known geographical distribution of the genus Charinus in the Antilles, including unpublished records from Cuba and Hispaniola by the present author; b) type locality of Charinus martinicensis sp. n.
Figure 1 in First record of the genus Charinus Simon, 1892 from Martinique, Lesser Antilles, with description of a new species (Amblypygi: Charinidae)
Figure 1. Adult female holotype of Charinus martinicensis sp. n., full-body views: a) dorsal; b) ventral. Scale bar: 5 mm.
Figure 2 in First record of the genus Charinus Simon, 1892 from Martinique, Lesser Antilles, with description of a new species (Amblypygi: Charinidae)
Figure 2. Adult female holotype of Charinus martinicensis sp. n., close-ups: a) chelicerae and pedipalps, dorsal; b) chelicerae and pedipalps, ventral; c) carapace, dorsal; d) chelicerae and frontal area of carapace, dorsal; e) sternal area, ventral; f) abdomen, dorsal; g) abdomen, ventral; h) sternites I–IV, ventral. Scale bars: 2 mm (a–b), 1.5 mm (c–d, f–g), 1 mm (e–h).
Linked collectors and determiners for: Bees of the family Halictidae Thomson, 1869 from Dominica, Lesser Antilles (Hymenoptera: Apoidea).
Natural history specimen data linked to collectors and determiners held within, "Bees of the family Halictidae Thomson, 1869 from Dominica, Lesser Antilles (Hymenoptera: Apoidea)". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/fc4a1f3e-6a1d-45c8-9701-d050d2c334c7">https://bionomia.net/dataset/fc4a1f3e-6a1d-45c8-9701-d050d2c334c7</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/fc4a1f3e-6a1d-45c8-9701-d050d2c334c7">https://gbif.org/dataset/fc4a1f3e-6a1d-45c8-9701-d050d2c334c7</a>. Formatted as a Frictionless Data package.
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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.