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310 results for “Caribbean Islands”

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Fig. 14. Armadilloniscus ninae Schultz, 1984 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 14. Armadilloniscus ninae Schultz, 1984, ♂ (CDUC-CRU 216). A. Pereopod 1. B. Pereopod 7. C. Genital papilla. D. Pleopod 1. E. Pleopod 2. F. Pleopod 3 exopod. G. Pleopod 4 exopod. H. Pleopod 5 exopod.

opencc-by-4.0Feb 2022View details →
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Fig. 8 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 8. Stenoniscus nestori López-Orozco, Taiti & Campos-Filho sp. nov., paratypes, ♂♂ (CDUC- CRU 185 and CDUC-CRU 186). A. Pereopod 1. B. Pereopod 7. C. Pleopod 1 endopod. D. Pleopod 2. E. Pleopod 3 exopod. F. Pleopod 4 exopod. G. Pleopod 5 exopod.

opencc-by-4.0Feb 2022View details →
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Fig. 6 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 6. Stenoniscus nestori López-Orozco, Taiti & Campos-Filho sp. nov., paratype, ♂ (CDUC- CRU 186). A. Habitus, dorsal view. B. Habitus, ventral view. C. Habitus, lateral view. D. Dorsal scale-seta. E. Cephalon, dorsal view. F. Cephalon, lateral view. G. Pleonite 5 and telson, dorsal view. H. Antennula. I. Antenna.

opencc-by-4.0Feb 2022View details →
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Fig. 7 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 7. Stenoniscus nestori López-Orozco, Taiti & Campos-Filho sp. nov., paratype, ♀ (CDUC- CRU 186). A. Left mandible. B. Right mandible. C. Maxillula. D. Maxilla. E. Maxilliped. F. Uropod.

opencc-by-4.0Feb 2022View details →
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Fig. 5 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 5. Tylos negroi López-Orozco, Carpio-Díaz & Campos-Filho sp. nov., paratype, ♂ (CDUC- CRU 128). A. Pereopod 1. B. Pereopod 7. C. Pleopod 2.

opencc-by-4.0Feb 2022View details →
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Fig. 1 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 1. Map of the study areas and distribution of species of terrestrial isopods from Isla Grande. 1. Ligia baudiniana Milne Edwards, 1840. 2. Tylos negroi López-Orozco, Carpio-Díaz & Campos-Filho sp. nov. 3. Tylos marcuzzii Giordani Soika, 1954. 4. Tylos niveus Budde-Lund, 1885. 5. Stenoniscus nestori López-Orozco, Taiti & Campos-Filho sp. nov. 6. Armadilloniscus caraibicus Paoletti & Stinner, 1989. 7. Armadilloniscus luisi Carpio-Díaz, Taiti & Campos-Filho sp. nov. 8. Armadilloniscus ninae Schultz, 1984. 9. Halophiloscia trichoniscoides (Vandel, 1973) comb. nov. 10. Littorophiloscia amphindica Taiti & Ferrara, 1986. 11. Littorophiloscia denticulata (Ferrara & Taiti, 1982). 12. Littorophiloscia tropicalis Taiti & Ferrara, 1986. 13. Trichorhina heterophthalma Lemos de Castro, 1964. 14. Trichorhina bermudezae Carpio-Díaz, López-Orozco & Campos-Filho, 2018. 15. Porcellionides pruinosus (Brandt, 1833). 16. Agnara madagascariensis (Budde-Lund, 1885). 17. Ctenorillo tuberosus (Budde-Lund, 1904).

opencc-by-4.0Feb 2022View details →
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Fig. 2. A. Tylos marcuzzii Giordani Soika, 1954. B in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 2. A. Tylos marcuzzii Giordani Soika, 1954. B. Tylos negroi López-Orozco, Carpio-Díaz & Campos- Filho sp. nov. C. Stenoniscus nestori López-Orozco, Taiti & Campos-Filho sp. nov. D. Armadilloniscus caraibicus Paoletti & Stinner, 1989. E. Armadilloniscus luisi Carpio-Díaz, Taiti & Campos-Filho sp. nov. F. Armadilloniscus ninae Schultz, 1984. G. Halophiloscia trichoniscoides (Vandel, 1973) comb. nov. H. Littorophiloscia amphindica Taiti & Ferrara, 1986. I. Littorophiloscia denticulata (Ferrara & Taiti, 1982). J. Littorophiloscia tropicalis Taiti & Ferrara, 1986. K. Agnara madagascariensis (Budde-Lund, 1885). L. Ctenorillo tuberosus (Budde-Lund, 1904). Scale bars: 1 mm.

opencc-by-4.0Feb 2022View details →
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Fig. 4 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 4. Tylos negroi López-Orozco, Carpio-Díaz & Campos-Filho sp. nov., paratype, ♀ (CDUC- CRU 129). A. Antenna. B. Left mandible. C. Right mandible. D. Maxillula. E. Maxilla. F. Maxilliped.

opencc-by-4.0Feb 2022View details →
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Fig. 16 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 16. Halophiloscia trichoniscoides (Vandel, 1973) comb. nov., ♀ (MZUF 9607). A. Left mandible. B. Right mandible. C. Maxillula. D. Maxilla. E. Maxilliped. F. Uropod.

opencc-by-4.0Feb 2022View details →
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Fig. 15 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 15. Halophiloscia trichoniscoides (Vandel, 1973) comb. nov., ♀ (MZUF 9607). A. Habitus, dorsal view. B. Dorsal scale-seta. C. Epimera 4 with noduli laterales. D. Cephalon, dorsal view. E. Cephalon, frontal view. F. Antennula. G. Antenna.

opencc-by-4.0Feb 2022View details →
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Fig. 10 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 10. Armadilloniscus luisi Carpio-Díaz, Taiti & Campos-Filho sp. nov. A–G. Paratype, ♂ (CUDC- CRU 194). A. Habitus, dorsal view. B. Dorsal scale-seta. C. Cephalon, frontal view. D. Cephalon, dorsal view. E. Pleonite 5 and telson. F. Antennula. G. Antenna. H. Paratype, ♀ (CDUC-CRU 194), habitus, dorsal view.

opencc-by-4.0Feb 2022View details →
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Fig. 13. Armadilloniscus ninae Schultz, 1984 in A glimpse into a remarkable unknown diversity of oniscideans along the Caribbean coasts revealed on a tiny island

Fig. 13. Armadilloniscus ninae Schultz, 1984, ♀ (CDUC-CRU 216). A. Habitus, dorsal view. B. Dorsal scale-seta. C. Cephalon, dorsal view. D. Cephalon, frontal view. E. Pleon, telson and uropods. F. Antennula. G. Antenna.

opencc-by-4.0Feb 2022View details →
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Fig 4 in Unexpectedly high Sphaerodactylus diversity on a Caribbean island: new locality for the Honduran endemic Sphaerodactylus dunni Schmidt, 1936 (Gekkonidae: Sphaerodactylidae) on Utila Island, Honduras

Fig 4. Pictures of an adult Sphaerodactylus dunni photographed in 2014, in Pico Bonito National Park, La Cieba, Honduras, to provide direct comparison and aid in confirmation of the species' presence on Utila Island. Photos by Tom W. Brown.

opencc-by-4.0Jul 2020View details →
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Fig 2 in Unexpectedly high Sphaerodactylus diversity on a Caribbean island: new locality for the Honduran endemic Sphaerodactylus dunni Schmidt, 1936 (Gekkonidae: Sphaerodactylidae) on Utila Island, Honduras

Fig 2. Key diagnostic features (outlined in white or indicated in blue) used to identify the captured individual as Sphaerodactylus dunni on Isla de Utila, Honduras. (A) Three supralabial scales positioned beneath/level to the lower anterior half of each eye; (B) nine narrow sub-digital lamellae on digit IV (described range of 7–11); (C) keeled dorsal scales (not outlined) and usually a superciliary spine located at or posterior to the level of the mid-eye; (D) subcaudal scales in alternating series on tail. Photos by Tom W. Brown.

opencc-by-4.0Jul 2020View details →
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Fig 3 in Unexpectedly high Sphaerodactylus diversity on a Caribbean island: new locality for the Honduran endemic Sphaerodactylus dunni Schmidt, 1936 (Gekkonidae: Sphaerodactylidae) on Utila Island, Honduras

Fig 3. Google Earth © map hosted on the IUCN platform for Sphaerodactylus dunni (Townsend et al. 2013), illustrating the known range of the species on mainland Honduras, modified to include the new locality on Utila Island (X), part of Islas de la Bahía. Map data: see Google Earth (https://www.google.com/earth/) and Townsend et al. (2013).

opencc-by-4.0Jul 2020View details →
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Fig 1 in Unexpectedly high Sphaerodactylus diversity on a Caribbean island: new locality for the Honduran endemic Sphaerodactylus dunni Schmidt, 1936 (Gekkonidae: Sphaerodactylidae) on Utila Island, Honduras

Fig 1. An adult Sphaerodactylus dunni photographed upon capture at its newly reported locality on Isla de Utila, Honduras. Photo by Tom W. Brown.

opencc-by-4.0Jul 2020View details →
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Fig. 1 in Genetic characterization of Strongyloides fuelleborni infecting free-roaming African vervets (Chlorocebus aethiops sabaeus) on the Caribbean island of St. Kitts

Fig. 1. Schematic of the Strongyloides genotyping scheme referenced here Graphical representation a Strongyloides sp. genotyping scheme after the description of Barratt et al. (Barratt et al., 2019a; Barratt and Sapp, 2020). This scheme was expanded here to include haplotypes XVI and XVII of 18S HVR-I (indicated by a star) identified here from feral vervet monkeys living on the island of St Kitts (GenBank accessions in Table 3). Haplotype names shown in blue belong to S. fuelleborni and those shown in black belong to other Strongyloides species in accordance with this typing scheme. Haplotype sequences are provided in File S1. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

opencc-by-4.0Apr 2023View details →
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Fig. 3 in Genetic characterization of Strongyloides fuelleborni infecting free-roaming African vervets (Chlorocebus aethiops sabaeus) on the Caribbean island of St. Kitts

Fig. 3. Neighbor-Joining tree generated from St Kitts S. fuelleborni genotypes and other Strongyloides types This tree was generated by applying the Neighbor-Joining clustering method (Saitou and Nei, 1987) to a pairwise distance matrix computed using Barratt's heuristic from 285 Strongyloides genotypes, including 48 from St. Kitts vervets. Branches are colored according to their cluster membership (A through H) as defined by Ko et al. (2022). We also introduce S. fuelleborni type H (light pink) from St. Kitts vervets, noting that an H-type isolate was found previously in a human from Guinea-Bissau (pink triangle). Divergent S. fuelleborni types described by Ko et al. (2022) were also analyzed (bright green branches without a cluster letter) from Siamang, Douc, and Francois' langur housed in zoological parks in Japan. A version of this same tree with isolate names shown on the branch tips is provided in File S3; Tree B. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

opencc-by-4.0Apr 2023View details →
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Fig. 2 in Genetic characterization of Strongyloides fuelleborni infecting free-roaming African vervets (Chlorocebus aethiops sabaeus) on the Caribbean island of St. Kitts

Fig. 2. Hierarchical tree of clustered distances generated from genotyped S. fuelleborni from St Kitts vervets and other Strongyloides sp. genotypes This unrooted tree was generated using Wards method (Ward, 1963) to cluster a pairwise distance matrix computed from 285 Strongyloides genotypes, including 48 from St. Kitts vervets. Branches are colored according to their cluster membership (A through H). We introduce S. fuelleborni type H (pink star) identified from St. Kitts vervets, noting that an H-type isolate was found previously in a human from Guinea-Bissau. Colored peripheral bars reflect the host species from which isolates were derived; dog (Do), human (Hu), chimpanzee (Ch), lorises (Lo), long-tailed macaques (Lt), pig-tailed macaques (Pt), Japanese macaques (Jm), proboscis monkeys (Pr), silvered leaf monkeys (Sl), orangutans (Or), Rhesus macaques (Rh), St Kitts (white star) vervets (Ve), gorilla (Go), and baboon (Ba). Divergent S. fuelleborni types described by Ko et al. (2023) were also clustered (green circle and branches) from Siamang (Si), Douc (Do), and Francois' langur (Fr) housed in zoological parks in Japan. The black bar and black star indicate S. stercoralis reference strain PV001. Strongyloides stercoralis types A and B, are shown with red and blue branches respectively. The loris clade is shown in light blue. The S. stercoralis and loris clades clustered here for comparison are shaded in a gray background. A version of this same tree with isolate names shown on the branch tips is provided in File S3; Tree A. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

opencc-by-4.0Apr 2023View details →
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Linked collectors and determiners for: The Biting Midges of the Caribbean island Curaçao (Diptera: Ceratopogonidae) I. Species in the genus Dasyhelea Kieffer.

Natural history specimen data linked to collectors and determiners held within, "The Biting Midges of the Caribbean island Curaçao (Diptera: Ceratopogonidae) I. Species in the genus Dasyhelea Kieffer". Claims or attributions were made on Bionomia by volunteer Scribes, <a href="https://bionomia.net/dataset/1b0654ea-eecb-4242-ad9a-850602f7d185">https://bionomia.net/dataset/1b0654ea-eecb-4242-ad9a-850602f7d185</a> using specimen data from the dataset aggregated by the Global Biodiversity Information Facility, <a href="https://gbif.org/dataset/1b0654ea-eecb-4242-ad9a-850602f7d185">https://gbif.org/dataset/1b0654ea-eecb-4242-ad9a-850602f7d185</a>. Formatted as a Frictionless Data package.

opencc-zeroJan 2024View details →

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