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Dataset results
431 results for “areas of endemism”
Optimizing Benefits While Reducing Risks of Iron in Malaria-endemic Areas
ClinicalTrials.gov study NCT03897673. IPD Sharing: NO. Countries: 1. Publications: 0.
Impact Study of Cholera Vaccination in Endemic Areas - Clinical Surveillance
ClinicalTrials.gov study NCT04853186. IPD Sharing: UNDECIDED. Countries: 1. Publications: 0.
An Evaluation of a Novel Food Product in Adults Residing in an Area Endemic for Helminths
ClinicalTrials.gov study NCT01271049. IPD Sharing: Not stated. Countries: 1. Publications: 0.
Insights Into Tick-Borne Diseases: a Study From an Endemic Area of Northern Italy
ClinicalTrials.gov study NCT06374615. IPD Sharing: Not stated. Countries: 1. Publications: 0.
FIGURES 1–4 in A new species of Amystax Roelofs, 1873 endemic to the mountainous area of the Yakushima World Natural Heritage site, Kyushu, Japan
FIGURES 1–4. Habitus photos of Amystax urara sp. nov. 1. male (Holotype), 2. female (paratype), 3. male (paratype), 4. female (paratype).
FIGURES 13–17 in A new species of Amystax Roelofs, 1873 endemic to the mountainous area of the Yakushima World Natural Heritage site, Kyushu, Japan
FIGURES 13–17. Aedeagus and spermatheca of Amystax urara sp. nov. 13. Aedeagus, dorsal, 14. ditto, lateral with tegmen. 15. terminal part of flagellum, lateral and enlarged, 16. 9th sternite and spiculum gastrale, 17. spermatheca.
FIGURES 11–12 in A new species of Amystax Roelofs, 1873 endemic to the mountainous area of the Yakushima World Natural Heritage site, Kyushu, Japan
FIGURES 11–12. Pronotum and elytral base of Amystax spp. 11. A. urara sp. nov., 12. A. yakushimanus Nakamura et Morimoto (the arrows a and b indicate a costa along basal margin of elytra and a scale of strial puncture, respectively).
FIGURE 6 in Bioclimatic characterization of the world areas of Endemism identified for Mammals
FIGURE 6. Relationship between dominance indices (a) climate and (b) biomes of each area of endemism.
Distribution. Endemic to W & C Australia, occurs in semiarid Gibson Desert, Pilbara, and Murchison regions of Western Australia, Northern Territory, extreme NW Queensland, and South Australia; one specimen is known from an outlying area in the Great Sandy Desert. in Emballonuridae
Distribution. Endemic to W & C Australia, occurs in semiarid Gibson Desert, Pilbara, and Murchison regions of Western Australia, Northern Territory, extreme NW Queensland, and South Australia; one specimen is known from an outlying area in the Great Sandy Desert.
Distribution. Endemic to a small area in N Northern Territory, N Australia, including few sites in Kakadu National Park and its surroundings, as well as a cave in Litchfield National Park. in Hipposideridae
Distribution. Endemic to a small area in N Northern Territory, N Australia, including few sites in Kakadu National Park and its surroundings, as well as a cave in Litchfield National Park.
FIGURE 3 in Areas of endemism for Anablepidae (Teleostei: Cyprinodontiformes): A monophyletic family of freshwater fishes in the Neotropics
FIGURE 3. Individual areas of endemism (IAs) delimited for Anablepidae by endemicity analysis with grid size of 1.5º. Numbering of each IA is in accordance with Table 2. E: Endemicity Score.
FIGURE 1 in Areas of endemism for Anablepidae (Teleostei: Cyprinodontiformes): A monophyletic family of freshwater fishes in the Neotropics
FIGURE 1. Neotropical region partial maps showing the current geographic distributions of the anablepid species with records from ichthyological collections (databases) and specialized literature (see Table 1): A) Anableps and Oxyzygonectes species; B,C) subgenus Jenynsia species; D) subgenus Plesiojenynsia species.
FIGURE 2 in Areas of endemism for Anablepidae (Teleostei: Cyprinodontiformes): A monophyletic family of freshwater fishes in the Neotropics
FIGURE 2. Neotropical region with the grids (1.5º longitude x 1.5º latitude) used in the endemicity analysis. Arrows indicate the grid origin entered in the NDM/VNDM software.
Data from: Using a null model to recognize significant co-occurrence prior to identifying candidate areas of endemism
[No abstract entered]
FIGURES 425–426. 425 in New species (130) of the hyperdiverse aquatic beetle genus Hydraena Kugelann from Papua New Guinea, and a preliminary analysis of areas of endemism (Coleoptera: Hydraenidae) 2944
FIGURES 425–426. 425. Collecting sites of Hydraena in montane rain forest. 426. Collecting sites of Hydraena in lowland rain forest.
Data from: Using a null model to recognize significant co-occurrence prior to identifying candidate areas of endemism
Open the record for dataset details and reuse information.
FIGURE 3 in Bioclimatic characterization of the world areas of Endemism identified for Mammals
FIGURE 3. Dominance (Simpson) index of biomes for the areas of endemism of mammals.
FIGURE 2 in Bioclimatic characterization of the world areas of Endemism identified for Mammals
FIGURE 2. Entropy (Shannon) index of climate for the areas of endemism of mammals.
FIGURE 7 in Bioclimatic characterization of the world areas of Endemism identified for Mammals
FIGURE 7. Relationship between entropy indices (a) climate and (b) biomes of each area of endemism.
FIGURE 1 in Bioclimatic characterization of the world areas of Endemism identified for Mammals
FIGURE 1. Dominance (Simpson) index of climate for the areas of endemism of mammals.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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