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3,249 results for “National Parks”
Figs 21-24 in Darwin wasps (Hymenoptera, Ichneumonidae) of the Kintrishi National Park, Sakartvelo (Georgia), with descriptions of six new species
Figs 21-24: Picrostigeus longicauda RIEDEL nov.sp. HT: (21) habitus, (22) basal flagellomeres, (23) face, (24) head from dorsal.
Figs 17-20 in Darwin wasps (Hymenoptera, Ichneumonidae) of the Kintrishi National Park, Sakartvelo (Georgia), with descriptions of six new species
Figs 17-20: Olesicampe flavoclypeata RIEDEL nov.sp. HT: (17) face, (18) head from dorsal, (19) enlarged hind trochantellus and hind femur, (20) 1st tergite from lateral.
Figs 11-14 in Darwin wasps (Hymenoptera, Ichneumonidae) of the Kintrishi National Park, Sakartvelo (Georgia), with descriptions of six new species
Figs 11-14: Homaspis impressus RIEDEL nov.sp. HT: (11) face, (12) head from dorsal, (13) propodeum from dorsal, (14) 1st tergite from dorsal.
Figs 3-7 in Darwin wasps (Hymenoptera, Ichneumonidae) of the Kintrishi National Park, Sakartvelo (Georgia), with descriptions of six new species
Figs 3-7: Casinaria georgiana RIEDEL nov.sp. HT: (3) face, (4) head from dorsal, (5) mesosoma from lateral, (6) propodeum from dorsal, (7) metasoma from dorsal.
Figs. 8-10 in Darwin wasps (Hymenoptera, Ichneumonidae) of the Kintrishi National Park, Sakartvelo (Georgia), with descriptions of six new species
Figs. 8-10: Cosmoconus (Alpicosmos) caucasicus RIEDEL nov.sp. HT: (8) habitus, (9) head from frontal, (10) head from dorsal.
Figs 1-2 in Darwin wasps (Hymenoptera, Ichneumonidae) of the Kintrishi National Park, Sakartvelo (Georgia), with descriptions of six new species
Figs 1-2: Collection sites in Kintrishi National Park: (1) near trap 4 at 1264 m asl., (2) near trap 15 at 2280 m asl.
Distance from available surface water of mammals in Ruaha National Park
<p>In Africa, burgeoning human populations promote agricultural expansion and the associated demand for water. Water abstraction for agriculture from perennial rivers can be detrimental for wildlife, particularly when it reduces water availability in protected areas. Ruaha National Park (Ruaha NP) in southern Tanzania, one of the largest parks in Africa, contains important wildlife populations, including rare and endangered species. The Great Ruaha River (GRR) is the main dry-season water source for wildlife in the Park. Water offtake from this river for large-scale irrigation and livestock production up-stream of the Park has caused large expanses of this formerly perennial river within the Park to dry out during the dry season. The dry season distribution of a species in relation to surface water is considered an indicator of its dependence on water and ability to cope with the loss of surface water. We investigated how diminishing surface water availability during three dry seasons (2011–2013) affected herbivores' distance to water in Ruaha NP. The distance held by herbivores to water is shaped by a range of factors including dietary category. We determined changes in the locations of available surface water throughout the dry season using standardized ground transects, close to and leading away from the GRR, to map the locations of nine herbivore species. Functional responses of herbivores, i.e. their change in distance to water between early and late dry season, indicated that distance to water was (i) shortest in buffalo and waterbuck (grazers), (ii) similar for plains zebra (grazer), elephant and impala (mixed feeders), (iii) larger in giraffe and greater kudu (browsers) and (iv) largest in generalist feeders (warthog, common duiker). The substantial species' differences in surface water dependence broadly fit predicted species differences in their ability to cope with anthropogenic reduction in surface water in Ruaha NP.</p>
Fig. 3 in New Eocene South American native ungulates from the Quebrada de los Colorados Formation at Los Cardones National Park, Argentina
Fig. 3. New fossil specimens of Typotheria and Toxodontia from the Quebrada de Los Colorados Formation exposed at Quebrada Grande locality, Los Cardones National Park (Salta Province), Casamayoran SALMA. A, B. Colbertiasp. A. IBIGEO-P 58a, left maxillary fragment with M2–M3 in occlusal view. B. IBIGEO-P 58b, left maxillary fragment with P4–M3 in occlusal view. C–E. Pampahippus secundus Deraco and García-López, 2016. C. IBIGEO-P 62, right trigonid and incomplete talonid of a lower right molar in occlusal view. D. IBIGEO-P 63, fragmented left p3 or p4 in occlusal view. E. IBIGEO-P 64, left m1? in occlusal (E1), labial (E2), and lingual (E3) views. Photographs (A1–E1, E3, E4), explanatory drawings (A2–E2). Dashed area indicates broken or missing dental areas.
Fig. 1 in New Eocene South American native ungulates from the Quebrada de los Colorados Formation at Los Cardones National Park, Argentina
Fig. 1. New fossil materials of Litopterna, Astrapotheria, and Notostylopidae from the Quebrada de Los Colorados Formation exposed at Quebrada Grande locality, Los Cardones National Park (Salta Province), Casamayoran SALMA, Eocene. A. cf. Ernestokokenia sp. (IBIGEO-P 65), fragmented left upper cheek tooth in occlusal view. B. Astrapotheria indet. (IBIGEO-P 66), left maxillary fragment with three broken molariforms in lingual (B1) and occlusal (B3) views, and detail showing Hunter-Schreger bands (B4); dashed area in B2 indicates broken or missing dental areas. C. Homalostylops sp. (IBIGEO-P 57b), right m2? in occlusal (C1), lingual (C3), and labial (C4) views. D.?Homalostylops sp. (IBIGEO-P 57a), left m1? in occlusal view. Photographs (A1, B1, B3, B4, C1, C3, C4, D1), explanatory drawings (A2, B2, C2, D2).
A checklist of the spiders (Arachnida, Araneae) of the Garden Route National Park
<p>An annotated species list of spiders from the Garden Route National Park (GRNP) is provided. The checklist was compiled from data collected from the South African National Survey of Arachnida (SANSA) database. A total of 245 species from 52 families and 166 genera are presently protected in the park. The most species-rich families are the Thomisidae (34 spp.), Salticidae (28 spp.) and Araneidae (22 spp.), while 15 families are represented by singletons. The global distribution, endemicity and conservation status for each species is provided. A large percentage (83.2%) of the species have a wide distribution range and are of Least Concern while 17 species are Data Deficient and 10 species are of special concern. Seven species are known only from the Garden Route National</p>
Figures 1–4 in Two new species of eriophyoid mites (Acari: Eriophyoidea) from Qilian Mountain National Park, China
Figures 1–4. Epitrimerus fruticus sp. nov., female. 1. Lateral view. 2. Dorsal view. 3. Coxal-genital region. 4. Empodium (enlarged). Scale bars = 10 μm.
Figure 3 in Diversity and community structure of oribatid mites (Acari: Oribatida) in the dominant habitats of Machakhela National Park (Georgia, Caucasus)
Figure 3. The results of the cluster analysis of the different forest habitats in Machakhela National Park.
Figure 1 in Diversity and community structure of oribatid mites (Acari: Oribatida) in the dominant habitats of Machakhela National Park (Georgia, Caucasus)
Figure 1. Distribution of the sites of the sample collection of the oribatid mite diversity in the Machakhela National Park.
Plate 2. Figures 11-20. Chimarra spp. Male genitalia.11-15. Chimarra nepalensis. 11. Lateral view, 12 in Genus Chimarra Stephens, 1829 (Insecta: Trichoptera: Philopotamidae) from Suntalekhola Biodiversity Camp, Neora Valley, National Park, West Bengal
Plate 2. Figures 11-20. Chimarra spp. Male genitalia.11-15. Chimarra nepalensis. 11. Lateral view, 12. Dorsal view,
Plate 5. Figures 34-44. Chimarra spp. Adult.34-35. C. biungulata. 34. Dorsal view, 35 in Genus Chimarra Stephens, 1829 (Insecta: Trichoptera: Philopotamidae) from Suntalekhola Biodiversity Camp, Neora Valley, National Park, West Bengal
Plate 5. Figures 34-44. Chimarra spp. Adult.34-35. C. biungulata. 34. Dorsal view, 35. Ventral view.
Plate 1. Figures 1-10. Chimarra spp. Male genitalia. 1-5. Chimarra sikkimensis. 1. Lateral view, 2. Dorsal view, 3. Inferior appendage Ventral view, 4. Phallic apparatus lateral view, 5. Phallic apparatus ventral view. 6-10. C in Genus Chimarra Stephens, 1829 (Insecta: Trichoptera: Philopotamidae) from Suntalekhola Biodiversity Camp, Neora Valley, National Park, West Bengal
Plate 1. Figures 1-10. Chimarra spp. Male genitalia. 1-5. Chimarra sikkimensis. 1. Lateral view, 2. Dorsal view, 3. Inferior appendage Ventral view, 4. Phallic apparatus lateral view, 5. Phallic apparatus ventral view. 6-10. C. rifati.
Plate 4. Figures 29-33. Chimarra spp. Male genitalia. 29-33. Chimarra biungulata. 29. Lateral view, 30. Inferior appendage Ventral view, 31. Dorsal view, 32. Phallic apparatus ventral view, 33 in Genus Chimarra Stephens, 1829 (Insecta: Trichoptera: Philopotamidae) from Suntalekhola Biodiversity Camp, Neora Valley, National Park, West Bengal
Plate 4. Figures 29-33. Chimarra spp. Male genitalia. 29-33. Chimarra biungulata. 29. Lateral view, 30. Inferior appendage Ventral view, 31. Dorsal view, 32. Phallic apparatus ventral view, 33. Phallic apparatus lateral view.
Plate 3. Figures 21-28. Chimarra spp. Male genitalia. 21-25. Chimarra biungulata. 21. Lateral view, 22 in Genus Chimarra Stephens, 1829 (Insecta: Trichoptera: Philopotamidae) from Suntalekhola Biodiversity Camp, Neora Valley, National Park, West Bengal
Plate 3. Figures 21-28. Chimarra spp. Male genitalia. 21-25. Chimarra biungulata. 21. Lateral view, 22. Dorsal view,
Forest gap dynamics with repeat lidar in Berchtesgaden National Park - Data and analysis scripts
<p>This repository holds data and code for the paper: Krüger, K., Senf, C., Jucker, T., Pflugmacher, D., Seidl, R. (2024). Gap expansion is the dominant driver of canopy openings in a temperate mountain forest landscape. Journal of Ecology. <span><a href="http://doi.org/10.1111/1365-2745.14320">http://doi.org/10.1111/1365-2745.14320</a> </span></p> <p><strong>NOTE:</strong> This is a static repository, but the project might evolve. See the connected GitHub repository for latest updates!</p> <p>All data to reproduce the results are available, all other layers can be generated with the code provided in this repository. The Canopy Height Models underlying the analysis and respective processing scripts for the lidar data, are available from the corresponding author upon reasonable request. Gap layers derived from the Canopy Height Models are available in this repository.</p> <p>Empty folders are set up to follow the directory structure of the scripts. </p>
FIG. 1 in Solanum pulneyensis Soosairaj, sp. nov. (Solanaceae) from Palani Hills National Park of Tamil Nadu, India
FIG. 1. — Solanum pulneyensis Soosairaj, sp. nov.: A, habit (a twig); B, calyx; C, corolla (with stamens); D, corolla (without); E, F, anthers; G, pistil; H, fruit (with calyx); I, fruit; J, seed; A-J, drawn from the type Soosairaj 2514. Scale bars: A, 1 cm; B, H, 2.5 mm; C, D, 5 mm; E-G, 2 mm; I, 8 mm; J, 4 mm.
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.