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421 results for “Ecology and Conservation”
Figure 3 in Ecologically-sustainable tree monocultures contribute to conservation of an Araucaria Forest endemic frog
Figure 3. Diet composition of Physalaemus lisei (black bars) in relation to the taxonomic composition of pitfall traps (white bars). Dotted line delimits the feeding niche of P. lisei.
Figure 2 in Ecologically-sustainable tree monocultures contribute to conservation of an Araucaria Forest endemic frog
Figure 2. Body mass (g) distribution of Physalaemus lisei captured in the São Francisco de Paula National Forest, southern Brazil. (A) Temporal variation in body mass (g) distribution between October 2003 and April 2005; (B) among-habitat variation in body mass distribution. Horizontal line represents the median; the box delimits the first and third quartile; the vertical lines delimit the maximum and minimum values, except for the outliers that are represented by asterisks. FO, Araucaria Forest; PA, Araucaria angustifolia plantation; PP, Pinus plantation; PE, Eucalyptus plantation.
Figure 1 in Ecologically-sustainable tree monocultures contribute to conservation of an Araucaria Forest endemic frog
Figure 1. Number of individuals of Physalaemus lisei captured in the São Francisco de Paula National Forest, southern Brazil. (A) Temporal dynamic between October 2003 and April 2005; (B) among-habitat variation in the mean (¡SE) number of captures. FO, Araucaria Forest; PA, Araucaria angustifolia plantation; PP, Pinus plantation; PE, Eucalyptus plantation.
Fig. 2 in Ecological factors that influence sambar (Rusa unicolor) distribution and abundance in western Thailand: implications for tiger conservation
Fig. 2 The distribution of elevations at which transects were placed (a). The distribution of distances from the Huai Kha Khaeng River (HKK) at which transects were placed (b). The combinations of elevation and distance to HKK River at which pellet groups were found (each dot represents a single transect) (c). The number of pellet groups found in relation to distance from the HKK River at three elevations (where dots represents transects) (d). Dots represent transects and lines represent the predicted number of pellet groups using our top-supported model (Table 2, model 1) solved at mean covariate values and one of three elevations to illustrate the interaction of elevation with distance to the HKK River.
Fig.1 in Ecological factors that influence sambar (Rusa unicolor) distribution and abundance in western Thailand: implications for tiger conservation
Fig.1 Location of Huai Khaeng Wildlife Sanctuary in western Thailand and the 360 sampling units contained within the four areas represent six female tiger home ranges.
Figures 33–41. Polyphylla uteana Tanner. 33–36 in Natural history, ecology, and conservation of the genus Polyphylla Harris, 1841. 1. New species from the southwestern United States and Baja California, Mexico, with notes on distribution and synonymy (Coleoptera: Scarabaeidae: Melolonthinae)
Figures 33–41. Polyphylla uteana Tanner. 33–36) Holotype male. 37) Holotype labels. 38–40) Male variation. 41) Female.
Figures 28–32. Polyphylla avittata 28 in Natural history, ecology, and conservation of the genus Polyphylla Harris, 1841. 1. New species from the southwestern United States and Baja California, Mexico, with notes on distribution and synonymy (Coleoptera: Scarabaeidae: Melolonthinae)
Figures 28–32. Polyphylla avittata 28) Distribution of P. avittata Hardy and Andrews (solid circles) and P. uteana Tanner (black vertical lines). 29–32) Variation of male. 29) Hurricane Sand Dunes, Washington Co., UT (topotype). 30) Goblin Valley State Park, Emory Co., UT. 31) Grand Staircase- Escalante National Monument, Garfield Co., UT. 32) 3 miles N of Moab, Grand Co., UT.
Figures 48–49. Polyphylla. Males. 48 in Natural history, ecology, and conservation of the genus Polyphylla Harris, 1841. 1. New species from the southwestern United States and Baja California, Mexico, with notes on distribution and synonymy (Coleoptera: Scarabaeidae: Melolonthinae)
Figures 48–49. Polyphylla. Males. 48) Polyphylla mescalerensis Young [topotype]. Mescalero Sand Dunes, Chaves County, New Mexico. 49) Polyphylla sp. incertae. Cerro San Luis, Chihuahua, Mexico.
Figures 50–57. Habitats. 50–51 in Natural history, ecology, and conservation of the genus Polyphylla Harris, 1841. 1. New species from the southwestern United States and Baja California, Mexico, with notes on distribution and synonymy (Coleoptera: Scarabaeidae: Melolonthinae)
Figures 50–57. Habitats. 50–51) Polyphylla anivallis. Animas Valley Sand Dunes, Hidalgo Co., NM. 52–53) Polyphylla koso. Coso Mountains, Inyo Co., CA. 52) Coso Bridge. 53) Mill Springs Canyon. 54–55) Polyphylla morroensis. Baywood Fine Sands, San Luis Obispo Co., CA. 56–57) Polyphylla socorriana. El Socorro Sand Dunes, Baja California, MX.
Figures 42–47 in Natural history, ecology, and conservation of the genus Polyphylla Harris, 1841. 1. New species from the southwestern United States and Baja California, Mexico, with notes on distribution and synonymy (Coleoptera: Scarabaeidae: Melolonthinae)
Figures 42–47. Described females and comparative male. Polyphylla monahansensis Hardy and Andrews. 42) Male. 43–44) Female. Polyphylla stellata Young. 45) Male. 46–47) Female.
FIG. 4 in New records of flying foxes (Chiroptera: Pteropus sp.) from Seram, Indonesia, with notes on ecology and conservation status
FIG. 4. Lateral views of skulls of A, Pteropus chrysoproctus (MZB 36909♀); B, Pteropus melanopogon (MZB 10753); C, Pteropus ocularis (MZB 369283); D, Pteropus temminckii (MZB 369253).
FIG. 3 in New records of flying foxes (Chiroptera: Pteropus sp.) from Seram, Indonesia, with notes on ecology and conservation status
FIG. 3. Ventral views of skulls of A, Pteropus chrysoproctus (MZB 36909♀); B, Pteropus melanopogon (MZB 10753); C, Pteropus ocularis (MZB 369283); D, Pteropus temminckii (MZB 369253).
FIG. 2 in New records of flying foxes (Chiroptera: Pteropus sp.) from Seram, Indonesia, with notes on ecology and conservation status
FIG. 2. Dorsal views of skulls of A, Pteropus chrysoproctus (MZB 36909♀); B, Pteropus melanopogon (MZB 10753); C, Pteropus ocularis (MZB 369283); D, Pteropus temminckii (MZB 369253).
Fig. 2 in An ecological and conservation assessment of the fauna of Bombyliidae (Diptera) occurring in the Mkhuze, Phinda and False Bay reserves, KwaZulu-Natal, South Africa
Fig. 2. Phenology of bombyliid activity. Each bar represents the number of unique species sampled in the months identified: November (N), January (J) and March (M). A unique species is a species only sampled in that month or combination of months. No sampling was undertaken in December or February.
Fig. 3 in An ecological and conservation assessment of the fauna of Bombyliidae (Diptera) occurring in the Mkhuze, Phinda and False Bay reserves, KwaZulu-Natal, South Africa
Fig. 3 Individual based species accumulation curve for the Mkhuze and Phinda game reserves and False Bay Park based on all Bombyliidae species sampled during the survey. The Michaelis-Menten equation predicts an asymptote at 31.7 species (R2=0.99).
Fig. 4 in An ecological and conservation assessment of the fauna of Bombyliidae (Diptera) occurring in the Mkhuze, Phinda and False Bay reserves, KwaZulu-Natal, South Africa
Fig. 4. Number of sites required to sample the bombyliid fauna. Sampling based species accumulation curves for (1) minimum sampling effort at each site based on 2 transects (O), and (2) maximum sampling effort based on 4 transects (). The Michaelis-Menten equation was fitted to extrapolate and to estimate the optimal number of sampling sites required (Table 2). R2=0.99 for each curve.
Fig. 1 in An ecological and conservation assessment of the fauna of Bombyliidae (Diptera) occurring in the Mkhuze, Phinda and False Bay reserves, KwaZulu-Natal, South Africa
Fig. 1. Study region located in north-eastern KwaZulu-Natal, South Africa, showing the vegetation types of the reserves identified by Muchina and Rutherford (2005). Forty-three 1 ha invertebrate sites were sampled (indicated by white dots) for one day, using a variety of methods; 20 of these sites were re-sampled in different months and years.
Fig. 4 in A revision of distribution, ecology and conservation issues of the threatened comb-claw beetle Gerandryus aetnensis (Coleoptera: Tenebrionidae, Alleculinae)
Fig. 4 – Geonemy and area of occupancy (AOO) of Gerandryus aetnensis (Rottenberg, 1871). Main figure, species geonemy; boxes, AOO calculation. Symbols: triangles, new records; circles, literature records; black cross, extinct in the site; yellow, records ante 2000; green, records post 1999 (main figure); large squares, 10 x 10 km grid cells; small squares, 2 x 2 km grid cells (boxes).
Figs 1-3 in A revision of distribution, ecology and conservation issues of the threatened comb-claw beetle Gerandryus aetnensis (Coleoptera: Tenebrionidae, Alleculinae)
Figs 1-3 – Collecting sites of Gerandryus aetnensis (Rottenberg, 1871). 1, Val Clarea, Piedmont (photo D. Bellone); 2, burned pine woods of Colle delle Vacche, Majella, Abruzzo (photo A. B. Biscaccianti); 3, Bosco Afreni, Aspromonte, Calabria (photo A. B. Biscaccianti).
Figure 5 in A review of amphidromous freshwater fishes of the Chocó biogeographical region (Colombia and Ecuador): diversity, ecology, fisheries and conservation
Figure 5. – Representative habitat of freshwater amphidromous fishes in western of Colombia. A: photo of Valle River, 20 m collection site; B: Photo of Aguaclara River (Anchicayá Basin), 70 m collection site; C: Representative habitat in which post-larval Awaous transandeanus, Hemieleotris latifasciata, Hemieleotris levis and Sicydium spp. were collected in western Colombia. Photo of San Juan River, 18 m collection site; D: Type locality of Sicydium hildebrandi, photo of Dagua River in Cisneros, 350 m collection site.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.