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Fig. 5 in A new species of Petracola (Squamata: Gymnophthalmidae) from Río Abiseo National Park, San Martín, Peru
Fig. 5. Drawings of the right side showing the condition of loreal scales in Petracola pajatensis sp. nov. A) MUSM 3829, B) MUSM 3830.
Fig. 1 in A new species of Petracola (Squamata: Gymnophthalmidae) from Río Abiseo National Park, San Martín, Peru
Fig. 1. Holotype of Petracola pajatensis sp. nov. (MUSM 3829; male, SVL = 60.5, Tail = 76.8 mm, scale bar = 10 mm).
Fig. 3 in A new species of Petracola (Squamata: Gymnophthalmidae) from Río Abiseo National Park, San Martín, Peru
Fig. 3. Dorsal and ventral views of the paratype of Petracola pajatensis sp. nov. (MUSM 3830; female, SVL = 65.1, Tail = 64.3 mm).
Рис. 1. Sicista betulina: 1 — Λесная мышовка, пойманная в окрестностях сеΛа КойÀа; 2 — карта распространения виÀа: зеΛеная заΛивка — ареаΛ виÀа по Burgin et al. 2020, синие звезÀочки — точки нахоÀок в национаΛьном парке «Онежское Поморье» и на СоΛовецком архипеΛаге (Черенкова 2014), красный круг — новая нахоÀка в районе Àеревни КойÀа; 3–4 — биотопы, в которых быΛ встречен виÀ в окрестностях сеΛа КойÀа Fig. 1. Sicista betulina: 1 — the northern birch mouse caught in the vicinity of Koida village; 2 — the species distribution map: the green fill — species range according to Burgin et al. 2020; the blue stars — points where the species was found in the Onezhskoye Pomorye National Park and on the Solovetsky Archipelago (Cherenkova 2014); the red circle — a new find in the area of Koida village; 3–4 — biotopes in which the species was encountered in the vicinity of Koida village in A new record of the northern birch mouse Sicista betulina (Pallas, 1779) in the north of the Arkhangelsk Region (Rodentia: Sminthidae)
Рис. 1. Sicista betulina: 1 — Λесная мышовка, пойманная в окрестностях сеΛа КойÀа; 2 — карта распространения виÀа: зеΛеная заΛивка — ареаΛ виÀа по Burgin et al. 2020, синие звезÀочки — точки нахоÀок в национаΛьном парке «Онежское Поморье» и на СоΛовецком архипеΛаге (Черенкова 2014), красный круг — новая нахоÀка в районе Àеревни КойÀа; 3–4 — биотопы, в которых быΛ встречен виÀ в окрестностях сеΛа КойÀа Fig. 1. Sicista betulina: 1 — the northern birch mouse caught in the vicinity of Koida village; 2 — the species distribution map: the green fill — species range according to Burgin et al. 2020; the blue stars — points where the species was found in the Onezhskoye Pomorye National Park and on the Solovetsky Archipelago (Cherenkova 2014); the red circle — a new find in the area of Koida village; 3–4 — biotopes in which the species was encountered in the vicinity of Koida village
The Provincelands of Cape Cod National Seashore, Barnstable County, Massachusetts, USA. The reddish vegetation in the center of the photo is a cranberry (Vaccinium macrocarpon) bog, a wetland used for breeding by the Fowler's toad. The surrounding landscape is ideal for the Fowler's toad and supports one of the largest populations of this species in the United States. The landscape contains a patchwork of sand, pitch pine (Pinus rigida), scrub oak (Quercus ilicifolia), and dune grass (Ammophila breviligulata). Photo by Rebecca Flaherty. in Fowler's Toad (Anaxyrus fowleri) occupancy in the southern mid-Atlantic, USA
The Provincelands of Cape Cod National Seashore, Barnstable County, Massachusetts, USA. The reddish vegetation in the center of the photo is a cranberry (Vaccinium macrocarpon) bog, a wetland used for breeding by the Fowler's toad. The surrounding landscape is ideal for the Fowler's toad and supports one of the largest populations of this species in the United States. The landscape contains a patchwork of sand, pitch pine (Pinus rigida), scrub oak (Quercus ilicifolia), and dune grass (Ammophila breviligulata). Photo by Rebecca Flaherty.
Forest segmentation of multi-source national forest inventory biomass rasters and canopy height model from 2021
<p>The dataset is produced at Natural Resources Institute Finland (Luke) and the study is funded by the European Union's Horizon 2020 research and innovation programme (Holisoils, grant agreement No 101000289).</p> <p>Source data (multi-source National Forest Inventory, MS-NFI and peatland fertility map of Finland) of varying resolution (10m -16m) was reprojected to 10mx10m resolution from which stand polygons were formulated based on automatic segmentation and regional minimum size limit for a stand.</p> <p>The dataset is a file geodatabase with 5 regional layers, all including the polygons of stands with stand attributes based on MS-NFI 2021 information on the site type, fertility class, dominant height, basal area, diameter, age, volume as total and per tree species, total and aboveground biomass as total and per tree species.</p> <p>Coordinate system: ETRS-TM35FIN (EPSG:3067)</p>
Fig. 1–3 in A new species of Eimeria Schneider, 1875 from the Serra dos Órgãos National Park, Rio de Janeiro, Brazil, with notes on its endogenous development in the montane grass mouse, Akodon montensis Thomas, 1913 (Rodentia: Sigmodontinae)
Fig. 1–3 Nomarski interference-contrast photomicrographs of Eimeria akodonensis n. sp. from the montane grass mouse, Akodon montensis. Presence of oocyst residuum (Or) and highly refractile polar granule (Pg); Sporocyst residuum (Sr); wall (Ow); Stieda body (Sb); sporozoite (Sp). Scale bar = 10 μm
Fig. 5–12 in A new species of Eimeria Schneider, 1875 from the Serra dos Órgãos National Park, Rio de Janeiro, Brazil, with notes on its endogenous development in the montane grass mouse, Akodon montensis Thomas, 1913 (Rodentia: Sigmodontinae)
Fig. 5–12 Light micrographs of the endogenous stages of Eimeria akodonensis n. sp. observed in the lamina propria of the small intestine of Akodon montensis, showing the microgamonts (Mi) and the parasitophorous vacuole in the host cell (Vp); microgametes (Mi); macrogamonts (Ma); nucleus (N) and the zygote (Zy) with wallforming bodies arranged around its periphery (Ow); oocyst (Oo). Scale bar = 10 μm
Fig. 4 in A new species of Eimeria Schneider, 1875 from the Serra dos Órgãos National Park, Rio de Janeiro, Brazil, with notes on its endogenous development in the montane grass mouse, Akodon montensis Thomas, 1913 (Rodentia: Sigmodontinae)
Fig. 4 Composite line drawing of the sporulated oocyst of Eimeria akodonensis n. sp. Scale bar = 10 μm
Fig. 28 in Amphibians and reptiles of Parsa National Park, Nepal
Fig. 28. Psammodynastes pulverulentus. Photograph by Tirtha Lama/NTNC-BCC, photograph taken at Triveni, Chitwan National Park.
Fig. 1 in Conservation status of Amphibians of Argentina: An update and evaluation of national assessments
Fig. 1. Map of the ecoregions of Argentina from Burkart et al. 1999. Numbers indicate ecoregions divisions as follows: (1) Puna, (2) High Andean, (3) Yungas Forest, (4) Dry Chaco, (5) Humid Chaco, (6) Delta and Islands of the Parana River, (7) Esteros of Ibera, (8) Paranaen Forest, (9) Campos and Malezales, (10) Espinal, (11) Pampas, (12) Monte of Sierras and Bolsones, (13) Monte de Llanuras and Mesetas, (14) Patagonian Steppe, (15) Patagonian Woodlands. Arrows indicate the four overthreatened ecoregions.
Fig. 2 in Temperature Dependence Of The Breeding Parametres Of The Collared Flycatcher (Passeriformes, Muscicapidae) In The National Park Homilshanski Lisy (Ne Ukraine)
Fig. 2. First spring records and first-egg day of Collared Flycatcher at investigation plots in 2006–2017.
Fig. 5 in Temperature Dependence Of The Breeding Parametres Of The Collared Flycatcher (Passeriformes, Muscicapidae) In The National Park Homilshanski Lisy (Ne Ukraine)
Fig. 5. Model-averaged coefficients of the predictor variables from the subset of best-fitting models for the clutch size (eggs).
Fig. 1 in Temperature Dependence Of The Breeding Parametres Of The Collared Flycatcher (Passeriformes, Muscicapidae) In The National Park Homilshanski Lisy (Ne Ukraine)
Fig. 1. Map of boundaries of the Collared Flycatcher subpopulation study area (Keller et al., 2020).
Fig. 3 in Temperature Dependence Of The Breeding Parametres Of The Collared Flycatcher (Passeriformes, Muscicapidae) In The National Park Homilshanski Lisy (Ne Ukraine)
Fig. 3. Model-averaged importance of the predictor variables from the subset of best-fitting models for the first egg date (FED).
Figure 5 in Fishes of War in the Pacific National Historic Park
Figure 5. Map depicting locations of belt transect surveys and the resultant fish diversity (number of fish species encountered per transect) at the Agat Bay unit of WAPA. Diversity at this unit ranged from 18-43 fish species/ transect. 1m LIDAR data courtesy of USGS. Yellow lines represents National Park boundary lines. Map by Paul Brown, derived from 2001 Dept. of Defense LIDAR data.
Figure 4 in Fishes of War in the Pacific National Historic Park
Figure 4. Map depicting locations of belt transect surveys and the resultant fish diversity (number of fish species encountered per transect) at the Asan Beach unit of WAPA. Diversity at this unit ranged from 10–36 fish species/transect. 1m LIDAR data courtesy of USGS. Yellow lines represent National Park boundary lines. Map by Paul Brown, derived from 2001 Dept. of Defense LIDAR data.
Figure 3. Structurally complex high rugosity coral-dominated reef habitat. Image shows fixed transect 01 from the start pin looking toward a 180 in Fishes of War in the Pacific National Historic Park
Figure 3. Structurally complex high rugosity coral-dominated reef habitat. Image shows fixed transect 01 from the start pin looking toward a 180° heading in the Asan Beach unit (NPS photo).
Figure 1 in Fishes of War in the Pacific National Historic Park
Figure 1. Map of the island of Guam showing the location of the seven non-contiguous units of War in the Pacific National Historic Park (WAPA). Area labeled (1) is the Asan Beach unit of WAPA (see Fig. 4). Area labeled (2) is the Agat Bay unit of WAPA (see Fig. 5). Inset shows the location of Guam in the western Pacific Ocean (black star). Maps by Paul Brown, derived from 2001 Dept. of Defense LIDAR data.
Figure 2. Typical low rugosity algal-dominated pavement habitat. Image shows fixed transect 09, looking towards a 90 in Fishes of War in the Pacific National Historic Park
Figure 2. Typical low rugosity algal-dominated pavement habitat. Image shows fixed transect 09, looking towards a 90° heading from the start pin at the Agat Bay unit (NPS photo).
ScienceDex guides
Understand access before you commit
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.