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645 results for “Spatial distributions”
FIGURE 5 in Spatial distribution of species richness and endemism of Solanum (Solanaceae) in Mexico
FIGURE 5. Solanum richness based on geographical criteria. A) Elevation. B) Latitude. C) Longitude.
FIGURE 13 in First records of Leucania rawlinsi Adams and L. senescens M̂schler (Lepidoptera: Noctuidae) in Brazil: redescription, potential association with Bt maize, larval parasitoids, and spatial and temporal distribution
FIGURE 13. Geographic distribution of Leucania rawlinsi and L. senescens in Brazil.
Supplementary material 1 from: Ball-Damerow JE, Oboyski PT, Resh VH (2015) California dragonfly and damselfly (Odonata) database: temporal and spatial distribution of species records collected over the past century. ZooKeys 482: 67-89. https://doi.org/10.3897/zookeys.482.8453
California Odonata database records after data processing, as described in methods.:
Figure 2 from: Vilenica M, Brigić A, Kerovec M, Gottstein S, Ternjej I (2016) Spatial distribution and seasonal changes of mayflies (Insecta, Ephemeroptera) in a Western Balkan peat bog. ZooKeys 637: 135-149. https://doi.org/10.3897/zookeys.637.10359
Figure 2 - Mayfly taxa: a species richness (S) and b number of individuals (N) in the peat bog and adjacent stream (mean ± SD). The asterisk indicates significant difference between the habitats (Mann-Whitney U test, p < 0.001).
Figure 5 from: Vilenica M, Brigić A, Kerovec M, Gottstein S, Ternjej I (2016) Spatial distribution and seasonal changes of mayflies (Insecta, Ephemeroptera) in a Western Balkan peat bog. ZooKeys 637: 135-149. https://doi.org/10.3897/zookeys.637.10359
Figure 5 - Seasonal dynamics of a Habrophlebia fusca b Paraleptophlebia submarginata c Electrogena ujhelyii in Danković klada Stream between March and November 2015. Legend: Body length category: A = 0.00–0.99 mm; B = 1.00–1.99 mm; C = 2.00–2.99 mm; D = 3.00–3.99 mm; E = 4.00–4.99 mm; F = 5.00–5.99 mm; G = 6.00–6.99 mm; H = 7.00–7.99 mm; I = 8.00–8.99 mm; J = 9.00–9.99 mm; K = 10.00–10.99 mm.
Figure 4 from: Vilenica M, Brigić A, Kerovec M, Gottstein S, Ternjej I (2016) Spatial distribution and seasonal changes of mayflies (Insecta, Ephemeroptera) in a Western Balkan peat bog. ZooKeys 637: 135-149. https://doi.org/10.3897/zookeys.637.10359
Figure 4 - Seasonal dynamics of a Cloeon dipterum in the Đon močvar peat bog and b Baetis vernus c Nigrobaetis niger in adjacent Daković klada Stream between March and November 2015. Legend: Body length category: A = 0.00–0.99 mm; B = 1.00–1.99 mm; C = 2.00–2.99 mm; D = 3.00–3.99 mm; E = 4.00–4.99 mm; F = 5.00–5.99 mm; G = 6.00–6.99 mm; H = 7.00–7.99 mm.
Figure 3 from: Vilenica M, Brigić A, Kerovec M, Gottstein S, Ternjej I (2016) Spatial distribution and seasonal changes of mayflies (Insecta, Ephemeroptera) in a Western Balkan peat bog. ZooKeys 637: 135-149. https://doi.org/10.3897/zookeys.637.10359
Figure 3 - Ordination of non-metric multidimensional scaling of mayfly assemblages based on Bray-Curtis similarity coefficient (group average linking) and their square root transformed abundances, with superimposed data of hierarchical cluster analysis.
dataset for Spatial Distribution of Wildlife on University Campuses and Its Correlations with Environmental Factors: A Multi-Source Data Analysis
Open the record for dataset details and reuse information.
Spatial distribution pattern of immune cells is associated with patient prognosis in colorectal cancer
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Fig. 1 in Relationships between morphology, diet and spatial distribution: testing the effects of intra and interspecific morphological variations on the patterns of resource use in two Neotropical Cichlids
Fig. 1. Dispersion of the scores of the first two PCA axes, calculated with the variance matrix of 22 ecomorphological indices. a) Scores classified by the type of environment; b) Scores classified by food resources, where: Emp = empty, Cru = crustacean, Aqu = aquatic insect, Fis = fish, Mol = mollusk, Hig = higher plant, Det = detritus. Dashed line: Crenicichla britskii; dotted line: Satanoperca pappaterra. ARA = Aspect ratio of the anal fin; ARC = Aspect ratio of the caudal fin; ARPt = Aspect ratio of the pectoral fin; ARPv = Aspect ratio of the pelvic fin; PI = Protrusion index; RAA = Relative area of the anal fin; RAD = Relative area of the dorsal fin; RAE = Relative area of the eye; RAPt = Relative area of the pectoral fin; RAPv = Relative area of the pelvic fin; RHM = Relative height of the mouth; RHPd = Relative width of the caudal peduncle; RWPd = Relative width of the caudal peduncle.
Figure 1 in Spatial distribution of Ceratitis capitata in guava orchards and influences from orchard management
Figure 1. Population fluctuation of adults of Ceratitis capitata captured in McPhail traps in three guava orchards, Ivinhema, MS, Brazil.
Рис. 2. РаспреΑеΛение земΛяных выбросов поΑземной поΛевки (коΛония KS-11, октябрь 1985 г., «Αес на ВорскΛе») Fig. 2. Distribution of soil emissions made by the common pine vole (colony KS-11, October, 1985; "Forest on the Vorskla") in Spatial Organization Of Common Pine Vole (Microtus Subterraneus Selys-Longchamps, 1836) Colonies
Рис. 2. РаспреΑеΛение земΛяных выбросов поΑземной поΛевки (коΛония KS-11, октябрь 1985 г., «Αес на ВорскΛе») Fig. 2. Distribution of soil emissions made by the common pine vole (colony KS-11, October, 1985; "Forest on the Vorskla")
Fig. 1 in Spatial Distribution of Suspended Solids During Short-Term High River Discharge in the Bay of Koper, Northern Adriatic Sea
Fig. 1: Bay of Koper situated in the Gulf of Trieste (northern Adriatic Sea). The PCFLOW3D model grid in 40×40 m resolution with the related bathymetry. The rectangle depicts the area with three comparison profiles P1, P2 and P3. The dashed lines indicate the open boundaries.
Figure 1 in Spatial distribution and effects of land use and cover on cutaneous leishmaniasis vectors in the municipality of Paracambi, Rio de Janeiro, Brazil
Figure 1 Phlebotomine sand fly capture sites, land use, and land cover in the municipality of Paracambi, Rio de Janeiro State, Brazil. Detail below: example of the extraction of the annual percentages of land use and land cover in a 200-meter buffer in one of the capture sites (1992-1994 and 2001-2003). Spatial resolution of the land cover data is 30 meters (Source: mapbiomas.org).
Figure 3 in Spatial distribution and effects of land use and cover on cutaneous leishmaniasis vectors in the municipality of Paracambi, Rio de Janeiro, Brazil
Figure 3 Kernel density map of the total number of sand flies captured in Paracambi, RJ, Brazil, 1992-1994 and 2001-2003.
Fig. 3 in Planktonic Ciliates of the Neva Estuary (Baltic Sea): Community Structure and Spatial Distribution
Fig. 3. Distribution patterns of ciliate abundance (ind ml–1, dark bars) and biomass (× 10–3 µg C ml–1, empty bars) in the Neva Estuary.
Fig. 4 in Planktonic Ciliates of the Neva Estuary (Baltic Sea): Community Structure and Spatial Distribution
Fig. 4. Relative abundance (%) of different size groups of ciliates in the Neva Estuary. Data are not presented for four stations (indicated by points) with extremely low ciliate abundances (<0.1 ind ml–1).
Figure 2 in Temporal variation and spatial distribution of the pest insect Edessa meditabunda in cotton (Gossypium hirsutum) as an alternative host plant
Figure 2. Surface maps constructed based on Inverse Distance Weight (IDW) interpolation showing spatial distribution of nymphs in cotton between 70 (A), 77 (B), 84 (C), 91 (D) days after emergence (DAE) and Sum of all Evaluations (E). Low density is represented in green while red indicates high density of E. meditabunda.
Figure 3 in Spodoptera cosmioides (Lepidoptera: Noctuidae) in Brazil: spatial distribution and relationship in the S. latifascia species group
Figure 3 Variation in the number (red circles) of Spodoptera cosmioides sampled in this study for Brazil. For a complete description of localities and dates, see Table 1.
Figure 4 in Spodoptera cosmioides (Lepidoptera: Noctuidae) in Brazil: spatial distribution and relationship in the S. latifascia species group
Figure 4 Genital morphology of Spodoptera cosmioides under light microscopy. Male genital, ventral view (aedeagus omitted) (A); right valva removed, open and closed arrow indicates coastal process and clavus, respectively, the asterisk indicates ampulla (B); detail of juxta in a triangle, ventral view (C); aedeagus, rectangle indicates flat granules in cornuti (D); female genital, ventral view (E), the asterisk indicates ventral plate of ostium bursae; open and closed arrow indicates the appendix bursae and the signum, respectively; the ventral plate of ostium bursae in detail (F); striated membranes of the corpus bursae (G), marked with a rectangle in (E); signum in detail (H).Scales bars: A, B, E = 1000 µm; C, D, F = 500 µm; G = 250 µm, H = 200 µm.
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.