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1,140 results for “Colony”
FIGURE 7 in The more, the merrier: a new colonial species of the orb weaving spider genus Leucauge White, 1841 (Araneae: Tetragnathidae) from the Amazon rainforest
FIGURE 7. Distribution of Leucauge argyra. New records (yellow) and holotype of Leucauge argyroaffins (red).
FIGURE 5. Leucauge behemoth n in The more, the merrier: a new colonial species of the orb weaving spider genus Leucauge White, 1841 (Araneae: Tetragnathidae) from the Amazon rainforest
FIGURE 5. Leucauge behemoth n. sp. (IBSP 7382) male palp details. A, cymbial hook. B, paracymbium. C, embolus base and conductor. D, conductor tip. Scale bars, 0,1 mm.
FIGURE 4. Leucauge behemoth n in The more, the merrier: a new colonial species of the orb weaving spider genus Leucauge White, 1841 (Araneae: Tetragnathidae) from the Amazon rainforest
FIGURE 4. Leucauge behemoth n. sp. male and female from Manaus (IBSP 7382). A–B, epigynum. A, ventral. B, posterior. C–F, male palp. C, prolateral. D, retrolateral. E, retroventral. F, ventral. Scale bars, 0.5 mm.
FIGURE 2. Leucauge behemoth n in The more, the merrier: a new colonial species of the orb weaving spider genus Leucauge White, 1841 (Araneae: Tetragnathidae) from the Amazon rainforest
FIGURE 2. Leucauge behemoth n. sp., female paratype from ARIE do Projeto Dinâmica Biológica de Fragmentos Florestais, Manaus (IBSP 97726). A,habitus, lateral. B, same, dorsal. C–F, Epigynum. C, ventral. D, posterior. E, dorsal, cleared. F, lateral. Scale bars, A, B, 1 mm; C–F, 0.5 mm.
FIGURE 3 in The more, the merrier: a new colonial species of the orb weaving spider genus Leucauge White, 1841 (Araneae: Tetragnathidae) from the Amazon rainforest
FIGURE 3. Living specimens of Leucauge behemoth n. sp. Female from Tambopata, Peru (photographed by Rich Hoyer/ Birdernaturalist in 20/IV/2019): A, female habitus, lateral. B, ventral. C, dorsolateral. D, specimens from Cantón Baños, Ecuador, coexisting without aggression outside their individual webs (photographed by Hederd Torres in 17/XII/2013).
FIGURE 1 in The more, the merrier: a new colonial species of the orb weaving spider genus Leucauge White, 1841 (Araneae: Tetragnathidae) from the Amazon rainforest
FIGURE 1. Leucauge argyra (Walckenaer, 1841). A, Holotype and original label of Leucauge argyroaffins Soares & Camargo 1948 (MZSP 1330) (images by Nadine Dupérré). B, Female from Brasília, epigynum in lateral view (DZUB 3022). C–D pedipalp of male from Brasília (DZUB 4595). C, ventral view. D, retrolateral view. Leucauge behemoth n. sp., pedipalp of male paratype from Reserva Florestal Adolfo Ducke, Manaus (IBSP 97726). E, prolateral. F. ventral. G, retrolateral.Scale bars, A, 1.0 mm; B–G, 0.5 mm.
Fachada colonial
Modelo geométrico de uma fachada colonial. Laguna, SC. Source: Objaverse 1.0 / Sketchfab
Fig. 1. Colonial ISoxYa manangona n in Discovery and Genetic Characterization of Single Cohort Adult Colonies With Male Aggregations, and Preliminary Evidence for Lekking in a Malagasy Kite Spider (Isoxya,
Fig. 1. Colonial ISoxYa manangona n. sp. from Andasibe, Madagascar. (a) A part of a colony with 79 spiders in 41 webs (image shows 23 webs). (b) A detail from another colony where females are in their individual webs (image shows 14 of the 16 webs in the colony) while males hang on line in between webs (image shows 12 males). (c) A detail of another colony showing male leks.These males showed no overt intrasexual aggression that would be typical of solitary spiders.
Fig. 26 in Discovery and Genetic Characterization of Single Cohort Adult Colonies With Male Aggregations, and Preliminary Evidence for Lekking in a Malagasy Kite Spider (Isoxya,
Fig. 26. Clustering of individuals from the nine web colonies (A–I) based on discriminant analysis of principal components from unlinked SNPs.
Plate 2. Figs. 9–17 in Discovery and Genetic Characterization of Single Cohort Adult Colonies With Male Aggregations, and Preliminary Evidence for Lekking in a Malagasy Kite Spider (Isoxya,
Plate 2. Figs. 9–17. Male: dorsal (Fig. 9), ventral (Fig. 10), side (Fig. 11); palp: dorsal (Fig. 12), ventral (Fig. 13), retrolateral (Fig. 14), prolateral (Fig. 15); line drawings: dorsal palp (Fig. 16), median apophysis (Fig. 17).
Plate 3. Figs. 18–25 in Discovery and Genetic Characterization of Single Cohort Adult Colonies With Male Aggregations, and Preliminary Evidence for Lekking in a Malagasy Kite Spider (Isoxya,
Plate 3. Figs. 18–25. Female: melanic dorsal (Fig. 18), ventral (Fig. 19); light dorsal (Fig. 20), ventral (Fig. 21); Male: melanic dorsal (Fig. 22), ventral (Fig. 23); light dorsal (Fig. 24), ventral (Fig. 25).
Fig. 28 in Discovery and Genetic Characterization of Single Cohort Adult Colonies With Male Aggregations, and Preliminary Evidence for Lekking in a Malagasy Kite Spider (Isoxya,
Fig. 28. Unsupervised machine learning clustering analysis based on unlinked SNPs using variational autoencoders. Colors for individuals are based on the web colony (A–I) from which they were collected.
Plate 1. Figs. 2–8 in Discovery and Genetic Characterization of Single Cohort Adult Colonies With Male Aggregations, and Preliminary Evidence for Lekking in a Malagasy Kite Spider (Isoxya,
Plate 1. Figs. 2–8. Female: dorsal (Fig. 2), ventral (Fig. 3), side (Fig. 4); epigyne: ventral (Fig 5), posterior (Fig. 6), spermatheca dorsal (Fig. 7); line drawing: epigyne ventral (Fig. 8).
Fig. 27 in Discovery and Genetic Characterization of Single Cohort Adult Colonies With Male Aggregations, and Preliminary Evidence for Lekking in a Malagasy Kite Spider (Isoxya,
Fig. 27. Membership probability for each individual to the nine web colonies (A–I) based on the discriminant analysis of principal components clustering from unlinked SNPs.
Aerial photos and colony counts of nesting colonial waterbirds in the Columbia River Basin, 2023
<p>In many situations, colonial waterbird colony size is best evaluated from aerial photographs taken during the breeding season. This is typically the case where colonies are not accessible or when it is not feasible to count all birds or nests from ground locations or by boat. This dataset presents high resolution aerial imagery and corresponding nest counts of Caspian terns (<em>Hydroprogne caspia</em>), double-crested cormorants (<em>Nannopterum auritum</em>), Brandt's cormorants (<em>Urile penicillatus</em>), California gulls (<em>Larus californicus</em>), ring-billed gulls (<em>Larus delawarensis</em>), and American white pelicans (<em>Pelecanus erythrorhynchos</em>) nesting in the Columbia River Basin, during the 2023 breeding season. Photos were taken from a fixed-wing aircraft during peak nesting, and colony size was estimated by digitizing photos and enumerating visible birds using ArcGIS and DotDotGoose. Colony size was reported as the number of birds on colony, and, in the case of terns and cormorants, the number of active breeding pairs. These data are part of a wider project to evaluate the efficacy of management actions to reduce the impacts of predation by piscivorous colonial waterbirds on Endangered Species Act (ESA)- listed juvenile salmonids (smolts; <em>Oncorhynchus spp.</em>) in the Columbia River Basin.</p>
Supplementary Movies – Morphogenesis of bacterial colonies in polymeric environments
<p>Supplementary movies of the manuscript "Morphogenesis of bacterial colonies in polymeric environments".</p>
Figure 5 in Identification of early biomarkers in proteomic profiles of the phaeophyteSaccharina japonicaproximal to and beneath the front of bryozoan colonies
Figure 5: A close-up view of two-dimensional gels showing the proteins (arrows) that were down-regulated by bryozoan colonization. (A) Distal healthy Saccharina japonica tissue. (B) S. japonica thallus tissue proximal to the bryozoan colony. (C) S. japonica tissue at the bryozoan colony front.
Figure 4 in Identification of early biomarkers in proteomic profiles of the phaeophyteSaccharina japonicaproximal to and beneath the front of bryozoan colonies
Figure 4: A close-up view of two-dimensional gels showing the proteins (arrows) that were up-regulated by bryozoan colonization. (A) Distal healthy Saccharina japonica tissue. (B) S. japonica thallus tissue proximal to the bryozoan colony. (C) S. japonica tissue at the bryozoan colony front.
Figure 3 in Identification of early biomarkers in proteomic profiles of the phaeophyteSaccharina japonicaproximal to and beneath the front of bryozoan colonies
Figure 3: A close-up view of two-dimensional gels showing the proteins (arrows) up-regulated mostly in the thallus tissue proximal to the bryozoan colony and at the colony front, but present at only very low levels in distal healthy tissues. (A) Distal healthy Saccharina japonica tissue. (B) S. japonica thallus tissue proximal to the bryozoan colony. (C) S. japonica tissue at the bryozoan colony front.
Figure 1 in Identification of early biomarkers in proteomic profiles of the phaeophyteSaccharina japonicaproximal to and beneath the front of bryozoan colonies
Figure 1: The Saccharina japonica thallus sections defined as colony-front and thallus tissue proximal to Membranipora membranacea colonies. Colony-front tissues were collected from the narrow zone under the newly formed front of the colony after removing the bryozoans. Thallus tissue proximal to the bryozoan colony was obtained from the 1-cm zone outside the boundary of the colony.
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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.