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2,007 results for “ecological species”
FIGURE 11 in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 11. Alismobates pseudoreticulatus sp. nov. adult. A) dorsal view. B) ventral view. C) lateral view.
FIGURE 6. F in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 6. F. maledivensis sp. nov. A) deutonymph, dorsal view. B) deutonymph, ventral view. C) tritonymph, dorsal view. D) tritonymph, ventral view.
FIGURE 1 in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 1. Fortuynia maledivensis sp. nov. adult. A) right pedipalp, paraxial view. B) right rutellum, ventral view.
FIGURE 10. F in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 10. F. longiseta sp. nov. A) deutonymph, dorsal view. B) deutonymph, ventral view. C) tritonymph, dorsal view. D) tritonymph, ventral view.
FIGURE 6. Sabellaria jeramae n in Sabellaria jeramae, a new species (Annelida: Polychaeta: Sabellariidae) from the shallow waters of Malaysia, with a note on the ecological traits of reefs
FIGURE 6. Sabellaria jeramae n. sp., scanning electron micrographs. A—operculum, B—middle (below) and inner (center to upper) paleae, C—close-up of outer paleae, D—E—distal end of outer paleae, F—nuchal spines, G—abdominal uncini. Scales on images. Scale: 0.2mm in A, 0.1mm in B, D, 0.05mm in C, E, 0.02mm in F, 0.01mm in G.
FIGURE 5. Sabellaria jeramae n in Sabellaria jeramae, a new species (Annelida: Polychaeta: Sabellariidae) from the shallow waters of Malaysia, with a note on the ecological traits of reefs
FIGURE 5. Sabellaria jeramae n. sp., outline drawings of paleae, chaetae, hooks and uncini. A—outer paleae, B, C—middle paleae, D—inner paleae, E–H—distal end of outer paleae, I—nuchal hook (spine), J—parathoracic chaetae, K—thoracic chaetae, L—abdominal uncini. E–L are drawn from SEM figures. Scale: 100 µm in A—I, 20 µm in J and K, 10 µm in L.
FIGURE 2. Sabellaria jeramae n in Sabellaria jeramae, a new species (Annelida: Polychaeta: Sabellariidae) from the shallow waters of Malaysia, with a note on the ecological traits of reefs
FIGURE 2. Sabellaria jeramae n. sp., outline drawings of the holotype. A—anterior end, lateral view, B—same, ventral view, C—same, dorsal view, D—anterior view of opercular disc showing the rows of paleae. Scales 1mm (upper in A-C, lower in D).
FIGURE 4. Sabellaria jeramae n in Sabellaria jeramae, a new species (Annelida: Polychaeta: Sabellariidae) from the shallow waters of Malaysia, with a note on the ecological traits of reefs
FIGURE 4. Sabellaria jeramae n. sp., compound microscope images. A–C—outer paleae, D—middle paleae, E—inner paleae, F—nuchal spines. Scale: 0.2mm in A, B, D, E, 0.05mm in C, 0.025mm in F.
FIGURE 8. Sabellaria jeramae n in Sabellaria jeramae, a new species (Annelida: Polychaeta: Sabellariidae) from the shallow waters of Malaysia, with a note on the ecological traits of reefs
FIGURE 8. Sabellaria jeramae n. sp., light and compound microscope images of abdominal and caudal features. A—first two abdominal chaetigers abdominal notopodia and neuropodia, B—posterior abdominal chaetigers and cauda, dorsal view, Csame, lateral view, D—same ventral view, E—abdominal neurochaetae, F—uncini anterior abdominal chaetigers, G—same, mid-abdominal chaetigers, H, I—same, posterior abdominal chaetigers. Scale: 0.5mm in A-D, 0.02mm in E-I.
FIGURE 1 in Sabellaria jeramae, a new species (Annelida: Polychaeta: Sabellariidae) from the shallow waters of Malaysia, with a note on the ecological traits of reefs
FIGURE 1. Map of the Malay Archipelago and Jeram Beach. A—Malay Peninsula, B—Jeram Beach (with an arrow) and adjacent area: detail of arrowed site in A near Kuala Lumpur, C—view of Sabellaria jeramae n. sp. reef, D and E – detail of small clumps of Sabellaria jeramae n. sp.
FIGURE 3. Sabellaria jeramae n in Sabellaria jeramae, a new species (Annelida: Polychaeta: Sabellariidae) from the shallow waters of Malaysia, with a note on the ecological traits of reefs
FIGURE 3. Sabellaria jeramae n. sp., light microscope images of a paratype (AM W. 47951). A—complete specimen, ventral view, B—anterior end, ventral view, C—anterior end, dorsal view, D—anterior end, side view, showing rows of tentacular filaments (lines), E—detail of the edge of operculum, with opercular papillae and tentacular filaments, F—longitudinal section showing structures between opercular lobes, G—detail of median organ and median ridge, H—arrangement of paleae. Abbreviations: bo, buccal organ; br2, br3, branchial chaetigers 2, 3; ip, inner paleae; mo, median organ; mp, middle paleae; mr, median ridge; op, outer paleae; pa, opercular papillae; tf, tentacular filaments. Scale: 2mm in A, 1mm in B-D, F, 0.5mm in E, G, H.
FIGURE 7. Sabellaria jeramae n in Sabellaria jeramae, a new species (Annelida: Polychaeta: Sabellariidae) from the shallow waters of Malaysia, with a note on the ecological traits of reefs
FIGURE 7. Sabellaria jeramae n. sp., stereo and compound microscope images of thoracic and parathoracic features. Aparathorax, dorsal view, B—same, anterio-lateral view, C—same, lateral view, D—thoracic branchiae, E—detail of branchial ciliation, F—details of branchial glands, G—interior of parathoracic chaetigers filled with eggs, H—detail of eggs, Ineurochaetae of chaetiger 1, J—notochaetae of chaetiger 2, K—parathoracic notochaetae, L—detail of distal ends of parathoracic oar-like notochaetae, M—detail of distal end of parathoracic thin capillary notochaetae, N—parathoracic neurochaetae. Abbreviations: bo, buccal organ; ch1–3, chaetiger 1–3; cn1, cirrus neuropodium chaetiger 1; ll, lateral lobe; ne3– 5, neuropodia chaetiger 3–5; no3–5, notopodia chaetigers 3–5. Scale: 1mm in A, B, 0.5mm in C, D, G, 0.25mm in E, 0.1mm in K, N, 0.05mm in F, H, 0.02mm in I, J, K, M.
FIGURE 3 in Taxonomy and ecology of a new species of Corynura (Hymenoptera: Halictidae: Augochlorini) from Chile and Argentina
FIGURE 3. Nesting site of Corynura moscosensis n. sp. A, map showing the distribution of the nests, axes in cm; B, general views of the earth bank (facing NW) colonized by bees; C, frequency of nest-nest nearest neighbour distances (NND), distances falling into NND ranks; D, box-and-whisker diagrams showing medians (horizontal dashed lines), means (+), 1° and 3° quartile (horizontal continuous lines), and maximum and minimum values (Ǫ) for soil hardness recorded in plots with three, 12 and 21 nests (ends of the whiskers represent the lowest datum still within 1.5 × interquartile range of the lower quartile, and the highest datum still within 1.5 × interquartile range of the upper quartile).
FIGURE 2 in Taxonomy and ecology of a new species of Corynura (Hymenoptera: Halictidae: Augochlorini) from Chile and Argentina
FIGURE 2. Antennal sensillar equipment in Corynura moscosensis n. sp. and allied species (C. chloromelas). A, dorsal side of F2–F3 in male C. moscosensis n. sp., showing the SP exclusive area covering the whole flagellomere length; B, dorsal side of F2–F3 in male C. chloromelas, showing the SP exclusive area covering the central part of flagellomere length. C–M female C. moscosensis n. sp. C, ventral side of F9, showing ST-A, ST-B, SP, setae and a cluster of SAm; D, dorsal view of F9, with abundant ST-A; E, ventral view of F9, with a field of SB; F, lateral view of F9, with abundant setae; G, dorsal view of F10; H, an erected SB; I, a curved SB; J, ventral side of F10 showing a cluster of SCo and SAm; K, SCo with visible peg; L, long ST-C/ D; M, a field of setae (s) in the dorsal side of F7. ST-A, sensilla trichoidea type A; ST-B, sensilla trichoidea type B; ST-C/D, sensilla trichoidea type C/D; SP, sensilla placoidea; SB, sensilla basiconica; SAm, sensilla ampullacea; SCo, sensilla coeloconica.
FIGURE 4. A, a in Taxonomy and ecology of a new species of Corynura (Hymenoptera: Halictidae: Augochlorini) from Chile and Argentina
FIGURE 4. A, a female of Corynura moscosensis n. sp. with head at the entrance; B, a female walking on the ground after having recently left the nest on a cool morning; C, a possibly new but still empty brood cell; D, a female found in a brood cell during nest excavation (note the unworn wings in the inset picture); E, a female satellite fly (Leucophora peullae) perching at the nesting site; F, a female mutillid wasp (Dimorphomutilla suavissima) walking on the nesting site (a picture taken under the stereo microscope is on the right).
FIGURE 1. A–B in Taxonomy and ecology of a new species of Corynura (Hymenoptera: Halictidae: Augochlorini) from Chile and Argentina
FIGURE 1. A–B: Corynura moscosensis n. sp. A, male, holotype (MACN-En 8207); B, female, paratype (MACN-En 8163); C–D, genital capsule of Corynura male, dorsal view (on the left), ventral view (on the right): C, C. moscosensis n. sp., D, C. chloromelas; E–G, female of C. moscosensis n. sp.: E, inner hind tibial spur, F, labrum, G, right half of metapostnotum. Genital capsule: bl, basal lobe of gonostylus; bp, basal process of gonostylus; dag, dorsal area of gonostylus; gx, gonocoxite; vag, ventral area of gonostylus.
FIGURE 5 in Applying n-dimensional hypervolumes for species delimitation: unexpected molecular, morphological, and ecological diversity in the Leaf-Toed Gecko Phyllodactylus reissii Peters, 1862 (Squamata: Phyllodactylidae) from northern Peru
FIGURE 5. Dorsal and ventral views of the holotype of Phyllodactylus pachamama sp. nov. (ZFMK 90886). Scale bars represent 5 mm.
FIGURE 3. N in Applying n-dimensional hypervolumes for species delimitation: unexpected molecular, morphological, and ecological diversity in the Leaf-Toed Gecko Phyllodactylus reissii Peters, 1862 (Squamata: Phyllodactylidae) from northern Peru
FIGURE 3. N-dimensional hypervolumes of morphological data show the position of the delimited species in the Phyllodactylus reissii group in multidimensional morphological space. Circles mark PCA-derived observations.
FIGURE 2 in Applying n-dimensional hypervolumes for species delimitation: unexpected molecular, morphological, and ecological diversity in the Leaf-Toed Gecko Phyllodactylus reissii Peters, 1862 (Squamata: Phyllodactylidae) from northern Peru
FIGURE 2. Bayesian consensus tree of Ecuadorian and Peruvian Phyllodactylus based on 835 bp of mitochondrial DNA (12S and 16S rRNA). Node support in terms of Bayesian posterior probabilities is indicated by circles at nodes (nodes with a BPP ≥ 0.90 are white, BPP ≥ 0.95 are grey, BPP> 0.99 are black, values <0.90 are not marked). Outgroup (Phyllopezus maranjonensis) not shown for clarity. Results of the species delimitations in the P. reissii group are illustrated by vertical bars. Each bar represents a species detected by the respective approach. Coloration of the bars is according to the species resulting from the consensus of all species delimitation hypotheses.
FIGURE 1 in Applying n-dimensional hypervolumes for species delimitation: unexpected molecular, morphological, and ecological diversity in the Leaf-Toed Gecko Phyllodactylus reissii Peters, 1862 (Squamata: Phyllodactylidae) from northern Peru
FIGURE 1. Geographical distribution of the different clades of Phyllodactylus reissii and related species. Colors refer to delimited species (see Fig. 2). Insets show clades endemic to the inter-Andean valley of the upper Marañón River. Circles mark occurrence records used for climatic niche distribution modeling. Localities with a thick margin were also genetically sampled.
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.