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504 results for “ecological diversity”
FIGURE 6 in Freshwater planarians (Platyhelminthes, Tricladida) from the Iberian Peninsula and Greece: diversity and notes on ecology
FIGURE 6. Dendrocoelum spatiosum (A–B), V.Pl. 6866.1, horizontal reconstructions of the copulatory apparatus (anterior to the right).
FIGURE 3 in Freshwater planarians (Platyhelminthes, Tricladida) from the Iberian Peninsula and Greece: diversity and notes on ecology
FIGURE 3. Distributional records of twelve species of freshwater planarians in the Iberian Peninsula. Data from De Beauchamp, 1920; De Beauchamp, 1932; Baguñà et al. 1980, 81; Gourbault, 1981; Ribas, 1990; Sluys et al. 1995; Carranza & Giribet, 1997; unpublished records, this study.
FIGURE 2 in Freshwater planarians (Platyhelminthes, Tricladida) from the Iberian Peninsula and Greece: diversity and notes on ecology
FIGURE 2. Distributional records of Girardia tigrina in the Iberian Peninsula. Data from Baguñà et al. 1980, 81; Ribas, 1990; Altaba et al. 1991; Servia et al. 2006; unpublished records, this study.
FIGURE 1 in Freshwater planarians (Platyhelminthes, Tricladida) from the Iberian Peninsula and Greece: diversity and notes on ecology
FIGURE 1. Distributional records of the genera Schmidtea, Ph. sp. and Ph. cf. vitta in the Iberian Peninsula. Data from Arndt, 1926; Baguñà et al. 1980, 81; Ribas, 1990; Altaba et al. 1991; unpublished records, this study.
FIGURE 17 in Freshwater planarians (Platyhelminthes, Tricladida) from the Iberian Peninsula and Greece: diversity and notes on ecology
FIGURE 17. Phagocata graeca, (A–B), holotype, V.Pl. 6879.1, (A) sagittal section of the copulatory apparatus (anterior to the right), (B) sagittal reconstruction of the copulatory apparatus (anterior to the right).
FIGURE 11 in Freshwater planarians (Platyhelminthes, Tricladida) from the Iberian Peninsula and Greece: diversity and notes on ecology
FIGURE 11. Phagocata gallaeciae (A) specimen from the River Miño after Belesar dam, living animal, (B–C) holotype, V.Pl. 6870.1, (B) sagittal reconstruction of the copulatory apparatus (anterior to the left), (C) sagittal section of the copulatory apparatus (anterior to the left), (D) V.Pl. 6871.2, sagittal reconstruction of the copulatory apparatus (anterior to the left).
FIGURE 18 in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 18. Graphic comparison of all Fortuynia species, subspecies and morphs from different geographic areas. Depictions are taken from literature and were slightly modified except for the new species described in this paper. A) F. arabica (Bayartogtokh et al. 2009). B) sexually dimorphic F. atlantica (Krisper & Schuster 2008). C) F. marina (Hammen 1960). D) F. longiseta sp. nov. E) F. maledivensis sp. nov. F) F. yunkeri (Hammen 1963). G) F. inhambanensis (Marshall & Pugh 2002). H) F. elamellata (Luxton 1967). I) F. elamellata micromorpha (Marshall & Pugh 2002). J) F. elamellata shibai (Aoki 1974). K) F. taiwanica (Bayartogtokh et al. 2009). L) F. sinensis (Luxton 1992). M) F. rotunda from Mozambique (Marshall & Pugh 2002). N) F. rotunda morph from Japan (Karasawa & Aoki 2005). O) F. maculata (Luxton 1986). P) F. smiti from New Caledonia (Ermilov et al. 2013). Q) F. smiti morph from Singapore.
FIGURE 17. F. smiti protonymph left legs, antiaxial view. A in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 17. F. smiti protonymph left legs, antiaxial view. A) leg I. B) leg II. C) leg III. D) leg IV.
FIGURE 5. F in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 5. F. maledivensis sp. nov. protonymph left legs, antiaxial view. A) leg I. B) leg II. C) leg III. D) leg IV.
FIGURE 12. A in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 12. A. pseudoreticulatus sp. nov. adult left legs, antiaxial view. A) leg I. B) leg II. C) leg III. D) leg IV.
FIGURE 9. F in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 9. F. longiseta sp. nov. A) larva, dorsal view. B) larva, ventral view. C) protonymph, dorsal view. D) protonymph, ventral view.
FIGURE 3. F in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 3. F. maledivensis sp. nov. adult left legs antiaxial view. A) leg I. B) leg II. C) leg III. D) leg IV.
FIGURE 8. F in The intertidal Fortuyniidae (Acari: Oribatida): new species, morphological diversity, ecology and biogeography
FIGURE 8. F. longiseta sp. nov. adult left legs, antiaxial view. Dorsal porose areas on femur III and IV omitted due to slightly ventral perspective. A) leg I. B) leg II. C) leg III. D) leg IV.
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 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.
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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.