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2,007 results for “ecological species”
FIGURE 15 in Phylogeny, taxonomy and flower-breeding ecology of the Colocasiomyia cristata species group (Diptera: Drosophilidae), with descriptions of ten new species
FIGURE 15. (Continued). I, C. sabahana sp. nov. ♂; J, C. sarawakana sp. nov. ♂; K, C. xenalocasiae (Okada) ♂; L, C. diconica (Toda & Okada) ♂; M, C. sumatrana sp. nov. ♂; N, ditto ♀; and O, C. leucocasiae sp. nov. Scale bars: 1 mm.
Figure 13 in Is mimicry a diversification-driver in ants? Biogeography, ecology, ethology, genetics and morphology define a second West-Palaearctic Colobopsis species (Hymenoptera: Formicidae)
Figure 13. Above Cr. scutellaris and species showing a similar chromatic pattern that were collected near Cr. scutellaris trails in Sicily (Italy): A, Co. imitans (worker from Mondello); B, Ca. lateralis (worker from Monte Pellegrino); C, Gelis sp. (Hymenoptera: Braconidae) from Monte Petroso; D, Cr. scutellaris from Levanzo island; E, Phrurolithus sp. (Araneae: Phrurolitidae) from Mondello; F, Ca. ruber (worker from Monte Pellegrino); G, Leptorchestes sp. (Araneae: Salticidae) from Monte Petroso. Below, D. quadripunctatus and species with a similar chromatic pattern collected near its trails or in the same trees in mainland Italy: H, Co. truncata (specimen from Bulgaria, AntWeb code CASENT0280000, photographer Michele Esposito); I, D. quadripunctatus (specimen from Czech Republic, AntWeb code CASENT0179916, photographer Michele Esposito); J, Formicomus pedestris (Rossi, 1790) (Coleoptera: Anthicidae) from Parma (Italy).
EWINA_SP: Ecological profile of earthworm species found in North America
<p>This is a list of the earthworm species known in North America (Mexico, USA, Canada) before 2021, together with their ecological profile: geographical range, diet, and reproduction type.</p> <p>There are two files:</p> <ul> <li><a href="https://zenodo.org/api/files/1ea17cf1-f5fd-4023-8b72-a58ffc149acb/EWINA_SP.csv">EWINA_SP.csv</a>: the dataset itself (308 species)</li> <li><a href="https://zenodo.org/api/files/1ea17cf1-f5fd-4023-8b72-a58ffc149acb/EWINA_SP_variables.csv">EWINA_SP_variables.csv </a>: a file that explains the variables in the dataset</li> </ul> <p> </p>
FIGURE 6. Rhamphostomella microavicularia n in Taxonomy, ecology and zoogeography of the Recent species of Rhamphostomella Lorenz, 1886 and Mixtoscutella n. gen. (Bryozoa, Cheilostomata)
FIGURE 6. Rhamphostomella microavicularia n. sp. Holotype, ZIRAS 1/50543 (Chiproy Island, Kuril Islands, Pacific Ocean). A. Colony margin with developing zooids. B. Distal view of zooids from colony periphery, showing orifices with condyles and position of suboral and adjoining small adventitious avicularia. C. Orifice with suboral and adjoining adventitious avicularia (ooecial rudiment is visible near distal margin of orifice). D. Non-ovicellate zooids in young part of colony (arrows, communication pores of future ooecia). E. Zooids in older part of colony. F. Ovicellate zooid with ooecium, laterally surrounded by secondary calcification. G. Autozooids with complete and partially destroyed ooecia. H. Two zooids from old part of colony, showing numerous adventitious avicularia. I. Interior of frontal shield, showing umbonuloid component and areolae. J. Internal view of orifice, showing concave proximal margin and condyles. K. Basal colony surface. L. Frontal shield interior, showing ring scar and exterior wall microstructure of umbonuloid component. M. Zooidal lateral wall with mural pore chambers; protuberances on basal wall are clearly seen. Scale bars: A, D, G, K, 500 μm; B, E, F, H, 250 μm; C, I, J, 100 μm; L, 50 μm; M, 200 μm.
FIGURE 23. Rhamphostomella spinigera Lorenz, 1886. A–F, H, I, L. ZIRAS 26 in Taxonomy, ecology and zoogeography of the Recent species of Rhamphostomella Lorenz, 1886 and Mixtoscutella n. gen. (Bryozoa, Cheilostomata)
FIGURE 23. Rhamphostomella spinigera Lorenz, 1886. A–F, H, I, L. ZIRAS 26/50112 (Medny Island, Commander Islands, Bering Sea). G, J, K. ZIRAS 25/50111 (Bering Island, Commander Islands, Pacific Ocean). A. Colony margin with developing zooids, suboral avicularia and ooecia. B. Orifice with two pairs of oral spines, showing lyrula, lateral denticles and suboral avicularium. C. Zooidal orifice with developing ooecium (partially seen), one pair of oral spines and suboral avicularium. D. Non-ovicellate autozooids (number of oral spines varies from two to four). E. Non-ovicellate zooid (upper right corner) and two zooids with partially developed ooecia, possibly "aborted". F. Zooids with developing ooecia. G. Ovicellate zooids, some with detached articulated oral spines (colony partially cleaned). H. Frontal view of distal part of ovicellate zooid. I. Interior of frontal shield, showing umbo, ring scar and areolae. J. Basal surface of colony. K. Interior of frontal shield, showing ring scar around exterior-wall microstructure of umbonuloid component, and lyrula with lateral denticles. L. Lateral view of zooid, showing ooecium, oral spines, peristomial lappet and lateral wall with mural pore chambers. Scale bars: A, J, 500 μm; B, C, E, F, H, I, 100 μm; D, G, 250 μm; K, 50 μm; L, 200 μm.
FIGURE 32 in Taxonomy, ecology and zoogeography of the Recent species of Rhamphostomella Lorenz, 1886 and Mixtoscutella n. gen. (Bryozoa, Cheilostomata)
FIGURE 32. Type specimens of Rhamphostomella species. A, B. Rhamphostomella gigantea Osburn, 1952. Holotype, USNM 11033 (Point Barrow, Alaska, Beaufort Sea). C–E. Rhamphostomella alutacea Gontar, 1993. Holotype, ZIRAS 1/44569 (Krabovaya Bight, Shikotan Island, Lesser Kuril Ridge, Pacific Ocean). F, G. Rhamphostomella bilaminata (Hincks, 1877). Neotype, NHMUK 1911.10.1.1580A (Gaspe, Gulf of St Lawrence, Atlantic Ocean). H, I. Rhamphostomella hincksi Nordgaard, 1906. Neotype, NHMUK 1976.8.6.39pt (about 22 km westwards from Medvezhii Island, western Barents Sea). J, K. Rhamphostomella plicata (Smitt, 1868). Lectotype, SMNH-Type-1696 (Waygat Islands, Hinlopen Strait, Svalbard and Jan Mayen). L, M. Rhamphostomella radiatula (Hincks, 1877). Neotype, NHMUK 1911.10.1.1592 (Iceland). Scale bars: A, B, D–G, K, M, 250 µm; C, H, I, J, L, 500 µm.
Fig. 5 in A Review Of Species Diversity, Distribution And Ecology Of Freshwater Gastropod Molluscs Inhabiting The Ukrainian Transcarpathian
Fig. 5. Altitude distribution of freshwater gastropod species found in the Transcarpathia. Height above the sea level (in m) is shown in vertical line.
Fig. 1 in A Review Of Species Diversity, Distribution And Ecology Of Freshwater Gastropod Molluscs Inhabiting The Ukrainian Transcarpathian
Fig. 1. Map showing the localities of samples studied. Details for each sampling point are given in table 1.
Fig 13 in Morphological and ecological convergence at the lower size limit for vertebrates highlighted by five new miniaturised microhylid frog species from three different Madagascan genera
Fig 13. Osteology of Anodonthyla eximia sp. nov. holotype (ZMA 20246). (a-c) Whole skeleton in (a) dorsal, (b) lateral, and (c) ventral view. (d-g) Skull in (d) lateral, (e) ventral, (f) anterior, and (g) dorsal view. (h) Foot in ventral view. (i) Hand in ventral view. For abbreviations, see Fig 6. https://doi.org/10.1371/journal.pone.0213314.g013
Fig 12 in Morphological and ecological convergence at the lower size limit for vertebrates highlighted by five new miniaturised microhylid frog species from three different Madagascan genera
Fig 12. Anodonthyla eximia sp. nov. holotype (ZMA 20246) in life. (a) dorsolateral, (b) ventral, and (c) posterodorsal view. https://doi.org/10.1371/journal.pone.0213314.g012
Fig 9 in Morphological and ecological convergence at the lower size limit for vertebrates highlighted by five new miniaturised microhylid frog species from three different Madagascan genera
Fig 9. Osteology of Mini ature gen. et sp. nov. holotype (ZSM 86/2004). (a-c) Whole skeleton in (a) dorsal, (b) lateral, and (c) ventral view. (d-g) Skull in (d) lateral, (e) ventral, (f) anterior, and (g) dorsal view. (h) Foot in ventral view. (i) Hand in ventral view. For abbreviations, see Fig 6. https://doi.org/10.1371/journal.pone.0213314.g009
Fig 11 in Morphological and ecological convergence at the lower size limit for vertebrates highlighted by five new miniaturised microhylid frog species from three different Madagascan genera
Fig 11. Osteology of Rhombophryne proportionalis sp. nov. holotype (ZSM 1826/2010). (a, b) Whole skeleton in (a) dorsal and (b) ventral view. (c-f) Skull in (c) lateral, (d) ventral, (e) anterior, and (f) dorsal view. (g) Foot in ventral view. (h) Hand in ventral view. For abbreviations, see Fig 6. https://doi.org/10.1371/journal.pone.0213314.g011
Fig 1 in Morphological and ecological convergence at the lower size limit for vertebrates highlighted by five new miniaturised microhylid frog species from three different Madagascan genera
Fig 1. Stylised representation of the latest phylogeny of the microhylid subfamily Cophylinae. Based on the phylogenetic tree of Tu et al. [20] (reconstructed from a concatenated multi-gene DNA sequence data set) with numerous nomenclatural updates. See that paper for support values and phylogenetic context. The sister species of Rhombophryne proportionalis sp. nov. is an undescribed candidate species (R. sp. Ca7) that is not included in this phylogeny; its taxonomy will be treated elsewhere. Taxa highlighted in red are those described herein. Inset photos show a selection of the new species described herein, and representatives of the other small-bodied genera, Stumpffia and Anilany. Inset photos are not to scale. https://doi.org/10.1371/journal.pone.0213314.g001
Fig 7 in Morphological and ecological convergence at the lower size limit for vertebrates highlighted by five new miniaturised microhylid frog species from three different Madagascan genera
Fig 7. Mini scule gen. et sp. nov. in life and its habitat in Sainte Luce Reserve. (a, b) ZSM 5943/2005, holotype, in (a) dorsolateral and (b) ventral view. Black lines in the two pictures are scanning artefacts from damaged analogue slides. (c) Probably ZSM 5942/2005, paratype, in dorsolateral view. (d-f) ZSM 265/2018 (SHR 09112018) in (d) dorsal, (e) dorsolateral, and (f) ventral view. Note the numerous pink cf. Endotrombicula mites on the abdomen and legs. (g) Habitat in Sainte Luce Special Reserve. (h, i) Mini cf. scule from Nahampoana, ZFMK 53775 in (h) lateral and (i) ventral view. https://doi.org/10.1371/journal.pone.0213314.g007
FIGURE 6 in Phylogenetic systematics, ecology, and conservation of marsupial frogs (Anura: Hemiphractidae) from the Andes of southern Ecuador, with descriptions of four new biphasic species
FIGURE 6. Oral discs of: (A) Gastrotheca cuencana (CJ 1945, Stage 38), from Cuenca (south control), Azuay Province, (B) Gastrotheca litonedis (CJ 5292, Stage 35), from from Laguna de Busa, San Fernando, Azuay Province, (C) Gastrotheca lojana (CJ 4309, Stage 37), from El Tablón, Loja Province, (D) Gastrotheca elicioi (CJ 4311, Stage 36), from Barrio Puntzará Grande, Loja, Loja Province, (E) Gastrotheca turnerorum (CJ 1959, Stage 39), from Laguna Negra de Jimbura, Parque Nacional Yacuri, Loja Province, and (F) Gastrotheca pseustes (CJ 1949, Stage 37), from Chillacocha, El Oro Province. Not to scale. Photos by LAC.
FIGURE 3 in Phylogenetic systematics, ecology, and conservation of marsupial frogs (Anura: Hemiphractidae) from the Andes of southern Ecuador, with descriptions of four new biphasic species
FIGURE 3. Live adults of Gastrotheca cuencana showing variation in dorsal and ventral color pattern: (A) CJ 1940, female, SVL = 50.2 mm, (B) CJ 1393, male, SVL = 46.7 mm, (C) CJ 1392, male, SVL = 49.8 mm, (D) CJ 1395, female, SVL = 61.6 mm, (E) CJ 1396, male, SVL = 52.2 mm, and (F) CJ 1397, female, SVL = 55.1 mm. Not to scale. Photos by LAC.
FIGURES 72–75. Habitat types for Cteniza species. 72, C in Systematics, ecology and distribution of the mygalomorph spider genus Cteniza Latreille, 1829 (Araneae, Mygalomorphae, Ctenizidae)
FIGURES 72–75. Habitat types for Cteniza species. 72, C. moggridgei shady, moss-covered humid Mediterranean forest habitat, France, Alpes Maritimes (photo A. Decae); 73, C. sauvagesi open scrubland habitat, Italy, Calabria (photo P. Rizzo); 74, C. sauvagesi exposed road-side habitat Italy, Sardinia (photo S. Huber, permission); 75, shaded road-side habitat Calabria (photo P. Rizzo).
FIGURES 47–49. Tenebriochernes pilosus n in Tenebriochernes, a new genus and species of Chernetidae (Arachnida: Pseudoscorpiones) from north-western Colombia, with ecological observations
FIGURES 47–49. Tenebriochernes pilosus n. sp., unless stated otherwise: 47, male paratype, right pedipalp aspect. 48, female holotype, right pedipalp aspect. 49, right chela, lateral view. Scale lines = 0.2 mm (Figs 47–48), 0.5 mm (Fig. 49).
Fig. 10 in Ecology, acoustics and chromosomes of the East African genus Afroanthracites Hemp & Ingrisch (Orthoptera, Tettigoniidae, Conocephalinae, Agraeciini) with the description of new species
Fig. 10 Morphological details of male Afroanthracites species. a, c, e A. pseudodiscolor n. sp. b, d, f A. lutindi n. sp. a, b Lateral view on abdominal apex. c, d Left cercus. e, f Subgenital plate
Fig. 9 in Ecology, acoustics and chromosomes of the East African genus Afroanthracites Hemp & Ingrisch (Orthoptera, Tettigoniidae, Conocephalinae, Agraeciini) with the description of new species
Fig. 9 Dorsal view on male abdominal apex of Afroanthracites species. a A. montium. b A. usambaricus. c A. jagoi. d A. viridis. e A. lutindi n. sp. f A. uluguruensis. g A. discolor. h A. pseudodiscolor n. sp.
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.