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1,220 results for “re-description”
Fig. 8 in Re-description and range extension of the Afrotropical mayfly Cloeon perkinsi (Ephemeroptera, Baetidae)
Fig. 8. Cloeon perkinsi, ♀ abdominal terga II–V. Arrows presenting two different methods of counting the lines. Left: counting only the dark stripes (three stripes in total). Right: counting dark and bright stripes, including darker borders of stripes (seven dark lines in total).
Fig. 4 in Re-description and range extension of the Afrotropical mayfly Cloeon perkinsi (Ephemeroptera, Baetidae)
Fig. 4. Cloeon perkinsi, nymph. Habitus. Specimen collected in Hula swamp, Israel. Scale bar = 5 mm.
Fig. 5 in Re-description of Strandesia sanoamuangae Savatenalinton & Martens, 2010 and description of a new species of Strandesia (Crustacea, Ostracoda) from Grande Terre, New Caledonia
Fig. 5. Carapace and valves of Strandesia mehesi sp. nov. ♀, paratypes; A,E: MNHN-IU-2014-20310; B,G: MNHN-IU-2014-20311; C: MNHN-IU-2014-20308; D: MNHN-IU-2014-20309; F, H: MNHN- IU-2014-20312. A. CpLL. B. CpRL. C. CpRL. D. CpRL. E. CpRL. F. CpRL. G. CpRL, surface detail. H. CpRL, surface detail. Scale bars: A–F = 500 μm; G = 300 μm; H = 30 μm.
Fig. 3 in Re-description of Strandesia sanoamuangae Savatenalinton & Martens, 2010 and description of a new species of Strandesia (Crustacea, Ostracoda) from Grande Terre, New Caledonia
Fig. 3. Limbs of Strandesia sanoamuangae. ♀. A: AK007; B–G: AK006. A. Mx1. B. T1, protopodite. C. T2. D. T3. E. T3, apical pincer. F. CR attachment. G. CR. Scale bar: A–B = 60 μm; C–D = 100 μm; E = 200 μm; F–G = 150 μm.
Fig. 2 in Re-description of Strandesia sanoamuangae Savatenalinton & Martens, 2010 and description of a new species of Strandesia (Crustacea, Ostracoda) from Grande Terre, New Caledonia
Fig. 2. Limbs of Strandesia sanoamuangae. ♀. A, F: AK007; B–C: AK003; D–E, G: AK006. A. A1 B. A2. C. A2, distal end of penultimate segment and terminal segment. D. Md-palp. E. Md-palp, showing α, β and γ setae. F. Md-palp, terminal segment. G. Md-coxa. Scale bar: A–B, E, G = 100 μm; C–D, F = 60 μm.
Fig. 2 in Re-description of Dysponetus joeli Olivier et al., 2012 (Polychaeta, Chrysopetalidae), with a new key to species of the genus
Fig. 2. Dysponetus Joeli Olivier et al., 2012. A. NMW.Z.2009.027.0003, whole specimen, dorsal view (scale bar 1 mm). B. NMW.Z.2009.027.0005, anterior end, ventrolateral view (scale bar 50 µm). C. Notochaetae (scale bar 10 µm). D. Neurochaetae (scale bar 20 µm). – d = dorsal (cirrophore), la = lateral antenna, m = mouth appendage, p = palp, ps = palp scar, v = ventral (cirrophore); numbers indicate the segment.
Fig. 1 in Re-description of Dysponetus joeli Olivier et al., 2012 (Polychaeta, Chrysopetalidae), with a new key to species of the genus
Fig. 1. Dysponetus Joeli Olivier et al., 2012. A. NMW.Z.2009.027.0003, anterior end, dorsal view. B. NMW.Z.2009.027.0004, anterior end, ventral view. C. NMW.Z.2009.027.0003, posterior end, ventral view. D. Holotype (MNHN POLY TYPE 1533), anterior end, ventral view. Only a few chaetae drawn in each case for clarity. – ac = accessory chaeta, d = dorsal (cirrus/cirrophore), la = lateral antenna, ma = median antenna, m = mouth appendage, p = palp, ps = palp scar, v = ventral (cirrus/cirrophore); numbers indicate the segment.
FIGURES 13 – 18 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 13 – 18. Tenuibiotus voronkovi — egg process details, different shape of processes seen in PCM.
FIGURES 3 – 6 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 3 – 6. Tenuibiotus voronkovi — buccal apparatus: 3 — buccal apparatus, dorso-ventral projection (PCM); 4 — ventral view of the buccal armature, arrowhead indicate row of teeth (PCM); 5 — buccal apparatus, dorso-ventral projection (DIC); 4 — dorsal view of the buccal armature, arrowhead indicate single teeth (PCM).
FIGURES 9 – 12 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 9 – 12. Tenuibiotus voronkovi — eggs and juveniles: 9 — egg midsection (DIC); 10 — egg midsection with embryo (PCM); 11, 12 — juveniles and eggs.
FIGURES 1 – 2 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 1 – 2. Tenuibiotus voronkovi — habitus: 1 - dorso-ventral projection, exoskeleton after DNA extraction (PCM); 2 - dorso-ventral projection (DIC).
FIGURES 7 – 8 in Re-description of the Arctic tardigrade Tenuibiotus voronkovi (Tumanov, 2007) (Eutardigrada; Macrobiotidea), with the first molecular data for the genus
FIGURES 7 – 8. Tenuibiotus voronkovi — claws of leg IV seen in PCM: 7 — arrowhead indicate accessory points; 8 — dentate lunules and granulation.
Figures 1–4 in Some raphignathoid mites (Acariformes: Trombidiformes: Prostigmata) in Lorestan Province, with re-description of Raphignathus evidus Fan as a new record from Iran
Figures 1–4. Raphignathus evidus Fan (Female) – 1. Dorsal view of idiosoma; 2. Ventral view of idiosoma; 3. Palp; 4. Chelicerae.
Fig. 1 in Re-description of Metedwardsia akkeshi (Cnidaria: Anthozoa: Actiniaria: Edwardsiidae), Discovered in Akkeshi, Hokkaido, Almost 80 Years after Original Description, with a Revision of the Diagnosis of Genus Metedwardsia
Fig. 1. Location of sites where Metedwardsia akkeshi specimens were collected. A, localities where Metedwardsia akkeshi were collected in Hokkaido, Japan. Sites in Nemuro are indicated by black arrows (Lake Onne-to and Lake Furen); B, enlarged map of Akkeshi. Collection sites in Akkeshi are indicated by black arrows (Akkeshi Bay and Lake Akkeshi); C, the Chikarakotan mud flat of Lake Akkeshi; D, Shinryuhama Beach of Akkeshi Bay (image courtesy of Naoto Jimi); E, mud flat near the Onne-to Ohashi Bridge, Lake Onne-to.
Fig. 4 in Re-description of Metedwardsia akkeshi (Cnidaria: Anthozoa: Actiniaria: Edwardsiidae), Discovered in Akkeshi, Hokkaido, Almost 80 Years after Original Description, with a Revision of the Diagnosis of Genus Metedwardsia
Fig. 4. Cnidae of Metedwardsia akkeshi (NSMT-Co 1605). A, tentacle spirocyst; B, tentacle basitrich; C, actinopharynx basitrich; D, actinopharynx microbasic b-mastigophore; E, column basitrich; F, filament basitrich; G, filament microbasic b-mastigophore; H, filament microbasic amastigophore.
Fig. 3 in Re-description of Metedwardsia akkeshi (Cnidaria: Anthozoa: Actiniaria: Edwardsiidae), Discovered in Akkeshi, Hokkaido, Almost 80 Years after Original Description, with a Revision of the Diagnosis of Genus Metedwardsia
Fig. 3. Tentacular and mesenterial arrangement of Metedwardsia akkeshi. Schematic diagram depicting a cross-section of mesenterial and tentacular arrangement. The 24 tentacles are arranged in three cycles, consisting of an inner six (white), middle six (grey), and outer twelve (black). Abbreviations: Ac, actinopharynx; dd, dorsal directives; dlm, dorso-lateral mesenteries; mi, microcneme; vd, ventral directives; vlm, ventro-lateral directives.
Fig. 2 in Re-description of Metedwardsia akkeshi (Cnidaria: Anthozoa: Actiniaria: Edwardsiidae), Discovered in Akkeshi, Hokkaido, Almost 80 Years after Original Description, with a Revision of the Diagnosis of Genus Metedwardsia
Fig. 2. Outer and inner views of Metedwardsia akkeshi. A, outer view of Metedwardsia akkeshi (NSMT-Co 1605); B, outer view of live specimen (NSMT-Co 1606); C, oral view (NSMT-Co 1606); D, longitudinal section of oral part of M. akkeshi (NSMT-Co 1605, same hereafter); E, transversal section of actinopharynx and column; F, transversal section of tentacle; G, transversal section of a mesentery and parietal basal muscle; H, transversal section of mesenteries, gonads, and filaments; I, enlarged view of mesenteries. J, transversal section of physa. Abbreviations: Ac, actinopharynx; Fi, filament; Ma, macrocneme; Me, mesoglea; Mi, microcneme; Ov, ovary; Pa, parietal muscle; Ph, physa; Rm, retractor muscle; Scl, scapulus; Scs, scapus; Te, tentacle; Tlm, tentacular longitudinal muscle. Scale: 5 mm in A–C; 1 mm in D, E, H; 500 µm in J; 100 µm in F, G, I.
Figures 1–6. Bdella muscorum Ewing, 1909 in Re-description of Bdella muscorum Ewing (Acari: Bdellidae) from Western Iran
Figures 1–6. Bdella muscorum Ewing, 1909 (Female) – 1. Dorsal view; 2. Palp; 3. Chelicerae; 4. Subcapitulum; 5. Ventral view; 6. Ovipositor.
Fig. 2 in Re-description of two marine sponge species (Demospongiae: Haplosclerida) from the coast of Karachi, Pakistan, Northern Arabian Sea
Fig. 2 — (a) Specimen of Haliclona (Soestella) hornelli (Dendy, 1916) in a rock pool, (b) Preserved specimen of H. (S.) hornelli, (c) Light microscopic image of internal skeletal structure, (d) Scanning electron microscopic image of oxeas (scale = 20 µm), (e) Histological section of ectosomal and choanosomal skeleton (scale = 500 µm), and (f) Spicules (oxeas) in tangential section
Fig. 3 in Re-description of two marine sponge species (Demospongiae: Haplosclerida) from the coast of Karachi, Pakistan, Northern Arabian Sea
Fig. 3 — (a) Specimen of Callyspongia (Cladochalina) fibrosa (Ridley and Dendy, 1886), (b) Light microscopic image of tangential skeleton shows tufted spongin network (scale = 20 µm), (c) Light microscopic image of microtome-section showing spiculo-fibres, and (d) Scanning electron microscopic image of siliceous spicules (scale = 5 µm)
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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.