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13,397 results for “sp. nov.”
Fig. 3 in A New Species of Bathyal Nemertean, Proamphiporus kaimeiae sp. nov., off Tohoku, Japan, and Molecular Systematics of the Genus (Nemertea: Monostilifera)
Fig. 3. Proamphiporus kaimeiae sp. nov., holotype, ICHUM 6058, photomicrographs of transverse sections. A, Body wall in brain region; B, anterior part of cerebral organs; arrowheads pointing to the radial canal; C, posterior part of cerebral organs; arrowhead pointing to the lateral canal; D, brain; arrowhead pointing to vascular plug; E, proboscis; F, testis; G, excretory collecting tubule (arrowhead). Abbreviations: ag, acidophilic glands; br, brain; de, dermis; dg, dorsal ganglion; ep, epidermis; ln, lateral nerve cord; mlm, middle longitudinal muscle layer of body wall; ocm, outer circular muscle layer of body wall; pb, proboscis; pe, proboscis epithelium; pic, proboscis inner circular muscle layer; poc, proboscis outer circular muscle layer; rh, rhynchocoel; st, stomach; te, testis; vg, ventral ganglion. Scale bars: A = 20 µm, B = 75 µm, C, G = 50 µm, D = 100 µm, E, F = 40 µm.
Fig. 2 in A New Species of Bathyal Nemertean, Proamphiporus kaimeiae sp. nov., off Tohoku, Japan, and Molecular Systematics of the Genus (Nemertea: Monostilifera)
Fig. 2. Proamphiporus kaimeiae sp. nov., holotype, ICHUM 6058, photographs taken in living state. A, Whole body, dorsal view; B, ventral view. Abbreviations: cf, cephalic furrow; co, cerebral organ. Scale bar: 500 µm.
Fig. 1 in A New Species of Bathyal Nemertean, Proamphiporus kaimeiae sp. nov., off Tohoku, Japan, and Molecular Systematics of the Genus (Nemertea: Monostilifera)
Fig. 1. Map showing the collection site (solid circle) of the specimen examined in the present study.
Fig. 4 in A New Species of Bathyal Nemertean, Proamphiporus kaimeiae sp. nov., off Tohoku, Japan, and Molecular Systematics of the Genus (Nemertea: Monostilifera)
Fig. 4. Phylogenetic trees of the genus Proamphiporus based on concatenated 16S rRNA (454 bp), COI (657 bp), 18S rRNA (1773 bp), 28S rRNA (1077 bp), and histone H3 genes (326 bp). A, Phylogenetic tree inferred by maximum likelihood (ML) analysis, showing support values generated by a separate partitioned ML bootstrap analysis with 1000 replicates; B, phylogenetic tree inferred from Bayesian analysis, showing posterior probability of a separate partitioned Bayesian analysis.
Fig. 8 in Echinoderes antalyaensis sp. nov. (Cyclorhagida: Kinorhyncha) from Antalya, Turkey, Levantine Sea, Eastern Mediterranean Sea
Fig. 8. Echinoderes antalyaensis sp. nov., Nomarski interference contrast photomicrographs of the holotypic male (ZMB 11673) (A, C) and paratypic female (ZMB 11674) (B, D). A, segments 7–9, ventral view; B, segments 7–9, ventral view; C, segments 10 and 11, ventral view; D, segments 10 and 11, ventral view. Black arrows and white arrowheads indicate sensory spots and type-1 glandular cell outlets, respectively. Abbreviations: lat, lateral accessory tube; ltas, lateral terminal accessory spine; lts, lateral terminal spine; lvs, lateroventral acicular spine; pe, penile spine; te, tergal extension. Digits after abbreviations indicate the corresponding segment number.
Fig. 9 in Echinoderes antalyaensis sp. nov. (Cyclorhagida: Kinorhyncha) from Antalya, Turkey, Levantine Sea, Eastern Mediterranean Sea
Fig. 9. Ornaments of outer oral styles in various echinoderid species. A, E. antalyensis sp. nov.; B, E. apex; C, E. applicitus; D, E. cernunnos; E, E. hakaiensis; F, E. hwiizaa; G, E. komatsui; H, E. microaperturus; I, E. ohtsukai; J, E. pennaki; K, E. regina; L, E. serratulus; M, E. tchefouensis; N, C. asiatica; O, M. macracanthus; P, P. martinezi. Black and white double-arrowheads indicate anterior and posterior spinose processes, respectively. Photographs C, D, H, and M, and photographs E, J, and O were taken and provided by Dr Martin V. SØrensen and Dr María Herranz, respectively.
Fig. 7 in Echinoderes antalyaensis sp. nov. (Cyclorhagida: Kinorhyncha) from Antalya, Turkey, Levantine Sea, Eastern Mediterranean Sea
Fig. 7. Echinoderes antalyaensis sp. nov., a male (ZMB 11678), scanning electron micrographs. A, segments 2–6, lateroventral view (right side); B, segments 7 and 8, lateral view (right side); C, segments 8–10, lateroventral view (right side); D, close-up of lateral accessory tube and lateroventral acicular spine on segment 8; E, segments 10 and 11, lateral view (right side). Black arrows indicate sensory spots. Abbreviations: lat, lateral accessory tube; ldt, laterodorsal tube; lts, lateral terminal spine; lvs, lateroventral acicular spine; lvt, lateroventral tube; pe, penile spine. Digits after abbreviations indicate the corresponding segment number.
Fig. 4 in Echinoderes antalyaensis sp. nov. (Cyclorhagida: Kinorhyncha) from Antalya, Turkey, Levantine Sea, Eastern Mediterranean Sea
Fig. 4. Echinoderes antalyaensis sp. nov., Nomarski interference contrast photomicrographs of the holotypic male (ZMB 11673). A, entire animal, ventral view; B, segments 1–5, ventral view; C, neck and segments 1–6, dorsal view; D, segments 4–8, ventral view. Black arrows and white arrowheads indicate sensory spots and type-1 glandular cell outlets, respectively. Abbreviations: he, head; lat, lateral accessory tube; lts, lateral terminal spine; lvs, lateroventral acicular spine; lvt, lateroventral tube; mds, middorsal acicular spine; ne, neck; ppf, primary pectinate fringe; tr, trunk. Digits after abbreviations indicate the corresponding segment number.
Fig. 6 in Echinoderes antalyaensis sp. nov. (Cyclorhagida: Kinorhyncha) from Antalya, Turkey, Levantine Sea, Eastern Mediterranean Sea
Fig. 6. Echinoderes antalyaensis sp. nov., a male (ZMB 11678), scanning electron micrographs. A, neck and segments 1–3, lateral view (right side); B, close-up of lateroventral type-1 glandular cell outlet on segment 1; C, close-up of laterodorsal sensory spot on segment 1; D, close-up of laterodorsal sensory spots on segment 2; E, neck and segments 1–4, lateroventral view (right side); F, segments 4–6, lateral view (right side). Black arrows and white arrowheads indicate sensory spots and type-1 glandular cell outlets, respectively. Abbreviations: ch, cuticular hair; lat, lateral accessory tube; lvs, lateroventral acicular spine; lvt, lateroventral tube; mds, middorsal acicular spine; mvp, midventral placid; ppf, primary pectinate fringe. Digits after abbreviations indicate the corresponding segment number.
Fig. 5 in Echinoderes antalyaensis sp. nov. (Cyclorhagida: Kinorhyncha) from Antalya, Turkey, Levantine Sea, Eastern Mediterranean Sea
Fig. 5. Polar-coordinate diagram of mouth cone, introvert, and placids in Echinoderes antalyaensis sp. nov. Grey area and heavy line arcs show mouth cone and placids, respectively. The table lists the arrangement of styles and scalids by sector.
Fig. 2 in Echinoderes antalyaensis sp. nov. (Cyclorhagida: Kinorhyncha) from Antalya, Turkey, Levantine Sea, Eastern Mediterranean Sea
Fig. 2. Echinoderes antalyaensis sp. nov., a male (ZMB 11678), scanning electron micrographs. A, entire animal, lateral view (right side); B, head, lateral view (right side); C, close-up of inner oral styles, lateral view (right side); D, close-up of inner and outer oral styles, lateroventral view (right side); E, close-up of mouth cone, lateral view (right side). Abbreviations: he, head; int, introvert; ios, inner oral style; mc, mouth cone; ne, neck; oos, outer oral style; phc, pharynx crown; psp, primary spinoscalid; sec, sector; tr, trunk. Digits after abbreviations indicate the corresponding ring or sector number.
Fig. 3 in Echinoderes antalyaensis sp. nov. (Cyclorhagida: Kinorhyncha) from Antalya, Turkey, Levantine Sea, Eastern Mediterranean Sea
Fig. 3. Echinoderes antalyaensis sp. nov., a male (ZMB 11678), scanning electron micrographs. A, close-up of introvert, lateroventral view (right side); B, close-up of introvert, lateral view (right side). Abbreviations: he, head; int, introvert; mvp, midventral placid; ne, neck; psp, primary spinoscalid; sec, sector; sp, spinoscalid; trs, trichoscalid. Digits after abbreviations indicate the corresponding ring or sector number.
Fig. 1 in Echinoderes antalyaensis sp. nov. (Cyclorhagida: Kinorhyncha) from Antalya, Turkey, Levantine Sea, Eastern Mediterranean Sea
Fig. 1. Echinoderes antalyaensis sp. nov., camera lucida drawings. A, B, Holotype, male (ZMB 11673), entire animal, ventral and dorsal view of segments 1–11, respectively; C, D, paratype, female (ZMB 11674), segments 8–11, ventral and dorsal view, respectively. Abbreviations: gco1, type-1 glandular cell outlet; lat, lateral accessory tube; ldt, laterodorsal tube; ltas, lateral terminal accessory spine; lts, lateral terminal spine; lvs, lateroventral acicular spine; lvt, lateroventral tube; mds, middorsal acicular spine; pe, penile spine; si, sieve plate; ss, sensory spot; te, tergal extension. Digits after abbreviations, except for gco1, indicate the corresponding segment number.
Figs 3-8 in A second species of the family Eutrachytidae (Acari: Uropodina) in Africa: Mahnertellina paradoxa gen. nov., sp. nov. from the Ivory Coast
Figs 3-8. Mahnertellina paradoxa gen. nov., sp. nov., female holotype. (3) Setae and sculptural pattern on marginal shield. (4) Area of posterior idiosomal process. (5) Setae and ornamentation on caudal area of dorsal shield. (6) Tritosternum. (7) Ventral side of gnathosoma with palp. (8) Epistome.
Figs 13-16 in A second species of the family Eutrachytidae (Acari: Uropodina) in Africa: Mahnertellina paradoxa gen. nov., sp. nov. from the Ivory Coast
Figs 13-16. Photos of Mahnertellina paradoxa gen. nov., sp. nov., female holotype. (13) Dorsal view of idiosoma. (14) Anterior view of dorsal side of idiosoma. (15) Caudal view of dorsal side of idiosoma. (16) Ventral view of idiosoma.
Figs 9-12 in A second species of the family Eutrachytidae (Acari: Uropodina) in Africa: Mahnertellina paradoxa gen. nov., sp. nov. from the Ivory Coast
Figs 9-12. Mahnertellina paradoxa gen. nov., sp. nov., legs of female holotype in ventral view. (9) Leg I. (10) Leg II. (11) Leg III. (12) Leg IV.
Figs. 9–10. 9 in A review of the genus Agnathus (Coleoptera: Pyrochroidae: Agnathinae), with description of Agnathus secundus sp. nov. from China
Figs. 9–10. 9 – Czech Republic, Moravia, Litovelské Pomoraví Protected Landscape Area – locality with common occurrence of Agnathus decoratus (Germar, 1818). Photo by E. Svobodová. 10 – China, northeastern Yunnan province, Hengduan Mts., Baima Massif, ~3900 m a.s.l. – locality of paratypes of A. secundus sp. nov. Photo by V. Kubáň.
Fig. 6 in Desoria calderonis sp. nov., a new species of alpine cryophilic springtail (Collembola: Isotomidae) from the Apennines (Italy), with phylogenetic and ecological considerations
Fig. 6. Phylogenetic tree of Desoria calderonis sp. nov. and related species, on the basis of the cox1 gene. Names include the BOLD bin number, as well as the taxonomic attribution and number of sequences included in the bin. Genera were abbreviated where unambiguous within the bin. When records of the same bin had multiple taxonomic attributions, the one at the lowest level was retained if all were compatible. Alternatively, all were listed separately. Bootstrap support is indicated if> 80. ♠: olivacea- group; ♣: fennica-group; ♥: violacea-group of Desoria.
Fig. 4 in Desoria calderonis sp. nov., a new species of alpine cryophilic springtail (Collembola: Isotomidae) from the Apennines (Italy), with phylogenetic and ecological considerations
Fig. 4. Desoria calderonis sp. nov. A. Ventral chaetotaxy of head. B. Labial palps. C. Labrum. D. Mandible. E. Maxilla. F. Maxillary palp. G. Female genital opening. H. Male genital opening. I. VT in posterior view.
Fig. 5 in Desoria calderonis sp. nov., a new species of alpine cryophilic springtail (Collembola: Isotomidae) from the Apennines (Italy), with phylogenetic and ecological considerations
Fig. 5. Desoria calderonis sp. nov., scanning electron microscopy. A. Ocular plate. B. Claws. C. Antennal organ III. D. Retinaculum.
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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)
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DANDI Archive for NWB datasets
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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.