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4,521 results for “new subgenus”
Figs. 12-17 in A new species of the Acupalpus subgenus Stenolophidius JEANNEL, 1948 from Papua New Guinea, and redescriptions of Acupalpus (Stenolophidius) papua DARLINGTON, 1968 and Anthracus furvinus DARLINGTON, 1968 (Coleoptera, Carabidae, Harpalini, Stenolophina)
Figs. 12-17: Acupalpus (Stenolophidius) quadrisetosus nov.sp. Median lobe of aedoeagus lateral and dorsal aspect. (12) Holotype; (13-17) Paratypes, Dobodura.
Figs. 4-8 in A new species of the Acupalpus subgenus Stenolophidius JEANNEL, 1948 from Papua New Guinea, and redescriptions of Acupalpus (Stenolophidius) papua DARLINGTON, 1968 and Anthracus furvinus DARLINGTON, 1968 (Coleoptera, Carabidae, Harpalini, Stenolophina)
Figs. 4-8: Acupalpus (Stenolophidius) papua DARLINGTON. Median lobe of aedoeagus, lateral and dorsal aspect. (4, 7) Paratype, PNG, Hollandia; (5, 6, 8) Paratypes, PNG, Dobodura.
Figs. 9-11 in A new species of the Acupalpus subgenus Stenolophidius JEANNEL, 1948 from Papua New Guinea, and redescriptions of Acupalpus (Stenolophidius) papua DARLINGTON, 1968 and Anthracus furvinus DARLINGTON, 1968 (Coleoptera, Carabidae, Harpalini, Stenolophina)
Figs. 9-11: Acupalpus (Stenolophidius) quadrisetosus nov.sp. Habitus, head and pronotum. (9) Holotype, (10, 11) Paratypes, PNG, Dobodura.
Figs. 1-3 in A new species of the Acupalpus subgenus Stenolophidius JEANNEL, 1948 from Papua New Guinea, and redescriptions of Acupalpus (Stenolophidius) papua DARLINGTON, 1968 and Anthracus furvinus DARLINGTON, 1968 (Coleoptera, Carabidae, Harpalini, Stenolophina)
Figs. 1-3: Acupalpus (Stenolophidius) papua DARLINGTON. Habitus, head and pronotum. (1, 3) Paratypes, PNG, Dobodura, (2) Holotype.
Figs 5-8 in New species of Psychristus ANDREWES 1930 subgenus Nipponobradycellus HABU 1973 (Coleoptera, Carabidae, Harpalini, Stenolophina) from Nepal
Figs 5-8: Psychristus (Nipponobradycellus) umbraticornis nov.sp. Habitus (5). Median lobe, lateral view (6), median lobe, dorsal view (7). Left metepisternum (8). Scale bars: 1 mm (5); 0.5 mm (6, 7, 8).
Figs 1-4 in New species of Psychristus ANDREWES 1930 subgenus Nipponobradycellus HABU 1973 (Coleoptera, Carabidae, Harpalini, Stenolophina) from Nepal
Figs 1-4: Psychristus (Nipponobradycellus) schmidti nov.sp. Habitus (1). Median lobe, lateral view (2), median lobe, dorsal view (3). Left metepisternum (4). Scale bars: 1 mm (1); 0.5 mm (2, 3, 4).
Figs 9-12 in New species of Psychristus ANDREWES 1930 subgenus Nipponobradycellus HABU 1973 (Coleoptera, Carabidae, Harpalini, Stenolophina) from Nepal
Figs 9-12: Psychristus (Nipponobradycellus) glaber nov.sp. Habitus (9). Median lobe, lateral view (10), median lobe, dorsal view (11). Left metepisternum (12). Scale bars: 1 mm (9); 0,5 mm (10, 11, 12).
Fig. 7 in Two new cis-Andean species of the South American catfish genus Megalonema allied to trans-Andean Megalonema xanthum, with description of a new subgenus (Siluriformes: Pimelodidae)
Fig. 7. Megalonema orixanthum, holotype, Colombia, Meta State, río Metica, ca. 3 km SE of Hacienda Mozambique. ANSP 187449, 100 mm SL, in a, lateral, b, dorsal and c, ventral view; distal ends of barbels clipped from image c.
Fig. 6. Megalonema amaxanthum, a in Two new cis-Andean species of the South American catfish genus Megalonema allied to trans-Andean Megalonema xanthum, with description of a new subgenus (Siluriformes: Pimelodidae)
Fig. 6. Megalonema amaxanthum, a, lateral view of holotype, CBF 11896, 98 mm SL, b, lateral view of juvenile paratype, ANSP 187452, 39 mm SL, c, dorsal and d, ventral view of holotype; distal ends of barbels clipped from images c and d.
Fig. 5 in Two new cis-Andean species of the South American catfish genus Megalonema allied to trans-Andean Megalonema xanthum, with description of a new subgenus (Siluriformes: Pimelodidae)
Fig. 5. Scatter plots illustrating: a, anal-fin base length relative to standard length, and b, width between posterior nostrils relative to head length, in Megalonema xanthum (squares, n=23), M. amaxanthum (triangles, anal-fin base n=71, width between posterior nostrils n=70), and M. orixanthum (circles, n=41). In t-tests of the residuals from regression, M. amaxanthum proved to have a significantly longer anal-fin base length than M. orixanthum and M. xanthum (p-values <0.0001 for pairwise comparisons), and all three species are significantly different from each other in width between posterior nostrils with increasing relative widths from M. xanthum, M. amaxanthum to M. orixanthum (p-values for pairwise comparisons <0.0001).
Fig. 3 in Two new cis-Andean species of the South American catfish genus Megalonema allied to trans-Andean Megalonema xanthum, with description of a new subgenus (Siluriformes: Pimelodidae)
Fig. 3. Details of supraoccipital processes of a, Megalonema cf. platycephalum ANSP 178450, b, M. xanthum CAS 63674, c, M. amaxanthum, holotype, CBF 11896 (ex FMNH 106769), and d, M. orixanthum ANSP 148180, paratype. Paired lines on each image show the gap between the tip of supraoccipital process and supraneural anteromedial point in or just below skin.
Fig. 2 in Two new cis-Andean species of the South American catfish genus Megalonema allied to trans-Andean Megalonema xanthum, with description of a new subgenus (Siluriformes: Pimelodidae)
Fig. 2. Pelvic fins and basipterygia in Megalonema orixanthum, ANSP 187450, a, ventral view, b, dorsal view, and M. platycephalum, ANSP 189040, c, ventral view, d, dorsal view. alp = anterolateral process; amp = anteromedial process; bp = basal plate; dc = dorsal crest; pp = posterior process; r1-3 = pelvic-fin rays; vc = ventral crest.
Fig. 4. Megalonema xanthum, CAS 63674 in Two new cis-Andean species of the South American catfish genus Megalonema allied to trans-Andean Megalonema xanthum, with description of a new subgenus (Siluriformes: Pimelodidae)
Fig. 4. Megalonema xanthum, CAS 63674, paratype, 118 mm SL, in a, lateral, b, dorsal and c, ventral view.
Fig. 1. a in Two new cis-Andean species of the South American catfish genus Megalonema allied to trans-Andean Megalonema xanthum, with description of a new subgenus (Siluriformes: Pimelodidae)
Fig. 1. a, Weberian complex, post-Weberian vertebrae, basioccipital region and upper bones of shoulder girdle of Megalonema cf. platycephalum, ANSP 178515. b, Weberian complex and gas bladder of M. orixanthum, ANSP 187450. aoc = bony aortic canal; bocc = basioccipital; ccfl = ventral flange of compound centrum; tcom = position of gas bladder tubular commissure posterior to ventral flange; clr = cleithral ring; cpcv = position of bony canal for passage of posterior cardinal vein; gbld = lateral distention of gas bladder; gbtc = transverse commissure of gas bladder; ij5-6 = typical intervertebral joint between c5 and c6; tp4 = ventrally incomplete bony capsules surrounding lateral lobes of gas bladder formed by deeply down-curved 4th transverse processes of Weberian complex; c1, c5, c6, c7 = vertebrae designated by their ordinal numbers.
Figs 21-27 in Three new species of the subgenus Trichocellus GANGLBAUER 1891 of the genus Dicheirotrichus JACQUELIN DU VAL 1857 from the East Palaearctic, with description of the male of D. stenothorax (KABAK & KATAEV 1994) (Coleoptera, Carabidae)
Figs 21-27: Dicheirotrichus (Trichocellus) subangularis spec. nova. (21) Pronotum. (22) Left metepisternum. (23) Male protarsus. (24-26) Median lobe of aedeagus (holotype), (24, 25) dorsal view and (26) lateral view. (27) Hemisternite and stylus. Scales = 0.5 mm (A: Fig. 21; B: Figs 22- 23; C: Figs 24-27).
Figs 11-18 in Three new species of the subgenus Trichocellus GANGLBAUER 1891 of the genus Dicheirotrichus JACQUELIN DU VAL 1857 from the East Palaearctic, with description of the male of D. stenothorax (KABAK & KATAEV 1994) (Coleoptera, Carabidae)
Figs 11-18: Dicheirotrichus (Trichocellus) latimanus spec. nova. (11) Pronotum. (12) Male protarsus. (13) Hemisternite and stylus. (14) Left metepisternum. (15-16) Median lobe of aedeagus (holotype), (15) dorsal view, (16) lateral view. (17) Male mesotarsus. (18) Female mesotarsus. Figs 19-20: D. (T.) angularis (REITTER) (Amur Prov.). Median lobe of aedeagus, (19) dorsal view, (20) lateral view. Scales = 0.5 mm (A: Fig. 11; B: Figs 12, 14, 17, 18; C: Figs 13, 15-16, 19-20).
Figs 1-6 in Three new species of the subgenus Trichocellus GANGLBAUER 1891 of the genus Dicheirotrichus JACQUELIN DU VAL 1857 from the East Palaearctic, with description of the male of D. stenothorax (KABAK & KATAEV 1994) (Coleoptera, Carabidae)
Figs 1-6: Dicheirotrichus (Trichocellus) himalayanus spec. nova. (1) Pronotum. (2) Left metepisternum. (3) Hemisternite and stylus. (4-5) Median lobe of aedeagus (holotype), (4) dorsal view, (5) lateral view. (6) Male protarsus. Figs 7-10: D. (T.) stenothorax (KABAK & KATAEV). (7) Left metepisternum (Volgograd Prov.). (8) Male protarsus. (9-10) Median lobe of aedeagus (Elton), (9) dorsal view, (10) lateral view. Scales = 0.5 mm (A: Fig 1; B: Figs 2, 6-8; C: Figs 3-5, 9-10).
Fig. 26 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Fig. 26. Distribution of Plusiocampinae (Plusiocampa Silvestri, 1912 and Hystrichocampa Condé, 1962) in Central Europe; blue indicates karst regions.
Figs 24–25 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Figs 24–25. Plusiocampa (Plusiocampa) dobati Condé in Dobat, 1975. Urosternite I. 24. Male. 25. Female. a1 = a1-glandular setae. Scale bars = 0.1 mm.
Figs 18–23 in An unexpected discovery of a new subgenus and a species of Plusiocampa (Campodeidae, Diplura) alongside an overview of Central European subterranean campodeids
Figs 18–23. Plusiocampa (Plusiocampa) dobati Condé in Dobat, 1975. 18. Cupuliform organ of the last antennomere. 19. Central cylindrical structure of an olfatory chemoreceptor sensillum of the cupuliform organ. 20. Gouge sensilla. 21. Frontal process. 22. Telotarsal end of metathoracic leg. 23. Detail of telotarsal claw. Scale bars in µm.
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.