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Fig. 1 in Description of a new genus and species of Candonopsini (Crustacea, Ostracoda, Candoninae) from the alluvial valley of the Upper Paraná River (Brazil, South America)
Fig. 1. Map of the area, indicating localities of Candobrasilopsis rochai gen. nov. sp. nov. and C. brasiliensis (Sars, 1901) comb. nov. were collected. Detailed occurrences are indicated in Table 1. Locality 13 (samples PAR193 and PAR195) is the type locality of C. rochai gen. nov. sp. nov.
Fig. 9 in Scolopendrellidae (Myriapoda, Symphyla) from the Afrotropics with descriptions of seven new species
Fig. 9. Remysymphyla spinosa sp. nov. A. Head and first 3 tergites (T1, T2, T3) of holotype, dorsal view. Arrows, digitiform end of triangular processes; al, anterolateral setae; cr, central rod; fb, frontal branches; lp, lateral protuberance of the head; mb, median branches. B. Head and first tergite (T1) of paratype, dorsal view. Cr, central rod; lp, lateral protuberance of the head; mb, median branches. C. Antennae of paratype. Arrows, transversal depression of apical segments. D. Stylus of the leg 11 (arrow) of paratype. E. Detail of first (T1) and second (T2) tergites of holotype. Arrows, digitiform end of triangular processes; al, anterolateral seta; cs, central seta. F. Head and first legs of paratype, lateral view. G. Detail of the surface of the head of paratype. H. Detail of the first leg of paratype.
Fig. 6 in Scolopendrellidae (Myriapoda, Symphyla) from the Afrotropics with descriptions of seven new species
Fig. 6. Symphylella tanganyika sp. nov., holotype (dorsal views) and paratype (ventral and lateral views). A. Head and first 4 tergites (T1, T2, T3, T4), dorsal view. Cr, central rod; fb, frontal branches; lp, lateral protuberances of the head. B. Detail of the surface of the head and lateral protuberance (lp). C. Detail of the first leg. D. Head and first 2 pairs of legs, ventral view. E. Detail of first (T1) and second (T2) tergites. Arrows, small end-swelling of triangular processes; al, anterolateral setae; as, apical setae; cs, central seta of the posteromarginal setae; ibs, inner basal setae of the posteromarginal setae; s, seta between first and second tergites. F. Left antenna. Arrows, longer inner setae of the second and third segments. G. Stylus of the leg 11 (arrow). H. Posterior part of the trunk, last pairs of legs and cerci (C), lateral view. Arrows, longer setae of the femur (f), tibia (t) and tarsus (ta) of last legs; es, erect setae of ventral side of right cercus. I. Last tergite and cerci (C), dorsal view. As, apical setae; es, erect setae of outer side of cerci; ta, terminal area.
Fig. 4 in Scolopendrellidae (Myriapoda, Symphyla) from the Afrotropics with descriptions of seven new species
Fig. 4. Symphylella lubumbashi sp. nov., holotype (dorsal views) and paratype (ventral and lateral views). A. Head and first 4 tergites (T1, T2, T3, T4), dorsal view. Cr, central rod; lp, lateral protuberances of the head. B. Detail of the surface of the head. C. Detail of the first leg. D. Head and first 2 pairs of legs, ventro-lateral view. E. Detail of first (T1) and second (T2) tergites. Arrows, small end-swelling of triangular processes; al, anterolateral setae; as, apical setae; cs, central seta of the posteromarginal setae; ibs, inner basal setae of the posteromarginal setae; s, seta between first and second tergites. F. Right antenna. G. Stylus of the leg 11 (arrow). H. Posterior part of the trunk, last pair of legs and cerci (C), lateral view. White arrows, protruding setae of the femur (f), tibia (t) and tarsus (ta) of last left leg; grey arrows, protruding setae of tibia (t) and tarsus (ta) of the right left; vs, ventral setae of right cercus, in a row. I. Last tergite and cerci (C), dorsal view. As, apical setae; es, erect setae of outer side of cerci, ta, terminal area.
Fig. 3 in Scolopendrellidae (Myriapoda, Symphyla) from the Afrotropics with descriptions of seven new species
Fig. 3. Symphylella kalundu sp. nov., holotype (dorsal views) and paratype (ventral and lateral views). A. Head and first 4 tergites (T1, T2, T3, T4), dorsal view. Arrow: node in the middle of the central rod (cr); fb, frontal branches, lp, lateral protuberance of the head. B. Detail of the surface of the head and lateral protuberance (lp). C. Detail of the first leg. D. Head and anterior part of the trunk, ventral view. E. Detail of the first (T1) and second (T2) tergites. Arrows, small end-swelling of triangular processes; as, apical setae; cs, central seta of the posteromarginal setae; ibs, inner basal setae of the posteromarginal setae; s, seta between first and second tergites. F. Right antenna. G. Last tergite, last pair of legs and cerci (C), dorsal view. Arrows, longer and erect setae of tarsus (t) of last pair of legs; ta, terminal area of cerci. H. Posterior part of the trunk, last right leg and right cercus (C), lateral view. Es, erect setae of ventral side of cerci; t, tarsus of last leg, without setae. I. Stylus of the leg 10 (arrow and circle).
Fig. 4 in Echiodon prionodon, a new species of Carapidae (Pisces, Ophidiiformes) from New Zealand
Fig. 4. Distribution of Echiodon prionodon. The red circle depicts the locality where the holotype was caught.
Fig. 8 in Scolopendrellidae (Myriapoda, Symphyla) from the Afrotropics with descriptions of seven new species
Fig. 8. Remysymphyla hova Aubry & Masson, 1952. Paratypes (MNHN K002) from Ambanja (A-D) and Ambatolampy (E and F), Madagascar. A. Head and anterior half of the trunk, dorsal view. T1-T11, tergites 1-11; TA1-TA9, tergal areas 1-9 (fide Domínguez Camacho 2009, fig. 4, page 108). Doubled labeling of tergites shows partial sclerotization. B. Head and first pair of legs, ventral view. C, D. Detail of the first leg of two different specimens. E. Cerci (C) last tergal areas (TA14, TA15) (fide Domínguez Camacho 2009, fig. 4, page 108) corresponding to tergites 18-21 (T18-T21), dorsal view. Only exterior parts of tergites 17 and 18 are sclerotized (doubled labeled). F. Last tergite (T21) and cerci (C) of other specimen. Arrows, diagonal basis of the terminal areas (ta).
Fig. 11. — A-C in Scolopendrellidae (Myriapoda, Symphyla) from the Afrotropics with descriptions of seven new species
Fig. 11. — A-C. Ribautiella zagnanadina Brölemann, 1926. Museum material (MRAC 7832). — D-F. Ribautiella schoutedeni Hinschberger, 1954. Museum material (MRAC 6033). — A, D. Head and tergal areas 1-3 (TA1-TA3) (fide Domínguez Camacho 2009: 108, fig. 4). Arrows, fold in the first tergite – artefact. B, E. Penultimate (T22) and last (T23) tergites, and cerci (C). Arrows, diagonal end of cerci – basis of the terminal areas (ta). C, F. Detail of the terminal area of the cerci. Arrow, striae.
Fig. 7 in Scolopendrellidae (Myriapoda, Symphyla) from the Afrotropics with descriptions of seven new species
Fig. 7. Schemata of the three first tergites and chaetotaxy of the described species of Symphylella. A. S. erecta sp. nov. B. S. fuko sp. nov. C. S. kalundu sp. nov. D. S. lubumbashi sp. nov. E. S. malagassa sp. nov. F. S. tanganyika sp. nov. — Marginal setae of second and third tergites labelled: lm, lateromarginal setae; lm (al), anterolateral seta of lateromarginal; p, posteromarginal setae; p(a), apical setae – belonging to the posteromarginal setae; p(c), central setae of posteromarginal; p(ib), inner basal setae of posteromarginal; s, seta between first and second tergites. Scale: 50 μm.
Fig. 2 in Echiodon prionodon, a new species of Carapidae (Pisces, Ophidiiformes) from New Zealand
Fig. 2. Echiodon prionodon sp. nov., left lateral view of the left premaxillary fang showing the posterior serrated margin.
Fig. 6 in Capalictus, a new subgenus of Lasioglossum Curtis, 1833 from South Africa, with description of three new species (Hymenoptera, Apoidea, Halictidae)
Fig. 6. Lasioglossum (Capalictus) tigrinum sp. nov., Ƌ. A. Head and forelegs. B. Mesoscutum and scutellum. C. Propodeum and metanotum. D. Metasoma, dorsal view. E. First tergum. F. Metasoma ventral view. Scale line = 0,5 mm.
Fig. 5 in Capalictus, a new subgenus of Lasioglossum Curtis, 1833 from South Africa, with description of three new species (Hymenoptera, Apoidea, Halictidae)
Fig. 5. Lasioglossum (Capalictus) hantamense sp. nov., ♀. A. Head. B. Mesoscutum and scutellum. C. Propodeum and metanotum. D. First tergum. E. Metasoma. Scale line = 0,5 mm.
Fig. 10. Dorsal habitus. — A-B in Capalictus, a new subgenus of Lasioglossum Curtis, 1833 from South Africa, with description of three new species (Hymenoptera, Apoidea, Halictidae)
Fig. 10. Dorsal habitus. — A-B. Lasioglossum mosselinum (Cockerell, 1945). A. ♀. B. Ƌ. — C-D. Lasioglossum timmermanni sp. nov. C. ♀. D. Ƌ. Scale line = 1 mm.
Fig. 18 in Capalictus, a new subgenus of Lasioglossum Curtis, 1833 from South Africa, with description of three new species (Hymenoptera, Apoidea, Halictidae)
Fig. 18. Summary of phylogenetic relationships of Capalictus relative to remaining Lasioglossum, based on Gibbs et al. 2012. Numbers represent posterior probability support values.
Fig. 1 in Capalictus, a new subgenus of Lasioglossum Curtis, 1833 from South Africa, with description of three new species (Hymenoptera, Apoidea, Halictidae)
Fig. 1. — Lasioglossum (Capalictus) mosselinum (Cockerell, 1945). A. Head showing lower paraocular area. C, E. Wing venation showing apex of marginal cell and weak veins of submarginal cells. C. ♀. E. Ƌ. F. ♀, propodeum and metapostnotum (dls = dorso- lateral slopes). — Lasioglossum (Afrodialictus) sp. B. Head showing lower paraocular area. — Lasioglossum (Sellalictus) sp. D. ♀, wing venation showing apex of marginal cell and weak veins of submarginal cells. Scale line = 0,5 mm.
Fig. 2 in Capalictus, a new subgenus of Lasioglossum Curtis, 1833 from South Africa, with description of three new species (Hymenoptera, Apoidea, Halictidae)
Fig. 2. Lasioglossum (Capalictus) mosselinum (Cockerell, 1945), ♀ holotype. A. Total view. B. Head. C. Mesosoma. D. Propodeum. E. First tergum. F. Metasoma. Scale line = 0,5 mm.
Fig. 16. A-D in Capalictus, a new subgenus of Lasioglossum Curtis, 1833 from South Africa, with description of three new species (Hymenoptera, Apoidea, Halictidae)
Fig. 16. A-D. Lateral view of mesosoma. E-F. Last terga. ♀♀. — A. Lasioglossum (Capalictus) mosselinum (Cockerell, 1945). — B. Lasioglossum (Capalictus) timmermanni sp. nov. — C. Lasioglossum (Capalictus) hantamense sp. nov. — D. Lasioglossum (Capalictus) tigrinum sp. nov. — E. Lasioglossum (Capalictus) mosselinum (Cockerell, 1945). — F. Lasioglossum (Capalictus) timmermanni sp. nov. Scale line = 0,5 mm.
Fig. 15 in Capalictus, a new subgenus of Lasioglossum Curtis, 1833 from South Africa, with description of three new species (Hymenoptera, Apoidea, Halictidae)
Fig. 15. Ƌ genitalia, dorsal view. — A. Lasioglossum (Capalictus) mosselinum (Cockerell, 1945). — B. Lasioglossum (Capalictus) timmermanni sp. nov. — C. Lasioglossum (Capalictus) hantamense sp. nov. — D. Lasioglossum (Capalictus) tigrinum sp. nov. Scale line = 0,25 mm.
Fig. 14 in Capalictus, a new subgenus of Lasioglossum Curtis, 1833 from South Africa, with description of three new species (Hymenoptera, Apoidea, Halictidae)
Fig. 14. Ƌ hind legs (left) and mid legs (right). — A-B. Lasioglossum (Capalictus) mosselinum (Cockerell, 1945). — C-D. Lasioglossum (Capalictus) timmermanni sp. nov. — E-F. Lasioglossum (Capalictus) hantamense sp. nov. — G-H. Lasioglossum (Capalictus) tigrinum sp. nov. Scale line = 0,5 mm.
Fig. 12 in Capalictus, a new subgenus of Lasioglossum Curtis, 1833 from South Africa, with description of three new species (Hymenoptera, Apoidea, Halictidae)
Fig. 12. Lateral habitus, Ƌ. — A. Lasioglossum (Capalictus) mosselinum (Cockerell, 1945). — B. Lasioglossum (Capalictus) timmermanni sp. nov. — C. Lasioglossum (Capalictus) hantamense sp. nov.. — D. Lasioglossum (Capalictus) tigrinum sp. nov. Scale line = 1 mm.
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.