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542 results for “Hawaiian Islands”
FIGURE 8 in A revision of the Hawaiian and Wake Island species of the genus Conchopus Takagi (Diptera, Dolichopodidae)
FIGURE 8. Conchopus crassinervis sp. nov., male abdominal sterna: (a) 2nd (top) to 5th (bottom); (b) pedunculate process in lateral view; (c) sternum 6.
FIGURE 7 in A revision of the Hawaiian and Wake Island species of the genus Conchopus Takagi (Diptera, Dolichopodidae)
FIGURE 7. Conchopus crassinervis sp. nov., legs of male: (a) distal part of tibia, tarsal segments 1–2 of left foreleg in posterior view; (b) right foreleg in anterior view; (c) left middle femur in anterior view.
FIGURE 6 in A revision of the Hawaiian and Wake Island species of the genus Conchopus Takagi (Diptera, Dolichopodidae)
FIGURE 6. Conchopus ciliatus sp. nov., male genitalia: (a) hypopygium; (b) ventral lobe; (c) cercus; (d) hypandrium in lateral view; (e) hypandrium in dorsal view.
FIGURE 5 in A revision of the Hawaiian and Wake Island species of the genus Conchopus Takagi (Diptera, Dolichopodidae)
FIGURE 5. Conchopus ciliatus sp. nov., male abdominal sterna: (a) 1st (top) to 5th (bottom); (b) pedunculate process in lateral view; c, sternum 6.
FIGURE 3 in A revision of the Hawaiian and Wake Island species of the genus Conchopus Takagi (Diptera, Dolichopodidae)
FIGURE 3. Conchopus acrosticalis (Parent), male genitalia: (a) hypopygium; b, ventral lobe; c, cercus; d, hypandrium in lateral view; e, hypandrium in dorsal view.
FIGURE 2 in A revision of the Hawaiian and Wake Island species of the genus Conchopus Takagi (Diptera, Dolichopodidae)
FIGURE 2. Conchopus acrosticalis (Parent), male abdominal sterna: (a) 1st (top) to 5th (bottom); (b) pedunculate process in lateral view; c, sternum 6.
FIGURE 1 in A revision of the Hawaiian and Wake Island species of the genus Conchopus Takagi (Diptera, Dolichopodidae)
FIGURE 1. Conchopus acrosticalis (Parent), legs of male: (a) left fore leg in posterior view; (b) distal part of tibia, tarsal segments 1–2 of right fore leg in anterior view; (c) left middle femur in anterior view.
FIGURE 4 in A revision of the Hawaiian and Wake Island species of the genus Conchopus Takagi (Diptera, Dolichopodidae)
FIGURE 4. Conchopus ciliatus sp. nov., legs of male: (a) left fore leg in posterior view; (b) distal part of tibia, tarsal segments 1–2 of right foreleg in anterior view; c, left middle femur in anterior view.
FIGURE 7 in Pele ramseyi, a new genus and new species of anchialine swimming crab (Crustacea: Brachyura: Portunidae) from the Hawaiian Islands
FIGURE 7. Pele ramseyi new genus, new species, holotype male (9.32 × 4.99 mm) (BPBM S15980). A, right side of carapace; B, left side, frontal view showing antenna, antennules and epistome; C, left eye peduncle and cornea; D, right third maxilliped; E, F, anterior thoracic sternum; G, right thoracic sternites 4–6 showing male abdominal locking press-button. cx5 = coxa of fourth ambulatory leg; go = male gonopore; pb = press-button; st3–8 = thoracic sternites 3–8. Scales: A, E, F = 1.0 mm; B– D, G = 0.5 mm.
FIGURE 1 in Pele ramseyi, a new genus and new species of anchialine swimming crab (Crustacea: Brachyura: Portunidae) from the Hawaiian Islands
FIGURE 1. Type locality of Pele ramseyi new genus, new species. Anchialine pools in the lava beds of Maui, Ahihi-Kina'u Natural Area Reserve, Maui, Hawaiian Islands. (Photograph: M. Ramsey).
FIGURE 4 in Pele ramseyi, a new genus and new species of anchialine swimming crab (Crustacea: Brachyura: Portunidae) from the Hawaiian Islands
FIGURE 4. Pele ramseyinew genus, new species, holotype male (9.32 × 4.99 mm) (BPBM S15980). A, overall dorsal view; B, frontal view of carapace; C, frontal view of carapace showing mouthparts.
FIGURE 9 in Pele ramseyi, a new genus and new species of anchialine swimming crab (Crustacea: Brachyura: Portunidae) from the Hawaiian Islands
FIGURE 9. Pele ramseyi new genus, new species, paratype female (11.53 × 6.14 mm) (ZRC 2010.0322). Thoracic sternum showing vulvae on thoracic sternite 6.
FIGURE 6 in Pele ramseyi, a new genus and new species of anchialine swimming crab (Crustacea: Brachyura: Portunidae) from the Hawaiian Islands
FIGURE 6. Pele ramseyi new genus, new species, holotype male (9.32 × 4.99 mm) (BPBM S15980). A, ventral view of carapace showing anterior thoracic sternum (abdomen removed); B, outer view of right major chela; C, outer view of left minor chela.
FIGURE 3 in Pele ramseyi, a new genus and new species of anchialine swimming crab (Crustacea: Brachyura: Portunidae) from the Hawaiian Islands
FIGURE 3. Pele ramseyi new genus, new species, colours in life. A, C, paratype female (11.53 × 6.14 mm) (ZRC 2010.0322); B, holotype male (9.32 × 4.99 mm) (BPBM S15980). (Photographs: M. Ramsey)
FIGURE 5 in Pele ramseyi, a new genus and new species of anchialine swimming crab (Crustacea: Brachyura: Portunidae) from the Hawaiian Islands
FIGURE 5. Pele ramseyi new genus, new species, dorsal views of carapaces. A, holotype male (9.32 × 4.99 mm) (BPBM S15980); B, paratype female (11.53 × 6.14 mm) (ZRC 2010.0322).
FIGURE 2 in Pele ramseyi, a new genus and new species of anchialine swimming crab (Crustacea: Brachyura: Portunidae) from the Hawaiian Islands
FIGURE 2. Pele ramseyi new genus, new species, colours in life. A, B, specimens of Pele ramseyi, new genus, new species, in situ in anchialine pools (specimens not caught); C, paratype female (11.53 × 6.14 mm) (ZRC 2010.0322). (Photographs: M. Ramsey)
FIGURE 8 in Pele ramseyi, a new genus and new species of anchialine swimming crab (Crustacea: Brachyura: Portunidae) from the Hawaiian Islands
FIGURE 8. Pele ramseyi new genus, new species, holotype male (9.32 × 4.99 mm) (BPBM S15980). A, right merus and carpus of cheliped; B, right last ambulatory leg; C, male abdomen; D, E, left G1 (setae along basal part not drawn); F, left G2 (setae not drawn). Scales: A, B = 1.0 mm; C–F = 0.5 mm.
FIGURE 3. Babamunida debrae, n in Babamunida debrae, a new species of squat lobster (Crustacea: Anomura: Galatheoidea: Munididae) from the Hawaiian Islands
FIGURE 3. Babamunida debrae, n. sp., female holotype (USNM 1147923). A, anterior part of cephalothorax, showing epistome, antennule, antenna and eye, right, ventral. B, endopod of left Mxp3, lateral. C, merus of right Mxp3, lateral. D, right P1, dorsal. E, same, denuded, proximal articles omitted, dorsal. F, right P2, lateral. G, right P3, setae omitted, lateral. H, right P4, setae omitted, lateral. Scales = 1 mm.
FIGURE 2. Babamunida debrae, n in Babamunida debrae, a new species of squat lobster (Crustacea: Anomura: Galatheoidea: Munididae) from the Hawaiian Islands
FIGURE 2. Babamunida debrae, n. sp., A, C–E, female holotype (USNM 1147923); B, male paratype (USNM 1147924). A, carapace and abdomen, dorsal. B, anterior half of carapace, dorsal. C, anterior part of cephalothorax, right, dorsal. D, same, left, lateral. E, sternal plastron. Scales = 1 mm.
FIGURE 1. Babamunida debrae, n in Babamunida debrae, a new species of squat lobster (Crustacea: Anomura: Galatheoidea: Munididae) from the Hawaiian Islands
FIGURE 1. Babamunida debrae, n. sp., colour images taken by D. McCrea. A, holotype, female, 4.9 mm (USNM 1147923). B, same, lateral view. C, in situ image of a squat lobster in a lava hole, 26 m deep, west coast of Hawai'i, not collected. D, same.
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
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Annotated Behaviour and Observability Dataset (ABODe)
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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.