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Figure 7. Ampithoe kulafi Barnard, 1970, male 4.1 in Ampithoid amphipods from the South Pacific: Papua New Guinea, French Polynesia and New Caledonia
Figure 7. Ampithoe kulafi Barnard, 1970, male 4.1 mm, AM P.82824; female 4.2 mm, AM P.82825, Papua New Guinea. Scale bars 0.2 mm.
Figure 2. Ampithoe kava Myers, 1985, male 5 in Ampithoid amphipods from the South Pacific: Papua New Guinea, French Polynesia and New Caledonia
Figure 2. Ampithoe kava Myers, 1985, male 5 mm, AM P.82835; female 4 mm, AM P.82836, New Caledonia. Antenna 1 peduncle scale 0.5 mm, all other scales 0.2 mm.
Figure 3. Ampithoe kava Myers, 1985, male 5 in Ampithoid amphipods from the South Pacific: Papua New Guinea, French Polynesia and New Caledonia
Figure 3. Ampithoe kava Myers, 1985, male 5 mm, AM P.82835; female 4 mm, AM P.82836, New Caledonia. Scale bars 0.2 mm.
Figure 10. Ampithoe maxillissius Ledoyer, 1984, male 4 in Ampithoid amphipods from the South Pacific: Papua New Guinea, French Polynesia and New Caledonia
Figure 10. Ampithoe maxillissius Ledoyer, 1984, male 4 mm, AM P.82709; female 4 mm, AM P.82710, Austral Isles. Scale bars 0.2 mm.
Figure 44. Cymadusa filosa Savigny, 1816, male 11 in Ampithoid amphipods from the South Pacific: Papua New Guinea, French Polynesia and New Caledonia
Figure 44. Cymadusa filosa Savigny, 1816, male 11 mm, AM P.84496; female 14 mm, AM P.84497, New Caledonia. Scale bar 0.5 mm.
Figure 9. Ampithoe maxillissius Ledoyer, 1984, male 4 in Ampithoid amphipods from the South Pacific: Papua New Guinea, French Polynesia and New Caledonia
Figure 9. Ampithoe maxillissius Ledoyer, 1984, male 4 mm, AM P.82709; female 4 mm, AM P.82710, Austral Isles.
Figure 5. Ampithoe kulafi Barnard, 1970, male 4.1 in Ampithoid amphipods from the South Pacific: Papua New Guinea, French Polynesia and New Caledonia
Figure 5. Ampithoe kulafi Barnard, 1970, male 4.1 mm, AM P.82824; female, 4.2 mm AM P.82825, Papua New Guinea.
Figure 4. Ampithoe kava Myers, 1985, male 5 in Ampithoid amphipods from the South Pacific: Papua New Guinea, French Polynesia and New Caledonia
Figure 4. Ampithoe kava Myers, 1985, male 5 mm, AM P.82835; female 4 mm, AM P.82836, New Caledonia. Scale bars 0.2 mm.
Figure 12. Ampithoe maxillissius Ledoyer, 1984, male 4 in Ampithoid amphipods from the South Pacific: Papua New Guinea, French Polynesia and New Caledonia
Figure 12. Ampithoe maxillissius Ledoyer, 1984, male 4 mm, AM P.82709; female 4 mm, AM P.82710, Austral Isles. Scale bars 0.2 mm.
Figure 1 in A new damsel-dragonfly from the Mesozoic of China with a hook-like male anal angle (Odonata: Isophlebioptera: Campterophlebiidae)
Figure 1. Angustiphlebia mirabilis gen. nov. et sp. nov. (A) Photograph of holotype specimen CNU-ODO-NN2011016, part only; (B) photograph of forewing; (C) line drawing of forewing, part and counterpart combined; (D) photograph of hind wing; (E) drawing of hind wing. Scale bars represent 10 mm.
Figure 10 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 10. Parapolycope uncata sp. nov., male holotype (SUM-CO-2079). (A) Internal lateral view of left valve; (B) internal lateral view of right valve.
Figure 2 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 2. Scanning electron micrographs of valves of Parapolycope psittacina sp. nov., male paratype (SUM-CO-2067) (A, B); male paratype (SUM-CO-2068) (C, D); male paratype (SUM- CO-2069) (E); female paratype (SUM-CO-2073) (F, G); female paratype (SUM-CO-2074) (H, I); female paratype (SUM-CO-2075) (J). (A) External lateral view of right valve; (B) external lateral view of left valve; (C) internal lateral view of left valve; (D) internal lateral view of right valve; (E) dorsal view of carapace; (F) external lateral view of right valve; (G) external lateral view of left valve; (H) internal lateral view of left valve; (I) internal lateral view of right valve; (J) dorsal view of carapace.
Figure 4 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 4. Parapolycope psittacina sp. nov., male holotype (SUM-CO-2066). (A) Internal lateral view of left valve; (B) internal lateral view of right valve.
Figure 1 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 1. Map showing the distribution of Parapolycope psittacina sp. nov. and Parapolycope uncata sp. nov. See Table 1 for locality details.
Figure 13 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 13. Parapolycope uncata sp. nov., male holotype (SUM-CO-2079) (A); female paratype (SUM-CO-2087) (B). (A) Left lateral view of posterior trunk segment, furca, and copulatory organ of male; (A′) left furca; (A′′) right furca; (B) left lateral view of posterior trunk segment, furca and copulatory organ of female; (B′) left furca; (B′′) right furca. Abbreviations: cd, copulatory duct; fp, furcal projection; fs, female spermatheca.
Figure 7 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 7. Parapolycope psittacina sp. nov., male holotype (SUM-CO-2066) (A); female paratype (SUM-CO-2073) (B). (A) Left lateral view of posterior trunk segment, furca and copulatory organ of male; (A′) left furca; (A′′) right furca; (B) left lateral view of posterior trunk segment, furca and copulatory organ of female; (B′) left furca; (B′′) right furca. Abbreviations: cd, copulatory duct; fp, furcal projection; fs, female spermatheca.
Figure 3 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 3. Scanning electron micrographs of valves of internal lateral views of valve in Parapolycope psittacina sp. nov., male paratype (SUM-CO-2068). (A) Anterior part of marginal infold; (B) anterodorsal bar and groove; (C) socket at dorsal end of hinge structure; (D) posterodorsal bar of hinge structure; (E) posterior element of hinge structure; (F) posteroventral groove; (G) anterior part of marginal infold; (H) anterodorsal bar; (I) knob at dorsal end of hinge structure; (J) posterodorsal bar of hinge structure; (K) posterior element of hinge structure; (L) posteroventral bar.
Figure 5 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 5. Parapolycope psittacina sp. nov., male holotype (SUM-CO-2066) (A, C, E); female paratype (SUM-CO-2073) (B, D, F). (A) Left lateral view of male upper lip; (B) left lateral view of female upper lip; (C) male antennula; (C′) third podomere of male antennula; (D) female antennula; (E) male antenna; (E′) endopodite of male antenna; (F) female antenna except a part of the exopodite. Abbreviations: ba, basis; en, endopodite; ex, exopodite.
Figure 6 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 6. Parapolycope psittacina sp. nov., male holotype (SUM-CO-2066). (A) Mandibula; (B) maxillula; (B′) coxa of maxillula; (B′′) precoxa of maxillula; (C) fifth limb. Abbreviations: ba, basis; cx, coxa; en, endopodite; ep, epipodite; ex, exopodite; pc, precoxa.
Figure 14 in The taxonomic utility of the male upper lip morphology in the ostracod genus Parapolycope (Crustacea), with descriptions of two new species
Figure 14. Scanning electron micrographs of male upper lip; Parapolycope psittacina sp. nov. (A, B); Parapolycope uncata sp. nov. (C, D). (A) Left lateral view of whole body with left valve removed; (B) left lateral view of male upper lip; (C) left lateral view of whole body with left valve removed; (D) left lateral view of male upper lip. Abbreviations: an1, antennula; an2, antenna; cd, copulatory duct; fl, fifth limb; hs, hook-shaped structure; lf, left furca; m, mandibula; pts, posterior trunk segment; ul, upper lip.
ScienceDex guides
Understand access before you commit
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.