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FIGURE 8. Hypanocotyle bullardi. A in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records

FIGURE 8. Hypanocotyle bullardi. A. Whole mount; B. Sucker-complex sclerites 1–3; C. Hamulus. Abbreviations as for Figures 1, 2 and 3; note: proximal portion of vagina (pv) is unilaterally dilated as a likely result of recent copulation. Scale bars: A = 4000 μm; B = 500 μm; C = 60 μm.

opennotspecifiedMar 2023View details →
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FIGURE 2 in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records

FIGURE 2. Erpocotyle catenulata male reproductive system. Abbreviations: dr, distal region of male copulatory organ (= cr, cirrus); mco, male copulatory organ; pc, prostatic gland cells; vd, vas deferens. Scale bar = 100 μm.

opennotspecifiedMar 2023View details →
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FIGURE 10 in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records

FIGURE 10. Hypanocotyle bullardi female reproductive system. Abbreviations as for Figures 3 and 7. Scale bar = 1000 μm.

opennotspecifiedMar 2023View details →
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FIGURE 7 in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records

FIGURE 7. Heteronchocotyle gymnurae female reproductive system. Abbreviations: fsr, false seminal receptacle. Other abbreviations as for Figures 3 and 4. Scale bar = 200 μm.

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FIGURE 4. Heteronchocotyle gymnurae. A in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records

FIGURE 4. Heteronchocotyle gymnurae. A. Whole mount, ventral view; B. Sucker-complex sclerites 1a, b; 2a, b; 3 (representing both a and b); C. Hamulus. Abbreviations: ag, anterior gland duct openings; eg, egg; pg, pharyngeal glands; pv, proximal section of vagina; other abbreviations as for Figures 1, 2 and 3. Scale bars: A = 2000 μm; B = 100 μm; C = 50 μm.

opennotspecifiedMar 2023View details →
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FIGURE 1. Erpocotyle catenulata. A in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records

FIGURE 1. Erpocotyle catenulata. A. Whole mount, ventral view; B. Sucker-complex sclerites 1–3; C. Hamulus. Abbreviations: app, appendix; aps, appendix sucker; i, intestinal caecum; os; oral sucker; p, pharynx; pap, region of papillae associated with oral sucker; t, testes; vit, vitellarium; vp, vaginal pore. Scale bars: A = 4000 μm; B = 500 μm; C = 70 μm.

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FIGURE 6 in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records

FIGURE 6. Heteronchocotyle gymnurae male reproductive system. Abbreviations: cgp, common genital pore; dvd, distal glandular region of vas deferens. Other abbreviations as for Figure 4. Scale bar = 400 μm.

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FIGURE 9 in Species of Hexabothriidae (Monogenea) may have extensive distribution ranges reflecting multiple host species: evidence from three new South African records

FIGURE 9. Hypanocotyle bullardi male reproductive system. Abbreviations: cgp, common genital pore; dvd, distal vas deferens; lcc, large conspicuous cells of the proximal vas deferens wall; ms, muscular proximal section of male copulatory organ; nms, non-muscular proximal section of male copulatory organ; pvd, proximal vas deferens; ve, vas efferens; other abbreviations as for Figure 3. Scale bar = 1000 μm.

opennotspecifiedMar 2023View details →
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FIGURE 1 in The genus Contracaecum Raillet & Henry (Nematoda: Anisakidae): host and geographical distribution on Neotropical and Antarctic species

FIGURE 1. Distribution of Neotropical and Antarctic Contracaecum species indicated by reference numbers according to Table 1.

opennotspecifiedMar 2023View details →
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FIGURE 3 in The Chirostyloidea of the Northeastern Pacific: Host Associations, Range Extensions and a New Species (Decapoda: Anomura

FIGURE 3. Uroptychus nicoleae sp.nov. A, first pereopod ischium, merus and carpus; B, first pereopod propodus and dactyl; C, lateral view of body showing pereopods 2–4; D, pereopod 4 distal end of propodus and dactyl.

opennotspecifiedMay 2023View details →
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FIGURE 2 in The Chirostyloidea of the Northeastern Pacific: Host Associations, Range Extensions and a New Species (Decapoda: Anomura

FIGURE 2. Uroptychus nicoleae sp.nov. A, carapace in dorsal view antenna; B, sternum; C, telson; D, carapace in lateral view; E, antennule; F, antenna; G, third maxilliped.

opennotspecifiedMay 2023View details →
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FIGURE 5. A in The Chirostyloidea of the Northeastern Pacific: Host Associations, Range Extensions and a New Species (Decapoda: Anomura

FIGURE 5. A, Sternostylus iaspis on Paragorgia pacifica, San Clemente Escarpment. B, Sternostylus perarmatus on Antipathes dendrochristos, Footprint Reef (34o0'N 119o31'W).

opennotspecifiedMay 2023View details →
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Figure 11 in Discovery of a new species and host record of Holophryxus Richardson, 1905 (Isopoda: Dajidae) from the central Arctic: a model of enhanced descriptive standards for epicaridean isopods

Figure 11. Holophryxus citriformis sp. nov. Paratype, male: A right pereopod 1 (P1), anterior view; B dactylus of P1, anterior view; C carpus of P1, medial view, showing sensory elements (a-e); D right pereopod 2 (P2), medial view; E dactylus of P2, medial view; F carpus of P2, medial view, showing sensory elements (a-e). Scale bars in μm.

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Figure 4 in Discovery of a new species and host record of Holophryxus Richardson, 1905 (Isopoda: Dajidae) from the central Arctic: a model of enhanced descriptive standards for epicaridean isopods

Figure 4. Holophryxus citriformis sp. nov. Holotype, adult female: A, anterior part of body, showing cephalic and thoracic regions with associated limbs, ventral view; left pereopods and incubatory plate 1 omitted to show position of incubatory plates 2–4 (A1 = antennule, A2 = antenna, CP 1–4 = coxal plates 1–4, CR = cephalic ridge, IP1–5 = incubatory plates 1–5, Md = mandible, P5 = pereopod 5, SP = sternal plate); B, posterior part of body, showing spinous margins of incubatory plates (IP5) and position of anal opening (indicated by arrow).

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Figure 15 in Discovery of a new species and host record of Holophryxus Richardson, 1905 (Isopoda: Dajidae) from the central Arctic: a model of enhanced descriptive standards for epicaridean isopods

Figure 15. Schematic showing general morphology of cephalon in Ho. citriformis (A-C) (Type 1), Ho. quadratahumerale (D-F) (Type 2) and Ho. acanthephyrae (G-I) (Type 3) in ventral (A, D, G), dorsal (B, E, H) and lateral (C, F, I) aspect. CP1–2 = coxal plates 1–2, DP = dorsal prominence, HE = hood-like extension, L = length of ventral cephalic ridge, VCR = ventral cephalic ridge (shaded), W = width of ventral cephalic ridge.

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Figure 8 in Discovery of a new species and host record of Holophryxus Richardson, 1905 (Isopoda: Dajidae) from the central Arctic: a model of enhanced descriptive standards for epicaridean isopods

Figure 8. Holophryxus citriformis sp. nov. Paratype, male: A, habitus, ventral view; B, habitus, lateral view. Scale bar in μm.

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Figure 5 in Discovery of a new species and host record of Holophryxus Richardson, 1905 (Isopoda: Dajidae) from the central Arctic: a model of enhanced descriptive standards for epicaridean isopods

Figure 5. Holophryxus citriformis sp. nov. Holotype, adult female, right pereopod 1: A, whole limb, anterior overview (spinular surface ornamentation omitted; basis (B), carpus (C), dactylus (D), ischiomerus (I), propodus (P); B, detail of distal part of ischiomerus (fused ischium and merus), showing spinular combs on anterior surface; C, medial margin of carpus, showing position of sensory elements, anterior view; D, medial (palmar) margin of propodus and carpus, showing position of sensory elements, posterior view; E, dactylus, posterior view. Scale bars in μm.

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Figure 16 in Discovery of a new species and host record of Holophryxus Richardson, 1905 (Isopoda: Dajidae) from the central Arctic: a model of enhanced descriptive standards for epicaridean isopods

Figure 16. Holophryxus citriformis sp. nov. Holotype, adult female, right pereopod 2; posterior view, showing segmentation and intrinsic musculature (surface ornamentation and sensory structures omitted). Abbreviations: bas. ext. 1–2 = basal extensor muscles 1–2, bas. flex. 1–4 = basal flexor muscles 1–4, isch. ext. = ischiomeral extensor muscle, isch. flex. 1–3 = ischiomeral flexor muscles 1–3, prop. ext. = propodal extensor muscle, prop. flex. 1–2 = propodal flexor muscles 1–2.

opennotspecifiedMar 2023View details →
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Figure 1 in Discovery of a new species and host record of Holophryxus Richardson, 1905 (Isopoda: Dajidae) from the central Arctic: a model of enhanced descriptive standards for epicaridean isopods

Figure 1. Macrophotographs. Holophryxus citriformis sp. nov. Holotype, adult female: A, habitus, ventral view, live specimen; B, habitus, dorsal view, live specimen; C, habitus, lateral view, preserved specimen; D, eggs recovered after spawning by female; E, live specimen attached to carapace of shrimp host. Hymenodora glacialis: F, dorsal view, showing marks left by parasitic isopod; G, close-up of marks left around attachment site of Ho. citriformis on dorsal surface of host carapace. Scale bars in mm. Except for C, all photographs copyright Alfred-Wegener-Institut/ Stefan Hendricks (CC-BY 4.0). A-B, D-G taken with a Canon EOS 5D Mark III camera with an EF100mm f/2.8L Macro IS USM lens, C with camera mounted on a Leica M125 stereomicroscope.

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Figure 3 in Discovery of a new species and host record of Holophryxus Richardson, 1905 (Isopoda: Dajidae) from the central Arctic: a model of enhanced descriptive standards for epicaridean isopods

Figure 3. Holophryxus citriformis sp. nov. Holotype, adult female: A, habitus outlines of adult female (ventral) and male (dorsal) showing sexual size dimorphism; B, detail of antennules showing dense arrangement of spinular combs on anterior surface; C, ventral view of cephalic region showing position of left antennule (A1) and antenna (A2), right mandible (Md), labrum (Lb), labium (Lm) and sternal plate (SP); D, close-up of oral area showing distal margins of labrum and labium, and gnathobase of right mandible; E, left mandible (basal part omitted). Scale bars in μm unless indicated otherwise.

opennotspecifiedMar 2023View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record