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Fig. 9 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species

Fig. 9. Geographical and bathymetrical distribution of Reticunassa annabolteae sp. nov. Star indicates type locality. Each bar represents all lv or dd specimens.

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Fig. 7 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species

Fig. 7. Geographical and bathymetrical distribution of Reticunassa poppeorum sp. nov. Star indicates type locality. Each bar represents all lv or dd specimens.

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Fig. 6 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species

Fig. 6. Geographical and bathymetrical distribution of Reticunassa visayaensis sp. nov. Star indicates type locality. Each bar represents all lv or dd specimens.

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Fig. 8 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species

Fig. 8. Shells of Reticunassa Iredale, 1936. – A–D. Reticunassa annabolteae sp. nov. A–C. Holotype, MNHN IM-2009-12843, length 11.5 mm, width 5.3 mm, S Madagascar, Ambatobe, Bavarama, 25°27.9′ S, 44°57.6′ E, 0–1 m. D. Protoconch. – E–H. R. goliath sp. nov. E–G. Holotype, MNHN IM-2000- 22724, length 15.5 mm, width 7.9 mm, New Caledonia, Nouméa, leg. D. Massemin, ex coll. H. Kool. H. Protoconch of paratype, MNHN IM-2000-28394. – I–L. R. intrudens sp. nov. Holotype, MNHN IM-2000-22726, length 7.9 mm, width 4.3 mm, New Caledonia, Touho, 20°44′ S, 165°14′ E, 49–59 m. L. Protoconch. – M–P. R. thailandensis sp. nov. M–O. Holotype, ZMA Moll.4.09.047, length 7.35 mm, width 3.8 mm, Thailand, Gulf of Thailand, 6°40.313′ N, 101°43.852′ E, 3–15 m. P. Protoconch. Scale bars: D, H, L, P = 200 µm.

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Fig. 5 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species

Fig. 5. Geographical and bathymetrical distribution of Reticunassa tringa (Souverbie, 1864). Star indicates type locality. Each bar represents all lv or dd specimens.

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Fig. 1. A in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species

Fig. 1. A. Bayesian tree based on COI sequences of species of Reticunassa. B. Bayesian tree based on 28S sequences of species of Reticunassa. C. Frequency of pairwise distance (K2P model) values among COI sequences. In gray, intra-specific variation. In black, inter-specific variation. PNG = Papua New Guinea.

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Fig. 4 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species

Fig. 4. Geographical and bathymetrical distribution of Reticunassa paupera (Gould, 1850). Star indicates type locality. Each bar represents all lv or dd specimens.

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Fig. 2 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species

Fig. 2. Characters of Reticunassa Iredale, 1936. A–B. Protoconchs. A. R. paupera (Gould, 1850), MNHN IM-2007-31782. B. R. silvardi (Kool & Dekker, 2006). C. Suture detail of R. paupera. D. Axial striae in R. silvardi. E–F. Intercordal spirals. E. R. tringa (Souverbie, 1864). F. R. paupera. G–H. Columellar details of R. paupera. I–L. Type series of R. paupera. I–J. Lectotype, USNM 5726, length 9.1 mm, width 4.8 mm. K–L. Paralectotype, MCZ 216602, length 7.2 mm, width 3.5 mm. All scale bars = 200 µm.

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Fig. 6 in Taxonomic revision and phylogeny of the Ophiocoma brevipes group (Echinodermata, Ophiuroidea), with description of a new subgenus (Breviturma) and a new species

Fig. 6. Holotype of Ophiocoma (Breviturma subgen. nov.) krohi sp. nov. (MNHN-IE-4300). A. Dorsal disc. B. Dorsal arm. C. Ventral arm, note the pattern on the arm spines. D. Ventral disc. E. Jaws.

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Fig. 3 in Taxonomic revision and phylogeny of the Ophiocoma brevipes group (Echinodermata, Ophiuroidea), with description of a new subgenus (Breviturma) and a new species

Fig. 3. Ophiocoma (Breviturma subgen. nov.) doederleini de Loriol, 1899 (UF5318). SEM images. A. Dorsal disc. B. Dorsal arm. C. Dorsal disc granules. D. Jaws. E. Ventral arm. F. Radial shield, internal aspect, distal edge downwards. G. Oral plates (half-jaws), abradial aspect left, adradial right, proximal edge left. H. Dental plates, external aspect on left, internal on right (lower septum broken), dorsal upwards. I. Genital plates abradial left, adradial right, distal upwards. J. Arm vertebrae, proximal aspect left, distal right, dorsal upwards. K. Lateral arm plates, external aspect left, internal right, distal to the right. UF, Florida Museum of Natural History.

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Fig. 1 in Taxonomic revision and phylogeny of the Ophiocoma brevipes group (Echinodermata, Ophiuroidea), with description of a new subgenus (Breviturma) and a new species

Fig. 1. Phylogenetic reconstruction of Ophiocoma (Breviturma) subgen. nov. (two species of the scolopendrina group as outgroup), estimated by maximum likelihood and neighbour-joining analysis of concatenated sequences of the mitochondrial cytochrome c oxidase subunit I and rDNA 16S (in total 1125 bp). Values at branches indicate bootstrap values for maximum likelihood (above branches) and neighbour-joining (below branches). Specimen codes are resolved in the Supplementary file.

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Fig. 2 in Taxonomic revision and phylogeny of the Ophiocoma brevipes group (Echinodermata, Ophiuroidea), with description of a new subgenus (Breviturma) and a new species

Fig. 2. Colour variations in species of Ophiocoma (Breviturma) subgen. nov. A-C. Ophiocoma doederleini Rowe & Pawson, 1977. A. Reticulated specimen (UF5318). B. Close-up of annulated arm spines. C. Densely reticulated specimen (UF6518). D. Ophiocoma brevipes Peters, 1851 (SMNH- 133230). E-F. Ophiocoma dentata Müller & Troschel, 1842. E. Variegated specimen (SMNH-133232). F. Uniformly reddish brown specimen (URUN2009-11047). G-L. Ophiocoma krohi sp. nov. paratypes. G. With large patches (SMNH-Type-8533). H. Small irregular spots (MNHN-IE-4302). I. Star-shaped radiating pattern (SMNH-Type-8531). J. Densely mottled (MNHN-IE-4301). K. Uniformly dark brown (SMNH-Type-8536). L. Light brown, sparsely mottled (UF13938). For institution codes see main text.

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Fig. 5 in Taxonomic revision and phylogeny of the Ophiocoma brevipes group (Echinodermata, Ophiuroidea), with description of a new subgenus (Breviturma) and a new species

Fig. 5. SEM images of skeletal elements of Ophiocoma (Breviturma subgen. nov.) brevipes Peters, 1851 (SMNH-133230), O. (B.) dentata Müller & Troschel, 1842 (SMNH-133232) and O. krohi sp. nov. paratype (SMNH-Type-8535). A-C. Oral plates, abradial aspect at left, orientated with dorsal side up. A. O. brevipes. B. O. dentata. C. O. krohi sp. nov. D-F. Dental plates, external aspect left, internal aspect right, dorsal edge upwards. D. O. brevipes. E. O. dentata. F. O. krohi sp. nov. G-I. Radial shields, internal aspect, proximal edge upwards. G. O. brevipes. H. O. dentata. I. O. krohi sp. nov. J-L.Vertebrae from proximal part of arm, proximal aspect left, dorsal upwards. J. O. brevipes. K. O. dentata. L. O. krohi sp. nov. M-O. Genital plates, abradial plate left, adradial plate right, distal ends up (towards radial shields). M. O. brevipes. N. O. dentata. O. O. krohi sp. nov. P-R. Lateral arm plates from proximal arm, external aspect left, internal aspect right, distal end right. P. O. brevipes. Q. O. dentata. R. O. krohi sp. nov. For institution codes see main text.

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Fig. 25 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species

Fig. 25. Bennelongia spp. (no museum nrs). — A-D. Bennelongia sp. X2, Three Springs Tumulus Stream (♀, KMWA.917). A. LVi. B. RVi. C. RVi, detail anterior. D. RVi, detail anterior, tilted. — E-H. Bennelongia sp. nov. E2, BYK (♀, KMWA.806) = Species E2 in Figs 2-3. E. LVi. F. RVi. G. RVi, detail anterior. H. RVi, detail anterior, tilted. — I-L.? Bennelongia scanloni sp. nov., pool near Esperance (♀, OS.004). I. LVi. J. RVi. K. RVi, detail anterior. L. RVi, detail anterior, tilted. Scales: A-B, E-F, I-J = 1 mm; C-D, G-H, K-L = 200 µm.

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Fig. 24 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species

Fig. 24. Bennelongia spp. (no museum nrs), females. — A-D. Bennelongia sp. X1. Crane Pan (OS.255). A. LVi. B. RVi. C. RVi, detail anterior. D. RVi, detail anterior, tilted. — E-H.? Bennelongia scanloni sp. nov., Lake Cronin (OS.544). E. LVi. F. RVi. G. RVi, detail anterior. H. RVi, detail anterior, tilted. — I-L. Bennelongia dedeckkeri, Lake Gregory (OS.260). I. LVi. J. RVi. K. RVi, detail anterior. L. RVi, detail anterior, tilted. Scales: A-B, E-F, I-J = 1 mm; C-D, G-H, K-L = 200 µm.

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Fig. 7 in Taxonomic revision and phylogeny of the Ophiocoma brevipes group (Echinodermata, Ophiuroidea), with description of a new subgenus (Breviturma) and a new species

Fig. 7. Granule densities in relation to disc diameter of the examined nominal species of Ophiocoma, from Table 1.

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Fig. 21 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species

Fig. 21. Bennelongia calei sp. nov. — A-H, J-L. Fraser Lake (type locality, females, DJC/18): A. Paratype, LVi (OC.3344). B. Paratype, RVi (idem). C. Paratype, RVI, detail anterior (idem). D. Paratype, RVI, detail anterior, tilted (idem). E. Holotype, LVi (WAMC52335). F. Holotype, RVI (idem). G. Holotype, RVi, detail anterior (idem). H. Holotype, RVi, detail anterior, tilted (idem). J. Paratype, CpRL (OC.3345). K. Paratype, CpD (WAMC52338). L. Paratype, CpV (WAMC52337). — I. Oak Flat W pit gnamma, via Goomalling (BVT/11/04, non-type female, WAMC52343). CpRL. Scales: A-B, E-F, I-L = 1 mm; C-D, G-H = 200 µm.

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Fig. 22 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species

Fig. 22. Bennelongia calei sp. nov., non-type specimens. — A-D. Oak Flat W pit gnamma, via Goomalling (BVT/11/04, ♀, OC.3346). A. LVi. B. RVi. C. RVi, detail anterior. D. RVi, detail anterior, tilted. — E-H. Horse Collar gnamma, on Magee Rd via Kulin (BVT/11/05, ♀, WAMC52345). E. LVi. F. RVi. G. RVi, detail anterior. H. RVi, detail anterior, tilted. — I-L. Second pool along Carnamah-Eneabba Road on south side, Eneabba Springs (DJC/10, ♀, WAMC52349). I. LVi. J. RVi. K. RVi, detail anterior. L. RVi, detail anterior, tilted. — M-O. Pool at Jerramungup West (DJC/36, ♀, OC.3348). M. LVi. N. RVi. O. RVi, detail anterior, tilted. Scales: A-B, E-F, I-J, M-N = 1 mm; C-D, G-H, K-L, O = 200 µm.

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Fig. 20 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species

Fig. 20. Bennelongia scanloni sp. nov., males. — A-C'. Non-type (OC.3338, Three Springs Tumulus Stream - TST): A. Hemipenis (both hemipenes symmetrical in this specimen). B. Right prehensile palp. C. Left prehensile palp. C'. Idem, detail of ventro-apical part of first segment. — D-F. Holotype (WAMC52291, One Tree Hill Creek – DJC/11): D. Right prehensile palp. E. Left prehensile palp. F. Hemipenis (both hemipenes symmetrical in this specimen). — G-J. Non-type (WAMC52327, from OSTR013C): G. Hemipenis. H. Right prehensile palp. I. Left prehensile palp. I'. Idem, detail of ventroapical part of first segment. J. Hemipenis. Scale: A-J = 92 µm; C', I' = 37 µm.

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Fig. 18 in On the Bennelongia barangaroo lineage (Crustacea, Ostracoda) in Western Australia, with the description of seven new species

Fig. 18. Bennelongia scanloni sp. nov., type specimens from type locality (One Tree Hill Creek, DJC/11). A. ♀ allotype, LVi (WAMC52292). B. ♀ allotype, RVi (idem). C. ♀ paratype, CpRL (WAMC52299). D. ♂ paratype, LVi (OC.3329). E. ♂ paratype, RVi (idem). F. ♂ paratype, CpRL (WAMC52295). G. ♀ paratype, CpD (WAMC52297). H. ♀ paratype, CpV (WAMC52298). I. ♂ paratype, CpV (WAMC52295). J. ♂ paratype, CpD (WAMC52296). K. ♀ allotype, RVi, detail anterior (WAMC52292). L. ♀ allotype, RVi, detail anterior, tilted (idem). M. ♂ paratype, RVi, detail anterior (OC.3329). N. ♂ paratype, RVi, detail anterior, tilted (idem). Scales: A-J = 1 mm; K-N = 200 µm.

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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.

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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