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Figure 5 in Brucerolis gen. n., and Acutiserolis Brandt, 1988, deep-water southern genera of isopods (Crustacea, Isopoda, Serolidae)
Figure 5. Photographs of preserved material. Brucerolis nowra, sp. n. a, b male (26 mm) NMV J15723 c paratype juvenile female (20 mm) NMV J15723 d holotype male (31 mm) NMV J58261 e paratype male (26 mm) NMV J55674. Scale bar referable to all except b.
Figure 4 in Brucerolis gen. n., and Acutiserolis Brandt, 1988, deep-water southern genera of isopods (Crustacea, Isopoda, Serolidae)
Figure 4. Acutiserolis spinosa (Kussakin, 1967), male (34 mm) from NIWA 23526. p3-p7 pereopods 3–7 pl2 pleopod 2.
Figure 7 in Brucerolis gen. n., and Acutiserolis Brandt, 1988, deep-water southern genera of isopods (Crustacea, Isopoda, Serolidae)
Figure 7. Brucerolis nowra, sp. n., holotype male (31 mm) NMV J58261. mdl, mdr mandible incisor, lacinia mobilis and spine, left and right mdp mandibular palp, distal articles mx1, mx2 maxillae 1, 2 mp maxilliped.
Figure 2 in Brucerolis gen. n., and Acutiserolis Brandt, 1988, deep-water southern genera of isopods (Crustacea, Isopoda, Serolidae)
Figure 2. Acutiserolis spinosa (Kussakin, 1967), male (34 mm) from NIWA 23526. a ventral view b lateral profile c head a1, a2 antennae 1, 2 p1, p2 pereopods 1, 2 with detail of propodus and dactylus in lateral and face views; u, uropod. Acutiserolis sp., male (31 mm), NIWA 31205 d propodus and dactylus of pereopod 2.
Figure 1 in Brucerolis gen. n., and Acutiserolis Brandt, 1988, deep-water southern genera of isopods (Crustacea, Isopoda, Serolidae)
Figure 1. Photographs of preserved material. Acutiserolis spinosa (Kussakin, 1967). a, b figured male (34 mm) c ovigerous female (32 mm) d ovigerous female (30 mm) e juvenile male (29 mm) f ovigerous female (31 mm). a, b, d, e from NIWA 23526 c from NMV J58091 f from NIWA 24311. Acutiserolis sp. g, h male (31 mm), NIWA 31205. Scale bar referable to all except g.
Fig. 9. A in An inquiline deep-water bryozoan/amphipod association from New Zealand, including the description of a new genus and species of Chevaliidae
Fig. 9. A. Optical view of the abfrontal side of a distal marginal autozooid (polypide reduced to a residual brown body, bb) adjacent to a lateral kenozooid in which there is a distally tapered (i.e., apically developing) intracoelomic calcareous rod (arrow). B. SEM of a similar view to A but of skeletal elements only, showing the distal tip of the calcareous rod (white arrow) and the communication pores (blue arrowhead) that allow nutrient connectivity between the feeding autozooid and non-feeding kenozooid in which the coelomic cavity comes to be filled by the calcareous rod. C. Fractured transverse section of a calcareous rod showing alternating thick and thin wall-perpendicular prismatic fabric. D. Part of C magnified. Scale bars: A = 200 μm; B = 100 μm; C = 25 μm; D = 5 μm.
Fig. 7 in An inquiline deep-water bryozoan/amphipod association from New Zealand, including the description of a new genus and species of Chevaliidae
Fig. 7. Bryoconversor tutus gen. et sp. nov., paratype, ♂, NIWA 52919, 0.64 mm long. A. Habitus. B. Head. C. Epimeron. D. Urosome. E. Uropod 2 and uropod 1. F. Telson. Scale bars: A = 300 μm; B-D = 100 μm; E = 20 μm; F = 10 μm.
Fig. 6 in An inquiline deep-water bryozoan/amphipod association from New Zealand, including the description of a new genus and species of Chevaliidae
Fig. 6. Bryoconversor tutus gen. et sp. nov., holotype, ♀, NIWA 88918, 1.72 mm long. A. Pereopod 5. B. Pereopod 6. C. Pereopod 7. D. Pleopod 1. Scale bars = 100 μm.
Fig. 8 in An inquiline deep-water bryozoan/amphipod association from New Zealand, including the description of a new genus and species of Chevaliidae
Fig. 8. Bryoconversor tutus gen. et sp. nov., paratype, ♂, NIWA 52919, 0.64 mm long. A. Detail of serrated surface on telson. B. Gnathopod 1 and larger gnathopod 2. C. Dactylus gnathopod 1. D. Dactylus gnathopod 1. E. Dorsal view telson, uropod 3 and uropod 2. F. Flat-topped projections on telson. Scale bars: A = 1 μm; B = 100 μm; C-D = 10 μm; E = 20 μm; F = 2 μm.
Fig. 5 in An inquiline deep-water bryozoan/amphipod association from New Zealand, including the description of a new genus and species of Chevaliidae
Fig. 5. Bryoconversor tutus gen. et sp. nov., holotype, ♀, NIWA 88918, 1.72 mm long. A. Gnathopod 1. B. Gnathopod 2. C. Pereopod 3. D. Pereopod 4. Scale bars = 100 μm.
Fig. 4 in An inquiline deep-water bryozoan/amphipod association from New Zealand, including the description of a new genus and species of Chevaliidae
Fig. 4. Bryoconversor tutus gen. et sp. nov., holotype, ♀, NIWA 88918, 1.72 mm long. A. Hypopharynx. B. Maxilla 2. C. Maxilla 1. D. Maxilliped. Scale bars = 100 μm.
Fig. 2. A in An inquiline deep-water bryozoan/amphipod association from New Zealand, including the description of a new genus and species of Chevaliidae
Fig. 2. A. Photograph of the abfrontal side of a colony of the bryozoan Onchoporoides moseleyi showing adults (middle left arrow) and juveniles (upper right arrow) of Bryoconversor tutus gen. et sp. nov. beneath the semitransparent abfrontal membrane. Note the paired kenozooidal rootlets and their branches at lower left; these anchor the colony to sediment grains in the soft-sediment habitat. The blue colour of the colony is optical, not staining. B. Optical photograph of the proximal end of a small colony of Onchoporoides moseleyi showing the ancestrular zooid (a) in abfrontal view, with calcified interiors (*) of lateral kenozooids that converge proximally. Scale bars: A = 3 mm; B = 100 μm.
Fig. 3 in An inquiline deep-water bryozoan/amphipod association from New Zealand, including the description of a new genus and species of Chevaliidae
Fig. 3. Bryoconversor tutus gen. et sp. nov., holotype, ♀, NIWA 88918, 1.72 mm long. A. Habitus. B. Urosome. C. Antenna 2. D. Mandible. Scale bars = 100 μm.
Fig. 1 in An inquiline deep-water bryozoan/amphipod association from New Zealand, including the description of a new genus and species of Chevaliidae
Fig. 1. Sampling localities of the calwelliid bryozoan Onchoporoides moseleyi harboring Bryoconversor tutus gen. et sp. nov. The type locality is indicated by a star.
Fig. 7 in Deep-water Photinae (Gastropoda: Nassariidae) from eastern Africa, with descriptions of five new species
Fig. 7. Phos sp. A–B. Specimen from Southern Mozambique, Zavora Point, 24°36.7′ S, 35°22.0′ E, ex-pisces, depth 85–120 m, 26.6 mm long (JR). C–D. Specimen from South Africa, north Transkei, Msikaba, dredged at 90–120 m, 24.5 mm long (KF 4691). Scale bars: 5.0 mm.
FIGURE 89 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 89. Owstonia sp. 2, MNHN 2014 ‒ 0163, 36 mm SL, French Polynesia, Tarasoc seamounts. Photograph by Sandra J. Raredon.
FIGURE 90 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 90. Owstonia sp. 3, USNM 307399, 13.2 mm SL, Lifou Island. After Fourmanoir 1976, fig. 8. See also Fig. 20 D.
FIGURE 83 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 83. Owstonia totomiensis, holotype, FMNH 55424, 306 mm SL, Japan. Photograph by Sandra J. Raredon.
FIGURE 79. Owstonia tosaensis, BSKU 52070, 242 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 79. Owstonia tosaensis, BSKU 52070, 242 mm SL, Japan, off Kochi. Photograph by Hiromitsu Endo.
FIGURE 63 in Hidden diversity in deep-water bandfishes: review of Owstonia with descriptions of twenty-one new species (Teleostei: Cepolidae: Owstoniinae)
FIGURE 63. Owstonia nudibucca, holotype, ANSP 151993, 224 mm SL, Indonesia, Mentawai Is. Photograph by Sandra J. Raredon.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.