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976 results for “Pacific Islands”
FIG. 7. — A-D in New data on the recent brachiopods from the Fiji and Wallis and Futuna islands, South-West Pacific
FIG. 7. — A-D, Terebratulina japonica (G. B. Sowerby, 1846), Fiji: A, dorsal view of complete specimen (MNHN BRA-3079), Lau Ridge, BORDAU 1, stn DW 1413, 669-676 m; B-D, dorsal, lateral and anterior views of complete specimen (MNHN BRA-3080), Bligh Water, MUSORSTOM 10, stn CP 1330, 567-699 m; E-I, Terebratulina australis Bitner, 2006, Fiji, Lau Ridge BORDAU 1; E, dorsal view of young complete specimen (MNHN BRA-3081),SEM,stn DW 1479,450-460 m; F-I, ventral,dorsal,lateral and anterior views of complete specimen (MNHN BRA-3082),stn DW 1485, 700-707 m; J-L, Dallithyris pacifica Bitner,2006,dorsal,lateral and anterior views of complete specimen (MNHN BRA-3078), Fiji, Bligh Water, MUSORSTOM 10, stn DW 1331, 694-703 m. Scale bars: A-D, F-I, 0.5 cm; E, 2 mm; J-L, 1 cm.
FIG. 9 in New data on the recent brachiopods from the Fiji and Wallis and Futuna islands, South-West Pacific
FIG. 9. — Eucalathis rugosa Cooper, 1973: A, B, dorsal and lateral views of complete specimen (MNHN BRA-3085), Fiji, Viti Levu, MUSORSTOM 10, stn DW 1384, 260-305 m;C-F, complete specimen (MHNH BRA-3060), Wallis and Futuna, MUSORSTOM 7, stn DW 601, 350 m; C, D, outer and inner views of ventral valve; E, F, outer and inner views of dorsal valve; G-I, complete specimen (MNHN BRA-3086), Fiji, Viti Levu, MUSORSTOM 10, stn DW 1384, 260-305 m; G, H, dorsal view (G) and enlargement of posterior part (H); I, interior of dorsal valve with slightly broken brachidium. All SEM. Scale bars: A-G, 1 mm; H, I, 500 μm.
FIG. 8 in New data on the recent brachiopods from the Fiji and Wallis and Futuna islands, South-West Pacific
FIG. 8. — Terebratulina reevei Dall, 1920, Fiji, Lau Ridge, MUSORSTOM 10, stn CP 1394, 416 m: A-D, complete specimen (MNHN BRA-3083); A, B, dorsal and anterior views; C, D, SEM micrograph of dorsal interior to show brachidium and details of cardinalia; E-G, dorsal, lateral and anterior views of complete specimen (MNHN BRA-3084). Scale bars: A-C, E-G, 2 mm; D, 1 mm.
FIG. 6. — A-H, Xenobrochus rotundus n in New data on the recent brachiopods from the Fiji and Wallis and Futuna islands, South-West Pacific
FIG. 6. — A-H, Xenobrochus rotundus n. sp., Fiji, Lau Ridge, BORDAU 1, stn DW 1469, 314-377 m, SEM: A-D, ventral, dorsal, lateral and anterior views of complete specimen, holotype (MNHN BRA-3075); E, F, inner views of ventral and dorsal valves, paratype (MNHN BRA-3076); G, H, dorsal view of complete specimen (G) and enlargement of dorsal interior (H) to show brachial skeleton, paratype (MNHN BRA-3077);I-L, Abyssothyris wyvillei (Davidson, 1878), complete specimen (MNHN BRA-3074), Fiji, Viti Levu, MUSORSTOM 10, CP 1361; I-K, dorsal, lateral and anterior views; L, SEM micrograph of dorsal interior to show cardinalia and brachidium. Scale bars: A-G, 2 mm; H, L, 1 mm; I-K, 0.5 cm.
FIG. 1 in New data on the recent brachiopods from the Fiji and Wallis and Futuna islands, South-West Pacific
FIG. 1. — South-western Pacific showing areas sampled during the cruises MUSORSTOM 7, 10, and BORDAU 1. Map from ZoNéCo, data after http://www.tropicaldeepseabenthos.org.
FIG. 5. — A-G in New data on the recent brachiopods from the Fiji and Wallis and Futuna islands, South-West Pacific
FIG. 5. — A-G, Basiliola lucida (Gould, 1862), Fiji, Lau Ridge, BORDAU 1: A-D, ventral, dorsal, lateral and anterior views of complete specimen (MNHN BRA-3069), stn DW 1472, 262-266 m; E, SEM micrograph of inner view of ventral valve, posterior part (MNHN BRA-3070), stn CP 1469, 314-377 m; F, G, SEM micrographs of posterior part of dorsal valve interior (MNHN BRA-3071), stn CP 1469, 314-377 m; H-L, Basiliola beecheri (Dall, 1895), Fiji, Lau Ridge; H-J, dorsal, lateral and anterior views of complete specimen (MNHN BRA-3072), stn CP 1412, 400-407 m; K, L, SEM micrographs of posterior part of dorsal valve interior (MNHN BRA-3073), stn CP 1394, 416 m. Scale bars: A-D, 0.5 cm; E-G, 1 mm; H-J, 1 cm; K, L, 2 mm.
FIG. 4 in New data on the recent brachiopods from the Fiji and Wallis and Futuna islands, South-West Pacific
FIG. 4. — Intraspecific variation in Cryptopora maldivensis Muir- Wood, 1959. Scatter diagram plotting length/width. N, number of specimens.
FIG. 2 in New data on the recent brachiopods from the Fiji and Wallis and Futuna islands, South-West Pacific
FIG. 2. — Pelagodiscus atlanticus (King, 1868), Wallis and Futuna, MUSORSTOM 7: A, B, dorsal view and enlargement (B) to show details of setae (MNHN BRA-3056),stn CP 621,1280-1300 m; C, dorsal view (MNHN BRA-3057),stn CP 621, 1280-1300 m; D, ventral view of complete specimen (MNHN BRA-3058),stn CP 623,1280-1300 m; E, F, inner view of ventral valve with soft tissue,visible traces of dorsal valve and dorsal setae, and enlargement (F) of lophophore (MNHN BRA-3059), stn CP 623, 1280-1300 m. Scale bars: A, C, 2 mm; B, D, E, 1 mm; F, 100 μm.
Fig. 8 in A New Species of Bush-Warbler from Bougainville Island and a Monophyletic Origin for Southwest Pacific Cettia
Fig. 8. Distribution of Cettia haddeni and relatives in the southwest Pacific. The distribution of sampled species and the putative close relatives C. carolinae and C. seebohmi are shown by circled islands or island groups, and the maximum likelihood relationships among sampled forms are superimposed. Although resolved, support for relationships among the island forms is poor (fig. 7).
Fig. 6 in A New Species of Bush-Warbler from Bougainville Island and a Monophyletic Origin for Southwest Pacific Cettia
Fig. 6. Strict consensus of nine equally parsimonious trees (L 5 1287 steps, CI 5 0.664, RI 5 0.557) obtained from analysis of partial RAG1 sequences from Cettia haddeni and putative sylvioid relatives (Beresford et al., 2005). Numbers below branches indicate bootstrap values $ 50% (see text).
Fig. 4 in A New Species of Bush-Warbler from Bougainville Island and a Monophyletic Origin for Southwest Pacific Cettia
Fig. 4. Scatterplots of individual Cettia on the first and second (A) and third and fourth (B) principal components derived from analysis of five external measurements (tables 1 and 4).
Fig. 5 in A New Species of Bush-Warbler from Bougainville Island and a Monophyletic Origin for Southwest Pacific Cettia
Fig. 5. UPGMA clustering of individual Cettia specimens based on pairwise Euclidean distances measured in the space defined by principal components rotation of five external morphological measurements (tables 1 and 4).
Fig. 2 in A New Species of Bush-Warbler from Bougainville Island and a Monophyletic Origin for Southwest Pacific Cettia
Fig. 2. Specimens of southwest Pacific island species of Cettia: left to right, Cettia annae (AMNH 332082), C. ruficapilla funebris (AMNH 251966), C. parens (AMNH 228063), and C. haddeni (AMNH 835234).
Fig. 1 in A New Species of Bush-Warbler from Bougainville Island and a Monophyletic Origin for Southwest Pacific Cettia
Fig. 1. The Odedi (Cettia haddeni, new species), bottom, with its relatives C. ruficapilla funebris from Taveuni Island, Fiji (top), and C. parens from Makira Island, Solomon Islands (middle). Original watercolor by John Anderton.
Figure 11 in Morphological and molecular description of new species of squat lobster (Crustacea: Decapoda: Galatheidae) from the Solomon and Fiji Islands (South-West Pacific)
Figure 11. Neighbour-joining (NJ) tree based on the 16S rRNA data set showing phylogenetic relationships among Munida. Numbers above branches indicate bootstrap values for the NJ and maximum parsimony (MP) analyses. Numbers below branches indicate bootstrap values for the maximum likelihood (ML) analyses and Bayesian posterior probabilities (BPPs).
Figure 7 in Morphological and molecular description of new species of squat lobster (Crustacea: Decapoda: Galatheidae) from the Solomon and Fiji Islands (South-West Pacific)
Figure 7. Paramunida salai sp. nov., ovigerous female holotype, 8.6 mm (MNHN-Ga6517). Solomon Islands. A, carapace and abdomen, dorsal view. B, carapace, lateral view. C, sternum. D, left antennule and antenna, ventral view. E, right third maxilliped, lateral view. F, right cheliped, lateral view. G, right P2, lateral view. H, right P3, lateral view. I, right P4, lateral view. Scale: A, B, C = 1 mm; F, G, H, I = 2 mm; D, E = 0.5 mm.
Figure 9 in Morphological and molecular description of new species of squat lobster (Crustacea: Decapoda: Galatheidae) from the Solomon and Fiji Islands (South-West Pacific)
Figure 9. Neighbour-joining (NJ) tree based on the combined data set (16S rRNA and COI genes) showing phylogenetic relationships among Agononida. Numbers above branches indicate bootstrap values for the NJ and maximum parsimony (MP) analyses. Numbers below branches indicate bootstrap values for the maximum likelihood (ML) analyses and Bayesian posterior probabilities (BPPs).
Figure 8 in Morphological and molecular description of new species of squat lobster (Crustacea: Decapoda: Galatheidae) from the Solomon and Fiji Islands (South-West Pacific)
Figure 8. Plesionida concava sp. nov., male holotype, 12.0 mm (MNHN-Ga6520). Solomon Islands. A, carapace and abdomen, dorsal view. B, sternum. C, left antennule and antenna, ventral view. D, ischium, and merus of right third maxilliped, lateral view. E, right cheliped, lateral view. F, right P2, lateral view. G, dactylus, right P2, lateral view. H, right P3, lateral view. I, right P4, lateral view. Scale: A, E, F, H, I = 2 mm; B, C, D, G = 1 mm.
Figure 5 in Morphological and molecular description of new species of squat lobster (Crustacea: Decapoda: Galatheidae) from the Solomon and Fiji Islands (South-West Pacific)
Figure 5. Munida oblongata sp. nov., male holotype, 6.1 mm (MNHN-Ga6511). Solomon Islands. A, carapace and abdomen, dorsal view. B, sternum. C, left antennule and antenna, ventral view. D, ischium, and merus of right third maxilliped, lateral view. E, right cheliped, lateral view. F, right P2, lateral view. G, dactylus, right P2, lateral view. H, right P3, lateral view. I, right P4, lateral view. Scale: A, B, E, F, H, I = 1 mm; C, D, G = 0.5 mm.
Figure 4 in Morphological and molecular description of new species of squat lobster (Crustacea: Decapoda: Galatheidae) from the Solomon and Fiji Islands (South-West Pacific)
Figure 4. Munida mendagnai sp. nov., male holotype, 7.3 mm (MNHN-Ga6510). Solomon Islands. A, carapace and abdomen, dorsal view. B, sternum. C, left antennule and antenna, ventral view. D, ischium and merus of right third maxilliped, lateral view. E, right cheliped, lateral view. F, right P2, lateral view. G, dactylus, right P2, lateral view. H, right P3, lateral view. I, right P4, lateral view. Scale: A, E, F, H, I = 1 mm; B, C, D, G = 0.5 mm.
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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.
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.