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Fig. 3 in The "Southern form" of short-finned pilot whale (Globicephala macrorhynchus) in tropical west Pacific Ocean off Taiwan
Fig. 3. Genealogical relationship reconstructed by the medianjoining algorithms via the mtDNA haplotype data for short-finned pilot whales from: A, Taiwanese and Philippines waters (593-bp sequence); B, Worldwide (345-bp sequence). Each circle represents a haplotype and the number in the circle indicates the sample size (when sample size> 1). The number at the bar between each haplotype indicates the position of variable site (Table 3). Haplotypes, sample size, and origin for worldwide data in B from Oremus et al., 2009. Haplotype N is the haplotype most closelyrelated to those long-finned pilot whales (six mutation steps; see Oremus et al., 2009).
Fig. 2 in The "Southern form" of short-finned pilot whale (Globicephala macrorhynchus) in tropical west Pacific Ocean off Taiwan
Fig. 2. Short-finned pilot whales sighted around Taiwan—offshore and beached on the coasts of Taiwan—showing two external morphological characteristics that define the Southern form (Kasuya et al., 1988). A, the post-fin dorsum was uniformly black in all whales observed, four shown here from group of about 30 whales (O8, Table 1), a lighter coloured saddle patch was not seen; B, a male with flattened forehead ("square-head", arrow) from another group of about 90 whales (O19, Table 1), and indistinct lighter coloured mottling over post-fin dorsum (the saddle patch area) on two other whales; C, carcass of a fresh adult male stranded on the west coast of Taiwan (S7) showing a flattened forehead and the lack of a clear post-fin saddle patch, characteristic of the Southern form.
Fig. 1 in The "Southern form" of short-finned pilot whale (Globicephala macrorhynchus) in tropical west Pacific Ocean off Taiwan
Fig. 1. Sighting observation (open triangles) and stranding (solid circles) locations of short-finned pilot whales around the coasts of Taiwan (1998–2012). See Tables 1 and 2 for event codes; sighting or stranding events without a detail location record (i.e., GPS position) were not indicated in the map. The star locates a group sighting near the Dongsha plateau recorded on video-clip (see text; Supplement A).
Fig. 9 Morphometric relationship between a in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 9 Morphometric relationship between a total body length and weight and b coxa 4 diagonal length and total body length. Bathymetric relationship of total body length for c juvenile and d female Eurythenes atacamensis sp. nov. Grey areas in b and c represent 95% confidence intervals of the model mean
Fig. 7 in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 7 Bayesian phylogenies showing the relationship of Eurythenes atacamensis sp. nov. within Eurythenes based on a 16S rRNA and b COI. Specimens added by this study are in bold, with E. atacamensis sp. nov. in blue. An asterisk next to the name denotes holotype. References for comparative sequences are in Table 2. Branch nodes have Bayesian posterior probabilities and maximum likelihood bootstrap support values. Values less than 0.7 or 70 are not stated or depicted by an asterisk. Species delimitation inferences by the bPTP and/or GYMC analyses are shown on the right side of each phylogeny.
Fig. 8 in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 8 The relative proportion of females, males, juveniles, and intersex of Eurythenes atacamensis sp. nov. by depth (m) at the Atacama Trench
Fig. 6 a in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 6 a Eurythenes atacamensis sp. nov. feeding on bait and b two colour morphs prior to ethanol preservation. Still image and specimens are from 8074 m in the Atacama Trench during the 2010 RV Sonne SO209 Expedition (see Eustace et al. (2016) for site location details)
Fig. 5 in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 5 Eurythenes atacamensis sp. nov. holotype (MNHNCL AMP-15816). a left pereopod 5; b left pereopod 6; c left pereopod 7; d epimeron and epimeron 3 insert with arrow denoting small tooth on the posteroventral corner; e left uropod 1; f left uropod 2; g left uropod 3 with the arrow showing plumose setae; h telson; i telson distal margin insert
Fig. 3 in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 3 Eurythenes atacamensis sp. nov. holotype (MNHNCL AMP-15816). a left antenna 1; b left antenna 2; c left mandible with an arrow to highlight the broad palp; d head with arrows to highlight the anterior lobe and ventral corner of the eye; e left maxilla 1 outer plate and palp not flattened; f left maxilla 1 inner plate; g left maxilla 1 palp insert; h left maxilla 1 outer plate face; i left maxilla 2; j left and right maxillipeds with inner plates removed; k left maxilliped dactylus insert; l left maxilliped inner plate (medio-facial spines not shown)
Fig. 4 in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 4 Eurythenes atacamensis sp. nov. holotype (MNHNCL AMP-15816). a left gnathopod 1; b chela of left gnathopod 1; c left gnathopod 2; d chela of left gnathopod 2; e left pereopod 3; f left pereopod 4
Fig. 2 a in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 2 a Eurythenes atacamensis sp. nov.: female holotype from 8052 m (h; MNHNCL AMP-15816), juvenile paratype from 6714 m (pj; MNHNCL AMP-15818), intersex paratype from 7834m (pi; MNHNCL AMP-15820), male paratype from 7204 m (pm; MNHNCL AMP-15817); b Eurythenes atacamensis sp. nov., mature female, holotype, MNHNCL AMP-15816
Fig. 1 a in Eurythenes atacamensis sp. nov. (Crustacea: Amphipoda) exhibits ontogenetic vertical stratification across abyssal and hadal depths in the Atacama Trench, eastern South Pacific Ocean
Fig. 1 a Map of the Peru-Chile Trench defined by depths>4900 m (red). Historical collection records of this species (circle), and the historical abyssal sampling with the absence of Eurythenes atacamensis sp. nov. (triangle). The extent of map (b) is indicated by the blue box. b The eleven deployments where E. atacamensis sp. nov. was recovered in the Atacama Trench during the Atacamex Expedition (square) and the RV Sonne SO216 Expedition (circle). Isobaths are shown every 1000 m between 3000- and 7000-m-depth contours.
Model data repository of "Styles of Trench-parallel Mid-ocean Ridge Subduction Affect Cenozoic Geological Evolution in circum-Pacific Continental Margins"
<p>This dataset contains the data used in Wu et al. (2022): "Styles of Trench-parallel Mid-ocean Ridge Subduction Affect Cenozoic Geological Evolution in circum-Pacific Continental Margins".</p>
Fig. 30 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 30. Wandella loloata sp. nov. from Papua New Guinea, Loloata Island. A–C. Male holotype (AM KS32718). A. Left palp, prolateral. B. Retrolateral. C. Habitus, dorsal. D–F. Female paratype (AM KS32717), endogyne, dorsal.
Fig. 26 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 26. Labahitha platnicki sp. nov., female somatic morphology. A. Holotype from New Caledonia, Nord, Foué (AMNH IFM-0890), habitus, dorsal. B, D–F. Paratype from New Caledonia, Nord, Plage de Poè (AMNH IFM-1747). B. Habitus, dorsal. C. Papua New Guinea, Bismarck Islands (ZMB IFM- 0720), habitus, dorsal. D. Habitus, lateral. E. Ventral. F. Genital region, ventral. Scale bars = 0.5 mm, except where noted.
Fig. 22 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 22. Labahitha marginata (Kishida, 1936) comb. nov., female from Costa Rica, Alajuela, Upala (INBIO 108899), endogyne, pancreatin digested. A. Dorsal view. B. Sublateral view.
Fig. 16 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 16. Labahitha marginata (Kishida, 1936) comb. nov., type material of Filistata bakeri Berland, 1938 from Vanuatu, Espiritu Santo. A. Paratype, ♀ (MNHN AR 3437), habitus, lateral. B–F. Holotype, ♂ (MNHN AR 3436). B. Habitus, dorsal. C. Habitus, ventral. D. Left palp, prolateral view. E. Dorsal. F. Retrolateral. Figures not to scale.
Fig. 19 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 19. Labahitha marginata (Kishida, 1936) comb. nov., female endogyne, dorsal, lactic acid cleared. A. From Parque Nacional La Cangreja, San Jose, Costa Rica (INBIO 79582). B. Bagaces, Guanacaste, Costa Rica (INBIO 104619). C. Vanuatu, Espiritu Santo (MNHN AR 3436). D. Upolu, Samoa (AMNH IFM-0885). E. Kanton, Phoenix Islands, Kiribati (AMNH). F. Chao-Chow, Ping-Tung, Taiwan (AMNH IFM-0872). G. Makeke Highlands, Papua New Guinea (AM KS.59201). H. Hawai'i, USA (AM). Scale bars = 0.05 mm.
Fig. 13 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 13. Labahitha gibsonhilli (Savory, 1943), ♂ (AM). A. Habitus, dorsal. B. Left palp, retrolateral. Figures not to scale.
Fig. 11 in Labahitha spiders (Arachnida: Araneae: Filistatidae) from islands in the Indian and Pacific Oceans
Fig. 11. Labahitha garciai (Simon, 1892) comb. nov., endogyne, dorsal, lactic acid cleared. A. From Singapore, Pulau Ubin (JK 150310.0002). B. From Singapore, Dairy Farm Nature Park (JK 130823.0003). C. From Singapore, Upper Selatar Reservoir Park (ZFMK 12710). D. Paratype of Pritha sechellana Benoit, 1978 (MRAC 143106). Scale bars: 0.1 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.