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374 results for “East Pacific”
FIGURE 2 in Description of two ubiquitous species of Desmosomatidae (Isopoda: Asellota) from the Northwest Pacific Basin east of the Kuril-Kamchatka Trench
FIGURE 2. Eugerdella kurabyssalis sp. nov. Female, paratype: (A, B) antennae I, II; (C, D) left and right mandibles; (E, F) maxillae I, II; (G) maxilliped. Scale bar = 0.1 mm.
FIGURE 1 in Description of two ubiquitous species of Desmosomatidae (Isopoda: Asellota) from the Northwest Pacific Basin east of the Kuril-Kamchatka Trench
FIGURE 1. Eugerdella kurabyssalis sp. nov. (A–D) Female, holotype; (E–G) male, paratype; (H) female, paratype: (A, F) dorsal view; (B, E) lateral view; (C) head, anterolateral view; (D, G) pleotelson, ventral view; (H) pereopod I. Scale bar = 0.3 mm.
FIGURE 17 in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 17. Outline of cranial fontanelle (in dorsal view) of: A) Myliobatis hamlyni and B) Myliobatis tobijei.
FIGURE 8 in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 8. Distribution of Myliobatis hamlyni (black star—holotype; black circle—other records); and M. tobijei (crossed square—holotype; black square—other records) in the East Indian and West Pacific.
FIGURE 7. A in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 7. A) Upper and B) lower tooth plates of Myliobatis hamlyni CSIRO H 5889-36 (adult male 697 mm DW).
FIGURE 1 in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 1. Dorsal view of the holotype of Myliobatis hamlyni (QM I 1567, juvenile male 270 mm DW, preserved).]
FIGURE 6 in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 6. Lateral view of orbit and spiracle in an adult male Myliobatis hamlyni (CSIRO H 2578-01 (704 mm DW, fresh) illustrating the orbital thorn.
FIGURE 11 in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 11. Dorsal view of two specimens of the spotted form of Myliobatis tobijei: A) HUMZ 109728, subadult male 410 mm DW (preserved); B) HUMZ 107439, adult male 472 mm DW (preserved).
FIGURE 2 in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 2. Dorsal view of Myliobatis hamlyni: A) CSIRO H 3860-01, female 596 mm DW from eastern Australia (fresh); B) MZB 15442, adult male 651 mm DW from Lombok, Indonesia (fresh).
FIGURE 10 in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 10. Dorsal view of Myliobatis tobijei NAG004 (pregnant female 656 mm DW, fresh) from Nagasaki, Japan.
FIGURE 16 in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 16. Maximum Likelihood tree showing the relationships among Myliobatidae species. The tree was derived from an alignment of mitochondrial NADH2 sequences (1044 sites) under a GTR + G + I model of molecular evolution.
FIGURE 9 in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 9. Dorsal view of the holotype of Myliobatis tobijei (RMNH 7461 [largest of 2], juvenile female 236 mm DW, preserved) from Nagasaki, Japan.
FIGURE 15. A in Redescription of the eagle rays Myliobatis hamlyni Ogilby, 1911 and M. tobijei Bleeker, 1854 (Myliobatiformes: Myliobatidae) from the East Indo-West Pacific
FIGURE 15. A) Upper and B) lower tooth plates of Myliobatis tobijei FFNU unregistered (adult, dried jaws only).
FIGURE 2. A. Plakinastrella clippertonensis n in Sponges from Clipperton Island, East Pacific
FIGURE 2. A. Plakinastrella clippertonensis n. sp. habit of holotype, MNHN DCL 4042 – A. B – D. Oscarella carmela Muricy & Pearse, 2004, B. habit of specimen MNHN DCL 4050 – A, C – D. Oscarella carmela Muricy & Pearse, 2004, C. histological cross section showing basal lacunae and embryos, D. detail of the same showing choanocyte chambers separated by peripheral grooves.
FIGURE 1 in Sponges from Clipperton Island, East Pacific
FIGURE 1. Map of Clipperton Island (10 ° 17 – 18 ' N 109 ° 11 – 13 ' W), indicating approximate positions of diving stations where collections of sponges were made. Asterisks indicate positions of the Clipperton 1994 Expedition localities (material shared between CASIZ and ZMA), dots indicate positions of the Jean-Louis Etienne Clipperton Expédition 2004 / 5 (material kept in MNHN). For details of the collecting positions of individual samples of the various sponges cf. the descriptions under each species heading. Positions of the two samples obtained by the 1939 the motor cruiser Velero III visit to Clipperton are not indicated as they are unclear (' rocks to south of landing place'). Inset showing position (arrow) of Clipperton Island in the East Pacific.
FIGURE 4. Paratimea globastrella n in Sponges from Clipperton Island, East Pacific
FIGURE 4. Paratimea globastrella n. sp., A. habit of holotype ZMA Por. 21202, B. thick section of skeleton showing dominance of globular silica bodies interpreted as modified asters, C. tylostyles, D. centrotylote oxeas, E. large globular aster, F. smaller globular asters showing various stages of aster-derived lobes and spines.
FIGURE 3. Plakinastrella clippertonensis n in Sponges from Clipperton Island, East Pacific
FIGURE 3. Plakinastrella clippertonensis n. sp., spicules of holotype MNHN DCL 4042 – A. A. diods, B. microdiods, C. calthrops, D. triods, including ' microtriod' (at right).
FIGURE 3. Plakinastrella clippertonensis n in Sponges from Clipperton Island, East Pacific
FIGURE 3. Plakinastrella clippertonensis n. sp., spicules of holotype MNHN DCL 4042 – A. A. diods, B. microdiods, C. calthrops, D. triods, including ' microtriod' (at right).
FIGURE 2. A. Plakinastrella clippertonensis n in Sponges from Clipperton Island, East Pacific
FIGURE 2. A. Plakinastrella clippertonensis n. sp. habit of holotype, MNHN DCL 4042 – A. B – D. Oscarella carmela Muricy & Pearse, 2004, B. habit of specimen MNHN DCL 4050 – A, C – D. Oscarella carmela Muricy & Pearse, 2004, C. histological cross section showing basal lacunae and embryos, D. detail of the same showing choanocyte chambers separated by peripheral grooves.
FIGURE 1 in Sponges from Clipperton Island, East Pacific
FIGURE 1. Map of Clipperton Island (10 ° 17 – 18 ' N 109 ° 11 – 13 ' W), indicating approximate positions of diving stations where collections of sponges were made. Asterisks indicate positions of the Clipperton 1994 Expedition localities (material shared between CASIZ and ZMA), dots indicate positions of the Jean-Louis Etienne Clipperton Expédition 2004 / 5 (material kept in MNHN). For details of the collecting positions of individual samples of the various sponges cf. the descriptions under each species heading. Positions of the two samples obtained by the 1939 the motor cruiser Velero III visit to Clipperton are not indicated as they are unclear (' rocks to south of landing place'). Inset showing position (arrow) of Clipperton Island in the East Pacific.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.