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54 results for “Pacific plate”
Plate 2 in A new subgenus including three new species of the genus Vexillum (Gastropoda: Costellariidae) from the central Indo-Pacific with remarks on Vexillum (Pusia) semicostatum (ANTON, 1838)
Plate 2: Vexillum (Protoelongata) subgen. nov. Fig. 8: Vexillum (Protoelongata) bilineatum (REEVE, 1845) comb. nov., Guam, Agat Bay, Dadi Beach, collected by night dive at 9 m. Aquarium photo by Bob Abela. Fig. 9: Vexillum (Protoelongata) cf. xerampelina (MELVILL, 1895) comb. nov., Japan, Okinawa, collected 2003. Photo by Shawn Miller. Fig. 10: Vexillum (Protoelongata) loyaltyense (HERVIER, 1897) comb. nov., Marshall Islands, Kwajalein Atoll on lagoon pinnacle at ~ 18 m, collected by night dive and photographed by Jeanette Johnson.
Plate 12 in A new subgenus including three new species of the genus Vexillum (Gastropoda: Costellariidae) from the central Indo-Pacific with remarks on Vexillum (Pusia) semicostatum (ANTON, 1838)
Plate 12: Vexillum (Protoelongata) xerampelina (MELVILL, 1895) comb. nov., all figures 3.5 x Fig. 40: Holotype, Arabian Sea, Yemen, Aden, 18.8 mm, ex coll. E.R. Shopland; J.C. Melvill, NMW.1955. 158.00429 (coll. Melvill-Tomlin). Fig. 41: Specimen, Mozambique, Nacala Bay, taken Oct 2006 by snorkel in coral sand at 1–2 m, 17.5 mm, MH. Fig. 42a–b: Specimen cf. V. (Pr.) xerampelina (MELVILL, 1895), Philippines, Cebu, Mactan Islands, collected May 1984 by shell nets, ex Ray Walker, 15.6 mm, NMBE 32379-2. Fig. 43: Specimen cf. V. (Pr.) xerampelina (MELVILL, 1895), Philippines, Bohol Strait, collected Jul 1991 by shell nets, 15.7 mm, NMBE 32378-2. Photos: Fig. 40 Harriet Wood (NMW), other photos Manfred Herrmann.
Promotion of Circum-Pacific Earthquakes on Plate Movement-data
<p>data S1. The steady-state deformation data supporting Figure 1(a).</p> <p>The first and second columns show the location of point (longitude and latitude). The third, fourth, and fifth columns show the displacement induced by 2011 Tohoku-Oki Mw 9.0 earthquake (east-west, north-south, and up-down components in m). The sixth, seventh, and eighth columns show the displacement induced by 2010 Chile Mw 8.8 earthquake (east-west, north-south, and up-down components in m).</p> <p>data S2. Expansion of normal direction in the East Pacific Rise supporting Figure 1(b).</p> <p>The first and second columns show the location of point (longitude and latitude). The third and fourth columns show the displacement induced by 2011 Tohoku-Oki Mw 9.0 earthquake (the angle from east and the magnitude of displacement vector in m). The fifth and sixth columns show the displacement induced by 2010 Chile Mw 8.8 earthquake (the angle from east and the magnitude of displacement vector in m).</p> <p>data S3. Steady-state strain field supporting Figure 1(c).</p> <p>The first and second columns show the location of point (longitude and latitude). The third, fourth and fifth columns show the strain changes induced by two earthquakes (east-west, north-south, and shear components).</p> <p>data S4. The co-seismic and post-seismic displacement data supporting Figure 2.</p> <p>The first and second columns show the location of point (longitude and latitude), and the third column show the epicenter distance. The co-seismic and post-seismic displacement induced by 2011 Tohoku-Oki Mw 9.0 earthquake in the fourth column to the ninth column at different times (0, 10yr, 100yr, 1000yr,10000yr, and infinity in m).</p>
Sub-Lithospheric Small-Scale Convection Tomographically Imaged Beneath the Pacific Plate
Open the record for dataset details and reuse information.
The different effects in medium-field and far-field of the Pacific plate subduction: revealed by magnetotelluric imaging at the eastern segment of the Central Asian Orogenic Belt
<p>The long-period magnetotelluric sounding profile with the length of 1500 km crossed major geological tectonic units in Northeast China, including the Erguna block, the Xing'an block, the Songnen block, and the Jiamusi block. MT data were recorded at 81 stations, with an average site spacing of 20 km</p>
The origin of granitoids in Southwest Japan: Implications for the transition from Pacific to Philippine Sea plate subduction
<p>Data for the research entitled <strong>"The origin of granitoids in Southwest Japan: Implications for the transition from Pacific to Philippine Sea plate subduction" </strong>by<strong> </strong>Dao et al., submitted to JP.</p> <p><strong>Table S1:</strong> Geochemical data of plutonic rocks in Southwest Japan: (1) Ryoke belt; (2) Sanyo belt; (3) Sanin belt.</p> <p><strong>Table S2:</strong> Petrographic observation: (1) Modal abundances; (2) Mineral assemblages.</p> <p><strong>Table S3:</strong> Zircon U-Pb ages (Ma) of plutonic rocks in SW Japan from this study.</p> <p><strong>Table S4:</strong> Compilation of age data for Cretaceous-Paleogene igneous rocks in SW Japan.</p> <p><strong>Table S5:</strong> Geochemical data of plutonic rocks in SW Japan compiled by Haraguchi et al. (2018).</p> <p><strong>Table S6:</strong> Compilation of Sr-Nd isotope data of ~110 Ma to ~20 Ma plutonic rocks in SW Japan.</p> <p><strong>Table S7:</strong> CIPW normative compositions of SW-Japan granitoids from this study.</p> <p><strong>Table S8:</strong> End-member components used to estimate sediment contributions.</p> <p><strong>Table S9: </strong>Results of sediment contribution estimations.</p>
FIGURE 15 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 15. Variation in the number of pored lateral-line scales with size in four species of Foa. F. brachygramma =, F. f o =, F. n i v o s a =, F. leisi =.
FIGURE 14 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 14. Distribution of collection sites. Foa brachygramma =, F. f o =, F. n i v os a =, F. leisi =.
FIGURE 13 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 13. Foa nivosa semi-diagrammatic views of lateral-line scales and base of caudal fin scale characteristic. A. BPBM 39658, 21 mm SL cleared and stained for bone and counter stained for cartilage, fourth pored scale. B. First pitted scale. C. ROM 77135, 25 mm SL, ctenoid scales at the base of the caudal fin posterior to last pitted scale with free neuromasts as dots.
FIGURE 5 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 5. Semi-diagrammatic caudal region of Foa brachygramma: A. Last lateral-line scales with free neuromasts (dots), BPBM 37322, 37 mm SL. B. Composite diagrammatic free neuromasts (enlarged dots) along the edges of branched caudal finrays, BPBM 37322, 34 mm SL.
FIGURE 10. Foa leisi paratype, AMS I.34517.008, 30.1 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 10. Foa leisi paratype, AMS I.34517.008, 30.1 mm SL, cephalic pores and free neuromasts, semi-diagrammatic. A. Dorsal view. B. Lateral view. C. Ventral view.
FIGURE 4 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 4. Semi-diagrammatic lateral line scales of Foa brachygramma, BPBM 37322, 37 mm SL, right side reversed. A. Fifth lateral-line scale with free neuromast pattern. B. Last pored lateral-line scale (tenth pored scale) and first pitted scale with free neuromast pattern.
FIGURE 2. Foa brachygramma, BPBM 37322, 34 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 2. Foa brachygramma, BPBM 37322, 34 mm SL, semi-diagrammatic dorsal (A, slightly canted to left), lateral (B) and C. ventral (lower jaw) views of the head with pores and free neuromasts (dots). articular = articular pore; io = infraorbital pores; mental = mental pore; so = supraorbital pores; sto = supratemporal pores.
FIGURE 7 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 7. Foa fo, AMS I.27783-003, 36 mm SL. semi-diagrammatic views of the head. A. dorsal. B. right side reversed. C. lower jaw, right side, reversed. pores = shaded; free neuromasts (dots).
FIGURE 12. Foa nivosa, BPBM 39658, 21 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 12. Foa nivosa, BPBM 39658, 21 mm SL, cleared, stained for bone and counter stained for cartilage, semi-diagrammatic views. A. Last four dorsal spines and supporting elements. B. Caudal fin bone and cartilage elements, angled arrows show insertion of procurrent rays to straight arrow at insertion of primary rays.
FIGURE 11. Foa nivosa, ROM 77135, 25 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 11. Foa nivosa, ROM 77135, 25 mm SL, paratype, semi-diagrammatic views of pores, shaded, free neuromasts as dots on the head. A. Dorsal region. B. Infraorbital region, incomplete postero-dorsally, right side, laterally reversed, C. Lower jaw, left side.
FIGURE 6 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 6. Foa fo: A. Live from Palau by Hirashi Nagano. B. Post mortem USNM 28.7 mm SL, Wallis I, by J. T. Williams. C. Live from Sharm el Shiekh, Egypt by Jean Louis Rose. D. False type of Foa fo, USNM 51735, 27 mm SL, Samoa, Upolu, Apia, in Jordan and Seale (1906), digital scan of original published as fig. 42, drawn by Chloe Starks.
FIGURE 1 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 1. Foa brachygramma: A. Live, daylight, Oahu, Hawaii, by R. F. Myers. B. Live, night, Oahu, Hawaii, by J. E. Randall. C. Holotype of Fowleria brachygrammus, USNM 50699, 35 mm SL, Honolulu, Hawaii, Jenkins (1903) from a digital scan of original drawing published as figure 20 drawn by W. Atkinson, also as Foa brachygramma in Jordan and Seale's (1905) figure 5 and in Jordan and Evermann's (1905) figure 82. D. BPBM 37227, 40 mm SL, post-mortem, Oahu, Hawaii, by John E. Randall. E. BPBM 37322, 34 mm SL, preserved in 55% isopropyl alcohol.
FIGURE 3 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 3. Semi-diagrammatic pores and free neuromasts (dots) of Foa brachygramma, BPBM 37322, 34 mm SL: A. Preopercle, right side, reversed, neuromasts a composite of both sides. B. Upper opercular region pores and free neuromasts (dots) on the anterior opercular scale.
FIGURE 9 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 9. Foa leisi: A. Holotype, AMS I.34514-002, xx mm SL, Taiaro Atoll, lagoon, preserved in 70% ethyl alcohol. B. Paratype, USNM 379712, 36 mm SL, Rapa Iti, Haurei Bay, post mortem by J. T. Williams. Foa nivosa: C. Holotype, BPBM 39658, 26 mm SL, live, Marshall Is., Majuro Atoll, by J. E. Randall. D. Holotype, preserved in 55% isopropyl alcohol. E. Paratype, 25.8 mm SL, ROM 77135, Palau, Ngeruketabel I., post mortem by R. Winterbottom.
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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)
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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.