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234 results for “northeast Pacific”
Appendix 2 in Tanaidacea (Crustacea; Peracarida) from chemically reduced habitats-the hydrothermal vent system of the Juan de Fuca Ridge, Escabana Trough and Gorda Ridge, northeast Pacific
Appendix 2. Microhabitat
Appendix 1 in Tanaidacea (Crustacea; Peracarida) from chemically reduced habitats-the hydrothermal vent system of the Juan de Fuca Ridge, Escabana Trough and Gorda Ridge, northeast Pacific
Appendix 1. Station list
Towards calibrating for bottom water oxygenation using magnetofossils: New insights from Southeast Atlantic and Northeast Pacific surface sediments
Open the record for dataset details and reuse information.
Data from: Decadal Time-Series Depletion of Dissolved Oxygen at Abyssal Depths in the Northeast Pacific
<p><strong>Decadal Time-Series Depletion of Dissolved Oxygen at Abyssal Depths in the Northeast Pacific </strong></p> <p>K.L. Smith Jr., M. Messié, T.P. Connolly, and C.L. Huffard</p> <p>10.1029/2022GL101018</p> <p><strong>Abstract</strong></p> <p>Dissolved oxygen depletion in the global ocean is well documented over several decades from the surface ocean to abyssal depths. This decline is especially prevalent in the Northeast Pacific. A significant decline in dissolved oxygen has been measured over 30 years at 4000-4100 m depth (Station M) beneath the California Current off central California. Three principal hypotheses examined the relationship of declining oxygen with biological and physical factors over the 30-year time series. Annual resolution revealed Ekman pumping, coastal upwelling, particulate matter flux, and sediment community oxygen consumption having significant correlations with bottom water dissolved oxygen concentration. Coastal upwelling accounted for 65% of the annual variation in bottom water oxygen concentration. Stepwise regression yielded descriptive models of bottom water dissolved oxygen using coastal upwelling, wind stress and primary production variables. Is continued oxygen depletion in the Northeast Pacific indicative of abyssal regions in the world ocean?</p> <p> </p> <p><strong>Dataset description:</strong></p> <p>This datafile contains two data tabs- monthly and yearly summaries of parameters measured near the seafloor and overlying surface waters and climate conditions. </p> <p>See details of data sources in <a href="http://10.1029/2022GL101018">Smith et al. Geophysical Research Letters</a></p> <p> </p> <p> </p>
FIGURE 33. Ventral view X in A taxonomic revision of Northeast Pacific softnose skates (Rajiformes: Arhynchobatidae: Bathyraja Ishiyama)
FIGURE 33. Ventral view X-radiograph of Bathyraja spinosissima, holotype, CAS 25617, 164 mm TL, prenatal male. X-radiograph by Jon Fong (CAS).
FIGURE 11 in A taxonomic revision of Northeast Pacific softnose skates (Rajiformes: Arhynchobatidae: Bathyraja Ishiyama)
FIGURE 11. Bathyraja interrupta, PSRC BSPP-A 01, 710 mm TL, mature male, dorsal view, fresh. Photo by Diane Haas (MLML). Scale bar = 70 mm.
FIGURE 2. Bathyraja abyssicola, PSRC Baby 110813-1, 1,125 in A taxonomic revision of Northeast Pacific softnose skates (Rajiformes: Arhynchobatidae: Bathyraja Ishiyama)
FIGURE 2. Bathyraja abyssicola, PSRC Baby 110813-1, 1,125 mm TL, female, ventral view, after freezing. Photo by J.D.S. Knuckey. Scale bar = 70 mm.
FIGURE 24 in A taxonomic revision of Northeast Pacific softnose skates (Rajiformes: Arhynchobatidae: Bathyraja Ishiyama)
FIGURE 24. Bathyraja microtrachys, mature male, dorsal view, fresh. Photo by D.A. Ebert. Scale bar = 70 mm.
FIGURE 16. Ventral view X in A taxonomic revision of Northeast Pacific softnose skates (Rajiformes: Arhynchobatidae: Bathyraja Ishiyama)
FIGURE 16. Ventral view X-radiograph of Bathyraja interrupta, CAS 243647, mature male. X-radiograph by Jon Fong (CAS).
FIGURE 1 in New Species of Lissodendoryx Topsent, 1892 (Demospongiae, Poecilosclerida Coelosphaeridae) and Myxilla Schmidt, 1862 (Demospongiae, Poecilosclerida Myxillidae) from the Northeast Pacific
FIGURE 1. Lissodendoryx (Lissodendoryx) barkleyensis n. sp. (A) Preserved holotype. (B) Apical cross section. (C) Ectosome. (D) Choanosome. (E) Acanthostyle, whole and enlarged tips. (F) Tornote, whole and enlarged tips. (G) Arcuate isochelae. (H) Large sigma. (I) Small sigmas, lower a flagellate variety.
FIGURE 2. A–B. Seguenzia cervola Dall, 1919. A. 1130–1266 m in The Family Seguenziidae Verrill, 1884 in the Northeast Pacific, including a comment on excessive numbers of taxonomic data portals
FIGURE 2. A–B. Seguenzia cervola Dall, 1919. A. 1130–1266 m, off North Coronado Island, Baja California (USNM 209229, holotype), 4.5 mm. B. 3592–3798 m, SW of Farallon Islands and W of Pioneer Seamount, off San Francisco County, California (USNM 701260, holotype of S. megaloconcha), 9.2 mm. C–D. Seguenzia macleani Geiger, 2017. C. 5100 m, Aleutian Trench at 175° 44' E (LACM 3321), holotype, 8.7 mm. D. 5180 m, abyssal plain W of Oregon, S of Gulf of Alaska (approximately 45° N, 153.8° W) (LACM 3486, paratype), 9.6 mm. E–F. Seguenzia giovia Dall, 1919. E. 874–1097 m, off Santa Catalina Island, Los Angeles County, California (USNM 209228, holotype), 6 mm. F. 3900 m, Tufts Abyssal Plain, W of Lincoln County, Oregon (LACM 2065, holotype of S. quinni), 7.6 mm. G–H. Seguenzia stephanica Dall, 1908. G. 2816 m, Cascadia Abyssal Plain, off Oregon (LACM 70-140.5), 7.1 mm. H. 5100 m, Aleutian Trench, Alaska at 44° N, 175° E (LACM), 5.2 mm.
FIGURE 1. A–B. Carenzia golikovi Geiger, 2017. A. 5180 m, Abyssal plain W in The Family Seguenziidae Verrill, 1884 in the Northeast Pacific, including a comment on excessive numbers of taxonomic data portals
FIGURE 1. A–B. Carenzia golikovi Geiger, 2017. A. 5180 m, Abyssal plain W of Oregon, S of Gulf of Alaska, Alaska (approximately 45° N, 153.8° W) (LACM 3317, holotype), 5.3 mm. B. 5100 m, Aleutian Trench, Alaska [near western end of chain], (52° 12'N, 175° 44'E) (LACM 3318, paratype). C. Carenzia inermis Quinn, 1983. 2820 m, Cascadia Abyssal Plain, off Oregon (LACM 1806, holotype), 6.8 mm. D. Asthelys careyi Geiger, 2017. 5180 m, abyssal plain W of Oregon, S of Gulf of Alaska, Alaska (approximately 45° N, 153.8' W) (LACM 3320, holotype), 7.0 mm. E–F. Oligomeria conoidea Galkin & Golikov, 1985. E. 166 m, S of Attu Island, Aleutian Islands, Alaska (LACM 1997-163.7), 5.9 mm. F. 219 m, NE of Semisopochnoi Island, Aleutian Islands, Alaska (LACM Station 86-330), 4.7 mm.
Northwest Atlantic and northeast Pacific oceans measurements collected during Sea Education Association (SEA) cruises
Measurements made in the northwest Atlantic and northeast Pacific oceans between 2008 and 2009.
Data and Codes for PNAS 2024: Atmosphere teleconnections from abatement of China aerosol emissions exacerbate Northeast Pacific warm blob events
<p>Codes for the analysis of anthropogenic aerosols' effect on the Northeast Pacific warm blob</p>
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