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Limnology and Oceanography · 2025 · Vol. 70 · Issue 10 · Wiley
Under the supposition that organisms inhabiting physically dynamic marine environments are better able to survive hypoxic conditions than those experiencing little turbulent or advective augmentation of oxygen fluxes, we evaluated summertime benthic macrofauna communities, in situ aquatic eddy covariance measurements, and ex situ sediment core incubations from 5 latitudinally distinct mid‐shelf locations off Oregon–Washington,...
Limnology and Oceanography · 2025 · Vol. 70 · Issue S1 · Wiley
Marine heatwave (MHW) events have led to acute decreases in primary production and phytoplankton biomass in the surface ocean, particularly at the mid latitudes. In the Northeast Pacific, these anomalous events have occasionally encroached onto the Oregon shelf during the ecologically important summer upwelling season. Increased temperatures reduce the density of offshore waters, and as a MHW is present offshore, coincident do...
Limnology and Oceanography · 2024 · Vol. 69 · Issue 4 · Wiley
Widespread hypoxia occurs seasonally across the Oregon continental shelf, and the duration, intensity, and frequency of hypoxic events have increased in recent years. In hypoxic regions, iron reduction can liberate dissolved Fe(II) from continental shelf sediments. Fe(II) was measured in the water column across the continental shelf and slope on the Oregon coast during summer 2022 using both a trace metal clean rosette and a h...
Yves Guglielmi; Mark McClure; Jeffrey Burghardt; Joseph P. Morris; Thomas Doe; Pengcheng Fu; Hunter Knox; Vince Vermeul; Tim Kneafsey; J. Ajo-Franklin; T. Baumgartner; K. Beckers; D. Blankenship; A. Bonneville; L. Boyd; S. Brown; J.A. Burghardt; C. Chai; A. Chakravarty; T. Chen; Y. Chen; B. Chi; K. Condon; P.J. Cook; D. Crandall; P.F. Dobson; T. Doe; C.A. Doughty; D. Elsworth; J. Feldman; Z. Feng; A. Foris; L.P. Frash; Z. Frone; P. Fu; K. Gao; A. Ghassemi; Y. Guglielmi; B. Haimson; A. Hawkins; J. Heise; C. Hopp; M. Horn; R.N. Horne; J. Horner; M. Hu; H. Huang; L. Huang; K.J. Im; M. Ingraham; E. Jafarov; R.S. Jayne; T.C. Johnson; S.E. Johnson; B. Johnston; S. Karra; K. Kim; D.K. King; T. Kneafsey; H. Knox; J. Knox; D. Kumar; K. Kutun; M. Lee; D. Li; J. Li; K. Li; Z. Li; M. Maceira; P. Mackey; N. Makedonska; C.J. Marone; E. Mattson; M.W. McClure; J. McLennan; T. McLing; C. Medler; R.J. Mellors; E. Metcalfe; J. Miskimins; J. Moore; C.E. Morency; J.P. Morris; T. Myers; S. Nakagawa; G. Neupane; G. Newman; A. Nieto; T. Paronish; R. Pawar; P. Petrov; B. Pietzyk; R. Podgorney; Y. Polsky; J. Pope; S. Porse; J.C. Primo; T. Pyatina; C. Reimers; B.Q. Roberts; M. Robertson; V. Rodríguez-Tribaldos; W. Roggenthen; J. Rutqvist; D. Rynders; M. Schoenball; P. Schwering; V. Sesetty; C.S. Sherman; A. Singh; M.M. Smith; H. Sone; E.L. Sonnenthal; F.A. Soom; D.P. Sprinkle; S. Sprinkle; C.E. Strickland; J. Su; D. Templeton; J.N. Thomle; C. Ulrich; N. Uzunlar; A. Vachaparampil; C.A. Valladao; W. Vandermeer; G. Vandine; D. Vardiman; V.R. Vermeul; J.L. Wagoner; H.F. Wang; J. Weers; N. Welch; J. White; M.D. White; P. Winterfeld; T. Wood; S. Workman; H. Wu; Y.S. Wu; E.C. Yildirim; Y. Zhang; Y.Q. Zhang; Q. Zhou; M.D. Zoback
Global Change Biology · 2023 · Vol. 29 · Issue 12 · Wiley
Scientists and managers rely on indicator taxa such as coral and macroalgal cover to evaluate the effects of human disturbance on coral reefs, often assuming a universally positive relationship between local human disturbance and macroalgae. Despite evidence that macroalgae respond to local stressors in diverse ways, there have been few efforts to evaluate relationships between specific macroalgae taxa and local human‐driven d...
Frontiers in Marine Science · 2021 · Vol. 8 · Frontiers
Population size estimates are key parameters used in assessments to evaluate and determine a species’ conservation status. Typically, sea turtle population estimates are made from nesting beach surveys which capture only hatchling and adult female life stages and can display trends opposite of the full population. As such, in-water studies are critical to improve our understanding of sea turtle population dynamics as they can...
Polar Biology · 2021 · Vol. 44 · Issue 5 · Springer
To elucidate genetic variability in vigilance behaviour for reindeer with historical differences in their interactions with predators and humans, we measured vigilance frequency and duration for grazing reindeer in Southern Norway (Rondane and Norefjell-Reinsjøfjell), Svalbard (Edgeøya and Nordenskiöld Land) and Barf/Royal Bay and Busen in the southern Hemisphere (South Georgia). Averaged for all areas, frequency and duration...
Rock Mechanics and Rock Engineering · 2020 · Vol. 53 · Issue 11 · Springer
Katherine J. Condon; Hiroki Sone; Herbert F. Wang; J. Ajo-Franklin; T. Baumgartner; K. Beckers; D. Blankenship; A. Bonneville; L. Boyd; S. Brown; J. A. Burghardt; C. Chai; Y. Chen; B. Chi; K. Condon; P. J. Cook; D. Crandall; P. F. Dobson; T. Doe; C. A. Doughty; D. Elsworth; J. Feldman; Z. Feng; A. Foris; L. P. Frash; Z. Frone; P. Fu; K. Gao; A. Ghassemi; Y. Guglielmi; B. Haimson; A. Hawkins; J. Heise; C. Hopp; M. Horn; R. N. Horne; J. Horner; M. Hu; H. Huang; L. Huang; K. J. Im; M. Ingraham; E. Jafarov; R. S. Jayne; S. E. Johnson; T. C. Johnson; B. Johnston; K. Kim; D. K. King; T. Kneafsey; H. Knox; J. Knox; D. Kumar; M. Lee; K. Li; Z. Li; M. Maceira; P. Mackey; N. Makedonska; E. Mattson; M. W. McClure; J. McLennan; C. Medler; R. J. Mellors; E. Metcalfe; J. Moore; C. E. Morency; J. P. Morris; T. Myers; S. Nakagawa; G. Neupane; G. Newman; A. Nieto; C. M. Oldenburg; T. Paronish; R. Pawar; P. Petrov; B. Pietzyk; R. Podgorney; Y. Polsky; J. Pope; S. Porse; J. C. Primo; C. Reimers; B. Q. Roberts; M. Robertson; W. Roggenthen; J. Rutqvist; D. Rynders; M. Schoenball; P. Schwering; V. Sesetty; C. S. Sherman; A. Singh; M. M. Smith; H. Sone; E. L. Sonnenthal; F. A. Soom; P. Sprinkle; C. E. Strickland; J. Su; D. Templeton; J. N. Thomle; V. R. Tribaldos; C. Ulrich; N. Uzunlar; A. Vachaparampil; C. A. Valladao; W. Vandermeer; G. Vandine; D. Vardiman; V. R. Vermeul; J. L. Wagoner; H. F. Wang; J. Weers; N. Welch; J. White; M. D. White; P. Winterfeld; T. Wood; S. Workman; H. Wu; Y. S. Wu; E. C. Yildirim; Y. Zhang; Y. Q. Zhang; Q. Zhou; M. D. Zoback
Global Change Biology · 2019 · Vol. 25 · Issue 10 · Wiley
Animals must balance a series of costs and benefits while trying to maximize their fitness. For example, an individual may need to choose how much energy to allocate to reproduction versus growth, or how much time to spend on vigilance versus foraging. Their decisions depend on complex interactions between environmental conditions, behavioral plasticity, reproductive biology, and energetic demands. As animals respond to novel...