NARA Discovery
NARA Subscribed Scholarly Literature Discovery
Boolean search: climate AND coral · microplastic OR nanoplastic · plastic NOT freshwater · "marine heatwave"
Advanced Search
Topic searches article titles and abstracts. Starts a new search; publisher and year refine it.
Searches article titles and abstracts.
Accepts bare DOI, doi: prefix, or a doi.org URL.
Complete publisher name. Publisher imprints are grouped under their main publisher where applicable.
Exact match by full journal title or ISSN.
Jennifer Sutherland results 14 · Newest (Page 1/1, per page 25)
Export CSV Export RIS Export current results · up to 5,000 records
Author: Jennifer Sutherland ×Clear All Filters
Search Results
Archives of Toxicology · 2021 · Vol. 95 · Issue 12 · Springer
Mechanism-based risk assessment is urged to advance and fully permeate into current safety assessment practices, possibly at early phases of drug safety testing. Toxicogenomics is a promising source of mechanisms-revealing data, but interpretative analysis tools specific for the testing systems (e.g. hepatocytes) are lacking. In this study, we present the TXG-MAPr webtool (available at https://txg-mapr.eu/WGCNA_PHH/TGGATEs_PHH...
Limnology and Oceanography · 2021 · Vol. 66 · Issue 10 · Wiley
Marine microbes produce extracellular reactive oxygen species (ROS) such as superoxide and hydrogen peroxide (H 2 O 2 ) as a result of regulated and nonregulated physiological and metabolic reactions. ROS production can be a sink and cryptic recycling flux of dissolved oxygen that may rival other key fluxes in the global oxygen cycle; however, the low abundance and high turnover rate of ROS makes this figure difficult to const...
Ecology · 2021 · Vol. 102 · Issue 6 · Wiley
Michael V. Cove; Roland Kays; Helen Bontrager; Claire Bresnan; Monica Lasky; Taylor Frerichs; Renee Klann; Thomas E. Lee; Seth C. Crockett; Anthony P. Crupi; Katherine C. B. Weiss; Helen Rowe; Tiffany Sprague; Jan Schipper; Chelsey Tellez; Christopher A. Lepczyk; Jean E. Fantle‐Lepczyk; Scott LaPoint; Jacque Williamson; M. Caitlin Fisher‐Reid; Sean M. King; Alexandra J. Bebko; Petros Chrysafis; Alex J. Jensen; David S. Jachowski; Joshua Sands; Kelly Anne MacCombie; Daniel J. Herrera; Marius van der Merwe; Travis W. Knowles; Robert V. Horan; Michael S. Rentz; LaRoy S. E. Brandt; Christopher Nagy; Brandon T. Barton; Weston C. Thompson; Sean P. Maher; Andrea K. Darracq; George Hess; Arielle W. Parsons; Brenna Wells; Gary W. Roemer; Cristian J. Hernandez; Matthew E. Gompper; Stephen L. Webb; John P. Vanek; Diana J. R. Lafferty; Amelia M. Bergquist; Tru Hubbard; Tavis Forrester; Darren Clark; Connor Cincotta; Jorie Favreau; Aaron N. Facka; Michelle Halbur; Steven Hammerich; Morgan Gray; Christine C. Rega‐Brodsky; Caleb Durbin; Elizabeth A. Flaherty; Jarred M. Brooke; Stephanie S. Coster; Richard G. Lathrop; Katarina Russell; Daniel A. Bogan; Rachel Cliché; Hila Shamon; Melissa T. R. Hawkins; Sharyn B. Marks; Robert C. Lonsinger; M. Teague O'Mara; Justin A. Compton; Melinda Fowler; Erika L. Barthelmess; Katherine E. Andy; Jerrold L. Belant; Dean E. Beyer; Todd M. Kautz; Daniel G. Scognamillo; Christopher M. Schalk; Matthew S. Leslie; Sophie L. Nasrallah; Caroline N. Ellison; Chip Ruthven; Sarah Fritts; Jaquelyn Tleimat; Mandy Gay; Christopher A. Whittier; Sean A. Neiswenter; Robert Pelletier; Brett A. DeGregorio; Erin K. Kuprewicz; Miranda L. Davis; Adrienne Dykstra; David S. Mason; Carolina Baruzzi; Marcus A. Lashley; Derek R. Risch; Melissa R. Price; Maximilian L. Allen; Laura S. Whipple; Jinelle H. Sperry; Robert H. Hagen; Alessio Mortelliti; Bryn E. Evans; Colin E. Studds; Alexej P. K. Sirén; Jillian Kilborn; Chris Sutherland; Paige Warren; Todd Fuller; Nyeema C. Harris; Neil H. Carter; Edward Trout; Marketa Zimova; Sean T. Giery; Fabiola Iannarilli; Summer D. Higdon; Ronald S. Revord; Christopher P. Hansen; Joshua J. Millspaugh; Adam Zorn; John F. Benson; Nathaniel H. Wehr; Jaylin N. Solberg; Brian D. Gerber; Jessica C. Burr; Jennifer Sevin; Austin M. Green; Çağan H. Şekercioğlu; Mary Pendergast; Kelsey A. Barnick; Andrew J. Edelman; Joanne R. Wasdin; Andrea Romero; Brian J. O'Neill; Noel Schmitz; Jesse M. Alston; Kellie M. Kuhn; Damon B. Lesmeister; Mark A. Linnell; Cara L. Appel; Christopher Rota; Jennifer L. Stenglein; Christine Anhalt‐Depies; Carrie Nelson; Robert A. Long; Kodi Jo Jaspers; Kathryn R. Remine; Mark J. Jordan; Daniel Davis; Haydée Hernández‐Yáñez; Jennifer Y. Zhao; William J. McShea
With the accelerating pace of global change, it is imperative that we obtain rapid inventories of the status and distribution of wildlife for ecological inferences and conservation planning. To address this challenge, we launched the SNAPSHOT USA project, a collaborative survey of terrestrial wildlife populations using camera traps across the United States. For our first annual survey, we compiled data across all 50 states dur...
Conservation Biology · 2018 · Vol. 32 · Issue 5 · Wiley
Effective conservation management interventions must combat threats and deliver benefits at costs that can be achieved within limited budgets. Considerable effort has focused on measuring the potential benefits of conservation interventions, but explicit quantification of the financial costs of implementation is rare. Even when costs have been quantified, haphazard and inconsistent reporting means published values are difficul...
Limnology and Oceanography · 2018 · Vol. 63 · Issue 1 · Wiley
Despite its delicate morphology, the lobate ctenophore Mnemiopsis leidyi thrives in coastal ecosystems as an influential zooplankton predator. Coastal ecosystems are often characterized as energetic systems with high levels of natural turbulence in the water column. To understand how natural wind‐driven turbulence affects the feeding ecology of M. leidyi , we used a combination of approaches to quantify how naturally and labor...
Ecology · 2013 · Vol. 94 · Issue 1 · Wiley
The relative fitness of individuals across a population can shape distributions and drive population growth rates. Migratory species often winter over large geographic ranges, and individuals in different locations experience very different environmental conditions, including different migration costs, which can potentially create fitness inequalities. Here we used energetics models to quantify the trade‐offs experienced by a...
Ecology Letters · 2008 · Vol. 11 · Issue 2 · Wiley
Most organisms live in changing environments or do not use the same resources at different stages of their lives or in different seasons. As a result, density dependence will affect populations differently at different times. Such sequential density dependence generates markedly different population responses compared to the unrealistic assumption that all events occur simultaneously. Various field studies have also shown that...