Zobrazeno 1 - 10
of 129
pro vyhledávání: '"Rachel T, Noble"'
Publikováno v:
Aquaculture Reports, Vol 34, Iss , Pp 101901- (2024)
Expansion of oyster aquaculture industries throughout the southeastern United States has been met with recurring, often catastrophic mortality events, limiting capacity for industry growth. Numerous etiologies have been proposed, including regional e
Externí odkaz:
https://doaj.org/article/5c22c1c97dff4f9999da4b114264f9ba
Autor:
Jenna M Hynes, Rachelle E Beattie, A Denene Blackwood, Thomas Clerkin, Javier Gallard-Góngora, Rachel T Noble
Publikováno v:
PLoS ONE, Vol 19, Iss 4, p e0299254 (2024)
Estuarine water quality is declining worldwide due to increased tourism, coastal development, and a changing climate. Although well-established methods are in place to monitor water quality, municipalities struggle to use the data to prioritize infra
Externí odkaz:
https://doaj.org/article/827240e593c0459eb2d25bcdbb6a1ac9
Autor:
Ryan P. Kelly, David M. Lodge, Kai N. Lee, Susanna Theroux, Adam J. Sepulveda, Christopher A. Scholin, Joseph M. Craine, Elizabeth Andruszkiewicz Allan, Krista M. Nichols, Kim M. Parsons, Kelly D. Goodwin, Zachary Gold, Francisco P. Chavez, Rachel T. Noble, Cathryn L. Abbott, Melinda R. Baerwald, Amanda M. Naaum, Peter M. Thielen, Ariel Levi Simons, Christopher L. Jerde, Jeffrey J. Duda, Margaret E. Hunter, John A. Hagan, Rachel Sarah Meyer, Joshua A. Steele, Mark Y. Stoeckle, Holly M. Bik, Christopher P. Meyer, Eric Stein, Karen E. James, Austen C. Thomas, Elif Demir‐Hilton, Molly A. Timmers, John F. Griffith, Michael J. Weise, Stephen B. Weisberg
Publikováno v:
Environmental DNA, Vol 6, Iss 1, Pp n/a-n/a (2024)
Abstract Environmental DNA (eDNA) data make it possible to measure and monitor biodiversity at unprecedented resolution and scale. As use‐cases multiply and scientific consensus grows regarding the value of eDNA analysis, public agencies have an op
Externí odkaz:
https://doaj.org/article/fab2ca4b64a546978444da04c334ac85
Autor:
Jill S. McClary-Gutierrez, Mia C. Mattioli, Perrine Marcenac, Andrea I. Silverman, Alexandria B. Boehm, Kyle Bibby, Michael Balliet, Francis L. de los Reyes, Daniel Gerrity, John F. Griffith, Patricia A. Holden, Dimitrios Katehis, Greg Kester, Nathan LaCross, Erin K. Lipp, Jonathan Meiman, Rachel T. Noble, Dominique Brossard, Sandra L. McLellan
Publikováno v:
Emerging Infectious Diseases, Vol 27, Iss 9, Pp 1-8 (2021)
Wastewater surveillance for severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has garnered extensive public attention during the coronavirus disease pandemic as a proposed complement to existing disease surveillance systems. Over the past
Externí odkaz:
https://doaj.org/article/1849bbfc06814c0093c941dd2f3c86ef
Publikováno v:
PLoS ONE, Vol 17, Iss 6, p e0270659 (2022)
Wastewater based epidemiology (WBE) is useful for tracking and monitoring the level of disease prevalence in a community and has been used extensively to complement clinical testing during the current COVID-19 pandemic. Despite the numerous benefits,
Externí odkaz:
https://doaj.org/article/ec693e8f15c545d7a82775e446f09032
Autor:
Megan A. Stallard, Riley Mulhern, Emily Greenwood, Taylor Franklin, Lawrence S. Engel, Michael B. Fisher, Mark D. Sobsey, Hania Zanib, Rachel T. Noble, Jill R. Stewart, Emanuele Sozzi
Publikováno v:
Water Research X, Vol 12, Iss , Pp 100102- (2021)
Privately-owned drinking water wells serving fewer than 25 people (private wells) are prevalent and understudied across most of the US. Private wells primarily serve rural households located outside of municipal drinking water and sewerage service co
Externí odkaz:
https://doaj.org/article/59d609523f82480cb7e2002def2fc522
Autor:
Philip J. Landrigan, John J. Stegeman, Lora E. Fleming, Denis Allemand, Donald M. Anderson, Lorraine C. Backer, Françoise Brucker-Davis, Nicolas Chevalier, Lilian Corra, Dorota Czerucka, Marie-Yasmine Dechraoui Bottein, Barbara Demeneix, Michael Depledge, Dimitri D. Deheyn, Charles J. Dorman, Patrick Fénichel, Samantha Fisher, Françoise Gaill, François Galgani, William H. Gaze, Laura Giuliano, Philippe Grandjean, Mark E. Hahn, Amro Hamdoun, Philipp Hess, Bret Judson, Amalia Laborde, Jacqueline McGlade, Jenna Mu, Adetoun Mustapha, Maria Neira, Rachel T. Noble, Maria Luiza Pedrotti, Christopher Reddy, Joacim Rocklöv, Ursula M. Scharler, Hariharan Shanmugam, Gabriella Taghian, Jeroen A. J. M. van de Water, Luigi Vezzulli, Pál Weihe, Ariana Zeka, Hervé Raps, Patrick Rampal
Publikováno v:
Annals of Global Health, Vol 86, Iss 1 (2020)
Background: Pollution – unwanted waste released to air, water, and land by human activity – is the largest environmental cause of disease in the world today. It is responsible for an estimated nine million premature deaths per year, enormous econ
Externí odkaz:
https://doaj.org/article/8266ee00dd5c46b2aa905b44796b2023
Publikováno v:
Frontiers in Public Health, Vol 7 (2019)
Vibrio parahaemolyticus is a ubiquitous and abundant member of native microbial assemblages in coastal waters and shellfish. Though V. parahaemolyticus is predominantly environmental, some strains have infected human hosts and caused outbreaks of sea
Externí odkaz:
https://doaj.org/article/9ca15f0e09574d19a5005bd0969e0ea9
Autor:
Ryan P. Kelly, David M. Lodge, Kai N. Lee, Susanna Theroux, Adam J. Sepulveda, Christopher A. Scholin, Joseph M. Craine, Elizabeth Andruszkiewicz Allan, Krista M. Nichols, Kim M. Parsons, Kelly D. Goodwin, Zachary Gold, Francisco P. Chavez, Rachel T. Noble, Cathryn L. Abbott, Melinda R. Baerwald, Amanda M. Naaum, Peter M. Thielen, Ariel Levi Simons, Christopher L. Jerde, Jeffrey J. Duda, Margaret E. Hunter, John A. Hagan, Rachel Sarah Meyer, Joshua A. Steele, Mark Y. Stoeckle, Holly M. Bik, Christopher P. Meyer, Eric Stein, Karen E. James, Austen C. Thomas, Elif Demir‐Hilton, Molly A. Timmers, John F. Griffith, Michael J. Weise, Stephen B. Weisberg
Publikováno v:
Environmental DNA.
Autor:
Marc L. Salit, Mark A. Borchardt, Rachel T. Noble, Alexandria B. Boehm, Krista R. Wigginton, Susan K. Spencer
Publikováno v:
Environmental Science & Technology. 55:10210-10223
Real-time quantitative polymerase chain reaction (qPCR) and digital PCR (dPCR) methods have revolutionized environmental microbiology, yielding quantitative organism-specific data of nucleic acid targets in the environment. Such data are essential fo