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Publications

Since its inception in 2008, CASC-funded research projects have generated over 2,000 publications in academic journals across the sciences, including articles in high-impact journals such as Science and Nature. Browse a selection of publications from CASC-funded projects below. For a complete list of our scientific projects, publications, and data, explore our Project Explorer database.

Filter Total Items: 503

Ecosystem vulnerability to climate change in the southeastern United States

Two recent investigations of climate-change vulnerability for 19 terrestrial, aquatic, riparian, and coastal ecosystems of the southeastern United States have identified a number of important considerations, including potential for changes in hydrology, disturbance regimes, and interspecies interactions. Complementary approaches using geospatial analysis and literature synthesis integrated informa
Authors
Jennifer M. Cartwright, Jennifer Costanza

Insular ecosystems of the southeastern United States—A regional synthesis to support biodiversity conservation in a changing climate

In the southeastern United States, insular ecosystems—such as rock outcrops, depression wetlands, high-elevation balds, flood-scoured riparian corridors, and insular prairies and barrens—occupy a small fraction of land area but constitute an important source of regional and global biodiversity, including concentrations of rare and endemic plant taxa. Maintenance of this biodiversity depends upon r
Authors
Jennifer M. Cartwright, William J. Wolfe

Assessing climate-sensitive ecosystems in the southeastern United States

Climate change impacts ecosystems in many ways, from effects on species to phenology to wildfire dynamics. Assessing the potential vulnerability of ecosystems to future changes in climate is an important first step in prioritizing and planning for conservation. Although assessments of climate change vulnerability commonly are done for species, fewer have been done for ecosystems. To aid regional c
Authors
Jennifer Costanza, Scott Beck, Milo Pyne, Adam Terando, Matthew J. Rubino, Rickie White, Jaime Collazo

To manage inland fisheries is to manage at the social-ecological watershed scale

Approaches to managing inland fisheries vary between systems and regions but are often based on large-scale marine fisheries principles and thus limited and outdated. Rarely do they adopt holistic approaches that consider the complex interplay among humans, fish, and the environment. We argue that there is an urgent need for a shift in inland fisheries management towards holistic and transdiscipli
Authors
Vivian T. Nguyen, Abigail Lynch, Nathan Young, Ian G. Cowx, T. Douglas Beard, William W. Taylor, Steven J. Cooke

Effects of climate change on tidal marshes along a latitudinal gradient in California

Public SummaryThe coastal region of California supports a wealth of ecosystem services including habitat provision for wildlife and fisheries. Tidal marshes, mudflats, and shallow bays within coastal estuaries link marine, freshwater and terrestrial habitats, and provide economic and recreational benefits to local communities. Climate change effects such as sea-level rise (SLR) are altering these
Authors
Karen M. Thorne, Glen M. MacDonald, Rich F. Ambrose, Kevin Buffington, Chase M. Freeman, Christopher N. Janousek, Lauren N. Brown, James R. Holmquist, Glenn R. Guntenspergen, Katherine W. Powelson, Patrick L. Barnard, John Y. Takekawa

Reconstructions of Columbia River streamflow from tree-ring chronologies in the Pacific Northwest, USA

We developed Columbia River streamflow reconstructions using a network of existing, new, and updated tree-ring records sensitive to the main climatic factors governing discharge. Reconstruction quality is enhanced by incorporating tree-ring chronologies where high snowpack limits growth, which better represent the contribution of cool-season precipitation to flow than chronologies from trees posit
Authors
Jeremy S. Littell, Gregory T. Pederson, Stephen T. Gray, Michael Tjoelker, Alan F. Hamlet, Connie A. Woodhouse

Parameter regionalization of a monthly water balance model for the conterminous United States

A parameter regionalization scheme to transfer parameter values from gaged to ungaged areas for a monthly water balance model (MWBM) was developed and tested for the conterminous United States (CONUS). The Fourier Amplitude Sensitivity Test, a global-sensitivity algorithm, was implemented on a MWBM to generate parameter sensitivities on a set of 109 951 hydrologic response units (HRUs) across the
Authors
Andrew R. Bock, Lauren E. Hay, Gregory J. McCabe, Steven L. Markstrom, R. Dwight Atkinson

Assessing the sensitivity of avian species abundance to land cover and climate

Climate projections for the Midwestern United States predict southerly climates to shift northward. These shifts in climate could alter distributions of species across North America through changes in climate (i.e., temperature and precipitation), or through climate-induced changes on land cover. Our objective was to determine the relative impacts of land cover and climate on the abundance of five
Authors
Jaymi J. LeBrun, Wayne E. Thogmartin, Frank R. Thompson, William D. Dijak, Joshua J. Millspaugh

Report from the workshop on climate downscaling and its application in high Hawaiian Islands, September 16–17, 2015

In the subtropical and tropical Pacific islands, changing climate is predicted to influence precipitation and freshwater availability, and thus is predicted to impact ecosystems goods and services available to ecosystems and human communities. The small size of high Hawaiian Islands, plus their complex microlandscapes, require downscaling of global climate models to provide future projections of g
Authors
David A. Helweg, Victoria Keener, Jeff M. Burgett

Identifying bird and reptile vulnerabilities to climate change in the southwestern United States

Current and future breeding ranges of 15 bird and 16 reptile species were modeled in the Southwestern United States. Rather than taking a broad-scale, vulnerability-assessment approach, we created a species distribution model (SDM) for each focal species incorporating climatic, landscape, and plant variables. Baseline climate (1940–2009) was characterized with Parameter-elevation Regressions on In
Authors
James R. Hatten, J. Tomasz Giermakowski, Jennifer A. Holmes, Erika M. Nowak, Matthew J. Johnson, Kirsten E. Ironside, Charles van Riper, Michael Peters, Charles Truettner, Kenneth L. Cole

On the sustainability of inland fisheries: Finding a future for the forgotten

At present, inland fisheries are not often a national or regional governance priority and as a result, inland capture fisheries are undervalued and largely overlooked. As such they are threatened in both developing and developed countries. Indeed, due to lack of reliable data, inland fisheries have never been part of any high profile global fisheries assessment and are notably absent from the Sust
Authors
Steven J. Cooke, Edward H. Allison, T. Douglas Beard, Robert Arlinghaus, Angela Arthington, Devin Bartley, Ian G. Cowx, Carlos Fuentevilla, Nancy J. Léonard, Kai Lorenzen, Abigail Lynch, Vivian M. Nguyen, So-Jung Youn, William W. Tayor, Robin Welcomme

Increased water deficit decreases Douglas fir growth throughout western US forests

Changes in tree growth rates can affect tree mortality and forest feedbacks to the global carbon cycle. As air temperature increases, evaporative demand also increases, increasing effective drought in forest ecosystems. Using a spatially comprehensive network of Douglas-fir (Pseudotsuga menziesii) chronologies from 122 locations that experience distinctly different climate in the western United St
Authors
Christina M Restaino, David L. Peterson, Jeremy S. Littell