Select Publications

  • Toft, J., J. Cordell, L. Stamatiou and C. A. Simenstad. 2007. Fish distribution, abundance, and behavior along city shoreline types in Puget Sound. N. Am. J. Fish. Mgmt. 27:465–480.
  • Day, J. W., Jr., D. F. Boesch, E. J. Clairain, G. P. Kemp, S. Laska, W. J. Mitsch, K. Orth, H. Mashriqui, D. R. Reed, L. Shabman, C. A. Simenstad, B. J. Streever, and R. R. Twilley. 2007. Restoration of the Mississippi Delta: lessons learned from Hurricanes Katrina and Rita. Science 315: 1679-1684.
  • Koehler, M. E., K. L. Fresh, D. A. Beauchamp, J. R. Cordell, C. A. Simenstad and D. Siler. 2006. Diet and bioenergetics of lake-rearing juvenile Chinook salmon in Lake Washington. N. Am. J. Fish Mgmt. 135: 1580-1591.
  • Visintainer, T. A., S. M. Bollens, and C. A. Simenstad. 2006. Community composition and diet of fishes as a function of tidal channel order: A field study in China Camp Marsh, San Francisco Estuary. Mar. Ecol. Prog. Ser. 321: 227-243.
  • Van Cleve, F. B., T. Leschine, T. Klinger, and C. A. Simenstad. 2006. An evaluation of the influence of natural science in regional-scale restoration projects. Environ. Mgmt. 37:367-379.
  • Simenstad, C. A., D. Reed, and M. Ford. 2006. When is restoration not? Incorporating landscape-scale processes to restore self-sustaining ecosystems in coastal wetland restoration. Ecol. Engineer. 26:27-39.
  • Reisewitz, S. E., J. A. Estes, and C. A. Simenstad. 2006. Indirect food web interactions: sea otters and kelp forest fishes in the Aleutian archipelago. Oecologia 146:623-631.
  • Boström, C., E. L. Jackson and C. A. Simenstad. 2006. Seagrass landscapes and their effects on associated fauna: A review. Est. Coast. Shelf Sci. 68: 383-403.

This faculty member is not considering any new students at this time.

As a Research Professor at the School of Aquatic and Fishery Sciences, University of Washington, I study shallow-water communities and food webs of estuarine and coastal marine ecosystems along the Pacific Northwest coast, from San Francisco Bay, the Oregon and Washington coasts, Puget Sound, and Alaska. Ecosystems that have especially attracted my interests include: coastal marshes, mudflats and eelgrass of Pacific Northwest estuaries; nearshore, kelp-dominated shores of the Aleutian Islands, Alaska; and San Francisco Bay-Delta. Much of my recent research is involved in the Columbia River estuary, where I am particularly intrigued by ecological processes associated with estuarine turbidity maxima and the importance of brackish marshes and forested wetlands to juvenile Pacific salmon. The underlying question in my research is often "What controls variability in the capacity of these ecosystems and landscapes to support ecologically- and socioculturally-important consumer organisms, particularly juvenile Pacific salmon (Oncorhynchus spp.), and what alters the integrity of these relationships?"

Much of this research has focused on the role of ecosystem structure and change, and the associated ecological (e.g., food web) interactions that are regulated by strong ecological interactions (e.g., keystone species such as sea otters), natural disturbance, or sensitivity to anthropogenic effects, such as wetland alteration. In particular, I've become increasingly interested in large-scale interactions across landscapes that alter fundamental ecosystem structure and processes at local scales, such as river flow diversion and regulation influences on estuarine communities and food webs, and the strategic planning of ecosystem restoration at different scales.

Recent research emphasis has included:

Since 1990, I have been particularly dedicated to coordinating the Wetland Ecosystem Team (WET), a small team of research scientists, educators, and graduate students that conducts both basic and applied research on these topics. Current research initiatives include: (1) leading WET's CALFED research on tidal freshwater wetland restoration patterns and rates in the Sacramento-San Joaquin rivers delta; (2) evaluating the importance of estuarine life history diversity of juvenile Pacific salmon in population resilience and recovery, and the potential role of estuarine habitat restoration in increasing life history diversity; (3) restoration of natural ecosystem processes as a sustainable approach to recovery of endangered salmon; and, (4) the practical application of landscape ecology concepts and quantitative metrics to planning and implementing coastal ecosystem restoration.