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True smelts. (Leet, W.. S., Dewees C.. M., Klingbeil R.., & Larson E.. J., Ed.).California's Living Marine Resources: A Status Report. 472–479.(2001).
Economics of the Drought for California Food and Agriculture . Agricultural and Resources Economics Update. 15p.(2015).
Agricultural Irrigation in This Drought: Where Is the Water and Where Is It Going?. Agricultural and Resources Economics Update. 18(5), 6-8.(2015).
Levee Decisions and Sustainability for the Sacramento-San Joaquin Delta. San Francisco Estuary and Watershed Science. 8(2),(2010).
Policy Implications of Permanently Flooded Islands in the Sacramento-San Joaquin Delta. San Francisco Estuary and Watershed Science. 9(2),(2011).
Analysis methods and reference concentrations of 12 minor and trace elements in fish blood plasma. Journal of Trace Elements in Medicine and Biology. 27,(2012).
Can otolith elemental chemistry retrospectively track migrations in fully marine fishes?. Journal of Fish Biology. 81(2),(2012).
Quantifying physiological influences on otolith microchemistry. Methods in Ecology and Evolution. 6,(2015).
Physiological influences can outweigh environmental signals in otolith microchemistry research. Marine Ecology Progress Series. 500,(2014).
Reconstructing the migratory behavior and long-term survivorship of juvenile Chinook salmon under contrasting hydrologic regimes. PLoS ONE. 10(5),(2015).
Biology of rainbow trout (Salmo gairdneri), brown trout (S. trutta), and interior Dolly Varden (Salvelinus confluentus) in the McCloud River, California, in relation to management. Cal-Neva Wildlife . 1978, 239-250.(1978).
Interactions between stochastic and deterministic processes in stream fish community assembly. Environmental Biology of Fishes. 36(1), 1-15.(1993).
Associating metrics of hydrologic variability with benthic macroinvertebrate communities in regulated and unregulated snowmelt-dominated rivers. Freshwater Biology. 63(8), 844-858.(2018).
Allozyme Analysis of Delta Smelt, Hypomesus transpacificus and Longfin Smelt, Spirinchus thaleichthys in the Sacramento-San Joaquin Estuary, California. Copeia. 1995(2), 390-396.(1995).
Conceptual model for restoration of the Klamath River. (Thorsteinson, L.., VanderKooi S.., & Duffy W.., Ed.).Proceedings of the Klamath Basin Science Conference, Medford, Oregon, February 1–5, 2010.(2011).
California's Yolo Bypass: Evidence that flood control Can Be compatible with fisheries, wetlands, wildlife, and agriculture. Fisheries. 26(8), 6-16.(2001).
Pink salmon (Oncorhynchus gorbuscha) in the Salinas River, California: a new record and historical perspectives. California Fish and Game. 99(1), 55-59.(2013).
Climate Change Impacts to Local water management in the San Francisco Bay Area. . California Water and Environmental Modeling Forum..(2011).
Climate Change Adaptations for Local Water Management in the San Francisco Bay Area. Our Changing Climate.(2012).
Conservation of freshwater fishes of Sri Lanka. Biological Conservation. 22(3), 181 - 195.(1982).
Why Climate Change Makes Riparian Restoration More Important than Ever: Recommendations for Practice and Research. Ecological Restoration. 27(3),(2009).
The aquatic trophic ecology of Suisun Marsh, San Francisco Estuary, California, during autumn in a wet year. San Francisco Estuary and Watershed Science. 13(3),(2015).
Alien fishes in California’s marine environments. (Allen, L. G., & Horn M. H., Ed.).Ecology of California marine fishes. . 611–620.(2005).
Methods for fish biology. 684.(1990).
Fate and Transport of Three Pharmaceuticals in the Sacramento-San Joaquin Delta. Fate and Transport of Three Pharmaceuticals in the Sacramento-San Joaquin Delta. 11(2),(2013).
A programmable information system for management and analysis of aquatic species range data in California. Environmental Modelling & Software. 53, 13 - 26.(2014).
Valoración Económica del Agua Potable en la Delegación Iztapalapa, D. F.. Revista Mexicana de Ciencias Agricolas. 7(6), 1467-1475.(2016).