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  3. 30. The Ecology of lifetime growth in percid fishes (book chapter)

Related Publications

59. Whole-lake nanosilver additions reduce Northern Pike (Esox lucius) growth
57. A synthesis of senescence predictions for indeterminate growth, and support from multiple tests in wild lake trout
51. Multi-Level Responses of Yellow Perch (<i>Perca flavescens</i>) to a Whole-Lake Nanosilver Addition Study
49. Impacts of freshwater aquaculture on fish communities: A whole‐ecosystem experimental approach
41. Behavioral responses to annual temperature variation alter the dominant energy pathway, growth, and condition of a cold-water predator
35. Effect of nanosilver on cortisol release and morphometrics in Rainbow Trout (<em>Oncorhynchus mykiss</em>)
31. Cross-basin analysis of long-term trends in the growth of Lake Whitefish in the Laurentian Great Lakes
27. Fish diversity and biomass in northern Canadian lakes: northern lakes are more diverse and have greater biomass than expected based on species–energy theory
25. Evaluating the relationship between catch per unit effort and abundance for littoral cyprinids in small boreal shield lakes
15. Energy acquisition and allocation patterns of lake whitefish (<em>Coregonus clupeaformis</em>) are modified when dressenids are present
14. Can migration mitigate the effects of ecosystem change? Patterns of dispersal, energy allocation and acquisition in Great Lakes lake whitefish (<em>Coregonus clupeaformis</em>)
11. Prey life history and bioenergetic responses across a predation gradient
5. Lazy males? Bioenergetic differences in energy acquisition and metabolism explain sexual size dimorphism in percids
1. A comparison of methods for estimating activity costs of wild fish populations: more active fish observed to grow slower