Lake Trout
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57. A synthesis of senescence predictions for indeterminate growth, and support from multiple tests in wild lake trout
Michael D. Rennie
Purchase, C.F., Rooke, A.C., Gaudry, M. Treberg, J. Mittell, E.A., Morrisey, M. and Rennie, M.D. 2022. Proceedings of the Royal Society B 289: 20212146. https://doi.org/10.1098/rspb.2021.2146
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52. No long-term effect of intracoelomic transmitter implantation on survival, growth and body condition of a long-lived stenotherm in the wild
Justin Hubbard Michael D. Rennie
Hubbard, J.A.G., Hickie, B.E., Bowman, J., Hrenchuk, L., Blanchfield, P.J. and Rennie, M.D. 2021. Canadian Journal of Fisheries and Aquatic Sciences 78: 173–183. dx.doi.org/10.1139/cjfas-2020-0106
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49. Impacts of freshwater aquaculture on fish communities: A whole‐ecosystem experimental approach
Michael D. Rennie Chandra Rodgers Lee Hrenchuk Patrick Kennedy
Rennie, M.D., Kennedy, P.J., Mills, K.H., Rodgers, C.M.C, Charles, C., Hrenchuk, L., Chalanchuk, S., Blanchfield, P., Paterson, M. and Podemski, C. 2019. Freshwater Biology 64:870-885. https://doi.org/10.1111/fwb.13269
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47. Changes in the diet, early growth, and condition of Lake Trout (Salvelinus namaycush) in response to an experimental aquaculture operation
Patrick Kennedy Michael D. Rennie
Kennedy, P.J, Blanchfield, P.J., Kidd, K.A., Paterson, M.P., Podemski, C.L. and Rennie, M.D. 2019. Canadian Journal of Fisheries and Aquatic Sciences 76: 1376-1387. dx.doi.org/10.1139/cjfas-2017-0578.
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41. Behavioral responses to annual temperature variation alter the dominant energy pathway, growth, and condition of a cold-water predator
Michael D. Rennie
Guzzo, M.M., Rennie, M.D. and Blanchfield, P.J. 2017. Vol 114 (37): 9912-9917. doi: 10.1073/pnas.1702584114