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Marine and Coastal Fisheries
Dynamics, Management, and Ecosystem Science
Volume 4, 2012 - Issue 1
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SPECIAL SECTION: AMERICAN SHAD AND RIVER HERRING

Demographic Population Model for American Shad: Will Access to Additional Habitat Upstream of Dams Increase Population Sizes?

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Pages 262-283 | Received 19 Mar 2011, Accepted 22 Aug 2011, Published online: 18 Jun 2012

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Read on this site (5)

Jacob B. Hughes & Joseph E. Hightower. (2015) Combining Split-Beam and Dual-Frequency Identification Sonars to Estimate Abundance of Anadromous Fishes in the Roanoke River, North Carolina. North American Journal of Fisheries Management 35:2, pages 229-240.
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Jason J. Schaffler, Shawn P. Young, Steve Herrington, Travis Ingram & Josh Tannehill. (2015) Otolith Chemistry to Determine Within-River Origins of Alabama Shad in the Apalachicola–Chattahoochee–Flint River Basin. Transactions of the American Fisheries Society 144:1, pages 1-10.
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John A. Sweka, Sheila Eyler & Michael J. Millard. (2014) An Egg-Per-Recruit Model to Evaluate the Effects of Upstream Transport and Downstream Passage Mortality of American Eel in the Susquehanna River. North American Journal of Fisheries Management 34:4, pages 764-773.
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A. Reid Hyle, Richard S. McBride & John E. Olney. (2014) Determinate Versus Indeterminate Fecundity in American Shad, an Anadromous Clupeid. Transactions of the American Fisheries Society 143:3, pages 618-633.
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MichaelM. Bailey & JosephD. Zydlewski. (2013) To Stock or Not to Stock? Assessing the Restoration Potential of a Remnant American Shad Spawning Run with Hatchery Supplementation. North American Journal of Fisheries Management 33:3, pages 459-467.
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Articles from other publishers (10)

Elizabeth A. Marschall, David C. Glover, Martha E. Mather & Donna L. Parrish. (2020) Modeling Larval American Shad Recruitment in a Large River. North American Journal of Fisheries Management 41:4, pages 939-954.
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Erin K. Gilligan‐Lunda, Daniel S. Stich, Katherine E. Mills, Michael M. Bailey & Joseph D. Zydlewski. (2021) Climate Change May Cause Shifts in Growth and Instantaneous Natural Mortality of American Shad Throughout Their Native Range. Transactions of the American Fisheries Society 150:3, pages 407-421.
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Kevin Mack, Holly White & Fred C. Rohde. (2021) Use of Acoustic Telemetry to Identify Spawning River and Spawning Migration Patterns of American Shad in the Albemarle Sound, North Carolina. North American Journal of Fisheries Management 41:1, pages 242-251.
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Inga Vladimirovna Matrosova & Galina Georgievna Kalinina. (2021) About Effect of Hydroelectric Construction on Some Features of Fish Biology. E3S Web of Conferences 320, pages 01003.
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Alexander J. JensenMichael L. Jones. (2018) Forecasting the response of Great Lakes sea lamprey ( Petromyzon marinus ) to barrier removals . Canadian Journal of Fisheries and Aquatic Sciences 75:9, pages 1415-1426.
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Ana T. Silva, Martyn C. Lucas, Theodore Castro-Santos, Christos Katopodis, Lee J. Baumgartner, Jason D. Thiem, Kim Aarestrup, Paulo S. Pompeu, Gordon C. O'Brien, Douglas C. Braun, Nicholas J. Burnett, David Z. Zhu, Hans-Petter Fjeldstad, Torbjørn Forseth, Nallamuthu Rajaratnam, John G. Williams & Steven J. Cooke. (2018) The future of fish passage science, engineering, and practice. Fish and Fisheries 19:2, pages 340-362.
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Christine A. Lipsky, Rory Saunders & Justin R. Stevens. (2016) Evidence of Successful Spawning and Other Life-History Aspects of Alosa sapidissima (American Shad) in the Penobscot River and Estuary . Northeastern Naturalist 23:3, pages 367-377.
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Julie L. Nieland, Timothy F. Sheehan & Rory Saunders. (2015) Assessing demographic effects of dams on diadromous fish: a case study for Atlantic salmon in the Penobscot River, Maine. ICES Journal of Marine Science 72:8, pages 2423-2437.
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Theodore Castro-Santos & Alex Haro. (2013) Survival and Behavioral Effects of Exposure to a Hydrokinetic Turbine on Juvenile Atlantic Salmon and Adult American Shad. Estuaries and Coasts 38:S1, pages 203-214.
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G. R. Pess, T. P. Quinn, S. R. Gephard & R. Saunders. (2014) Re-colonization of Atlantic and Pacific rivers by anadromous fishes: linkages between life history and the benefits of barrier removal. Reviews in Fish Biology and Fisheries 24:3, pages 881-900.
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