References
Cited references with DOI and source links.
This page lists all cited references. Citation links in the synthesis pages jump to entries here, and DOI/URL fields provide web-visible links to reference records or source pages.
The published site intentionally does not include local PDF copies. Many PDFs in the working folder are publisher articles, so the public site links to DOI records, NOAA repository records, or project pages instead.
References
Brodeur, Richard D., Matthew T. Wilson, and Lorenzo Ciannelli. 2000. “Spatial and Temporal Variability in Feeding and Condition of Age-0 Walleye Pollock (Theragra chalcogramma) in Frontal Regions of the Bering Sea.” ICES Journal of Marine Science 57: 256–64. https://doi.org/10.1006/jmsc.1999.0525.
Buckley, Troy W., Ivonne Ortiz, Stan Kotwicki, and Kerim Aydin. 2016. “Summer Diet Composition of Walleye Pollock and Predator-Prey Relationships with Copepods and Euphausiids in the Eastern Bering Sea, 1987-2011.” Deep-Sea Research Part II: Topical Studies in Oceanography 134: 302–11. https://doi.org/10.1016/j.dsr2.2015.10.009.
Duffy-Anderson, Janet T., Steven J. Barbeaux, Edward V. Farley, et al. 2016. “The Critical First Year of Life of Walleye Pollock (Gadus chalcogrammus) in the Eastern Bering Sea: Implications for Recruitment and Future Research.” Deep-Sea Research Part II: Topical Studies in Oceanography 134: 283–301. https://doi.org/10.1016/j.dsr2.2015.02.001.
Gann, Jeanette C., Lisa B. Eisner, Steve Porter, et al. 2016. “Possible Mechanism Linking Ocean Conditions to Low Body Weight and Poor Recruitment of Age-0 Walleye Pollock (Gadus chalcogrammus) in the Southeast Bering Sea During 2007.” Deep-Sea Research Part II: Topical Studies in Oceanography 134: 115–27. https://doi.org/10.1016/j.dsr2.2015.07.010.
Heintz, Ron A., Elizabeth C. Siddon, Edward V. Farley, and Jeffrey M. Napp. 2013. “Correlation Between Recruitment and Fall Condition of Age-0 Pollock (Theragra chalcogramma) from the Eastern Bering Sea Under Varying Climate Conditions.” Deep-Sea Research Part II: Topical Studies in Oceanography 94: 150–56. https://doi.org/10.1016/j.dsr2.2013.04.006.
Ma, Shuyang, Bjarte Bogstad, Padmini Dalpadado, et al. 2026. “Leveraging the Highly Data-Rich Northeast Arctic Cod (Gadus Morhua, Gadidae) to Identify Key Biophysical Factors Behind Recruitment Success.” Fish and Fisheries 27 (6): 1006–27. https://doi.org/10.1111/faf.70098.
Moss, Jamal H., Edward V. Farley, Angela M. Feldmann, and James N. Ianelli. 2009. “Spatial Distribution, Energetic Status, and Food Habits of Eastern Bering Sea Age-0 Walleye Pollock.” Transactions of the American Fisheries Society 138 (3): 497–505. https://doi.org/10.1577/T08-126.1.
Mueter, Franz J., Nicholas A. Bond, James N. Ianelli, and Anne B. Hollowed. 2011. “Expected Declines in Recruitment of Walleye Pollock (Theragra chalcogramma) in the Eastern Bering Sea Under Future Climate Change.” ICES Journal of Marine Science, ahead of print. https://doi.org/10.1093/icesjms/fsr022.
Mueter, Franz J., Carol Ladd, Michael C. Palmer, and Brenda L. Norcross. 2006. “Bottom-up and Top-down Controls of Walleye Pollock (Theragra chalcogramma) on the Eastern Bering Sea Shelf.” Progress in Oceanography 68 (2–4): 152–83. https://doi.org/10.1016/j.pocean.2006.02.012.
Mueter, Franz J., Michael C. Palmer, and Brenda L. Norcross. 2004. Environmental Predictors of Walleye Pollock Recruitment on the Eastern Bering Sea Shelf. Final report. Pollock Conservation Cooperative Research Center. https://www.pccrc.org/research-projects.
Petrik, Colleen M., Janet T. Duffy-Anderson, Franz J. Mueter, Katherine Hedstrom, and Enrique N. Curchitser. 2015. “Biophysical Transport Model Suggests Climate Variability Determines Distribution of Walleye Pollock Early Life Stages in the Eastern Bering Sea Through Effects on Spawning.” Progress in Oceanography 138: 459–74. https://doi.org/10.1016/j.pocean.2014.06.004.
Runge, Jakob. 2020. “Discovering Contemporaneous and Lagged Causal Relations in Autocorrelated Nonlinear Time Series Datasets.” Proceedings of the 36th Conference on Uncertainty in Artificial Intelligence, Proceedings of machine learning research, vol. 124: 1388–97. https://proceedings.mlr.press/v124/runge20a.html.
Runge, Jakob, and contributors. 2026. Tigramite Documentation: PCMCI. https://jakobrunge.github.io/tigramite/_modules/tigramite/pcmci.html.
Siddon, Elizabeth C., Ron A. Heintz, and Franz J. Mueter. 2013. “Conceptual Model of Energy Allocation in Walleye Pollock (Theragra chalcogramma) from Age-0 to Age-1 in the Southeastern Bering Sea.” Deep-Sea Research Part II: Topical Studies in Oceanography 94: 140–49. https://doi.org/10.1016/j.dsr2.2012.12.007.
Sigler, Michael F., Jeffrey M. Napp, Phyllis J. Stabeno, Ronald A. Heintz, Michael W. Lomas, and George L. Hunt. 2016. “Variation in Annual Production of Copepods, Euphausiids, and Juvenile Walleye Pollock in the Southeastern Bering Sea.” Deep-Sea Research Part II: Topical Studies in Oceanography 134: 223–34. https://doi.org/10.1016/j.dsr2.2016.01.003.
Smart, Tracey I., Janet T. Duffy-Anderson, John K. Horne, Edward V. Farley, Christopher D. Wilson, and Jeffrey M. Napp. 2012. “Influence of Environment on Walleye Pollock Eggs, Larvae, and Juveniles in the Southeastern Bering Sea.” Deep-Sea Research Part II: Topical Studies in Oceanography 65–70: 196–207. https://doi.org/10.1016/j.dsr2.2012.02.018.
Sogard, Susan M., and Bori L. Olla. 2000. “Endurance of Simulated Winter Conditions by Age-0 Walleye Pollock: Effects of Body Size, Water Temperature and Energy Stores.” Journal of Fish Biology 56: 1–21. https://doi.org/10.1111/j.1095-8649.2000.tb02083.x.
Spencer, Paul D., Kirstin K. Holsman, Stephani Zador, et al. 2016. “Modelling Spatially Dependent Predation Mortality of Eastern Bering Sea Walleye Pollock, and Its Implications for Stock Dynamics Under Future Climate Scenarios.” ICES Journal of Marine Science 73 (5): 1330–42. https://doi.org/10.1093/icesjms/fsw040.
Strasburger, Wesley W., Nicola Hillgruber, Alexei I. Pinchuk, and Franz J. Mueter. 2014. “Feeding Ecology of Age-0 Walleye Pollock (Gadus chalcogrammus) and Pacific Cod (Gadus macrocephalus) in the Southeastern Bering Sea.” Deep-Sea Research Part II: Topical Studies in Oceanography 109: 172–80. https://doi.org/10.1016/j.dsr2.2013.10.007.
Thorson, James T., Aaron G. Andrews, Timothy E. Essington, and Scott I. Large. 2024. “Dynamic Structural Equation Models Synthesize Ecosystem Dynamics Constrained by Ecological Mechanisms.” Methods in Ecology and Evolution 15 (4): 744–55. https://doi.org/10.1111/2041-210X.14289.