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RACE Division: Recent Publications

  • von SZALAY, P.G., D.A. SOMERTON. 2017. A method for predicting trawlability in the Gulf of Alaska with the use of calibrated, split-beam, echosounder backscatter. Fish. Bull. 115: 496-503 http://dx.doi.org/10.7755/FB.115.4.6   Online.
     
  • MORDY, C. W., E. D. COKELET, A. De ROBERTIS, R. JENKINS, C. E. KUHN, N. LAWRENCE-SLAVAS, C. L. BERCHOK, J. L. CRANCE, J. T. STERLING, J. N. CROSS, P. J. STABENO, C. MEINIG, H. M. TABISOLA, W. BURGESS, and I. WANGEN. 2017. Advances in ecosystem research: Saildrone surveys of oceanography, fish, and marine mammals in the Bering Sea. Oceanography 30(2) Early Online. https://doi.org/10.5670/oceanog.2017.230   Online.
     
  • ROOPER, C. N., M. ZIMMERMANN, and M. M. PRESCOTT. 2017. Comparison of modeling methods to predict the spatial distribution of deep-sea coral and sponge in the Gulf of Alaska. Deep Sea Res. I 126:148-161. http://dx.doi.org/10.1016/j.dsr.2017.07.002   Online.
     
  • LAUREL, B. J., L .A. COPEMAN, M. SPENCER, and P. ISERI. 2017. Temperature-dependent growth as a function of size and age in juvenile Arctic cod (Boreogadus saida). ICES J. Mar. Sci. 74(6): 1614-1621.  Online.
     
  • MCCONNAUGHEY, R. A., K. E. BLACKHART , M. P. EAGELTON , and J. MARSH. 2017. Habitat assessment prioritization for Alaska stocks: Report of the Alaska Regional Habitat Assessment Prioritization Coordination Team. U.S. Dep. Commer., NOAA Tech. Memo. NMFS-AFSC-361, 102 p.  Online.
     
  • ROOPER, C. N., M. ZIMMERMANN, and M. M. PRESCOTT. 2017. Comparison of modeling methods to predict the spatial distribution of deepsea coral and sponge in the Gulf of Alaska. Deep-sea Res. Part 1: 148-161.  Online.
     
  • TURNER, K., C. N. ROOPER, E. A. LAMAN, S. C. ROONEY, D. W. COOPER, and M. ZIMMERMANN. 2017. Model-based essential fish habitat definitions for Aleutian Island groundfish species. U.S. Dep. Commer., NOAA Tech. Memo. NMFS-AFSC-360, 239 p.  Online.
     
  • SWINEY, K. M., W. C. LONG, and R. J. FOY. 2017. Decreased pH and increased temperatures affect young-of-the-year red king crab (Paralithodes camtschaticus). ICES J. Mar. Sci. 74:1191-1200. https://doi.org/10.1093/icesjms/fsw251   Online.
     
  • LONG, W. C., S. B. Van SANT, K. M. SWINEY, and R. J. FOY. 2017. Survival, growth, and morphology of blue king crabs: effect of ocean acidification decreases with exposure time. ICES J. Mar. Sci. 74:1033-1041. https://doi.org/10.1093/icesjms/fsw197   Online.
     
  • LAMAN, E. A., C. N. ROOPER, S. C. ROONEY, K. A. TURNER, D. W. COOPER, and M. ZIMMERMANN. 2017. Model-based essential fish habitat definitions for Bering Sea groundfish species. U.S. Dep. Commer., NOAA Tech. Memo. NMFS-AFSC-357, 265 p.  Online.
     
  • Additional recent RACE publications

 

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