MBARI Publications

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Adams, L. and G.I. Matsumoto (2009). Enhancing ocean literacy using real-time data. Oceanography, 22: 8-9.

Adams, L.G. and G.I. Matsumoto (2011). The benefits and challenges of using real-time data in the classroom: Perspectives from the students, educators, and researchers. Marine Technology Society Journal, 45: 55-58.

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Barry, J.P., K.R. Buck, S.K. Goffredi, and J. Hashimoto (2000). Ultrastructure studies of two chemosynthetic invertebrate-bacterial symbioses (Lamellibrachia sp. and Acharax sp.) from the Hatsushima cold seeps in Sagami Bay, Japan. JAMSTEC Journal of Deep-Sea Research, 16: 91-99.

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Barry, J.P., K.R. Buck, C.F. Lovera, L. Kuhnz, P.J. Whaling, E.T. Peltzer, P. Walz, and P.G. Brewer (2004). Effects of direct ocean CO2 injection on deep-sea meiofauna. Journal of Oceanography, 60: 759-766.

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Zhang, Y., A.B. Baggeroer, and J.G. Bellingham (2001). Spectral feature classification of oceanographic processes using an autonomous underwater vehicle. Journal of Oceanic Engineering, 26: 726-741.

Zhang, Y., A.B. Baggeroer, and J.G. Bellingham (2005). The total variance of a periodogram-based spectral estimate of a stochastic process with spectral uncertainty and its application to classifier design. IEEE Transactions on Signal Processing, 53: 4556-4567.

Zhang, Y. and J.G. Bellingham (2006). Synoptic chemical sampling with distributed mobile systems: A possibility? Arctic/Subarctic Ocean Fluxes Newsletter, 5: 11, 18.

Zhang, Y. and J.G. Bellingham (2008). An efficient method of selecting ocean observing locations for capturing the leading modes and reconstructing the full field. Journal of Geophysical Research, 113: doi:10.1029/2007JC004327.

Zhang, Y., J.G. Bellingham, and Y. Chao (2010). Error analysis and sampling strategy design for using fixed or mobile platforms to estimate ocean flux. Journal of Atmospheric and Oceanic Technology, 27: 481-506, 10.1175/2009JTECHO700.1.

Zhang, Y., J.G. Bellingham, M. Godin, J. Ryan, R.S. McEwen, B. Kieft, B. Hobson, and T. Hoover (2010). Thermocline tracking based on peak-gradient detection by an autonomous underwater vehicle. In: Proceedings of the Marine Technology Society / Institute of Electrical and Electronics Engineers Conference, Seattle, WA, pp.

Zhang, Y., J.G. Bellingham, M.A. Godin, and J.P. Ryan (2012). Using an autonomous underwater vehicle to track the thermocline based on peak-gradient detection. IEEE Journal of Oceanic Engineering, 37: 544-553, 10.1109/JOE.2012.2192340.

Zhang, Y., J.G. Bellingham, J.P. Ryan, and M.A. Godin (2015). Evolution of a physical and biological front from upwelling to relaxation. Continental Shelf Research, 108: 55-64, 10.1016/j.csr.2015.08.005.

Zhang, Y., J.G. Bellingham, J.P. Ryan, B. Kieft, and M.J. Stanway (2013). Two-dimensional mapping and tracking of a coastal upwelling front by an autonomous underwater vehicle. In: Proceedings of Marine Technology Society/Institute of Electrical and Electronics Engineers Oceans 2013, San Diego, California, pp. 4 pp.

Zhang, Y., J.G. Bellingham, J.P. Ryan, B. Kieft, and M.J. Stanway (2016). Autonomous four-dimensional mapping and tracking of a coastal upwelling front by an autonomous underwater vehicle. Journal of Field Robotics, 33: 67-81, 10.1002/rob.21617.

Zhang, Y., M. Godin, J.G. Bellingham, and J.P. Ryan (2011 of Conference). Ocean front detection and tracking by an autonomous underwater vehicle. In: OCEANS 2011, Waikoloa, HI, pp. 1-4.

Zhang, Y., M.A. Godin, J.G. Bellingham, and J.P. Ryan (2012). Using an autonomous underwater vehicle to track a coastal upwelling front. IEEE Journal of Oceanic Engineering, 37: 338-347, 10.1109/JOE.2012.2197272.

Zhang, Y., M.A. Godin, J.G. Bellingham, and J.P. Ryan (2012). Using an autonomous underwater vehicle to track a coastal upwelling front. IEEE Journal of Oceanic Engineering, 37: 338-347, 10.1109/JOE.2012.2197272.

Zhang, Y., B. Kieft, R. McEwen, M.J. Stanway, J. Bellingham, J. Ryan, B. Hobson, D. Pargett, J. Birch, and C. Scholin (2015). Tracking and sampling of a phytoplankton patch by an autonomous underwater vehicle in drifting mode. In: Proceedings of the Marine Technology Society / Institute of Electrical and Electronics Engineers Oceans Conference, Washington, D.C., pp. 1-5.

Zhang, Y., R.S. McEwen, J. Ryan, and J.G. Bellingham (2009). An adaptive triggering method for capturing peak samples in a thin phytoplankton layer by an autonomous underwater vehicle. In: Proceedings of the Marine Technology Society/Institute of Electrical and Electronics Engineers Oceans Conference, Biloxi, Mississippi, pp.

Zhang, Y., R.S. McEwen, J.P. Ryan, and J.G. Bellingham (2010). Design and tests of an adaptive triggering method for capturing peak samples in a thin phytoplankton layer by an autonomous underwater vehicle. Institute of Electrical and Electronics Engineers Journal of Oceanic Engineering, 35: 785-796, 10.1109/JOE.2010.2081031.

Zhang, Y., R.S. McEwen, J.P. Ryan, J.G. Bellingham, and H. Thomas (2011). A peak-capture algorithm used on an autonomous underwater vehicle in the 2010 Gulf of Mexico oil spill response scientific survey. Journal of Field Robotics, 28: 484-496, 10.1002/rob.20399.

Zhang, Y., J.P. Ryan, J.G. Bellingham, J.B.J. Harvey, and R.S. McEwen (2012). Autonomous detection and sampling of water types and fronts in a coastal upwelling system by an autonomous underwater vehicle. Limnology and Oceanography Methods, 10: 934-951, 10.4319/lom.2012.10.934.

Zhang, Y., J.P. Ryan, J.G. Bellingham, J.B.J. Harvey, and R.S. McEwen (2012). Autonomous detection and sampling of water types and fronts in a coastal upwelling system by an autonomous underwater vehicle. Limnology and Oceanography Methods, 10: 934-951, 10.4319/lom.2012.10.934.

Zhu, Z., T.W. Kim, and J.C. Choe (2012). Is female preference for large sexual ornaments due to the bias to escape predation risk? BMC Evolutionary Biology, 12, 10.1186/1471-2148-12-33.

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