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A. M. Burkett, Rathburn, A. E., M. Perez, E., and Martin, J. B., Influences of thermal and fluid characteristics of methane and hydrothermal seeps on the stable oxygen isotopes of living benthic foraminifera, Marine and Petroleum Geology, vol. 93, no. Journal Article, pp. 344 - 355, 2018.
F. K. Wilckens, Reeves, E. P., Bach, W., Meixner, A., Seewald, J. S., Koschinsky, A., and Kasemann, S. A., The influence of magmatic fluids and phase separation on B systematics in submarine hydrothermal vent fluids from back-arc basins, Geochimica et Cosmochimica Acta, vol. 232, no. Journal Article, pp. 140 - 162, 2018.
B. Matsen, The incredible submersible Alvin discovers a strange deep-sea world. Berkeley Heights, N.J.: Enslow Publishers, 2003, p. 48.
G. L. Christeson, McIntosh, K. D., and Karson, J. A., Inconsistent correlation of seismic layer 2a and lava layer thickness in oceanic crust, Nature, vol. 445, pp. 418–421, 2007.
P. Linke, Suess, E., Torres, M., Martens, V., Rugh, W. D., Ziebis, W., and Kulm, L. D., In situ measurement of fluid flow from cold seeps at active continental margins, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 41, pp. 721–739, 1994.
I. A. Urcuyo, Massoth, G. J., MacDonald, I. R., and Fisher, C. R., In situ growth of the vestimentiferan Ridgeia piscesae living in highly diffuse flow environments in the main Endeavour Segment of the Juan de Fuca Ridge, Cahiers de Biologie Marine, vol. 39, pp. 267–270, 1998.
I. A. Urcuyo, Massoth, G. J., MacDonald, I. R., and Fisher, C. R., In situ growth of the vestimentiferan Ridgeia piscesae living in highly diffuse flow environments in the main Endeavour Segment of the Juan de Fuca Ridge, Cahiers de Biologie Marine, vol. 39, pp. 267–270, 1998.
S. E. Ruff, Felden, J., Gruber-Vodicka, H. R., Marcon, Y., Knittel, K., Ramette, A., and Boetius, A., In situ development of a methanotrophic microbiome in deep-sea sediments, Isme Journal, vol. 13, pp. 197-213, 2019.
C. Vetriani, Maeder, D. L., Tolliday, N., Klump, H. H., Yip, K. S. P., Rice, D. W., and Robb, F. T., Improving enzyme thermostability: The Thermococcus litoralis glutamate dehydrogenase model, in New developments in marine biotechnology, Y. Le Gal, Ed. New York: Plenum Press, 1998, pp. 221–225.
G. A. Mitchell, Orange, D. L., Gharib, J. J., and Kennedy, P., Improved detection and mapping of deepwater hydrocarbon seeps: optimizing multibeam echosounder seafloor backscatter acquisition and processing techniques, Marine Geophysical Research, vol. 39, pp. 323-347, 2018.
L. S. Mullineaux, Micheli, F., Peterson, C. H., Lenihan, H. S., and Markus, N., Imprint of past environmental regimes on structure and succession of a deep-sea hydrothermal vent community, Oecologia, vol. 161, pp. 387–400, 2009.
L. S. Mullineaux, Micheli, F., Peterson, C. H., Lenihan, H. S., and Markus, N., Imprint of past environmental regimes on structure and succession of a deep-sea hydrothermal vent community, Oecologia, vol. 161, pp. 387–400, 2009.
L. S. Mullineaux, Micheli, F., Peterson, C. H., Lenihan, H. S., and Markus, N., Imprint of past environmental regimes on structure and succession of a deep-sea hydrothermal vent community, Oecologia, vol. 161, pp. 387–400, 2009.
E. L. Becker, Cordes, E. E., Macko, S. A., and Fisher, C. R., Importance of seep primary production to Lophelia pertusa and associated fauna in the Gulf of Mexico, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 56, pp. 786–800, 2009.
L. S. Mullineaux, Implications of mesoscale flows for dispersal and retention of larvae in deep-sea habitats, in Reproduction, larval biology, and recruitment of the deep-sea benthos, C. M. Young, Ed. New York, N.Y.: Columbia University Press, 1994, pp. 201–222.
L. S. Mullineaux, Speer, K. G., Thurnherr, A. M., Maltrud, M. E., and Vangriesheim, A., Implications of cross-axis flow for larval dispersal along mid-ocean ridges., Cahiers de Biologie Marine, vol. 43, pp. 281–284, 2002.
L. S. Mullineaux, Speer, K. G., Thurnherr, A. M., Maltrud, M. E., and Vangriesheim, A., Implications of cross-axis flow for larval dispersal along mid-ocean ridges., Cahiers de Biologie Marine, vol. 43, pp. 281–284, 2002.
W. W. Chadwick Jr., Merle, S. G., Buck, N. J., J Lavelle, W., Resing, J. A., and Ferrini, V., Imaging of CO2 bubble plumes above an erupting submarine volcano, NW Rota-1, Mariana Arc, GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, vol. 15, pp. 4325–4342, 2014.
D. A. Mindell, Images from the deep: Using a fiber-optic network and oceanographic vehicles, Woods Hole scientists are probing the wonders of the ocean., Byte Magazine, vol. 15, pp. 256–260, 1990.
R. F. Marx, An illustrated history of submersibles, Oceans, vol. 11, pp. 22–29, 1978.
N. Mahmoudi, Enke, T. N., Beaupre, S. R., Teske, A. P., Cordero, O. X., and Pearson, A., Illuminating microbial species-specific effects on organic matter remineralization in marine sediments, Environmental Microbiology, 2019.
J. M. McDermott, Ono, S., Tivey, M. K., Seewald, J. S., and Shanks, W. C., Identification of sulfur sources and isotopic equilibria in submarine hot-springs using multiple sulfur isotopes, Geochimica et Cosmochimica Acta, vol. 160, pp. 169–187, 2015.
L. S. Mullineaux, Kim, S., Pooley, A., and Lutz, R., Identification of Archaeogastropod larvae from a hydrothermal vent community, Marine Biology, vol. 124, pp. 551–560, 1995.
A. E. Mares, ICP-MS and statistical analysis of major and trace element signatures within the carbonate fraction of marine sediments, Cascadia Subduction Zone, Central Oregon, California State University, Long Beach, Long Beach, Calif., 2002.

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