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I
W. M. Hamner and Robison, B. H., In situ observations of giant appendicularians in Monterey Bay, Deep-Sea Research. Part A, Oceanographic Research Papers, vol. 39, pp. 1299–1313, 1992.
F. U. Zielinski, Gennerich, H. - H., Borowski, C., Wenzhoefer, F., and Dubilier, N., In situ measurements of hydrogen sulfide, oxygen, and temperature in diffuse fluids of an ultramafic-hosted hydrothermal vent field (Logatchev, 14 degrees 45 ` N, Mid-Atlantic Ridge): Implications for chemosymbiotic bathymodiolin mussels, GEOCHEMISTRY GEOPHYSICS GEOSYSTEMS, vol. 12, 2011.
K. S. Johnson, Beehler, C. L., Sakamoto-Arnold, C. M., and Childress, J. J., In situ measurements of chemical distributions in a deep-sea hydrothermal vent field, Science, vol. 231, pp. 1139–1141, 1986.
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.
K. Ding, Seyfried, W. E., Tivey, M. K., and Bradley, A. M., In situ measurement of dissolved H (sub 2) and H (sub 2) S in high-temperature hydrothermal vent fluids at the Main Endeavour Field, Juan de Fuca Ridge, Earth and Planetary Science Letters, vol. 186, pp. 417–425, 2001.
B. I. Larson, Olson, E. J., and Lilley, M. D., In situ measurement of dissolved chloride in high temperature hydrothermal fluids, Geochimica et Cosmochimica Acta, vol. 71, pp. 2510–2523, 2007.
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.
A. Smith, Popa, R., Fisk, M., Nielsen, M., Wheat, C. G., Jannasch, H. W., Fisher, A. T., Becker, K., Sievert, S. M., and Flores, G., In situ enrichment of ocean crust microbes on igneous minerals and glasses using an osmotic flow-through device, Geochemistry, Geophysics, Geosystems, vol. 12, p. Q06007, 2011.
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.
P. W. Lipman, Sisson, T. W., Ui, T., and Naka, J., In search of ancestral Kilauea Volcano, Geology, vol. 28, pp. 1079–1082, 2000.
R. D. Ballard, Improving the usefulness of deep-sea photographs with precision tracking, Oceanus, vol. 18, pp. 40–43, 1975.
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.
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.
C. R. Fisher, Childress, J. J., Oremland, R. S., and Bidigare, R. R., The importance of methane and thiosulfate in the metabolism of the bacterial symbionts of two deep-sea mussels, Marine Biology, vol. 96, pp. 59–71, 1987.
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.
N. J. Debenham, Lambshead, P. J. D., Ferrero, T. J., and Smith, C. R., The impact of whale falls on nematode abundance in the deep sea, Deep-Sea Research. Part I: Oceanographic Research Papers, vol. 51, pp. 701–706, 2004.
H. K. White, Hsing, P. - Y., Cho, W., Shank, T. M., Cordes, E. E., Quattrini, A. M., Nelson, R. K., Camilli, R., Demopoulos, A. W. J., German, C. R., Brooks, J. M., Roberts, H. H., Shedd, W., Reddy, C. M., and Fisher, C. R., Impact of the Deepwater Horizon oil spill on a deep-water coral community in the Gulf of Mexico, Proceedings of the National Academy of Sciences of the United States of America, vol. 109, pp. 20303–20308, 2012.
D. J. Beaudoin, Carmichael, C. A., Nelson, R. K., Reddy, C. M., Teske, A. P., and Edgcomb, V. P., Impact of protists on a hydrocarbon-degrading bacterial community from deep-sea Gulf of Mexico sediments: A microcosm study, Deep-Sea Research. Part II: Topical Studies in Oceanography, vol. 129, pp. 350–359, 2016.
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.
J. Howland, Imagery collection and mosaicking, Derbyshire survey 1997, in OCC '98 proceedings: the Marine Technology Society Annual Conference; Ocean Community Conference '98, November 16-19 1998, Baltimore Convention Center., vol. 2, Washington, D.C.: Marine Technology Society, 1998, pp. 1104–1108.
R. F. Marx, An illustrated history of submersibles, Oceans, vol. 11, pp. 22–29, 1978.

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