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doi:10.2204/iodp.pr.336.2012 ReferencesArai, S., and Fujii, T., 1979. Petrology of ultramafic rocks from Site 395. In Melson, W.G., Rabinowitz, P.D., et al., Init. Repts. DSDP, 45: Washington, DC (U.S. Govt. Printing Office), 587–594. doi:10.2973/dsdp.proc.45.134.1979 Bach, W., and Edwards, K.J., 2003. Iron and sulfide oxidation within the basaltic ocean crust: implications for chemolithoautotrophic microbial biomass production. Geochim. Cosmochim. Acta, 67(20):3871–3887. doi:10.1016/S0016-7037(03)00304-1 Bach, W., Humphris, S.E., and Fisher, A.T., 2004. Fluid flow and fluid-rock interaction within ocean crust: reconciling geochemical, geological, and geophysical observations. In Wilcock, W.S.D., Delong, E.F., Kelley, D.S., Baross, J.A., and Cary, C.S. (Eds.), The Subseafloor Biosphere at Mid-Ocean Ridges. Geophys. Monogr., 144:99–118. Bartetzko, A., Pezard, P., Goldberg, D., Sun, Y.-F., and Becker, K., 2001. 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Bioalteration of basaltic glass in the oceanic crust. Geochem., Geophys., Geosyst., 2(8):1049–1078. doi:10.1029/2000GC000150 Gable, R., Morin, R.H., and Becker, K., 1992. Geothermal state of DSDP Holes 333A, 395A and 534A: results from the DIANAUT program. Geophys. Res. Lett., 19(5):505–508. doi:10.1029/92GL00333 Gieskes, J.M., and Magenheim, A.J., 1992. Borehole fluid chemistry of DSDP Holes 395A and 534A results from Operation Dianaut. Geophys. Res. Lett., 19(5):513–516. doi:10.1029/91GL02769 Hickman, S.H., Langseth, M.G., and Svitek, J.F., 1984. In situ permeability and pore-pressure measurements near the Mid-Atlantic Ridge, Deep Sea Drilling Project Hole 395A. In Hyndman, R.D., Salisbury, M.H., et al., Init. Repts. DSDP, 78B: Washington, DC (U.S. Govt. Printing Office), 699–708. doi:10.2973/dsdp.proc.78b.106.1984 Hyndman, R.D., Salisbury, M.H., et al., 1984. Init. Repts. DSDP, 78B: Washington, DC (U.S. Govt. 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The chemistry of interstitial waters from the upper ocean crust, Site 395, Deep Sea Drilling Project Leg 78B. In Hyndman, R.D., Salisbury, M.H., et al., Init. Repts. DSDP, 78B: Washington, DC (U.S. Govt. Printing Office), 795–799. doi:10.2973/dsdp.proc.78b.114.1984 Melson, W.G., Rabinowitz, P.D., et al., 1979. Init. Repts. DSDP, 45: Washington, DC (U.S. Govt. Printing Office). doi:10.2973/dsdp.proc.45.1979 Orcutt, B., Wheat, C.G., and Edwards, K.J., 2010. Subseafloor ocean crust microbial observatories: development of FLOCS (Flow-Through Osmo Colonization System) and evaluation of borehole construction materials. Geomicrobiol. J., 27(2):143–157. doi:10.1080/01490450903456772 Orcutt, B.N., Bach, W., Becker, K., Fisher, A.T., Hentscher, M., Toner, B.M., Wheat, C.G., and Edwards, K.J., 2011a. Colonization of subsurface microbial observatories deployed in young ocean crust. 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Printing Office), 595–601. doi:10.2973/dsdp.proc.45.135.1979 Villinger, H., and Cruise Participants, 2010. Short cruise report: RV Maria S. Merian Cruise MSM11/1. http://www.ifm.zmaw.de/fileadmin/files/leitstelle/merian/MSM11/MSM11-1-SCR.pdf Wheat, C.G., Jannasch, H.W., Kastner, M., Plant, J.N., and DeCarlo, E.H., 2003. Seawater transport and reaction in upper oceanic basaltic basement: chemical data from continuous monitoring of sealed boreholes in a ridge flank environment. Earth Planet. Sci. Lett., 216(4):549–564. doi:10.1016/S0012-821X(03)00549-1 Wirsen, C.O., Brinkhoff, T., Kuever, J., Muyzer, G., Molyneaux, S., and Jannasch, H.W., 1998. Comparison of a new Thiomicrospira strain from the Mid-Atlantic Ridge with known hydrothermal vent isolates. Appl. Environ. Microbiol., 64(10):4057–4059. http://aem.asm.org/cgi/content/full/64/10/4057 Wirsen, C.O., Jannasch, H.W., and Molyneaux, S.J., 1993. Chemosynthetic microbial activity at Mid-Atlantic Ridge hydrothermal vent sites. J. Geophys. Res., [Solid Earth], 98(B6):9693–9703. doi:10.1029/92JB01556 |