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doi:10.2204/iodp.proc.314315316.216.2012 ReferencesAmrouch, K., Robion, P., Callot, J.-P., Lacombe, O., Daniel, J.-M., Bellahsen, N., and Faure, J.-L., 2010. Constraints on deformation mechanisms during folding provided by rock physical properties: a case study at Sheep Mountain anticline (Wyoming, USA). Geophys. J. Int., 182(3):1105–1123. doi:10.1111/j.1365-246X.2010.04673.x Borradaile, G.J., and Henry, B., 1997. Tectonic applications of magnetic susceptibility and its anisotropy. Earth-Sci. Rev., 42(1–2):49–93. doi:10.1016/S0012-8252(96)00044-X Brückmann, W., Moran, K., and Housen, B.A., 1997. Directional properties of P-wave velocities and acoustic anisotropy in different structural domains of the northern Barbados Ridge accretionary complex. In Shipley, T.H., Ogawa, Y., Blum, P., and Bahr, J.M. (Eds.), Proc. ODP, Sci. Results, 156: College Station, TX (Ocean Drilling Program), 115–124. doi:10.2973/odp.proc.sr.156.017.1997 Brückmann, W., Moran, K., and Taylor, E., 1993. Acoustic anisotropy and microfabric development in accreted sediment from the Nankai Trough. In Hill, I.A., Taira, A., Firth, J.V., et al., Proc. ODP, Sci. Results, 131: College Station, TX (Ocean Drilling Program), 221–233. doi:10.2973/odp.proc.sr.131.121.1993 Chang, C., McNeill, L.C., Moore, J.C., Lin, W., Conin, M., and Yamada, Y., 2010. In situ stress state in the Nankai accretionary wedge estimated from borehole wall failures. Geochem., Geophys., Geosyst., 11:Q0AD04–Q0AD20. doi:10.1029/2010GC003261 Daly, L., 1970. Étude des propriétés magnétiques des roches métamorphiques ou simplement tectonisées. Nature de leur aimantation naturelle. Détermination de leur anisotropie magnétique et application à l’analyse [Thèse Doctorat d’État]. Univ. Paris. Expedition 316 Scientists, 2009a. Expedition 316 Site C0004. In Kinoshita, M., Tobin, H., Ashi, J., Kimura, G., Lallemant, S., Screaton, E.J., Curewitz, D., Masago, H., Moe, K.T., and the Expedition 314/315/316 Scientists, Proc. IODP, 314/315/316: Washington, DC (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/iodp.proc.314315316.133.2009 Expedition 316 Scientists, 2009b. Expedition 316 Site C0006. In Kinoshita, M., Tobin, H., Ashi, J., Kimura, G., Lallemant, S., Screaton, E.J., Curewitz, D., Masago, H., Moe, K.T., and the Expedition 314/315/316 Scientists, Proc. IODP, 314/315/316: Washington, DC (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/iodp.proc.314315316.134.2009 Expedition 316 Scientists, 2009c. Expedition 316 Site C0007. In Kinoshita, M., Tobin, H., Ashi, J., Kimura, G., Lallemant, S., Screaton, E.J., Curewitz, D., Masago, H., Moe, K.T., and the Expedition 314/315/316 Scientists, Proc. IODP, 314/315/316: Washington, DC (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/iodp.proc.314315316.135.2009 Expedition 316 Scientists, 2009d. Expedition 316 Site C0008. In Kinoshita, M., Tobin, H., Ashi, J., Kimura, G., Lallemant, S., Screaton, E.J., Curewitz, D., Masago, H., Moe, K.T., and the Expedition 314/315/316 Scientists, Proc. IODP, 314/315/316: Washington, DC (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/iodp.proc.314315316.136.2009 Henry, P., Jouniaux, L., Screaton, E.J., Hunze, S., and Saffer, D.M., 2003. Anisotropy of electrical conductivity record of initial strain at the toe of the Nankai accretionary wedge. J. Geophys. Res., [Solid Earth], 108(B9):2407–2418. doi:10.1029/2002JB002287 Hornby, B.E., 1998. Experimental laboratory determination of the dynamic elastic properties of wet, drained shales. J. Geophys. Res., [Solid Earth], 103(B12):29945–29964. doi:10.1029/97JB02380 Hrouda, F., Pros, Z., and Wohlgemuth, J., 1993. Development of magnetic and elastic anisotropies in slates during progressive deformation. Phys. Earth Planet. Inter., 77(3–4)251–265. doi:10.1016/0031-9201(93)90102-F Jelinek, V., 1981. Characterization of the magnetic fabric of rocks. Tectonophysics, 79(3–4):T63–T67. doi:10.1016/0040-1951(81)90110-4 Johnston, J.E., and Christensen, N.I., 1995. Seismic anisotropy of shales. J. Geophys. Res., [Solid Earth], 100(B4):5991–6003. doi:10.1029/95JB00031 Kern, H., 1993. P- and S-wave anisotropy and shear-wave splitting at pressure and temperature in possible mantle rocks and their relation to the rock fabric. Phys. Earth Planet. Inter., 78(3–4):245–256. doi:10.1016/0031-9201(93)90159-7 Kitamura, Y., Kanamatsu, T., and Zhao, X., 2010. Structural evolution in accretionary prism toe revealed by magnetic fabric analysis from IODP NanTroSEIZE Expedition 316. Earth Planet. Sci. Lett., 292(1–2):221–230. doi:10.1016/j.epsl.2010.01.040 Lo, T., Coyner, K.B., and Toksöz, M.N., 1986. Experimental determination of elastic anisotropy of Berea sandstone, Chicopee shale, and Chelmsford granite. Geophysics, 51(1):164–171. doi:10.1190/1.1442029 Louis, L., Chen, T.-M.N., David, C., Robion, P., Wong, T., and Song, S., 2008. Anisotropy of magnetic susceptibility and P-wave velocity in core samples from the Taiwan Chelungpu-Fault Drilling Project (TCDP). J. Struct. Geol., 30(8):948–962. doi:10.1016/j.jsg.2008.03.006 Louis, L., David, C., Metz, V., Robion, P., Menéndez, B., and Kissel, C., 2005. Microstructural control on the anisotropy of elastic and transport properties in undeformed sandstones. Int. J. Rock Mech. Min. Sci., 42(7–8):911–923. doi:10.1016/j.ijrmms.2005.05.004 Louis, L., David, C., and Robion, P., 2003. Comparison of the anisotropic behaviour of undeformed sandstones under dry and saturated conditions. Tectonophysics, 370(1–4):193–212. doi:10.1016/S0040-1951(03)00186-0 Louis, L., Robion, P., and David, C., 2004. A single method for the inversion of anisotropic data sets with application to structural studies. J. Struct. Geol., 26(11):2065–2072. doi:10.1016/j.jsg.2004.03.005 Louis, L., Robion, P., David, C., and Frizon de Lamotte, D., 2006. Multiscale anisotropy controlled by folding: the example of the Chaudrons fold (Corbières, France). J. Struct. Geol., 28(4):549–560. doi:10.1016/j.jsg.2006.01.002 Martín-Hernández, F., and Hirt, A.M., 2003. The anisotropy of magnetic susceptibility in biotite, muscovite and chlorite single crystals. Tectonophysics, 367(1–2):13–28. doi:10.1016/S0040-1951(03)00127-6 Moore, G.F., Park, J.-O., Bangs, N.L., Gulick, S.P., Tobin, H.J., Nakamura, Y., Sato, S., Tsuji, T., Yoro, T., Tanaka, H., Uraki, S., Kido, Y., Sanada, Y., Kuramoto, S., and Taira, A., 2009. Structural and seismic stratigraphic framework of the NanTroSEIZE Stage 1 transect. In Kinoshita, M., Tobin, H., Ashi, J., Kimura, G., Lallemant, S., Screaton, E.J., Curewitz, D., Masago, H., Moe, K.T., and the Expedition 314/315/316 Scientists, Proc. IODP, 314/315/316: Washington, DC (Integrated Ocean Drilling Program Management International, Inc.). doi:10.2204/iodp.proc.314315316.102.2009 Nye, J.F., 1957. Physical Properties of Crystals: Their Representation by Tensors and Matrices: New York (Oxford Univ. Press). Owens, W.H., 1993. Magnetic fabric studies of samples from Hole 808C, Nankai Trough. In Hill, I.A., Taira, A., Firth, J.V., et al., Proc. ODP, Sci. Results, 131: College Station, TX (Ocean Drilling Program), 301–310. doi:10.2973/odp.proc.sr.131.130.1993 Parés, J.M., 2004. How deformed are weakly deformed mudrocks? Insights from magnetic anisotropy. Geol. Soc. Spec. Publ., 238(1):191–203. doi:10.1144/GSL.SP.2004.238.01.13 Rochette, P., Jackson, M., and Aubourg, C., 1992. Rock magnetism and the interpretation of anisotropy of magnetic susceptibility. Rev. Geophys., 30(3):209–226. doi:10.1029/92RG00733 Siegesmund, S., Vollbrecht, A., and Pros, Z., 1993. Fabric changes and their influence on P-wave velocity patterns—examples from a polyphase deformed orthogneiss. Tectonophysics, 225(4):477–492. doi:10.1016/0040-1951(93)90311-7 Tarling, D.H., and Hrouda, F., 1993. The Magnetic Anisotropy of Rocks: London (Chapman and Hall). Thomsen, L., 1986. Weak elastic anisotropy. Geophysics, 51(10):1954–1966. doi:10.1190/1.1442051 Tsvankin, I., 1997. Anisotropic parameters and P-wave velocity for orthorhombic media. Geophysics, 62(4):1292–1309. doi:10.1190/1.1444231 Zijderveld, J.D.A., 1967. AC demagnetization of rocks: analysis of results. In Collinson, D.W., Creer, K.M., and Runcorn, S.K. (Eds.), Methods in Palaeomagnetism: Amsterdam (Elsevier), 254–286. |