Wavelet transform: a future of rock fabric analysis?
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[1] J. Darrozes,et al. Software for multi-scale image analysis: the normalized optimized anisotropic wavelet coefficient method , 1997 .
[2] Philippe Gaillot,et al. The normalised optimised anisotropic wavelet coefficient (NOAWC) Method: An Image processing tool for multi‐scale analysis of rock fabric , 1997 .
[3] R. Ketcham,et al. Three‐dimensional quantitative textural analysis of metamorphic rocks using high‐resolution computed X‐ray tomography: Part I. Methods and techniques , 1997 .
[4] William D. Carlson,et al. Three‐dimensional quantitative textural analysis of metamorphic rocks using high‐resolution computed X‐ray tomography: Part II. Application to natural samples , 1997 .
[5] Patrick Launeau,et al. Fabric analysis using the intercept method , 1996 .
[6] Dougal A. Jerram,et al. The spatial distribution of grains and crystals in rocks , 1996 .
[7] D. Sornette,et al. Hierarchical geometry of faulting , 1996 .
[8] D. Sornette,et al. Organisation of joints and faults from 1-cm to 100-km scales revealed by optimized anisotropic wavelet coefficient method and multifractal analysis , 1995 .
[9] R. Ketcham,et al. Controls on the nucleation and growth of porphyroblasts: Kinetics from natural textures and numerical models , 1995 .
[10] Carl Hagelberg,et al. Thin-line detection in meteorological radar images using wavelet transforms , 1995 .
[11] M. Obata,et al. A New Statistical Description of the Spatial Distribution of Minerals in Rocks , 1995, The Journal of Geology.
[12] R. Ehrlich,et al. Analysis of Spatial Order in Sandstones II: Grain Clusters, Packing Flaws, and the Small-Scale Structure of Sandstones , 1995 .
[13] C. Teyssier,et al. Strain and fabric analyses based on porphyroclast interaction , 1994 .
[14] J. Bouillin,et al. Granite emplacement in an extensional setting: an AMS study of the magmatic structures of Monte Capanne (Elba, Italy) , 1993 .
[15] D. Mainprice,et al. Quantitative texture analysis of naturally deformed anhydrite by neutron diffraction texture goniometry , 1993 .
[16] B. Ildefonse,et al. Deformation around rigid particles: The influence of slip at the particle/matrix interface , 1993 .
[17] Jean-Pierre Antoine,et al. Image analysis with two-dimensional continuous wavelet transform , 1993, Signal Process..
[18] S. Pfleiderer,et al. MAGNETIC PORE FABRIC ANALYSIS : VERIFICATION THROUGH IMAGE AUTOCORRELATION , 1993 .
[19] Renée Heilbronner,et al. The autocorrelation function: an image processing tool for fabric analysis , 1992 .
[20] K. Benn,et al. Preferred Mineral Orientations Related to Magmatic Flow in Ophiolite Layered Gabbros , 1989 .
[21] R. L. Bates,et al. Glossary of Geology , 1987 .
[22] John Starkey,et al. An illustration of the advantages of a complete texture analysis described by the orientation distribution function (ODF) using quartz pole figure data , 1981 .
[23] H. J. Bunge,et al. Fabric analysis by orientation distribution functions , 1981 .
[24] J. Tullis. Preferred orientation of quartz produced by slip during plane strain , 1977 .
[25] J. Bouchez. Plastic deformation of quartzites at low temperature in an area of natural strain gradient , 1977 .
[26] G. Lister. Discussion: Crossed-girdle c-axis fabrics in quartzites plastically deformed by plane strain and progressive simple shear , 1977 .
[27] F. Boudier,et al. Mechanisms of flow in naturally and experimentally deformed peridotites , 1973 .
[28] E. Bailey,et al. Selective staining of K-feldspar and plagioclase on rock slabs and thin sections , 1960 .
[29] Bruno Sander,et al. X. Über Zusammenhänge zwischen Teilbewegung und Gefüge in Gesteinen , 1911, Tschermaks mineralogische und petrographische Mitteilungen.
[30] J. Bouchez,et al. Forme du massif granitique du Sibobre (Montagne Noire, France) : sensibilité de l'inversion des données gravimétriques au contraste de densité , 1994 .
[31] P. Olivier,et al. Structure magmatique du granite du Sidobre (Tarn, France) : de l'échelle du massif à celle de l'échantillon , 1994 .
[32] Romain Murenzi,et al. Isotropic and anisotropic 3D wavelets: Detection of position and orientation of 3D objects , 1994 .
[33] Yves Meyer,et al. Progress in wavelet analysis and applications , 1993 .
[34] A. Nédélec,et al. Submagmatic microfractures in granites , 1992 .
[35] P. Launeau,et al. Effect of mechanical interactions on the development of shape preferred orientations: a two-dimensional experimental approach , 1992 .
[36] Jean-Luc Bouchez,et al. Shear criteria in granite and migmatite deformed in the magmatic and solid states , 1988 .
[37] R. Panozzo. Two-dimensional strain determination by the inverse Surfor wheel , 1987 .
[38] P. Duval,et al. The Fabric of Polycrystalline Ice Deformed in Simple Shear: Experiments in Torsion, Natural Deformation and Geometrical Interpretation , 1982 .
[39] B. Hobbs,et al. The simulation of fabric development during plastic deformation and its application to quartzite: the influence of deformation history , 1980 .
[40] M. Paterson,et al. The simulation of fabric development during plastic deformation and its application to quartzite: fabric transitions , 1979 .
[41] P. Hudleston. Progressive Deformation and Development of Fabric Across Zones of Shear in Glacial Ice , 1977 .
[42] Paul F. Williams,et al. An Outline of Structural Geology , 1976 .
[43] B. Sander. Einführung in die Gefügekunde der geologischen Körper. In zwei Teilen. 2. Teil: Die Korngefüge. Springer-Verlag. Wien und Innsbruck 1950. XII + 409 s., 153 fig., 166 Gefüge-diagram, 8 pl., därav 4 i färgtryck. Pris $ 15: 30 , 1951 .