[1] FitzGerald J. D., Stunitz H., "Deformation of granitoids at low metamorphic grade I: reactions and grain size reduction", Tectonophysics 221 (1993) pp. 299-324.
[2] Lister G. S., Price G. P., "Fabric development in a quartz- feldspar mylonite", Tectonophysics 49 (1978) pp. 37-78.
[3] Burg J. P., "Quartz shape fabric variations and C-axis fabrics in a ribbon-mylonite: arguments for an oscillating foliation", J. of Structural Geology 82 (1986) pp. 123-131.
[4] Tullis J, "Deformation of granitic rocks: Experimental studies and natural examples, Plastic Deformation of Minerals and Rocks, ed. by: Karato S. I., Wenk H. R., Reviews in mineralogy and geochemistry 51 (2002) pp. 51-95.
[5] Hirth G., Tullis J., "Dislocation creep regimes in quartz aggregates", J. of Structural Geology 14 (1992) pp. 145-159.
[6] Darot M., "Cinematique de l`extrusion a partir du manteau, des peridotites de la Sierra Bermeja (Serrania de Ronda, Espagne)", Comptes Rendus Academic de Sciences du Paris 278 (1973) pp. 1673-1676.
[7] Shelley D., "Igneous and metamorphic rocks under the microscope", Chapman & Hall (1995) 415.
[8] Twiss R., Moores E., "Structural Geology", W. H. Freeman & Company New York (1992) 532.
[9] Baeta R. D., Ashbee K. H. G., "Slip systems in quartz: I- Experiments; II- Interpretation", American Mineralogist 54 (1969) pp. 1551-1582.
[10] Behrmann G. H. E. E., "Crystal plasticity and super-Plasticity in quartzite: A natural example", Tectonophysics 115 (1985) pp. 101-129.
[11] Dell Angelo L. N., Tullis J., "A comparison of quartz C-axis preferred orientations in experimentally deformed aplites and quartzites", J. of Structural Geology 8 (1986) pp. 683-692.
[12] Dell Angelo L. N., Tullis J., "Fabric development in experimentally sheared quartzites", Tectonophysics 169 (1989) pp. 1-21.
[13] Tullis J., Wenk H. R., "Effect of muscovite on strength and lattice preferred orientations of experimentally deformed quartzite aggregates", Material Sciences Engineering A175 (1994) pp. 209-220.
[14] Lagoeiro L., Hippertt J., Lana C., "Deformation partitioning during folding and transposition of quartz layers", Tectonophysics 361 (2003) pp. 171-186.
[15] Hongn F. D., Hippertt J. F., "Quartz crystallographic and morphologic fabrics during folding / Transposition in mylonites", J. of Structural Geology 23 (2001) pp. 81-92.
[16] Lister G. S., Hobbs B. E., "The simulation of fabric development during plastic deformation and its application to quartzite: the influence of deformation history", J. of Structural Geology 2 (1980) pp. 355-370.
[17] White S. H., "The effects of strain on the microstructures, fabrics and deformation mechanisms in quartzites", Philosophy Transition Royal Society of London, A283 (1976) pp. 69-86.
[18] Nicolas A., Poirier J. P., "Crystalline plasticity and solid state flow in metamorphic rocks", John Wiley (1976) 444.
[19] Heilbronner R., Tullis J., "The effect of static annealing on microstructures and crystallographic preferred orientations of quartzites experimentally deformed in axial compression and shear", Geological Society of London Special Publication 200 (2002) pp. 191-218.
[20] Ramsay J. G., "Folding and fracturing of rocks", McGraw-Hill, New York (1967) 531.
[21] Dunnet D., "A technique of finite strain analysis using elliptical particles", Tectonophysics 7 (1969) pp. 117-136.
[22] Lisle R. J., "Clastic grain shape and orientation in relation to cleavage from the Aberystwyth Grits, Wales", Tectonophysics 39 (1977) pp. 381-385.
[23] Means W. D., "The concept of steady-state foliation", Tectonophysics 78 (1981) pp. 179-199.
[24] Kohlstedt D. L., Evans B., Mackwell S. J., "Strength of the lithosphere: constraints imposed by laboratory experiments", J. of Geophysical Researches 100 (1995) 17587-17602.
[25] Post A. D., Tullis J., Yund R. A., "Effects of chemical environment on dislocation creep of quartzite", J. of Geophysical Researches 101 (1996) 22143-22155.