K. Amrouch, Apport de l'analyse microstructurale à la compréhension des mécanismes de plissement, Exemples de structures plissées aux USA (Wyoming) et en Iran (Zagros), unpublished PhD, 2010.

M. Bornert, F. Valès, H. Gharbi, N. Minh, and D. , Multiscale full-field strain measurements for micromechanical investigations of the hydromechanical behaviour of Clayey rocks, Strain, vol.46, pp.33-46, 2010.
URL : https://hal.archives-ouvertes.fr/hal-00535703

M. Burkhard, Calcite twins, their geometry, appearance and significance as stress-strain markers and indicators of tectonic regime: a review, J. Struct. Geol, vol.15, pp.351-368, 1993.

S. J. Cover-crump, P. F. Schofield, and E. C. Oliver, Using neutron diffraction to examine the onset of mechanical twinning in calcite rocks, J. Struct. Geol, vol.100, pp.77-97, 2017.

J. H. De-bresser and C. J. Spiers, Slip systems in calcite single crystals deformed at 300-800 ? C, J. Geophys. Res, vol.98, pp.6397-6409, 1993.

J. H. De-bresser and C. J. Spiers, Strength characteristics of the r, f, and c slip systems in calcite, Tectonophysics, vol.272, pp.273-282, 1997.

D. A. Ferrill, Calcite twin widths and intensities as metamorphic indicators in natural low-temperature deformation of limestone, J. Struct. Geol, vol.13, issue.91, p.90029, 1991.

D. A. Ferrill, Critical re-evaluation of differential stress estimates from calcite twins in coarse-grained limestone, Tectonophysics, vol.285, pp.77-86, 1998.

D. A. Ferrill, A. P. Morris, M. A. Evans, M. Burkhard, R. H. Groshong et al., Calcite twin morphology: a lowtemperature deformation geothermometer, J. Struct. Geol, vol.26, pp.1521-1529, 2004.
DOI : 10.1016/j.jsg.2003.11.028

URL : http://doc.rero.ch/record/5027/files/Ferrill_David_A._-_Calcite_twin_morphology_a_low_temperature_20050824.pdf

M. Friedman and H. C. Heard, Principal stress ratios in cretaceous limestones from Texas gulf coast, Am. Assoc. Petr. Geol. B, vol.58, pp.71-78, 1974.

D. Griggs and W. B. Miller, Deformation of Yule marble: part ICompression and extension experiments on dry Yule marble at 10,000 atmospheres confining pressure, room temperature, Bull. Geol. Soc. Am, vol.62, p.62, 1951.

D. Griggs, F. Turner, I. Borg, and J. Sosoka, Deformation of Yule marble: part IV-Effects at 150 ? C, Bull. Geol. Soc. Am, vol.62, p.62, 1951.

D. Griggs, F. Turner, I. Borg, and J. Sosoka, Deformation of Yule marble: part V-Effects at 300 ? C, Bull. Geol. Soc. Am, vol.64, p.64, 1953.

J. Handin and D. Griggs, Deformation of Yule marble: part II-Predicted fabric changes, Bull. Geol. Soc. Am, vol.62, p.62, 1951.

O. Lacombe, Paleostress magnitudes associated with development of mountain belts: Insights from tectonic analyses of www, vol.10, pp.307-316, 2019.

C. Parlangeau, Uniaxial compression of calcite single crystals calcite twins in the Taiwan foothills, Tectonics, vol.20, pp.834-849, 2001.

O. Lacombe, Comparison of paleostress magnitudes from calcite twins with contemporary stress magnitudes and frictional sliding criteria in the continental crust: Mechanical implications, J. Struct. Geol, vol.29, pp.86-99, 2007.
URL : https://hal.archives-ouvertes.fr/hal-00143147

O. Lacombe, Calcite twins, a tool for tectonic studies in thrust belts and stable orogenic forelands, Oil and Gas Science and Technology, vol.65, pp.809-838, 2010.

O. Lacombe and P. Laurent, Determination of deviatoric stress tensors based on inversion of calcite twin data from experimentally deformed monophase samples: preliminary results, Tectonophysics, vol.255, issue.95, pp.136-136, 1996.

P. Laurent, H. Kern, O. Lacombe, and J. Newman, Determination of deviatoric stress tensors based on inversion of calcite twin data from experimentally deformed monophase samples, Part II. Axial and triaxial stress experiments, J. Struct. Geol, vol.327, pp.1589-1601, 1994.

C. Parlangeau, O. Lacombe, S. Schueller, D. , and J. , Inversion of calcite twin data for paleostress orientations and magnitudes: a new technique tested and calibrated on numericallygenerated and natural data, Tectonophysics, vol.722, pp.462-485, 2018.
URL : https://hal.archives-ouvertes.fr/hal-01630264

M. Rocher, Déformations et paléocontraintes des avant-pays de chaînes de collision: les piedsmonts occidentaux de Taïwan et le bassin Sud-Aquitain, 1999.

M. Rocher, M. Cushing, F. Lemeille, Y. Lozac'h, A. et al., Intraplate paleostresses reconstructed with calcite twinning and faulting: improved method and application to the eastern Paris Basin, Tectonophysics, vol.387, pp.1-21, 2004.
URL : https://hal.archives-ouvertes.fr/hal-00407048

K. J. Rowe and E. H. Rutter, Palaeostress estimation using calcite twinning: experimental calibration and application to nature, J. Struct. Geol, vol.12, issue.90, p.90044, 1990.

E. Rybacki, B. Evans, C. Janssen, R. Wirth, and G. Dresen, Influence of stress, temperature, and strain on calcite twins constrained by deformation experiments, Tectonophysics, vol.601, pp.20-36, 2013.

S. M. Schmid, M. S. Paterson, S. K. Saxena, S. Bhattacharji, H. Annersten et al., Strain analysis in an experimentally deformed oolitic limestone, Energetics of Geological Processes, 1977.

T. E. Tullis, The use of mechanical twinning in minerals as a measure of shear stress magnitudes, J. Geophys. Res, vol.85, pp.6263-6268, 1980.

F. Turner, Preferred orientation of calcite in Yule marble, Am. J. Sci, vol.247, pp.593-621, 1949.

F. Turner and C. Chi'ih, Deformation of Yule marble: part IIIObserved fabric changes due to deformation at 10,000 atmospheres confining pressure, room temperature, dry, Bull. Geol. Soc. Am, vol.62, p.62, 1951.

F. Turner, D. Griggs, and H. Heard, Experimental deformation of calcite crystals, Bull. Geol. Soc. Am, vol.65, p.65, 1954.