Biewener, A. A., Thomason, J., Goodship, A. and Lanyon, L. E (1983). Bone stress in the horse forelimb during locomotion at different gaits: a comparison of two experimental methods. J. Biomech 16, 565-.
Carando, S., Portigliattibarbos, M., Ascenzi, A., Riggs, C. M. and Boyde, A (1991). Macroscopic shape of and lamellar distribution within, the upper limb shafts, allowing inferences about mechanical-properties. Bone 12, 265-.
Fratzl, P., Schreiber, S. and Boyde, A (1996). Characterization of bone mineral crystals in horse radius by small angle X-ray scattering. Calcif. Tissue Int 58, 341-.
Hoffler, C. E., Moore, K. E., Kozloff, K., Zysset, P. K., Brown, M. B. and Goldstein, S. A (2000). Heterogeneity of bone lamellar-level elastic moduli. Bone_Fb_26 , 603\320609.J.-Y. RHOANDOTHERS1781 Anisotropic Young's modulus of equine bone_Fb_Mason, M. W., Skedros, J. G. and Bloebaum, R. D. (1995). Evidence of strain-mode-related cortical adaptation in the diaphysis of the horse radius. Bone 17, 229-.
Oliver, W. C. and Pharr, G. M (1992). An improved technique for determining hardness and elastic modulus using load and displacement sensing indentation experiments. J. Mater. Res 7, 1564-.
Reilly, G. C. and Currey, J. D (1999). The development of microcracking and failure in bone depends on the loading mode to which it is adapted. J. Exp. Biol 202, 543-.
Rho, J. Y., Roy, M. E., Tsui, T. Y. and Pharr, G. M (1999). Elastic properties of microstructural components of human bonemeasured by nanoindentation. J. Biomed. Mater. Res 45, 48-.
Rho, J. Y., Tsui, T. Y. and Pharr, G. M (1997). Elastic properties of human cortical and trabecular lamellar bone measured by nanoindentation. Biomaterials 18, 1325-.
Rho, J. Y., Zioupos, P., Currey, J. D. and Pharr, G. M (1999). Variationsin the individual thick lamellar properties within osteons by nanoindentation. Bone 25, 295-.
Riggs, C. M., Lanyon, L. E. and Boyde, A (1993). Functional associations between collagen fibre orientation and locomotor strain direction in cortical bone of the equine radius. Anat. Embryol 187, 231-.
Riggs, C. M., Vaughan, L. C., Evans, G. P., Lanyon, L. E. and Boyde, A (1993). Mechanical implications of collagen fibre orientation in cortical bone of the equine radius. Anat. Embryol 187, 239-.
Rubin, C. T. and Lanyon, L. E (1982). Limb mechanics as a function of speed and gait: a study of functional strains in the radius and tibia of horse and dog. J. Exp. Biol 101, 187-.
Schryver, H. F (1978). Bending properties of cortical bone of the horse. Am. J. Vet. Res 39, 25-.
Ziv, V., Wagner, H. D. and Weiner, S (1996). Microstructure\320 microhardness relations in parallel-fibered and lamellar bone. Bone 18, 417-.