A Three-Dimensional Finite Element Model of the Human Ankle: Development and Preliminary Application to Axial Impulsive Loading
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Rolf H. Eppinger | Rabih E. Tannous | Faris A. Bandak | R. Eppinger | T. Toridis | F. Bandak | R. Tannous | Theodore G. Toridis
[1] R. Daffner,et al. Patterns of high-speed impact injuries in motor vehicle occupants. , 1988, The Journal of trauma.
[2] W. Hayes,et al. Mechanical properties of trabecular bone from the proximal femur: a quantitative CT study. , 1990, Journal of computer assisted tomography.
[3] John D. States,et al. Adult Occupant Injuries of the Lower Limb , 1986 .
[4] Patricia C. Dischinger,et al. Lower extremity trauma in vehicular front-seat occupants , 1994 .
[5] Jeffrey Richard Crandall,et al. SIMULATION OF MUSCLE TENSING IN PRE-IMPACT BRACING , 1995 .
[6] J. Mcelhaney,et al. Mechanical properties of cancellous bone , 1971 .
[7] Pete Thomas,et al. The nature and cause of lower limb injuries in car crashes , 1991 .
[8] S. Siegler,et al. The Mechanical Characteristics of the Collateral Ligaments of the Human Ankle Joint* , 1988, Foot & ankle.
[9] Francis A. Duck,et al. Physical properties of tissue : a comprehensive reference book , 1990 .
[10] D D Moyle,et al. Correlation of mechanical properties of vertebral trabecular bone with equivalent mineral density as measured by computed tomography. , 1988, The Journal of bone and joint surgery. American volume.
[11] J. Mcelhaney,et al. Biomechanical Characteristics of Human Ankle Ligaments , 1985, Foot & ankle.