共 9 条
[1]
Crisco J.J., Panjabi M.M., Wang E., Price M.A., Peiker R.R., The Injured Canine Cervical Spine after Six Months of Healing: An in Vitro Three-Dimensional Study
[2]
Panjabi M.M., White A.A., Johnson R.M., Cervical spine mechanics as a function of transection of components, J Biomech, 8, pp. 327-336, (1975)
[3]
Panjabi M.M., Peiker R.R., Crisco J.J., Thibodeau L., Yamamoto I., Biomechanics of healing of posterior cervical spinal injuries in a canine model, Spine, 13, pp. 803-807, (1988)
[4]
Peiker R.R., Thibodeau L.L., Duranceau J.S., Panjabi M.M., Wetzel F.T., Mechanical adaptation to injury in the cervical spine, Transactions of the Cervical Spine Research Society, 14, pp. 7-8, (1986)
[5]
Stokes I., Counts D.C., Frymoyer J.W., Experimental instabilities in the rabbit lumbar spine, Spine, 14, pp. 68-72, (1989)
[6]
Wetzel F.T., Panjabi M.M., Peiker R.R., Summers R.J., Temporal biomechanics of healing of posterior cervical spine injuries, Transactions of the 31St Annual Meeting of the Orthopaedic Research Society, 10, (1985)
[7]
White A.A., Johnson R.M., Panjabi M.M., Southwick W.O., Biomechanical analysis of clinical stability in the cervical spine, Clin Orthop, 109, pp. 85-96, (1975)
[8]
Whitehill R., Barry J.C., The evolution of stability in cervical spinal constructs using either autogenous bone graft or methylmethacrylate cement: A follow- up report on a canine in vivo model, Spine, 10, pp. 32-41, (1985)
[9]
Whitehill R., Adaptation S.F., Fechner R.E., Et al., Posterior cervical fusions using cerclage wires, methylmethacrylate cement and autogenous bone graft. An experimental study of a canine model, Spine, 12, pp. 12-22, (1987)