Chao E Y, Aro H T, Lewallen D G, Kelly P J
Department of Orthopedics, Mayo Clinic Rochester, Minnesota, 55905.
Clin Orthop Relat Res. 1989 Apr(241):24-35.
Knowledge of the basic biomechanics of external fixation is necessary to obtain the full benefits of the technique for bone fracture treatment. The rigidity of external fixation, including pin-bone interface stresses, is discussed and bone healing and remodeling under different fixation stiffnesses and fracture gap conditions are described. The rigidity of fixation ultimately depends on the biomechanical characteristics of the fracture, the accuracy of reduction, and the amount of physiologic loading. Comparative experiments using a canine tibial fracture model have suggested that fixation rigidity is important in early bone healing and in the prevention of pin loosening. Bone union can be achieved under external fixation through different pathways, ranging from callus-free gap healing under a rigid neutralization configuration to direct-contact healing with periosteal new bone formation under axially dynamized stable fixation. Cortical reconstruction by secondary osteons seems to be important for the ultimate strength of the bone union.
了解外固定的基本生物力学知识对于充分利用该技术治疗骨折至关重要。本文讨论了外固定的刚度,包括针-骨界面应力,并描述了不同固定刚度和骨折间隙条件下的骨愈合和重塑过程。固定的刚度最终取决于骨折的生物力学特性、复位的准确性以及生理负荷的大小。使用犬胫骨骨折模型进行的对比实验表明,固定刚度在早期骨愈合和预防钢针松动方面很重要。通过外固定可以通过不同途径实现骨愈合,从刚性中和构型下的无骨痂间隙愈合到轴向动力稳定固定下骨膜新骨形成的直接接触愈合。继发性骨单位的皮质重建似乎对骨愈合的最终强度很重要。