Perren S M, Rahn B A
Can J Surg. 1980 May;23(3):228-32.
Internal fixation of fractures alters the physical environment of living bone. The authors have studied the reaction of living bone to force and motion, mainly in sheep. Cortical bone does not undergo pressure necrosis when compression is applied in internal fixation. Compressing the fragments increases the stability of the reduction and leads to uneventful healing without resorption. Small areas of plastic bone deformation owing to mechanical overload are nor removed by surface resorption but by internal remodelling. Interfragmentary motion produces callus and resorption of the contact surfaces. The static compression applied to cortical bone does not induce a change in the rate of internal remodelling. The static forces must exceed the dynamic load to maintain close coaptation at the contact surface.
骨折内固定改变了活骨的物理环境。作者主要在绵羊身上研究了活骨对力和运动的反应。在进行内固定施加压力时,皮质骨不会发生压力性坏死。压缩骨折碎片可增加复位的稳定性,并实现顺利愈合且无吸收现象。因机械过载导致的小面积塑性骨变形并非通过表面吸收而是通过内部重塑来消除。骨折碎片间的运动会产生骨痂并导致接触面吸收。施加于皮质骨的静态压缩不会引起内部重塑速率的改变。静态力必须超过动态负荷,才能在接触表面维持紧密对合。