Ghimire Smriti, Miramini Saeed, Edwards Glenn, Rotne Randi, Xu Jiake, Ebeling Peter, Zhang Lihai
Department of Infrastructure Engineering, The University of Melbourne, Victoria 3010, Australia.
School of Animal & Veterinary Sciences, Charles Sturt University, NSW 2678, Australia.
Bone Rep. 2020 Dec 15;14:100740. doi: 10.1016/j.bonr.2020.100740. eCollection 2021 Jun.
After trauma, fractured bone starts healing directly through bone union or indirectly through callus formation process. Intramembranous and endochondral ossification are two commonly known mechanisms of indirect healing. The present study investigated the bone fracture healing under intramembranous and endochondral ossification by developing theoretical models in conjunction with performing a series of animal experiments. Using experimentally determined mean bone densities in sheep tibia stabilized by the Locking Compression Plate (LCP) fixation system, the research outcomes showed that intramembranous and endochondral ossification can be described by Hill Function with two unique sets of function parameters in mechanical stimuli mediated fracture healing. Two different thresholds exist within the range of mechanical simulation index which could trigger significant intramembranous and endochondral ossification, with a relatively higher bone formation rate of endochondral ossification than that of intramembranous ossification. Furthermore, the increase of flexibility of the LCP system and the use of titanium LCP could potentially promote uniform bone formation across the fracture gap, ultimately better healing outcomes.
创伤后,骨折的骨头开始通过骨愈合直接愈合,或通过骨痂形成过程间接愈合。膜内成骨和软骨内成骨是两种常见的间接愈合机制。本研究通过建立理论模型并进行一系列动物实验,研究了膜内成骨和软骨内成骨情况下的骨折愈合。利用通过锁定加压钢板(LCP)固定系统稳定的绵羊胫骨的实验测定平均骨密度,研究结果表明,在机械刺激介导的骨折愈合中,膜内成骨和软骨内成骨可用具有两组独特功能参数的希尔函数来描述。在机械模拟指数范围内存在两个不同的阈值,可触发显著的膜内成骨和软骨内成骨,软骨内成骨的骨形成率相对高于膜内成骨。此外,LCP系统柔韧性的增加和钛制LCP的使用可能会促进骨折间隙处的均匀骨形成,最终获得更好的愈合效果。