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Optimal mechanical environment of the healing bone fracture/osteotomy

机译:骨折/骨切开术的最佳机械环境

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摘要

The aim of this paper is to review recent experimental and clinical publications on bone biology with respect to the optimal mechanical environment in the healing process of fractures and osteotomies. The basic postulates of bone fracture healing include static bone compression and immobilisation/fixation for three weeks and intermittent dynamic loading treatment afterwards. The optimal mechanical strain should be in the range of 100–2,000 microstrain, depending on the frequency of the strain application, type of bone and location in the bone, age and hormonal status. Higher frequency of mechanical strain application or larger number of repetition cycles result in increased bone mass at the healing fracture site, but only up to a certain limit, values beyond which no additional benefit is observed. Strain application and transition period from non-load-bearing to full load-bearing can be modified by implants allowing dynamisation of compression and generating strains at the fracture healing site in a controlled manner.
机译:本文的目的是回顾有关骨折和截骨术愈合过程中最佳机械环境的有关骨生物学的最新实验和临床出版物。骨折愈合的基本假设包括静态骨压缩和固定/固定三周,然后进行间歇性动态负荷治疗。最佳机械应变应在100–2,000微应变的范围内,具体取决于应变应用的频率,骨骼的类型以及骨骼中的位置,年龄和荷尔蒙状态。施加较高的机械应变频率或重复多次循环会导致骨折愈合部位的骨量增加,但只能达到一定的极限,超过此极限则看不到任何其他好处。可以通过植入物来修改应变的应用以及从非承重到完全承重的过渡期,该植入物允许动态压缩并在骨折愈合部位以受控方式生成应变。

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