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通过反向动化优化骨折愈合的案例。

A case for optimising fracture healing through inverse dynamization.

机构信息

Institute of Health and Biomedical Innovation, Queensland University of Technology, Brisbane, Queensland, Australia.

出版信息

Med Hypotheses. 2013 Aug;81(2):225-7. doi: 10.1016/j.mehy.2013.04.044. Epub 2013 May 18.

Abstract

The mechanical conditions in the repair tissues are known to influence the outcome of fracture healing. These mechanical conditions are determined by the stiffness of fixation and limb loading. Experimental studies have shown that there is a range of beneficial fixation stiffness for timely healing and that fixation stiffness that is either too flexible or too stiff impairs callus healing. However, much less is known about how mechanical conditions influence the biological processes that make up the sequence of bone repair and if indeed mechanical stimulation is required at all stages of repair. Secondary bone healing occurs through a sequence of events broadly characterised by inflammation, proliferation, consolidation and remodelling. It is our hypothesis that a change in fixation stiffness from very flexible to stiff can shorten the time to healing relative to constant fixation stiffness. Flexible fixation has the benefit of promoting greater callus formation and needs to be applied during the proliferative stage of repair. The greater callus size helps to stabilize the fragments earlier allowing mineralization to occur faster. Together with stable/rigid fixation applied during the latter stage of repair to ensure mineralization of the callus. The predicted benefits of inverse dynamization are shortened healing in comparison to very flexible fixation and healing time comparable or faster than stable fixation with greater callus stiffness.

摘要

修复组织中的力学条件已知会影响骨折愈合的结果。这些力学条件取决于固定的刚度和肢体的负重。实验研究表明,存在一个有益的固定刚度范围,以实现及时愈合,而过于灵活或过于僵硬的固定都会损害骨痂愈合。然而,人们对力学条件如何影响构成骨修复序列的生物学过程知之甚少,并且是否在修复的所有阶段都确实需要机械刺激。继发性骨愈合是通过一系列事件发生的,这些事件的特征通常是炎症、增殖、巩固和重塑。我们假设,从非常灵活的固定刚度变为刚性固定刚度可以相对于恒定的固定刚度缩短愈合时间。灵活的固定具有促进更大骨痂形成的好处,需要在修复的增殖阶段应用。更大的骨痂大小有助于更早地稳定碎片,从而更快地发生矿化。结合在修复的后期应用稳定/刚性固定,以确保骨痂的矿化。与非常灵活的固定相比,逆动化的预期益处是愈合时间缩短,与稳定固定相比,骨痂硬度更大,愈合时间相当或更快。

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