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Mechanobiology of bone healing and regeneration: in vivo models

机译:骨愈合和再生的力学生物学:体内模型

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Mechanical boundary conditions are well known to influence the regeneration of bone and mechanobiology is the study of how mechanical or physical stimuli regulate biological processes. In vivo models have been applied over many years to investigate the effects of mechanics on bone healing. Early models have focused on the influence of mechanical stability on healing outcome, with an interest in parameters such as the magnitude of interfragmentary movement, the rate and timing of application of micromotion and the number of loading cycles. As measurement techniques have been refined, there has been a shift in orders of magnitude from investigations targeted at the organ level to those targeted at the tissue level and beyond. An understanding of how mechanics influences tissue differentiation during repair and regeneration crucially requires spatial and temporal knowledge of both the local mechanical environment in the healing tissue and a characterization of the tissues formed over the course of regeneration. Owing to limitations in the techniques available to measure the local mechanical conditions during repair directly, simulation approaches, such as the finite element method, are an integral part of the mechanobiologist's toolkit, while histology remains the gold standard in the characterization of the tissue formed. However, with rapid advances occurring in imaging modalities and methods to characterize tissue properties, new opportunities exist to better understand the role of mechanics in the biology of bone regeneration. Combined with developments in molecular biology, mechanobiology has the potential to offer exciting, new regenerative treatments for bone healing.
机译:众所周知,机械边界条件会影响骨骼的再生,而机械生物学是对机械或物理刺激如何调节生物过程的研究。体内模型已经应用了很多年,以研究力学对骨愈合的影响。早期的模型集中在机械稳定性对愈合结果的影响上,并关注诸如碎片间运动的幅度,微运动应用的速率和时机以及加载周期数之类的参数。随着测量技术的完善,数量级从针对器官水平的研究转向针对组织水平及其他组织的研究。对力学如何影响修复和再生过程中组织分化的理解至关重要,这需要在空间和时间上既了解愈合组织中的局部机械环境,又要了解在再生过程中形成的组织的特征。由于在直接修复过程中可用于直接测量局部机械状况的技术存在局限性,因此模拟方法(例如有限元方法)是机械生物学家工具包不可或缺的一部分,而组织学仍然是表征所形成组织的金标准。然而,随着成像方式和表征组织特性的方法的迅速发展,存在新的机会来更好地理解力学在骨再生生物学中的作用。结合分子生物学的发展,机械生物学有潜力为骨骼愈合提供令人兴奋的新再生疗法。

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