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微损伤与骨力学生物学

Microdamage and bone mechanobiology.

作者信息

Lee T C, O'Brien F J, Gunnlaugsson T, Parkesh R, Taylor D

机构信息

Department of Anatomy, Royal College of Surgeons in Ireland, Dublin, Ireland.

出版信息

Technol Health Care. 2006;14(4-5):359-65.

Abstract

Mechanobiology is concerned with the relationships between mechanical forces and biological processes. Bone adapts to altered mechanical loading by modelling and remodelling. Microdamage is a stimulus for adaptation as shown by a sheep overload model. If microdamage accumulates it leads to fracture failure, notably in osteoporosis. Detection methods, based on chelating fluorochromes and radiopaque agents, will enable microdamage to be quantified and, along with bone mass, aid in fracture prediction and prevention. Mechanobiological principles can be utilised to create tissue engineered bone grafts in cases of bone loss due to trauma, malignancy or resorption.

摘要

力学生物学关注机械力与生物过程之间的关系。骨骼通过塑形和重塑来适应改变的机械负荷。如绵羊过载模型所示,微损伤是适应的一种刺激因素。如果微损伤积累,会导致骨折失效,在骨质疏松症中尤为明显。基于螯合荧光染料和不透射线剂的检测方法,将能够对微损伤进行量化,并与骨量一起,有助于骨折的预测和预防。在因创伤、恶性肿瘤或吸收导致骨丢失的情况下,力学生物学原理可用于制造组织工程骨移植体。

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