病理骨的力学生物学行为

Imane Ait Oumghar, A. Barkaoui, P. Chabrand
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引用次数: 2

摘要

骨密度和骨微结构是评估骨力学性能和检测骨疾病所需的两个主要参数。骨骼组织的力学生物学行为已经通过几个数学模型来描述。一般来说,这些模型指板的不同长度尺度的过程,如机械的,生物的和化学的。通过组织再生过程中涉及的机械刺激和生物因素,确定骨细胞的行为和骨体积的变化。骨病的出现破坏了骨的重塑过程,从而引起骨力学性能的改变。在本章中,将概述骨病及其与骨密度改变的关系。此外,还将讨论治疗骨病对骨重塑的影响。最后,综述了治疗骨愈合的力学生物学模型和药物对骨的影响。为此,本章被细分为三个主要序列:(i)骨重塑,(ii)骨退化原因,(iii)病理性骨的数学模型,以及(iv)治疗骨愈合和药物作用的机械生物学模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanobiological Behavior of a Pathological Bone
Bone density and bone microarchitecture are two principle parameters needed for the evaluation of mechanical bone performance and consequently the detection of bone diseases. The mechanobiological behavior of the skeletal tissue has been described through several mathematical models. Generally, these models fingerboard different length scale processes, such as the mechanical, the biological, and the chemical ones. By means of the mechanical stimulus and the biological factors involved in tissue regeneration, bone cells’ behavior and bone volume changes are determined. The emergence of bone diseases leads to disrupt the bone remodeling process and thus, induces bone mechanical properties’ alteration. In the present chapter, an overview of bone diseases and their relationship with bone density alteration will be presented. Besides, several studies treating bone diseases’ effect on bone remodeling will be discussed. Finally, the mechanobiological models proposed to treat bone healing and drugs’ effect on bone, are going to be reviewed. For this sake, the chapter is subdivided into three main sequences: (i) Bone remodeling, (ii) Bone deterioration causes, (iii) Mathematical models of a pathological bone, and (iv) Mechanobiological models treating bone healing and drugs effect.
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