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建立机械信号与骨骼适应性之间的明确关系。

Toward a clear relationship between mechanical signals and bone adaptation.

作者信息

Wang Chenlu, Fu Ruisen, Yang Haisheng

机构信息

Department of Biomedical Engineering, College of Chemistry and Life Science, Beijing University of Technology, Beijing, 100124, China.

出版信息

Mechanobiol Med. 2025 Feb 1;3(1):100115. doi: 10.1016/j.mbm.2025.100115. eCollection 2025 Mar.

Abstract

Bone adapts according to the mechanical environment, and this adaptation can be visualized by altering its shape, size, and microarchitecture. Bone adaptation was recognized more than a century ago, with a description presented in . Furthermore, the conceptual model of "" provides a quantitative relationship between the magnitude of bone tissue deformation (strain) and bone adaptive responses. However, upon maintaining a constant strain magnitude, various bone responses were observed experimentally under different loading parameters (e.g., frequency, rate, number of load cycles, rest insertion, and waveform). Nevertheless, the precise relationship between mechanical signals and bone adaptation remains unclear. Accordingly, we reviewed loading studies to determine the quantitative relationships between various mechanical signals and bone adaptive responses in various animal loading models. Additionally, we explored how these relationships are influenced by pathophysiological factors, such as age, sex, and estrogen deficiency. Moreover, mechanistic studies that consider cellular mechanical microenvironments to explain these quantitative relationships are discussed. A general formula that considers the bone adaptive response as a function of different loading parameters was proposed. This review may enhance our understanding of bone adaptation and offer guidance for clinicians to develop effective mechanotherapies to prevent bone loss.

摘要

骨骼会根据力学环境进行适应性变化,这种适应性变化可通过改变其形状、大小和微观结构来体现。骨骼适应性在一个多世纪前就已被认识到,相关描述见[具体文献]。此外,“[具体概念模型名称]”的概念模型提供了骨组织变形(应变)大小与骨骼适应性反应之间的定量关系。然而,在保持恒定应变大小时,在不同加载参数(如频率、速率、加载循环次数、休息间隔和波形)下通过实验观察到了各种骨骼反应。尽管如此,机械信号与骨骼适应性之间的确切关系仍不清楚。因此,我们回顾了加载研究,以确定各种动物加载模型中各种机械信号与骨骼适应性反应之间的定量关系。此外,我们探讨了这些关系如何受到年龄、性别和雌激素缺乏等病理生理因素的影响。此外,还讨论了考虑细胞力学微环境来解释这些定量关系的机制研究。提出了一个将骨骼适应性反应视为不同加载参数函数的通用公式。这篇综述可能会增进我们对骨骼适应性的理解,并为临床医生开发有效的机械疗法以预防骨质流失提供指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87cf/12082172/14ed1b33e9a8/ga1.jpg

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