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骨弹性和超声速度会受到有机基质细微变化的影响。

Bone elasticity and ultrasound velocity are affected by subtle changes in the organic matrix.

作者信息

Mehta S S, Oz O K, Antich P P

机构信息

Department of Radiology, University of Texas Southwestern Medical Center, Dallas 75235-9071, USA.

出版信息

J Bone Miner Res. 1998 Jan;13(1):114-21. doi: 10.1359/jbmr.1998.13.1.114.

Abstract

The mechanical competence of bone can be studied through the measurement of the components of its material elasticity, a property which can vary both in magnitude and in dependence upon orientation (anisotropy). While it is known that the elasticity is largely determined by the mineral constituents of the bone matrix, it is nonetheless clear that it must be also dependent upon the remaining constituents of bone material. In this work, the influence of organic components on the elasticity is explored by altering specific constituents of the bone matrix to varying degrees. This study addresses two questions: first, are the resulting changes in elasticity strongly or weakly dependent upon direction, and second, are they substantially dependent upon the nature and magnitude of the induced matrix alteration? To answer these questions, we performed different chemical manipulations of the bone matrix and measured the changes in elasticity and velocity using the technique of ultrasound critical angle reflectometry. Altering the properties of the organic matrix resulted in substantial and complex changes in the elasticity of bone. The observed changes were strongly dependent upon direction, could not be explained by changes in density alone, and varied strongly with the specific chemical treatment of the matrix. Immersion in urea selectively affected protein components of the organic matrix and resulted in reversible changes in velocity and elasticity, while removal of collagen caused anisotropic decreases and removal of all organic matter caused a collapse of all components of the elasticity. In conclusion, this study confirms that the organic matrix exerts a profound influence on the elasticity and indicates that the measurement of elastic properties at multiple directions is necessary in the assessment of bone mechanical competence.

摘要

骨的力学性能可通过测量其材料弹性的组成部分来研究,材料弹性是一种在大小和方向依赖性(各向异性)上都会变化的特性。虽然已知弹性在很大程度上由骨基质的矿物质成分决定,但很明显它也必定依赖于骨材料的其余成分。在这项工作中,通过不同程度地改变骨基质的特定成分来探究有机成分对弹性的影响。本研究解决两个问题:第一,弹性产生的变化对方向的依赖是强还是弱;第二,这些变化是否在很大程度上依赖于诱导的基质改变的性质和程度。为回答这些问题,我们对骨基质进行了不同的化学处理,并使用超声临界角反射测量技术测量了弹性和速度的变化。改变有机基质的性质导致骨弹性发生大量且复杂的变化。观察到的变化强烈依赖于方向,不能仅用密度变化来解释,并且随基质的特定化学处理而有很大变化。浸入尿素会选择性地影响有机基质的蛋白质成分,并导致速度和弹性的可逆变化,而去除胶原蛋白会导致各向异性降低,去除所有有机物会导致弹性的所有成分崩溃。总之,本研究证实有机基质对弹性有深远影响,并表明在评估骨力学性能时,在多个方向测量弹性特性是必要的。

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