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A sound and efficient measure of joint congruence

机译:完善有效的联合一致性衡量方法

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摘要

In the medical world, the term congruence is used to describe by visual inspection how the articular surfaces mate each other, evaluating the joint capability to distribute an applied load from a purely geometrical perspective. Congruence is commonly employed for assessing articular physiology and for the comparison between normal and pathological states. A measure of it would thus represent a valuable clinical tool. Several approaches for the quantification of joint congruence have been proposed in the biomechanical literature, differing on how the articular contact is modeled. This makes it difficult to compare different measures. In particular, in previous articles a congruence measure has been presented which proved to be efficient and suitable for the clinical practice, but it was still empirically defined. This article aims at providing a sound theoretical support to this congruence measure by means of the Winkler elastic foundation contact model which, with respect to others, has the advantage to hold also for highly conforming surfaces as most of the human articulations are. First, the geometrical relation between the applied load and the resulting peak of pressure is analytically derived from the elastic foundation contact model, providing a theoretically sound approach to the definition of a congruence measure. Then, the capability of congruence measure to capture the same geometrical relation is shown. Finally, the reliability of congruence measure is discussed.
机译:在医学界,术语“一致性”用于通过肉眼检查来描述关节表面如何相互配合,并从纯粹的几何角度评估关节分配分布载荷的能力。一致性通常用于评估关节生理以及正常状态和病理状态之间的比较。因此,对其进行度量将代表一种有价值的临床工具。在生物力学文献中已经提出了几种用于量化关节全合的方法,不同之处在于如何模拟关节接触。这使得比较不同的措施变得困难。特别是,在先前的文章中,已经提出了一种一致性度量,该度量被证明是有效的并且适合于临床实践,但是仍然凭经验进行了定义。本文旨在通过Winkler弹性地基接触模型为这种一致性度量提供合理的理论支持,相对于其他模型,该模型具有像大多数人类关节一样也可以保持高度贴合的表面的优点。首先,从弹性地基接触模型分析得出施加载荷与压力峰值之间的几何关系,从而为定义一致性度量提供了理论上合理的方法。然后,显示了一致性度量捕获相同几何关系的能力。最后,讨论了一致性度量的可靠性。

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