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使用立体摄影测量法对膝关节的关节表面形貌和软骨厚度进行定量分析。

Quantitation of articular surface topography and cartilage thickness in knee joints using stereophotogrammetry.

作者信息

Ateshian G A, Soslowsky L J, Mow V C

机构信息

Department of Mechanical Engineering, Columbia University, New York, NY 10032.

出版信息

J Biomech. 1991;24(8):761-76. doi: 10.1016/0021-9290(91)90340-s.

DOI:10.1016/0021-9290(91)90340-s
PMID:1918099
Abstract

An analytical stereophotogrammetry (SPG) technique has been developed based upon some of the pioneering work of Selvik [Ph.D. thesis, University of Lund, Sweden (1974)] and Huiskes and coworkers [J. Biomechanics 18, 559-570 (1985)], and represents a fundamental step in the construction of biomechanical models of diarthrodial joints. Using this technique, the precise three-dimensional topography of the cartilage surfaces of various diarthrodial joints has been obtained. The system presented in this paper delivers an accuracy of 90 microns in the least favorable conditions with 95% coverage using the same calibration method as Huiskes et al. (1985). In addition, a method has been developed, using SPG, to quantitatively map the cartilage thickness over the entire articular surface of a joint with a precision of 134 microns (95% coverage). In the present study, our SPG system has been used to quantify the topography, including surface area, of the articular surfaces of the patella, distal femur, tibial plateau, and menisci of the human knee. Furthermore, examples of cartilage thickness maps and corresponding thickness data including coefficient of variation, minimum, maximum, and mean cartilage thickness are also provided for the cartilage surfaces of the knee. These maps illustrate significant variations over the joint surfaces which are important in the determination of the stresses and strains within the cartilage during diarthrodial joint function. In addition, these cartilage surface topographies and thickness data are essential for the development of anatomically accurate finite element models of diarthrodial joints.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

基于塞尔维克[博士论文,瑞典隆德大学(1974年)]以及惠斯克斯及其同事[《生物力学杂志》18卷,559 - 570页(1985年)]的一些开创性工作,开发了一种分析性立体摄影测量(SPG)技术,这代表了构建滑膜关节生物力学模型的一个基本步骤。利用该技术,已获得了各种滑膜关节软骨表面精确的三维地形。本文介绍的系统在最不利条件下使用与惠斯克斯等人(1985年)相同的校准方法,精度可达90微米,覆盖率为95%。此外,还开发了一种使用SPG的方法,以134微米的精度(95%覆盖率)定量绘制关节整个关节表面的软骨厚度。在本研究中,我们的SPG系统已用于量化人膝关节髌骨、股骨远端、胫骨平台和半月板关节表面的地形,包括表面积。此外,还提供了膝关节软骨表面的软骨厚度图示例以及相应的厚度数据,包括变异系数、最小、最大和平均软骨厚度。这些图显示了关节表面的显著变化,这对于确定滑膜关节功能期间软骨内的应力和应变很重要。此外,这些软骨表面地形和厚度数据对于开发解剖学上精确的滑膜关节有限元模型至关重要。(摘要截断于250字)

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