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髌股关节接触几何学对三维髌股关节力建模的影响。

The influence of patellofemoral joint contact geometry on the modeling of three dimensional patellofemoral joint forces.

作者信息

Powers Christopher M, Chen Yu-Jen, Scher Irving, Lee Thay Q

机构信息

Musculoskeletal Biomechanics Research Laboratory, Department of Biokinesiology and Physical Therapy, University of Southern California, 1540 E. Alcazar St., CHP-155, Los Angeles, CA 90036, USA.

出版信息

J Biomech. 2006;39(15):2783-91. doi: 10.1016/j.jbiomech.2005.10.008. Epub 2005 Nov 22.

Abstract

The purpose of this study was to determine the influence of patellofemoral joint contact geometry on the modeling of three-dimensional patellofemoral joint forces. To achieve this goal, patellofemoral joint reaction forces (PFJRFs) that were measured from an in-vitro cadaveric set-up were compared to PFJRFs estimated from a computer model that did not consider patellofemoral joint contact geometry. Ten cadaver knees were used in this study. Each was mounted on a custom jig that was fixed to an Instron frame. Quadriceps muscle loads were accomplished using a pulley system and weights. The force in the patellar ligament was obtained using a buckle transducer. To quantify the magnitude and direction of the PFJRF, a six-axis load cell was incorporated into the femoral fixation system so that a rigid body assumption could be made. PFJRF data were obtained at 0 degrees , 20 degrees , 40 degrees and 60 degrees of knee flexion. Following in vitro testing, SIMM modeling software was used to develop computational models based on the three-dimensional coordinates (Microscribe digitizer) of individual muscle and patellar ligament force vectors obtained from the cadaver knees. The overall magnitude of the PFJRF estimated from the computer generated models closely matched the direct measurements from the in vitro set-up (Pearson's correlation coefficient, R(2)=0.91, p<0.001). Although the computational model accurately estimated the posteriorly directed forces acting on the joint, some discrepancies were noted in the forces acting in the superior and lateral directions. These differences however, were relatively small when expressed as a total of the overall PFJRF magnitude.

摘要

本研究的目的是确定髌股关节接触几何形状对三维髌股关节力建模的影响。为实现这一目标,将从体外尸体实验装置测量得到的髌股关节反作用力(PFJRFs)与从一个未考虑髌股关节接触几何形状的计算机模型估算得到的PFJRFs进行比较。本研究使用了10具尸体膝关节。每具膝关节都安装在一个固定于英斯特朗框架的定制夹具上。股四头肌负荷通过滑轮系统和重物来实现。髌韧带中的力通过扣式传感器获得。为了量化PFJRF的大小和方向,在股骨固定系统中加入了一个六轴测力传感器,以便能够做出刚体假设。在膝关节屈曲0度、20度、40度和60度时获取PFJRF数据。体外测试后,使用SIMM建模软件基于从尸体膝关节获得的单个肌肉和髌韧带力向量的三维坐标(Microscribe数字化仪)来开发计算模型。从计算机生成模型估算得到的PFJRF的总体大小与体外实验装置的直接测量结果紧密匹配(皮尔逊相关系数,R(2)=0.91,p<0.001)。尽管计算模型准确地估算了作用于关节的向后方向的力,但在向上和向外方向的力方面存在一些差异。然而,当以PFJRF总体大小的总和来表示时,这些差异相对较小。

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