Ramakrishnan H K, Kadaba M P
Orthopaedic Engineering Research Center, Helen Hayes Hospital, W. Haverstraw, NY 10993.
J Biomech. 1991;24(10):969-77. doi: 10.1016/0021-9290(91)90175-m.
In gait analysis, the concepts of Euler and helical (screw) angles are used to define the three-dimensional relative joint angular motion of lower extremities. Reliable estimation of joint angular motion depends on the accurate definition and construction of embedded axes within each body segment. In this paper, using sensitivity analysis, we quantify the effects of uncertainties in the definition and construction of embedded axes on the estimation of joint angular motion during gait. Using representative hip and knee motion data from normal subjects and cerebral palsy patients, the flexion-extension axis is analytically perturbed +/- 15 degrees in 5 degrees steps from a reference position, and the joint angles are recomputed for both Euler and helical angle definitions. For the Euler model, hip and knee flexion angles are relatively unaffected while the ab/adduction and rotation angles are significantly affected throughout the gait cycle. An error of 15 degrees in the definition of flexion-extension axis gives rise to maximum errors of 8 and 12 degrees for the ab/adduction angle, and 10-15 degrees for the rotation angles at the hip and knee, respectively. Furthermore, the magnitude of errors in ab/adduction and rotation angles are a function of the flexion angle. The errors for the ab/adduction angles increase with increasing flexion angle and for the rotation angle, decrease with increasing flexion angle. In cerebral palsy patients with flexed knee pattern of gait, this will result in distorted estimation of ab/adduction and rotation. For the helical model, similar results are obtained for the helical angle and associated direction cosines.(ABSTRACT TRUNCATED AT 250 WORDS)
在步态分析中,欧拉角和螺旋角(螺角)的概念被用于定义下肢的三维相对关节角运动。关节角运动的可靠估计取决于每个身体节段内嵌入轴的准确定义与构建。在本文中,我们通过敏感性分析,量化了嵌入轴定义与构建中的不确定性对步态期间关节角运动估计的影响。利用来自正常受试者和脑瘫患者的代表性髋部和膝部运动数据,将屈伸轴从参考位置以5度步长进行±15度的解析扰动,并针对欧拉角和螺旋角定义重新计算关节角。对于欧拉模型,在整个步态周期中,髋部和膝部的屈曲角相对不受影响,而内收/外展角和旋转角则受到显著影响。屈伸轴定义中15度的误差分别导致髋部和膝部内收/外展角的最大误差为8度和12度,旋转角的最大误差为10 - 15度。此外,内收/外展角和旋转角的误差大小是屈曲角的函数。内收/外展角的误差随屈曲角增大而增加,旋转角的误差随屈曲角增大而减小。在患有膝部屈曲步态模式的脑瘫患者中,这将导致内收/外展和旋转的估计失真。对于螺旋模型,螺旋角和相关方向余弦也得到了类似结果。(摘要截断于250字)