McGill S M, Cholewicki J, Peach J P
Occupational Biomechanics and Safety Laboratories, Department of Kinesiology, Faculty of Applied Health Sciences, University of Waterloo, ON, Canada.
Clin Biomech (Bristol). 1997 Apr;12(3):190-194. doi: 10.1016/s0268-0033(97)00063-6.
To assess and improve methodological constraints of the 3SPACE ISOTRAK. DESIGN: Several data sets were used to evaluate the following constraints: the performance is adversely affected by close proximity of metallic objects or electromagnetic fields; the3SPACE field contaminates electromyography recordings; and cross-talk from one axis to the other two occurs if the Euler rotation sequence is not matched to the orthopaedic description and function of the joint in question. BACKGROUND: The 3SPACE ISOTRAK is one of the few instruments suitable for measurement of relative three-dimensional joint rotation, however several methodological constraints exist. RESULTS AND CONCLUSIONS: Generally, accuracy can be maintained by restricting offending objects from the sensitive zone between the transmitter and sensor and using long leads to afford the subject distance from computers and other electrical instrumentation; while contamination of EMG amplitude in the time domain can be minimized by using quality instrumentation, and on occasion modifying electrode orientation. Contamination of the EMG frequency content appears unavoidable at low levels of muscle contraction; and cross-talk between axes is minimized by matching the first Euler rotation with the axis of the joint that is characterized by the greatest expected angular displacement. RELEVANCE: The 3SPACE ISOTRAK is one of the few instruments available that is suitable for measuring three axes of relative joint motion (local joint axes that rotate with the joint -- not global). This paper suggests several techniques to increase the accuracy and viability of this instrument.
评估并改善3SPACE ISOTRAK的方法学局限性。
使用多个数据集来评估以下局限性:金属物体或电磁场的近距离会对其性能产生不利影响;3SPACE磁场会干扰肌电图记录;如果欧拉旋转顺序与所讨论关节的骨科描述和功能不匹配,会发生从一个轴到其他两个轴的串扰。
3SPACE ISOTRAK是少数适用于测量相对三维关节旋转的仪器之一,然而存在一些方法学上的局限性。
一般来说,通过将干扰物体限制在发射器和传感器之间的敏感区域之外,并使用长导线使受试者与计算机和其他电气仪器保持距离,可以维持准确性;同时,通过使用高质量仪器并偶尔调整电极方向,可将时域中肌电图幅度的干扰降至最低。在低水平肌肉收缩时,肌电图频率成分的干扰似乎不可避免;通过将第一个欧拉旋转与预期角位移最大的关节轴相匹配,可将轴间串扰降至最低。
3SPACE ISOTRAK是少数适用于测量相对关节运动三个轴(随关节旋转的局部关节轴——而非全局轴)的仪器之一。本文提出了几种提高该仪器准确性和可行性的技术。