Zhou Hai, Liu Anmin, Wang Dongmei, Zeng Xiangsen, Wei San, Wang Chengtao
Institute of Biomedical Manufacturing and Life Quality Engineering, School of Mechanical and Power Energy Engineering, Shanghai Jiaotong University, Shanghai, China.
Prosthet Orthot Int. 2013 Oct;37(5):369-74. doi: 10.1177/0309364612470964. Epub 2013 Jan 23.
Sitting cross-legged as an activity of daily living and its kinematics have significantly different demands on the arthroplasty of hip and knee, which can be referred in the design of joint arthroplasty.
The purpose of this study was to obtain the kinematics of the lower limb in Chinese people during cross-legged sitting.
This study identified the necessary requirements for joint arthroplasty to carry out sitting cross-legged activity.
A total of 40 healthy Chinese participants (average age = 23.8 years) performed six cross-legged sitting trials per person. Three-dimensional kinematic data of ankle, knee, and hip joints were collected; the means of the three-dimensional angles of these three joints were calculated.
At the hip, the range of motion of the flexion was 101.7°, the abduction reached 43.2°, and the range of motion of the external rotation was 36.4°. At the knee, the range of motion of the flexion was 131.9° and the range of motion of the internal rotation reached 32.4°. At the ankle, the range of motion in three planes was not great.
Such motion ranges were likely to result in prosthetic dislocation. The results would provide valuable references for prosthesis design in the Chinese population.
盘腿坐作为一种日常生活活动及其运动学对髋关节和膝关节置换术有显著不同的要求,这在关节置换术设计中可作参考。
本研究旨在获取中国人盘腿坐时下肢的运动学数据。
本研究确定了关节置换术进行盘腿坐活动的必要条件。
共有40名健康中国参与者(平均年龄 = 23.8岁),每人进行6次盘腿坐试验。收集踝关节、膝关节和髋关节的三维运动学数据;计算这三个关节三维角度的平均值。
在髋关节处,屈曲活动范围为101.7°,外展达到43.2°,外旋活动范围为36.4°。在膝关节处,屈曲活动范围为131.9°,内旋活动范围达到32.4°。在踝关节处,三个平面的活动范围不大。
这样的运动范围可能导致假体脱位。研究结果将为中国人群的假体设计提供有价值的参考。