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在体肩关节前屈和外展时盂肱关节的负荷。

In vivo gleno-humeral joint loads during forward flexion and abduction.

机构信息

Julius Wolff Institut, Charité-Universitätsmedizin Berlin, Augustenburger Platz 1, 13353 Berlin, Germany.

出版信息

J Biomech. 2011 May 17;44(8):1543-52. doi: 10.1016/j.jbiomech.2011.02.142. Epub 2011 Apr 8.

Abstract

To improve design and preclinical test scenarios of shoulder joint implants as well as computer-based musculoskeletal models, a precise knowledge of realistic loads acting in vivo is necessary. Such data are also helpful to optimize physiotherapy after joint replacement and fractures. This is the first study that presents forces and moments measured in vivo in the gleno-humeral joint of 6 patients during forward flexion and abduction of the straight arm. The peak forces and, even more, the maximum moments varied inter-individually to a considerable extent. Forces of up to 238%BW (percent of body weight) and moments up to 1.74%BWm were determined. For elevation angles of less than 90° the forces agreed with many previous model-based calculations. At higher elevation angles, however, the measured loads still rose in contrast to the analytical results. When the exercises were performed at a higher speed, the peak forces decreased. The force directions relative to the humerus remained quite constant throughout the whole motion. Large moments in the joint indicate that friction in shoulder implants is high if the glenoid is not replaced. A friction coefficient of 0.1-0.2 seems to be realistic in these cases.

摘要

为了改进肩关节植入物的设计和临床前测试方案以及基于计算机的肌肉骨骼模型,有必要准确了解体内实际的负荷情况。这些数据对于优化关节置换和骨折后的物理治疗也很有帮助。这是第一项在 6 名患者的盂肱关节中测量伸直臂前屈和外展时体内测量的力和力矩的研究。峰值力,甚至最大力矩在个体之间存在很大差异。测定的力最高可达 238%BW(体重的百分比),力矩最高可达 1.74%BWm。对于小于 90°的提升角度,力与许多以前基于模型的计算结果相符。然而,在更高的提升角度下,测量的负荷仍然与分析结果相反。当以更高的速度进行运动时,峰值力会降低。相对于肱骨,力的方向在整个运动过程中保持相当稳定。关节中的大力矩表明,如果肩胛盂没有被置换,肩关节植入物中的摩擦力会很高。在这种情况下,摩擦系数为 0.1-0.2 似乎是现实的。

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