van Drongelen Stefan, Schlüssel Matthias, Arnet Ursina, Veeger Dirkjan
Swiss Paraplegic Research, Nottwil, Switzerland.
Clin Biomech (Bristol). 2013 Jun;28(5):495-501. doi: 10.1016/j.clinbiomech.2013.04.007. Epub 2013 May 9.
Rotator cuff tears strongly affect the biomechanics of the shoulder joint in their role to regulate the joint contact force needed to prevent the joint from dislocation. The aim of this study was to investigate the influence of simulated progressed rotator cuff tears on the (in)stability of the glenohumeral joint and the risk for impingement during wheelchair and handbike propulsion.
The Delft Shoulder and Elbow Model was used to calculate the magnitude of the glenohumeral joint reaction force and the objective function J, which is an indication of the effort needed to complete the task. Full-thickness tears were simulated by virtually removing muscles from the model.
With larger cuff tears the joint reaction force was higher and more superiorly directed. Also extra muscle force was necessary to balance the external force such that the glenohumeral joint did not dislocate.
A tear of only the supraspinatus leads only to a minor increase in muscle forces and a minor shift of the force on the glenoid, indicating that it is possible to function well with a torn supraspinatus muscle. A massive tear shifts the direction of the joint reaction force to the superior border of the glenoid, increasing the risk for impingement.
肩袖撕裂在调节防止肩关节脱位所需的关节接触力方面对肩关节生物力学有强烈影响。本研究的目的是调查模拟进展性肩袖撕裂对盂肱关节(不)稳定性以及轮椅和手摇车推进过程中撞击风险的影响。
使用代尔夫特肩肘模型计算盂肱关节反应力的大小和目标函数J,目标函数J是完成任务所需努力程度的一个指标。通过虚拟去除模型中的肌肉来模拟全层撕裂。
随着肩袖撕裂增大,关节反应力更高且方向更向上。还需要额外的肌肉力量来平衡外力,以使盂肱关节不脱位。
仅冈上肌撕裂只会导致肌肉力量略有增加以及关节盂上的力略有偏移,这表明冈上肌撕裂时仍有可能正常发挥功能。巨大撕裂会使关节反应力方向转移到关节盂上缘,增加撞击风险。