Kon Yoshiaki, Nishinaka Naoya, Gamada Kazuyoshi, Tsutsui Hiroaki, Banks Scott A
Department of Mechanical & Aerospace Engineering, University of Florida, Gainesville, FL 32611-6250, USA.
J Shoulder Elbow Surg. 2008 Nov-Dec;17(6):943-6. doi: 10.1016/j.jse.2008.05.047. Epub 2008 Sep 18.
Scapulohumeral rhythm (SHR) provides insight to neuromuscular control and fundamental biomechanics of the shoulder. This rhythm often is disrupted in pathologic shoulders. As the first step, we sought to quantify SHR in healthy subjects for diagnostic assessment of shoulder function. Ten healthy shoulders were studied. Three-dimensional models of the humerus and scapula were created from computed tomography scans. Dynamic shoulder motion was recorded by use of single-plane fluoroscopy during arm abduction with 0-kg and 3-kg handheld loads. Shoulder kinematics were quantified by use of model-based 3-dimensional-to-2-dimensional registration techniques. SHR decreased (more scapular motion) with increasing abduction. With a 3-kg load, scapulothoracic motion was significantly reduced through the range of 35 degrees to 45 degrees of glenohumeral motion. Muscular stabilization of the scapula increased with external loading, as shown by decreased SHR during early lifting. Dynamic scapular stabilization provides a critical platform for upper extremity activity.
肩肱节律(SHR)为肩部的神经肌肉控制和基本生物力学提供了见解。这种节律在病理性肩部常常被破坏。作为第一步,我们试图对健康受试者的肩肱节律进行量化,以用于肩部功能的诊断评估。对十个健康肩部进行了研究。通过计算机断层扫描创建了肱骨和肩胛骨的三维模型。在手臂外展过程中,使用单平面荧光透视法记录了0千克和3千克手持负荷下的动态肩部运动。通过基于模型的三维到二维配准技术对肩部运动学进行了量化。随着外展角度增加,肩肱节律降低(肩胛骨运动增加)。在3千克负荷下,在肱盂运动35度至45度范围内,肩胛胸壁运动显著减少。如早期举升过程中肩肱节律降低所示,随着外部负荷增加,肩胛骨的肌肉稳定作用增强。动态肩胛骨稳定为上肢活动提供了关键平台。