Hsu Jason E, Peng Qiyu, Schafer David A, Koh Jason L, Nuber Gordon W, Zhang Li Qun
Department of Orthopaedic Surgery, Northwestern University, Chicago, IL, USA.
J Appl Biomech. 2008 Nov;24(4):325-32. doi: 10.1123/jab.24.4.325.
The flexor-pronator mass is thought to be the primary dynamic valgus stabilizer of the elbow and protects the ulnar collateral ligament. However, in vivo multiaxis actions of individual muscles of the flexor-pronator group and their roles in valgus stability have not been investigated quantitatively. This study tested the hypothesis that individual muscles of the flexor-pronator muscle group produce a significant varus moment that provides elbow valgus stability. The flexor carpi ulnaris, flexor carpi radialis, and pronator teres were selectively activated, and the resulting multiaxis moments at the elbow measured at 0 degrees , 30 degrees , 60 degrees , and 90 degrees of elbow flexion using a six-axis force sensor were analyzed for their role in generating varus moment and protecting the ulnar collateral ligament. Considerable offaxis moments were generated by each muscle tested. Through the range of elbow flexion, the varus moment was the major component of the multiaxis action of the flexor carpi ulnaris (p < .001). The flexor carpi radialis and pronator teres had significant actions as elbow flexors and pronators (p < or = .032); these muscles also had a significant varus contribution at 90 degrees elbow flexion (p < or = .019). The results suggest that the flexor-pronator muscle group plays an important role in valgus stability of the elbow. In particular, the flexor carpi ulnaris creates a significant varus moment, which is important in unloading and protecting the ulnar collateral ligament. Rehabilitation and strengthening of the flexor-pronator muscle group may help prevent failure of the ulnar collateral ligament and may also help compensate for a medially insufficient elbow.
屈肌-旋前肌团被认为是肘部主要的动态外翻稳定器,可保护尺侧副韧带。然而,屈肌-旋前肌群中各肌肉的体内多轴运动及其在外翻稳定性中的作用尚未得到定量研究。本研究检验了以下假设:屈肌-旋前肌群中的各肌肉会产生显著的内翻力矩,从而提供肘部外翻稳定性。选择性激活尺侧腕屈肌、桡侧腕屈肌和旋前圆肌,并使用六轴力传感器在肘部屈曲0度、30度、60度和90度时测量肘部产生的多轴力矩,分析其在产生内翻力矩和保护尺侧副韧带方面的作用。所测试的每块肌肉均产生了相当大的离轴力矩。在整个肘部屈曲范围内,内翻力矩是尺侧腕屈肌多轴运动的主要组成部分(p <.001)。桡侧腕屈肌和旋前圆肌作为肘部屈肌和旋前肌具有显著作用(p ≤.032);这些肌肉在肘部屈曲90度时也有显著的内翻贡献(p ≤.019)。结果表明,屈肌-旋前肌群在肘部外翻稳定性中起重要作用。特别是,尺侧腕屈肌产生显著的内翻力矩,这在减轻尺侧副韧带负荷和保护该韧带方面很重要。屈肌-旋前肌群的康复和强化可能有助于预防尺侧副韧带损伤,也可能有助于补偿肘部内侧力量不足。