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超声评估旋前圆肌作为肘关节抵抗外翻力的动态稳定器的作用。

Ultrasonographic assessment of the flexor pronator muscles as a dynamic stabilizer of the elbow against valgus force.

作者信息

Otoshi Kenichi, Kikuchi Shinichi, Shishido Hiroaki, Konno Shinichi

机构信息

Department of Orthopaedic Surgery, Fukushima Medical University School of Medicine.

出版信息

Fukushima J Med Sci. 2014;60(2):123-8. doi: 10.5387/fms.2014-7. Epub 2014 Oct 4.

Abstract

Flexor pronator muscles (FPMs) play a key role in stabilizing the elbow joint against valgus forces. However, no studies have investigated the in vivo kinematics of FPMs against these forces on the elbow. This study aimed to clarify the in vivo contribution of each FPM as a dynamic stabilizer in a clinical situation.Twelve healthy volunteers participated in this study. Verbal informed consent was obtained from all subjects. The elbow was flexed to 90 degrees, and the forearm was placed in the neutral position. Manual valgus stress was applied to the elbow joint until maximal shoulder external rotation was achieved. The width of the ulnohumeral joint space and the ulnar shift of the sublime tubercle were measured before and after isometric contraction of FPMs using ultrasonography.The horizontal distances were decreased 1.1±0.6 mm after forearm pronation, 0.6±0.5 mm after wrist palmar flexion, 0.1±0.4 mm after wrist ulnar flexion, and 0.2±0.5 mm after finger flexion. Significant changes were observed during forearm pronation, wrist palmar flexion, and finger flexion but not during wrist ulnar flexion (p<0.05). The sublime tubercle was significantly shifted 0.5±0.1 mm medially after forearm pronation, 0.2±0.1 mm medially after wrist palmar flexion, and 0.1±0.1 mm laterally after wrist ulnar flexion and finger flexion (p<0.05). The FPMs, especially the pronator teres and the flexor carpi radialis, function as dynamic stabilizers against elbow valgus stress. The results of this study may be useful in developing injury prevention and rehabilitation strategies for throwing injuries of the elbow.

摘要

屈肌旋前肌(FPMs)在抵抗外翻力稳定肘关节方面起着关键作用。然而,尚无研究调查FPMs在抵抗这些作用于肘部的力时的体内运动学情况。本研究旨在阐明在临床情况下各FPM作为动态稳定器的体内作用。12名健康志愿者参与了本研究。所有受试者均获得了口头知情同意。将肘关节屈曲至90度,前臂置于中立位。对肘关节施加手动外翻应力,直至达到最大肩关节外旋。使用超声测量FPMs等长收缩前后尺肱关节间隙的宽度和小结节的尺侧移位。前臂旋前、腕掌屈、腕尺屈和手指屈曲后,水平距离分别减少1.1±0.6mm、0.6±0.5mm、0.1±0.4mm和0.2±0.5mm。在前臂旋前、腕掌屈和手指屈曲过程中观察到显著变化,而在腕尺屈过程中未观察到显著变化(p<0.05)。前臂旋前、腕掌屈后小结节分别显著向内移位0.5±0.1mm、0.2±0.1mm,腕尺屈和手指屈曲后小结节分别向外移位0.1±0.1mm(p<0.05)。FPMs,尤其是旋前圆肌和桡侧腕屈肌,作为抵抗肘关节外翻应力的动态稳定器发挥作用。本研究结果可能有助于制定预防肘部投掷伤的损伤预防和康复策略。

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