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动态外翻应力量测试在伸展时比在弯曲时产生更大的尺侧副韧带长度变化:一项生物力学研究。

The moving valgus stress test produces more ulnar collateral ligament change in length during extension than during flexion: a biomechanical study.

机构信息

Deparment of Orthopaedic Surgery, University of Cincinnati, Cincinnati, OH, USA.

Department of Orthopaedic Surgery, Allegheny General Hospital, Pittsburgh, PA, USA; Department of Mechanical Engineering and Materials Science, University of Pittsburgh, Pittsburgh, PA, USA; Department of Bioengineering, University of Pittsburgh, Pittsburgh, PA, USA.

出版信息

J Shoulder Elbow Surg. 2020 Jun;29(6):1230-1235. doi: 10.1016/j.jse.2019.12.025. Epub 2020 Mar 17.

Abstract

HYPOTHESIS AND BACKGROUND

Injuries to the elbow medial ulnar collateral ligament (mUCL) pose a diagnostic challenge, with the moving valgus stress test (MVST) currently accepted as the gold-standard clinical test. This study sought to biomechanically evaluate the change in length of the ulnar collateral ligament (UCL) during flexion-extension using a null hypothesis that the mUCL will not experience a greater change in length with movement than with static loading.

METHODS

Seven fresh-frozen human cadaveric elbows were tested with static and dynamic valgus stress. We measured (1) ligament length with a multi-camera optical system, (2) elbow flexion with an incremental encoder, and (3) valgus deviation with an electronic inclinometer. With a force applied to the wrist to simulate a clinical stress examination, the elbow was flexed and extended in a physiological elbow simulator to mimic the flexion and extension of the MVST.

RESULTS

The simulated MVST produced more elongation of the UCL compared with static stress testing (P < .001). Ninety degrees of flexion produced the highest mean change, and the anterior and posterior bands demonstrated different length change characteristics. Comparison of dynamic flexion and extension showed a statistically significant difference in change in length: The mUCL reached the greatest change during extension, with the greatest changes during extension near 90° of flexion.

DISCUSSION AND CONCLUSION

The MVST produces significantly more elongation of the mUCL than either a static test or a moving test in flexion. This study provides biomechanical evidence of the validity of the MVST as a superior examination technique for injuries to the UCL.

摘要

假设和背景

肘部内侧尺侧副韧带(mUCL)损伤具有诊断挑战性,目前移动性外翻应力量测试(MVST)被认为是金标准的临床测试。本研究旨在通过假设 mUCL 在运动时不会比静态加载时经历更大的长度变化,从生物力学角度评估屈伸过程中尺侧副韧带(UCL)的长度变化。

方法

对 7 个新鲜冷冻的人体肘部进行静态和动态外翻应力测试。我们使用多相机光学系统测量(1)韧带长度,(2)使用增量编码器测量肘部弯曲度,(3)使用电子测斜仪测量外翻偏斜度。在手腕上施加力以模拟临床应力检查,在生理肘部模拟器中弯曲和伸展肘部,以模拟 MVST 的弯曲和伸展。

结果

与静态应力测试相比,模拟 MVST 使 UCL 产生了更大的伸长(P <.001)。90 度弯曲产生了最高的平均变化,前束和后束表现出不同的长度变化特征。动态屈伸的比较显示长度变化存在统计学差异:mUCL 在伸展时达到最大变化,在接近 90 度弯曲的伸展时变化最大。

讨论和结论

MVST 比静态或弯曲运动测试产生 UCL 的伸长明显更大。本研究为 MVST 作为 UCL 损伤的优越检查技术的有效性提供了生物力学证据。

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