Special anatomy series: Ultrasound visualization of torsional anatomic changes with external rotation of the lower limb

M. Tan, J. Strakowski, Uvieoghene O. Ughwanogho, E. Forrest, F. Chiou-Tan
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Abstract

Objective: The objective of this article is to describe ultrasound imaging changes in the lower limb as it moves from the neutral anatomic position to external rotation (ER) position. This includes sonographic differences related to both positional changes and tissue torsion. Methods: Sonographic images were obtained in a 28-year-old healthy elite female highland dancer. Both short- and long-axis sonographic images were obtained with the transducer placed over the structure of interest with the hip in both neutral and externally rotated positions. Cine video was also recorded at each site to assess dynamic imaging changes in real time. Results: Ultrasound evaluation of the lower limb during ER allowed assessment of the appearance of positional change and torsion on the tissues from this movement. At mid-thigh, the vastus lateralis was replaced by the rectus femoris. At distal thigh, the rectus tendon was replaced by the vastus medialis. In mid-leg, the tibialis anterior was replaced by the soleus. At the ankle, the extensor hallucis and tibialis anterior tendons are replaced by the tibia and tibialis posterior tendon. Conclusion: The patterns of change with ER of the hip can be identified with ultrasound in multiple muscles throughout the lower limb. This provides the potential to be used as a tool for assessing appropriate movement patterns for performance and preventing injury in dancers and other athletes who repeatedly perform this maneuver.
特殊解剖系列:下肢外旋扭转解剖变化的超声可视化
目的:本文的目的是描述下肢从中性解剖位置移动到外旋(ER)位置时的超声成像变化。这包括与位置变化和组织扭转相关的声像图差异。方法:对一名28岁的健康优秀高原女舞者进行声像图检查。将换能器放置在感兴趣的结构上,使髋关节处于中性和外部旋转位置,从而获得短轴和长轴超声图像。还记录了每个现场的电影视频,以实时评估动态成像变化。结果:ER期间对下肢的超声评估可以评估该运动引起的组织位置变化和扭转的外观。在大腿中部,股外侧肌被股直肌取代。在大腿远端,股内侧肌取代了直肌肌腱。在中腿,胫骨前肌被比目鱼肌取代。在脚踝处,拇伸肌和胫骨前肌腱被胫骨和胫骨后肌腱取代。结论:超声可在下肢多块肌肉中识别髋关节ER的变化模式。这提供了一种潜在的工具,用于评估表演中的适当运动模式,并防止重复执行该动作的舞者和其他运动员受伤。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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