REhabilitation, Athletic assessment, and DYnamic imaging (READY) Laboratory, Institute of Exercise Physiology and Rehabilitation Science, University of Central Florida.
REhabilitation, Athletic assessment, and DYnamic imaging (READY) Laboratory, Institute of Exercise Physiology and Rehabilitation Science, University of Central Florida;
J Vis Exp. 2022 Aug 25(186). doi: 10.3791/64333.
Using ultrasound biofeedback in conjunction with verbal cueing can increase muscle thickness more than verbal cueing alone and may augment traditional rehabilitation techniques in an athletic, physically active population. Brightness mode (B-mode) ultrasound can be applied using frame-by-frame analysis synchronized with video to understand muscle thickness changes during these dynamic tasks. Visual biofeedback with ultrasound has been established in static positions for the muscles of the lateral abdominal wall. However, by securing the transducer to the abdomen using an elastic belt and foam block, biofeedback can be applied during more specific tasks prevalent in lifetime sports, such as golf. To analyze muscle activity during a golf swing, muscle thickness changes can be compared. The thickness must increase throughout the task, indicating that the muscle is more active. This methodology allows clinicians to immediately replay ultrasound videos for patients as a visual tool to instruct proper activity of the muscles of interest. For example, ultrasound can be used to target the external and internal obliques, which play an important role in swinging a golf club or any other rotational sport or activity. This methodology aims to increase oblique muscle thickness during the golf swing. Additionally, the timing of muscle contraction can be targeted by instructing the patient to contract the abdominal muscles at specific time points, such as the beginning of the downswing, with the goal of improving muscle firing patterns during tasks.
在结合使用口头提示的情况下使用超声生物反馈可以比单独使用口头提示更有效地增加肌肉厚度,并且可能会增强运动活跃人群中的传统康复技术。可以使用逐帧分析并与视频同步的亮度模式(B 模式)超声来理解在这些动态任务中肌肉厚度的变化。已经在侧腹壁的静态位置建立了超声的视觉反馈。但是,通过使用弹性带和泡沫块将换能器固定在腹部上,可以在高尔夫等终生运动中更具体的任务期间应用生物反馈。为了分析高尔夫挥杆过程中的肌肉活动,可以比较肌肉厚度的变化。整个任务中厚度必须增加,表明肌肉更活跃。该方法使临床医生可以立即为患者重播超声视频,作为指导感兴趣肌肉正确活动的视觉工具。例如,超声可以用于针对外部和内部斜肌,这些肌肉在打高尔夫球或任何其他旋转运动或活动中起着重要作用。该方法旨在增加高尔夫挥杆过程中斜肌的厚度。此外,可以通过指示患者在特定时间点(例如下挥杆开始时)收缩腹肌来针对肌肉收缩的时间进行定位,目的是改善任务期间的肌肉发射模式。