Wang Yinghao, Wu Jianfeng, Yang Hongchun, Tang Zhichuan, Chai Guozhong
College of Mechanical Engineering, Zhejiang University of Technology, Hangzhou 310023, Zhejiang, China.
Industrial Design and Research Institute, Zhejiang University of Technology, Hangzhou 310023, Zhejiang, China.
Healthcare (Basel). 2020 Jan 28;8(1):24. doi: 10.3390/healthcare8010024.
In order to provide a convenient way to strengthen the rotator cuff muscles and prevent rotator cuff injury, this study designed an innovative strength trainer specifically for shoulder rotator cuff based on oscillating hydraulic damping. We carried out a myoelectric testing experiment to evaluate the shoulder rotation training effect and compared the results with traditional training equipment to verify the feasibility and validity of the new rotator cuff trainer (RCT). Then, we further explored the influence of different training postures and motion speeds on shoulder rotation training. In the experiment, subjects used three types of equipment (RCT, dumbbells and elastic bands) to perform shoulder rotation training under two movement speeds and two motion postures. The surface electromyography (sEMG) signals of targeted muscles were collected in real time and then further analyzed. The experimental results showed that when using the RCT, the muscle force generation sequence was more aligned with the biomechanical principles of shoulder rotation than using the other two training methods, and the target training muscles had the higher percentage of muscle work. During RCT training, a higher speed of movement (120°/s) led to a higher degree of muscle activation; coronal axis rotation was better for the infraspinatus training, and sagittal axis rotation was better for teres minor training. Based on these results, the RCT was proved to be more effective than traditional training methods. In order to exercise the different muscles of rotator cuff more comprehensively and extensively, different postures should be selected. Furthermore, the movement speed can be appropriately increased within the safe range to improve muscle activation.
为了提供一种方便的方式来加强肩袖肌肉并预防肩袖损伤,本研究基于振荡液压阻尼设计了一种专门用于肩部肩袖的创新力量训练器。我们进行了肌电测试实验以评估肩部旋转训练效果,并将结果与传统训练设备进行比较,以验证新型肩袖训练器(RCT)的可行性和有效性。然后,我们进一步探讨了不同训练姿势和运动速度对肩部旋转训练的影响。在实验中,受试者使用三种类型的设备(RCT、哑铃和弹力带)在两种运动速度和两种运动姿势下进行肩部旋转训练。实时收集目标肌肉的表面肌电(sEMG)信号,然后进行进一步分析。实验结果表明,与使用其他两种训练方法相比,使用RCT时肌肉发力顺序更符合肩部旋转的生物力学原理,且目标训练肌肉的肌肉做功百分比更高。在RCT训练期间,较高的运动速度(120°/s)导致更高程度的肌肉激活;冠状轴旋转对冈下肌训练更好,矢状轴旋转对小圆肌训练更好。基于这些结果,证明RCT比传统训练方法更有效。为了更全面、广泛地锻炼肩袖的不同肌肉,应选择不同的姿势。此外,可在安全范围内适当提高运动速度以增强肌肉激活。