首页> 外文会议>IEEE International Conference on Real-time Computing and Robotics >Investigation of Effective Intensity of Static Stretching Exercise Based on Spring-Pot Viscoelastic Model: Intensity Based on Maximum Tolerance Joint Torque Affects Viscoelastic Ratio of Muscle During Static Stretching
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Investigation of Effective Intensity of Static Stretching Exercise Based on Spring-Pot Viscoelastic Model: Intensity Based on Maximum Tolerance Joint Torque Affects Viscoelastic Ratio of Muscle During Static Stretching

机译:基于弹簧-罐粘弹性模型的静态拉伸运动有效强度的研究:基于最大容许关节扭矩的强度影响静态拉伸过程中肌肉的粘弹性比

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Static stretching is typically performed as an easy method for reducing muscle tone in several fields of sports and rehabilitation. Stretching intensity is important for realizing effective static stretching. However, its instruction is ambiguous; therefore, people sometimes get injured owing to excessive intensity. To perform static stretching with appropriate intensity that results in positive effects, the intensity and effect of static stretching should be quantified. In this study, we investigated the relation between the stretching intensity based on the maximum tolerance joint torque and the change in the muscle viscoelasticity of forearm muscles based on the spring-pot viscoelastic model for evaluating the change in muscle condition during static stretching. We set the stretching intensity using a wrist joint torque adjusting device and measured the forearm muscle hardness using a palpation robot. The results showed that the muscle viscoelasticity decreased significantly during 1-min constant-angle stretching, and the amount of decrease was the largest for 60% of the maximum tolerance joint torque at the maximum joint angle. This suggests that the optimized stretching intensity can be derived from the joint torque measurement at the maximum joint angle.
机译:静态拉伸通常是在​​运动和康复的几个领域中降低肌肉张力的简便方法。拉伸强度对于实现有效的静态拉伸很重要。但是,它的指令是模棱两可的。因此,人们有时会因强度过大而受伤。为了以适当的强度执行静态拉伸以产生积极的效果,应该对静态拉伸的强度和效果进行量化。在这项研究中,我们研究了基于最大耐受关节扭矩的拉伸强度与基于弹簧罐粘弹性模型的前臂肌肉的肌肉粘弹性变化之间的关系,以评估静态拉伸过程中肌肉状况的变化。我们使用腕关节扭矩调节装置设置拉伸强度,并使用触诊机器人测量前臂肌肉的硬度。结果表明,在1分钟恒角拉伸过程中,肌肉粘弹性显着下降,并且在最大关节角处最大耐受关节扭矩的60%时,下降幅度最大。这表明可以从最大关节角度下的关节扭矩测量值中得出最佳拉伸强度。

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