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A Muscle-Specific Rehabilitation Training Method Based on Muscle Activation and the Optimal Load Orientation Concept

机译:基于肌肉激活和最佳负荷定向概念的肌肉专项康复训练方法

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Training based on muscle-oriented repetitive movements has been shown to be beneficial for the improvement of movement abilities in human limbs in relation to fitness, athletic training, and rehabilitation training. In this paper, a muscle-specific rehabilitation training method based on the optimal load orientation concept (OLOC) was proposed for patients whose motor neurons are injured, but whose muscles and tendons are intact, to implement high-efficiency resistance training for the shoulder muscles, which is one of the most complex joints in the human body. A three-dimensional musculoskeletal model of the human shoulder was used to predict muscle forces experienced during shoulder movements, in which muscles that contributed to shoulder motion were divided into 31 muscle bundles, and the Hill model was used to characterize the force-length properties of the muscle. According to the musculoskeletal model, muscle activation was calculated to represent the muscle force. Thus, training based on OLOC was proposed by maximizing the activation of a specific muscle under each posture of the training process. The analysis indicated that the muscle-specific rehabilitation training method based on the OLOC significantly improved the training efficiency for specific muscles. The method could also be used for trajectory planning, load magnitude planning, and evaluation of training effects.
机译:与健身,运动训练和康复训练相关的基于肌肉的重复运动训练对提高人肢的运动能力是有益的。本文提出了一种基于最佳负荷定向概念(OLOC)的针对肌肉的康复训练方法,用于运动神经元受伤但肌肉和肌腱完整的患者,以对肩部肌肉实施高效阻力训练,它是人体最复杂的关节之一。使用人类肩部的三维肌肉骨骼模型来预测肩部运动期间经历的肌肉力,其中,将有助于肩部运动的肌肉分为31个肌肉束,并使用Hill模型来表征人体的力长特性。肌肉。根据肌肉骨骼模型,计算了肌肉激活来代表肌肉力量。因此,通过最大化训练过程中每个姿势下特定肌肉的激活,提出了基于OLOC的训练方法。分析表明,基于OLOC的肌肉特定康复训练方法显着提高了特定肌肉的训练效率。该方法还可以用于轨迹规划,负荷大小规划和训练效果评估。

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