Jo Byeongwook, Motoi Kentaro, Morimoto Yuya, Takeuchi Shoji
Mechano-Informatics, Graduate School of Information Science and Technology, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo, 113-8656, Japan.
Electronic and Physical Systems, School of Fundamental Science and Engineering, Waseda University, 3-4-1 Okubo, Shinjuku-ku, Tokyo, 169-8555, Japan.
Adv Healthc Mater. 2024 Dec;13(32):e2401844. doi: 10.1002/adhm.202401844. Epub 2024 Aug 30.
Enhancing muscle strength through workouts is a key factor in improving physical activity and maintaining metabolic profiles. The controversial results concerning the impacts of weight training often arise from clinical experiments that require controlled experimental conditions. In this study, a weight training system for a muscle development model is presented, which is capable of performing weight training motions with adjustable weight loads. Through the implementation of cultured skeletal muscle tissue with floating structures and a flexible ribbon, both isotonic (dynamic change in muscle length) and isometric (static in muscle length) exercises can be performed without the deflection of the tissue. Quantitative analysis of contraction force, changes in metabolic processes, and muscle morphology under different weight training conditions demonstrates the effectiveness of the proposed system. Our proposed system holds potential for establishing effective muscle development and for further applications in rehabilitation training methods.
通过锻炼增强肌肉力量是改善身体活动和维持代谢状况的关键因素。关于重量训练影响的争议性结果往往源于需要可控实验条件的临床实验。在本研究中,提出了一种用于肌肉发育模型的重量训练系统,该系统能够进行具有可调节重量负荷的重量训练动作。通过采用具有浮动结构和柔性带的培养骨骼肌组织,既可以进行等张(肌肉长度动态变化)运动,也可以进行等长(肌肉长度静态)运动,而不会使组织发生偏转。对不同重量训练条件下的收缩力、代谢过程变化和肌肉形态进行定量分析,证明了所提出系统的有效性。我们提出的系统在建立有效的肌肉发育以及在康复训练方法中的进一步应用方面具有潜力。