Laczko Jozsef, Mravcsik Mariann, Katona Peter
Department of Information Technology and Biorobotics, Faculty of Science, University of Pécs, 6, Ifjusag St, Pécs, H-7624, Hungary.
Faculty of Science, University of Pécs, 6, Ifjusag St, Pécs, H-7624, Hungary.
Adv Exp Med Biol. 2016;957:273-289. doi: 10.1007/978-3-319-47313-0_15.
Walking, swimming, cycling, and running are cyclic movements that are often performed in training programs or rehabilitation protocols by athletes or people with neuromotor disorders. The muscular and kinematic activities that are acquired during cyclic movements reveal control principles, especially for the optimization and stabilization of motor performance, for a given criterion in rehabilitation processes. The influence of external loads and resistive forces on limb movements should be considered in rehabilitation protocols and when assessing physical activity levels or defining activity patterns for the artificial control of limb movements. This chapter focuses on special cyclic limb movements: lower and upper limb cycling. Two aspects of this research and applications are discussed. First, variances of movement patterns are examined at different levels of the motor system (endpoint, joint configuration, muscle) during unimanual right and left arm cycling and bimanual cycling movements. Second, it is shown that the muscle activity patterns that are acquired during lower and upper limb cycling in able-bodied people may be used to define and improve stimulation patterns for functional electrical stimulation-driven cycling movements in spinal cord-injured individuals. This report also discusses the advantages of the application and control of these types of movements for the rehabilitation of people with paralyzed limbs.
步行、游泳、骑自行车和跑步都是周期性运动,运动员或患有神经运动障碍的人常在训练计划或康复方案中进行这些运动。在周期性运动中获得的肌肉和运动学活动揭示了控制原则,特别是在康复过程中针对给定标准优化和稳定运动表现方面。在康复方案中以及评估身体活动水平或定义用于人工控制肢体运动的活动模式时,应考虑外部负荷和阻力对肢体运动的影响。本章重点关注特殊的周期性肢体运动:下肢和上肢循环运动。讨论了这项研究和应用的两个方面。首先,在单臂右、左臂骑行和双臂骑行运动中,在运动系统的不同层面(端点、关节构型、肌肉)检查运动模式的差异。其次,可以证明,健全人在下肢和上肢循环运动中获得的肌肉活动模式可用于定义和改善脊髓损伤个体功能性电刺激驱动的循环运动的刺激模式。本报告还讨论了应用和控制这些类型的运动对瘫痪肢体患者康复的益处。