首页> 外文会议>Design of Medical Devices Conference >IDENTIFICATION OF LOW TORQUE STEP SIZES FOR THE DESIGN OF A SINGLE-CHANNEL MUSCLE-POWERED HYBRID ORTHOSIS FOR PEOPLE WITH SPINAL CORD INJURY
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IDENTIFICATION OF LOW TORQUE STEP SIZES FOR THE DESIGN OF A SINGLE-CHANNEL MUSCLE-POWERED HYBRID ORTHOSIS FOR PEOPLE WITH SPINAL CORD INJURY

机译:低扭矩步长大小的识别,用于脊髓损伤的人的单通道肌肉动力混合矫形器的设计

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In paraplegia due to complete or incomplete spinal cord injury, the connection from the brain to muscles in the lower limbs is severed but the muscles that act on signals from the brain to produce limb movement remain functional. Functional electrical stimulation (FES), which is the application of electric potential across a muscle group to artificially cause the muscle to contract, is a method that can be used alone or in conjunction with an or-thosis to produce a gait cycle. Such FES based walking machines or devices have been studied and designed for several decades. However, their application in everyday exercise is limited by several factors, one of which is the rapid onset of muscle fatigue produced in the stimulated muscle. In this work, simulations were conducted in Simscape Multibodv to lay the groundwork for the design of a next-generation FES based walking machine powered by the quadriceps femoris muscle group of each limb. The stimulation of the quadriceps femoris muscle causes the knee to extend while some energy is stored by the orthosis, which uses the stored energy to complete the gait cycle. In this study, we have analyzed the power requirements of each step in the hybrid FES-orthosis gait cycle for different stride lengths. These requirements can help identify small step sizes to reduce the power required from the stimulated muscle.
机译:在由于完全或不完全的脊髓损伤而导致的截瘫中,从大脑到下肢肌肉的连接被切断,但是作用于大脑信号以产生肢体运动的肌肉仍保持功能。功能性电刺激(FES)是在整个肌肉群上施加电势以人为地引起肌肉收缩的一种方法,可以单独使用,也可以与矫形器结合使用以产生步态周期。已经研究和设计了这种基于FES的步行机或设备数十年。然而,它们在日常运动中的应用受到几个因素的限制,其中之一是受刺激的肌肉迅速产生肌肉疲劳。在这项工作中,在Simscape Multibodv中进行了仿真,为设计基于FES的下一代步行机奠定了基础,该步行机由每个肢体的股四头肌组成。股四头肌的刺激使膝盖伸展,而矫形器则存储了一些能量,而矫形器则利用所存储的能量来完成步态周期。在这项研究中,我们分析了混合FES矫形器步态周期中不同步幅的每一步的功率需求。这些要求可以帮助确定较小的步长,以减少受刺激的肌肉所需的力量。

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