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首页> 外文期刊>Advanced Robotics: The International Journal of the Robotics Society of Japan >Muscle activity during gait-like motion provided by MRI compatible lower-extremity motion simulator
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Muscle activity during gait-like motion provided by MRI compatible lower-extremity motion simulator

机译:MRI兼容的下肢运动模拟器提供的步态运动过程中的肌肉活动

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This paper describes an evaluation of muscle activity of volunteers while they undergo gait-like motion in their dorsal position supported by our lower-extremity motion simulator (LoMS) that is magnetic resonance imaging (MRI) compatible. Our LoMS is designed to provide gait-like motion for a wearer in his/her dorsal position while a functional MRI measures his/her brain activity. A purpose of providing gait-like motion by LoMS is to enable a wearer in the dorsal posture to move his/her lower extremities like gait. LoMS is controlled with torque control based on predictive control method to convert the gravity effect of the dorsal posture into the caudal posture. The performance providing gait-like motion is evaluated from two viewpoints of muscle activities: bioelectrical potential (BEP) transition and inhibition of musculus soleus during the motion. There were correlation of BEP transition at iliopsoas, quadriceps femoris, musculus tibialis anterior, and musculus soleus. The inhibition during the gait-like motion provided by LoMS was similar to the inhibition during treadmill gait. The inhibition is modulated by a level of cerebellum, brainstem and spinal. Therefore, it is considered that LoMS induces the motor sensation in the level of cerebellum, brainstem, and spinal by providing the gait-like motion.
机译:本文介绍了志愿者在我们的下肢运动模拟器(LoMS)的支持下在背侧进行步态步态运动时的肌肉活动评估,该模拟器与磁共振成像(MRI)兼容。我们的LoMS旨在为佩戴者背侧位置提供步态般的运动,而功能性MRI可以测量其大脑活动。通过LoMS提供类似步态的运动的目的是使穿戴者以背侧姿势像步态一样移动他/她的下肢。 LoMS通过基于预测控制方法的转矩控制进行控制,以将背姿势的重力效应转换为尾姿势。从肌肉活动的两个角度评估提供步态运动的性能:生物电势(BEP)过渡和运动期间对比目鱼小肌的抑制。骨肌,股四头肌,胫小肌前肌和比目鱼肌的BEP过渡存在相关性。 LoMS在步态样运动中的抑制作用类似于跑步机步态中的抑制作用。该抑制作用由小脑,脑干和脊髓的水平调节。因此,认为LoMS通过提供步态样运动来诱导小脑,脑干和脊髓水平的运动感觉。

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