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Cerebral Activation Patterns in the Preparation and Movement Periods of Spontaneous and Evoked Movements

机译:自发性和诱发性运动的准备和运动阶段的脑激活模式

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Many BMI (brain machine interface) researches on the control of a prosthetic upper-limb/hand have been conducted. However, the BMI researches on the control of a walking-assistive device were few. Otherwise, brain activation was usually measured in a synchronous control mode. This reduced the naturality of brain activation. To realize asynchronous BMI control of a walking-assistive device, this paper studied cerebral activation pattern in both the spontaneous (asynchronous) and evoked (synchronous) movement states. Stepping and squatting stances movements were performed. Cerebral activation was simultaneously measured using NIRS (near-infrared spectroscopy) technology. Analysis of variation revealed that cerebral activation patterns in the two motion modes had a significant difference in both the imaginary/ preparation periods and movement periods. Particularly, the spontaneous movement achieved a more distinct difference than the evoked movement. It is confirmed that cerebral activation in the preparation periods of spontaneous movement is preferable for identifying motion intention of lower limbs.
机译:已经进行了许多关于假肢上肢/手的控制的BMI(脑机接口)研究。但是,BMI对步行辅助设备控制的研究很少。否则,通常在同步控制模式下测量大脑的激活。这降低了大脑激活的自然性。为了实现步行辅助设备的异步BMI控制,本文研究了自发(异步)和诱发(同步)运动状态下的大脑激活模式。进行踩踏和下蹲姿势运动。使用NIRS(近红外光谱)技术同时测量大脑的激活情况。变异分析表明,两种运动模式下的大脑激活模式在想象/准备期和运动期均具有显着差异。特别地,自发运动比诱发运动获得了更明显的差异。已经证实,在自发运动的准备阶段中的大脑激活对于识别下肢的运动意图是优选的。

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