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Comparison of brain areas for executed and imagined movements after motor training: An fNIRS study

机译:fNIRS研究比较运动训练后执行和想象的运动的大脑区域

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In this paper, we investigate active brain regions for motor execution and motor imagination tasks after training with a rehabilitation robot. Functional near-infrared spectroscopy (fNIRS) is used to measure the hemodynamic responses in the motor cortices of five subjects. An assistive robot (IMT 2.0, connected to the right hand) is used during the training session to make the subject to reach a target point displayed on a computer screen. During the training, the subjects have to reach the target point in two directions (left and right) using right arm movement. Our intention is to investigate the differences between brain signals generated from left and right movements of the right hand. It was found that the same brain region was activated for both left- and right-directional motions. During the testing, we asked the subjects to imagine the executed movement. We found that although the imagined movement activity is weak but it appears in the same region as that of motor execution during the reach task. The results show that executed and imagined movements can be discriminated using fNIRS. However, for brain-computer interface it is difficult to generate two commands using only one arm movement signals.
机译:在本文中,我们使用康复机器人训练后,研究活跃的大脑区域,以执行运动执行和运动想象任务。功能近红外光谱法(fNIRS)用于测量五名受试者运动皮质的血液动力学反应。在训练期间使用辅助机器人(IMT 2.0,连接到右手)使受试者达到计算机屏幕上显示的目标点。在训练过程中,受试者必须使用右臂移动在两个方向(左和右)上到达目标点。我们的目的是研究右手左右运动产生的大脑信号之间的差异。发现左脑和右脑运动都激活了相同的大脑区域。在测试过程中,我们要求受试者想象执行的动作。我们发现,尽管想象中的运动活动微弱,但在伸手可及的距离任务中,它出现在与运动执行相同的区域中。结果表明,执行运动和想象的运动可以使用fNIRS进行区分。然而,对于脑机接口,仅使用一个手臂运动信号就很难产生两个命令。

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