首页> 外文会议>Annual Conference of Japanese Society for Medical and Biological Engineering;Annual International Conference of the IEEE Engineering in Medicine and Biology Society >Cortical activation pattern for grasping during observation, imagery, execution, FES, and observation-FES integrated BCI: An fNIRS pilot study
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Cortical activation pattern for grasping during observation, imagery, execution, FES, and observation-FES integrated BCI: An fNIRS pilot study

机译:用于观察,图像,执行,FES和观察期间的皮质激活模式-FES集成BCI:一项fNIRS初步研究

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Passive movement, action observation and motor imagery as well as motor execution have been suggested to facilitate the motor function of human brain. The purpose of this study is to investigate the cortical activation patterns of these four modes using a functional near-infrared spectroscopy (fNIRS) system. Seven healthy volunteers underwent optical brain imaging by fNIRS. Passive movements were provided by a functional electrical stimulation (FES). Results demonstrated that while all movement modes commonly activated premotor cortex, there were considerable differences between modes. The pattern of neural activation in motor execution was best resembled by passive movement, followed by motor imagery, and lastly by action observation. This result indicates that action observation may be the least preferred way to activate the sensorimotor cortices. Thus, in order to show the feasibility of motor facilitation by a brain computer interface (BCI) for an extreme case, we paradoxically adopted the observation as a control input of the BCI. An observation-FES integrated BCI activated sensorimotor system stronger than observation but slightly weaker than FES. This limitation should be overcome to utilize the observation-FES integrated BCI as an active motor training method.
机译:已经提出了被动运动,动作观察和运动图像以及运动执行以促进人脑的运动功能。这项研究的目的是使用功能性近红外光谱(fNIRS)系统研究这四种模式的皮质激活模式。七名健康志愿者通过fNIRS进行了光学脑成像。被动运动由功能性电刺激(FES)提供。结果表明,虽然所有运动模式通常都会激活运动前皮层,但两种模式之间存在相当大的差异。运动执行中神经激活的模式最类似于被动运动,然后是运动图像,最后是动作观察。该结果表明,动作观察可能是激活感觉运动皮层的最不优选的方法。因此,为了显示在极端情况下通过大脑计算机接口(BCI)进行运动促进的可行性,我们自相矛盾地将观察结果作为BCI的控制输入。观察-FES集成的BCI激活的感觉运动系统强于观察,但比FES稍弱。要利用观察FES集成的BCI作为主动运动训练方法,应克服此限制。

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