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基于神经反馈的功能近红外光谱技术可上调想象运动任务中运动皮层的活动。

Neurofeedback-based functional near-infrared spectroscopy upregulates motor cortex activity in imagined motor tasks.

作者信息

Lapborisuth Pawan, Zhang Xian, Noah Adam, Hirsch Joy

机构信息

Columbia University, Fu Foundation School of Engineering and Applied Science, Department of Biomedical Engineering, New York, New York, United States.

Yale School of Medicine, Department of Psychiatry, New Haven, Connecticut, United States.

出版信息

Neurophotonics. 2017 Apr;4(2):021107. doi: 10.1117/1.NPh.4.2.021107. Epub 2017 Jun 23.

Abstract

Neurofeedback is a method for using neural activity displayed on a computer to regulate one's own brain function and has been shown to be a promising technique for training individuals to interact with brain-machine interface applications such as neuroprosthetic limbs. The goal of this study was to develop a user-friendly functional near-infrared spectroscopy (fNIRS)-based neurofeedback system to upregulate neural activity associated with motor imagery, which is frequently used in neuroprosthetic applications. We hypothesized that fNIRS neurofeedback would enhance activity in motor cortex during a motor imagery task. Twenty-two participants performed active and imaginary right-handed squeezing movements using an elastic ball while wearing a 98-channel fNIRS device. Neurofeedback traces representing localized cortical hemodynamic responses were graphically presented to participants in real time. Participants were instructed to observe this graphical representation and use the information to increase signal amplitude. Neural activity was compared during active and imaginary squeezing with and without neurofeedback. Active squeezing resulted in activity localized to the left premotor and supplementary motor cortex, and activity in the motor cortex was found to be modulated by neurofeedback. Activity in the motor cortex was also shown in the imaginary squeezing condition only in the presence of neurofeedback. These findings demonstrate that real-time fNIRS neurofeedback is a viable platform for brain-machine interface applications.

摘要

神经反馈是一种利用计算机上显示的神经活动来调节自身脑功能的方法,并且已被证明是一种很有前景的技术,可用于训练个体与诸如神经假肢等脑机接口应用进行交互。本研究的目的是开发一种用户友好的基于功能近红外光谱(fNIRS)的神经反馈系统,以上调与运动想象相关的神经活动,运动想象在神经假肢应用中经常被使用。我们假设fNIRS神经反馈会在运动想象任务期间增强运动皮层的活动。22名参与者在佩戴98通道fNIRS设备的同时,使用弹性球进行主动和想象中的右手挤压动作。代表局部皮层血流动力学反应的神经反馈轨迹实时以图形方式呈现给参与者。参与者被指示观察这种图形表示并利用该信息增加信号幅度。在有和没有神经反馈的情况下,比较主动和想象挤压期间的神经活动。主动挤压导致活动局限于左前运动皮层和辅助运动皮层,并且发现运动皮层的活动受到神经反馈的调节。仅在存在神经反馈的情况下,运动皮层的活动在想象挤压条件下也有显示。这些发现表明,实时fNIRS神经反馈是脑机接口应用的一个可行平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56ef/5482291/ed161295825d/NPh-004-021107-g001.jpg

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