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fMRI Brain-Computer Interface: A Tool for Neuroscientific Research and Treatment

机译:fMRI脑机接口:神经科学研究和治疗工具

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Brain-computer interfaces based on functional magnetic resonance imaging (fMRI-BCI) allow volitional control of anatomically specific regions of the brain. Technological advancement in higher field MRI scanners, fast data acquisition sequences, preprocessing algorithms, and robust statistical analysis are anticipated to make fMRI-BCI more widely available and applicable. This noninvasive technique could potentially complement the traditional neuroscientific experimental methods by varying the activity of the neural substrates of a region of interest as an independent variable to study its effects on behavior. If the neurobiological basis of a disorder (e.g., chronic pain, motor diseases, psychopathy, social phobia, depression) is known in terms of abnormal activity in certain regions of the brain, fMRI-BCI can be targeted to modify activity in those regions with high specificity for treatment. In this paper, we review recent results of the application of fMRI-BCI to neuroscientific research and psychophysiological treatment.
机译:基于功能磁共振成像(fMRI-BCI)的脑机接口允许对大脑的解剖学特定区域进行自愿控制。高场MRI扫描仪的技术进步,快速的数据采集序列,预处理算法和可靠的统计分析有望使fMRI-BCI更加广泛地获得应用。通过将感兴趣区域的神经基质的活动作为独立变量来研究其对行为的影响,这种非侵入性技术可以潜在地补充传统的神经科学实验方法。如果就大脑某些区域的异常活动而言,已知一种疾病的神经生物学基础(例如,慢性疼痛,运动疾病,精神病,社交恐惧症,抑郁症),则可以将fMRI-BCI定位为通过治疗的特异性高。在本文中,我们回顾了功能磁共振成像BCI在神经科学研究和心理生理治疗中应用的最新结果。

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