Poltorak Alexander
Neuroenhancement Lab, Suffern, NY, United States.
The City College of New York, New York, NY, United States.
Front Hum Neurosci. 2021 Sep 22;15:710003. doi: 10.3389/fnhum.2021.710003. eCollection 2021.
Brain states, which correlate with specific motor, cognitive, and emotional states, may be monitored with noninvasive techniques such as electroencephalography (EEG) and magnetoencephalography (MEG) that measure macroscopic cortical activity manifested as oscillatory network dynamics. These rhythmic cortical signatures provide insight into the neuronal activity used to identify pathological cortical function in numerous neurological and psychiatric conditions. Sensory and transcranial stimulation, entraining the brain with specific brain rhythms, can effectively induce desired brain states (such as state of sleep or state of attention) correlated with such cortical rhythms. Because brain states have distinct neural correlates, it may be possible to induce a desired brain state by replicating these neural correlates through stimulation. To do so, we propose recording brain waves from a "donor" in a particular brain state using EEG/MEG to extract cortical signatures of the brain state. These cortical signatures would then be inverted and used to entrain the brain of a "recipient" sensory or transcranial stimulation. We propose that brain states may thus be transferred between people by acquiring an associated cortical signature from a donor, which, following processing, may be applied to a recipient through sensory or transcranial stimulation. This technique may provide a novel and effective neuromodulation approach to the noninvasive, non-pharmacological treatment of a variety of psychiatric and neurological disorders for which current treatments are mostly limited to pharmacotherapeutic interventions.
与特定运动、认知和情绪状态相关的脑状态,可以通过脑电图(EEG)和脑磁图(MEG)等非侵入性技术进行监测,这些技术测量表现为振荡网络动力学的宏观皮层活动。这些有节奏的皮层特征有助于深入了解用于识别多种神经和精神疾病中病理性皮层功能的神经元活动。感觉和经颅刺激,使大脑与特定的脑节律同步,可以有效地诱导与这种皮层节律相关的期望脑状态(如睡眠状态或注意力状态)。由于脑状态具有独特的神经关联,通过刺激复制这些神经关联可能诱导出期望的脑状态。为此,我们建议使用EEG/MEG记录处于特定脑状态的“供体”的脑电波,以提取该脑状态的皮层特征。然后将这些皮层特征进行逆向转换,并用于通过感觉或经颅刺激使“受体”的大脑同步。我们提出,通过从供体获取相关的皮层特征,经过处理后通过感觉或经颅刺激应用于受体,脑状态可能因此在人与人之间转移。这种技术可能为多种精神和神经疾病的非侵入性、非药物治疗提供一种新颖且有效的神经调节方法,而目前这些疾病的治疗大多局限于药物治疗干预。