脑深部刺激
神经科学
海马结构
刺激
人脑
海马体
经颅直流电刺激
功能磁共振成像
磁共振成像
神经刺激
医学
生物医学工程
心理学
病理
帕金森病
放射科
疾病
作者
Inês R. Violante,Ketevan Alania,Antonino M. Cassarà,Esra Neufeld,Emma Acerbo,Romain Carron,Adam Williamson,Danielle L. Kurtin,E. J. Rhodes,Adam Hampshire,Niels Kuster,Edward S. Boyden,Álvaro Pascual‐Leone,Nir Grossman
标识
DOI:10.1101/2022.09.14.507625
摘要
ABSTRACT Deep brain stimulation (DBS) via implanted electrodes is used worldwide to treat patients with severe neurological and psychiatric disorders however its invasiveness precludes widespread clinical use and deployment in research. Temporal interference (TI) is a strategy for non-invasive steerable DBS using multiple kHz-range electric fields with a difference frequency within the range of neural activity. Here we report the validation of the non-invasive DBS concept in humans. We used electric field modelling and measurements in a human cadaver to verify that the locus of the transcranial TI stimulation can be steerably focused in the hippocampus with minimal exposure to the overlying cortex. We then used functional magnetic resonance imaging (fMRI) and behaviour experiments to show that TI stimulation can focally modulate hippocampal activity and enhance the accuracy of episodic memories in healthy humans. Our results demonstrate targeted, non-invasive electrical stimulation of deep structures in the human brain.
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