海马结构
神经科学
神经调节
内嗅皮质
CTB公司
海马体
空间记忆
刺激
磁刺激
经颅直流电刺激
医学
心理学
认知
初级运动皮层
工作记忆
作者
Elena Beanato,Hyuk-June Moon,Fabienne Windel,Pierre Vassiliadis,Maximilian J. Wessel,Traian Popa,Menoud Pauline,Esra Neufeld,Emanuela De Falco,Baptiste Gauthier,Melanie Steiner,Olaf Blanke,Friedhelm C. Hummel
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2024-10-30
卷期号:10 (44)
被引量:1
标识
DOI:10.1126/sciadv.ado4103
摘要
Because of the depth of the hippocampal-entorhinal complex (HC-EC) in the brain, understanding of its role in spatial navigation via neuromodulation was limited in humans. Here, we aimed to better elucidate this relationship in healthy volunteers, using transcranial temporal interference electric stimulation (tTIS), a noninvasive technique allowing to selectively neuromodulate deep brain structures. We applied tTIS to the right HC-EC in either continuous or intermittent theta-burst stimulation patterns (cTBS or iTBS), compared to a control condition, during a virtual reality–based spatial navigation task and concomitant functional magnetic resonance imaging. iTBS improved spatial navigation performance, correlated with hippocampal activity modulation, and decreased grid cell–like activity in EC. Collectively, these data provide the evidence that human HC-EC activity can be directly and noninvasively modulated leading to changes of spatial navigation behavior. These findings suggest promising perspectives for patients suffering from cognitive impairment such as following traumatic brain injury or dementia.
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