局部场电位
神经科学
脑深部刺激
中尺度气象学
物理
联轴节(管道)
默认模式网络
萧条(经济学)
抗抑郁药
大脑活动与冥想
不稳定性
脑刺激
统计物理学
心理学
脑电刺激
刺激
功率(物理)
扣带回前部
人工神经网络
神经活动
电场
生物神经网络
计算机科学
神经生理学
领域(数学)
扣带皮质
节奏
理论(学习稳定性)
热涨落
神经影像学
评定量表
人工智能
作者
Dimitris A. Pinotsis,Sankaraleengam Alagapan,Parisa Sarikhani,Tanya Nauvel,Christopher J. Rozell,Helen S. Mayberg
标识
DOI:10.1093/cercor/bhag019
摘要
The initial therapeutic exposure to Deep Brain Stimulation (DBS) during implantation surgery has reproducible acute behavioral effects that carry over without further stimulation. We analyzed local field potential (LFP) data from the first month following brief therapeutic intraoperative DBS. Data were recorded from the subcallosal cingulate cortex. During this month, no further stimulation was applied. Recent studies have identified beta power fluctuations in LFP data as an acute putative depression biomarker of this exposure. However, a detailed description of neural dynamics underlying brain power fluctuations is missing. Here, we consider how these fluctuations are related to brain itinerancy, that is, neural activity changes between stable and unstable states. We also provide a proof of principle study that these dynamics can be described using 2 new dynamical systems measures: instability frequency and relative wandering time. These capture interactions between neural activity and the mesoscale oscillatory electric fields generated by it. The 2 measures seem to split low vs. high Hamilton Depression Rating Scale scores within a small patient cohort. They are motivated by the cytoelectric coupling hypothesis, which suggests that efficient information processing results from mesoscale electric fields and that the re-emergence of depression symptoms might result from altered electric fields. Whether the new measures reflect general mechanisms of rapid antidepressant action remains to be tested.
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