Deep brain stimulation of the anterior nucleus of the thalamus increases slow wave activity in non‐rapid eye movement sleep

脑深部刺激 丘脑 慢波睡眠 睡眠纺锤 刺激 睡眠(系统调用) 睡眠阶段 医学 快速眼动睡眠 脑电图 麻醉 癫痫 睡眠开始 清醒 神经科学 心理学 多导睡眠图 失眠症 内科学 精神科 帕金森病 疾病 操作系统 计算机科学
作者
Jana C. Buenzli,Esther Werth,Christian R. Baumann,Anina Belvedere,Roland Renzel,Lennart Stieglitz,Lukas L. Imbach
出处
期刊:Epilepsia [Wiley]
卷期号:64 (8): 2044-2055 被引量:6
标识
DOI:10.1111/epi.17657
摘要

Abstract Objective Previous studies suggest that intermittent deep brain stimulation (DBS) of the anterior nucleus of the thalamus (ANT) affects physiological sleep architecture. Here, we investigated the impact of continuous ANT DBS on sleep in epilepsy patients in a multicenter crossover study in 10 patients. Methods We assessed sleep stage distribution, delta power, delta energy, and total sleep time in standardized 10/20 polysomnographic investigations before and 12 months after DBS lead implantation. Results In contrast to previous studies, we found no disruption of sleep architecture or alterations of sleep stage distribution under active ANT DBS ( p = .76). On the contrary, we observed more consolidated and deeper slow wave sleep (SWS) under continuous high‐frequency DBS as compared to baseline sleep prior to DBS lead implantation. In particular, biomarkers of deep sleep (delta power and delta energy) showed a significant increase post‐DBS as compared to baseline (36.67 ± 13.68 μV 2 /Hz and 799.86 ± 407.56 μV 2 *s, p < .001). Furthermore, the observed increase in delta power was related to the location of the active stimulation contact within the ANT; we found higher delta power and higher delta energy in patients with active stimulation in more superior contacts as compared to inferior ANT stimulation. We also observed significantly fewer nocturnal electroencephalographic discharges in DBS ON condition. In conclusion, our findings suggest that continuous ANT DBS in the most cranial part of the target region leads to more consolidated SWS. Significance From a clinical perspective, these findings suggest that patients with sleep disruption under cyclic ANT DBS could benefit from an adaptation of stimulation parameters to more superior contacts and continuous mode stimulation.
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