High-Performance Bidirectional Microelectrode Array for Assessing Sevoflurane Anesthesia Effects and In Situ Electrical Stimulation in Deep Brain Regions

微电极 局部场电位 多电极阵列 刺激 七氟醚 唤醒 神经科学 电生理学 清醒 脑电图 脑深部刺激 麻醉 生物医学工程 化学 医学 电极 心理学 内科学 疾病 物理化学 帕金森病
作者
Qianli Jia,Yimin Duan,Yaoyao Liu,Juntao Liu,Jinping Luo,Yilin Song,Zhaojie Xu,Shouxin Zhang,Shan Jin,Fan Mo,Mixia Wang,Ying Wang,Xinxia Cai
出处
期刊:ACS Sensors [American Chemical Society]
卷期号:9 (6): 2877-2887
标识
DOI:10.1021/acssensors.3c02676
摘要

Precise assessment of wakefulness states during sevoflurane anesthesia and timely arousal are of paramount importance to refine the control of anesthesia. To tackle this issue, a bidirectional implantable microelectrode array (MEA) is designed with the capability to detect electrophysiological signal and perform in situ deep brain stimulation (DBS) within the dorsomedial hypothalamus (DMH) of mice. The MEA, modified with platinum nanoparticles/IrOx nanocomposites, exhibits exceptional characteristics, featuring low impedance, minimal phase delay, substantial charge storage capacity, high double-layer capacitance, and longer in vivo lifetime, thereby enhancing the sensitivity of spike firing detection and electrical stimulation (ES) effectiveness. Using this MEA, sevoflurane-inhibited neurons and sevoflurane-excited neurons, together with changes in the oscillation characteristics of the local field potential within the DMH, are revealed as indicative markers of arousal states. During the arousal period, varying-frequency ESs are applied to the DMH, eliciting distinct arousal effects. Through in situ detection and stimulation, the disparity between these outcomes can be attributed to the influence of DBS on different neurons. These advancements may further our understanding of neural circuits and their potential applications in clinical contexts.
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