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同时记录神经元放电和钙活性揭示了麻醉状态下屏状核-皮层神经同步性。

Simultaneous recording of neuronal discharge and calcium activity reveals claustrum-cortex neurosynchrony under anesthesia.

作者信息

Fan Penghui, Zhang Rujin, Xiao Guihua, Song Yilin, Zhuang Chaowei, Yuan Lekang, Mo Fan, Lu Botao, Xu Zhaojie, Wang Yiding, Luo Jinping, Wang Mixia, Mi Weidong, Cao Jiangbei, Dai Qionghai, Cai Xinxia

机构信息

State Key Laboratory of Transducer Technology, Aerospace Information Research Institute, Chinese Academy of Sciences, Beijing 100190, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Fundam Res. 2024 Feb 5;5(1):93-102. doi: 10.1016/j.fmre.2023.12.012. eCollection 2025 Jan.

Abstract

Neural information transmission between deep brain nuclei and the cortex is essential for brain function. Currently, high-resolution simultaneous detection of neural information between the deep brain nuclei and the large-scale cortex still poses challenges. We have developed the microelectrode arrays based on the Micro-Electro-Mechanical System technology, and modified the electrode surface with nanomaterials to improve the electrode performance. This study combined microelectrode arrays and extended-field-of-view microscopy to achieve simultaneous recording of claustrum (CLA) electrophysiology and wide-field cortical calcium imaging at single-cell resolution. This work investigated the synchronous changes of neural information in CLA and cortex of mice during the whole process from wakefulness to anesthesia and then to wakefulness, and summarized the characteristics of the CLA electrophysiology and cortical calcium signaling under different inhalation anesthesia concentrations. We found the synergy between microscopic spike and local field potential of CLA neurons under deep anesthesia, and the law that high inhalation anesthesia concentration enhanced the synchronization between neurons in CLA and cortex. The combination of microelectrode arrays and extended-field-of-view microscopy also gives a new method for synchronous detection of multimodal and multi-brain region neural information.

摘要

深部脑核团与皮层之间的神经信息传递对脑功能至关重要。目前,对深部脑核团与大规模皮层之间的神经信息进行高分辨率同步检测仍面临挑战。我们基于微机电系统技术开发了微电极阵列,并用纳米材料修饰电极表面以改善电极性能。本研究将微电极阵列与扩展视野显微镜相结合,实现了在单细胞分辨率下同时记录屏状核(CLA)电生理和宽视野皮层钙成像。这项工作研究了小鼠从清醒到麻醉再到清醒的全过程中CLA和皮层神经信息的同步变化,并总结了不同吸入麻醉浓度下CLA电生理和皮层钙信号的特征。我们发现了深度麻醉下CLA神经元微观锋电位与局部场电位之间的协同作用,以及高吸入麻醉浓度增强CLA与皮层神经元之间同步性的规律。微电极阵列与扩展视野显微镜的结合也为多模态、多脑区神经信息的同步检测提供了一种新方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/950f/11955029/dfebc1d127cf/ga1.jpg

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