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用于非人灵长类动物急性记录的柔性多通道电极。

Flexible multichannel electrodes for acute recording in nonhuman primates.

作者信息

Wang Yang, Wang Qifan, Zheng Ruichen, Xu Xinxiu, Yang Xinze, Gui Qiang, Yang Xiaowei, Wang Yijun, Cui He, Pei Weihua

机构信息

State Key Laboratory of Integrated Optoelectronics, Institute of Semiconductors, Chinese Academy of Sciences, Beijing, 100083 China.

University of Chinese Academy of Sciences, Beijing, 101408 China.

出版信息

Microsyst Nanoeng. 2023 Jul 20;9:93. doi: 10.1038/s41378-023-00550-y. eCollection 2023.

Abstract

Flexible electrodes have demonstrated better biocompatibility than rigid electrodes in relieving tissue encapsulation and long-term recording. Nonhuman primates are closer to humans in their brains' structural and functional properties, thus making them more suitable than rodents as animal models for potential clinical usage. However, the application of flexible electrodes on nonhuman primates has rarely been reported. In the present study, a flexible multichannel electrode array for nonhuman primates was developed and implemented for extracellular recording in behaving monkeys. To minimize the window of durotomy for reducing possible risks, a guide-tube-compatible implantation solution was designed to deliver the flexible electrodes through the dura into the cortex. The proposed structure for inserting flexible electrodes was characterized ex vivo and validated in vivo. Furthermore, acute recording of multichannel flexible electrodes for the primates was performed. The results showed that the flexible electrodes and implantation method used in this study meet the needs of extracellular recording in nonhuman primates. Task-related neuronal activities with a high signal-to-noise ratio of spikes demonstrated that our whole device is currently a minimally invasive and clinically viable approach for extracellular recording.

摘要

在缓解组织包裹和长期记录方面,柔性电极已显示出比刚性电极更好的生物相容性。非人灵长类动物在大脑结构和功能特性上比人类更接近人类,因此作为潜在临床应用的动物模型,它们比啮齿动物更合适。然而,柔性电极在非人灵长类动物上的应用鲜有报道。在本研究中,开发了一种用于非人灵长类动物的柔性多通道电极阵列,并在行为猴子中进行了细胞外记录。为了最小化硬脑膜切开窗口以降低可能的风险,设计了一种与导管兼容的植入解决方案,以将柔性电极穿过硬脑膜送入皮质。所提出的插入柔性电极的结构在体外进行了表征,并在体内进行了验证。此外,还对灵长类动物进行了多通道柔性电极的急性记录。结果表明,本研究中使用的柔性电极和植入方法满足了非人灵长类动物细胞外记录的需求。具有高信噪比尖峰的与任务相关的神经元活动表明,我们的整个装置目前是一种用于细胞外记录的微创且临床可行的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e6cb/10359297/d83b4cd09cc5/41378_2023_550_Fig1_HTML.jpg

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