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触手微电极阵列揭示海马 CA1 中的软边界神经元。

Tentacle Microelectrode Arrays Uncover Soft Boundary Neurons in Hippocampal CA1.

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

Adv Sci (Weinh). 2024 Aug;11(29):e2401670. doi: 10.1002/advs.202401670. Epub 2024 Jun 3.

Abstract

Hippocampal CA1 neurons show intense firing at specific spatial locations, modulated by isolated landmarks. However, the impact of real-world scene transitions on neuronal activity remains unclear. Moreover, long-term neural recording during movement challenges device stability. Conventional rigid-based electrodes cause inflammatory responses, restricting recording durations. Inspired by the jellyfish tentacles, the multi-conductive layer ultra-flexible microelectrode arrays (MEAs) are developed. The tentacle MEAs ensure stable recordings during movement, thereby enabling the discovery of soft boundary neurons. The soft boundary neurons demonstrate high-frequency firing that aligns with the boundaries of scene transitions. Furthermore, the localization ability of soft boundary neurons improves with more scene transition boundaries, and their activity decreases when these boundaries are removed. The innovation of ultra-flexible, high-biocompatible tentacle MEAs improves the understanding of neural encoding in spatial cognition. They offer the potential for long-term in vivo recording of neural information, facilitating breakthroughs in the understanding and application of brain spatial navigation mehanisms.

摘要

海马体 CA1 神经元在特定的空间位置表现出强烈的放电活动,受孤立的地标调节。然而,真实场景转换对神经元活动的影响尚不清楚。此外,运动期间的长期神经记录对设备稳定性提出了挑战。受水母触须的启发,开发了多导电层超柔韧微电极阵列 (MEA)。触须 MEA 在运动过程中确保了稳定的记录,从而发现了软边界神经元。软边界神经元表现出与场景转换边界一致的高频放电。此外,软边界神经元的定位能力随着更多场景转换边界的增加而提高,当这些边界被移除时,它们的活动会减少。超柔韧、高生物相容性触须 MEA 的创新提高了对空间认知中神经编码的理解。它们为长期的体内神经信息记录提供了可能,有助于在理解和应用大脑空间导航机制方面取得突破。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/887a/11304256/c78696d86336/ADVS-11-2401670-g001.jpg

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