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用于闭环神经调制与传感的多模态技术

Multimodal Technologies for Closed-Loop Neural Modulation and Sensing.

作者信息

Li Lizhu, Zhang Bozhen, Zhao Wenxin, Sheng David, Yin Lan, Sheng Xing, Yao Dezhong

机构信息

Sichuan Provincial Key Laboratory for Human Disease Gene Study and the Center for Medical Genetics, School of Life Science and Technology, University of Electronic Science and Technology of China, Chengdu, 611731, China.

School of Materials Science and Engineering, The Key Laboratory of Advanced Materials of Ministry of Education, State Key Laboratory of New Ceramics and Fine Processing, Laboratory of Flexible Electronics Technology, Tsinghua University, Beijing, 100084, China.

出版信息

Adv Healthc Mater. 2024 Sep;13(24):e2303289. doi: 10.1002/adhm.202303289. Epub 2024 Apr 30.

Abstract

Existing methods for studying neural circuits and treating neurological disorders are typically based on physical and chemical cues to manipulate and record neural activities. These approaches often involve predefined, rigid, and unchangeable signal patterns, which cannot be adjusted in real time according to the patient's condition or neural activities. With the continuous development of neural interfaces, conducting in vivo research on adaptive and modifiable treatments for neurological diseases and neural circuits is now possible. In this review, current and potential integration of various modalities to achieve precise, closed-loop modulation, and sensing in neural systems are summarized. Advanced materials, devices, or systems that generate or detect electrical, magnetic, optical, acoustic, or chemical signals are highlighted and utilized to interact with neural cells, tissues, and networks for closed-loop interrogation. Further, the significance of developing closed-loop techniques for diagnostics and treatment of neurological disorders such as epilepsy, depression, rehabilitation of spinal cord injury patients, and exploration of brain neural circuit functionality is elaborated.

摘要

现有的研究神经回路和治疗神经疾病的方法通常基于物理和化学线索来操纵和记录神经活动。这些方法往往涉及预定义的、固定的和不可改变的信号模式,无法根据患者的病情或神经活动实时调整。随着神经接口的不断发展,现在有可能对神经疾病和神经回路进行适应性和可修改治疗的体内研究。在这篇综述中,总结了各种模式当前和潜在的整合,以实现神经系统中的精确闭环调制和传感。重点介绍了产生或检测电、磁、光、声或化学信号的先进材料、设备或系统,并利用它们与神经细胞、组织和网络进行相互作用以进行闭环询问。此外,还阐述了开发闭环技术用于诊断和治疗癫痫、抑郁症、脊髓损伤患者康复以及探索脑神经网络功能等神经疾病的重要性。

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