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用于大脑重新布线的基于神经形态的神经假体:神经工程的现状与展望

Neuromorphic-Based Neuroprostheses for Brain Rewiring: State-of-the-Art and Perspectives in Neuroengineering.

作者信息

Chiappalone Michela, Cota Vinicius R, Carè Marta, Di Florio Mattia, Beaubois Romain, Buccelli Stefano, Barban Federico, Brofiga Martina, Averna Alberto, Bonacini Francesco, Guggenmos David J, Bornat Yannick, Massobrio Paolo, Bonifazi Paolo, Levi Timothée

机构信息

Department of Informatics, Bioengineering, Robotics System Engineering (DIBRIS), University of Genova, 16145 Genova, Italy.

Rehab Technologies, Istituto Italiano di Tecnologia, 16163 Genova, Italy.

出版信息

Brain Sci. 2022 Nov 19;12(11):1578. doi: 10.3390/brainsci12111578.

Abstract

Neuroprostheses are neuroengineering devices that have an interface with the nervous system and supplement or substitute functionality in people with disabilities. In the collective imagination, neuroprostheses are mostly used to restore sensory or motor capabilities, but in recent years, new devices directly acting at the brain level have been proposed. In order to design the next-generation of neuroprosthetic devices for brain repair, we foresee the increasing exploitation of closed-loop systems enabled with neuromorphic elements due to their intrinsic energy efficiency, their capability to perform real-time data processing, and of mimicking neurobiological computation for an improved synergy between the technological and biological counterparts. In this manuscript, after providing definitions of key concepts, we reviewed the first exploitation of a real-time hardware neuromorphic prosthesis to restore the bidirectional communication between two neuronal populations in vitro. Starting from that 'case-study', we provide perspectives on the technological improvements for real-time interfacing and processing of neural signals and their potential usage for novel in vitro and in vivo experimental designs. The development of innovative neuroprosthetics for translational purposes is also presented and discussed. In our understanding, the pursuit of neuromorphic-based closed-loop neuroprostheses may spur the development of novel powerful technologies, such as 'brain-prostheses', capable of rewiring and/or substituting the injured nervous system.

摘要

神经假体是与神经系统有接口并为残疾人补充或替代功能的神经工程装置。在大众的想象中,神经假体大多用于恢复感觉或运动能力,但近年来,已有人提出直接作用于大脑层面的新装置。为了设计用于脑修复的下一代神经假体装置,我们预见到,由于其固有的能源效率、执行实时数据处理的能力以及模仿神经生物学计算以改善技术与生物对应物之间协同作用的能力,具有神经形态元件的闭环系统将得到越来越多的应用。在本手稿中,在给出关键概念的定义之后,我们回顾了首次利用实时硬件神经形态假体在体外恢复两个神经元群体之间双向通信的情况。从那个“案例研究”出发,我们阐述了神经信号实时接口和处理方面的技术改进观点,以及它们在新型体外和体内实验设计中的潜在用途。我们还介绍并讨论了用于转化目的的创新神经假体的开发。我们认为,追求基于神经形态的闭环神经假体可能会推动诸如“脑假体”等新型强大技术的发展,这些技术能够重新连接和/或替代受损的神经系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4234/9688667/0363401f27be/brainsci-12-01578-g008.jpg

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