Toward a Brain-Neuromorphics Interface

Changjin Wan,Mengjiao Pei, Kailu Shi,Hangyuan Cui,Haotian Long, Lesheng Qiao, Qianye Xing,Qing Wan

ADVANCED MATERIALS(2024)

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摘要
Brain-computer interfaces (BCIs) that enable human-machine interaction have immense potential in restoring or augmenting human capabilities. Traditional BCIs are realized based on complementary metal-oxide-semiconductor (CMOS) technologies with complex, bulky, and low biocompatible circuits, and suffer with the low energy efficiency of the von Neumann architecture. The brain-neuromorphics interface (BNI) would offer a promising solution to advance the BCI technologies and shape the interactions with machineries. Neuromorphic devices and systems are able to provide substantial computation power with extremely high energy-efficiency by implementing in-materia computing such as in situ vector-matrix multiplication (VMM) and physical reservoir computing. Recent progresses on integrating neuromorphic components with sensing and/or actuating modules, give birth to the neuromorphic afferent nerve, efferent nerve, sensorimotor loop, and so on, which has advanced the technologies for future neurorobotics by achieving sophisticated sensorimotor capabilities as the biological system. With the development on the compact artificial spiking neuron and bioelectronic interfaces, the seamless communication between a BNI and a bioentity is reasonably expectable. In this review, the upcoming BNIs are profiled by introducing the brief history of neuromorphics, reviewing the recent progresses on related areas, and discussing the future advances and challenges that lie ahead. A brain-neuromorphics interface (BNI) is of profound implications for restoring or augmenting human's capabilities. This review profiles the recent progresses on neuromorphic electronics with both energy-efficiency and bio-fidelity characteristics toward such interface. Challenges and prospects are also summarized, which can provide guidance for promoting the development of the seamless, bidirectional, and compact tools for bridging humans and machines. image
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关键词
artificial sensory neuron,artificial spiking neuron,brain-computer interfaces,neuromorphic computing,neuromorphic engineering
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