Conformal Neuromorphic Bioelectronics for Sense Digitalization

神经形态工程学 生物电子学 人机交互 计算机科学 纳米技术 人工智能 工程类 材料科学 人工神经网络 生物传感器
作者
Xiao Zhao,Haochen Zou,Ming Wang,Jianwu Wang,Ting Wang,Lianhui Wang,Xiaodong Chen
出处
期刊:Advanced Materials [Wiley]
卷期号:36 (35): e2403444-e2403444 被引量:43
标识
DOI:10.1002/adma.202403444
摘要

Abstract Sense digitalization, the process of transforming sensory experiences into digital data, is an emerging research frontier that links the physical world with human perception and interaction. Inspired by the adaptability, fault tolerance, robustness, and energy efficiency of biological senses, this field drives the development of numerous innovative digitalization techniques. Neuromorphic bioelectronics, characterized by biomimetic adaptability, stand out for their seamless bidirectional interactions with biological entities through stimulus‐response and feedback loops, incorporating bio‐neuromorphic intelligence for information exchange. This review illustrates recent progress in sensory digitalization, encompassing not only the digital representation of physical sensations such as touch, light, and temperature, correlating to tactile, visual, and thermal perceptions, but also the detection of biochemical stimuli such as gases, ions, and neurotransmitters, mirroring olfactory, gustatory, and neural processes. It thoroughly examines the material design, device manufacturing, and system integration, offering detailed insights. However, the field faces significant challenges, including the development of new device/system paradigms, forging genuine connections with biological systems, ensuring compatibility with the semiconductor industry and overcoming the absence of standardization. Future ambition includes realization of biocompatible neural prosthetics, exoskeletons, soft humanoid robots, and cybernetic devices that integrate smoothly with both biological tissues and artificial components.
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