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一种用于触觉增强和集成的皮肤启发式人工机械感受器。

A Skin-Inspired Artificial Mechanoreceptor for Tactile Enhancement and Integration.

机构信息

Key Laboratory of Wide Band Gap Semiconductor Technology, School of Advanced Materials and Nanotechnology, Xidian University, Xi'an 710071, China.

Key Laboratory of 3D Micro/Nano Fabrication and Characterization of Zhejiang Province, School of Engineering, Westlake University, Hangzhou 310024, China.

出版信息

ACS Nano. 2021 Oct 26;15(10):16422-16431. doi: 10.1021/acsnano.1c05836. Epub 2021 Oct 1.

Abstract

Mechanoreceptors endow humans with the sense of touch by translating the external stimuli into coded spikes, inspiring the rise of artificial mechanoreceptor systems. However, to incorporate slow adaptive receptors-like pressure sensors with artificial neurons remains a challenge. Here we demonstrate an artificial mechanoreceptor by rationally integrating a polypyrrole-based resistive pressure sensor with a volatile NbO memristor, to mimic the tactile sensation and perception in natural skin, respectively. The artificial mechanoreceptor enables the tactile sensory coding by converting the external mechanical stimuli into strength-modulated electrical spikes. Also, tactile sensation enhancement is achieved by processing the spike frequency characteristics with the pulse coupled neural network. Furthermore, the artificial mechanoreceptor can integrate signals from parallel sensor channels and encode them into unified electrical spikes, resembling the coding of intensity in tactile neural processing. These results provide simple and efficient strategies for constructing future bio-inspired electronic systems.

摘要

机械感受器通过将外部刺激转化为编码的尖峰,赋予人类触觉,这激发了人工机械感受器系统的兴起。然而,将类似于压力传感器的慢适应受体与人工神经元结合仍然是一个挑战。在这里,我们通过合理地将基于聚吡咯的电阻式压力传感器与挥发性 NbO 忆阻器集成,分别模拟自然皮肤中的触觉感知和感知,展示了一种人工机械感受器。人工机械感受器通过将外部机械刺激转换为强度调制的电尖峰来实现触觉传感编码。此外,通过使用脉冲耦合神经网络处理尖峰频率特性,可以实现触觉感知增强。此外,人工机械感受器可以整合来自并行传感器通道的信号,并将它们编码为统一的电尖峰,类似于触觉神经处理中的强度编码。这些结果为构建未来的仿生电子系统提供了简单有效的策略。

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