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用于触觉感知和盲人感知的植入晶须仿生电子皮肤

Whisker-Implanted Biomimetic Electronic Skin for Tactile Sensing and Blind Perception.

作者信息

Zarei Mohammad, Jeong An Woo, Lee Seung Goo

机构信息

Department of Chemistry, University of Ulsan, Ulsan, 44610, South Korea.

出版信息

Adv Sci (Weinh). 2025 Jan;12(2):e2408162. doi: 10.1002/advs.202408162. Epub 2024 Nov 5.

Abstract

Rodent whiskers are a distinct class of tactile sensors that work in conjunction with the biological skin to discern airstreams and obstacles with remarkable sensitivity, facilitating navigation around proximate objects. In this study, a flexible artificial skin is developed comprising sensory active units, including electronic skin (e-skin) and an artificial whisker, inspired by the sensory capabilities of rodent skin and whiskers. As a novel strategy, unique congruent air pockets are introduced within the e-skin to enhance the sensitivity. Mechanical stimuli applied to the artificial whisker are efficiently transmitted to the active e-skin, which generates a sensitive tactile perception response. The developed artificial skin exhibits high sensitivity, a wide sensing range, high flexibility, superior stability, and tensile strength. The artificial whisker facilitates the sensitive detection of a broad range of applied mechanical forces. Therefore, the artificial skin can sense subtle and vigorous tactile stimuli including airstreams and field obstacles. The ability to sense, discriminate, and decipher the airstreams and obstacles imparts outstanding tactile sensing and blind perception characteristics to the artificial skin. This artificial skin is a promising platform for the development of sensitive e-skins suitable for a broad range of applications, such as human-machine interfaces, robotics, and wearable electronics.

摘要

啮齿动物的胡须是一类独特的触觉传感器,它们与生物皮肤协同工作,以极高的灵敏度辨别气流和障碍物,便于在附近物体周围导航。在本研究中,受啮齿动物皮肤和胡须的传感能力启发,开发了一种柔性人造皮肤,其包含传感活性单元,包括电子皮肤(e-皮肤)和人造胡须。作为一种新颖的策略,在e-皮肤内引入了独特的全等气穴以提高灵敏度。施加到人造胡须上的机械刺激被有效地传递到活性e-皮肤,从而产生灵敏的触觉感知响应。所开发的人造皮肤具有高灵敏度、宽传感范围、高柔韧性、卓越的稳定性和拉伸强度。人造胡须有助于对广泛施加的机械力进行灵敏检测。因此,人造皮肤能够感知包括气流和场障碍物在内的微妙和强烈的触觉刺激。感知、区分和解译气流和障碍物的能力赋予了人造皮肤出色的触觉传感和盲感知特性。这种人造皮肤是开发适用于广泛应用(如人机界面、机器人技术和可穿戴电子设备)的灵敏e-皮肤的一个有前途的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/17bc/11727259/13227a1a58fb/ADVS-12-2408162-g002.jpg

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