机械反应
电子皮肤
剪切力
曲率
机械感受器
人体皮肤
材料科学
法向力
剪切模量
模数
计算机科学
纳米技术
生物
物理
复合材料
神经科学
化学
机械
感觉系统
数学
遗传学
几何学
受体
生物化学
离子通道
作者
Zhi Yong Liu,Xiaonan Hu,Renheng Bo,Youzhou Yang,Xu Cheng,Wenbo Pang,Q. Liu,Yuejiao Wang,Shuheng Wang,Shiwei Xu,Zhangming Shen,Yihui Zhang
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2024-05-30
卷期号:384 (6699): 987-994
被引量:17
标识
DOI:10.1126/science.adk5556
摘要
Human skin sensing of mechanical stimuli originates from transduction of mechanoreceptors that converts external forces into electrical signals. Although imitating the spatial distribution of those mechanoreceptors can enable developments of electronic skins capable of decoupled sensing of normal/shear forces and strains, it remains elusive. We report a three-dimensionally (3D) architected electronic skin (denoted as 3DAE-Skin) with force and strain sensing components arranged in a 3D layout that mimics that of Merkel cells and Ruffini endings in human skin. This 3DAE-Skin shows excellent decoupled sensing performances of normal force, shear force, and strain and enables development of a tactile system for simultaneous modulus/curvature measurements of an object through touch. Demonstrations include rapid modulus measurements of fruits, bread, and cake with various shapes and degrees of freshness.
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