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用于在大面积身体部位实现高效能、可编程热感觉的皮肤集成系统。

Skin-integrated systems for power efficient, programmable thermal sensations across large body areas.

机构信息

Querrey-Simpson Institute for Bioelectronics, Northwestern University, Evanston, IL 60208.

Department of Mechanical Science and Engineering, University of Illinois Urbana-Champaign, Urbana, IL 61801.

出版信息

Proc Natl Acad Sci U S A. 2023 Feb 7;120(6):e2217828120. doi: 10.1073/pnas.2217828120. Epub 2023 Jan 30.

Abstract

Thermal sensations contribute to our ability to perceive and explore the physical world. Reproducing these sensations in a spatiotemporally programmable manner through wireless computer control could enhance virtual experiences beyond those supported by video, audio and, increasingly, haptic inputs. Flexible, lightweight and thin devices that deliver patterns of thermal stimulation across large areas of the skin at any location of the body are of great interest in this context. Applications range from those in gaming and remote socioemotional communications, to medical therapies and physical rehabilitation. Here, we present a set of ideas that form the foundations of a skin-integrated technology for power-efficient generation of thermal sensations across the skin, with real-time, closed-loop control. The systems exploit passive cooling mechanisms, actively switchable thermal barrier interfaces, thin resistive heaters and flexible electronics configured in a pixelated layout with wireless interfaces to portable devices, the internet and cloud data infrastructure. Systematic experimental studies and simulation results explore the essential mechanisms and guide the selection of optimized choices in design. Demonstration examples with human subjects feature active thermoregulation, virtual social interactions, and sensory expansion.

摘要

热感觉有助于我们感知和探索物理世界。通过无线计算机控制以时空可编程的方式再现这些感觉,可以增强虚拟体验,超越视频、音频以及越来越多的触觉输入的支持。在这种情况下,能够在身体任何部位的大面积皮肤上传导热刺激模式的灵活、轻便和超薄设备非常受关注。应用范围从游戏和远程社交情感通信到医疗治疗和身体康复。在这里,我们提出了一系列想法,这些想法构成了一种皮肤集成技术的基础,用于在皮肤表面高效地产生热感觉,并实现实时闭环控制。该系统利用被动冷却机制、可主动切换的热阻挡界面、薄电阻加热器以及以像素化布局配置的柔性电子设备,并具有无线接口,可与便携式设备、互联网和云数据基础设施连接。系统实验研究和模拟结果探讨了基本机制,并指导在设计中选择优化方案。人体示范实例具有主动体温调节、虚拟社交互动和感觉扩展功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f55/9963740/b3edea7bd752/pnas.2217828120fig01.jpg

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