计算机科学
可穿戴计算机
计算机视觉
触觉技术
虚拟现实
人工智能
触觉传感器
执行机构
人机交互
数字微镜装置
接口(物质)
可穿戴技术
显示设备
可扩展性
触觉显示器
心理物理学
计算机图形学(图像)
虚拟映像
忠诚
图像拼接
多点触控
光学头戴式显示器
微加工
触觉刺激
作者
Sylvia Tan,Michael A. Peskhin,Roberta L. Klatzky,J Edward Colgate,Sylvia Tan,Michael A. Peskhin,Roberta L. Klatzky,J Edward Colgate
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2025-11-19
卷期号:11 (47)
标识
DOI:10.1126/sciadv.adz5937
摘要
Despite advances in digitizing vision and hearing, touch still lacks an equivalent digital interface matching the fidelity of human perception. This gap limits the quality of digital tactile information and the realism of virtual experiences. Here, we introduce a step toward human-resolution haptics: a class of wearable tactile displays designed to match the spatial and temporal acuity of the human fingertip. Our device, VoxeLite, is a 0.1-millimeter-thick, 0.19-gram, skin-conformal array of individually addressable soft electroadhesive actuators (“nodes”). As users touch and move across surfaces, VoxeLite delivers high-resolution distributed forces via the nodes. Enabled by scalable microfabrication techniques, the display achieves actuator densities up to 110 nodes per square centimeter, produces stimuli up to 800 hertz, and remains transparent to real-world tactile input. We demonstrate its ability to render small-scale hapticons and virtual textures and transmit physical surfaces, validated through human psychophysics and biomimetic sensing. These findings position VoxeLite as a platform for human-resolution haptics in immersive interfaces, robotics, and digital touch communication.
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