Division of Solid-State Electronics, Department of Electrical Engineering, Uppsala University, Uppsala 75121, Sweden.
Division of Signals and Systems, Department of Electrical Engineering, Uppsala University, Uppsala 75121, Sweden.
Science. 2024 May 10;384(6696):660-665. doi: 10.1126/science.adf3708. Epub 2024 May 9.
Rapid processing of tactile information is essential to human haptic exploration and dexterous object manipulation. Conventional electronic skins generate frames of tactile signals upon interaction with objects. Unfortunately, they are generally ill-suited for efficient coding of temporal information and rapid feature extraction. In this work, we report a neuromorphic tactile system that uses spike timing, especially the first-spike timing, to code dynamic tactile information about touch and grasp. This strategy enables the system to seamlessly code highly dynamic information with millisecond temporal resolution on par with the biological nervous system, yielding dynamic extraction of tactile features. Upon interaction with objects, the system rapidly classifies them in the initial phase of touch and grasp, thus paving the way to fast tactile feedback desired for neuro-robotics and neuro-prosthetics.
触觉信息的快速处理对于人类触觉探索和灵巧的物体操作至关重要。传统的电子皮肤在与物体相互作用时生成触觉信号的帧。然而,它们通常不适合于对时间信息和快速特征提取进行有效的编码。在这项工作中,我们报告了一种神经形态的触觉系统,该系统使用尖峰时间,特别是第一尖峰时间,对触摸和抓握的动态触觉信息进行编码。这种策略使系统能够以毫秒级的时间分辨率与生物神经系统相媲美,无缝地对高度动态的信息进行编码,从而实现对触觉特征的动态提取。与物体相互作用时,该系统在触摸和抓握的初始阶段迅速对其进行分类,从而为神经机器人学和神经假肢学所需的快速触觉反馈铺平了道路。