Jun Jae-Hoon, Park Jong-Rak, Kim Sung-Phil, Min Bae Young, Park Jang-Yeon, Kim Hyung-Sik, Choi Seungmoon, Jung Sung Jun, Hwa Park Seung, Yeom Dong-Il, Jung Gu-In, Kim Ji-Sun, Chung Soon-Cheol
Department of Biomedical Engineering, BK21+ Research Institute of Biomedical Engineering, College of Biomedical &Health Science, Konkuk University, Chungju, Chungbuk 380-701, South Korea.
Department of Photonic Engineering, Chosun University, Gwangju 501-759, South Korea.
Sci Rep. 2015 Jun 5;5:11016. doi: 10.1038/srep11016.
Humans process a plethora of sensory information that is provided by various entities in the surrounding environment. Among the five major senses, technology for touch, haptics, is relatively young and has relatively limited applications largely due to its need for physical contact. In this article, we suggest a new way for non-contact haptic stimulation that uses laser, which has potential advantages such as mid-air stimulation, high spatial precision, and long working distance. We demonstrate such tactile stimulation can be enabled by laser-induced thermoelastic effects by means of physical and perceptual studies, as well as simulations. In the physical study, the mechanical effect of laser on a human skin sample is detected using low-power radiation in accordance with safety guidelines. Limited increases (< ~2.5 °C) in temperature at the surface of the skin, examined by both thermal camera and the Monte Carlo simulation, indicate that laser does not evoke heat-induced nociceptive sensation. In the human EEG study, brain responses to both mechanical and laser stimulation are consistent, along with subjective reports of the non-nociceptive sensation of laser stimuli.
人类处理周围环境中各种实体提供的大量感官信息。在五大主要感官中,触觉技术(触觉学)相对较新,并且由于其需要身体接触,应用相对有限。在本文中,我们提出了一种使用激光进行非接触式触觉刺激的新方法,这种方法具有诸如空中刺激、高空间精度和长工作距离等潜在优势。我们通过物理和感知研究以及模拟证明,这种触觉刺激可以由激光诱导的热弹性效应实现。在物理研究中,根据安全指南,使用低功率辐射检测激光对人体皮肤样本的机械效应。通过热成像相机和蒙特卡洛模拟检查发现,皮肤表面温度有限升高(<约2.5°C),这表明激光不会引起热诱导的痛觉。在人体脑电图研究中,大脑对机械刺激和激光刺激的反应是一致的,同时还有关于激光刺激非痛觉的主观报告。