IEEE Trans Haptics. 2022 Jan-Mar;15(1):74-78. doi: 10.1109/TOH.2022.3142442. Epub 2022 Mar 18.
Wearable haptic technologies have garnered recent widespread attention due to increased accessibility, functionality, and affordability. These systems typically provide haptic feedback to augment the human ability to interact with their environment. This study compares two haptic feedback modalities, vibrotactile and EMS, against visual feedback to elicit a motor response during active hand movement. Forty-five participants, divided into three groups, performed a task to touch their face and received one of three possible sensory feedback cues, namely visual, vibrotactile, and electrical muscle stimulation (EMS), to interrupt their movement and avoid touching their face. Two quantitative performance measures are used in the comparison, the response time (time elapsed from stimulation to motor response) and the error rate (percentage that the user fails to avoid touching their face). Results showed that vibrotactile and EMS feedback yielded significantly faster response time than visual feedback, while no significant differences between vibrotactile and EMS were observed. Furthermore, the error rate was significantly lower for EMS compared to visual feedback, whereas no significant differences were observed between vibrotactile and visual feedback. In conclusion, it seems that EMS feedback is preferable for applications where errors are not tolerable (critical medical applications), whereas vibrotactile is superior for non-critical applications due to its low cost and higher usability (more pleasant compared to EMS).
可穿戴触觉技术由于其更高的可用性、功能性和可负担性,最近受到了广泛关注。这些系统通常提供触觉反馈,以增强人类与环境交互的能力。本研究比较了两种触觉反馈模式,振动和电刺激,与视觉反馈在主动手部运动中引发运动反应。45 名参与者被分为三组,完成触摸脸部的任务,并接受三种可能的感官反馈提示之一,即视觉、振动和电肌肉刺激 (EMS),以中断他们的运动并避免触摸脸部。在比较中使用了两个定量性能指标,即响应时间(从刺激到运动反应的时间)和错误率(用户未能避免触摸脸部的百分比)。结果表明,振动和电刺激反馈的响应时间明显快于视觉反馈,而振动和电刺激之间没有观察到显著差异。此外,与视觉反馈相比,EMS 的错误率显著降低,而振动和视觉反馈之间没有观察到显著差异。总之,对于不能容忍错误的应用(关键医疗应用),EMS 反馈似乎更可取,而由于成本低、可用性更高(与 EMS 相比更舒适),振动反馈在非关键应用中更具优势。