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新型电极设计用于手指电触觉刺激:比较评估。

Novel Electrode Designs for Electrotactile Stimulation of the Finger: A Comparative Assessment.

出版信息

IEEE Trans Haptics. 2023 Oct-Dec;16(4):748-759. doi: 10.1109/TOH.2023.3321925. Epub 2023 Dec 21.

DOI:10.1109/TOH.2023.3321925
PMID:37801385
Abstract

Electrotactile stimulation can be an attractive technology to restore tactile feedback in different application scenarios (e.g., virtual and augmented reality, tele-manipulation). This technology allows designing compact solutions with no mechanical elements that can integrate a high-density matrix of stimulation points. The present study introduced four novel multi-pad finger-electrode designs with different arrangements (two matrix and two circular) and shapes of active pads (producing sensation) and reference pads (ideally, no sensation produced below the pad). The electrodes were used to investigate the subjects' ability to spatially discriminate active pads within phalanges individually (6-9 pads) as well as across the full finger (18-19 pads). The tests were conducted in 12 subjects and the results showed that all designs led to high success rates when applied to the fingertip (70-81%). When tested on the full finger, the matrix and circular designs were characterized with similar performance (54-57%), and when the phalanges were analyzed individually, the spatial discrimination was best at the fingertip. Additionally, new approaches for faster amplitude calibration were proposed and tested, demonstrating that calibration duration can be reduced by approximately 40% compared to the standard approach of calibrating single pads individually. Finally, discrimination tests of dynamic tactile patterns were conducted using circular and matrix designs on the fingertip and full finger, respectively. The tests showed that the different patterns generated by the two arrangements could be clearly discriminated, especially in the case of full-finger matrix-style patterns. The present study, therefore, provides several important insights that are relevant when delivering tactile feedback to the finger using an electrotactile interface.

摘要

电触觉刺激是一种很有吸引力的技术,可以在不同的应用场景中(例如虚拟现实和增强现实、远程操作)恢复触觉反馈。该技术允许设计无机械元件的紧凑型解决方案,其中可以集成高密度的刺激点矩阵。本研究介绍了四种新型多垫指电极设计,它们具有不同的排列(矩阵和圆形两种)和主动垫(产生感觉)和参考垫(理想情况下,垫下无感觉)的形状。这些电极用于研究受试者在单独的指节内(6-9 个垫)以及整个手指(18-19 个垫)空间区分主动垫的能力。测试在 12 名受试者中进行,结果表明,当应用于指尖时,所有设计的成功率都很高(70-81%)。当在整个手指上测试时,矩阵和圆形设计的性能相似(54-57%),并且当单独分析指节时,指尖的空间分辨力最好。此外,还提出并测试了新的更快的幅度校准方法,证明与逐个校准单个垫的标准方法相比,校准持续时间可以缩短约 40%。最后,分别在指尖和整个手指上使用圆形和矩阵设计进行了动态触觉模式的分辨测试。测试表明,两种排列产生的不同模式可以清楚地区分,特别是在整个手指的矩阵式模式的情况下。因此,本研究提供了一些在使用电触觉界面向手指提供触觉反馈时相关的重要见解。

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引用本文的文献

1
Encoding contact size using static and dynamic electrotactile finger stimulation: natural decoding vs. trained cues.使用静态和动态电触觉手指刺激对接触大小进行编码:自然解码与训练线索。
Exp Brain Res. 2024 May;242(5):1047-1060. doi: 10.1007/s00221-024-06794-y. Epub 2024 Mar 12.