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手部和腕部对振动触觉刺激的敏感性:运动、时间模式和生物性别的影响。

Sensitivity to Vibrotactile Stimulation in the Hand and Wrist: Effects of Motion, Temporal Patterns, and Biological Sex.

作者信息

Tajdari Mahdis, Forsyth Jason, Lim Sol

机构信息

Virginia Tech, USA.

James Madison University, USA.

出版信息

Hum Factors. 2025 Apr;67(4):331-346. doi: 10.1177/00187208241275734. Epub 2024 Aug 23.

DOI:10.1177/00187208241275734
PMID:39178351
Abstract

OBJECTIVE

We investigated the impact of low-tempo, repetitive hand movements on vibrotactile sensitivity by employing various temporal and spatial patterns in the hand and wrist area.

BACKGROUND

The investigation of a human's ability to perceive vibrotactile stimuli during dynamic hand movements remains understudied, despite the prevalence of slow to mild hand motions in applications such as hand navigation or gesture control using haptic gloves in Virtual Reality (VR) and Augmented Reality (AR).

METHOD

We investigated vibrotactile sensitivity, analyzing the impact of various factors, including (static and low-tempo repetitive hand movements), (Single or Double vibrations with varying onset times), (hand and wrist), and .

RESULTS

Our study revealed that significantly influences vibrotactile sensitivity in the hand and wrist areas, leading to reduced accuracy rates during dynamic conditions. Additionally, as the stimulus onset approached in Double vibrations, accuracy rates markedly decreased. Notably, Hand resulted in significantly higher accuracy rates compared to the Wrist .

CONCLUSION

Our findings underscore the impact of motion in reducing vibrotactile sensitivity on the back of the hand and around the wrist.

APPLICATION

This research has wide-ranging practical applications, particularly in the field of VR/AR experiences, rehabilitation programs, and accessibility solutions through the use of haptic gloves. Insights from our study can be harnessed to enhance the efficacy of haptic gloves in conveying vibrotactile cues within these contexts.

摘要

目的

我们通过在手部和腕部区域采用各种时间和空间模式,研究了低节奏、重复性手部动作对振动触觉敏感性的影响。

背景

尽管在虚拟现实(VR)和增强现实(AR)中使用触觉手套进行手部导航或手势控制等应用中,缓慢至轻微的手部动作很常见,但对人类在动态手部动作期间感知振动触觉刺激能力的研究仍不足。

方法

我们研究了振动触觉敏感性,分析了各种因素的影响,包括(静态和低节奏重复性手部动作)、(具有不同起始时间的单次或双次振动)、(手部和腕部)以及。

结果

我们的研究表明,显著影响手部和腕部区域的振动触觉敏感性,导致动态条件下的准确率降低。此外,在双次振动中,随着刺激起始时间的临近,准确率显著下降。值得注意的是,与腕部相比,手部的准确率显著更高。

结论

我们的研究结果强调了运动对降低手背和手腕周围振动触觉敏感性的影响。

应用

这项研究具有广泛的实际应用,特别是在VR/AR体验、康复计划以及通过使用触觉手套实现无障碍解决方案等领域。我们研究的见解可用于提高触觉手套在这些背景下传递振动触觉线索的功效。

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Hum Factors. 2025 Apr;67(4):331-346. doi: 10.1177/00187208241275734. Epub 2024 Aug 23.
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