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首页> 外文期刊>ACM transactions on applied perception >Vibrotactile Threshold Measurements at the Wrist Using Parallel Vibration Actuators
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Vibrotactile Threshold Measurements at the Wrist Using Parallel Vibration Actuators

机译:使用平行振动执行器在手腕处进行振动触觉阈值测量

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This article presents an investigation into the perceptual vibrotactile thresholds for a range of frequencies on both the inside and outside areas of the wrist when exciting the skin with parallel vibrations, realized using the L5 actuator made by Lofelt GmbH. The vibrotactile threshold of 30 participants was measured using a modified audiometry test for the frequency range of 25-1,000 Hz. The average threshold across the respective frequencies was then ultimately determined from acceleration minima. The results show that maximum sensitivity lies in the range of 100-275 Hz (peaking at 200 Hz) for the inside and 75-250 Hz (peaking at 125 Hz) for the outside of the wrist and that thresholds are overall higher for the hairy skin on the outside of the wrist than for the glabrous skin on the inside. The results also show that the vibrotactile thresholds varied highly between individuals. Hence, personalized threshold measurements at the actuator locations will be required to fine-tune a device for the user. This study is a part of an ongoing research and development project where the aim is to develop a tactile display device and a music encoding scheme with the purpose of augmenting the musical enjoyment of cochlear implant recipients. These results, along with results from planned follow-up experiments, will be used to determine the appropriate frequency range and to cast light on the dynamic range on offer for the tactile device.
机译:本文研究了使用 Lofelt GmbH 制造的 L5 执行器实现的手腕内侧和外侧区域在平行振动刺激皮肤时手腕内侧和外侧区域一系列频率的感知振动触觉阈值。使用 25-1,000 Hz 频率范围的改良听力测试测量 30 名参与者的振动触觉阈值。然后,最终根据加速度最小值确定各个频率的平均阈值。结果表明,手腕内侧的最大灵敏度在100-275 Hz(峰值为200 Hz)和手腕外侧的75-250 Hz(峰值为125 Hz)范围内,并且手腕外侧毛茸茸的皮肤的阈值总体上高于内部的无毛皮肤。结果还表明,个体之间的振动触觉阈值差异很大。因此,需要在执行器位置进行个性化的阈值测量,以便为用户微调设备。这项研究是一个正在进行的研究和开发项目的一部分,该项目的目的是开发一种触觉显示设备和一种音乐编码方案,目的是增强人工耳蜗接受者的音乐享受。这些结果以及计划中的后续实验结果将用于确定适当的频率范围,并揭示触觉设备提供的动态范围。

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