Suppr超能文献

听觉-触觉一致性对振动触觉音乐增强的影响。

Effect of audio-tactile congruence on vibrotactile music enhancement.

作者信息

Aker Scott C, Innes-Brown Hamish, Faulkner Kathleen F, Vatti Marianna, Marozeau Jeremy

机构信息

Music and Cochlear Implant Lab, Department of Health Technology, Technical University of Denmark, Kongens Lyngby, 2800, Denmark.

Eriksholm Research Centre, Snekkersten, 3070, Denmark.

出版信息

J Acoust Soc Am. 2022 Dec;152(6):3396. doi: 10.1121/10.0016444.

Abstract

Music listening experiences can be enhanced with tactile vibrations. However, it is not known which parameters of the tactile vibration must be congruent with the music to enhance it. Devices that aim to enhance music with tactile vibrations often require coding an acoustic signal into a congruent vibrotactile signal. Therefore, understanding which of these audio-tactile congruences are important is crucial. Participants were presented with a simple sine wave melody through supra-aural headphones and a haptic actuator held between the thumb and forefinger. Incongruent versions of the stimuli were made by randomizing physical parameters of the tactile stimulus independently of the auditory stimulus. Participants were instructed to rate the stimuli against the incongruent stimuli based on preference. It was found making the intensity of the tactile stimulus incongruent with the intensity of the auditory stimulus, as well as misaligning the two modalities in time, had the biggest negative effect on ratings for the melody used. Future vibrotactile music enhancement devices can use time alignment and intensity congruence as a baseline coding strategy, which improved strategies can be tested against.

摘要

音乐聆听体验可以通过触觉振动得到增强。然而,尚不清楚触觉振动的哪些参数必须与音乐一致才能起到增强作用。旨在通过触觉振动增强音乐的设备通常需要将声学信号编码为一致的振动触觉信号。因此,了解这些听觉 - 触觉一致性中哪些是重要的至关重要。通过耳罩式耳机向参与者呈现一个简单的正弦波旋律,并让他们将一个触觉致动器夹在拇指和食指之间。通过独立于听觉刺激随机化触觉刺激的物理参数来制作刺激的不一致版本。参与者被指示根据偏好对刺激与不一致刺激进行评分。结果发现,使触觉刺激的强度与听觉刺激的强度不一致,以及使两种模态在时间上不对齐,对所使用旋律的评分产生的负面影响最大。未来的振动触觉音乐增强设备可以将时间对齐和强度一致性作为基线编码策略,以此来测试改进的策略。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验