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Cross-Modal Frequency Matching: Sound and Whole-Body Vibration

机译:跨模型频率匹配:声音和全身振动

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Interest in human responses to whole-body vibration has grown, particularly due to the increasing usage of vehicles, e.g. cars, trucks, and helicopters etc. Another reason for growing interest in recent years is the importance of the vibrations generated by the performance of music for multimedia reproduction systems. There is a strong relationship between the frequency of the auditory stimulus and the frequency of the tactile stimulus, which simply results from the physical processes that generate the stimuli. The recordings in different vehicles or in different concert situations show that the whole-body vibration signal is like a low-pass filtered audio signal. The spectral contents, particularly low frequencies, are matched with each other. This correlation plays an important role in our integration mechanism of auditory and tactile information and in the perception of an immersive multimodal event. In this study, psychophysical experiments were conducted to investigate, if subjects are able to match the frequencies of two different sensory modalities with each other. In this experiment, sinusoidal sound and vibration signals were used. The auditory stimuli were presented to the subjects via headphones and the tactile stimuli were presented through a vibration seat. The task of the subject was to match the frequency of the whole-body vibration to the frequency of the auditory stimuli. The results show that the subjects are able to match the frequency of both modalities with some tolerances.
机译:对全身振动的人体反应的兴趣已经生长,特别是由于车辆使用的增加,例如,由于增加的车辆。汽车,卡车和直升机等近年来兴趣的另一个原因是对多媒体再生系统的音乐表现产生的振动的重要性。听觉刺激频率与触觉刺激频率之间存在强有力的关系,其简单地由产生刺激的物理过程产生。不同车辆或不同的音乐会情况下的录制表明,整体振动信号就像低通滤波的音频信号。谱内容,特别是低频,彼此匹配。这种相关在我们对听觉和触觉信息的集成机制以及对沉浸式多模式事件的看法中起着重要作用。在这项研究中,如果受试者能够彼此匹配两种不同的感觉方式的频率,则进行心理物理实验。在该实验中,使用正弦声和振动信号。通过耳机向受试者呈现听觉刺激,通过振动座呈触觉刺激。主题的任务是将全身振动的频率与听觉刺激的频率相匹配。结果表明,受试者能够将两种方式的频率与一些公差相匹配。

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