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Integration of auditory and vibrotactile stimuli: Effects of phase and stimulus-onset asynchrony

机译:听觉和触觉刺激的整合:阶段和刺激发作异步的影响。

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摘要

The perceptual integration of 250 Hz, 500 ms vibrotactile and auditory tones was studied in detection experiments as a function of (1) relative phase and (2) temporal asynchrony of the tone pulses. Vibrotactile stimuli were delivered through a single-channel vibrator to the left middle fingertip and auditory stimuli were presented diotically through headphones in a background of 50 dB sound pressure level broadband noise. The vibrotactile and auditory stimulus levels used each yielded 63%–77%-correct unimodal detection performance in a 2-I, 2-AFC task. Results for combined vibrotactile and auditory detection indicated that (1) performance improved for synchronous presentation, (2) performance was not affected by the relative phase of the auditory and tactile sinusoidal stimuli, and (3) performance for non-overlapping stimuli improved only if the tactile stimulus preceded the auditory. The results are generally more consistent with a “Pythagorean Sum” model than with either an “Algebraic Sum” or an “Optimal Single-Channel” Model of perceptual integration. Thus, certain combinations of auditory and tactile signals result in significant integrative effects. The lack of phase effect suggests an envelope rather than fine-structure operation for integration. The effects of asynchronous presentation of the auditory and tactile stimuli are consistent with time constants deduced from single-modality masking experiments.
机译:在检测实验中,研究了250 Hz,500 ms触觉和听觉音调在感知上的集成,该变化是(1)音调脉冲的相对相位和(2)时间异步的函数。通过单通道振动器将触觉刺激传递到左中指,并通过耳机在50 dB声压级宽带噪声的背景下以听觉方式呈现听觉刺激。在2-I,2-AFC任务中,所使用的触觉和听觉刺激水平各自产生63%–77%正确的单峰检测性能。振动触觉和听觉联合检测的结果表明:(1)同步呈现的性能得到改善;(2)听觉和触觉正弦波刺激的相对相位不受性能影响;(3)仅在以下情况下,非重叠刺激的性能得到改善:触觉刺激先于听觉。结果与“毕达哥拉斯总和”模型相比,与“代数总和”或“最优单通道”感知整合模型更为一致。因此,听觉和触觉信号的某些组合会导致明显的整合效应。缺乏相位效应表明要进行包络而不是精细结构的集成。听觉和触觉刺激的异步呈现的效果与从单模态掩蔽实验推导的时间常数一致。

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