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Perceived pitch of vibrotactile stimuli: effects of vibration amplitude and implications for vibration frequency coding.

机译:触觉刺激的音高:振动幅度的影响以及对振动频率编码的影响。

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摘要

1. The effect of changes in amplitude on the perceived pitch of cutaneous vibratory stimuli was studied in psychophysical experiments designed to test whether the coding of information about the frequency of the vibration might be based on the ratio of recruitment of the PC (Pacinian corpuscle-associated) and RA (rapidly adapting) classes of tactile sensory fibres. The study was based on previous data which show that at certain vibration frequencies (e.g. 150 Hz) the ratio of recruitment of the PC and RA classes should vary as a function of vibration amplitude. 2. Sinusoidal vibration at either 30 Hz or 150 Hz, and at an amplitude 10 dB above subjective detection thresholds was delivered in a 1 s train to the distal phalangeal pad of the index finger in eight human subjects. This standard vibration was followed after 0.5 s by a 1 s comparison train of vibration which (unknown to the subject) was at the same frequency as the standard but at a range of amplitudes from 2 to 50 dB above the detection threshold. A two-alternative forced-choice procedure was used in which the subject had to indicate whether the comparison stimulus was higher or lower in pitch (frequency) than the standard. 3. Marked differences were seen from subject to subject in the effect of amplitude on perceived pitch at both 30 Hz and 150 Hz. At 150 Hz, five out of the eight subjects reported an increase in pitch as the amplitude of the comparison vibration increased, one experienced no change, and only two experienced the fall in perceived pitch that is predicted if the proposed ratio code contributes to vibrotactile pitch judgements. At 30 Hz similar intersubject variability was seen in the pitch-amplitude functions. 4. The results do not support the hypothesis that a ratio code contributes to vibrotactile pitch perception. We conclude that temporal patterning of impulse activity remains the major candidate code for pitch perception, at least over a substantial part of the vibrotactile frequency bandwidth.
机译:1.在心理物理实验中研究了振幅变化对感觉到的皮肤振动刺激音调的影响,该实验旨在测试有关振动频率信息的编码是否可能基于PC(Pacinian corpuscle-pelus)的募集比例。相关的)和RA(快速适应)类的触觉感觉纤维。该研究基于先前的数据,这些数据表明在某些振动频率(例如150 Hz)下,PC和RA类的重新招募比例应随振动幅度而变化。 2.在八位人类受试者中,以1 s的速度将30 Hz或150 Hz的正弦振动以高于主观检测阈值10 dB的振幅传递给食指的远端指骨垫。该标准振动在0.5 s后跟随一个1 s的比较振动序列(对象不知道),该振动频率与标准频率相同,但振幅范围比检测阈值高2至50 dB。使用了两种选择的强制选择程序,其中受试者必须指出比较刺激的音调(频率)是高于还是低于标准。 3.在30 Hz和150 Hz时,振幅对感知音高的影响在受试者之间观察到明显差异。在150 Hz时,八名受试者中有五名报告说,随着比较振动幅度的增加,音调有所增加,一名受试者没有变化,只有两名受试者感觉到音调下降,如果提议的比率代码有助于触觉音调,则可以预测到判断。在30 Hz时,在音调振幅函数中观察到相似的受试者间差异。 4.结果不支持比率码有助于震动触觉感知的假设。我们得出结论,脉冲活动的时间模式至少在整个触觉频率带宽上仍是音调感知的主要候选代码。

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