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金鱼的时间辨别能力

Temporal discrimination in the goldfish.

作者信息

Fay R R, Passow B

出版信息

J Acoust Soc Am. 1982 Sep;72(3):753-60. doi: 10.1121/1.388255.

Abstract

The capacities of the goldfish to detect changes in sound burst repetition rate were studied using classical respiratory conditioning. In experiment I, the just detectable amount of an instantaneous random jitter of burst period was measured as a function of mean period. In experiment II, the just detectable amount of slow sinusoidal jitter of burst period was measured for three burst types having different spectral and waveform characteristics. In experiment III, sinusoidal jitter detection thresholds were measured in the presence of varying degrees of random jitter. The data show that (1) rms sinusoidal and random jitter in a periodic train of bursts are approximately equally detectable. (2) Sinusoidal jitter detection depends upon burst period duration and the short-term envelope definition and not upon frequency-domain information. (3) For a given burst period, stimulus jitter and an internal temporal noise appear to add independently to determine period discriminability. (4) Psychophysical estimates of internal temporal noise are 0.160 and 0.710 msec at periods of 5 and 10 msec, respectively. The data are consistent with the hypothesis that the burst period discrimination task is based upon a measurement of the time interval (duration) between spikes in auditory neurons.

摘要

利用经典呼吸条件反射研究了金鱼检测声音脉冲重复率变化的能力。在实验I中,测量了作为平均周期函数的脉冲周期瞬时随机抖动的刚可察觉量。在实验II中,针对具有不同频谱和波形特征的三种脉冲类型,测量了脉冲周期缓慢正弦抖动的刚可察觉量。在实验III中,在存在不同程度随机抖动的情况下测量了正弦抖动检测阈值。数据表明:(1)周期性脉冲序列中的均方根正弦和随机抖动的可检测性大致相同。(2)正弦抖动检测取决于脉冲周期持续时间和短期包络定义,而不取决于频域信息。(3)对于给定的脉冲周期,刺激抖动和内部时间噪声似乎独立相加来确定周期辨别能力。(4)在5毫秒和10毫秒的周期下,内部时间噪声的心理物理学估计分别为0.160毫秒和0.710毫秒。这些数据与脉冲周期辨别任务基于对听觉神经元中尖峰之间时间间隔(持续时间)的测量这一假设一致。

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