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仓鸮进行耳间时间差侧向化的一个时间窗口。

A temporal window for lateralization of interaural time difference by barn owls.

作者信息

Wagner H

机构信息

California Institute of Technology, Division of Biology, Pasadena 91125.

出版信息

J Comp Physiol A. 1991 Sep;169(3):281-9. doi: 10.1007/BF00206992.

Abstract

Lateralization of interaural time difference by barn owls (Tyto alba) was studied in a dichotic masking experiment. Sound bursts consisted of two parts: binaurally time-shifted noise, termed the probe, was inserted between masking noise. The owls indicated that they detected and lateralized the time-shift in the probe by a head turn in the direction predicted from sign of the time-shift. The general characteristics of head turns in response to this stimulus was similar to the head turns elicited by free-field stimulation or to head turns in response to presentation of the probe alone. The owls could easily lateralize stimuli containing long probes. The number of correct turns decreased as probe duration decreased, demonstrating that the masking noise interfered with the owls' ability to lateralize the probe. The minimal probe duration that the animals could lateralize ("minimal duration") became shorter as burst duration decreased. Minimal duration ranged from 1 ms to 15 ms for the two subjects and burst durations from 10 to 100 ms. These findings suggested that owls possess a temporal window. A fitting procedure proposed by Moore et al. (1988) was used to determine the shape of the temporal window. The fitting procedure showed that the shape of the owls' binaural temporal window could be described by the same algorithms as the human monaural temporal window. Thus, the temporal window is composed of a short time constant that determines the central part of the window, and a longer time constant that determines the shape at the skirts of the window.

摘要

在一项双耳掩蔽实验中,对仓鸮(Tyto alba)的双耳时间差侧向化进行了研究。声音脉冲由两部分组成:双耳时间偏移的噪声(称为探测音)插入掩蔽噪声之间。仓鸮通过朝着根据时间偏移符号预测的方向转头,表明它们检测到了探测音中的时间偏移并进行了侧向化判断。对这种刺激做出反应的转头的一般特征,类似于自由场刺激引发的转头或仅对探测音呈现做出反应的转头。仓鸮能够轻松地对包含长探测音的刺激进行侧向化判断。随着探测音持续时间的缩短,正确转头的次数减少,这表明掩蔽噪声干扰了仓鸮对探测音进行侧向化判断的能力。随着脉冲持续时间的减少,动物能够进行侧向化判断的最小探测音持续时间(“最小持续时间”)变得更短。对于两个受试对象,最小持续时间范围为1毫秒至15毫秒,脉冲持续时间为10至100毫秒。这些发现表明仓鸮拥有一个时间窗口。使用了Moore等人(1988年)提出的拟合程序来确定时间窗口的形状。拟合程序表明,仓鸮双耳时间窗口的形状可以用与人类单耳时间窗口相同的算法来描述。因此,时间窗口由一个决定窗口中心部分的短时间常数和一个决定窗口边缘形状的较长时间常数组成。

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