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瞳孔扩张反应作为仓鸮听觉辨别能力的一个指标。

Pupillary dilation response as an indicator of auditory discrimination in the barn owl.

作者信息

Bala A D, Takahashi T T

机构信息

Institute of Neuroscience, University of Oregon, Eugene 97403, USA.

出版信息

J Comp Physiol A. 2000 May;186(5):425-34. doi: 10.1007/s003590050442.

Abstract

The pupil of an awake, untrained, head-restrained barn owl was found to dilate in response to sounds with a latency of about 25 ms. The magnitude of the dilation scaled with signal-to-noise ratio. The dilation response habituated when a sound was repeated, but recovered when stimulus frequency or location was changed. The magnitude of the recovered response was related to the degree to which habituating and novel stimuli differed and was therefore exploited to measure frequency and spatial discrimination. Frequency discrimination was examined by habituating the response to a reference tone at 3 kHz or 6 kHz and determining the minimum change in frequency required to induce recovery. We observed frequency discrimination of 125 Hz at 3 kHz and 250 Hz at 6 kHz--values comparable to those reported by others using an operant task. Spatial discrimination was assessed by habituating the response to a stimulus from one location and determining the minimum horizontal speaker separation required for recovery. This yielded the first measure of the minimum audible angle in the barn owl: 3 degrees for broadband noise and 4.5 degrees for narrowband noise. The acoustically evoked pupillary dilation is thus a promising indicator of auditory discrimination requiring neither training nor aversive stimuli.

摘要

研究发现,处于清醒状态、未经训练且头部受约束的仓鸮的瞳孔,会对声音做出反应而扩张,延迟约为25毫秒。扩张的幅度与信噪比成正比。当声音重复时,扩张反应会逐渐减弱,但当刺激频率或位置改变时,反应会恢复。恢复反应的幅度与习惯化刺激和新刺激的差异程度有关,因此可用于测量频率和空间辨别能力。通过使对3千赫或6千赫参考音调的反应习惯化,并确定诱导反应恢复所需的最小频率变化,来检验频率辨别能力。我们观察到,在3千赫时频率辨别能力为125赫兹,在6千赫时为250赫兹——这些值与其他人使用操作性任务报告的值相当。通过使对来自一个位置的刺激的反应习惯化,并确定恢复所需的扬声器最小水平间距,来评估空间辨别能力。这得出了仓鸮最小可听角度的首个测量值:宽带噪声为3度,窄带噪声为4.5度。因此,听觉诱发的瞳孔扩张是一种很有前景的听觉辨别指标,既不需要训练也不需要厌恶刺激。

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