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仓鸮中回声阈值与回声延迟的独立性。

Independence of echo-threshold and echo-delay in the barn owl.

作者信息

Nelson Brian S, Takahashi Terry T

机构信息

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

出版信息

PLoS One. 2008;3(10):e3598. doi: 10.1371/journal.pone.0003598. Epub 2008 Oct 31.

Abstract

Despite their prevalence in nature, echoes are not perceived as events separate from the sounds arriving directly from an active source, until the echo's delay is long. We measured the head-saccades of barn owls and the responses of neurons in their auditory space-maps while presenting a long duration noise-burst and a simulated echo. Under this paradigm, there were two possible stimulus segments that could potentially signal the location of the echo. One was at the onset of the echo; the other, after the offset of the direct (leading) sound, when only the echo was present. By lengthening the echo's duration, independently of its delay, spikes and saccades were evoked by the source of the echo even at delays that normally evoked saccades to only the direct source. An echo's location thus appears to be signaled by the neural response evoked after the offset of the direct sound.

摘要

尽管回声在自然界中普遍存在,但在回声延迟较长之前,它们不会被视为与直接来自声源的声音分开的事件。我们在呈现长时间的噪声脉冲和模拟回声时,测量了仓鸮的头部扫视以及它们听觉空间图谱中神经元的反应。在这种范式下,有两个可能的刺激片段可能会指示回声的位置。一个是在回声开始时;另一个是在直接(先导)声音消失后,此时只有回声存在。通过延长回声的持续时间,而不考虑其延迟,即使在通常只会引起对直接声源的扫视的延迟情况下,回声源也会诱发尖峰和扫视。因此,回声的位置似乎是由直接声音消失后诱发的神经反应所指示的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0bf3/2571984/71673715e015/pone.0003598.g001.jpg

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