Spitzer Matthew W, Takahashi Terry T
Institute of Neuroscience, University of Oregon, Eugene, USA.
J Neurophysiol. 2006 Jun;95(6):3571-84. doi: 10.1152/jn.00982.2005.
We examined the accuracy and precision with which the barn owl (Tyto alba) turns its head toward sound sources under conditions that evoke the precedence effect (PE) in humans. Stimuli consisted of 25-ms noise bursts emitted from two sources, separated horizontally by 40 degrees, and temporally by 3-50 ms. At delays from 3 to 10 ms, head turns were always directed at the leading source, and were nearly as accurate and precise as turns toward single sources, indicating that the leading source dominates perception. This lead dominance is particularly remarkable, first, because on some trials, the lagging source was significantly higher in amplitude than the lead, arising from the directionality of the owl's ears, and second, because the temporal overlap of the two sounds can degrade the binaural cues with which the owl localizes sounds. With increasing delays, the influence of the lagging source became apparent as the head saccades became increasingly biased toward the lagging source. Furthermore, on some of the trials at delays > or = 20 ms, the owl turned its head, first, in the direction of one source, and then the other, suggesting that it was able to resolve two separately localizable sources. At all delays <50 ms, response latencies were longer for paired sources than for single sources. With the possible exception of response latency, these findings demonstrate that the owl exhibits precedence phenomena in sound localization similar to those in humans and cats, and provide a basis for comparison with neurophysiological data.
我们研究了仓鸮(Tyto alba)在能诱发人类优先效应(PE)的条件下,将头部转向声源的准确性和精确性。刺激由两个声源发出的25毫秒噪声脉冲组成,水平方向相隔40度,时间上相隔3至50毫秒。在3至10毫秒的延迟下,头部转动总是指向领先声源,并且几乎与转向单个声源时一样准确和精确,这表明领先声源主导了感知。这种领先声源的主导作用尤为显著,首先,因为在一些试验中,由于仓鸮耳朵的方向性,滞后声源的振幅明显高于领先声源;其次,因为两种声音的时间重叠会削弱仓鸮用于定位声音的双耳线索。随着延迟增加,滞后声源的影响变得明显,因为头部扫视越来越偏向滞后声源。此外,在一些延迟≥20毫秒的试验中,仓鸮首先将头转向一个声源的方向,然后再转向另一个声源,这表明它能够分辨出两个可单独定位的声源。在所有小于50毫秒的延迟下,配对声源的反应潜伏期比单个声源更长。除了反应潜伏期可能存在的差异外,这些发现表明仓鸮在声音定位中表现出与人类和猫类似的优先现象,并为与神经生理学数据进行比较提供了基础。