Gai Yan, Ruhland Janet L, Yin Tom C T
Department of Neuroscience, University of Wisconsin-Madison, Medical Sciences Building, 251 SMI, 1300 University Avenue, Madison, WI, 53706, USA,
J Assoc Res Otolaryngol. 2014 Oct;15(5):789-800. doi: 10.1007/s10162-014-0469-5. Epub 2014 Jun 19.
Although localization of sound in elevation is believed to depend on spectral cues, it has been shown with human listeners that the temporal features of sound can also greatly affect localization performance. Of particular interest is a phenomenon known as the negative level effect, which describes the deterioration of localization ability in elevation with increasing sound level and is observed only with impulsive or short-duration sound. The present study uses the gaze positions of domestic cats as measures of perceived locations of sound targets varying in azimuth and elevation. The effects of sound level on localization in terms of accuracy, precision, and response latency were tested for sound with different temporal features, such as a click train, a single click, a continuous sound that had the same frequency spectrum of the click train, and speech segments. In agreement with previous human studies, negative level effects were only observed with click-like stimuli and only in elevation. In fact, localization of speech sounds in elevation benefited significantly when the sound level increased. Our findings indicate that the temporal continuity of a sound can affect the frequency analysis performed by the auditory system, and the variation in the frequency spectrum contained in speech sound does not interfere much with the spectral coding for its location in elevation.
虽然人们认为声音在高度上的定位取决于频谱线索,但对人类听众的研究表明,声音的时间特征也会极大地影响定位表现。特别值得关注的是一种被称为负水平效应的现象,它描述了随着声音强度增加,高度定位能力的下降,并且仅在脉冲声或短持续时间声音中观察到。本研究使用家猫的注视位置作为声音目标在方位角和高度上感知位置的度量。针对具有不同时间特征的声音,如点击序列、单次点击、具有与点击序列相同频谱的连续声音和语音片段,测试了声音强度对定位在准确性、精度和反应潜伏期方面的影响。与之前的人类研究一致,仅在类似点击的刺激下且仅在高度上观察到负水平效应。事实上,当声音强度增加时,语音在高度上的定位显著受益。我们的研究结果表明,声音的时间连续性会影响听觉系统进行的频率分析,并且语音中包含的频谱变化对其在高度上位置的频谱编码干扰不大。