Seeber Bernhard U, Fastl Hugo
Institute for Human-Machine-Communication, Technische Universität München Arcisstr. 21, 80333 München, Germany.
J Acoust Soc Am. 2008 Feb;123(2):1030-42. doi: 10.1121/1.2821965.
Selected subjects with bilateral cochlear implants (CIs) showed excellent horizontal localization of wide-band sounds in previous studies. The current study investigated localization cues used by two bilateral CI subjects with outstanding localization ability. The first experiment studied localization for sounds of different spectral and temporal composition in the free field. Localization of wide-band noise was unaffected by envelope pulsation, suggesting that envelope-interaural time difference (ITD) cues contributed little. Low-pass noise was not localizable for one subject and localization depended on the cutoff frequency for the other which suggests that ITDs played only a limited role. High-pass noise with slow envelope changes could be localized, in line with contribution of interaural level differences (ILDs). In experiment 2, processors of one subject were raised above the head to void the head shadow. If they were spaced at ear distance, ITDs allowed discrimination of left from right for a pulsed wide-band noise. Good localization was observed with a head-sized cardboard inserted between processors, showing the reliance on ILDs. Experiment 3 investigated localization in virtual space with manipulated ILDs and ITDs. Localization shifted predominantly for offsets in ILDs, even for pulsed high-pass noise. This confirms that envelope ITDs contributed little and that localization with bilateral CIs was dominated by ILDs.
在之前的研究中,选定的双侧人工耳蜗(CI)受试者对宽带声音表现出出色的水平定位能力。本研究调查了两名具有出色定位能力的双侧CI受试者所使用的定位线索。第一个实验研究了自由场中不同频谱和时间组成的声音的定位。宽带噪声的定位不受包络脉动的影响,这表明包络耳间时间差(ITD)线索贡献不大。对于一名受试者,低通噪声无法定位,而对于另一名受试者,定位取决于截止频率,这表明ITD仅起有限作用。具有缓慢包络变化的高通噪声可以定位,这与耳间水平差(ILD)的作用一致。在实验2中,将一名受试者的处理器抬高到头部上方以消除头部阴影。如果它们间隔为耳距,则ITD允许对脉冲宽带噪声进行左右辨别。在处理器之间插入一个头部大小的硬纸板时观察到良好的定位,这表明对ILD的依赖。实验3研究了在虚拟空间中通过操纵ILD和ITD进行的定位。即使对于脉冲高通噪声,定位也主要因ILD的偏移而发生变化。这证实了包络ITD贡献不大,并且双侧CI的定位主要由ILD主导。