van Hoesel Richard J M
CRC for Cochlear Implant and Hearing Aid Innovation, Melbourne, Victoria, Australia.
Audiol Neurootol. 2004 Jul-Aug;9(4):234-46. doi: 10.1159/000078393.
Several recent reports indicate that both localization and speech intelligibility in spatially separated noise are substantially improved by using cochlear implants (CIs) in both ears rather than in just one. Benefits appear to be largely derived from the effects of level variations at the two ears due to the head shadow whereas contributions from interaural time differences (ITDs) seem smaller than in normal hearing listeners. The effect of binaural unmasking estimated from speech studies to date varies from study to study and is possibly confounded by issues such as listening experience, bias or loudness effects when comparing the performance for the better ear with that using both ears. To improve the contribution from timing information at the two ears, it may be necessary to change present clinical sound-processing schemes that currently preserve only envelope cues so that they also preserve fine-timing information. However, recently published data show that basic psychophysical sensitivity to fine-timing ITDs in CI patients is very poor for rates beyond a few hundred hertz, suggesting that subjects do not actually hear ITD cues at those rates anyway. Data from a number of new studies are presented to discuss these and other issues related to the potential to benefit from bilateral implantation.
最近的几份报告表明,在空间分离的噪声环境中,双耳植入人工耳蜗(CI)比单耳植入能显著提高定位能力和言语可懂度。其益处似乎主要源于头部阴影导致的双耳声级变化的影响,而双耳时间差(ITD)的贡献似乎比正常听力的听众要小。迄今为止,从言语研究中估计出的双耳掩蔽效应因研究而异,并且在比较较好耳与双耳使用时的表现时,可能会受到诸如听力经验、偏差或响度效应等问题的混淆。为了增加双耳时间信息的贡献,可能有必要改变目前仅保留包络线索的临床声音处理方案,使其也能保留精细时间信息。然而,最近发表的数据表明,对于几百赫兹以上的频率,人工耳蜗患者对精细时间双耳时间差的基本心理物理敏感性非常差,这表明受试者实际上无论如何都无法以这些频率听到双耳时间差线索。本文展示了一些新研究的数据,以讨论这些以及与双侧植入潜在益处相关的其他问题。