Loizou Philipos C, Hu Yi, Litovsky Ruth, Yu Gongqiang, Peters Robert, Lake Jennifer, Roland Peter
Department of Electrical Engineering, University of Texas at Dallas, Richardson, Texas 75083-0688, USA.
J Acoust Soc Am. 2009 Jan;125(1):372-83. doi: 10.1121/1.3036175.
Unlike prior studies with bilateral cochlear implant users which considered only one interferer, the present study considered realistic listening situations wherein multiple interferers were present and in some cases originating from both hemifields. Speech reception thresholds were measured in bilateral users unilaterally and bilaterally in four different spatial configurations, with one and three interferers consisting of modulated noise or competing talkers. The data were analyzed in terms of binaural benefits including monaural advantage (better-ear listening) and binaural interaction. The total advantage (overall spatial release) received was 2-5 dB and was maintained with multiple interferers present. This advantage was dominated by the monaural advantage, which ranged from 1 to 6 dB and was largest when the interferers were mostly energetic. No binaural-interaction benefit was found in the present study with either type of interferer (speech or noise). While the total and monaural advantage obtained for noise interferers was comparable to that attained by normal-hearing listeners, it was considerably lower for speech interferers. This suggests that bilateral users are less capable of taking advantage of binaural cues, in particular, under conditions of informational masking. Furthermore, the use of noise interferers does not adequately reflect the difficulties experienced by bilateral users in real-life situations.
与之前针对双侧人工耳蜗使用者的研究不同,之前的研究仅考虑一个干扰源,而本研究考虑了存在多个干扰源且在某些情况下干扰源来自双侧半视野的实际聆听情境。在四种不同空间配置下,对双侧使用者进行单耳和双耳的言语接收阈测量,干扰源有一个或三个,分别为调制噪声或竞争言语者。数据依据双耳优势进行分析,包括单耳优势(较好耳聆听)和双耳相互作用。所获得的总优势(整体空间释放)为2 - 5分贝,且在存在多个干扰源时保持不变。这种优势主要由单耳优势主导,单耳优势范围为1至6分贝,在干扰源能量最强时最大。在本研究中,无论是哪种类型的干扰源(言语或噪声),均未发现双耳相互作用优势。虽然噪声干扰源所获得的总优势和单耳优势与正常听力聆听者相当,但对于言语干扰源,该优势则显著更低。这表明双侧使用者利用双耳线索的能力较弱,尤其是在信息掩蔽条件下。此外,使用噪声干扰源并不能充分反映双侧使用者在现实生活情境中所遇到的困难。