Gfeller Kate E, Olszewski Carol, Turner Christopher, Gantz Bruce, Oleson Jacob
School of Music, University of Iowa, Iowa City, Iowa, USA.
Audiol Neurootol. 2006;11 Suppl 1:12-5. doi: 10.1159/000095608. Epub 2006 Oct 6.
The aims of this study were to examine the music perception abilities of Cochlear Nucleus Hybrid (acoustic plus electric stimulation) cochlear implant (CI) recipients and to compare their performance with that of normal-hearing (NH) adults and CI recipients using conventional long-electrode (LE) devices (Advanced Bionics: 90K, Clarion, CIIHF; Cochlear Corporation: CI24M, CI22, Contour; Ineraid). Hybrid CI recipients were compared with NH adults and LE CI recipients on recognition of (a) real-world melodies and (b) musical instruments.
We tested 4 Hybrid CI recipients, 17 NH adults, and 39 LE CI recipients on open-set recognition of real-world songs presented with and without lyrics. We also tested 14 Hybrid CI recipients, 21 NH adults, and 174 LE CI recipients on closed-set recognition of 8 musical instruments playing a 7-note phrase.
On recognition of real-world songs, both the Hybrid recipients and NH listeners were significantly more accurate (p < 0.0001) than the LE CI recipients in the no lyrics condition, which required reliance on musical cues only. The LE group was significantly less accurate than either the Hybrid or NH group (p < 0.0001) on instrument recognition for low and high frequency ranges.
These results, while preliminary in nature, suggest that preservation of low-frequency acoustic hearing is important for perception of real-world musical stimuli.
本研究旨在检测人工耳蜗核混合(声学加电刺激)人工耳蜗(CI)植入者的音乐感知能力,并将其表现与正常听力(NH)成年人以及使用传统长电极(LE)设备(先进生物电子公司:90K、Clarion、CIIHF;科利耳公司:CI24M、CI22、Contour;Ineraid)的CI植入者进行比较。比较混合CI植入者与NH成年人以及LE CI植入者在识别(a)现实世界旋律和(b)乐器方面的表现。
我们对4名混合CI植入者、17名NH成年人以及39名LE CI植入者进行了测试,让他们在有歌词和无歌词的情况下对现实世界歌曲进行开放式识别。我们还对14名混合CI植入者、21名NH成年人以及174名LE CI植入者进行了测试,让他们对演奏7个音符乐句的8种乐器进行封闭式识别。
在识别现实世界歌曲时,在无歌词条件下(仅需依靠音乐线索),混合CI植入者和NH听众的准确率均显著高于LE CI植入者(p < 0.0001)。在低频和高频范围的乐器识别方面,LE组的准确率显著低于混合组或NH组(p < 0.0001)。
这些结果虽然本质上是初步的,但表明保留低频声学听力对于感知现实世界音乐刺激很重要。