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频谱-时间线索增强人工耳蜗使用者的调制敏感性。

Spectro-temporal cues enhance modulation sensitivity in cochlear implant users.

作者信息

Zheng Yi, Escabí Monty, Litovsky Ruth Y

机构信息

Waisman Center, University of Wisconsin Madison, 1500 Highland Avenue, Madison, WI, 53705, USA.

Biomedical Engineering, Electrical and Computer Engineering, University of Connecticut, 371 Fairfield Rd., U1157, Storrs, CT, 06269, USA.

出版信息

Hear Res. 2017 Aug;351:45-54. doi: 10.1016/j.heares.2017.05.009. Epub 2017 May 26.

Abstract

Although speech understanding is highly variable amongst cochlear implants (CIs) subjects, the remarkably high speech recognition performance of many CI users is unexpected and not well understood. Numerous factors, including neural health and degradation of the spectral information in the speech signal of CIs, likely contribute to speech understanding. We studied the ability to use spectro-temporal modulations, which may be critical for speech understanding and discrimination, and hypothesize that CI users adopt a different perceptual strategy than normal-hearing (NH) individuals, whereby they rely more heavily on joint spectro-temporal cues to enhance detection of auditory cues. Modulation detection sensitivity was studied in CI users and NH subjects using broadband "ripple" stimuli that were modulated spectrally, temporally, or jointly, i.e., spectro-temporally. The spectro-temporal modulation transfer functions of CI users and NH subjects was decomposed into spectral and temporal dimensions and compared to those subjects' spectral-only and temporal-only modulation transfer functions. In CI users, the joint spectro-temporal sensitivity was better than that predicted by spectral-only and temporal-only sensitivity, indicating a heightened spectro-temporal sensitivity. Such an enhancement through the combined integration of spectral and temporal cues was not observed in NH subjects. The unique use of spectro-temporal cues by CI patients can yield benefits for use of cues that are important for speech understanding. This finding has implications for developing sound processing strategies that may rely on joint spectro-temporal modulations to improve speech comprehension of CI users, and the findings of this study may be valuable for developing clinical assessment tools to optimize CI processor performance.

摘要

尽管人工耳蜗(CI)使用者的言语理解能力差异很大,但许多CI使用者极高的言语识别表现却出人意料且尚未得到很好的理解。包括神经健康和CI言语信号中频谱信息退化在内的众多因素,可能都对言语理解有影响。我们研究了利用频谱-时间调制的能力,这可能对言语理解和辨别至关重要,并推测CI使用者采用了与正常听力(NH)个体不同的感知策略,即他们更依赖联合频谱-时间线索来增强对听觉线索的检测。使用在频谱、时间或联合(即频谱-时间)上进行调制的宽带“波纹”刺激,研究了CI使用者和NH受试者的调制检测灵敏度。将CI使用者和NH受试者的频谱-时间调制传递函数分解为频谱和时间维度,并与这些受试者仅频谱和仅时间的调制传递函数进行比较。在CI使用者中,联合频谱-时间灵敏度优于仅频谱和仅时间灵敏度所预测的值,表明频谱-时间灵敏度有所提高。在NH受试者中未观察到通过频谱和时间线索的联合整合而产生的这种增强。CI患者对频谱-时间线索的独特运用可能会有利于使用对言语理解很重要的线索。这一发现对于开发可能依赖联合频谱-时间调制来改善CI使用者言语理解的声音处理策略具有启示意义,并且本研究的结果对于开发优化CI处理器性能的临床评估工具可能具有价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04cb/5924682/01d781782016/nihms959978f1.jpg

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