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CI MuMuFe——一种用于测量电听觉中音乐辨别能力的新MMN范式。

The CI MuMuFe - A New MMN Paradigm for Measuring Music Discrimination in Electric Hearing.

作者信息

Petersen Bjørn, Andersen Anne Sofie Friis, Haumann Niels Trusbak, Højlund Andreas, Dietz Martin J, Michel Franck, Riis Søren Kamaric, Brattico Elvira, Vuust Peter

机构信息

Center for Music in the Brain, Department of Clinical Medicine, Aarhus University and The Royal Academy of Music, Aarhus/Aalborg, Aarhus, Denmark.

Center of Functionally Integrative Neuroscience, Aarhus University, Aarhus, Denmark.

出版信息

Front Neurosci. 2020 Jan 23;14:2. doi: 10.3389/fnins.2020.00002. eCollection 2020.

Abstract

Cochlear implants (CIs) allow good perception of speech while music listening is unsatisfactory, leading to reduced music enjoyment. Hence, a number of ongoing efforts aim to improve music perception with a CI. Regardless of the nature of these efforts, effect measurements must be valid and reliable. While auditory skills are typically examined by behavioral methods, recording of the mismatch negativity (MMN) response, using electroencephalography (EEG), has recently been applied successfully as a supplementary objective measure. Eleven adult CI users and 14 normally hearing (NH) controls took part in the present study. To measure their detailed discrimination of fundamental features of music we applied a new multifeature MMN-paradigm which presented four music deviants at four levels of magnitude, incorporating a novel "no-standard" approach to be tested with CI users for the first time. A supplementary test measured behavioral discrimination of the same deviants and levels. The MMN-paradigm elicited significant MMN responses to all levels of deviants in both groups. Furthermore, the CI-users' MMN amplitudes and latencies were not significantly different from those of NH controls. Both groups showed MMN strength that was in overall alignment with the deviation magnitude. In CI users, however, discrimination of pitch levels remained undifferentiated. On average, CI users' behavioral performance was significantly below that of the NH group, mainly due to poor pitch discrimination. Although no significant effects were found, CI users' behavioral results tended to be in accordance with deviation magnitude, most prominently manifested in discrimination of the rhythm deviant. In summary, the study indicates that CI users may be able to discriminate subtle changes in basic musical features both in terms of automatic neural responses and of attended behavioral detection. Despite high complexity, the new CI MuMuFe paradigm and the "no-standard" approach provided reliable results, suggesting that it may serve as a relevant tool in future CI research. For clinical use, future studies should investigate the possibility of applying the paradigm with the purpose of assessing discrimination skills not only at the group level but also at the individual level.

摘要

人工耳蜗(CI)能让人较好地感知言语,但音乐聆听效果却不尽人意,导致音乐享受程度降低。因此,目前有许多正在进行的努力旨在改善人工耳蜗使用者的音乐感知能力。无论这些努力的性质如何,效果测量都必须有效且可靠。虽然听觉技能通常通过行为方法进行检测,但最近使用脑电图(EEG)记录失配负波(MMN)反应已成功作为一种补充性客观测量方法。11名成年人工耳蜗使用者和14名听力正常(NH)的对照者参与了本研究。为了测量他们对音乐基本特征的详细辨别能力,我们应用了一种新的多特征MMN范式,该范式在四个量级水平上呈现了四个音乐偏差样本,首次采用了一种新颖的“无标准”方法对人工耳蜗使用者进行测试。一项补充测试测量了对相同偏差样本和量级的行为辨别能力。MMN范式在两组中均引发了对所有量级偏差样本的显著MMN反应。此外,人工耳蜗使用者的MMN波幅和潜伏期与听力正常对照组的并无显著差异。两组的MMN强度总体上与偏差量级一致。然而,在人工耳蜗使用者中,音高量级的辨别仍无差异。平均而言,人工耳蜗使用者的行为表现显著低于听力正常组,主要原因是音高辨别能力较差。虽然未发现显著影响,但人工耳蜗使用者的行为结果倾向于与偏差量级一致,最明显地体现在对节奏偏差的辨别上。总之,该研究表明,人工耳蜗使用者在自动神经反应和参与的行为检测方面可能能够辨别基本音乐特征的细微变化。尽管复杂度很高,但新的人工耳蜗多特征音乐范式(CI MuMuFe)和“无标准”方法提供了可靠的结果,表明它可能成为未来人工耳蜗研究的相关工具。对于临床应用,未来的研究应探讨应用该范式不仅在群体层面而且在个体层面评估辨别技能的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1623/6990974/6c5fa138775e/fnins-14-00002-g001.jpg

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