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播放和聆听定制有缺口的音乐:耳鸣患者单模态和多模态训练引起的皮质可塑性。

Playing and listening to tailor-made notched music: cortical plasticity induced by unimodal and multimodal training in tinnitus patients.

机构信息

Institute for Biomagnetism and Biosignalanalysis, University of Münster, Malmedyweg 15, 48149 Münster, Germany.

ENT Department, University Clinic Münster, University of Münster, Kardinal-von-Galen Ring 10, 48149 Münster, Germany.

出版信息

Neural Plast. 2014;2014:516163. doi: 10.1155/2014/516163. Epub 2014 May 8.

Abstract

BACKGROUND. The generation and maintenance of tinnitus are assumed to be based on maladaptive functional cortical reorganization. Listening to modified music, which contains no energy in the range of the individual tinnitus frequency, can inhibit the corresponding neuronal activity in the auditory cortex. Music making has been shown to be a powerful stimulator for brain plasticity, inducing changes in multiple sensory systems. Using magnetoencephalographic (MEG) and behavioral measurements we evaluated the cortical plasticity effects of two months of (a) active listening to (unisensory) versus (b) learning to play (multisensory) tailor-made notched music in nonmusician tinnitus patients. Taking into account the fact that uni- and multisensory trainings induce different patterns of cortical plasticity we hypothesized that these two protocols will have different affects. RESULTS. Only the active listening (unisensory) group showed significant reduction of tinnitus related activity of the middle temporal cortex and an increase in the activity of a tinnitus-coping related posterior parietal area. CONCLUSIONS. These findings indicate that active listening to tailor-made notched music induces greater neuroplastic changes in the maladaptively reorganized cortical network of tinnitus patients while additional integration of other sensory modalities during training reduces these neuroplastic effects.

摘要

背景

耳鸣的产生和维持被认为是基于皮质功能的适应性重组。听经过修正的音乐,其中不包含个体耳鸣频率范围内的能量,可以抑制听觉皮层中相应的神经元活动。音乐制作已被证明是大脑可塑性的强大刺激因素,可以诱导多个感觉系统发生变化。我们使用脑磁图(MEG)和行为测量评估了两个月的(a)主动聆听(单感觉)与(b)学习演奏(多感觉)定制有缺口音乐对非音乐家耳鸣患者的皮质可塑性影响。考虑到单感觉和多感觉训练会引起不同的皮质可塑性模式,我们假设这两种方案会有不同的影响。结果:只有主动聆听(单感觉)组显示出中颞叶皮质与耳鸣相关的活动明显减少,以及与耳鸣应对相关的后顶叶区域的活动增加。结论:这些发现表明,主动聆听定制有缺口的音乐会引起耳鸣患者适应性重组皮质网络的更大神经可塑性变化,而在训练过程中额外整合其他感觉模式会减少这些神经可塑性效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88f9/4034718/344e331ce68d/NP2014-516163.001.jpg

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