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Impact of Spectral Notch Width on Neurophysiological Plasticity and Clinical Effectiveness of the Tailor-Made Notched Music Training

机译:频谱陷波宽度对量身定制的缺刻音乐训练的神经生理可塑性和临床有效性的影响

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摘要

Tinnitus, the ringing in the ears that is unrelated to any external source, causes a significant loss in quality of life, involving sleep disturbance and depression for 1 to 3% of the general population. While in the first place tinnitus may be triggered by damage to the inner ear cells, the neural generators of subjective tinnitus are located in central regions of the nervous system. A loss of lateral inhibition, tonotopical reorganization and a gain-increase in response to the sensory deprivation result in hypersensitivity and hyperactivity in certain regions of the auditory cortex. In the tailor-made notched music training (TMNMT) patients listen to music from which the frequency spectrum of the tinnitus has been removed. This evokes strong lateral inhibition from neurons tuned to adjacent frequencies onto the neurons involved in the tinnitus percept. A reduction of tinnitus loudness and tinnitus-related neural activity was achieved with TMNMT in previous studies. As the effect of lateral inhibition depends on the bandwidth of the notch, in the current study we altered the notch width to find the most effective notch width for TMNMT. We compared 1-octave notch width with ½-octave and ¼-octave. Participants chose their favorite music for the training that included three month of two hours daily listening. The outcome was measured by means of standardized questionnaires and magnetoencephalography. We found a general reduction of tinnitus distress in all administered tinnitus questionnaires after the training. Additionally, tinnitus-related neural activity was reduced after the training. Nevertheless, notch width did not have an influence on the behavioral or neural effects of TMNMT. This could be due to a non-linear resolution of lateral inhibition in high frequencies.
机译:耳鸣是耳鸣,与任何外部来源均不相关,会导致生活质量显着下降,包括睡眠障碍和抑郁症,占总人口的1-3%。首先,耳鸣可能是由于内耳细胞的损伤引起的,而主观性耳鸣的神经发生器位于神经系统的中央区域。失去侧向抑制力,局部变位和对感觉剥夺的响应增加会导致听觉皮层某些区域出现超敏反应和活动亢进。在量身定制的陷波音乐训练(TMNMT)中,患者聆听耳鸣频谱已从中消除的音乐。这引起了调谐到相邻频率的神经元对耳鸣感知所涉及的神经元的强烈侧向抑制。在以前的研究中,使用TMNMT可以降低耳鸣响度和耳鸣相关的神经活动。由于横向抑制的效果取决于槽口的带宽,因此在当前研究中,我们更改了槽口宽度,以找到对TMNMT最有效的槽口宽度。我们将1倍频程的陷波宽度与1/2倍频程和1/4倍频程进行了比较。参加培训的学员选择了自己喜欢的音乐,其中包括三个月的每天两个小时的聆听。通过标准化问卷和脑磁图测量结局。在训练后,我们在所有管理的耳鸣问卷中发现耳鸣困扰的总体减少。此外,训练后耳鸣相关的神经活动减少。但是,切口宽度对TMNMT的行为或神经效应没有影响。这可能是由于高频侧向抑制的非线性分辨率所致。

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