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Characterizing the Area of Significant Brain Activation Region to Spectrally-degraded Music: A Functional Near-Infrared Spectroscopy Study

机译:表征显着脑激活区域的区域,以光谱降解的音乐:功能近红外光谱研究

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Cochlear implants (CIs) are the only auditory prosthesis for treating deafness, yet the ability of implanted patients to music perception is inferior. The present work studied the effect of spectrally-degraded processing (via a noise-vocoding process to simulate CI speech processing) on the area of significant activation in music processing in auditory cortex using functional near-infrared spectroscopy (fNIRS). The music stimulus was processed by 32-channel and 16-channel noise-vocoders, and presented to normal-hearing listeners to perceive. The fNIRS-based results in this work showed that compared with the original music condition, spectrally-degraded processing with a large number (i.e., 32) of vocoded channels had a significant influence on the area of significant activation in the left auditory hemisphere, and further decreasing the number of vocoded channels remarkably reduced the area of significant activation in the right auditory hemisphere.
机译:耳蜗植入物(CIS)是治疗耳聋的唯一听觉假体,但植入患者对音乐感知的能力是较差的。 本作研究使用功能近红外光谱(FNIR)对光谱降解处理(通过噪声声学过程模拟CI语音处理模拟CI语音处理)的影响。 音乐刺激由32通道和16通道噪声声探测器处理,并呈现给正常听觉听众以感知。 在这项工作中的基于FNIRS的结果表明,与原始音乐条件相比,具有大量(即32)的声码通道的光谱降解处理对左听觉半球的显着激活面积有显着影响,并且 进一步降低声码信道的数量显着降低了右听觉半球的显着激活面积。

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