首页> 美国卫生研究院文献>Frontiers in Neuroscience >Auditory Stream Segregation and Selective Attention for Cochlear Implant Listeners: Evidence From Behavioral Measures and Event-Related Potentials
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Auditory Stream Segregation and Selective Attention for Cochlear Implant Listeners: Evidence From Behavioral Measures and Event-Related Potentials

机译:听觉流分离和人工耳蜗听众的选择性注意:行为措施和事件相关的电位的证据。

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摘要

The role of the spatial separation between the stimulating electrodes (electrode separation) in sequential stream segregation was explored in cochlear implant (CI) listeners using a deviant detection task. Twelve CI listeners were instructed to attend to a series of target sounds in the presence of interleaved distractor sounds. A deviant was randomly introduced in the target stream either at the beginning, middle or end of each trial. The listeners were asked to detect sequences that contained a deviant and to report its location within the trial. The perceptual segregation of the streams should, therefore, improve deviant detection performance. The electrode range for the distractor sounds was varied, resulting in different amounts of overlap between the target and the distractor streams. For the largest electrode separation condition, event-related potentials (ERPs) were recorded under active and passive listening conditions. The listeners were asked to perform the behavioral task for the active listening condition and encouraged to watch a muted movie for the passive listening condition. Deviant detection performance improved with increasing electrode separation between the streams, suggesting that larger electrode differences facilitate the segregation of the streams. Deviant detection performance was best for deviants happening late in the sequence, indicating that a segregated percept builds up over time. The analysis of the ERP waveforms revealed that auditory selective attention modulates the ERP responses in CI listeners. Specifically, the responses to the target stream were, overall, larger in the active relative to the passive listening condition. Conversely, the ERP responses to the distractor stream were not affected by selective attention. However, no significant correlation was observed between the behavioral performance and the amount of attentional modulation. Overall, the findings from the present study suggest that CI listeners can use electrode separation to perceptually group sequential sounds. Moreover, selective attention can be deployed on the resulting auditory objects, as reflected by the attentional modulation of the ERPs at the group level.
机译:使用异常检测任务,在人工耳蜗(CI)听众中探索了刺激电极之间的空间间隔(电极间隔)在连续流分离中的作用。十二名CI听众被指示在存在分散干扰物声音的情况下聆听一系列目标声音。在每个试验的开始,中间或结束时,将异常信号随机引入目标流中。要求听众检测包含异常的序列,并报告其在试验中的位置。因此,流的感知隔离应该提高异常检测性能。干扰声的电极范围是变化的,导致目标流和干扰流之间的重叠量不同。对于最大的电极分离条件,在主动和被动聆听条件下记录了事件相关电位(ERP)。要求听众在主动聆听条件下执行行为任务,并鼓励他们在被动聆听条件下观看静音电影。随着流之间电极间距的增加,异常检测性能得到了改善,这表明较大的电极差异有助于流的分离。偏差检测性能最适合序列中较晚发生的偏差,这表明随着时间的推移会逐渐形成隔离的感知。对ERP波形的分析表明,听觉选择性注意调节了CI听众中的ERP响应。具体而言,相对于被动收听条件,主动中对目标流的响应总体上更大。相反,ERP对干扰物流的反应不受选择性注意的影响。但是,没有观察到行为表现和注意调节量之间的显着相关性。总体而言,本研究的结果表明,CI聆听者可以使用电极分离来感知连续声音的分组。此外,可以在产生的听觉对象上部署选择性注意,这在组级别上对ERP的注意调节反映出来。

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