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The Role of Temporal Cues in Voluntary Stream Segregation for Cochlear Implant Users

机译:时间提示在人工耳蜗使用者自愿流分离中的作用

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The role of temporal cues in sequential stream segregation was investigated in cochlear implant (CI) listeners using a delay detection task composed of a sequence of bursts of pulses (B) on a single electrode interleaved with a second sequence (A) presented on the same electrode with a different pulse rate. In half of the trials, a delay was added to the last burst of the otherwise regular B sequence and the listeners were asked to detect this delay. As a jitter was added to the period between consecutive A bursts, time judgments between the A and B sequences provided an unreliable cue to perform the task. Thus, the segregation of the A and B sequences should improve performance. The pulse rate difference and the duration of the sequences were varied between trials. The performance in the detection task improved by increasing both the pulse rate differences and the sequence duration. This suggests that CI listeners can use pulse rate differences to segregate sequential sounds and that a segregated percept builds up over time. In addition, the contribution of place versus temporal cues for voluntary stream segregation was assessed by combining the results from this study with those from our previous study, where the same paradigm was used to determine the role of place cues on stream segregation. Pitch height differences between the A and the B sounds accounted for the results from both studies, suggesting that stream segregation is related to the salience of the perceptual difference between the sounds.
机译:在耳蜗植入(CI)听众中,使用延迟检测任务研究了时间线索在顺序流分离中的作用,该延迟检测任务由单个电极上的脉冲串序列(B)与相同序列上出现的第二个序列(A)交错构成电极具有不同的脉冲频率。在一半的试验中,将延迟添加到原本正常的B序列的最后一个突发中,并要求听众检测此延迟。由于在连续的A突发之间增加了抖动,因此A和B序列之间的时间判断为执行任务提供了不可靠的提示。因此,A和B序列的分离应该改善性能。在两次试验之间,脉搏率差异和序列持续时间有所不同。通过增加脉冲率差和序列持续时间,检测任务的性能得以提高。这表明CI聆听者可以使用脉搏率差异来分离连续声音,并且随着时间的流逝,分离出的感觉会逐渐建立。此外,通过将本研究的结果与我们以前的研究结果相结合,评估了位置提示与时间提示对自愿溪流隔离的贡献,在该研究中,我们使用相同的范例来确定位置提示在溪流隔离中的作用。 A和B声音之间的音高差异解释了这两项研究的结果,这表明流分离与声音之间的感知差异的显着性有关。

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