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Cortical Processing of Frequency Changes Reflected By the Acoustic Change Complex in Adult Cochlear Implant Users

机译:成年人工耳蜗使用者的声音变化复合体反映的频率变化的皮层处理

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摘要

The purpose of this study was to examine neural substrates of frequency change detection in cochlear implant (CI) recipients using the acoustic change complex (ACC), a type of cortical auditory evoked potential elicited by acoustic changes in an ongoing stimulus. A psychoacoustic test and electroencephalographic (EEG) recording were administered in 12 post-lingually deafened adult CI users. The stimuli were pure tones containing different magnitudes of upward frequency changes. Results showed that the frequency change detection threshold (FCDT) was 3.79% in the CI users, with a large variability. The ACC N1’ latency was significantly correlated to the FCDT and the clinically collected speech perception score. The results suggested that the ACC evoked by frequency changes can serve as a useful objective tool in assessing frequency change detection capability and predicting speech perception performance in CI users.
机译:这项研究的目的是使用声学变化复合物(ACC)来检查人工耳蜗(CI)接受者的频率变化检测的神经基质,ACC是一种持续刺激中的声学变化引起的皮层听觉诱发电位。对12位舌后失聪的成年人CI用户进行了心理声学测试和脑电图(EEG)记录。刺激是纯音,包含不同幅度的向上频率变化。结果表明,CI用户的频率变化检测阈值(FCDT)为3.79%,并且变异性很大。 ACC N1的潜伏期与FCDT和临床收集的语音感知分数显着相关。结果表明,由频率变化引起的ACC可以作为评估CI用户的频率变化检测能力和预测语音感知性能的有用客观工具。

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