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人工耳蜗植入患者对正弦波和脉冲序列中间隙的检测。

Detection of gaps in sinusoids and pulse trains by patients with cochlear implants.

作者信息

Shannon R V

机构信息

Boys Town National Institute, Omaha, Nebraska 68131.

出版信息

J Acoust Soc Am. 1989 Jun;85(6):2587-92. doi: 10.1121/1.397753.

Abstract

Gap detection thresholds were measured in patients with the Nucleus and Symbion cochlear implants as a function of several current waveform parameters. Detection of gaps in an electrical sinusoidal stimulus or in a train of biphasic pulses by implanted patients was similar to detection of gaps in comparable acoustic stimuli by normal listeners. Threshold gaps were 20-50 ms for low-level stimuli and improved with stimulus level to 2-5 ms for high-level stimuli. Gap detection performance was not affected by the electrode position in the cochlea or by the distance between stimulating electrodes. The data from most patients were well fitted by a trading relation between the duration of the gap and the square of stimulus intensity, indicating energy detection. The similarity of gap thresholds for normal subjects and implant patients suggests that many details of the peripheral neural activity are probably not important for this task, and that there is no retrocochlear loss of auditory temporal resolution with sensorineural hearing loss.

摘要

作为几个电流波形参数的函数,对使用Nucleus和Symbion人工耳蜗的患者进行了间隙检测阈值测量。植入患者对电正弦刺激或双相脉冲序列中的间隙检测,与正常听力者对类似声学刺激中的间隙检测相似。低强度刺激的阈值间隙为20 - 50毫秒,随着刺激强度增加,高强度刺激的阈值间隙改善为2 - 5毫秒。间隙检测性能不受耳蜗中电极位置或刺激电极之间距离的影响。大多数患者的数据通过间隙持续时间与刺激强度平方之间的权衡关系得到了很好的拟合,表明是能量检测。正常受试者和植入患者的间隙阈值相似性表明,外周神经活动的许多细节可能对此任务并不重要,并且感音神经性听力损失不会导致听觉时间分辨率的蜗后损失。

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