人工耳蜗的振幅压缩人为地限制了颞叶不对称的感知。

C Lorenzi, S Gallégo, R D Patterson
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引用次数: 5

摘要

本文提出了一项研究,其中五个人工耳蜗植入者被要求区分刺激的音色与时间不对称信封。刺激是阻尼的,在声学上呈现倾斜的正弦波。它们通过植入物的语音处理器进行转换,并通过一个电极呈现。当半衰期为4 ms,载波频率为400 Hz,包络周期为50 ms时,所有人工耳蜗都能分辨出衰减和倾斜的正弦波。在第二个实验中,音色辨别性能作为半衰期的函数测量了两个人工耳蜗。两者都表明,在1-24 ms范围内,音色辨别是可能的。在听力正常的听者中,这个范围是1-64毫秒,而在没有语音处理器的情况下直接刺激的人工耳蜗中,这个范围是1-300毫秒。在较长的半衰期,在语音处理器中观察到的识别性能下降似乎是由于设备施加的幅度压缩。目前的研究结果表明,当施加压缩到控制水平时,确保人工耳蜗不过度限制颞叶不对称可能是重要的。
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Amplitude compression in cochlear implants artificially restricts the perception of temporal asymmetry.

This paper presents a study in which five cochlear implantees were asked to discriminate the timbre of stimuli with temporally asymmetric envelopes. Stimuli were damped and ramped sinusoids presented acoustically. They were transformed by the speech processor of the implant and were presented through one electrode. All cochlear implantees could discriminate the damped and ramped sinusoids when the half-life was 4 ms, the carrier frequency was 400 Hz, and the period of the envelope was 50 ms. In a second experiment, timbre discrimination performance was measured as a function of half-life for two cochlear implantees. Both showed that timbre discrimination was possible over the range 1-24 ms. In normal-hearing listeners, the range is 1-64 ms and in cochlear implantees, stimulated directly without the speech processor, the range is 1-300 ms. At long half-lives, the decrease in discrimination performance observed with the speech processor appears to be due to the amplitude compression applied by the device. The present results suggest that it may be important to ensure that cochlear implants do not restrict temporal asymmetry unduly when applying compression to control level.

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Effects of sample size on the reliability of noise floor and DPOAE. Audiometer calibration: interpreting and applying the standards. Assessment of aided ABR thresholds before cochlear implantation. Community-based validation of the McCormick Toy Test. Audit of 5-year post-implantation routine integrity tests performed on paediatric cochlear implantees.
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