School of Psychological Sciences, The University of Manchester, Manchester M13 9PL, UK.
Hear Res. 2012 Jan;283(1-2):59-69. doi: 10.1016/j.heares.2011.11.009. Epub 2011 Dec 2.
Temporal modulation transfer functions (TMTFs) were measured for six users of cochlear implants, using different carrier rates and levels. Unlike most previous studies investigating modulation detection, the experimental design limited potential effects of overall loudness cues. Psychometric functions (percent correct discrimination of modulated from unmodulated stimuli versus modulation depth) were obtained. For each modulation depth, each modulated stimulus was loudness balanced to the unmodulated reference stimulus, and level jitter was applied in the discrimination task. The loudness-balance data showed that the modulated stimuli were louder than the unmodulated reference stimuli with the same average current, thus confirming the need to limit loudness cues when measuring modulation detection. TMTFs measured in this way had a low-pass characteristic, with a cut-off frequency (at comfortably loud levels) similar to that for normal-hearing listeners. A reduction in level caused degradation in modulation detection efficiency and a lower-cut-off frequency (i.e. poorer temporal resolution). An increase in carrier rate also led to a degradation in modulation detection efficiency, but only at lower levels or higher modulation frequencies. When detection thresholds were expressed as a proportion of dynamic range, there was no effect of carrier rate for the lowest modulation frequency (50 Hz) at either level.
时变调制传递函数 (TMTF) 被测量了六位使用者的人工耳蜗,使用不同的载波率和水平。与大多数以前的研究调查调制检测,实验设计限制了整体响度线索的潜在影响。心理物理函数(%正确辨别调制从未调制刺激调制深度)获得。对于每个调制深度,每个调制刺激是响度平衡到未调制参考刺激,和水平抖动在判别任务。响度平衡数据表明,调制刺激比未调制参考刺激更响亮相同的平均电流,从而证实了需要限制当测量调制检测的响度线索。以这种方式测量的 TMTF 具有低通特性,截止频率(在舒适的响亮的水平)类似于正常听力听众。水平的降低导致调制检测效率的降低和较低的截止频率(即较差的时间分辨率)。载波率的增加也导致调制检测效率的降低,但只有在较低的水平或更高的调制频率。当检测阈值表示为动态范围的比例时,载波率对最低调制频率(50 Hz)在任一水平都没有影响。