Institute of Cognitive Neuroscience, National Central University, Jhongli City, Taiwan.
Hear Res. 2011 Jul;277(1-2):143-51. doi: 10.1016/j.heares.2011.01.008. Epub 2011 Jan 25.
The auditory system can encode interaural delays in highpass-filtered complex sounds by phase locking to their slowly modulating envelopes. Spectrotemporal analysis of interaurally time-delayed highpass waveforms reveals the presence of a concomitant interaural level cue. The current study systematically investigated the contribution of time and concomitant level cues carried by positive and negative envelope slopes of a modified sinusoidally amplitude-modulated (SAM) high-frequency carrier. The waveforms were generated from concatenation of individual modulation cycles whose envelope peaks were extended by the desired interaural delay, allowing independent control of delays in the positive and negative modulation slopes. In experiment 1, thresholds were measured using a 2-interval forced-choice adaptive task for interaural delays in either the positive or negative modulation slopes. In a control condition, thresholds were measured for a standard SAM tone. In experiment 2, decision weights were estimated using a multiple-observation correlational method in a single-interval forced-choice task for interaural delays carried simultaneously by the positive, and independently, negative slopes of the modulation envelope. In experiment 3, decision weights were measured for groups of 3 modulation cycles at the start, middle, and end of the waveform to determine the influence of onset dominance or recency effects. Results were consistent across experiments: thresholds were equal for the positive and negative modulation slopes. Decision weights were positive and equal for the time cue in the positive and negative envelope slopes. Weights were also larger for modulations cycles near the waveform onset. Weights estimated for the concomitant interaural level cue were positive for the positive envelope slope and negative for the negative slope, consistent with exclusive use of time cues.
听觉系统可以通过相位锁定到其缓慢调制的包络来对高通滤波的复合声音中的两耳间延迟进行编码。对两耳间时移高通波形的谱时分析揭示了伴随的两耳间强度线索的存在。本研究系统地研究了由正、负包络斜率的时间和伴随强度线索对经修正的正弦幅度调制(SAM)高频载波的正、负包络斜率所携带的正、负包络斜率的贡献。这些波形是通过对单独调制周期的连接产生的,其包络峰值通过所需的两耳间延迟进行扩展,从而可以独立控制正、负调制斜率中的延迟。在实验 1 中,使用两间隔强制选择自适应任务测量正或负调制斜率中的两耳间延迟的阈值。在对照条件下,使用标准 SAM 音调测量阈值。在实验 2 中,在单一间隔强制选择任务中使用多观察相关方法估计决策权重,用于同时携带正调制包络的正、负斜率的两耳间延迟,以及独立的负斜率的两耳间延迟。在实验 3 中,在波形开始、中间和结束时测量 3 个调制周期的组的决策权重,以确定起始优势或近期效应的影响。结果在实验中是一致的:正、负调制斜率的阈值相等。时间线索在正、负包络斜率中的决策权重为正且相等。对于调制周期靠近波形起始的情况,权重也更大。对于正包络斜率,伴随的两耳间强度线索的权重估计为正,对于负斜率,权重估计为负,与仅使用时间线索一致。