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线性和对数频率调制扫描中空间线索的检测。

Detection of spatial cues in linear and logarithmic frequency-modulated sweeps.

作者信息

Hsieh I-Hui, Saberi Kourosh

机构信息

Institute of Cognitive Neuroscience, National Central University, Jhongli City, Taoyuan County 32001, Taiwan.

出版信息

Atten Percept Psychophys. 2009 Nov;71(8):1876-89. doi: 10.3758/APP.71.8.1876.

Abstract

Frequency- and amplitude-modulated (FM and AM) sounds are the building blocks of complex sounds. In the present study, we investigated the ability of human observers to process spatial information in an important class of FM sounds: broadband directional sweeps common in natural communication signals such as speech. The stimuli consisted of linear or logarithmic unidirectional FM pulses that swept either up or down in frequency at various rates. Spatial localization thresholds monotonically improved as sweep duration decreased and as sweep rate increased, but no difference in performance was observed between logarithmic and linear or between up- and down-frequency sweeps. Counterintuitive reversals in localization were observed which suggested that the localization of high-frequency sweeps may be strongly dominated by amplitude information even in situations in which one might consider timing cues to be critical. Implications of these findings for the localization of complex sounds are discussed.

摘要

频率调制和幅度调制(FM和AM)声音是复杂声音的组成要素。在本研究中,我们调查了人类观察者处理一类重要FM声音中空间信息的能力:这类声音是自然通信信号(如语音)中常见的宽带定向扫描声。刺激信号由线性或对数单向FM脉冲组成,这些脉冲以不同速率在频率上向上或向下扫描。空间定位阈值随着扫描持续时间的减少和扫描速率的增加而单调改善,但在对数和线性扫描之间或向上和向下频率扫描之间未观察到性能差异。观察到了定位中违反直觉的反转现象,这表明即使在人们可能认为时间线索至关重要的情况下,高频扫描的定位也可能强烈地受幅度信息支配。讨论了这些发现对复杂声音定位的影响。

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