Dietz Mathias, Ewert Stephan D, Hohmann Volker
Medizinische Physik, Universitat Oldenburg, Oldenburg, Germany.
J Acoust Soc Am. 2009 Mar;125(3):1622-35. doi: 10.1121/1.3076045.
Psychoacoustic experiments were conducted to investigate the role and interaction of fine-structure and envelope-based interaural temporal disparities. A computational model for the lateralization of binaural stimuli, motivated by recent physiological findings, is suggested and evaluated against the psychoacoustic data. The model is based on the independent extraction of the interaural phase difference (IPD) from the stimulus fine-structure and envelope. Sinusoidally amplitude-modulated 1-kHz tones were used in the experiments. The lateralization from either carrier (fine-structure) or modulator (envelope) IPD was matched with an interaural level difference, revealing a nearly linear dependence for both IPD types up to 135 degrees , independent of the modulation frequency. However, if a carrier IPD was traded with an opposed modulator IPD to produce a centered sound image, a carrier IPD of 45 degrees required the largest opposed modulator IPD. The data could be modeled assuming a population of binaural neurons with a physiological distribution of the best IPDs clustered around 45 degrees -50 degrees . The model was also used to predict the perceived lateralization of previously published data. Subject-dependent differences in the perceptual salience of fine-structure and envelope cues, also reported previously, could be modeled by individual weighting coefficients for the two cues.
进行了心理声学实验,以研究基于精细结构和包络的双耳时间差异的作用及相互作用。提出了一种受近期生理学发现启发的双耳刺激定位计算模型,并根据心理声学数据进行评估。该模型基于从刺激精细结构和包络中独立提取双耳相位差(IPD)。实验中使用了正弦幅度调制的1kHz音调。来自载波(精细结构)或调制器(包络)IPD的定位与双耳电平差相匹配,揭示了两种IPD类型在高达135度时几乎呈线性依赖关系,与调制频率无关。然而,如果用相反的调制器IPD交换载波IPD以产生居中的声像,则45度的载波IPD需要最大的相反调制器IPD。假设存在一群双耳神经元,其最佳IPD的生理分布聚集在45度至50度左右,则可以对数据进行建模。该模型还用于预测先前发表数据的感知定位。先前也报道过的精细结构和包络线索在感知显著性上的个体差异,可以通过两个线索的个体加权系数进行建模。