MRC Cognition and Brain Sciences Unit, 15 Chaucer Road, Cambridge CB2 7EF, United Kingdom.
J Acoust Soc Am. 2010 Apr;127(4):2466-78. doi: 10.1121/1.3327811.
Sensitivity to fundamental frequency (F0) differences was measured for two complex tones, A and B, which had the same F0 but were filtered into two different frequency regions. Tones were presented either alone or together. A signal-detection analysis was used to predict effects of combining F0 information across frequency regions. For 400-ms tones containing only unresolved harmonics, the first experiment showed that performance (in terms of d(')) for the combined presentation was better than for the isolated tones but was not optimal (assuming independent channels and noises) and was independent of the relative timing of pulses in the envelopes of tones A and B (varied by changing the starting phase of components of tone B relative to those of tone A). The nonoptimal performance was shown not to be due to peripheral masking (experiment II), or to listeners paying attention mainly to one frequency region (experiment III), nor was it specific to conditions where all harmonics were unresolved (experiment IV). In contrast, optimal performance in F0 discrimination for combined presentation was observed for 50-ms tones (experiment V). The results may reflect the limited ability of the human auditory system to integrate information simultaneously in the time and the frequency domains.
对具有相同基频 (F0) 但被过滤到两个不同频率区域的两个复音 A 和 B,测量了对 F0 差异的敏感性。这些音单独呈现或一起呈现。使用信号检测分析来预测跨频率区域组合 F0 信息的效果。对于仅包含未解析谐波的 400-ms 音,第一个实验表明,组合呈现的性能(以 d(') 表示)优于单独呈现的音,但不是最佳的(假设独立通道和噪声),并且与音 A 和 B 的包络中脉冲的相对定时无关(通过改变音 B 的分量相对于音 A 的分量的起始相位来改变)。非最佳性能表明,这不是由于外围掩蔽(实验 II),或者由于听众主要关注一个频率区域(实验 III),也不是特定于所有谐波都未解析的条件(实验 IV)。相比之下,在组合呈现时,50-ms 音的 F0 辨别性能达到最佳(实验五)。结果可能反映了人类听觉系统在时间和频率域中同时整合信息的能力有限。