Krumbholz Katrin, Magezi David A, Moore Rosanna C, Patterson Roy D
MRC Institute of Hearing Research, University Park, Nottingham, United Kingdom.
J Acoust Soc Am. 2009 Feb;125(2):1067-74. doi: 10.1121/1.3056557.
Binaural sluggishness refers to the binaural system's inability to follow fast changes in the interaural configuration of the incoming sound stream. Several studies have measured binaural sluggishness by measuring signal detection in conditions of binaural unmasking when the interaural configuration of the masker is changed over time. However, it has been shown that, in conditions of binaural unmasking, binaural sluggishness also affects the perception of temporal changes in the properties of the signal (i.e., its frequency or level) and not just in the interaural configuration of the masker. By measuring the temporal modulation transfer function for sinusoidally modulated noise presented in conditions of binaural unmasking, the first experiment of the current study showed that, due to binaural sluggishness, the internal representation of binaurally unmasked sounds conveys little or no information about envelope fluctuations with rates within the pitch range (i.e., above 30 Hz). The second experiment measured the masked detection threshold for musical interval recognition in binaurally unmasked harmonic tones and showed that, in conditions of binaural unmasking, pitch wanes when the harmonics become unresolved by the cochlear filters. These results suggest that binaural sluggishness precludes temporal pitch processing based on envelope cues in binaurally unmasked sounds.
双耳惰性是指双耳系统无法跟上传入声流双耳配置的快速变化。多项研究通过在掩蔽声的双耳配置随时间变化的双耳解掩蔽条件下测量信号检测来测定双耳惰性。然而,研究表明,在双耳解掩蔽条件下,双耳惰性不仅会影响对掩蔽声声源双耳配置的感知,还会影响对信号属性(即其频率或强度)随时间变化的感知。通过测量双耳解掩蔽条件下呈现的正弦调制噪声的时间调制传递函数,本研究的第一个实验表明,由于双耳惰性,双耳解掩蔽声音的内部表征几乎没有传达关于音高范围内(即高于30赫兹)速率的包络波动的信息。第二个实验测量了双耳解掩蔽谐波音调中音乐音程识别的掩蔽检测阈值,并表明,在双耳解掩蔽条件下,当谐波无法被耳蜗滤波器分辨时,音高会减弱。这些结果表明,双耳惰性排除了基于双耳解掩蔽声音中包络线索的时间音高处理。