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Pitch strength decreases as F0 and harmonic resolution increase in complex tones composed exclusively of high harmonics

机译:在仅由高次谐波组成的复杂音调中随着F0和谐波分辨率的提高音调强度会降低

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摘要

A melodic pitch experiment was performed to demonstrate the importance of time-interval resolution for pitch strength. The experiments show that notes with a low fundamental (75 Hz) and relatively few resolved harmonics support better performance than comparable notes with a higher fundamental (300 Hz) and more resolved harmonics. Two four note melodies were presented to listeners and one note in the second melody was changed by one or two semitones. Listeners were required to identify the note that changed. There were three orthogonal stimulus dimensions: F0 (75 and 300 Hz); lowest frequency component (3, 7, 11, or 15); and number of harmonics (4 or 8). Performance decreased as the frequency of the lowest component increased for both F0’s, but performance was better for the lower F0. The spectral and temporal information in the stimuli were compared using a time-domain model of auditory perception. It is argued that the distribution of time intervals in the auditory nerve can explain the decrease in performance as F0, and spectral resolution increase. Excitation patterns based on the same time-interval information do not contain sufficient resolution to explain listener’s performance on the melody task.
机译:进行了旋律音高实验,以证明时间间隔分辨率对音高强度的重要性。实验表明,与具有较高基频(300 Hz)和更多分解谐波的可比音符相比,具有低基频(75 Hz)和相对较少的分解谐波的音符支持更好的性能。听众听到了两个四个音符的旋律,第二个旋律中的一个音符被一个或两个半音改变了。要求听众识别已更改的音符。共有三个正交刺激维度:F0(75和300 Hz);最低频率分量(3、7、11或15);和谐波数(4或8)。随着两个F0的最低组件频率的增加,性能会下降,但对于较低的F0,性能会更好。使用时域听觉感知模型比较刺激中的光谱和时间信息。有人认为,听神经中时间间隔的分布可以解释随着F0表现的下降和频谱分辨率的提高。基于相同时间间隔信息的激励模式没有足够的分辨率来解释听众在旋律任务中的表现。

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