Pitch Perception: Dissociating Frequency from Fundamental-Frequency Discrimination
Author:
Publisher
Springer New York
Link
http://link.springer.com/content/pdf/10.1007/978-1-4614-1590-9_16
Reference23 articles.
1. Attneave F, Olson RK (1971) Pitch as a medium: a new approach to psychophysical scaling. Am J Psychol 84:147–166
2. Burns EM, Feth LL (1983) Pitch of sinusoids and complex tones above 10 kHz. In: Klinke R, Hartmann R (eds) Hearing - physiological bases and psychophysics. Springer, Berlin, pp 327–333
3. Carlyon RP, Deeks JM (2002) Limitations on rate discrimination. J Acoust Soc Am 112:1009–1025
4. Cohen MA, Grossberg S, Wyse LL (1995) A spectral network model of pitch perception. J Acoust Soc Am 98:862–879
5. Faulkner A (1985) Pitch discrimination of harmonic complex signals: residue pitch or multiple component discriminations. J Acoust Soc Am 78:1993–2004
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1. Effect of lowest harmonic rank on fundamental-frequency difference limens varies with fundamental frequency;The Journal of the Acoustical Society of America;2020-04
2. Superoptimal Perceptual Integration Suggests a Place-Based Representation of Pitch at High Frequencies;The Journal of Neuroscience;2017-08-17
3. What the [bleep]? Enhanced absolute pitch memory for a 1000 Hz sine tone;Cognition;2016-09
4. Characterizing the dependence of pure-tone frequency difference limens on frequency, duration, and level;Hearing Research;2012-10
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