Sidebar 4: References
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[2] Stuart, J. R. and Craven, P.G., 'A Hierarchical Approach to Archiving and Distribution', 9178, 137th AES Convention, (2014). Open Access: www.aes.org/e-lib/browse.cfm?elib=17501.
[3] Stuart, J.R., Howard, K., 'New digital coding scheme—MQA', (Japanese translation by Hiroaki Suzuki), J. Japan Audio Society, Vol.55 No.6, pp45—57 (Nov. 2015).
[4] Lipshitz, S.P., Vanderkooy, J., 'Pulse-Code Modulation—An Overview', J. Audio Eng. Soc., Vol.52, No.3, pp.200–214 (March 2004)
[5] Widrow, B., Kollár, I., Quantization Noise: Roundoff Error in Digital Computation, Signal Processing, Control, and Communications, CUP, Cambridge, UK, ISBN: 0521886716 (2008)
[6] Fellgett, P.B., 'Thermal noise limits of Microphones', J. IERE, 57 No.4, 161–166 (1987). http://dx.doi.org/10.1049/jiere.1987.0058.
[7] Woszcyk, W., 'Physical and perceptual considerations for high-resolution audio', AES 115th Convention, New York, preprint 5931 (Oct 2003)
[8] Krumbholz, K., Patterson, R.D., 'Microsecond temporal resolution in monaural hearing without spectral cues?' J. Acoust. Soc Am., 113, No.5, 2790–2800, (2003)
[9] Lewicki, M.S. 'Efficient Coding of natural sounds', Nature Neurosci. 5, 356–363 (2002). http://dx.doi.org/10.1038/nn831.
[10] Moore, B.J.C., 'The role of temporal fine-structure processing in pitch perception, masking, and speech perception for normal-hearing and hearing-impaired people.' Journal of the Association for Research in Otolaryngology, 9:399-406, 2008.
[11] Stuart, J.R., 'Auditory Modelling Related to the Bit Budget', AES Conference 'Managing the Bit Budget', MBB-18 (1994) www.aes.org/e-lib/browse.cfm?elib=6110.
[12] Stuart, J.R., 'Noise: Methods for Estimating Detectability and Threshold', J. Audio Eng. Soc., Vol.42 No.3 pp.124–140; (1994) www.aes.org/e-lib/browse.cfm?elib=6959.
[13] Stuart, J.R., 'Coding for High-Resolution Audio Systems', J. Audio Eng. Soc., Vol.52 No.3 pp.117–144; (2004) www.aes.org/e-lib/browse.cfm?elib=12986.
[14] Stuart, J.R. 'Predicting the audibility, detectability and loudness of errors in audio systems' AES 91st convention, New York, preprint 3209 (1991)
[15] Stuart, J.R. 'Estimating the significance of errors in audio systems' AES 91st convention, New York, preprint 3208 (1991)
[16] Stuart, J.R. 'Psychoacoustic models for evaluating errors in audio systems' Proceedings of the Institute of Acoustics, 13, part 7, 33 (1991)
[17] Stuart, J.R. 'Tape Noise Reduction', Wireless World, March 1972, pp.104–110.
[18] Jackson, H. M., Capp, M. D. and Stuart, J. R., 'The audibility of typical digital audio filters in a high-fidelity playback system', 9174, 137th AES Convention, (2014).
[19] Gerzon, M.A., and Craven, P.G., 'Optimal Noise Shaping and Dither of Digital Signals', 87th AES Convention, New York, preprint 2822 (1989)
[20] Craven, P.G., 'Antialias Filters and System Transient Response at High Sample Rates', J. Audio Eng. Soc., Vol.52, No.3, pp.216–242, (March 2004)
[21] Acoustic Renaissance for Audio, 'A Proposal for High-Quality Application of High-Density CD Carriers', private publication available for download at www.meridian-audio.com/ara (April 1995). Reprinted in Stereophile (August 1995) and in Japanese in J. Japan Audio Soc., 35 (October 1995)
[22] Lipshitz, S.P., Vanderkooy, J., 'Pulse-Code Modulation—An Overview', J. Audio Eng. Soc., Vol.52, No.3, pp.200–214 (March 2004)
[23] Shannon, C.E., 'Communication in the Presence of Noise', Proc.IRE, Vol.37 (1), pp.10–21, (Jan. 1949)
[24] Nyquist, H., 'Certain topics in telegraph transmission theory,' Trans. Amer. IEE, Vol.47, pp.617–644, (1928)
[25] Unser, M. 'Sampling—50 Years after Shannon', Proc. IEEE Vol.88 No.4, pp.569–587 (Apr. 2000)
[26] Dragotti, P.L., Vetterli, M., Blu, T., 'Sampling Signals With Finite Rate of Innovation', IEEE Trans.Sig. Proc. Vol.50, No.6, pp.1417–1428, (May 2007)
[27] Boyk, J., 'There's life above 20 kilohertz! A survey of musical instrument spectra to 102.4kHz', www.cco.caltech.edu/~boyk/spectra/spectra.htm. (2000)
[28] ADA, 'Proposal of Desirable Requirements for the Next Generation's Digital Audio', Advanced Digital Audio Conference, Japan Audio Society (April 1996)
[29] Oohashi, T., et al, 'Inaudible High-Frequency Sounds Affect Brain Activity: Hypersonic Effect', J. Neurophysiol, 83 pp.3548–3558, (2000).
[30] Oohashi, T., et al, 'Multidisciplinary study on the hypersonic effect', International Congress Series 1226, pp 27–42, (2002). http://dx.doi.org/10.1016/S0531-5131(01)00494-0
[31] Gabor, D., 'Theory of Communication', Journal of the Institution of Electrical Engineers, 93, III, p.429, (November 1946). http://dx.doi.org/10.1049/ji-1.1947.0015.
[32] Gabor, D., 'Acoustical Quanta and the Theory of Hearing', Nature, 159, pp.591–594, (1947). http://dx.doi.org/10.1038/159591a0.
[33] Oppenheim, J. M. and Magnasco, M. O., 'Human Time-Frequency Acuity Beats the Fourier Uncertainty Principle', Phys. Rev. Lett., 110, 044301, (2013). http://dx.doi.org/10.1103/PhysRevLett.110.044301.
[34] Oppenheim, J. M., et al, 'Degraded Time-Frequency Acuity to Time-Reversed Notes', PLOS ONE, 8, pp.1–6 (June 2013). http://dx.doi.org/10.1371/journal.pone.0065386.
[35] Oppenheim, J. M., et al., 'Minimal Bounds on Nonlinearity in Auditory Processing' (Jan 2013). arXiv:1301.0513 q-bio.NC.
[36] Maka, M, Sobieszczyk, P, et al., 'Hearing overcomes uncertainty relation', Euro Physics News 46 #1, pp.27–31.
[37] Stuart, J.R., 'A Comprehensive Q&A with MQA's Bob Stuart', www.computeraudiophile.com/content/694-comprehensive-q-mqa-s-bob-stuart/ (April 2016)
[38] www.e-onkyo.com/music/album/hsh001/.
[39] Harada, T., Ito, S, et al., 'Effect of High-Resolution Audio Music Box Sound on EEG,' International Music Journal, 23, #1, pp 1–3 (April 2016) www.researchgate.net/publication/299410459_Effect_of_High-Resolution_Audio_Music_Box_Sound_on_EEG.
[40] Fukamizu, H., 'Resonance' from 'Everything for Drums', Unamas 1006. www.e-onkyo.com/music/album/una1006/.
[41] Lindberg, M, 'Carl Nielsen Piano Music (2015 remaster MQA)', www.2l.no/pages/album/120.html.
[42] Various, '2L High-Res Download Testbench.' www.2l.no/hires/.
[43] Stuart, J.R., Lindberg, M., 'Supplementary listeners' notes for the 2L Test bench', www.2l.no/hires/documentation/2L-MQA_Comparisons.pdf (Jan 2016)
[44] www.stereophile.com/content/inside-mqa-manufacturers-comment.
[45] Woszczyk, W., Massenburg, G., McGill University, Montreal, Canada. Private communication, May 2016.
MQA: Questions and Answers Sidebar 4: References
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