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82. Reyes AD, Rubel EW, Spain WJ. In vitro analysis of optimal stimuli for phase- locking and time-delayed modulation of firing in avian nucleus laminaris neu- rons. J. Neurosci. 16: 993-1000, 1994 | Sách, tạp chí |
|
||
84. Rosowski JJ. Models of external- and middle-ear function. In: Auditory Com- putation, edited by H.L. Hawkins, T.A. McMullen, A.N. Popper, and R.R. Fay.New York: Springer-Verlag, 1996 | Sách, tạp chí |
|
||
86. Ruggero MA and Semple MN, “Acoustics, Physiological”, Encyclopedia of Ap- plied Physics, vol. 1, 1991 | Sách, tạp chí |
|
||
109. Wightman FL, and Kistler DJ. Sound localization. In Human Psychophysics, edited by W. A. Yost, A. N. Popper, and R. R. Fay. New York: Springer-Verlag, pp 155-192, 1993 | Sách, tạp chí |
|
||
20. Digital Anatomist Project, Department of Biological Structure, University of Washington, http://www9.biostr.washington.edu | Link | |||
1. Adams JC. Ascending projections to the inferior colliculus, J. Comp. Neurol.183: 519-538, 1979 | Khác | |||
2. Agmon-Snir H, Carr CE, Rinzel J. A case study for dendritic function: improv- ing the performance of auditory coincidence detectors, Nature 393: 268-272, 1998 | Khác | |||
3. Allen JB. Two-dimensional cochlear fluid model: new results, J. Acoust. Soc.Am. 61: 110-119, 1977 | Khác | |||
4. Allen JB, Sondhi MM. Cochlear macromechanics: time domain solutions, J.Acoust. Soc. Am. 66: 123-132, 1979 | Khác | |||
5. Anderson DJ, Rose JE, Hind JE, Brugge JF. Temporal position of discharges in single auditory nerve fibers within the cycle of a sine-wave stimulus: frequency and intensity effects, J. Acoust. Soc. Am. 49: 1131-1139, 1971 | Khác | |||
6. Banks MI and Sachs MB. Regularity analysis in a compartmental model of chopper units in the anteroventral cochlear nucleus. J. Neurophysiol. 65: 606- 629, 1991 | Khác | |||
7. Beyer RP. A computational model of the cochlea using the immersed boundary method, J. Comp. Phys. 98: 145-162, 1992 | Khác | |||
8. Blackburn CC and Sachs MB. Classification of unit types in the anteroventral cochlear nucleus: PST histograms and regularity analysis, J. Neurophys. 62:1303-1329, 1989 | Khác | |||
9. Blum JJ, Reed MC, Davies JM. A computational model for signal processing by the dorsal cochlear nucleus. II. Responses to broadband and notch noise. J.Acoust. Soc. Am. 98: 181-91, 1995 | Khác | |||
10. Bogert BP. Determination of the effects of dissipation in the cochlear partition by means of a network representing the basilar membrane, J. Acoust. Soc. Am.23: 151-154, 1951 | Khác | |||
11. Borisyuk A, Semple MN, Rinzel J. Computational model for the dynamic as- pects of sound processing in the auditory midbrain, Neurocomputing 38: 1127- 1134, 2001 | Khác | |||
12. Borisyuk A, Semple MN and Rinzel J. Adaptation and Inhibition Underlie Responses to Time-Varying Interaural Phase Cues in a Model of Inferior Col- liculus Neurons, J. Neurophysiol. 88: 2134-2146, 2002 | Khác | |||
13. Brand A, Behrend O, Marquardt T, McAlpine D, Grothe B. Precise inhibition is essential for microsecond interaural time difference coding, Nature 417: 543- 547, 2002 | Khác | |||
16. Carney LH. A model for the responses of low-frequency auditory-nerve fibers in cat. J. Acoust. Soc. Am. 93: 401-417, 1993 | Khác | |||
17. Chadwick RF. Studies in cochlear mechanics, in: M.H. Holmes, A. Ruben- feld (Eds.), Mathematical Modeling of the Hearing Process, Lecture Notes in Biomathematics, vol. 43, Springer, Berlin, 1980 | Khác |
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