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The Cochlear Geometry as a Frequency Analyser

Published online by Cambridge University Press:  29 June 2007

L. Naftalin
Affiliation:
Biochemical Laboratory, St. George's Hospital, Long Leys Road, Lincoln.

Abstract

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Type
Research Article
Copyright
Copyright © JLO (1984) Limited 1967

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References

REFERENCES

Bast, T. H., and Anson, B. J. (1949) The temporal bone and the ear. Springfield, Ill.Google Scholar
Hyrtl, J. (1845) Vergleichend-anatomische Untersuchungen über das inner. Gehörorgan des Menschen and der Säugethiere, Prague.Google Scholar
Littler, T. S. (1965) The physics of the ear. London and New York.Google Scholar
Naftalin, L. (1965) Cold Spr. Harb. Symp. quant. Biol., 30, 169.CrossRefGoogle Scholar
Naftalin, L.Harrison, M., and Stephens, A. (1964) J. Laryng., 78, 1061.CrossRefGoogle Scholar
Némethy, G., and Scheraga, H. A. (1962) J. Chem. Phys. 36, 3382CrossRefGoogle Scholar
Némethy, G., and Scheraga, H. A. (1962) J. Phys. Chem. 66, 1773.CrossRefGoogle Scholar
Shambaugh, G. E. (1907) Amer. J. Anat., 7, 245.CrossRefGoogle Scholar
Spector, W. S. (1956) Handbook of Biological data. Philadelphia.Google Scholar
Stevens, S. S., and Davis, H. (1938) Hearing; its psychology and physiology. New York.Google Scholar