Clifford, J. (1975) Properties of water in capillaries and thin films . In Water: A Comprehensive Treatise, Vol. 5, F. Franks, ed., pp. 75-132, Plenum Press, New York.
2.
Drost-Hansen, W. (1971) Structure and properties of water at biological interfaces. In Chemistry of the Cell Interface, H. D. Brown, ed., pp. 2-184, Academic Press, New York.
3.
Dunlap, J.C., and J.F. Feldman (1988) On the role of protein synthesis in the circadian clock of Neurospora crassa. Proc. Natl. Acad. Sci. USA85: 1096-1100.
4.
Gardner, G.F., and J.F. Feldman (1981) Temperature compensation of circadian period length in clock mutants of Neurospora crassa. Plant Physiol.68: 1244-1248.
5.
Hastings, J.W., and B.M. Sweeney (1957) On the mechanism of temperature independence in a biological clock. Proc. Natl. Acad. Sci. USA43: 804-811.
6.
Hazel, J.R., and C.L. Prosser (1974) Molecular mechanisms of temperature compensation in poikilotherms. Physiol. Rev.54: 620-677.
7.
Kramer, P.J. (1983) Water Relations of Plants, Academic Press, New York.
8.
Lakin-Thomas, P.L., G.C. Coté, and S. Brody (1990) Circadian rhythms in Neurospora crassa: Biochemistry and genetics. Crit. Rev. Microbiol.17: 365-416.
9.
Loros, J.J., and J.F. Feldman (1986) Loss of temperature compensation of circadian period length in the frg-9 mutant of Neurospora crassa. J. Biol. Rhythms1: 187-198.
10.
Mattern, D.L., L.R. Forman, and S. Brody (1982) Circadian rhythms in Neurospora crassa: A mutation affecting temperature compensation. Proc. Natl. Acad. Sci. USA79: 825-829.
11.
Nakashima, H., and J.F. Feldman (1980) Temperature-sensitivity of light-induced phase shifting of the circadian clock of Neurospora. Photochem. Photobiol.32 : 247-251.
12.
Njus, D., F.M. Sulzman, and J.W. Hastings (1974) Membrane model for the circadian clock. Nature248: 116-119.
13.
Roberts, M.H. (1990) Commentary: The properties of cell water relative to the temperature compensation of circadian rhythms. J. Biol. Rhythms5: 175-176.