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M. Rockstein) Vol. VI, pp. 216-270. Academic Press, New York and London Hadley, N. F. (1978). Cuticular permeability of desert tenebrionid beetles: correlation with epicuticular hydrocarbon composition. Insect Biochem. 8, 17-22 Hadley, N. F. (1979). Wax secretion and color phases of the desert tenebrionid beetle Cryptoglossa virrucosa (Le Conte). Science 203, 367-369 Holdgate, M. W. (1 956). Transpiration through the cuticles of some aquatic insects. J. Exp. Biol. 33, 107-118 Holdgate, M. W. and Seal, M.
1974). Permeability of insect cuticle. In “Physiology of Insecta” (Ed. M. Rockstein) Vol. VI, pp. 271-343. Academic Press, New York and London Edney, E. B. (1977). “Water Balance in Land Arthropods” (Zoophysiology and Ecology, Vol. 9) Springer-Verlag, Berlin, Heidelberg and New York Edney, E. B. and McFarlane, J. (1974). The effect of temperature on transpiration in the desert cockroach, Arenivaga investigata, and in Periplaneta americana. Physiol. Zool. 47, 1-12 Filshie, B. K. (1970a). The resistance of epicuticular components of an insect to extraction with lipid solvents.
Oschman and B. J. Wail) Vol. 5 , pp. 571-597. Academic Press, New York and London Oloffs, P. C. and Scudder, G. G. E. (1965). The transition phenomenon in relation to the penetration of water through the cuticle of an insect, Cenocorixa expleta (Hungerford). Can. J. Zool. 44, 621-662 Ramsay, J. A. (1935a). Methods of measuring the evaporation of water from animals. J . Exp. Biol. 12, 355-372 TRANSPIRATION, TEMPERATURE A N D LIPIDS 33 Ramsay, J . A . (1935b). The evaporation of water from the cockroach.