284 JOURNAL OF THE SOCIETY OF COSMETIC CHEMISTS ACKNOWLEDGEMENTS The author thanks Dr. Mario Garcia and June Hull for SEM micrographs of damaged hair. REFERENCES (1) (2) (3) (4) (5) (6) (7) (8) (9) (10) (25) (26) (27) C. R. Robbins, York, 1979). M. Feughelman, R. D. B. Fraser, wool fiber, Proc. J. H. Bradbury, (1973). Chemical and Physical Behavior of Human Hair (Van Nostrand Reinhold Co., New The physical properties of alpha-keratins, J. Soc. Cosmet, Chem., 33, 385 (1982). L. N. Jones, R. P. Macrae, E. Suzuki, and P. A. Tulloch, The fine structure of the 6th Quinquennial International Wool Textile Research Conf., Vol. I, Pretoria (1980). The structure and chemistry of keratin fibers, Advances in Protein Chemistry, 27, 111 L. J. Wolfram and M. Lindemann, Some observations on the hair cuticle, J. Soc. Cosmet. Chem., 22, 839 (1971). L.J. Wolfram and L. Albrecht, Torsional behavior of human hair, J. Soc. Cosmet. Chem., 36, 87 (1985). M. Feughelman and M. S. Robinson, Some mechanical properties of wool fibers in the "Hookean" region from zero to 100% relative humidity, Text. Res. J., 41,469 (1971). M. Feughelman, A two-phase structure for keratin fibers, J. Text. Res., 29, 223 (1959). W. W. Edman and M. E. Marti, Properties of peroxide-bleached hair,./. Soc. Cosmet. Chem., 12, 133 (1961). L. J. Wolfram, K. Hall, and I. Hui, The mechanism of hair bleaching, J. Soc. Cosmet. Chem., 21, 875 (1970) R. Beyak, C. F. Meyer, and G. S. Kass, Elasticity and tensile properties of human hair. I. Single fiber test method, J. Soc. Cosmet. Chem., 20, 615 (1969). (11) D. E. Deem and M. M. Rieger, Mechanical hysteresis of chemically modified hair, J. Soc. Cosmet. Chem., 19, 395 (1968). (12) N. Tokita, The effects of crystallization and drawing on the viscoelastic properties of fibers, J. Polym. Sci., 20, 515 (1956). (13) P. J. Huck and C. B. Baddiel, The mechanical properties of virgin and treated human hair fibers a study by means of the oscillating beam method, J. Soc. Cosmet. Chem., 22, 401 (1971). (14) H. Bogaty, Torsional properties of hair in relation to permanent waving and setting, J. Soc. Cosmet. Chem., 18, 575 (1967). (15) E. I. Valko and G. Barnett, A study of the swelling of hair in mixed aqueous solvents,J. Soc. Cosmet. Chem., 3, 108 (1952). (16) J. Lindberg and N. Gralen, Measurement of friction between single fibers. II. Frictional properties of wool fibers measured by the fiber-twist method, Text. Res. J., 18, 287 (1948). (17) N. Fair and B. S. Grupta, Effects of chlorine on friction and morphology of human hair, J. Soc. Cosmet. Chem., 33, 229 (1982). (18) W. Newman, G. L. Cohen, and C. Hayes, A quantitative characterization of combing force, J. Soc. Cosmet. Chem., 24, 773 (1973). (19) M. L. Garcia and J. Diaz, Combability measurements on human hair,./. Soc. Cosmet. Chem., 27, 379 (1976). (20) M.D. Berthiaume and J. Jachowicz, unpublished results. (21) W. T. Humphries, D. L. Miller, and R. H. Wildnauer, The thermomechanical analysis of natural and chemically modified human hair,./. Soc. Cosmet. Chem., 23, 359 (1972). (22) C. R. Robbins and M. K. Bahl, Analysis of hair by electron spectroscopy for chemical analysis, J. Soc. Cosmet. Chem., 35, 379 (1984). (23) G. E. Rogers, Electron microscope studies of wool and hair, Ann. N.Y. Acad. Sci., 83, 378 (1959). (24) G. Mahrle, W. Sterry, and C. E. Orfanos, "The Use of Scanning Electron Microscopy to Assess Damage of Hair," in Hair Research, C. E. Orfanos, W. Montagna, and G. Stuttgen, Eds. (Springer- Verlag, New York, 1981), p. 524. I. J. Kaplin, A. Schwan, and H. Zahn, Effects of cosmetic treatments on the ultrastructure of hair, Cosmetics and Toiletries, 97, 22 (1982). A. C. Brown and J. A. Swift, Hair breakage: The scanning electron microscope as a diagnostic tool, J. Soc. Cosmet. Chem., 26, 289 (1975). M. L. Garcia, J. A. Epps, and R. S. Yare, Normal cuticle-wear patterns in human hair, J. Soc. Cosmet. Chem., 29, 155 (1976).
HAIR DAMAGE 285 (28) (29) (30) (31) (32) (33) (34) (35) (36) (37) (38) (39) (40) (41) (42) (43) (44) (45) (46) (47) (48) (49) (50) (51) (52) (53) (54) (55) (56) (57) J. G. Gould and R. L. Sneath, Electron microscopy-image analysis: Quantification of ultrastructural changes in hair fiber cross sections as a result of cosmetic treatment, J. Soc. Cosmet. Chem., 36, 53 (1985). C. Robbins, Infrared analysis of oxidized keratins, Text. Res. J., 37, 811 (1967). R. C. Shah and R. S. Gandhi, Infrared analysis of oxidized keratins, Text. Res. J., 38, 874 (1968). H. Alter and M. Bit-Alkhas, Infrared analysis of oxidized keratins, Text. Res. J., 39, 479 (1969). J. Strassburger and M. M. Breuer, Quantitative Fourier transform infrared spectroscopy of oxidized hair, J. Soc. Cosmet. Chem., 36, 61 (1985). P. Berth and G. Reese, Veranderung des haarkeratins durch kosmetische behandlung und naturliche umwelteinflusse, J. Soc. Cosmet. Chem., 15, 659 (1964). J. A. Faucher and E. D. Goddard, Influence of surfactants on the sorption of a cationic polymer by keratinous substrates, J. Colloid Interface Sci., 55 (2), 313 (1976). K. Lees and F. F. Elsworth, Alkali solubility test for detecting the degree of fiber damage in wool, J. Dyers and Colourists, 68, 207 (1952). J. A. Swift and A. C. Brown, The critical determination of fine changes in the surface architecture of human hair due to cosmetic treatment, J. Soc. Cosmet. Chem., 23, 695 (1972). V. N. E. Robinson, A study of damaged hair, J. Soc. Cosmet. Chem., 27, 155, (1976). Y. K. Kamath, S. B. Hornby, and H.-D. Weigman, Mechanical and fractographic behavior of Negroid hair, J. Soc. Cosmet. Chem., 35, 21 (1984). J. Chao, A. E. Newsom, I. M. Wainwright, and R. A. Mathews, Comparison of the effects of some reactive chemicals on the proteins of whole hair, cuticle and cortex, J. Soc. Cosmet. Chem., 30, 401 (1979). C. Robbins and C. Kelly, Amino acid analysis of cosmetically altered hair, J. Soc. Cosmet. Chem., 20, 555 (1969). L. J. Wolfram, "The Reactivity of Human Hair. A Review," in Hair Research, C. E. Orfanos, W. Montagna, and G. Stuttgen, Eds. (Springer-Verlag, New York, 1981). E. O. P. Thompson and I. J. O'Donnel, Comparison of the completeness of oxidation with paracetic and performic acid, Aust. J. Biol. Sci., 12, 490 (1959). J. G. Gumprecht, K. Patel, and R. P. Bono, Effectiveness of reduction and oxidation in acid and alkaline permanent waving, J. Soc. Cosmet. Chem., 28, 717 (1977). D. W. Felix, M. A. McDowall, and H. Eyring, The differential thermal analysis of natural and modified wool and mohair, Text. Res. J., 33, 465 (1963). R. A. O'Connel and M. K. Walden, Influence of ionizing radiations on wool fiber properties, Text. Res. J., 27, 516 (1957). P. Berth and G. Reese, Alteration of hair keratin by cosmetic processing and natural environr•ental influences, J. Soc. Cosmet. Chem., 15, 659 (1964). R. Beyak, G. S. Kass, and C. F. Meyer, Elasticity and tensile properties of human hair. II. Light radiation effects, J. Soc. Cosmet. Chem., 22, 667 (1971). F. Joubert, D. P. Botes, and T. Haylett, The action of ultraviolet light on wool, J. Afr. Chem. Inst., 17, 44 (1964). J. I. Dunlop and C. H. Nicholls, Electron spin resonance studies of UV irradiated keratin and related proteins, Photochem. Photobiol., 4, 891 (1965). A. Shatkay and I. Michaeli, Electron paramagnetic resonance study of wool irradiated by ultra-violet and visible light, Radiat. Res., 43, 485 (1970). M. M. Bhan and A.D. Sule, The effect of sunlight on canary-stained wools,J. Text. Inst. Trans., 58, 46 (1967). R. A. Luse and A.D. McLaren, Mechanism of enzyme inactivation by ultraviolet light and the photochemistry of amino acids at 2537 A, Photochem. Photobiol., 2, 343 (1963). P. Alexander and J. T. Lett, "Effects of Ionizing Radiations on Biological Macromolecules," in Com- prehensive Biochemistry, Vol. 27.' Photobiology, Ionizing Radiation, M. Florkin and E. H. Slotz Eds. (American Elsevier, New York, 1967), p. 267. H. Zahn and G. Blankenburg, Action of alcohol-water mixtures on wool, Text. Res. J., 34, 176 (1964). D. Lu and M. Breuer, The tensile properties of hair fibers in 1-propanol water mixtures, J. Soc. Cosmet. Chem., 28, 695 (1977). M. Feughelman and A. R. Haly, Interaction between perfluorooctanoic acid and the fibrous keratin and collagen, Blochim. Biophys. Acta, 43, 550 (1960). H. Zahn, W. Stein, and G. Blankenburg, The influence of surfactants on the physical properties of keratin fibers, Fette, Seij•n, Anstrichm, 70(10), 757 (1968).
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