Aoba T., Fukae M., Tanabe T., Shimizu M., Moreno EC (1987a). Selective absorption of porcine-amelogenins onto hydroxyapatite and their inhibitory activity on hydroxyapatite growth in supersaturated solutions. Calcif Tissue Int41:281-289.
2.
Aoba T., Tanabe T., Moreno EC (1987b). Function of amelogenins in porcine enamel mineralization during the secretory stage of amelogenesis. Adv Dent Res1:252-260.
3.
Bawden JW, Keels MA, Deaton TG, Crenshaw MA (1988). The Ca, P, F, and proline content of developing bovine enamel under GBHA-stained and unstained bands. J Dent Res67:938-941.
4.
Brunelle JA, Carlos JP (1982). Changes in the prevalence of dental caries in U.S schoolchildren, 1961-1980. J Dent Res61(Spec Iss):1346-1351.
5.
Creath CJ, Eick JD, Hicks EP (1989). Effects of systemic fluoride on rat molar morphology . Caries Res23:26-31.
6.
Crenshaw MA, Bawden JW (1984). Proteolytic activity in embryonic bovine secretory enamel. In: Tooth enamel IV. Fearnhead RW, Suga S, editors. Amsterdam, The Netherlands: Elsevier Science, pp. 109-113.
7.
DenBesten PK (1986). Effects of fluoride on protein secretion and removal during enamel development in the rat. J Dent Res65:1272-1277.
8.
DenBesten PK, Crenshaw MA (1984). The effects of chronic high fluoride levels on forming enamel in the rat. Arch Oral Biol29:675-679.
9.
DenBesten PK, Heffernan LM (1989a). Separation by PAGE of multiple proteases present in rat and bovine enamel. Arch Oral Biol34:399-404.
10.
DenBesten PK, Heffernan LM (1989b). Enamel proteases in secretory and maturation incisor enamel of rats ingesting 0 and 100 ppm fluoride in drinking water . Adv Dent Res3:199-202.
11.
DenBesten PK, Thariani H. (1992). Biological mechanisms of fluorosis and level and timing of systemic exposure to fluoride with respect to fluorosis. J Dent Res71:1238-1243. DenBesten PK, Crenshaw MA, Wilson MH (1985). Fluoride-induced changes in the modulation of maturation stage ameloblasts of rats. J Dent Res64:1365-1370.
12.
Fejerskov O., Johnson N., Silverstone L. (1974). The ultrastructure of fluorosed enamel. Scand J Dent Res82:357-372. Fejerskov O., Josephsen K., Larsen MJ, Thylstrup A. (1980). Cytological features of rat ameloblasts following long-term
13.
fluoride exposure. Caries Res14:181-182.
14.
Fejerskov O., Manji F., Baelum V. (1990). The nature and mechanisms of dental fluorosis in man. J Dent Res69 :692-700.
15.
Graves RC, Stamm JW (1985). Oral health status in the United States: prevalence of dental caries. J Dent Educ49:341-351. Heifetz SB, Driscoll WS, Horowitz HS, Kingman A. (1988). Prevalence of dental caries and dental fluorosis in areas with optimal and above-optimal water-fluoride concentrations. J Am Dent Assoc116:490-495.
16.
Kashiwa HK (1970). Calcium phosphate in osteogenic cells. Clin Orthop Rel Res70:200-211.
17.
Kumar JV, Green EL, Wallace W., Carnahan T. (1989). Trends in dental fluorosis and dental caries prevalence in Newburg and Kingston, NY. Am J Publ Health790:565-569.
18.
LeGeros RZ (1983). Ultrastructural properties of human enamel apatite . In: Handbook of experimental aspects of oral biochemistry . Lazzari P, editor. Boca Raton, FL: CRC Press, pp. 159-179.
19.
LeGeros RZ (1984). Incorporation of magnesium in synthetic and in biological apatites. In: Tooth enamel IV. Fearnhead RW, Suga S , editors. Amsterdam, The Netherlands: Elsevier Science Publishers B.V., pp. 32-36.
20.
LeGeros RZ (1991). Calcium phosphates in oral biology and medicine . In: Monogr in oral science. Vol. 15. Basel: Karger. LeGeros RZ, Tung MS (1983). Chemical stability of carbonate and fluoride containing apatites. Caries Res17:419-429. LeGeros RZ, Kijkowska T., Jia WT, LeGeros JP (1988). Fluoride-cation interaction in the formation and stability of apatites. J Fluor Chem41:53-64.
21.
LeGeros RZ, Daculsi G., Orly I., Abergas T., Torres W. (1989). Solution-mediated transformation of octacalcium phosphate (OCP) to apatite. Scan Electr Microsc3:129-138. Leverett DH (1982). Fluorides and the changing prevalence of dental caries. Science217:26-30.
22.
Leverett DH (1986). Prevalence of dental fluorosis in fluoridated and non-fluoridated communities-a preliminary investigation. J Publ Health Dent46:184-187.
23.
Leverett DH (1991). Appropriate uses of systemic fluoride: considerations for the 90s. J Publ Health Dent51:42-47. Lovius BBJ, Goose DH (1969). The effect of water fluoridation on tooth morphology . Br Dent J127:322-324.
24.
Mayer I., Schneider S., Sydney-Zax M., Deutsch D. (1990). Thermal decomposition of developing enamel. Calcif Tissue Int46:254-257.
25.
Milhaud GE, Charles E., Loubiere M-L., Kolf-Clauw M., Joubert C. (1992). Effects of fluoride on secretory and postsecretory phases of enamel formation in sheep molars. Am J Vet Res53:1241-1247.
26.
Moran RA, Deaton TG, Bawden JW (1995). Problems associated with estimation of net calcium uptake during enamel formation using 45Ca. J Dent Res (accepted for publication). Overall CM, Limeback H (1988). Identification and characterization of enamel proteinases isolated from developing enamel. Biochem J256:965-972.
27.
Patterson CM, Basford KE, Kruger BJ (1976). The effect of fluoride on the immature enamel matrix protein of the rat.
28.
Arch Oral Biol21:131-132.
29.
Pendrys DG, Stamm JW (1990). Relationship of total fluoride intake to beneficial effects and enamel fluorosis. J Dent Res69(Spec Iss):529-538.
30.
Robinson C., Kirkham J. (1990). The effect of fluoride on the developing mineralized tissues. J Dent Res69:685-691. Sasaki S., Takagi T., Suzuki M. (1991a). Cyclic changes in pH in bovine developing enamel as sequential bands. Arch Oral Biol36:227-231.
31.
Sasaki S., Takagi T., Suzuki M. (1991b). Amelogenin degredation by an enzyme having acidic pH optimum and the presence of acidic zones in developing bovine enamel.
32.
In: Mechanisms and phylogeny of mineralization in biologic systems. Suga S, Nakahara H, editors. Tokyo: Springer-Verlag, pp. 79-81.
33.
Segreto VA, Camman D., Collins EM, Smith CT (1984). A current study of mottled enamel in Texas. J Am Dent Assoc108 :56-59.
34.
Shinoda H. (1983). Effects of long-term administration of fluoride on the enamel formation in rats. In: Mechanisms of tooth enamel formation. Suga S, editor. Tokyo, Japan: Quintessence Publishing Co. Inc., pp. 273-284.
35.
Smith CE, McKee MD, Nanci A. (1987). Cyclic induction and rapid movement of sequential waves of new smooth-ended ameloblast modulation bands in rat incisors as visualized by polychrome fluorescent labeling and GBHA staining of maturing enamel. Adv Dent Res1:162-175.
36.
Smith CE, Nanci A., DenBesten PK (1993). Effects of chronic fluoride exposure on morphometric parameters defining the stages of amelogenesis and ameloblast modulation in rat incisors. Anat Rec237:243-258.
37.
Suga S. ( 1982). Progressive mineralization pattern of developing enamel during the maturation stage. J Dent Res61(Spec Iss):1532-1542:
38.
Sydney-Zax M., Mayer I., Deutsch D. (1991). Carbonate content in developing human and bovine enamel. J Dent Res70:913-916. Szpunar SM, Burt BA (1988). Dental caries, fluorosis, and fluoride exposure in Michigan schoolchildren . J Dent Res67:802-806.
39.
Takano Y., Crenshaw MA, Bawden JW, Hammarstrom L. (1982). The visualization of patterns of ameloblast modulation by glyoxal bis (2-hydroxyanil) staining method. J Dent Res61(Spec Iss):1580-1586.
40.
US Public Health Service (1991). Review of fluoride benefits and risks. Report of the Ad Hoc Subcommittee on Fluoride. Washington, DC: US Government Printing Office. Varughese K., Moreno EC (1981). Crystal growth of calcium
41.
Weatherell JA, Deutsch D., Robinson C., Hallsworth AS (1975). Fluoride concentrations in developing enamel. Nature256:230-232.
42.
Weatherell JA, Robinson C., Deutsch D. (1982). Mechanism of fluoride action and fluorosis. Fluoride15:64-69. Yanagisawa T., Takuma S., Fejerskov O. (1989). Ultrastructure and composition of enamel in human dental fluorosis. Adv Dent Res3:203-210.