• Keine Ergebnisse gefunden

1 Alfano RR, Yao SS. Human teeth with and without dental caries studied by visible luminescent spectroscopy. J Dent Res 1981;60:120-2.

2 Al-Khateeb S, Oliveby A, de Josselin de Jong E, Angmar-Mansson B. Laser fluorescence quantification of remineralisation in situ of incipient enamel lesions: influence of fluoride supplements. Caries Res 1997;31:132-40.

3 Allen KL, Salgado TL, Janal MN, Thompson VP. Removing carious dentin using a polymer instrument without anesthesia versus a carbide bur with anesthesia. J Am Dent Assoc 2005;136:643-51.

4 Anderson BG. Clinical study of arresting dental caries.

J Dent Res 1938;17:443-52.

5 Angker L, Nijhof N, Swain MV, Kilpatrick NM. Influence of hydration and mechanical characterization of carious primary dentine using an ultra-micro indentation system (UMIS). Eur J Oral Sci 2004;112:231-6.

6 Angmar-Mansson BE, al-Khateeb S, Tranaeus S. Caries diagnosis.

J Dent Educ 1998;62:771-80.

7 Armstrong WG. Fluorescence characteristics of sound and carious human dentine preparations. Arch Oral Biol 1963;8:79-90.

8 Banerjee A, Boyde A. Autofluorescence and mineral content of carious dentine: scanning optical and backscattered electron microscopic studies.

Caries Res 1998;32:219-26.

9 Banerjee A, Sherriff M, Kidd EA, Watson TF. A confocal microscopic study relating the autofluorescence of carious dentine to its microhardness.

Br Dent J 1999;187:206-10.

10 Banerjee A, Kidd EA, Watson TF. In vitro evaluation of five alternative methods of carious dentine excavation. Caries Res 2000;34:144-50.

11 Banerjee A, Kidd EA, Watson TF. Scanning electron microscopic observations of human dentine after mechanical caries excavation.

J Dent 2000;28:179-86.

12 Banerjee A, Watson TF, Kidd EA. Dentine caries excavation: a review of current clinical techniques. Br Dent J 2000;188:476-82.

13 Banerjee A, Watson TF, Kidd EA. Dentine caries: take it or leave it?

SADJ 2001;56:186-92.

14 Banerjee A, Kidd EA, Watson TF. In vitro validation of carious dentin removed using different excavation criteria. Am J Dent 2003;16:228-30.

15 Banerjee A, Gilmour A, Kidd E, Watson T. Relationship between S. mutans and the autofluorescence of carious dentin. Am J Dent 2004;17:233-6.

16 Baume LJ. The biology of pulp and dentine: a historic,

terminologic-taxonomic, histologic-biochemical, embryonic and clinical survey. In: Myers HM, Hrsg. Monographs in oral science. Vol. 8. Basel: Karger; 1980. S. 54.

17 Baysan A, Whiley RA, Lynch E. Antimicrobial effect of a novel ozone- generating device on micro-organisms associated with primary root carious lesions in vitro. Caries Res 2000;34:498-501.

18 Baysan A, Lynch E. Minimally invasive dentistry using ozone. In: Roulet JF, Vanherle G, Hrsg. Adhesive technology for restaurative dentistry.

London: Quintessence; 2005. S. 97-114.

19 Beeley JA, Yip HK, Stevenson AG. Chemochemical caries removal: a review of the techniques and latest developments. Br Dent J 2000;188:427-30.

20 Benedict HC. A note on the fluorescence of teeth in ultra-violet rays.

Science 1928;67:442.

21 Benedict HC. The fluorescence of teeth as another method of attack on the problem of dental caries. J Dent Res 1929;9:274-5.

22 Björndal L, Larsen T, Thylstrup A. A clinical and microbiological study of deep carious lesions during stepwise excavation using long treatment intervals.

Caries Res 1997;31:411-7.

23 Björndal L, Larsen T. Changes in the cultivable flora in deep carious lesions following a stepwise excavation procedure. Caries Res 2000;34:502-8.

24 Björndal L, Mjör IA. Pulp-dentin biology in restorative dentistry. Part 4:

Dentin caries – characteristics of lesions and pulpal reactions.

Quintessence Int 2001;32:717-36.

25 Booij M, ten Bosch JJ. A fluorescent compound in bovine dental enamel matrix compared with synthetic dityrosine. Arch Oral Biol 1982;27:417-21.

26 Boston DW. New device for selective dentin caries removal.

Quintessence Int 2003;34:678-85.

27 Boston DW, Liao J. Staining of non-carious human coronal dentin by caries dyes. Oper Dent 2004;29:280-86.

28 Boston D. Persönliche Mitteilung. März 2005.

29 Bowden GH, Milnes AR, Boyar R. Streptococcus mutans and caries:

State of the art 1983. In: Guggenheim B, Hrsg. Cariology today:

Int. congr., Zürich 1983. Basel: Karger; 1984. S. 173-81.

30 Braden M. Biophysics of the tooth. Front Oral Physiol 1976;2:1-37.

31 Brännström M, Garberoglio R. Occlusion of dentinal tubules under superficial attrited dentine. Swed Dent J 1980;4:87-91.

32 Braun A, Frentzen M, Nolden R. Beeinflussung der Laser-Fluoreszenz-Messung durch Zahnreinigungsmaßnahmen.

Dtsch Zahnärztl Z 1999;54:195-7.

33 Braun A, Gräfen O, Nolden R, Frentzen M. Vergleich herkömmlich klinisch diagnostizierter Kariesstadien mit Werten der Laser-Fluoreszenz-Messung.

Dtsch Zahnärztl Z 2000;55:248-51.

34 Buchalla W, Lennon AM, Attin T. Comparative fluorescence spectroscopy of root caries lesions. Eur J Oral Sci 2004;112:490-6.

35 Buchalla W, Lennon AM, Attin T. Fluorescence spectroscopy of dental calculus. J Periodontal Res 2004;39:327-32.

36 Burns T, Wilson M, Pearson GJ. Effect of dentine and collagen on the lethal photosensitization of Streptococcus mutans. Caries Res 1995;29:192-7.

37 Burrow MF, Bokas J, Tanumiharja M, Tyas MJ. Microtensile bond strengths to caries-affected dentine treated with Carisolv. Aust Dent J 2003;48:110-4.

38 Ceballos L, Camejo DG, Victoria Fuentes M, Osorio R, Toledano M,

Carvalho RM, Pashley DH. Microtensile bond strength of total-etch and self-etching adhesives to caries-affected dentine. J Dent 2003;31:469-77.

39 Çehreli ZC, Akca T, Altay N. Bond strengths of polyacid-modified resin composites and a resin-modified glass-ionomer cement to primary dentin.

Am J Dent 2003;16 Spec No:47A-50A.

40 Çehreli ZC, Yazici AR, Akca T, Özgünaltay G. A morphological and micro-tensile bond strength evaluation of a single-bottle adhesive to caries-affected human dentine after four different caries removal techniques.

J Dent 2003;31:429-35.

41 Chng HK, Yap AU, Wattanapayungkul P, Sim CP. Effect of traditional and alternative intracoronal bleaching agents on microhardness of human dentine.

J Oral Rehabil 2004;31:811-6.

42 Clarkson BH, Hall DL, Heilman JR, Wefel JS. Effect of proteolytic enzymes on caries lesion formation in vitro. J Oral Pathol 1986;15:423-9.

43 Conrado CA. Remineralization of carious dentin. II: In vivo

microradiographic and chemical studies in human permanent teeth capped with calcium hydroxide. Braz Dent J 2004;15:186-9.

44 Cox CF, Felton D, Bergenholtz G. Histopathological response of infected cavities treated with Gluma and Scotchbond dentin bonding agents.

Am J Dent 1988;1 Spec No:189-94.

45 Craig RG, Peyton FA. The micro-hardness of enamel and dentin.

J Dent Res 1958;37:661-8.

46 Craig RG, Gehring PE, Peyton FA. Relation of structure to the microhardness of human dentin. J Dent Res 1959;38:624-30.

47 Dammaschke T, Dähne L, Kaup M, Stratmann U, Ott K. Effektivität von Carisolv im Vergleich zu konventionellen Methoden zur Entfernung kariösen Dentins. Dtsch Zahnärztl Z 2001;56:472-5.

48 de Josselin de Jong E, Sundström F, Westerling H, Tranaeus S, ten Bosch JJ, Angmar-Mansson B. A new method for in vivo quantification of changes in initial enamel caries with laser fluorescence. Caries Res 1995;29:2-7.

49 Dias WR, Pereira PN, Swift EJ Jr. Effect of bur type on microtensile bond strengths of self-etching systems to human dentin.

J Adhes Dent 2004;6:195-203.

50 DIN Deutsches Institut für Normung e. V. Deutsche Norm:

Hochleistungskeramik; Monolithische Keramik – Mechanische Eigenschaften bei Raumtemperatur, Teil 4: Vickers-, Knoop- und Rockwellhärteprüfung;

Deutsche Fassung prEN 843-4:2002. Entwurf. November 2002.

DIN EN 843-4.

51 Dippel HW, Borggreven JM, Hoppenbrouwers PM. Morphology and permeability of the dentinal smear layer. J Prosthet Dent 1984;52:657-62.

52 Doi J, Itota T, Yoshiyama M, Tay FR, Pashley DH. Bonding to root caries by a self-etching adhesive system containing MDPB. Am J Dent 2004;17:89-93.

53 Donmez N, Belli S, Pashley DH, Tay FR. Ultrastructural correlates of in vivo/in vitro bond degradation in self-etch adhesives.

J Dent Res 2005;84:355-9.

54 Dorter C, Yildiz E, Erdemir U. Effect of operators’ skills on increase in cavity volume of restorations. Quintessence Int 2003;34:27-30.

55 Dourda AO, Moule AJ, Young WG. A morphometric analysis of the cross-sectional area of dentine occupied by dentinal tubules in human third molar teeth. Int Endod J 1994;27:184-9.

56 Eberhard J, Kargas K, Albers HK, Jepsen S. TEM analysis of dentine after caries removal by an Er:YAG laser with fluorescent feedback.

Clin Oral Invest 2004;8(1):S6, Abstract #10.

57 Ekstrand K, Qvist V, Thylstrup A. Light microscope study of the effect of probing in occlusal surfaces. Caries Res 1987;21:368-74.

58 Ekstrand KR, Ricketts DN, Kidd EA. Reproducibility and accuracy of three methods for assessment of demineralization depth of the occlusal surface: an in vitro examination. Caries Res 1997;31:224-31.

59 El-din AK, Miller BH, Griggs JA. Resin bonding to sclerotic, noncarious, cervical lesions. Quintessence Int 2004;35:529-40.

60 el-Housseiny AA, Jamjoum H. The effect of caries detector dyes and a cavity cleansing agent on composite resin bonding to enamel and dentin.

J Clin Pediatr Dent 2000;25:57-63.

61 Emami Z, al-Khateeb S, de Josselin de Jong E, Sundström F, Trollsas K, Angmar-Mansson B. Mineral loss in incipient caries lesions quantified with laser fluorescence and longitudinal microradiography. A methodologic study.

Acta Odontol Scand 1996;54:8-13.

62 Emilson CG, Bergenholtz G. Antibacterial activity of dentinal bonding agents.

Quintessence Int 1993;24:511-5.

63 Erdemir A, Ari H, Gungunes H, Belli S. Effect of medications for root canal treatment on bonding to root canal dentin. J Endod 2004;30:113-6.

64 Ericson D, Zimmerman M, Raber H, Gotrick B, Bornstein R, Thorell J.

Clinical evaluation of efficacy and safety of a new method for chemo-mechanical removal of caries. A multi-centre study.

Caries Res 1999;33:171-7.

65 Fejerskov O, Nyvad B, Kidd EA. Clinical and histological manifestations of dental caries. In: Fejerskov O, Kidd EA, Hrsg. Dental caries: The disease and its management. Oxford: Blackwell Munksgaard; 2003. S. 71-86.

66 Felton D, Bergenholtz G, Cox CF. Inhibition of bacterial growth under composite restorations following GLUMA pretreatment.

J Dent Res 1989;68:491-5.

67 Fish EW. Surgical pathology of the mouth. London: Pitman; 1948.

68 Fosse G, Saele PK, Eide R. Numerical density and distributional pattern of dentin tubules. Acta Odontol Scand 1992;50:201-10.

69 Frank RM. Etude au microscope électronique de l’odontoblaste et du canalicule dentinaire humain. Arch Oral Biol 1966;11:179-99.

70 Frank RM, Voegel JC. Ultrastructure of the human odontoblast process and its mineralisation during dental caries. Caries Res 1980;14:367-80.

71 Frank RM. Structural events in the caries process in enamel, cementum, and dentin. J Dent Res 1990;69(Spec Iss):559-66.

72 Frankenberger R, Krämer N, Petschelt A. Haftung von Adhäsivsystemen an kariös verändertem Milchzahndentin. Dtsch Zahnärztl Z 1999;54:455-8.

73 Fuentes V, Ceballos L, Osorio R, Toledano M, Carvalho RM, Pashley DH.

Tensile strength and microhardness of treated human dentin.

Dent Mater 2004;20:522-9.

74 Fujisawa S, Kadoma Y. Effect of phenolic compounds on the polymerization of methyl methacrylate. Dent Mater 1992;8:324-6.

75 Fusayama T, Okuse K, Hosoda H. Relationship between hardness, discoloration, and microbial invasion in carious dentin.

J Dent Res 1966;45:1033-46.

76 Fusayama T, Kurosaki N. Structure and removal of carious dentin.

Int Dent J 1972;22:401-11.

77 Fusayama T, Terachima S. Differentiation of two layers of carious dentin by staining. J Dent Res 1972;51:866.

78 Fusayama T, Takatsu T, Inokoshi S, Itoh K, Yamauchi J, Shibatani K. New composition of caries detector. Jap J Conserv Dent 1979;22:37.

79 Fusayama T. Two layers of carious dentin; diagnosis and treatment.

Oper Dent 1979;4:63-70.

80 Fusayama T. Clinical guide for removing caries using a caries-detecting solution. Quintessence Int 1988;19:397-401.

81 Fusayama T. Intratubular crystal deposition and remineralization of carious dentin. J Biol Buccale 1991;19:255-62.

82 Fusayama T, Yamada T, Inokoshi S. The use of a caries detector dye during cavity preparation. Br Dent J 1993;175:312-3.

83 Fusayama T. The process and results of revolution in dental caries treatment.

Int Dent J. 1997;47:157-66.

84 Gerlach U (SS White Burs, Freiburg). Persönliche Mitteilung. Januar 2004.

85 Gomez M, Silva NR, Gonzalez C, Thompson VP: Bond strength analysis in carious tissue using polymer bur and detecting dye.

J Dent Res 82 (Spec Iss A): Abstract #0226, 2003 (www.iadr.com).

86 Gonzalez-Cabezas C, Li Y, Noblitt TW, Gregory RL, Kafrawy AH, Stookey GK. Detection of mutans streptococci in secondary carious lesions using immunofluorescent techniques and confocal laser scanning microscopy.

Caries Res 1995;29:198-203.

87 Gonzalez-Cabezas C, Li Y, Gregory RL, Stookey GK. Distribution of three cariogenic bacteria in secondary carious lesions around amalgam restorations.

Caries Res 1999;33:357-65.

88 Gonzalez-Cabezas C, Li Y, Gregory RL, Stookey GK. Distribution of cariogenic bacteria in carious lesions around tooth-colored restorations.

Am J Dent 2002;15:248-51.

89 Goodis HE, Marshall GW Jr, White JM. The effects of storage after extraction of the teeth on human dentine permeability in vitro.

Arch Oral Biol 1991;36:561-6.

90 Goracci C, Sadek FT, Monticelli F, Cardoso PE, Ferrari M. Microtensile bond strength of self-etching adhesives to enamel and dentin.

J Adhes Dent 2004;6:313-8.

91 Grajower R, Azaz B, Bron-Levi M. Microhardness of sclerotic dentin.

J Dent Res 1977;56:446.

92 Gunji T, Wakita M, Kobayashi S. Distribution and construction of odontoblast processes in human dentin by SEM. Program and abstracts of papers.

International Association for Dental Research. 1980;59: Nr. 28.

93 Gürgan S, Bolay Ş, Kiremitçi A. Effect of disinfectant application methods on the bond strength of composite to dentin. J Oral Rehabil 1999;26:836-40.

94 Haak R, Wicht MJ, Noack MJ. Does chemomechanical caries removal affect dentine adhesion? Eur J Oral Sci 2000;108:449-55.

95 Habelitz S, Marshall GW, Balooch M, Marshall SJ. Nanoindentation and storage of teeth. J Biomech 2002;35:995-8.

96 Hafström-Björkman U, Sundström F, Angmar-Mansson B. Initial caries diagnosis in rat molars, using laser fluorescence.

Acta Odontol Scand 1991;49:27-33.

97 Hafström-Björkman U, Sundström F, ten Bosch JJ. Fluorescence in dissolved fractions of human enamel. Acta Odontol Scand 1991;49:133-8.

98 Hafström-Björkman U, Sundström F, de Josselin de Jong E, Oliveby A, Angmar-Mansson B. Comparison of laser fluorescence and longitudinal microradiography for quantitative assessment of in vitro enamel caries.

Caries Res 1992;26:241-7.

99 Hahn CL, Falkler WA Jr, Minah GE. Microbiological studies of carious dentine from human teeth with irreversible pulpitis.

Arch Oral Biol 1991;36:147-53.

100 Hahn P, Hellwig E. An in vitro investigation of penetration depth of dentine bonding agents into carious dentine. J Oral Rehabil 2004;31:1053-60.

101 Handelman SL, Buonocore MG, Schoute PC. Progress report on the effect of a fissure sealant on bacteria in dental caries. J Am Dent Assoc 1973;87:1189-91.

102 Harndt E. Die Kavitätenpräparation. In: Haunfelder D, Hupfauf L, Ketterl W, Schmuth G. Praxis der Zahnheilkunde, Bd. I – Zahnerhaltungskunde.

München: Urban & Schwarzenberg; 1976. S. 45.

103 Hegdahl T, Hagebo T. The load dependence in micro indentation hardness testing of enamel and dentin. Scand J Dent Res 1972;80:449-52.

104 Heinrich-Weltzien R, Kühnisch J, Oehme T, Weerheijm T, Stößer L.

Okklusalkaries-Diagnostik – Ein Vergleich von DIAGNOdent mit konventionellen Methoden. Oral Prophyl 2003;25:77-80.

105 Hibst R, Keller U. Experimental studies of the application of the Er:YAG laser on dental hard substances: I. Measurement of the ablation rate.

Lasers Surg Med 1989;9:338-44.

106 Hintze H, Wenzel A, Larsen MJ. Stereomicroscopy, film radiography, microradiography and nacked-eye inspection of tooth sections as validation for occlusal caries diagnosis. Caries Res 1995;29:259-63.

107 Hintze H, Wenzel A. Diagnostic outcome of methods frequently used for caries validation. A comparison of clinical examination, radiography and histology following hemisectioning and serial tooth sectioning.

Caries Res 2003;37:115-24.

108 Hodge HC. The microhardness of transparent dentine.

J Dent Res 1923;13:192-3.

109 Hodge HC, McKay H. The microhardness of teeth. JADA 1933;23:227-33.

110 Hojo S, Komatsu M, Okuda R, Takahashi N, Yamada T. Acid profiles and pH of carious dentin in active and arrested lesions. J Dent Res 1994;73:1853-7.

111 Hosoda H, Fusayama T. A tooth substance saving restorative technique.

Int Dent J 1984;34:1-12.

112 Hosoya Y, Marshall SJ, Watanabe LG, Marshall GW. Microhardness of carious deciduous dentin. Oper Dent 2000;25:81-9.

113 Hosoya Y, Marshall GW Jr. The nano-hardness and elastic modulus of carious and sound primary canine dentin. Oper Dent 2004;29:142-9.

114 Hossain M, Nakamura Y, Tamaki Y, Yamada Y, Jayawardena JA, Matsumoto K. Dentinal composition and Knoop hardness measurements of cavity floor following carious dentin removal with Carisolv. Oper Dent 2003;28:346-51.

115 Hossain M, Nakamura Y, Tamaki Y, Yamada Y, Murakami Y, Matsumoto K.

Atomic analysis and knoop hardness measurement of the cavity floor prepared by Er,Cr:YSSG laser irradiation in vitro. J Oral Rehabil 2003;30:515-21.

116 Hotz PR. Muss Karies vollständig entfernt werden?

Schweiz Monatsschr Zahnmed 2003;113:262-6.

117 Huysmans MC, Longbottom C. The challenges of validating diagnostic methods and selecting appropriate gold standards.

J Dent Res 2004;83 Spec No C:C48-52.

118 Imazato S, Ehara A, Torii M, Ebisu S. Antibacterial activity of dentine primer containing MDPB after curing. J Dent 1998;26:267-71.

119 Imazato S. Antibacterial properties of resin composites and dentin bonding systems. Dent Mater 2003;19:449-57.

120 Jameson MW, Tidmarsh BG, Hood JA. Effect of storage media on subsequent water loss and regain by human and bovine dentine and on mechanical

properties of human dentine in vitro. Arch Oral Biol 1994;39:759-67.

121 Johnson DV. Comparison of primary and permanent teeth. In: Avery JK, Hrsg. Oral development and histology. 2. Aufl.

New York: Thiema Medical Publishers; 1994. S. 287.

122 Johnson NW, Taylor BR, Berman DS. The response of deciduos dentine to caries studied by collelated light and electron microscopy.

Caries Res 1969;3:348-68.

123 Jones SJ, Boyde A. Dentine mineralisation, demineralisation and

mirohardness: recent studies using scanning microscopies. In: Thylstrup A, Leach SA, Qvist V, Hrsg. Dentine and dentine reactions in the oral cavity.

Proceedings of a workshop; 1987 Feb 24-28; Koge, Denmark.

Oxford: IRL Press; 1987. S. 33-55.

124 Kantorowicz A. Handbuch der Zahnheilkunde, Bd. II.

München: Bergmann-Verlag; 1925. S. 36.

125 Kappler O, Anich B, Stöger H, Popowytsch C, Randall R, Häberlein I. Caries Treatment: Efficacy of an enzymatic dentin caries removal system.

J Dent Res 84 (Spec Iss A), Abstract #2030, 2005 (www.iadr.com).

126 Kargas K, Eberhard J, Albers HK, Jepsen S. SEM analysis of dentine after caries removal by an Er:YAG laser with fluorescent feedback.

Clin Oral Invest 2004;8(1):S6, Abstract #11.

127 Karjalainen S, Le Bell Y. Odontoblast response to caries. In: Thylstrup A, Leach SA, Qvist V, Hrsg. Dentine and dentine reactions in the oral cavity.

Proceedings of a workshop; 1987 Feb 24-28; Koge, Denmark.

Oxford: IRL Press; 1987. S. 85-94.

128 Kato S, Fusayama T. Recalcification of artificially decalcified dentin in vivo.

J Dent Res 1970;49:1060-7.

129 Kaye H, Herold RC. Structure of human dentine. I. Phase contrast,

polarization, interference and bright field microscopic observations on the lateral branch system. Arch Oral Biol 1966;11:355-68.

130 Keller U, Hibst R. Zur ablativen Wirkung des Er:YAG-Lasers auf Schmelz und Dentin. Dtsch Zahnärztl Z 1989;44:600-2.

131 Kidd EA, Joyston-Bechal S, Beighton D. Microbiological validation of assessments of caries activity during cavity preparation.

Caries Res 1993;27:402-8.

132 Kidd EA, Joyston-Bechal S, Beighton D. The use of a caries detector dye during cavity preparation: a microbiological assessment.

Br Dent J 1993;174:245-8.

133 Kidd EA, Joyston-Bechal S, Beighton D. Marginal ditching and staining as a predictor of secondary caries around amalgam restorations: a clinical and microbiological study. J Dent Res 1995;74:1206-11.

134 Kidd EA, Beighton D. Prediction of secondary caries around tooth-colored restorations: a clinical and microbiological study. J Dent Res 1996;75:1942-6.

135 Kidd EA, Ricketts DN, Beighton D. Criteria for caries removal at the enamel-dentine junction: a clinical and microbiological study.

Br Dent J 1996;180:287-91.

136 Kidd EA, Banerjee A, Ferrier S, Longbottom C, Nugent Z. Relationships between a clinical-visual scoring system and two histological techniques:

a laboratory study on occlusal and approximal carious lesions.

Caries Res 2003;37:125-9.

137 Kidd EA, Fejerskov O, Mjör A. Caries removal and the pulpo-dentinal complex. In: Fejerskov O, Kidd EA, Hrsg. Dental caries: The disease and its management. Oxford: Blackwell Munksgaard; 2003. S. 267-74.

138 Kidd EA, Fejerskov O. What constitutes dental caries? Histopathology of carious enamel and dentin related to the action of cariogenic biofilms.

J Dent Res 2004;83 Spec No C:C35-8.

139 Kidd EA. How ’clean’ must a cavity be before restoration?

Caries Res 2004;38:305-13.

140 Kimmel K. Rotierende Instrumente für Klinik, Praxis und Labor.

Düsseldorf: Hager und Meisinger; 1977. S. 26, 56.

141 Kleter GA. Discoloration of dental carious lesions (a review).

Arch Oral Biol 1998;43:629-32.

142 Klont B, ten Cate JM. Denaturation and degradation of dentin collagen during dentinal caries: possible mechanisms. In: Thylstrup A, Leach SA, Qvist V, Hrsg. Dentine and dentine reactions in the oral cavity. Proceedings of a workshop; 1987 Feb 24-28; Koge, Denmark.

Oxford: IRL Press; 1987. S. 155-64.

143 Knittel B, Klimm W, Koch R, Beurich B. Vergleich von drei Methoden zur Früherkennung der Fissurenkaries in vitro. Dtsch Zahnärztl Z 2000;55:168-75.

144 Knoop F, Peters CG, Emerson WB. A sensitive pyramidal-diamoond tool for indentation measurements. J Res Natn Bur Stand 1939;23:39-61.

145 Koase K, Inoue S, Noda M, Tanaka T, Kawamoto C, Takahashi A, Nakaoki Y, Sano H. Effect of bur-cut dentin on bond strength using two all-in-one and one two-step adhesive systems. J Adhes Dent 2004;6:97-104.

146 König K, Flemming G, Hibst R. Laser-induced autofluorescence spectroscopy of dental caries. Cell Mol Biol (Noisy-le-grand) 1998;44:1293-300.

147 Kuboki Y, Ohgushi K, Fusayama T. Collagen biochemistry of the two layers of carious dentin. J Dent Res 1977;56:1233-7.

148 Kühnisch J, Heinrich-Weltzien R, Ziehe A, Stösser L. Zur Reproduzierbarkeit von DIAGNOdent-Messwerten. Oral Prophyl 2003;25:82-4.

149 Kunzelmann KH, Tsolmon L, Nikaido T, Hickel R. Comparison of

biochemical, chemomechanical and polymer-bur methods to remove caries.

J Dent Res 84 (Spec Iss A), Abstract #2028, 2005 (www.iadr.com).

150 Kunzelmann KH, Tsolmon L, Nikaido T, Tagami J, Ilie N, Hickel R.

Nanohardness of dentin after biochemical, chemomechanical and polymer-bur caries treatment. J Dent Res 84 (Spec Iss A), Abstract #2026, 2005

(www.iadr.com).

151 Kusunoki M, Itoh K, Hisamitsu H, Wakumoto S. The efficacy of dentine adhesive to sclerotic dentine. J Dent 2002;30:91-7.

152 Lager A, Thornqvist E, Ericson D. Cultivatable bacteria in dentine after caries excavation using rose-bur or carisolv. Caries Res 2003;37:206-11.

153 Lennon AM, Buchalla W, Switalski L, Stookey GK. Residual caries detection using visible fluorescence. Caries Res 2002;36:315-9.

154 Lennon AM. Fluorescence-aided caries excavation (FACE) compared to conventional method. Oper Dent 2003;28:341-5.

155 Leung RL, Loesche WJ, Charbeneau GT. Effect of Dycal on bacteria in deep carious lesions. J Am Dent Assoc 1980;100:193-7.

156 Levine RS, Rowles SL. Further studies on the remineralization of human carious dentine in vitro. Arch Oral Biol 1973;18:1351-6.

157 Levine RS. The microradiographic features of dentine caries. Observations on 200 lesions. Br Dent J 1974;137:301-6.

158 Linde A. Dentin: structure, chemistry and formation. In: Thylstrup A, Leach SA, Qvist V, Hrsg. Dentine and dentine reactions in the oral cavity.

Proceedings of a workshop; 1987 Feb 24-28; Koge, Denmark.

Oxford: IRL Press; 1987. S. 17-26.

159 Lopes MM, Perdigao J, Gomes G, Perdigao JR. Removal of carious dentin – carbide vs. polymer burs. J Dent Res 84 (Spec Iss A), Abstract #0501, 2005 (www.iadr.com).

160 Lopresti J, Klaczany G, Thompson V, Janal M. Single blind clinical study of polymer bur carious dentin removal.

J Dent Res 83 (Spec Iss A), Abstract #1835, 2004 (www.iadr.com).

161 Lowe A, Strawn SE, Marshall GW, Marshall SJ Watanabe LG. SEM/EDS evaluation of dentin after storage in various solutions.

J Dent Res 73 (Spec Iss), Abstract #973, 1994.

162 Lussi A, Hotz P, Strich H. Die Fissurenkaries.

Dtsch Zahnärztl Z 1995;50:629-34.

163 Lussi A, Hotz P. Die Approximal- und Glattflächenkaries.

Dtsch Zahnärztl Z 1995;50:782-6.

164 Lussi A, Megert B, Longbottom C, Reich E, Francescut P. Clinical

performance of a laser fluorescence device for detection of occlusal caries

performance of a laser fluorescence device for detection of occlusal caries