Development of a fluorescence-image scoring system for assessing noncavitated occlusal caries.
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Si-Mook Kang | Eun-Song Lee | Baek-Il Kim | Elbert de Josselin de Jong | Hoi-In Jung | E. de Josselin de Jong | Eun-Song Lee | Si-Mook Kang | Baek-Il Kim | Eun-Ha Jung | Eun-Ha Jung | Hoi-In Jung
[1] George J. Eckert,et al. Orange/Red Fluorescence of Active Caries by Retrospective Quantitative Light-Induced Fluorescence Image Analysis , 2016, Caries Research.
[2] Tsuyoshi Murata,et al. {m , 1934, ACML.
[3] I A Pretty,et al. Non-cavitated carious lesions detection methods: a systematic review. , 2013, Community dentistry and oral epidemiology.
[4] E. de Josselin de Jong,et al. Quantitative light-induced fluorescence (QLF): a tool for early occlusal dental caries detection and supporting decision making in vivo. , 2013, Journal of dentistry.
[5] D. Manton,et al. Minimal intervention dentistry for managing dental caries - a review: report of a FDI task group. , 2012, International dental journal.
[6] L. Bouter,et al. The value of bitewing radiographs in epidemiological caries research: a systematic review of the literature. , 2004, E -journal of dentistry.
[7] I A Pretty,et al. Detection and monitoring of early caries lesions: a review , 2016, European archives of paediatric dentistry : official journal of the European Academy of Paediatric Dentistry.
[8] B Angmar-Månsson,et al. Quantitative light-induced fluorescence (QLF): a method for assessment of incipient caries lesions. , 2001, Dento maxillo facial radiology.
[9] Iain A Pretty,et al. Caries detection and diagnosis: novel technologies. , 2006, Journal of dentistry.
[10] Jaime Aparecido Cury,et al. Enamel remineralization: controlling the caries disease or treating early caries lesions? , 2009, Brazilian oral research.
[11] J. Featherstone,et al. Dental caries: a dynamic disease process. , 2008, Australian dental journal.
[12] Baek-Il Kim,et al. ANALYSIS OF ORANGE/RED FLUORESCENCE FOR BACTERIAL ACTIVITY IN INITIAL CARIOUS LESIONS MAY PROVIDE ACCURATE LESION ACTIVITY ASSESSMENT FOR CARIES PROGRESSION , 2017, The journal of evidence-based dental practice.
[13] E. Kidd,et al. Clinical and radiographic diagnosis of occlusal caries: a study in vitro. , 1995, Journal of oral rehabilitation.
[14] D. Zero,et al. Diagnostic tools for early caries detection. , 2006, Journal of the American Dental Association.
[15] T. Attin,et al. The Ability of Selected Oral Microorganisms to Emit Red Fluorescence , 2005, Caries Research.
[16] M. H. Veen,et al. Application of quantitative light-induced fluorescence for assessing early caries lesions , 2000 .
[17] Euiseong Kim,et al. Detection and Analysis of Enamel Cracks by Quantitative Light-induced Fluorescence Technology. , 2016, Journal of endodontics.
[18] D. Manton,et al. Pit and fissure sealants: another major cornerstone in preventive dentistry. , 1995, Australian dental journal.
[19] G. Eckert,et al. In vitro Detection of Occlusal Caries on Permanent Teeth by a Visual, Light-Induced Fluorescence and Photothermal Radiometry and Modulated Luminescence Methods , 2015, Caries Research.
[20] Bennett T Amaechi,et al. Quantitative light-induced fluorescence: a potential tool for general dental assessment. , 2002, Journal of biomedical optics.
[21] H. Kwon,et al. Recovery percentage of remineralization according to severity of early caries. , 2013, American journal of dentistry.
[22] S B Dove,et al. Radiographic diagnosis of dental caries. , 2001, Journal of dental education.
[23] M. Diniz,et al. Association between quantitative measures obtained using fluorescence‐based methods and activity status of occlusal caries lesions in primary molars , 2017, International journal of paediatric dentistry.
[24] M. H. Veen,et al. In vitro quantitative light-induced fluorescence to measure changes in enamel mineralization , 2006, Clinical Oral Investigations.
[25] A. Holmlund,et al. Prevalence of dental caries and influencing factors, time trends over a 30-year period in an adult population. Epidemiological studies between 1983 and 2013 in the county of Dalarna, Sweden , 2016, Acta odontologica Scandinavica.
[26] Si-Mook Kang,et al. Validation of quantitative light-induced fluorescence-digital (QLF-D) for the detection of approximal caries in vitro. , 2015, Journal of dentistry.
[27] E. Bronkhorst,et al. The Caries Assessment and Treatment (CAST) instrument. , 2013, Community dentistry and oral epidemiology.
[28] D T Zero,et al. Longitudinal Analyses of Early Lesions by Fluorescence , 2013, Journal of dental research.
[29] Si-Mook Kang,et al. Association between the cariogenicity of a dental microcosm biofilm and its red fluorescence detected by Quantitative Light-induced Fluorescence-Digital (QLF-D). , 2013, Journal of dentistry.
[30] Sofia Tranæus,et al. In vivo detection of non-cavitated caries lesions on occlusal surfaces by visual inspection and quantitative light-induced fluorescence , 2007, Acta odontologica Scandinavica.
[31] E. de Josselin de Jong,et al. Photobleaching of red fluorescence in oral biofilms. , 2011, Journal of periodontal research.
[32] G. Eckert,et al. Use of ICDAS Combined with Quantitative Light-Induced Fluorescence as a Caries Detection Method , 2010, Caries Research.
[33] Eun-Song Lee,et al. Monitoring the maturation process of a dental microcosm biofilm using the Quantitative Light-induced Fluorescence-Digital (QLF-D). , 2014, Journal of dentistry.
[34] Bo-Ra Kim,et al. Ecological changes in oral microcosm biofilm during maturation , 2016, Journal of biomedical optics.
[35] Yogesan Kanagasingam,et al. Diagnostic accuracy of teledentistry in the detection of dental caries: a systematic review. , 2016, The journal of evidence-based dental practice.
[36] N B Pitts,et al. The International Caries Detection and Assessment System (ICDAS): an integrated system for measuring dental caries. , 2007, Community dentistry and oral epidemiology.
[37] T. Vahlberg,et al. Measuring Dental Caries in the Mixed Dentition by ICDAS , 2011, International journal of dentistry.
[38] Masatoshi Ando,et al. Pilot clinical study to assess caries lesion activity using quantitative light-induced fluorescence during dehydration , 2017, Journal of biomedical optics.