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Original Research

Accurate Detection of Non-Cavitated Proximal Caries in Posterior Permanent Teeth: An in vivo Study

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Pages 1431-1436 | Published online: 04 Sep 2020

References

  • Bader JD, Shugars DA, Bonito AJ. A systematic review of the performance of methods for identifying carious lesions. J Public Health Dent. 2002;62(4):201–213. doi:10.1111/j.1752-7325.2002.tb03446.x.12474624
  • Kidd E, Smith B, Watson T. Pickard’s Manual of Operative Dentistry. 8th ed New York: Oxford University Press; 2003.
  • Jacobsen J, Hansen B, Wenzel A, Hintze H. Relationship between histological and radiographic caries lesion depth measured in images from four digital radiography systems. Caries Res. 2004;38(1):34–38. doi:10.1159/000073918
  • Wenzel A. Radiographic display of carious lesions and cavitation in approximal surfaces: advantages and drawbacks of conventional and advanced modalities. Acta Odontol Scand. 2014;72(4):251–264. doi:10.3109/00016357.2014.88875724512205
  • Baelum V, Hintze H, Wenzel A, Danielsen B, Nyvad B. Implications of caries diagnostic strategies for clinical management decisions. Community Dent Oral Epidemiol. 2012;40(3):257–266. doi:10.1111/j.1600-0528.2011.00655.x22103270
  • Novaes TF, Matos R, Braga MM. Performance of a pen-type laser fluorescence device and conventional methods in detecting approximal caries lesions in primary teeth–in vivo study. Caries Res. 2009;43(1):36–42. doi:10.1159/00018970519136830
  • Devlin H. Operative Dentistry: A Practical Guide to Recent Innovations. Heidelberg: Springer-Verlag Berlin; 2006.
  • Penning C, van Amerongen JP, Seef RE, Ten Cate JM. Validity of probing for fissure caries diagnosis. Caries Res. 1992;26(6):445–449. doi:10.1159/0002614851294305
  • Bamzahim M, Shi XQ, Angmar-Månsson B. Secondary caries detection by DIAGNOdent and radiography: a comparative in vitro study. Acta Odontol Scand. 2004;62(1):61–64. doi:10.1080/0001635031000852615124784
  • Rodrigues JA, Hug I, Lussi A. The influence of zero value subtraction on the performance of a new laser fluorescence device for approximal caries detection. Lasers Med Sci. 2009;24(3):301–306. doi:10.1007/s10103-008-0549-z18309456
  • Chen J, Qin M, Ma W, Ge L. A clinical study of a laser fluorescence device for the detection of approximal caries in primary molars. Int J Paediatr Dent. 2012;22(2):132–138. doi:10.1111/j.1365-263X.2011.01180.x21951216
  • Novaes T, Matos R, Raggio D, Imparato J, Braga M, Mendes F. Influence of the discomfort reported by children on the performance of approximal caries detection methods. Caries Res. 2012;44(5):465–471. doi:10.1159/000320266
  • Lussi A, Hack A, Hug I, Heckenberger H, Megert B, Stich H. Detection of approximal caries with a new laser fluorescence device. Caries Res. 2006;40(2):97–103. doi:10.1159/00009105416508265
  • Marthaler T. A standardized system of recording dental conditions. Helv Odontol Acta. 1966;10:1–18.4379484
  • Akbari M, Ahrari F, Hoseini ZH, Movagharipour F. Assessing the performance of the laser fluorescence technique in detecting proximal caries cavities. J Mashhad Dent Sch. 2013;37(3):185–200.
  • Braga M, Nicolau J, Rodrigues CR, Imparato JC, Mendes FM. Laser fluorescence device does not perform well in detection of early caries lesions in primary teeth: an in vitro study. Oral Health Prev Dent. 2008;6(2):165–169.18637395
  • Alwas-Danowska HM, Plasschaert AJ, Suliborski S, Verdonschot EH. Reliability and validity issues of laser fluorescence measurements in occlusal caries diagnosis. J Dent. 2002;30(4):129–134. doi:10.1016/S0300-5712(02)00015-512450718
  • Menem R, Barngkgei I, Beiruti N, Al Haffar I, Joury E. The diagnostic accuracy of a laser fluorescence device and digital radiography in detecting approximal caries lesions in posterior permanent teeth: an in vivo study. Lasers Med Sci. 2017;32(3):621–628. doi:10.1007/s10103-017-2157-228194533