Literature DB >> 23412461

Performance of a photostimulable storage phosphor digital system with or without the sharpen filter and cone beam CT for detecting approximal enamel subsurface demineralization.

M D F Belém1, C P M Tabchoury, R I Ferreira-Santos, F C Groppo, F Haiter-Neto.   

Abstract

OBJECTIVES: The aim of this study was to assess the performance of photostimulable storage phosphor (PSP) radiographs with or without using the sharpen filter and cone beam CT (CBCT) for detecting enamel subsurface demineralization.
METHODS: Enamel subsurface demineralization was induced on one of the approximal surfaces of 120 sound human teeth. Standardized images of all teeth were acquired after the demineralization phase using the Digora(®) Optime (Orion Corp./Soredex, Helsinki, Finland) (PSP) and the i-CAT™ (Imaging Sciences International, Hatfield, PA) (CBCT) systems. Three calibrated observers interpreted the images using a five-point scale (1, demineralization definitely absent; 2, demineralization probably absent; 3, unsure; 4, demineralization probably present; and 5, demineralization definitely present). Diagnoses were validated by cross-sectional microhardness profiling in the test areas of the approximal surfaces. Interobserver agreement was analysed using kappa statistics. Accuracy was estimated by the areas under the receiver operating characteristic curves (Az), which were compared using the Kruskal-Wallis test (α = 5%).
RESULTS: Interobserver agreement was higher for CBCT (κ = 0.7-0.8), followed by sharpen-filtered (κ = 0.6-0.7) and original (κ = 0.5-0.6) images. CBCT presented the highest accuracy value (Az = 0.897) compared with the original (Az = 0.792) and sharpen-filtered (Az = 0.712) images. However, no statistical differences were observed between the imaging modalities (p = 0.0794).
CONCLUSIONS: It can be concluded that PSP radiographs with or without using the sharpen filter and the CBCT images may be useful adjuncts for detecting subtle approximal enamel demineralization.

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Mesh:

Year:  2013        PMID: 23412461      PMCID: PMC3635779          DOI: 10.1259/dmfr.20120313

Source DB:  PubMed          Journal:  Dentomaxillofac Radiol        ISSN: 0250-832X            Impact factor:   2.419


  33 in total

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2.  Linear and logarithmic subtraction for detecting enamel subsurface demineralization.

Authors:  F Haiter-Neto; R I Ferreira; C P M Tabchoury; F N Bóscolo
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4.  Assessment of enamel demineralization using conventional, digital, and digitized radiography.

Authors:  Rívea Inês Ferreira; Francisco Haiter-Neto; Cínthia Pereira Machado Tabchoury; Guilherme Assumpção Neves de Paiva; Frab Norberto Bóscolo
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5.  Influence of spatial resolution and bit depth on detection of small caries lesions with digital receptors.

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7.  Evaluation of a limited cone-beam volumetric imaging system: comparison with film radiography in detecting incipient proximal caries.

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8.  Factors involved in validity measurements of diagnostic tests for approximal caries--a meta-analysis.

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Authors:  Etje Sanden; Andreas Koob; Stefan Hassfeld; Hans Jörg Staehle; Peter Eickholz
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10.  Variable-resolution cone-beam computerized tomography with enhancement filtration compared with intraoral photostimulable phosphor radiography in detection of transverse root fractures in an in vitro model.

Authors:  Ann Wenzel; Fransisco Haiter-Neto; Morten Frydenberg; Lise-Lotte Kirkevang
Journal:  Oral Surg Oral Med Oral Pathol Oral Radiol Endod       Date:  2009-10-28
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  8 in total

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3.  An in vitro comparison of diagnostic accuracy of cone beam computed tomography and phosphor storage plate to detect simulated occlusal secondary caries under amalgam restoration.

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4.  Effect of Filtration and Thickness of Cross-Sections of Cone Beam Computed Tomography Images on Detection of Proximal Caries.

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5.  Efficacy of denoising and enhancement filters for detection of approximal and occlusal caries on digital intraoral radiographs.

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6.  Effect of Filtration and Slice Thickness of Cone-Beam Computed Tomography Images on Occlusal Caries Detection: An Ex Vivo Study.

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7.  Detection of Simulated Periapical Lesion in Intraoral Digital Radiography with Different Brightness and Contrast.

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8.  Accuracy of various imaging methods for detecting misfit at the tooth-restoration interface in posterior teeth.

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