Literature DB >> 36044160

Reduction of scratch or dirt artifacts on intraoral radiographs using dual imaging plates in image processing.

Yusuke Imanishi1, Takahito Sekiguchi1, Masao Kato1, Hideaki Kimoto1, Toshihiko Amemiya1, Ko Dezawa1, Kunihito Matsumoto1, Yoshinori Arai2.   

Abstract

OBJECTIVES: Artifacts including scratches and dirt artifacts on the digital intraoral radiographs finally contribute to making inaccurate diagnoses. The aim of this study was to reduce the incidence of artifacts using dual imaging plates (DIPs) in imaging processing.
METHODS: Conventional X-rays were taken of a porcine mandible embedded in acrylic resin using a DIP which consists of a front IP (FIP) and a back IP (BIP) with some scratches and dirt. The two images of the FIP and BIP were then synthesized and averaged to obtain a conventional DIP image. The following image processing method was used to make a DIP with artifact reduction (DIP+AR) image. A subtraction image of the FIP and BIP was constructed and the standard deviation (SD) was calculated. If the pixel value was over 3SD on the subtraction images, the pixel value of the DIP was swapped with the value on the opposite side of the non-artifact pixel. The conventional and DIP+AR images were also subjectively evaluated.
RESULTS: Image processing to create a DIP+AR image was able to reduce the number of artifacts. Medians of number of artifacts evaluated were 2.00 [interquartile range (IQR), 2.50] in DIP images and 0.67 (IQR, 1.29) in DIP+AR images, indicating a significant reduction of number of artifacts in DIP+AR images.
CONCLUSIONS: DIP+AR image processing can reduce the incidence of artifacts caused by scratches and dirt, and could extend the lifespan of the IP and contribute accurate diagnosis in oral radiology.
© 2022. The Author(s) under exclusive licence to Japanese Society for Oral and Maxillofacial Radiology.

Entities:  

Keywords:  Artifact; Image processing; Imaging plate; Intraoral radiography

Year:  2022        PMID: 36044160     DOI: 10.1007/s11282-022-00648-5

Source DB:  PubMed          Journal:  Oral Radiol        ISSN: 0911-6028            Impact factor:   1.882


  22 in total

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2.  Rating the extent of surface scratches on photostimulable storage phosphor plates in a dental school environment.

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Authors:  A Møystad; D B Svanaes; S Risnes; T A Larheim; H G Gröndahl
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4.  Computed panoramic tomography with scanning laser-stimulated luminescence.

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6.  The effects of noise reduction, sharpening, enhancement, and image magnification on diagnostic accuracy of a photostimulable phosphor system in the detection of non-cavitated approximal dental caries.

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7.  Assessment of intraoral image artifacts related to photostimulable phosphor plates in a dentomaxillofacial radiology department.

Authors:  A Gulsahi; C K Secgin
Journal:  Niger J Clin Pract       Date:  2016 Mar-Apr       Impact factor: 0.968

8.  Accuracy of caries detection with four storage phosphor systems and E-speed radiographs.

Authors:  H Hintze; A Wenzel; M Frydenberg
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9.  Analysis of photostimulable phosphor plate image artifacts in an oral and maxillofacial radiology department.

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Review 10.  Radiographic modalities for diagnosis of caries in a historical perspective: from film to machine-intelligence supported systems.

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