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Multiclass classification of autofluorescence images of oral cavity lesions based on quantitative analysis

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Listed:
  • Ming-Jer Jeng
  • Mukta Sharma
  • Ting-Yu Chao
  • Ying-Chang Li
  • Shiang-Fu Huang
  • Liann-Be Chang
  • Lee Chow

Abstract

Background: Oral cancer is one of the most common diseases globally. Conventional oral examination and histopathological examination are the two main clinical methods for diagnosing oral cancer early. VELscope is an oral cancer-screening device that exploited autofluorescence. It yields inconsistent results when used to differentiate between normal, premalignant and malignant lesions. We develop a new method to increase the accuracy of differentiation. Materials and methods: Five samples (images) of each of 21 normal mucosae, as well as 31 premalignant and 16 malignant lesions of the tongue and buccal mucosa were collected under both white light and autofluorescence (VELscope, 400-460 nm wavelength). The images were developed using an iPod (Apple, Atlanta Georgia, USA). Results: The normalized intensity and standard deviation of intensity were calculated to classify image pixels from the region of interest (ROI). Linear discriminant analysis (LDA) and quadratic discriminant analysis (QDA) classifiers were used. The performance of both of the classifiers was evaluated with respect to accuracy, precision, and recall. These parameters were used for multiclass classification. The accuracy rate of LDA with un-normalized data was increased by 2% and 14% and that of QDA was increased by 16% and 25% for the tongue and buccal mucosa, respectively. Conclusion: The QDA algorithm outperforms the LDA classifier in the analysis of autofluorescence images with respect to all of the standard evaluation parameters.

Suggested Citation

  • Ming-Jer Jeng & Mukta Sharma & Ting-Yu Chao & Ying-Chang Li & Shiang-Fu Huang & Liann-Be Chang & Lee Chow, 2020. "Multiclass classification of autofluorescence images of oral cavity lesions based on quantitative analysis," PLOS ONE, Public Library of Science, vol. 15(2), pages 1-18, February.
  • Handle: RePEc:plo:pone00:0228132
    DOI: 10.1371/journal.pone.0228132
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