Scientific Reports (Mar 2023)

Automatic detection of punctate white matter lesions in infants using deep learning of composite images from two cases

  • Xuyang Sun,
  • Tetsu Niwa,
  • Takashi Okazaki,
  • Sadanori Kameda,
  • Shuhei Shibukawa,
  • Tomohiko Horie,
  • Toshiki Kazama,
  • Atsushi Uchiyama,
  • Jun Hashimoto

DOI
https://doi.org/10.1038/s41598-023-31403-3
Journal volume & issue
Vol. 13, no. 1
pp. 1 – 8

Abstract

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Abstract Punctate white matter lesions (PWMLs) in infants may be related to neurodevelopmental outcomes based on the location or number of lesions. This study aimed to assess the automatic detectability of PWMLs in infants on deep learning using composite images created from several cases. To create the initial composite images, magnetic resonance (MR) images of two infants with the most PWMLs were used; their PWMLs were extracted and pasted onto MR images of infants without abnormality, creating many composite PWML images. Deep learning models based on a convolutional neural network, You Only Look Once v3 (YOLOv3), were constructed using the training set of 600, 1200, 2400, and 3600 composite images. As a result, a threshold of detection probability of 20% and 30% for all deep learning model sets yielded a relatively high sensitivity for automatic PWML detection (0.908–0.957). Although relatively high false-positive detections occurred with the lower threshold of detection probability, primarily, in the partial volume of the cerebral cortex (≥ 85.8%), those can be easily distinguished from the white matter lesions. Relatively highly sensitive automatic detection of PWMLs was achieved by creating composite images from two cases using deep learning.