Automated post-operative brain tumour segmentation: A deep learning model based on transfer learning from pre-operative images.

Journal: Magnetic resonance imaging
Published Date:

Abstract

Automated brain tumour segmentation from post-operative images is a clinically relevant yet challenging problem. In this study, an automated method for segmenting brain tumour into its subregions has been developed. The dataset consists of multimodal post-operative brain scans (T1 MRI, post-Gadolinium T1 MRI, and T2-FLAIR images) of 15 patients who were treated with post-operative radiation therapy, along with manual annotations of their tumour subregions. A 3D densely-connected U-net was developed for segmentation of brain tumour regions and extensive experiments were conducted to enhance model accuracy. A model was initially developed using the publicly available BraTS dataset consisting of pre-operative brain scans. This model achieved Dice Scores of 0.90, 0.83 and 0.78 for predicting whole tumour, tumour core, and enhancing tumour subregions when tested on BraTS20 blind validation dataset. The acquired knowledge from BraTS was then transferred to the local dataset. For augmentation purpose, the local dataset was registered to a dataset of MRI brain scans of healthy subjects. To improve the robustness of the model and enhance its accuracy, ensemble learning was used to combine the outputs of all the trained models. Even though the size of the dataset is very small, the final model can segment brain tumours with a high Dice Score of 0.83, 0.77 and 0.60 for whole tumour, tumour core and enhancing core respectively.

Authors

  • Mina Ghaffari
    Engineering School, Macquarie University, NSW 2109, Australia; School of Computer Science and Engineering, University of New South Wales, Barker St, Kensington, NSW 2052, Australia. Electronic address: mina.ghaffari@hdr.mq.edu.au.
  • Gihan Samarasinghe
    School of Computer Science and Engineering, University of New South Wales, Sydney, New South Wales, Australia.
  • Michael Jameson
    Genesiscare, Sydney, New South Wales, Australia.
  • Farhannah Aly
    Ingham Institute for Applied Medical Research, 1 Campbell St, Liverpool, NSW 2170, Australia; Liverpool and Macarthur Cancer Therapy Centres, Therry Road, Campbelltown, NSW 2560, Australia; South Western Clinical School, UNSW, Liverpool Hospital Locked Bag, 7103, Liverpool BC, NSW 1871, Australia.
  • Lois Holloway
    d Cancer Therapy Centre, Liverpool Hospital , Liverpool , NSW , Australia.
  • Phillip Chlap
    South Western Sydney Clinical School, University of New South Wales, Sydney, New South Wales, Australia.
  • Eng-Siew Koh
    Ingham Institute for Applied Medical Research, 1 Campbell St, Liverpool, NSW 2170, Australia; Liverpool and Macarthur Cancer Therapy Centres, Therry Road, Campbelltown, NSW 2560, Australia; South Western Clinical School, UNSW, Liverpool Hospital Locked Bag, 7103, Liverpool BC, NSW 1871, Australia.
  • Arcot Sowmya
    School of Computer Science and Engineering, UNSW Sydney, Sydney, Australia.
  • Ruth Oliver
    Engineering School, Macquarie University, NSW 2109, Australia.