Prostate Motion Modelling Using Biomechanically-Trained Deep Neural Networks on Unstructured Nodes

Shaheer U. Saeed, Zeike A. Taylor, Mark A. Pinnock, Mark Emberton, Dean C. Barratt, Yipeng Hu. Prostate Motion Modelling Using Biomechanically-Trained Deep Neural Networks on Unstructured Nodes. In Anne L. Martel, Purang Abolmaesumi, Danail Stoyanov, Diana Mateus, Maria A. Zuluaga, S. Kevin Zhou, Daniel Racoceanu, Leo Joskowicz, editors, Medical Image Computing and Computer Assisted Intervention - MICCAI 2020 - 23rd International Conference, Lima, Peru, October 4-8, 2020, Proceedings, Part IV. Volume 12264 of Lecture Notes in Computer Science, pages 650-659, Springer, 2020. [doi]

@inproceedings{SaeedTPEBH20,
  title = {Prostate Motion Modelling Using Biomechanically-Trained Deep Neural Networks on Unstructured Nodes},
  author = {Shaheer U. Saeed and Zeike A. Taylor and Mark A. Pinnock and Mark Emberton and Dean C. Barratt and Yipeng Hu},
  year = {2020},
  doi = {10.1007/978-3-030-59719-1_63},
  url = {https://doi.org/10.1007/978-3-030-59719-1_63},
  researchr = {https://researchr.org/publication/SaeedTPEBH20},
  cites = {0},
  citedby = {0},
  pages = {650-659},
  booktitle = {Medical Image Computing and Computer Assisted Intervention - MICCAI 2020 - 23rd International Conference, Lima, Peru, October 4-8, 2020, Proceedings, Part IV},
  editor = {Anne L. Martel and Purang Abolmaesumi and Danail Stoyanov and Diana Mateus and Maria A. Zuluaga and S. Kevin Zhou and Daniel Racoceanu and Leo Joskowicz},
  volume = {12264},
  series = {Lecture Notes in Computer Science},
  publisher = {Springer},
  isbn = {978-3-030-59719-1},
}