Deep Learning Radiomics Algorithm for Gliomas (DRAG) Model: A Novel Approach Using 3D UNET Based Deep Convolutional Neural Network for Predicting Survival in Gliomas.
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%0 Conference Paper
%1 conf/miccai/BaidTRGTMTM18
%A Baid, Ujjwal
%A Talbar, Sanjay N.
%A Rane, Swapnil
%A Gupta, Sudeep
%A Thakur, Meenakshi H.
%A Moiyadi, Aliasgar
%A Thakur, Siddhesh
%A Mahajan, Abhishek
%B BrainLes@MICCAI (2)
%D 2018
%E Crimi, Alessandro
%E Bakas, Spyridon
%E Kuijf, Hugo J.
%E Keyvan, Farahani
%E Reyes, Mauricio
%E van Walsum, Theo
%I Springer
%K dblp
%P 369-379
%T Deep Learning Radiomics Algorithm for Gliomas (DRAG) Model: A Novel Approach Using 3D UNET Based Deep Convolutional Neural Network for Predicting Survival in Gliomas.
%U http://dblp.uni-trier.de/db/conf/miccai/brainles2018-2.html#BaidTRGTMTM18
%V 11384
%@ 978-3-030-11726-9
@inproceedings{conf/miccai/BaidTRGTMTM18,
added-at = {2022-04-09T00:00:00.000+0200},
author = {Baid, Ujjwal and Talbar, Sanjay N. and Rane, Swapnil and Gupta, Sudeep and Thakur, Meenakshi H. and Moiyadi, Aliasgar and Thakur, Siddhesh and Mahajan, Abhishek},
biburl = {https://www.bibsonomy.org/bibtex/21418d42a1ca3082661ff60252bc7bebd/dblp},
booktitle = {BrainLes@MICCAI (2)},
crossref = {conf/miccai/2018brainles-2},
editor = {Crimi, Alessandro and Bakas, Spyridon and Kuijf, Hugo J. and Keyvan, Farahani and Reyes, Mauricio and van Walsum, Theo},
ee = {https://doi.org/10.1007/978-3-030-11726-9_33},
interhash = {32ac81afc4af2ad5ca0c783b63669862},
intrahash = {1418d42a1ca3082661ff60252bc7bebd},
isbn = {978-3-030-11726-9},
keywords = {dblp},
pages = {369-379},
publisher = {Springer},
series = {Lecture Notes in Computer Science},
timestamp = {2024-04-10T21:16:04.000+0200},
title = {Deep Learning Radiomics Algorithm for Gliomas (DRAG) Model: A Novel Approach Using 3D UNET Based Deep Convolutional Neural Network for Predicting Survival in Gliomas.},
url = {http://dblp.uni-trier.de/db/conf/miccai/brainles2018-2.html#BaidTRGTMTM18},
volume = 11384,
year = 2018
}