Gold Standard for Epilepsy/Tumor Surgery Coupled with Deep Learning Offers Independence to a Promising Functional Mapping Modality. Korostenskaja, M., Raviprakash, H., Bagci, U., Lee, K. H., Chen, P. C., Kapeller, C., Salinas, C., Westerveld, M., Ralescu, A. L., Xiang, J., Baumgartner, J., Elsayed, M., & Castillo, E. M. In Brain-Computer Interface Research - A State-of-the-Art Summary 7, pages 11–29. 2019.
Gold Standard for Epilepsy/Tumor Surgery Coupled with Deep Learning Offers Independence to a Promising Functional Mapping Modality [link]Paper  doi  bibtex   
@incollection{DBLP:series/sbece/KorostenskajaRBLCKSWRXBEC19,
  author       = {Milena Korostenskaja and
                  Harish Raviprakash and
                  Ulas Bagci and
                  Ki H. Lee and
                  P. C. Chen and
                  Christoph Kapeller and
                  C. Salinas and
                  M. Westerveld and
                  Anca L. Ralescu and
                  J. Xiang and
                  James Baumgartner and
                  M. Elsayed and
                  E. M. Castillo},
  title        = {Gold Standard for Epilepsy/Tumor Surgery Coupled with Deep Learning
                  Offers Independence to a Promising Functional Mapping Modality},
  booktitle    = {Brain-Computer Interface Research - {A} State-of-the-Art Summary 7},
  pages        = {11--29},
  year         = {2019},
  crossref     = {DBLP:series/sbece/bcir7},
  url          = {https://doi.org/10.1007/978-3-030-05668-1\_2},
  doi          = {10.1007/978-3-030-05668-1\_2},
  timestamp    = {Mon, 15 May 2023 01:00:00 +0200},
  biburl       = {https://dblp.org/rec/series/sbece/KorostenskajaRBLCKSWRXBEC19.bib},
  bibsource    = {dblp computer science bibliography, https://dblp.org}
}

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