Seizure epicenter depth and translaminar field potential synchrony underlie complex variations in tissue oxygenation during ictal initiation

Samuel Harris, Luke W. Boorman, Aneurin J. Kennerley, Paul S. Sharp, Chris J. Martin 0001, Peter Redgrave, Theodore H. Schwartz, Jason Berwick. Seizure epicenter depth and translaminar field potential synchrony underlie complex variations in tissue oxygenation during ictal initiation. NeuroImage, 171:165-175, 2018. [doi]

@article{HarrisBKSMRSB18,
  title = {Seizure epicenter depth and translaminar field potential synchrony underlie complex variations in tissue oxygenation during ictal initiation},
  author = {Samuel Harris and Luke W. Boorman and Aneurin J. Kennerley and Paul S. Sharp and Chris J. Martin 0001 and Peter Redgrave and Theodore H. Schwartz and Jason Berwick},
  year = {2018},
  doi = {10.1016/j.neuroimage.2017.12.088},
  url = {https://doi.org/10.1016/j.neuroimage.2017.12.088},
  researchr = {https://researchr.org/publication/HarrisBKSMRSB18},
  cites = {0},
  citedby = {0},
  journal = {NeuroImage},
  volume = {171},
  pages = {165-175},
}