4.5 Article

Semi-automated Anatomical Labeling and Inter-subject Warping of High-Density Intracranial Recording Electrodes in Electrocorticography

Journal

FRONTIERS IN NEUROINFORMATICS
Volume 11, Issue -, Pages -

Publisher

FRONTIERS MEDIA SA
DOI: 10.3389/fninf.2017.00062

Keywords

intracranial recordings; electrode localization; electrocorticography; epilepsy; surgery; image coregistration; subdural electrodes; open science

Funding

  1. NIH [F32DC014192-01, DP2-OD00862, R01-DC012379]
  2. Defense Advanced Research Projects Agency (DARPA) [W911NF-14-2-0043]
  3. DARPA'S SUBNETS program
  4. New York Stem Cell Foundation
  5. McKnight Foundation
  6. Shurl and Kay Curci Foundation
  7. William K. Bowes Foundation
  8. NVIDIA Corporation

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In this article, we introduce img_pipe, our open source python package for preprocessing of imaging data for use in intracranial electrocorticography (ECoG) and intracranial stereo-EEG analyses. The process of electrode localization, labeling, and warping for use in ECoG currently varies widely across laboratories, and it is usually performed with custom, lab-specific code. This python package aims to provide a standardized interface for these procedures, as well as code to plot and display results on 3D cortical surface meshes. It gives the user an easy interface to create anatomically labeled electrodes that can also be warped to an atlas brain, starting with only a preoperative T1 MRI scan and a postoperative CT scan. We describe the full capabilities of our imaging pipeline and present a step-by-step protocol for users.

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