Rapid and low-invasive functional brain mapping by realtime visualization of high gamma activity for awake craniotomy

Annu Int Conf IEEE Eng Med Biol Soc. 2014:2014:6802-5. doi: 10.1109/EMBC.2014.6945190.

Abstract

For neurosurgery with an awake craniotomy, the critical issue is to set aside enough time to identify eloquent cortices by electrocortical stimulation (ECS). High gamma activity (HGA) ranging between 80 and 120 Hz on electrocorticogram (ECoG) is assumed to reflect localized cortical processing. In this report, we used realtime HGA mapping and functional magnetic resonance imaging (fMRI) for rapid and reliable identification of motor and language functions. Three patients with intra-axial tumors in their dominant hemisphere underwent preoperative fMRI and lesion resection with an awake craniotomy. All patients showed significant fMRI activation evoked by motor and language tasks. After the craniotomy, we recorded ECoG activity by placing subdural grids directly on the exposed brain surface. Each patient performed motor and language tasks and demonstrated realtime HGA dynamics in hand motor areas and parts of the inferior frontal gyrus. Sensitivity and specificity of HGA mapping were 100% compared to ECS mapping in the frontal lobe, which suggested HGA mapping precisely indicated eloquent cortices. The investigation times of HGA mapping was significantly shorter than that of ECS mapping. Specificities of the motor and language-fMRI, however, did not reach 85%. The results of HGA mapping was mostly consistent with those of ECS mapping, although fMRI tended to overestimate functional areas. This novel technique enables rapid and accurate functional mapping.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Brain / physiopathology*
  • Brain / surgery*
  • Brain Mapping / methods*
  • Computer Systems*
  • Craniotomy / methods*
  • Electrodes, Implanted
  • Electroencephalography
  • Gamma Rhythm / physiology*
  • Hand Strength
  • Humans
  • Imaging, Three-Dimensional
  • Magnetic Resonance Imaging
  • Task Performance and Analysis
  • Wakefulness / physiology*