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Noninvasive optical monitoring of cerebral blood flow and eeg spectral responses after severe traumatic brain injury: A case report

  • Chien Sing Poon
  • , Benjamin Rinehart
  • , Dharminder S. Langri
  • , Timothy M. Rambo
  • , Aaron J. Miller
  • , Brandon Foreman
  • , Ulas Sunar
  • Wright State University
  • LLC
  • University of Cincinnati

Research output: Contribution to journalArticlepeer-review

7 Scopus citations

Abstract

Survivors of severe brain injury may require care in a neurointensive care unit (neuro-ICU), where the brain is vulnerable to secondary brain injury. Thus, there is a need for noninvasive, bedside, continuous cerebral blood flow monitoring approaches in the neuro-ICU. Our goal is to address this need through combined measurements of EEG and functional optical spectroscopy (EEG-Optical) instrumentation and analysis to provide a complementary fusion of data about brain activity and function. We utilized the diffuse correlation spectroscopy method for assessing cerebral blood flow at the neuro-ICU in a patient with traumatic brain injury. The present case demonstrates the feasibility of continuous recording of noninvasive cerebral blood flow transients that correlated well with the gold-standard invasive measurements and with the frequency content changes in the EEG data.

Original languageEnglish
Article number1093
JournalBrain Sciences
Volume11
Issue number8
DOIs
StatePublished - Aug 2021

Keywords

  • Cerebral blood flow and oxygenation
  • Diffuse correlation spectroscopy
  • EEG
  • Neurointensive care unit
  • Neuromonitoring
  • Traumatic brain injury

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