Near Infrared Spectroscopy for High-Temporal Resolution Cerebral Physiome Characterization in TBI: A Narrative Review of Techniques, Applications, and Future Directions

Multimodal monitoring has been gaining traction in the critical care of patients following traumatic brain injury (TBI). Through providing a deeper understanding of the individual patient’s comprehensive physiologic state, or “physiome,” following injury, these methods hold the promise of improving...

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Autores principales: Alwyn Gomez, Amanjyot Singh Sainbhi, Logan Froese, Carleen Batson, Arsalan Alizadeh, Asher A. Mendelson, Frederick A. Zeiler
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Publicado: Frontiers Media S.A. 2021
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Acceso en línea:https://doaj.org/article/a4e9bffb6de84c4896eabc5863df5a06
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spelling oai:doaj.org-article:a4e9bffb6de84c4896eabc5863df5a062021-11-05T10:36:39ZNear Infrared Spectroscopy for High-Temporal Resolution Cerebral Physiome Characterization in TBI: A Narrative Review of Techniques, Applications, and Future Directions1663-981210.3389/fphar.2021.719501https://doaj.org/article/a4e9bffb6de84c4896eabc5863df5a062021-11-01T00:00:00Zhttps://www.frontiersin.org/articles/10.3389/fphar.2021.719501/fullhttps://doaj.org/toc/1663-9812Multimodal monitoring has been gaining traction in the critical care of patients following traumatic brain injury (TBI). Through providing a deeper understanding of the individual patient’s comprehensive physiologic state, or “physiome,” following injury, these methods hold the promise of improving personalized care and advancing precision medicine. One of the modalities being explored in TBI care is near-infrared spectroscopy (NIRS), given it’s non-invasive nature and ability to interrogate microvascular and tissue oxygen metabolism. In this narrative review, we begin by discussing the principles of NIRS technology, including spatially, frequency, and time-resolved variants. Subsequently, the applications of NIRS in various phases of clinical care following TBI are explored. These applications include the pre-hospital, intraoperative, neurocritical care, and outpatient/rehabilitation setting. The utility of NIRS to predict functional outcomes and evaluate dysfunctional cerebrovascular reactivity is also discussed. Finally, future applications and potential advancements in NIRS-based physiologic monitoring of TBI patients are presented, with a description of the potential integration with other omics biomarkers.Alwyn GomezAlwyn GomezAmanjyot Singh SainbhiLogan FroeseCarleen BatsonArsalan AlizadehAsher A. MendelsonAsher A. MendelsonFrederick A. ZeilerFrederick A. ZeilerFrederick A. ZeilerFrederick A. ZeilerFrederick A. ZeilerFrontiers Media S.A.articletraumatic brain injurynear-infrared spectroscopycerebrovascular reactivitymulti-modal monitoringprecision medicineTherapeutics. PharmacologyRM1-950ENFrontiers in Pharmacology, Vol 12 (2021)
institution DOAJ
collection DOAJ
language EN
topic traumatic brain injury
near-infrared spectroscopy
cerebrovascular reactivity
multi-modal monitoring
precision medicine
Therapeutics. Pharmacology
RM1-950
spellingShingle traumatic brain injury
near-infrared spectroscopy
cerebrovascular reactivity
multi-modal monitoring
precision medicine
Therapeutics. Pharmacology
RM1-950
Alwyn Gomez
Alwyn Gomez
Amanjyot Singh Sainbhi
Logan Froese
Carleen Batson
Arsalan Alizadeh
Asher A. Mendelson
Asher A. Mendelson
Frederick A. Zeiler
Frederick A. Zeiler
Frederick A. Zeiler
Frederick A. Zeiler
Frederick A. Zeiler
Near Infrared Spectroscopy for High-Temporal Resolution Cerebral Physiome Characterization in TBI: A Narrative Review of Techniques, Applications, and Future Directions
description Multimodal monitoring has been gaining traction in the critical care of patients following traumatic brain injury (TBI). Through providing a deeper understanding of the individual patient’s comprehensive physiologic state, or “physiome,” following injury, these methods hold the promise of improving personalized care and advancing precision medicine. One of the modalities being explored in TBI care is near-infrared spectroscopy (NIRS), given it’s non-invasive nature and ability to interrogate microvascular and tissue oxygen metabolism. In this narrative review, we begin by discussing the principles of NIRS technology, including spatially, frequency, and time-resolved variants. Subsequently, the applications of NIRS in various phases of clinical care following TBI are explored. These applications include the pre-hospital, intraoperative, neurocritical care, and outpatient/rehabilitation setting. The utility of NIRS to predict functional outcomes and evaluate dysfunctional cerebrovascular reactivity is also discussed. Finally, future applications and potential advancements in NIRS-based physiologic monitoring of TBI patients are presented, with a description of the potential integration with other omics biomarkers.
format article
author Alwyn Gomez
Alwyn Gomez
Amanjyot Singh Sainbhi
Logan Froese
Carleen Batson
Arsalan Alizadeh
Asher A. Mendelson
Asher A. Mendelson
Frederick A. Zeiler
Frederick A. Zeiler
Frederick A. Zeiler
Frederick A. Zeiler
Frederick A. Zeiler
author_facet Alwyn Gomez
Alwyn Gomez
Amanjyot Singh Sainbhi
Logan Froese
Carleen Batson
Arsalan Alizadeh
Asher A. Mendelson
Asher A. Mendelson
Frederick A. Zeiler
Frederick A. Zeiler
Frederick A. Zeiler
Frederick A. Zeiler
Frederick A. Zeiler
author_sort Alwyn Gomez
title Near Infrared Spectroscopy for High-Temporal Resolution Cerebral Physiome Characterization in TBI: A Narrative Review of Techniques, Applications, and Future Directions
title_short Near Infrared Spectroscopy for High-Temporal Resolution Cerebral Physiome Characterization in TBI: A Narrative Review of Techniques, Applications, and Future Directions
title_full Near Infrared Spectroscopy for High-Temporal Resolution Cerebral Physiome Characterization in TBI: A Narrative Review of Techniques, Applications, and Future Directions
title_fullStr Near Infrared Spectroscopy for High-Temporal Resolution Cerebral Physiome Characterization in TBI: A Narrative Review of Techniques, Applications, and Future Directions
title_full_unstemmed Near Infrared Spectroscopy for High-Temporal Resolution Cerebral Physiome Characterization in TBI: A Narrative Review of Techniques, Applications, and Future Directions
title_sort near infrared spectroscopy for high-temporal resolution cerebral physiome characterization in tbi: a narrative review of techniques, applications, and future directions
publisher Frontiers Media S.A.
publishDate 2021
url https://doaj.org/article/a4e9bffb6de84c4896eabc5863df5a06
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