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Near-infrared spectroscopy monitoring during endovascular treatment for acute ischaemic stroke

INTRODUCTION: The aim of endovascular treatment (EVT) for acute ischaemic stroke is to relieve the cerebral tissue hypoxia in the area supplied by the occluded artery. Near-infrared spectroscopy (NIRS) monitoring is developed to assess regional cerebral tissue oxygen haemoglobin saturation (rSO(2))....

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Autores principales: Collette, Sabine L, Venema, Allart M, Eleveld, Nick, Absalom, Anthony R, Scheeren, Thomas WL, Verhoeve, Simon, de Groot, Jan Cees, Elting, Jan Willem J, Uyttenboogaart, Maarten, Bokkers, Reinoud PH, Sahinovic, Marko M
Formato: Online Artículo Texto
Lenguaje:English
Publicado: SAGE Publications 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9720858/
https://www.ncbi.nlm.nih.gov/pubmed/36478755
http://dx.doi.org/10.1177/23969873221107824
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author Collette, Sabine L
Venema, Allart M
Eleveld, Nick
Absalom, Anthony R
Scheeren, Thomas WL
Verhoeve, Simon
de Groot, Jan Cees
Elting, Jan Willem J
Uyttenboogaart, Maarten
Bokkers, Reinoud PH
Sahinovic, Marko M
author_facet Collette, Sabine L
Venema, Allart M
Eleveld, Nick
Absalom, Anthony R
Scheeren, Thomas WL
Verhoeve, Simon
de Groot, Jan Cees
Elting, Jan Willem J
Uyttenboogaart, Maarten
Bokkers, Reinoud PH
Sahinovic, Marko M
author_sort Collette, Sabine L
collection PubMed
description INTRODUCTION: The aim of endovascular treatment (EVT) for acute ischaemic stroke is to relieve the cerebral tissue hypoxia in the area supplied by the occluded artery. Near-infrared spectroscopy (NIRS) monitoring is developed to assess regional cerebral tissue oxygen haemoglobin saturation (rSO(2)). We aimed to investigate whether NIRS can detect inter- and intra-hemispheric rSO(2) differences during EVT. PATIENTS AND METHODS: In this prospective, observational study, patients undergoing EVT for a proximal intracranial occlusion of the anterior circulation between May 2019 and November 2020, were included. A four-wavelength NIRS monitor (O3(®) Regional Oximeter (Masimo, Irvine, CA)) was used to measure rSO(2) during EVT with sensors placed over the temporal lobes in 20 patients and over the frontal lobes in 13 patients. The Wilcoxon signed-rank test was used to test for inter-hemispheric rSO(2) differences after groin puncture and after recanalisation, and intra-hemispheric rSO(2) changes before and after recanalisation. RESULTS: In the temporal cohort, no inter-hemispheric rSO(2) differences were observed after groin puncture (median [IQR] rSO(2) affected hemisphere, 70% [67–73] and unaffected hemisphere, 70% [66–72]; p = 0.79) and after recanalisation. There were no intra-hemispheric rSO(2) changes over time. In the frontal cohort, no inter- and intra-hemispheric rSO(2) differences or changes were found. DISCUSSION AND CONCLUSION: A NIRS monitor could not detect inter- and intra-hemispheric rSO(2) differences or changes during EVT, irrespective of the sensor position. It is likely that even with temporal sensor application, a significant proportion of the received NIRS signal was influenced by oxygenation of surrounding tissues.
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spelling pubmed-97208582022-12-06 Near-infrared spectroscopy monitoring during endovascular treatment for acute ischaemic stroke Collette, Sabine L Venema, Allart M Eleveld, Nick Absalom, Anthony R Scheeren, Thomas WL Verhoeve, Simon de Groot, Jan Cees Elting, Jan Willem J Uyttenboogaart, Maarten Bokkers, Reinoud PH Sahinovic, Marko M Eur Stroke J Original Research Articles INTRODUCTION: The aim of endovascular treatment (EVT) for acute ischaemic stroke is to relieve the cerebral tissue hypoxia in the area supplied by the occluded artery. Near-infrared spectroscopy (NIRS) monitoring is developed to assess regional cerebral tissue oxygen haemoglobin saturation (rSO(2)). We aimed to investigate whether NIRS can detect inter- and intra-hemispheric rSO(2) differences during EVT. PATIENTS AND METHODS: In this prospective, observational study, patients undergoing EVT for a proximal intracranial occlusion of the anterior circulation between May 2019 and November 2020, were included. A four-wavelength NIRS monitor (O3(®) Regional Oximeter (Masimo, Irvine, CA)) was used to measure rSO(2) during EVT with sensors placed over the temporal lobes in 20 patients and over the frontal lobes in 13 patients. The Wilcoxon signed-rank test was used to test for inter-hemispheric rSO(2) differences after groin puncture and after recanalisation, and intra-hemispheric rSO(2) changes before and after recanalisation. RESULTS: In the temporal cohort, no inter-hemispheric rSO(2) differences were observed after groin puncture (median [IQR] rSO(2) affected hemisphere, 70% [67–73] and unaffected hemisphere, 70% [66–72]; p = 0.79) and after recanalisation. There were no intra-hemispheric rSO(2) changes over time. In the frontal cohort, no inter- and intra-hemispheric rSO(2) differences or changes were found. DISCUSSION AND CONCLUSION: A NIRS monitor could not detect inter- and intra-hemispheric rSO(2) differences or changes during EVT, irrespective of the sensor position. It is likely that even with temporal sensor application, a significant proportion of the received NIRS signal was influenced by oxygenation of surrounding tissues. SAGE Publications 2022-07-10 2022-12 /pmc/articles/PMC9720858/ /pubmed/36478755 http://dx.doi.org/10.1177/23969873221107824 Text en © European Stroke Organisation 2022 https://creativecommons.org/licenses/by-nc/4.0/This article is distributed under the terms of the Creative Commons Attribution-NonCommercial 4.0 License (https://creativecommons.org/licenses/by-nc/4.0/) which permits non-commercial use, reproduction and distribution of the work without further permission provided the original work is attributed as specified on the SAGE and Open Access pages (https://us.sagepub.com/en-us/nam/open-access-at-sage).
spellingShingle Original Research Articles
Collette, Sabine L
Venema, Allart M
Eleveld, Nick
Absalom, Anthony R
Scheeren, Thomas WL
Verhoeve, Simon
de Groot, Jan Cees
Elting, Jan Willem J
Uyttenboogaart, Maarten
Bokkers, Reinoud PH
Sahinovic, Marko M
Near-infrared spectroscopy monitoring during endovascular treatment for acute ischaemic stroke
title Near-infrared spectroscopy monitoring during endovascular treatment for acute ischaemic stroke
title_full Near-infrared spectroscopy monitoring during endovascular treatment for acute ischaemic stroke
title_fullStr Near-infrared spectroscopy monitoring during endovascular treatment for acute ischaemic stroke
title_full_unstemmed Near-infrared spectroscopy monitoring during endovascular treatment for acute ischaemic stroke
title_short Near-infrared spectroscopy monitoring during endovascular treatment for acute ischaemic stroke
title_sort near-infrared spectroscopy monitoring during endovascular treatment for acute ischaemic stroke
topic Original Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9720858/
https://www.ncbi.nlm.nih.gov/pubmed/36478755
http://dx.doi.org/10.1177/23969873221107824
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