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Transfer function analysis of dynamic cerebral autoregulation: A CARNet white paper 2022 update

Authors :
Ronney B, Panerai
Patrice, Brassard
Joel S, Burma
Pedro, Castro
Jurgen Ahr, Claassen
Johannes J, van Lieshout
Jia, Liu
Samuel Je, Lucas
Jatinder S, Minhas
Georgios D, Mitsis
Ricardo C, Nogueira
Shigehiko, Ogoh
Stephen J, Payne
Caroline A, Rickards
Andrew D, Robertson
Gabriel D, Rodrigues
Jonathan D, Smirl
David M, Simpson
Source :
Journal of Cerebral Blood Flow and Metabolism, 43, 3-25, Journal of Cerebral Blood Flow and Metabolism, 43, 1, pp. 3-25
Publication Year :
2022
Publisher :
SAGE Publications, 2022.

Abstract

Cerebral autoregulation (CA) refers to the control of cerebral tissue blood flow (CBF) in response to changes in perfusion pressure. Due to the challenges of measuring intracranial pressure, CA is often described as the relationship between mean arterial pressure (MAP) and CBF. Dynamic CA (dCA) can be assessed using multiple techniques, with transfer function analysis (TFA) being the most common. A 2016 white paper by members of an international Cerebrovascular Research Network (CARNet) that is focused on CA strove to improve TFA standardization by way of introducing data acquisition, analysis, and reporting guidelines. Since then, additional evidence has allowed for the improvement and refinement of the original recommendations, as well as for the inclusion of new guidelines to reflect recent advances in the field. This second edition of the white paper contains more robust, evidence-based recommendations, which have been expanded to address current streams of inquiry, including optimizing MAP variability, acquiring CBF estimates from alternative methods, estimating alternative dCA metrics, and incorporating dCA quantification into clinical trials. Implementation of these new and revised recommendations is important to improve the reliability and reproducibility of dCA studies, and to facilitate inter-institutional collaboration and the comparison of results between studies.

Details

ISSN :
15597016 and 0271678X
Volume :
43
Database :
OpenAIRE
Journal :
Journal of Cerebral Blood Flow & Metabolism
Accession number :
edsair.doi.dedup.....264fb53b8a588c484ea72649f1101bd3