Variability of microcirculatory measurements in healthy volunteers

M.E. Bol*, B.E.K. Broddin, T. Delhaas, J.E.M. Sels, M.C.G. van de Poll

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Reliable assessment of the microcirculation is important to investigate microcirculatory properties in various disease states. The GlycoCheck system automatically analyzes sublingual sidestream dark field images to determine the perfused boundary region (PBR; a measure of glycocalyx thickness), red blood cell filling percentage, and microvascular vessel density. Although GlycoCheck has been used to study the microcirculation in patients, little is known about the reproducibility of measurements in healthy volunteers. We assessed intra- and interobserver agreement by having two experienced observers perform three consecutive microcirculation measurements with the GlycoCheck system in 49 healthy volunteers. Intraobserver agreement of single measurements were poor (intraclass correlation coefficients (ICCs) < 0.4) for PBR, red blood cell filling percentage and microvascular vessel density. ICCs increased to values > 0.6 (indicating good reproducibility) for all parameters when performing and averaging three consecutive measurements. No systematic differences were observed between observers for any parameter. Interobserver variability was fair for PBR (ICC = 0.53) and red blood cell filling percentage (ICC = 0.58) and poor for perfused vessel density (ICC = 0.20). In conclusion, GlycoCheck software can be used with acceptable reliability and reproducibility for microcirculation measurements on a population level when averaging three consecutive measurements. Repeated measurements are preferably performed by the same observer.
Original languageEnglish
Article number19887
Number of pages6
JournalScientific Reports
Volume12
Issue number1
DOIs
Publication statusPublished - 18 Nov 2022

Keywords

  • ENDOTHELIAL GLYCOCALYX THICKNESS
  • MICROVASCULAR DYSFUNCTION
  • SEPTIC SHOCK
  • SEPSIS

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