Assessment of Microvascular Function Based on Flowmotion Monitored by the Flow-Mediated Skin Fluorescence Technique

Author:

Marcinek Andrzej12ORCID,Katarzynska Joanna2ORCID,Cypryk Katarzyna3,Los-Stegienta Agnieszka3ORCID,Slowikowska-Hilczer Jolanta4ORCID,Walczak-Jedrzejowska Renata4ORCID,Zielinski Jacek5ORCID,Gebicki Jerzy12ORCID

Affiliation:

1. Institute of Applied Radiation Chemistry, Lodz University of Technology, 90-924 Lodz, Poland

2. Angionica Ltd., 90-924 Lodz, Poland

3. Department of Internal Diseases and Diabetology, Medical University of Lodz, 92-213 Lodz, Poland

4. Department of Andrology and Reproductive Endocrinology, Medical University of Lodz, 92-213 Lodz, Poland

5. Department of Athletics, Strength and Conditioning, Poznan University of Physical Education, 61-871 Poznan, Poland

Abstract

This review summarizes studies dedicated to the assessment of microvascular function based on microcirculatory oscillations monitored by the Flow-Mediated Skin Fluorescence (FMSF) technique. Two approaches are presented. The first approach uses oscillatory parameters measured under normoxic conditions, expressed as flowmotion (FM), vasomotion (VM), and the normoxia oscillatory index (NOI). These parameters have been used for the identification of impaired microcirculatory oscillations associated with intense physical exercise, post-COVID syndrome, psychological stress, and erectile dysfunction. The second approach involves characterization of the microcirculatory response to hypoxia based on the measurement of hypoxia sensitivity (HS). The HS parameter is used to characterize microvascular complications in diabetes, such as diabetic kidney disease and diabetic foot ulcers. Based on research conducted by the authors of this review, the FMSF parameter ranges characterizing microvascular function are presented. The diagnostic approach to assessing microvascular function based on flowmotion monitored by the FMSF technique has a wide range of applications and the potential to be integrated into widespread medical practice.

Funder

The European Regional Development Fund under the Smart Growth Operational Program

Publisher

MDPI AG

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