Monitoring of Caffeine Consumption Effect on Skin Blood Properties by Diffuse Reflectance Spectroscopy

Caffeine is the most widely consumed psychoactive substance worldwide, affecting numerous tissues and organs, with notable impacts on the central nervous system, heart, and blood vessels. The effect of caffeine on vascular smooth muscle cells is an initial transient contraction followed by significa...

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Published inPhysiological research Vol. 73; no. 1/2024; pp. 47 - 56
Main Authors Milanic, M, Hren, R, Stergar, J, Simoncic, U
Format Journal Article
LanguageEnglish
Published Czech Republic Institute of Physiology 11.03.2024
Institute of Physiology of the Czech Academy of Sciences
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Abstract Caffeine is the most widely consumed psychoactive substance worldwide, affecting numerous tissues and organs, with notable impacts on the central nervous system, heart, and blood vessels. The effect of caffeine on vascular smooth muscle cells is an initial transient contraction followed by significant vasodilatation. In this study we investigate the use of diffuse reflectance spectroscopy (DRS) for monitoring of vascular changes in human skin induced by caffeine consumption. DRS spectra were recorded on volar sides of the forearms of eight healthy volunteers at time intervals of 0, 30, 60, 120, and 180 min after consumption of caffeine, while one subject served as a negative control. Analytical diffusion approximation solutions for diffuse reflectance from three-layer structures were used to assess skin composition (e.g. dermal blood volume fraction and oxygen saturation) by fitting these solutions to experimental data. The results demonstrate that cutaneous vasodynamics induced by caffeine consumption can be monitored by DRS, while changes in the control subject not consuming caffeine were insignificant.
AbstractList Caffeine is the most widely consumed psychoactive substance worldwide, affecting numerous tissues and organs, with notable impacts on the central nervous system, heart, and blood vessels. The effect of caffeine on vascular smooth muscle cells is an initial transient contraction followed by significant vasodilatation. In this study we investigate the use of diffuse reflectance spectroscopy (DRS) for monitoring of vascular changes in human skin induced by caffeine consumption. DRS spectra were recorded on volar sides of the forearms of eight healthy volunteers at time intervals of 0, 30, 60, 120, and 180 min after consumption of caffeine, while one subject served as a negative control. Analytical diffusion approximation solutions for diffuse reflectance from three-layer structures were used to assess skin composition (e.g. dermal blood volume fraction and oxygen saturation) by fitting these solutions to experimental data. The results demonstrate that cutaneous vasodynamics induced by caffeine consumption can be monitored by DRS, while changes in the control subject not consuming caffeine were insignificant.
Author Hren, R
Stergar, J
Milanic, M
Simoncic, U
AuthorAffiliation 4 Syreon Research Institute, Budapest, Hungary
3 Institute of Mathematics, Physics, and Mechanics, Ljubljana, Republic of Slovenia
1 Faculty of Mathematics and Physics, University of Ljubljana, Ljubljana, Republic of Slovenia
2 Jožef Stefan Institute, Ljubljana, Republic of Slovenia
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StartPage 47
SubjectTerms Approximation
Blood
Blood vessels
Caffeine
Central nervous system
Coffee
Humans
Muscle contraction
Nervous system
Optical properties
Optics
Oxygen saturation
Psychotropic drugs
Questionnaires
Reflectance
Skin
Skin - blood supply
Smooth muscle
Spectroscopy
Spectrum analysis
Spectrum Analysis - methods
Vasodilation
Volunteers
Title Monitoring of Caffeine Consumption Effect on Skin Blood Properties by Diffuse Reflectance Spectroscopy
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