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Vasomotion analysis of speed resolved perfusion, oxygen saturation, red blood cell tissue fraction, and vessel diameter : Novel microvascular perspectives

Fredriksson, Ingemar, 1980- (author)
Linköpings universitet,Avdelningen för medicinsk teknik,Tekniska fakulteten
Larsson, Marcus, 1974- (author)
Linköpings universitet,Avdelningen för medicinsk teknik,Tekniska fakulteten
Strömberg, Tomas, 1966- (author)
Linköpings universitet,Avdelningen för medicinsk teknik,Tekniska fakulteten
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Iredahl, Fredrik, 1988- (author)
Linköpings universitet,Medicinska fakulteten,Avdelningen för prevention, rehabilitering och nära vård,Region Östergötland, Vårdcentralen Åby
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 (creator_code:org_t)
2021-11-10
2022
English.
In: Skin research and technology. - : Wiley-Blackwell Publishing Inc.. - 0909-752X .- 1600-0846. ; 28:1, s. 142-152
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • BackgroundVasomotion is the spontaneous oscillation in vascular tone in the microcirculation and is believed to be a physiological mechanism facilitating the transport of blood gases and nutrients to and from tissues. So far, Laser Doppler flowmetry has constituted the gold standard for in vivo vasomotion analysis.Materials and methodsWe applied vasomotion analysis to speed-resolved perfusion, oxygen saturation, red blood cell tissue (RBC) tissue fraction, and average vessel diameter from five healthy individuals at rest measured by the newly developed Periflux 6000 EPOS system over 10 minutes. Magnitude scalogram and the time-averaged wavelet spectra were divided into frequency intervals reflecting endothelial, neurogenic, myogenic, respiratory, and cardiac function.ResultsRecurrent high-intensity periods of the myogenic, neurogenic, and endothelial frequency intervals were found. The neurogenic activity was considerably more pronounced for the oxygen saturation, RBC tissue fraction, and vessel diameter signals, than for the perfusion signals. In a correlation analysis we found that changes in perfusion in the myogenic, neurogenic, and endothelial frequency intervals precede changes in the other signals. Furthermore, changes in average vessel diameter were in general negatively correlated to the other signals in the same frequency intervals, indicating the importance of capillary recruitment.ConclusionWe conclude that vasomotion can be observed in signals reflecting speed resolved perfusion, oxygen saturation, RBC tissue fraction, and vessel diameter. The new parameters enable new aspects of the microcirculation to be observed.

Subject headings

TEKNIK OCH TEKNOLOGIER  -- Medicinteknik -- Medicinsk laboratorie- och mätteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Medical Engineering -- Medical Laboratory and Measurements Technologies (hsv//eng)

Keyword

diffuse reflectance spectroscopy
laser Doppler flowmetry
microcirculation
vasomotion

Publication and Content Type

ref (subject category)
art (subject category)

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