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Evaluation of a Laser Doppler Flowmeter for Measurement of Tissue Blood Flow

IEEE Transactions on Biomedical Engineering · 1980 · Vol. BME-27(10) · pp. 597–604
Gert NilssonTorsten TenlandP. Å. Öberg

Abstract

An instrument for measurement of tissue blood flow based on the laser Doppler principle was evaluated using a fluid model. A unique and linear relationship between flowmeter response and flux of red cells was demonstrated with red cell velocities and volume fractions within the normal physiological range of the microcirculatory network of the skin. Different degrees of oxygenation proved to influence the Doppler signal only to a minor extent. The study also shows that the Doppler signal is formed essentially by heterodyne mixing of light beams backscattered in static structures and moving red cells.

Thermoregulation and physiological responsesOptical Imaging and Spectroscopy TechniquesNon-Invasive Vital Sign MonitoringLaser Doppler velocimetryDoppler effectFlow measurementSIGNAL (programming language)Blood flowOpticsLaserBiomedical engineeringHeterodyne detectionMaterials science

MeSH terms

Blood Flow VelocityDoppler EffectHumansLasersPhysicsRheologyPhysical Phenomena
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References
A New Instrument for Continuous Measurement of Tissue Blood Flow by Light Beating Spectroscopy
IEEE Transactions on Biomedical Engineering · 1980 · 597 citations
LASER DOPPLER MEASUREMENT OF CUTANEOUS BLOOD FLOW
Journal of Investigative Dermatology · 1977 · 538 citations
Continuous measurement of tissue blood flow by laser-Doppler spectroscopy
American Journal of Physiology-Heart and Circulatory Physiology · 1977 · 444 citations
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