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A New Instrument for Continuous Measurement of Tissue Blood Flow by Light Beating Spectroscopy

IEEE Transactions on Biomedical Engineering · 1980 · Vol. BME-27(1) · pp. 12–19
Gert NilssonTorsten TenlandP. Å. Öberg

Abstract

A new instrument for measurement of regional tissue blood flow based on the laser Doppler principle is reported. The theoretical background of light beating spectroscopy is discussed and a detection technique which makes possible the suppression of the adverse effects of laser-mode interference and wide-band beam amplitude noise is described. Instead of using a single square-law photodetector a differential detector technique is introduced that reduces common-mode noise to a negligible level, without influencing the blood flow related signal. The new instrument has proved to be highly stable and sensitive. Continuous recordings of tissue blood flow can be performed in the laboratory as well as at the bedside.

Optical Imaging and Spectroscopy TechniquesHemodynamic Monitoring and TherapyThermoregulation and physiological responsesLaser Doppler velocimetryBlood flowPhotodetectorOpticsDetectorNoise (video)Interference (communication)Doppler effectSIGNAL (programming language)Spectroscopy

MeSH terms

Doppler EffectHumansLasersModels, CardiovascularRegional Blood FlowRheologySkinSpectrum AnalysisOptics and Photonics
Citations
597
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5.57
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Cited by
Evaluation of a Laser Doppler Flowmeter for Measurement of Tissue Blood Flow
IEEE Transactions on Biomedical Engineering · 1980 · 1,102 citations
References
Physiology and Biochemistry of the Skin
Journal of the American Medical Association · 1954 · 826 citations
LASER DOPPLER MEASUREMENT OF CUTANEOUS BLOOD FLOW
Journal of Investigative Dermatology · 1977 · 538 citations
Principles and Practice of Laser-Doppler Anemometry
Journal of Applied Mechanics · 1977 · 1,013 citations
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