Title Validation of noninvasive MOEMS-assisted measurement system based on CCD sensor for radial pulse analysis /
Authors Malinauskas, Karolis ; Palevicius, Paulius ; Ragulskis, Minvydas ; Ostasevicius, Vytautas ; Dauksevicius, Rolanas
DOI 10.3390/s130405368
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Is Part of Sensors.. Basel : MDPI. 2013, vol. 13, iss. 4, p. 5368-5380.. ISSN 1424-8220
Keywords [eng] radial pulse ; laser triangulation ; MOEMS ; CCD sensor ; projection Moire
Abstract [eng] Examination of wrist radial pulse is a noninvasive diagnostic method, which occupies a very important position in Traditional Chinese Medicine. It is based on manual palpation and therefore relies largely on the practitioner's subjective technical skills and judgment. Consequently, it lacks reliability and consistency, which limits practical applications in clinical medicine. Thus, quantifiable characterization of the wrist pulse diagnosis method is a prerequisite for its further development and widespread use. This paper reports application of a noninvasive CCD sensor-based hybrid measurement system for radial pulse signal analysis. First, artery wall deformations caused by the blood flow are calibrated with a laser triangulation displacement sensor, following by the measurement of the deformations with projection moire method. Different input pressures and fluids of various viscosities are used in the assembled artificial blood flow system in order to test the performance of laser triangulation technique with detection sensitivity enhancement through microfabricated retroreflective optical element placed on a synthetic vascular graft. Subsequently, the applicability of double-exposure whole-field projection moire technique for registration of blood flow pulses is considered: a computational model and representative example are provided, followed by in vitro experiment performed on a vascular graft with artificial skin atop, which validates the suitability of the technique for characterization of skin surface deformations caused by the radial pulsation.
Published Basel : MDPI
Type Journal article
Language English
Publication date 2013
CC license CC license description