DocumentCode :
141001
Title :
A phantom with pulsating artificial vessels for non-invasive fetal pulse oximetry
Author :
Laqua, Daniel ; Pollnow, Stefan ; Fischer, J. ; Ley, Sebastian ; Husar, Peter
Author_Institution :
Biosignal Process. Group, Tech. Univ. Ilmenau, Ilmenau, Germany
fYear :
2014
fDate :
26-30 Aug. 2014
Firstpage :
5631
Lastpage :
5634
Abstract :
Arterial oxygen saturation of the fetus is an important parameter for monitoring its physical condition. During labor and delivery the transabdominal non-invasive fetal pulse oximetry could minimize the risk for mother and fetus, compared to other existing invasive examination methods. In this contribution, we developed a physical-like phantom to investigate new sensor circuits and algorithms of a non-invasive diagnostic method for fetal pulse oximetry. Hence, the developed artificial vascular system consists of two independent tube systems representing the maternal and fetal vessel system. The arterial blood pressure is reproduced with a pre-pressure and an artificial vascular system. Each pulse wave can be reproduced, by digital control of a proportional valve, adjustable viscoelastic elements, and resistances. The measurements are performed by pressure transducers, optical sensor units, and a coplanar capacitive sensor. Transmission and reflection measurements have shown that the fetal and maternal pulse waves can be reproduced qualitatively. The measured light represents the transabdominal modulated signal on an abdomen of a pregnant woman.
Keywords :
blood pressure measurement; blood vessels; capacitive sensors; light reflection; light transmission; optical sensors; oximetry; patient monitoring; phantoms; pressure transducers; pulse measurement; adjustable viscoelastic element; arterial blood pressure; arterial oxygen saturation; artificial vascular system; coplanar capacitive sensor; digital control; fetal vessel system; fetus; independent tube system; maternal vessel system; noninvasive diagnostic method; noninvasive fetal pulse oximetry; optical sensor unit; physical condition monitoring; physical-like phantom; pregnant woman; pressure transducer; pulsating artificial vessels; reflection measurement; sensor circuits; transabdominal modulated signal; transmission measurement; Blood; Electrical resistance measurement; Electron tubes; Fetus; Phantoms; Pressure measurement; Valves;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Engineering in Medicine and Biology Society (EMBC), 2014 36th Annual International Conference of the IEEE
Conference_Location :
Chicago, IL
ISSN :
1557-170X
Type :
conf
DOI :
10.1109/EMBC.2014.6944904
Filename :
6944904
Link To Document :
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