DocumentCode
973156
Title
Development of a piezopolymer pressure sensor for a portable fetal heart rate monitor
Author
Zuckerwar, Allan J. ; Pretlow, Robert A. ; Stoughton, John W. ; Baker, Donald A.
Author_Institution
NASA Langley Res. Center, Hampton, VA, USA
Volume
40
Issue
9
fYear
1993
Firstpage
963
Lastpage
969
Abstract
A piezopolymer pressure sensor has been developed for service in a portable fetal heart rate monitor, which will permit an expectant mother to perform the fetal nonstress test, a standard predelivery test, in her home. Several sensors are mounted in an array on a belt worn by the mother. The sensor design conforms to the distinctive features of the fetal heart tone, namely, the acoustic signature, frequency spectrum, signal amplitude, and localization. The components of a sensor serve to fulfill five functions: signal detection, acceleration cancellation, acoustical isolation, electrical shielding, and electrical isolation of the mother. A theoretical analysis of the sensor response yields a numerical value for the sensor sensitivity, which is compared to experiment in an in vitro sensor calibration. Finally, an in vivo test on patients within the last six weeks of term reveals that nonstress test recordings from the acoustic monitor compare well with those obtained from conventional ultrasound.
Keywords
acoustic signal processing; biomedical equipment; biomedical measurement; biomedical ultrasonics; calibration; cardiology; patient monitoring; piezoelectric transducers; polymer films; portable instruments; pressure sensors; acceleration cancellation; acoustic signature; acoustical isolation; electrical isolation; electrical shielding; frequency spectrum; in vitro sensor calibration; localization; nonstress test recordings; phonography; piezopolymer pressure sensor; portable fetal heart rate monitor; sensitivity; signal amplitude; signal detection; Acoustic sensors; Acoustic testing; Belts; Fetal heart rate; Heart rate measurement; Performance evaluation; Sensor arrays; Sensor phenomena and characterization; Standards development; Wearable sensors; Biosensing Techniques; Calibration; Equipment Design; Female; Fetal Monitoring; Heart Rate, Fetal; Humans; Membranes, Artificial; Polyvinyls; Pregnancy; Pressure;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/10.245618
Filename
245618
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