DocumentCode
940948
Title
Method for continuous nondisturbing monitoring of blood pressure by magnetoelastic skin curvature sensor and ECG
Author
Kaniusas, Eugenijus ; Pfützner, Helmut ; Mehnen, Lars ; Kosel, Jürgen ; Téllez-Blanco, Juan Carlos ; Varoneckas, Giedrius ; Alonderis, Audrius ; Meydan, Turgut ; Vázquez, Manuel ; Rohn, Michael ; Merlo, Alberto M. ; Marquardt, Bernd
Author_Institution
Bioelectricity & Magnetism Lab, Univ. of Technol., Vienna
Volume
6
Issue
3
fYear
2006
fDate
6/1/2006 12:00:00 AM
Firstpage
819
Lastpage
828
Abstract
This paper concerns continuous nondisturbing estimation of blood pressure using mechanical plethysmography in connection with standard electrocardiography (ECG). The plethysmography is given by a novel magnetoelastic skin curvature sensor (SC-sensor) applied on the neck over the carotid artery. The sensor consists of a magnetoelastic bilayer partly enclosed by a coil. Bending the bilayer causes large changes of magnetic permeability which can be measured by the coil. The SC-sensor signal and the ECG signal are adaptively processed in order to estimate blood pressure according to a specifically established theoretical model. The model uses estimated vessel radius changes and pulse transit time as parameters. The results show cross correlation coefficients in the range 0.8 up to 0.9 between reference and estimated values of systolic blood pressure, diastolic blood pressure, and systolic/diastolic blood pressure change, whereas the estimation error was below 4 +/- 7 mmHg at rest and increased with the stress level. Limitations of the model applicability are given by a hysteretic behavior of both model parameters due to inert changes in artery stiffness. The SC-sensor and the ECG electrodes cause minimal inconvenience to the patient and offer an approach for a continuous nondisturbing monitoring of blood pressure changes, as being relevant for sleep monitoring or biomechanic feedback
Keywords
biosensors; blood pressure measurement; electrocardiography; patient monitoring; plethysmography; skin; biomechanic feedback; blood pressure monitoring; carotid artery; electrocardiography; magnetoelastic amorphous ribbons; magnetoelastic skin curvature sensor; mechanical plethysmography; physiological sensors; sleep monitoring; Biomedical monitoring; Blood pressure; Coils; Electrocardiography; Magnetic sensors; Mechanical sensors; Patient monitoring; Plethysmography; Signal processing; Skin; Blood pressure; electrocardiography; magnetoelastic amorphous ribbons; mechanical plethysmography; physiological sensors; skin curvature sensor;
fLanguage
English
Journal_Title
Sensors Journal, IEEE
Publisher
ieee
ISSN
1530-437X
Type
jour
DOI
10.1109/JSEN.2006.874438
Filename
1634435
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