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1.
Chinese Journal of Medical Instrumentation ; (6): 167-171, 2009.
Article in Chinese | WPRIM | ID: wpr-329351

ABSTRACT

A handy-type monitoring system for cardiovascular haemodynamic functions based on the volume-compensation and electrical admittance method is developed. In this system, the inconvenient and discomfort due to cuff occlusion of the biological segment for BP measurement is improved by developing a new device using a local pressurization method, the stability for the physiological information detection is improved by developing a new detecting system, and the noise during detection using the system is greatly reduced by using a newly developed nozzle-flapper type electro-pneumatic converter. Also, for electrical admittance cardiography to estimate CO, the applicability of a two-compartment coaxial cylindrical model and the optimal position of a spot-electrode array that is used to replace the conventional band-electrode are discussed in this research. Experimental result shows that the monitoring system should satisfy non-invasive BP and CO measurement on beat by beat, and the comfort of measurement is significantly improved.


Subject(s)
Cardiovascular Diseases , Diagnostic Techniques, Cardiovascular , Equipment Design , Hemodynamics , Monitoring, Physiologic , Methods
2.
Chinese Journal of Medical Instrumentation ; (6): 323-327, 2009.
Article in Chinese | WPRIM | ID: wpr-329314

ABSTRACT

An instantaneous blood pressure measuring system at the wrist based on the volume-compensation method is developed, and the characteristics and accuracy of the system is evaluated. The radial artery at the wrist is used as the detecting object, and a pad-type cuff as well as a newly designed electro- pneumatic converter is used in the system. Also, the comparative experiments between the system and the invasive blood measuring device (direct method) indicated that, the results obtained from the two methods are well correlated not only in rest condition, but also in a stressful condition. Therefore, the system is capable of non-invasive measuring instantaneous blood pressure in the radial artery.


Subject(s)
Humans , Blood Pressure Determination , Methods , Equipment Design , Radial Artery , Physiology
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