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Biomedical subjects

M L Petrovick

Publications and source records attributed to M L Petrovick.

5 recordsLinked to original sources

Continuous noninvasive monitoring of left ventricular function during exercise by thoracic impedance cardiography-automated derivation of systolic time intervals.

Systolic time intervals (STI) obtained during exercise are useful as a method of estimating global left ventricular function. The conventional method, however, which requires a carotid pulse tracing as well as a phonocardiogram of high quality, is technically difficult under conditions of exercise. We have validated a new method of obtaining STI which employs the first derivative of thoracic electrical impedance (DZ/DT). The DZ/DT was recorded using surface electrodes and a microcomputer for automated signal processing. The new method was studied in 20 male normal subjects (aged 18 to 53 years) at rest and during increasing levels of upright exercise. Heart rate ranged from 61 to 173 beats/min. Results obtained simultaneously by both techniques showed no significant difference. Thus impedance cardiography allows continuous monitoring of STI during exercise and may prove to be a valuable addition to multistage stress testing.

Adolescent↗

A comprehensive cardiac exercise stress processor for environmental health effects studies.

We have shown that an interactive microcomputer system using noninvasive cardiovascular measurements during exercise is both possible and practical. Experimental use of the system has verified our choice of variables as appropriate for automatic generation of a cardiovascular data base, but additional studies are required to determine the system's sensitivity for assessing health-effect decrements.

Air Pollutants↗

An analogue echogram range gate tracker for clinical echocardiography.

The fundamental purpose of this paper is to present the results of a feasibility study for an on-line, real-time automatic range gate tracker (ARGT) for clinical echocardiography, specifically for the purpose of determining cardiac output noninvasively and in real time. The basic ARGT design represents an implementation of specific algorithms and a system controller that permit user interaction and interpretation of clinical echocardiograms. In its analytical mode, the ARGT automatically tracks cardiac echoes as visually perceived and selected by the user. While tracking specific cardiac echoes, the ARGT converts the complex ultrasonic echogram into a pair of meaningful analogue signals (corresponding to the motion of the anterior and posterior left ventricular walls) from which dimensional information corresponding to dynamic geometric changes of the heart are derived. From the information, the cardiac output is computed in real time.

Cardiac Output↗