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B R Zuckerman

Publications and source records attributed to B R Zuckerman.

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Components of left ventricular dysfunction discriminated noninvasively beat by beat.

Disturbed left ventricular contractility and synchrony were studied noninvasively beat by beat with simultaneous systolic time intervals and acceleration ballistocardiograms during quiet respiration. Thirty-six measures per beat, reduced to 7 by appropriate statistical methods, produced a linear discriminant function, based on a split training sample of 15 normal men (258 beats) and 9 men (149 beats) with proved myocardial infarctions. Validation tests on an independent set classified 89% of the beats from 12 tested normal subjects as "normal" and 96% of the beats from 6 tested men who had had infarction as "coronary-like," a physiologic, not etiologic, classification. In 14 hypertensive patients with no history or findings of coronary artery disease, 8 had 72 to 100% coronary-like beats per subject, suggesting unrecognized coronary artery disease, the cumulative effect of hypertension, or both. This method may help identify hypertensive patients at greater risk. Factor analysis found 4 discrete groups of the 7 discriminant variables that function together. Despite beat-to-beat variations due to respiration, myocardial dysfunction (when present) and individual differences, dysfunctional beats can be identified by these methods. They may also be applied to other multivariate data to extract the maximal information despite complex interactions.

Adult↗

Left ventricular dysfunction discriminated noninvasively beat by beat.

To discriminate left ventricular (LV) dysfunctional beats noninvasively, simultaneous systolic time intervals (STI), acceleration ballistocardiograms (BCG) and respiratory cycle were recorded in 102 men with no history of cardiac disease and in 20 men with proved myocardial infarction or systemic hypertension. Thirty-six measurements were made on each heartbeat on a maximum of 20 beats per patient. The ratio of preejection period to LV ejection time (ET) varied significantly with the respiratory cycle in normal men, but not in men with proved myocardial infarctions or systemic hypertension. The BCG I-wave amplitude varied significantly with respiration in all 3 groups. Various statistical methods identified 9 primary variables of the 36, which differed significantly in a training group of 275 heartbeats in 19 normal, vs 46 beats in 5 coronary patients. A nonlinear quadratic discriminant function based on these primary variables identified 87% of the heartbeats as "normal" in the normal men and 98% as "coronary" in the coronary men. A test group of normal men older than 40 years showed 89% of 97 heartbeats "normal" and in hypertensive men 67% of 85 beats "normal." Comparison by patients showed a range of "coronary" beats in the training normal group from 0 to 50%, the older normal group 0 to 33%, and in the hypertensive patients 0 to 88%. The appropriate use of quadratic discriminant analysis to multivariable data may yield information not otherwise seen. A beat-by-beat identification of dysfunctional beats at rest may lead to a sensitive index that is prognostically useful.

Adult↗