PubMed Health⌕ Search

PubMed · 2060369

Late variation in ventricular function after myocardial infarction.

Abstract

To assess the possible role of variables not related to early infarct artery reperfusion in predicting late changes in ventricular function after infarction, paired early (mean 6.6 +/- 3.5 days after admission) and late (12.7 +/- 7.0 months later) cross-sectional echocardiograms from 54 infarction survivors were retrospectively reviewed. Ejection fraction was calculated from digitized biapical echocardiographic views on a graphics tablet. Changes of 0.10 or more in LVEF were correlated with 23 clinical variables. By stepwise regression analysis, Q-wave infarction and low early LVEF independently predicted late improvement in function. Early high LVEF and interval infarction were the only independent predictors of late declines in function. Overall, when patients were indexed by early left ventricular systolic function, a pronounced late "regression to the mean" was noted with initially high values tending to fall and low values to rise (r = -0.44, p less than 0.001). This effect must be accounted for in any acute intervention trial in myocardial infarction. The occurrence of Q-wave infarction does not exclude late improvement in ventricular function.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

V H Humbert, H Jabi, A J Burger, R C Touchon. 1991. Late variation in ventricular function after myocardial infarction.. https://doi.org/10.1378/chest.100.1.28

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Electrocardiographic prediction of left ventricular geometric patterns in patients with essential hypertension.

BACKGROUND: The present study sought to determine the diagnostic value of electrocardiographic voltage criteria in predicting geometry patterns in patients with essential hypertension. METHODS: Patients with essential hypertension (n=125) according to left ventricular mass index and relative wall thickness as determined by echocardiography were assigned in the following groups: normal geometry (N, n=50), concentric remodeling (CR, n=12), concentric hypertrophy (CH, n=28) and eccentric hypertrophy (EH, n=35). Each patient underwent 12-lead ECG followed by determination of conventional voltage criteria as well as peak to peak QRS lengths in each lead. RESULTS: Voltage criteria such as Sokolow-Lyon, Cornell, Cornell product >2440, D1R+D3S >25 mm, and AVL R >11 mm could not significantly predict and discriminate geometric patterns of LVH. However, they all were very specific (range 97-100%) and showed very high positive predictive values (range 94-100%) for detecting abnormal geometry. DI peak >12 mm had a sensitivity 61%, specificity 67%, accuracy 63%, positive predictive value 81%, and negative predictive value 42% in predicting to differentiate CH from CR. Sum of the calculated values from the peak of the R to the nadir of the S wave in all limb leads >60 mm had sensitivity 68%, specificity 75%, accuracy 70%, positive predictive value 86% and negative predictive value 50% in predicting to differentiate CH from CR. CONCLUSIONS: Conventional ECG voltage criteria could not significantly discriminate specific geometry patterns observed in patients with essential hypertension.

Echocardiography↗

Echocardiographic evidence of posteromedial hypokinesis of the left ventricle in relation to mitral regurgitation in cardiac sarcoidosis.

We describe herein the case of a 49-year-old female patient with pulmonary sarcoidosis (stage II) with cardiac manifestation. This consisted of systolic dysfunction without dilatation of the left ventricle and severe mitral insufficiency, possibly due to thinning of the posteromedial left ventricular free wall, based on our echocardiographic observations.

Echocardiography↗