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February 1, 1983Circulation277 citations

Anatomic validation of left ventricular mass estimates from clinical two-dimensional echocardiography: initial results.

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NRNathaniel ReichekJHJ HelakTPTheodore Plappert

Structured PICO

Does two-dimensional echocardiography accurately estimate left ventricular mass compared to actual anatomic weight?

P
Population
21 subjects with antemortem 2-D echocardiography and postmortem chamber dissection. Diagnoses included anatomic LV aneurysm (n=4), status post aneurysmectomy (n=1), transmural myocardial infarction (n=7), congestive cardiomyopathy (n=5), rheumatic mitral disease (n=2), chronic severe mitral or aortic regurgitation (n=3), amyloid heart (n=2), and normal heart (n=3). Marked right-heart dilatation was present in 11 patients and LV thrombus in 4.
I
Intervention
Left ventricular mass estimation using clinical two-dimensional echocardiography (regression-corrected short-axis, area-length method)
C
Comparator
Anatomic left ventricular weight by postmortem chamber dissection (and M-mode echocardiographic LV mass estimates)
O
Outcome
Correlation of estimated left ventricular mass with actual anatomic left ventricular weightsurrogate

Two-dimensional echocardiography using a regression-corrected short-axis area-length method provides highly accurate estimates of left ventricular mass, superior to M-mode echocardiography, even in distorted hearts.

Abstract

We performed a prospective anatomic validation study to determine the accuracy of left ventricular (LV) mass estimates from clinical two-dimensional echocardiographic (2-D echo) studies. In 21 subjects, antemortem 2-D echo LV mass determinations were compared with anatomic LV weight by postmortem chamber dissection. Major cardiac diagnoses included anatomic LV aneurysm in four, status post aneurysmectomy in one, transmural myocardial infarction in seven, congestive cardiomyopathy in five, rheumatic mitral disease in two, chronic severe mitral or aortic regurgitation in three, amyloid heart in two, and normal heart in three. Marked right-heart dilatation was present in 11 patients and LV thrombus in four. Regression equations derived in vitro for each 2-D echo instrument were used to correct LV mass estimates based on a short-axis, area-length method: uncorrected LV mass = 1.055 x k x 5/6 (AtLt - AcLc) + b, where At = total short-axis LV image area at the high papillary muscle level, Lc = endocardial LV length, k = an instrument-specific regression slope and b = an instrument-specific intercept. LV mass by 2-D echo correlated extremely well with actual LV weight (r = 0.93 slope = 0.85, SEE = 31 g, range 77-454 g). In contrast, M-mode echocardiographic LV mass estimates were less reliable (r = 0.86, SEE = 59 g) in these markedly distorted hearts. These 2-D echo LV mass results compare favorably with reported results from biplane angiography and M-mode echocardiography in more symmetric hearts. Thus, regression-corrected 2-D echo may be the method of choice for determining LV mass in man.

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Cite This Study

Reichek et al. (1983) studied this question.

synapsesocial.com/papers/69eee0730fb71af24d311b50https://doi.org/10.1161/01.cir.67.2.348
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