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November 1, 1972Circulation225 citations

Comparison of Ultrasound and Cineangiographic Measurements of the Mean Rate of Circumferential Fiber Shortening in Man

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RCRonald H. CooperRORobert A. O’RourkeJKJoel S. Karliner

Key Points

  • To validate ultrasound measurement of mean circumferential fiber shortening in comparison to cineangiography for evaluating cardiac performance.
  • Compared mean circumferential fiber shortening between ultrasound and cineangiography in 28 patients with varying left ventricular function.

Structured PICO

Does ultrasound measurement of mean VCF and ejection fraction correlate with cineangiographic measurement in patients with normal and reduced left ventricular function?

P
Population
28 patients studied by both ultrasound and cineangiography (15 with normal left ventricular function, 13 with reduced left ventricular performance)
I
Intervention
Ultrasound (echocardiogram) measurement of mean rate of circumferential fiber shortening (mean VCF) and ejection fraction
C
Comparator
Cineangiographic measurement of mean VCF and ejection fraction
O
Outcome
Correlation between ultrasound and cineangiographic measurements of mean VCF and ejection fractionsurrogate

Ultrasound determination of mean VCF and ejection fraction is a valid noninvasive method for distinguishing normal from abnormal myocardial performance of the left ventricle.

Abstract

It has been shown that cineangiographic measurement of the mean rate of circumferential fiber shortening (mean V CF ) at the minor left ventricular equator is a reliable method for evaluating the mechanics of cardiac performance. Since fiber shortening can be derived from the echocardiogram, we sought to validate the measurement of mean V CF by this noninvasive technic in patients studied by both methods. In 15 patients considered to have normal left ventricular function, the average mean V CF determined by ultrasound was 1.29 ± 0.23 circumferences/sec, while in the 13 patients with reduced left ventricular performance this value was 0.75 ± 0.16 circumferences/sec ( P < 0.001). Values of mean V CF by the two technics were similar and separated normal from abnormal ventricular function in 27 of 28 patients. The average mean velocity of posterior wall motion was 4.7 ± 1.1 cm/sec in normal patients and 3.9 ± 1.3 cm/sec in abnormals, but posterior wall velocities did not correlate well with either ultrasound or cineangiographic determinations of mean V CF . Ejection fraction calculated from ultrasound measurements correlated significantly with the ejection fraction calculated by cineangiography (r = 0.83, P < 0.0001). The ejection fraction and mean V CF , as determined by ultrasound in the 28 patients, correlated well (r = 0.92, P < 0.0001), but there were six discordant points. From these studies we conclude that the ultrasound determination of mean V CF is a valid method for distinguishing normal from abnormal myocardial performance of the left ventricle. These data also support the use of ultrasound in determining ejection fraction. Estimation of posterior wall velocity, although perhaps useful in the serial study of the same patient, seems limited in its ability to assess cardiac performance accurately.

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Cite This Study

Cooper et al. (1972) studied this question.

synapsesocial.com/papers/6a142e492398cfa26a896025https://doi.org/10.1161/01.cir.46.5.914
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Mean Velocity of Fiber Shortening1971 · 291 citations
  2. 2Use of Ultrasound to Measure Left Ventricular Stroke Volume1967 · 121 citations
  3. 3Left Ventricular Wall Thickness Measured by Ultrasound1968 · 144 citations
  4. 4Left Ventricular Volumes and Ejection Fraction by Echocardiography1971 · 651 citations
  5. 5Instantaneous Dimensional Changes of the Left Ventricle in Dogs1961 · 136 citations