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September 1, 1975Heart104 citationsOpen Access

Continuous assessment of left ventricular shape in man.

DGD G GibsonCardiac ImagingDBD J BrownEnvironmental Molecular Sciences Laboratory

Key Points

  • The aim is to analyze the continuous shape changes of the left ventricle during heart cycles in normal and diseased states.
  • Frame by frame analysis of left ventriculograms was conducted in 10 normal subjects and 40 patients with heart disease.

Structured PICO

How does left ventricular shape index change during the cardiac cycle in normal subjects compared to patients with heart disease?

P
Population
10 normal subjects and 40 patients with heart disease (n=50)
I
Intervention
Frame by frame analysis of left ventriculograms to derive left ventricular shape index
C
Comparator
Normal subjects vs. patients with heart disease
O
Outcome
Left ventricular shape index changes during systole and diastolesurrogate

Left ventricular wall movement during filling may be non-uniform, suggesting that assumptions about cavity shape used to derive wall properties from ventricular volume estimates may require modification.

Abstract

Frame by frame analysis of left ventriculograms has been performed in 10 normal subjects and 40 patients with heart disease. Left ventricular shape index was derived as 4 pi (cavity area)/(perimeter)2, which has a maximum value of 1 when the outline is circular. In normal subjects systole was always associated with progressive reduction in shape index, indicating that the cavity projection had become less circular. This change was smaller in patients with low ejection fraction and also when inferior or anterior hypokinesia was present, even though ejection fraction was normal. During early diastole shape index rose rapidly due to an increase in minor diameter occurring throughout the period of rapid filling. In some cases this preceded any change in long axis, which was due to upward movement of the aortic root as well as outward movement of the apex. These results have functional implications, suggesting in particular that wall movement during filling may be non-uniform and that assumptions about cavity shape used in the derivation of wall properties from estimates of ventricular volume may require modification.

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Cite This Study

Gibson et al. (1975) studied this question.

synapsesocial.com/papers/6a10fefc49545a83bbeed117https://doi.org/10.1136/hrt.37.9.904
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