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January 1, 1988Circulation Research75 citationsOpen Access

Abnormalities of dynamic ventricular shape change in patients with aortic and mitral valvular regurgitation: assessment by Fourier shape analysis and global geometric indexes.

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DKDavid A. KassTTThomas A. TraillMKMark Keating

Structured PICO

Does Fourier geometric analysis characterize abnormalities of dynamic left ventricular shape change in patients with aortic or mitral regurgitation compared to normal controls?

P
Population
Normal patients and patients with aortic (AR) or mitral (MR) valve regurgitation
I
Intervention
Assessment of dynamic left ventricular shape change using x-ray contrast ventriculography and Fourier shape analysis
C
Comparator
Normal patients (controls)
O
Outcome
Dynamic left ventricular shape change during the cardiac cycle (assessed by Fourier analysis, eccentricity, and circularity indexes)surrogate

Detailed Fourier geometric analysis of ventriculograms can precisely differentiate the distinct dynamic left ventricular shape abnormalities caused by the specific loading conditions of aortic versus mitral regurgitation.

Abstract

The normal cardiac cycle is associated with dynamic changes in left ventricular shape, which can be disturbed in disease states. To assess the influences of diastolic volume, percent ejected volume, and abnormalities of acute or chronic systolic loading on general and detailed chamber geometry, we studied dynamic shape change recorded by x-ray contrast ventriculography in both normal patients and those with aortic (AR) or mitral (MR) valve regurgitation. While both lesions increased diastolic volume, the character of load throughout ejection differed markedly. Detailed cavity geometry was assessed by a Fourier analysis technique and general shape by eccentricity and circularity indexes. Normal hearts, showed increased systolic elongation by all indexes. AR patients displayed a similar rise in eccentricity during ejection; however, the extent of shape change when measured by Fourier and circular indexes was reduced. In contrast, MR patients displayed enhanced systolic shape change, particularly in chamber elongation. Neither simple eccentricity of circular indexes adequately differentiated these shape abnormalities, whereas detailed Fourier geometric analysis precisely characterized the abnormalities of shape change in these two diseases. Relations between the extent of shape change and ejected volume for each patient group revealed significantly more systolic deformation with a different shape versus volume relation for the MR hearts as compared with AR and controls. Thus, while dynamic left ventricular shape is certainly influenced by the extent of volume change, it also varies independently from volume related to the specific nature of loading during ejection.

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Cite This Study

Kass et al. (1988) studied this question.

synapsesocial.com/papers/6a11d074dcb035f2f8fd3b93https://doi.org/10.1161/01.res.62.1.127
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