Geometry as a Confounder When Assessing Ventricular Systolic Function: Comparison Between Ejection Fraction and Strain
- PMID: 28818204
- DOI: 10.1016/j.jacc.2017.06.046
Geometry as a Confounder When Assessing Ventricular Systolic Function: Comparison Between Ejection Fraction and Strain
Abstract
Background: Preserved left ventricular (LV) ejection fraction (EF) and reduced myocardial strain are reported in patients with hypertrophic cardiomyopathy, ischemic heart disease, diabetes mellitus, and more.
Objectives: The authors performed a combined mathematical and echocardiographic study to understand the inconsistencies between EF and strains.
Methods: An analytical equation showing the relationship between EF and the 4 parameters, global longitudinal strain (GLS), global circumferential strain (GCS), wall thickness, and short-axis diameter, was derived from an elliptical LV model. The equation was validated by measuring the 4 parameters by echocardiography in 100 subjects with EF ranging from 16% to 72% and comparing model-predicted EF with measured EF. The effect of the different parameters on EF was explored in the model and compared with findings in the patients.
Results: Calculated EF had very good agreement with measured EF (r = 0.95). The model showed that GCS contributes more than twice as much to EF than GLS. A significant reduction of GLS could be compensated by a small increase of GCS or wall thickness or reduced diameter. The model further demonstrated how EF can be maintained in ventricles with increased wall thickness or reduced diameter, despite reductions in both longitudinal and circumferential shortening. This was consistent with similar EF in 20 control subjects and 20 hypertrophic cardiomyopathy patients with increased wall thickness and reductions in both circumferential and longitudinal shortening (all p < 0.01).
Conclusions: Reduced deformation despite preserved EF can be explained through geometric factors. Due to geometric confounders, strain better reflects systolic function in patients with preserved EF.
Keywords: left ventricular geometry; mathematical modeling; myocardial strain.
Copyright © 2017 The Authors. Published by Elsevier Inc. All rights reserved.
Comment in
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Strain Echocardiography: The New Gold Standard for Imaging Ventricular Function?J Am Coll Cardiol. 2017 Aug 22;70(8):955-957. doi: 10.1016/j.jacc.2017.07.717. J Am Coll Cardiol. 2017. PMID: 28818205 No abstract available.
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Functional Contribution of Circumferential Versus Longitudinal Strain: Different Concepts Suggest Conflicting Results.J Am Coll Cardiol. 2018 Jan 16;71(2):254-255. doi: 10.1016/j.jacc.2017.09.1156. J Am Coll Cardiol. 2018. PMID: 29325646 No abstract available.
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Myocardial Contraction Fraction: A Volumetric Measure of Myocardial Shortening Analogous to Strain.J Am Coll Cardiol. 2018 Jan 16;71(2):255-256. doi: 10.1016/j.jacc.2017.09.1157. J Am Coll Cardiol. 2018. PMID: 29325647 No abstract available.
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Complexities in Modeling the Relationship Between Longitudinal Strain and Ejection Fraction.J Am Coll Cardiol. 2018 Jan 16;71(2):256-257. doi: 10.1016/j.jacc.2017.10.091. J Am Coll Cardiol. 2018. PMID: 29325648 No abstract available.
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Reply: Interaction Between Longitudinal, Circumferential, and Radial Deformations and Their Contributions to Ejection Fraction.J Am Coll Cardiol. 2018 Jan 16;71(2):257-258. doi: 10.1016/j.jacc.2017.10.090. J Am Coll Cardiol. 2018. PMID: 29325649 No abstract available.
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Left Ventricular Twist: An Often Ignored But Crucial Determinant of Left Ventricular Function.J Am Coll Cardiol. 2018 Feb 6;71(5):584. doi: 10.1016/j.jacc.2017.10.097. J Am Coll Cardiol. 2018. PMID: 29406869 No abstract available.
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Reply: Left Ventricular Twist: An Often Ignored But Crucial Determinant of Left Ventricular Function.J Am Coll Cardiol. 2018 Feb 6;71(5):584-585. doi: 10.1016/j.jacc.2017.12.002. J Am Coll Cardiol. 2018. PMID: 29406870 No abstract available.
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