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Updated: Jun 24, 2025

Magnetic Resonance Derived Myocardial Strain Assessment Using Feature Tracking
Published on: February 12, 2011
Reference ranges of computed tomography-derived strains in four cardiac chambers
Yura Ahn1, Hyun Jung Koo1, Seung Ah Lee2
1Department of Radiology and Research Institute of Radiology, Republic of Korea.
Insights
This study establishes reference values for CT-derived cardiac strain in all four chambers of the heart. These findings provide crucial data for assessing cardiovascular diseases beyond the left ventricle.
Area of Science:
- Cardiovascular Imaging
- Cardiac Mechanics
- Medical Physics
Background:
- Echocardiography is the standard for cardiac strain assessment, but CT-derived strain offers complementary insights.
- Limited reference values exist for CT-derived strain in cardiac chambers beyond the left ventricle.
Purpose of the Study:
- To establish reference standard values for CT-derived strain in all four cardiac chambers of healthy adults.
- To investigate the influence of age and sex on myocardial strain measurements obtained via CT.
Main Methods:
- 101 healthy individuals underwent multiphase cardiac CT.
- Commercial software was used to measure global and segmental longitudinal, circumferential, and transverse strains in the left ventricle, left atrium, right atrium, and right ventricle.
- Strain values were analyzed and compared based on age and sex.
Main Results:
- Normal ranges for CT-derived left ventricular global longitudinal strain (GLS), global circumferential strain (GCS), and global radial strain (GRS) were determined.
- Reference values for left atrial reservoir, pump, and conduit strains were established.
- Normal GLS values for the right atrium and right ventricle were identified, with significantly higher absolute values in women compared to men.
Conclusions:
- CT-derived strain measurement is feasible across all four cardiac chambers.
- This study provides essential reference ranges for CT-derived cardiac strains, valuable for future research in cardiovascular diseases.
Abstract:
Research on cardiovascular diseases using CT-derived strain is gaining momentum, yet there is a paucity of information regarding reference standard values beyond echocardiography, particularly in cardiac chambers other than the left ventricle (LV). We aimed to compile CT-derived strain values from the four cardiac chambers in healthy adults and assess the impact of age and sex on myocardial strains. This study included 101 (mean age: 55.2 ± 9.0 years, 55.4% men) consecutive healthy individuals who underwent multiphase cardiac CT. CT-derived cardiac strains, including LV global and segmental longitudinal, circumferential, and transverse strains, left atrial (LA), right atrial (RA), and right ventricle (RV) strains were measured by the commercially available software. Strain values were classified and compared by their age and sex. The normal range of CT-derived LV global longitudinal strain (GLS), global circumferential strain (GCS), and global radial strain (GRS) were -20.2 ± 2.7%, -27.9 ± 4.1%, and 49.4 ± 12.1%, respectively. For LA, reservoir strain, pump strain, and conduit strain were 28.6 ± 8.5%, 13.2 ± 6.4%, and 15.5 ± 8.6%, respectively. The GLS of RA and RV were 27.9 ± 10.9% and -22.0 ± 5.7%, respectively. The absolute values of GLS of RA and RV of women were higher than that in men (32.4 ± 11.4 vs. 24.3 ± 9.1 and -25.2 ± 4.7 vs. -19.4 ± 5.0, respectively; p<0.001, both). Measurement of CT-derived strain in four cardiac chambers is feasible. The reference ranges of CT strains in four cardiac chambers can be used for future studies of various cardiac diseases using the cardiac strains.
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