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Updated: Jul 30, 2025

In Vitro Assessment of Cardiac Function Using Skinned Cardiomyocytes
Published on: June 22, 2020
Evaluating the pure effect of weight on cardiac function in patients with cardiac syndrome X
Arezou Zoroufian1, Mohammad Sahebjam1, Malihe Rezaee1,2
1Tehran Heart Center, Cardiovascular Diseases Research Institute, Tehran University of Medical Sciences, Tehran, Iran.
Insights
Obesity does not significantly impair systolic or diastolic function in individuals with minimal coronary artery disease risk factors. Left atrial strain was higher in overweight individuals but remained within normal limits, suggesting preserved cardiac function.
Area of Science:
- Cardiology
- Obesity Medicine
- Diagnostic Imaging
Background:
- Obesity is linked to increased coronary artery disease (CAD) risk factors.
- Myocardial function can be affected by these risk factors.
- Early detection of diastolic and systolic dysfunction is crucial in obese individuals.
Purpose of the Study:
- To assess echocardiography's ability to detect early diastolic and systolic dysfunction in obese individuals.
- To compare conventional echocardiographic parameters, left atrial (LA) strain, and global longitudinal strain (GLS) between normal-weight and high-weight individuals with minimal CAD risk factors.
Main Methods:
- 100 participants with structurally normal hearts and minimal cardiovascular risk factors (except dyslipidemia) were studied.
- Participants were categorized into normal-weight (BMI < 25.0 kg/m²) and high-weight (BMI ≥ 25.0 kg/m²) groups.
- Two-dimensional speckle tracking (2DSTE) was used to measure LA strain and GLS.
Main Results:
- Conventional echocardiographic parameters and GLS showed no significant differences between groups.
- Left atrial strain was significantly higher in the high-weight group (39.06 ± 8.62%) compared to the normal-weight group (34.51 ± 8.98%).
- All measured echocardiographic parameters remained within normal ranges.
Conclusions:
- Standard echocardiography and GLS did not reveal significant systolic or diastolic dysfunction in obese individuals with minimal CAD risk factors.
- While LA strain was elevated in overweight individuals, it did not indicate diastolic dysfunction.
- Echocardiography, including LA strain, may help monitor cardiac function in this population.
Background:
Obese patients have more coronary artery disease (CAD) risk factors that may affect myocardial function. We aimed to assess the ability of echocardiography-derived conventional parameters, left atrial strain, and global longitudinal strain to detect early diastolic and systolic dysfunction in obese individuals with almost no CAD risk factors.
Method:
We studied 100 participants with structurally normal hearts, ejection fractions above 50%, almost normal coronary arteries in coronary angiogram (syndrome X), and no cardiovascular risk factor except dyslipidemia. Participants were classified as normal-weight (BMI < 25.0 kg/m2 , n = 28) and high-weight (BMI ≥ 25.0 kg/m2 , n = 72). Conventional echocardiographic parameters and two-dimensional speckle tracking (2DSTE) were used to measure peak LA strain and global longitudinal strain to evaluate diastolic and systolic function, respectively.
Result:
There was no significant difference in the standard and conventional echocardiographic parameters between the two groups. 2DSTE echocardiographic parameters of the longitudinal deformation of the LV myocardium were not significantly different within the two groups. However, there were significant differences between the subjects with normal-weight and high-weight in terms of LA strain (34.51 ± 8.98% vs. 39.06 ± 8.62%, p = .021). The normal-weight group had lower LA strain, in compression with the high-weight group. All echocardiographic parameters were in the normal range.
Conclusion:
In the present study we demonstrated that global longitudinal subendocardial deformations, for the evaluation of systolic function, and conventional echocardiographic parameters, for the evaluation of diastolic function, were not significantly different between normal- and high-weight groups. Although LA strain was higher among overweight patients, it was not above the normal range of diastolic dysfunction.
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