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Transthoracic Speckle Tracking Echocardiography for the Quantitative Assessment of Left Ventricular Myocardial Deformation
Published on: October 20, 2016
Subclinical Cardiac Dysfunction in Children with Iron Deficiency Anemia Assessed by Tissue Doppler and
Betül Pehlivan Zorlu1, İbrahim İlker Çetin2, Emine Azak2
1Department of Pediatric Nephrology, Ankara Bilkent City Hospital, Ankara, Türkiye.
Insights
Iron deficiency anemia in children can impact heart function, but treatment improves biventricular function. Some subtle cardiac changes may persist, warranting further monitoring.
Area of Science:
- Pediatric Cardiology
- Hematology
- Cardiovascular Physiology
Background:
- Iron deficiency anemia is a prevalent childhood condition.
- It can lead to cardiovascular adaptations and myocardial remodeling.
- Reduced iron impacts myocardial structure and function.
Purpose of the Study:
- To evaluate biventricular function in children with iron deficiency anemia.
- Utilize two-dimensional speckle-tracking echocardiography for assessment.
- Compare function pre- and post-treatment.
Main Methods:
- Prospective case-control study with 40 anemic children and 29 controls.
- Pre- and post-treatment evaluations for 24 anemic children.
- Employed Tissue Doppler imaging and speckle-tracking echocardiography to assess myocardial function (strain, strain rate, velocities, timing).
Main Results:
- Significant improvement in left and right ventricular longitudinal strain (LS) post-treatment.
- Enhanced systolic and diastolic function observed via Tissue Doppler parameters.
- Indicates recovery of myocardial function following iron repletion.
Conclusions:
- Treatment of iron deficiency anemia improves pediatric biventricular function.
- Some echocardiographic parameters may not fully normalize, suggesting persistent subtle alterations.
- Longer-term follow-up is recommended for children with iron deficiency anemia.
Objective:
Iron deficiency is the leading cause of anemia in childhood and may induce cardiovascular adaptations, including increased heart rate, elevated cardiac output, plasma volume expansion, and myocardial remodeling. Beyond hematologic consequences, reduced iron availability may also affect myocardial structure and function. This study aimed to assess biventricular function in children with iron deficiency anemia using two-dimensional speckle-tracking echocardiography.
Method:
This prospective case-control study included pre- and post-treatment evaluations. Forty children with iron deficiency anemia and 29 healthy controls were enrolled. Of the 40 patients, 24 were re-evaluated after treatment. Tissue Doppler imaging was used to measure myocardial velocities, isovolumic contraction time, isovolumic relaxation time, and ejection time at the interventricular septum and the basal segments of both ventricles. Speckle-tracking echocardiography was used to assess left ventricular longitudinal strain (LS) and strain rate, left ventricular circumferential strain and strain rate, as well as right ventricular global longitudinal strain and strain rate.
Results:
Left and right ventricular LS values improved following treatment, indicating recovery of myocardial function. Tissue Doppler parameters also demonstrated improvement in both systolic and diastolic function.
Conclusion:
Although significant improvement was observed after treatment, some echocardiographic parameters did not fully normalize, suggesting that subtle myocardial alterations may persist. These findings should be interpreted with caution due to the relatively small sample size and the predominance of mild-to-moderate anemia in the study population. Children with iron deficiency anemia may benefit from longer-term follow-up and post-treatment evaluation.
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