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Published on: December 16, 2022
Stress imaging in congenital cardiac disease
Daniëlle Robbers-Visser1, Saskia E Luijnenburg, Jochem van den Berg
1Department of Paediatrics, Division of Cardiology, Erasmus MC-Sophia Children's Hospital, Rotterdam, the Netherlands.
Insights
Stress imaging reveals cardiac abnormalities in patients with congenital heart disease, aiding risk stratification. Abnormal stress responses may predict future cardiac events, guiding early intervention strategies.
Area of Science:
- Cardiology
- Medical Imaging
Background:
- Stress imaging detects abnormalities in coronary arterial disease not visible at rest.
- In congenital heart disease, it assesses contractile reserve, wall motion, and systolic/diastolic function.
Purpose of the Study:
- To review stress imaging studies in patients with congenitally malformed hearts.
- To emphasize the roles of echocardiography and cardiac magnetic resonance imaging.
Main Methods:
- Pharmacological stress, primarily dobutamine, is used to induce stress.
- Echocardiography and cardiac magnetic resonance imaging are key modalities.
Main Results:
- Stress imaging identifies ventricular wall motion and coronary perfusion abnormalities.
- It provides prognostic information and assesses cardiac function.
Conclusions:
- Abnormal stress responses can serve as surrogate endpoints for risk stratification.
- Further follow-up studies are needed to confirm the clinical utility of these findings.
Abstract:
In patients with coronary arterial disease, stress imaging is able to demonstrate abnormalities in the motion of the ventricular walls, and abnormalities in coronary arterial perfusion not apparent at rest. It can also provide information on prognostic factors. In patients with congenitally malformed hearts, stress imaging is used to determine contractile reserve, abnormalities of mural motion, and global systolic function, but also to assess diastolic and vascular function. In most of these patients, stress is usually induced using pharmacological agents, mainly dobutamine given in varying doses. The clinical usefulness of abnormal responses to the stress induced in such patients has to be addressed in follow-up studies. The abnormal stress might serve as surrogate endpoints, predicting primary endpoints at an early stage, which are useful for stratification of risk in this population of growing patients. We review here the stress imaging studies performed to date in patients with congenitally malformed hearts, with a special emphasis on echocardiography and cardiac magnetic resonance imaging.
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