Key result
Contemporary imaging techniques for noninvasive quantification of myocardial deformation can improve the assessment and management of fetal, pediatric, and adult patients.
Understanding cardiac mechanics and myocardial deformation imaging is crucial for accurately assessing ventricular function across different patient populations.
May support deformation imaging for ventricular assessment across ages; leaves open prospective outcome validation.
The assessment of cardiac pump function and the potential of local myocardium to contribute to the overall performance are of great importance in many cardiovascular abnormalities. Assessing intrinsic cardiac function requires obtaining information on the true contractility of the heart muscle, assessed locally but interpreted in the context of its contribution to the global ejection performance and potential to adapt to changing circumstances. Contemporary imaging techniques offer the possibility of noninvasive quantification of myocardial deformation. These new clinical tools are attractive to use for the assessment of ventricular function. However, it is of great importance to understand cardiac mechanics - a complex interplay between the tissue structure/shape, force development, and interaction with the environment/neighbors - to interpret alterations in deformation and to extract clinically relevant conclusions. The combination of insight into the measurement techniques and their limitations, together with knowledge of myocardial mechanics and physiology, opens new perspectives to improve the assessment and management of fetal, pediatric, and adult patients.
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Bijnens et al. (2012) conducted a review in Cardiovascular abnormalities. Contemporary imaging techniques for myocardial deformation was evaluated. Contemporary imaging techniques for noninvasive quantification of myocardial deformation can improve the assessment and management of fetal, pediatric, and adult patients.
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