Myocardial strain imaging: how useful is it in clinical decision making?

Визуализация миокардиальной деформации: насколько она полезна для принятия клинических решений?
Kristina H. Haugaa, Otto A. Smiseth, Hans Torp, Anders Opdahl, Stig Urheim
2015-10-27

cardiac resynchronization therapyglobal longitudinal strainleft ventricular ejection fractionmyocardial strain imagingspeckle-tracking echocardiography
Myocardial strain is a principle for quantification of left ventricular (LV) function which is now feasible with speckle-tracking echocardiography. The best evaluated strain parameter is global longitudinal strain (GLS) which is more sensitive than left ventricular ejection fraction (LVEF) as a measure of systolic function, and may be used to identify sub-clinical LV dysfunction in cardiomyopathies. Furthermore, GLS is recommended as routine measurement in patients undergoing chemotherapy to detect reduction in LV function prior to fall in LVEF. Intersegmental variability in timing of peak myocardial strain has been proposed as predictor of risk of ventricular arrhythmias. Strain imaging may be applied to guide placement of the LV pacing lead in patients receiving cardiac resynchronization therapy. Strain may also be used to diagnose myocardial ischaemia, but the technology is not sufficiently standardized to be recommended as a general tool for this purpose. Peak systolic left atrial strain is a promising supplementary index of LV filling pressure. The strain imaging methodology is still undergoing development, and further clinical trials are needed to determine if clinical decisions based on strain imaging result in better outcome. With this important limitation in mind, strain may be applied clinically as a supplementary diagnostic method.
1
Global longitudinal strain (GLS) measured by speckle-tracking echocardiography is more sensitive than LVEF for assessing LV systolic function and detecting subclinical dysfunction in cardiomyopathies.
2
Peak systolic left atrial strain is a promising supplementary indicator of LV filling pressure, although further trials are needed to establish outcome benefits from strain-guided decisions.
3
Routine GLS measurement is recommended during chemotherapy because it can detect deterioration in LV function before a measurable decline in LVEF.
4
Strain imaging can support myocardial ischaemia diagnosis, but insufficient standardization currently prevents its recommendation as a general-purpose tool.
5
Variability in the timing of peak myocardial strain may predict ventricular arrhythmia risk, while strain imaging may help guide LV pacing-lead placement during cardiac resynchronization therapy.

Myocardial strain imaging of the left heart, including left ventricular and left atrial myocardium, assessed by speckle-tracking echocardiography

The clinical utility of myocardial strain parameters—especially global longitudinal strain—for detecting subclinical LV dysfunction, assessing ischemia and filling pressure, predicting arrhythmic risk, and guiding cardiac resynchronization therapy

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2015-10-27
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Kristina H. Haugaa
Otto A. Smiseth
Hans Torp
Anders Opdahl
Stig Urheim
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