Key result
Speckle tracking echocardiography shows decreased midwall but preserved endocardial systolic strain in apical hypertrophic cardiomyopathy.
Why the study?
Regional systolic strain differences in midwall and endocardial segments in apical hypertrophic cardiomyopathy had not been explored using speckle tracking echocardiography.
Does speckle tracking echocardiography identify regional systolic strain abnormalities in patients with apical hypertrophic cardiomyopathy?
Observational (n=20)
Does speckle tracking echocardiography identify regional systolic strain abnormalities in patients with apical hypertrophic cardiomyopathy?
Speckle tracking echocardiography reveals transmural heterogeneity in systolic strain in apical HCM, identifying subclinical LV dysfunction despite normal global systolic function.
Speckle tracking strain assessment in apical HCM is hypothesis-generating; larger studies needed to determine prognostic utility.
AIM: To explore regional systolic strain of midwall and endocardial segments using speckle tracking echocardiography in patients with apical hypertrophic cardiomyopathy (HCM). METHODS: We prospectively assessed 20 patients (mean age 53 ± 16 years, range: 18-81 years, 10 were male), with apical HCM. We measured global longitudinal peak systolic strain (GLPSS) in the midwall and endocardium of the left ventricle. RESULTS: The diastolic thickness of the 4 apical segments was 16.25 ± 2.75 mm. All patients had a normal global systolic function with a fractional shortening of 50% ± 8%. In spite of supernormal left ventricular (LV) systolic function, midwall GLPSS was decreased in all patients, more in the apical (-7.3% ± -8.8%) than in basal segments (-15.5% ± -6.93%), while endocardial GLPPS was significantly greater and reached normal values (apical: -22.8% ± -7.8%, basal: -17.9% ± -7.5%). CONCLUSION: This study shows that two-dimensional strain was decreased mainly confined to the mesocardium, while endocardium myocardial deformation was preserved in HCM and allowed to identify subclinical LV dysfunction. This transmural heterogeneity in systolic strain had not been previously described in HCM and could be explained by the distribution of myofibrillar disarray in deep myocardial areas. The clinical application of this novel finding may help further understanding of the pathophysiology of HCM.
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Saccheri et al. (2017) conducted an observational in Apical hypertrophic cardiomyopathy (HCM) (n=20). Speckle tracking echocardiography was evaluated on Global longitudinal peak systolic strain (GLPSS) in the midwall and endocardium. Speckle tracking echocardiography showed decreased midwall systolic strain (apical -7.3%) but preserved endocardial strain (apical -22.8%) in patients with apical hypertrophic cardiomyopathy.
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