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Updated: Nov 2, 2025

Transthoracic Speckle Tracking Echocardiography for the Quantitative Assessment of Left Ventricular Myocardial Deformation
Published on: October 20, 2016
Contractile Differences Detected by Speckle Tracking Echocardiography in Pediatric Patients with Mitral Valve
Cassady Palmer1, Vien Truong2,3, Thuy T M Pham4
1The Christ Hospital Health Network, 2139 Auburn Avenue, Cincinnati, OH, 45219, USA. Cassady.Palmer@thechristhospital.com.
Insights
Pediatric mitral valve prolapse (MVP) with end-systolic basal eversion (ESBE) shows weaker heart muscle contraction, particularly in basal segments. This mechanical dysfunction mirrors findings in adults, impacting clinical management of this common pediatric heart condition.
Area of Science:
- Cardiology
- Pediatric Cardiology
- Echocardiography
Background:
- Mitral valve prolapse (MVP) is the most common heart valve dysfunction in children.
- Emerging evidence suggests MVP may not always be benign, necessitating research into underlying mechanisms.
- Previous studies identified end-systolic basal eversion (ESBE) as a contributing factor to MVP in adults.
Purpose of the Study:
- To evaluate regional circumferential strain in pediatric patients with MVP and ESBE.
- To compare left ventricular mechanical function in pediatric MVP patients with ESBE to healthy controls.
- To investigate if ESBE is associated with specific patterns of left ventricular dysfunction in children.
Main Methods:
- Assessed left ventricular circumferential strain using echocardiography in 16 pediatric patients with MVP and ESBE.
- Compared strain values between the MVP group and age-gender-matched healthy controls.
- Analyzed regional strain in 16 left ventricular segments, focusing on basal segments.
Main Results:
- Pediatric patients with MVP and ESBE exhibited significantly lower regional strain values in 11 out of 16 segments compared to controls.
- All 6 basal segments showed reduced strain, indicating weaker contraction in these areas.
- The basal inferior and basal inferolateral segments displayed the lowest strain values, suggesting localized myocardial dysfunction.
Conclusions:
- Pediatric patients with MVP and ESBE experience left ventricular mechanical dysfunction similar to that observed in adults.
- Decreased basal circumferential strain values are indicative of ESBE in pediatric MVP.
- This weaker basal ventricular contraction is believed to contribute to the outward myocardial movement characteristic of ESBE.
Abstract:
Mitral valve prolapse (MVP) is the most common valvar dysfunction in children. There is emerging evidence that MVP is not always a benign entity, hence identification of underlying mechanisms is pertinent to clinical management. Our group previously identified a ventricular contraction abnormality named end-systolic basal eversion (ESBE) in adults that contributed to MVP. The aim of this study was to evaluate regional circumferential strain in pediatric patients with MVP and ESBE compared to normal controls. Left ventricular circumferential strain was assessed in 16 pediatric patients referred for clinical echocardiographic examination with MVP and ESBE (MVP group) and compared to age-gender-matched healthy subjects. ESBE has been previously described as late systolic bileaflet mitral valve prolapse, papillary traction, and concomitant late systolic outward movement of the basal inferior myocardium. The mean age of the MVP group was 13.8 ± 4.6 year and 75% were female. All patients with MVP and controls had qualitatively normal systolic cardiac function. The MVP group had significantly lower regional strain values for 11/16 of the segments including all 6 basal segments. Importantly, the basal inferior (- 17.02 ± 8.32% vs. - 26.10 ± 3.18, p = 0.001) and basal inferolateral (- 19.53 ± 9.76 vs. - 26.10 ± 3.18, p = 0.03) had the lowest strain values compared to the average of all other segments suggesting weaker contraction in the basal inferior segments. Pediatric patients with MVP and ESBE are subject to a similar left ventricular mechanical dysfunction previously described in adults. ESBE was evident by decreased basal circumferential strain values. These findings denoted weaker contraction which is believed to propagate the late systolic outward movement of the basal ventricular myocardium.
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