Left ventricular dyssynchrony in long-term childhood cancer survivors treated with anthracyclines: a retrospective cross-sectional study

Milanthy S. Pourier, Myrthe M. Dull, Gert Weijers, Jacqueline Loonen, Louise Bellersen, Chris L. de Korte, Livia Kapusta, Annelies M.C. Mavinkurve-Groothuis

Research output: Contribution to journalArticlepeer-review

Abstract

The purpose of this study was to investigate left ventricular contraction patterns in asymptomatic Childhood cancer survivors (CCS) using two-dimensional speckle tracking echocardiography (2DSTE). Left ventricular longitudinal and circumferential myocardial parameters were assessed using 2DSTE, in asymptomatic CCS and age matched healthy controls. Time to peak (T2P) systolic strain was quantified. Dyssynchrony index (DI) was measured by calculating the standard deviation of T2P systolic strain of six segments in each view. Difference between T2P systolic longitudinal strain of septal and lateral wall was also assessed as a parameter for dyssynchrony. We included 115 CCS with a median age of 17.2 years (range 5.6–39.5) and a median follow up of 11.3 years (range 4.9–29.5) and 119 controls. Conventional echocardiographic parameters and global longitudinal strain were significantly decreased in CCS compared to controls (p < 0.01 and p = 0.02, respectively). Dyssynchrony index did not differ between CCS and controls. There was a clinically insignificant smaller absolute difference between T2P systolic longitudinal of septal and lateral wall in CCS compared to controls. We showed no difference in longitudinal or circumferential left ventricular dyssynchrony in CCS compared to controls using 2DSTE. Future research should focus on assessing dyssynchrony in more segments and a larger CCS population, using both 2D and 3DSTE.

Original languageEnglish
Pages (from-to)3469-3475
Number of pages7
JournalInternational Journal of Cardiovascular Imaging
Volume37
Issue number12
DOIs
StatePublished - Dec 2021

Keywords

  • 2D echocardiography
  • Cardiac toxicity
  • Dyssynchrony
  • Myocardial strain
  • Strain rate imaging

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