New Reference Centiles for Left Ventricular Mass Relative to Lean Body Mass in Children

Bethany J Foster1, Philip R Khoury2, Thomas R Kimball2

  • 1Department of Pediatrics, Division of Nephrology, Montreal Children's Hospital, McGill University Faculty of Medicine, Montreal, Quebec, Canada.

Insights

New charts normalize left ventricular (LV) mass to lean body mass (LBM) in children aged 5-18. This improves cardiovascular risk assessment by better reflecting heart size relative to body composition.

Area of Science:

  • Pediatric Cardiology
  • Cardiovascular Risk Assessment
  • Echocardiography

Background:

  • Left ventricular (LV) mass measurement is crucial for pediatric patients with cardiovascular risk.
  • Accurate normalization of LV mass to body size is essential in growing children.
  • Lean body mass (LBM) is a primary determinant of LV mass.

Purpose of the Study:

  • To develop sex-specific LV mass-for-LBM centile curves for children aged 5 to 18 years.
  • To provide a more accurate method for assessing LV mass in pediatric populations.
  • To improve cardiovascular risk stratification in children.

Main Methods:

  • Retrospective analysis of echocardiographic data from 939 boys and 771 girls (ages 5-18).
  • Creation of smoothed, sex-specific LV mass-for-LBM reference centile curves using the Lamda Mu Sigma method.
  • Application of new centiles to children with essential hypertension and chronic kidney disease to identify LV hypertrophy (LVH).

Main Results:

  • Relative LV mass was generally higher when assessed using LV mass index-for-age percentiles compared to LV mass-for-LBM percentiles.
  • LVH diagnosis was more frequent in overweight children and less frequent in thin children using the new method.
  • The study identified differences in LVH detection based on normalization method.

Conclusions:

  • Novel LV mass reference centiles relative to LBM, the strongest determinant, are now available for children.
  • These centiles offer a more precise tool for cardiovascular risk stratification in pediatric patients.
  • The findings support improved diagnostic accuracy for LVH in children.
Abstract

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