Left ventricular output during postnatal circulatory adaptation in healthy infants born at full term

P Winberg1, M Jansson, L Marions

  • 1Department of Paediatrics, Karolinska Institute, Sachs' Children's Hospital, Stockholm, Sweden.

Insights

In newborn infants, left ventricular output initially remains high but significantly decreases within 24 hours after birth. This reduction is primarily due to a fall in stroke volume, possibly adapting to ductal constriction.

Area of Science:

  • Neonatal Physiology
  • Pediatric Cardiology
  • Cardiovascular Adaptation

Background:

  • Understanding the cardiovascular adjustments in term infants immediately after birth is crucial for identifying potential issues.
  • The transition from fetal to neonatal circulation involves significant changes in hemodynamics.

Purpose of the Study:

  • To non-invasively measure left ventricular output in term infants during the first 72 hours of life.
  • To investigate the changes in left ventricular output, heart rate, and stroke volume post-birth.

Main Methods:

  • Non-invasive measurement of left ventricular output using range-gated Doppler and echocardiography.
  • Continuous monitoring of blood flow velocity in the ascending aorta and cardiac dimensions.
  • Data collected at predefined intervals from <15 minutes to 72 hours after birth in 16 term infants.

Main Results:

  • Left ventricular output remained high (235-243 ml/min/kg) in the first 2 hours post-birth, despite a 10% heart rate decrease.
  • Stroke volume increased by 15% to compensate for the reduced heart rate in the initial hours.
  • A significant fall in mean left ventricular output to 187 (35) ml/min/kg occurred between 2 and 24 hours, mainly due to reduced stroke volume.

Conclusions:

  • Left ventricular output in term infants decreases significantly after the first two hours of life.
  • The observed decline in output is primarily attributed to a reduction in stroke volume.
  • This hemodynamic shift may represent an adaptation to decreased left ventricular workload as the ductus arteriosus constricts.

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