Assessing the Impact of 3% Hypertonic Saline Hyperosmolar Therapy on Intubated Children With Isolated Traumatic Brain

Leigh-Ann Washer1, Thomas Abramo1, Hailey Hardgrave2

  • 1From the Department of Pediatrics, University of Arkansas for Medical Sciences.

Pediatric Emergency Care
|February 28, 2020
PubMed

Insights

This study found that 3% hypertonic saline (HTS) significantly improved cerebral oxygenation (rcSO2) and cerebral blood volume index (CBVI) in intubated pediatric patients with traumatic brain injury (TBI). Cerebral oximetry rapidly assessed HTS effectiveness, aiding neuroresuscitation in the pediatric emergency department.

Area of Science:

  • Pediatric critical care medicine
  • Neuroscience
  • Trauma surgery

Background:

  • Intubated pediatric patients with isolated traumatic brain injury (TBI) present diagnostic challenges for detecting increased intracranial pressure (ICP) and secondary brain injury.
  • Current monitoring methods like invasive brain tissue oxygen monitoring are not readily available in the pediatric emergency department (PED).
  • Objective measurements are lacking to assess the effects of 3% hypertonic saline (HTS) on cerebral physiology in this population.

Purpose of the Study:

  • To analyze the effects of 3% HTS on bihemispheric regional cerebral oxygenation (rcSO2) and cerebral blood volume index (CBVI) in intubated pediatric patients with isolated TBI.
  • To evaluate cerebral oximetry as a tool for assessing HTS treatment response in this patient group.

Main Methods:

  • Retrospective analysis of bihemispheric rcSO2 and CBVI readings in 207 intubated pediatric patients with isolated TBI receiving 3% HTS infusions.
  • Data collected before and after HTS administration.

Main Results:

  • 3% HTS infusion significantly improved rcSO2 and CBVI readings, with notable improvements in patients with low initial rcSO2 (<60%) and interhemispheric differences.
  • A significant positive 15% change in rcSO2 was observed within 2.1 minutes of HTS infusion.
  • Heart rate showed no significant change during HTS administration.

Conclusions:

  • Bihemispheric rcSO2 and CBVI readings effectively detected and trended the effects of 3% HTS on cerebral pathophysiology in pediatric TBI patients.
  • Cerebral oximetry serves as a rapid, functional adjunct for neurological and therapeutic assessment during trauma neuroresuscitation.
  • Cerebral oximetry should be considered in the initial PED assessment and neuroresuscitation regimen for intubated pediatric TBI patients requiring 3% HTS.
Abstract