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Published on: November 20, 2015
Infantile postoperative encephalopathy: perioperative factors as a cause for concern
Mary Ellen McCann1, A N J Schouten, Nicole Dobija
1Departments of Anesthesiology, Perioperative and Pain Medicine.
Insights
Elective surgery in infants can lead to postoperative encephalopathy due to low blood pressure (hypotension) during anesthesia. This study highlights the need for better guidelines on blood pressure management in pediatric surgical patients.
Area of Science:
- Pediatric Anesthesiology
- Neonatal Neurology
- Surgical Critical Care
Background:
- Postoperative encephalopathy in infants following elective surgery is a serious concern.
- Intraoperative cerebral hypoperfusion is suspected as a primary cause.
- Current guidelines for blood pressure management in anesthetized infants are lacking.
Observation:
- Six infants under 48 weeks postmenstrual age developed encephalopathy after procedures lasting 120-185 minutes.
- Most intraoperative systolic blood pressure (SBP) values were below 60 mm Hg, a threshold for hypotension.
- Four infants experienced hypocapnia, and one received no intraoperative dextrose.
Findings:
- All infants developed seizures within 25 hours of anesthesia.
- Cerebral pathology included supratentorial watershed infarction.
- Outcomes ranged from death and severe developmental delays to normal development.
Implications:
- Intraoperative SBP hypotension, hypoglycemia, hyperthermia, hyperoxia, and hypocapnia may contribute to postoperative encephalopathy.
- There is a critical need for evidence-based recommendations for SBP and end-tidal carbon dioxide in anesthetized infants.
- This study underscores the importance of vigilant monitoring and management of physiological parameters during infant surgery.
Abstract:
We report on 6 infants who underwent elective surgery and developed postoperative encephalopathy, which had features most consistent with intraoperative cerebral hypoperfusion. All infants were <48 weeks' postmenstrual age and underwent procedures lasting 120 to 185 minutes. Intraoperative records revealed that most of the measured systolic blood pressure (SBP) values were <60 mm Hg (the threshold for hypotension in awake infants according to the Pediatric Advanced Life Support guidelines) but that only 11% of the measured SBP values were <1 SD of the mean definition of hypotension (<45 mm Hg) as reported in a survey of members of the Society for Pediatric Anesthesia in 2009. Four infants also exhibited prolonged periods of mild hypocapnia (<35 mm Hg). One infant did not receive intraoperative dextrose. All infants developed new-onset seizures within 25 hours of administration of the anesthetic, with a predominant cerebral pathology of supratentorial watershed infarction in the border zone between the anterior, middle, and posterior cerebral arteries. Follow-up of these infants found that 1 died, 1 had profound developmental delays, 1 had minor motor delays, 2 were normal, and 1 was lost to follow-up. Although the precise cause of encephalopathy cannot be determined, it is important to consider the role that SBP hypotension (as well as hypoglycemia, hyperthermia, hyperoxia, and hypocapnia) plays during general anesthesia in young infants in the development of infantile postoperative encephalopathy. Our observations highlight the lack of evidence-based recommendations for the lower limits of adequate SBP and end-tidal carbon dioxide in anesthetized infants.
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