Early Cognitive Function after Deep Sedation Using Different Anesthetic Agents in Pediatric Patients: A Prospective,

Min Suk Chae1, Ji Yeon Kim1, Hyun Jung Koh1

  • 1Department of Anesthesiology and Pain Medicine, Seoul St. Mary's Hospital, College of Medicine, The Catholic University of Korea, 222, Banpo-daero, Seocho-gu, Seoul 06591, Republic of Korea.

PubMed

Insights

This study found no significant difference in early cognitive function between sevoflurane inhalational sedation and propofol intravenous sedation in pediatric patients undergoing hematological procedures. Both anesthetic agents demonstrated similar effects on memory and recognition, indicating comparable safety profiles for cognitive outcomes.

Area of Science:

  • Pediatric Anesthesiology
  • Neuroscience
  • Cognitive Psychology

Background:

  • Anesthetic agents' impact on pediatric brain development and cognitive function is a significant concern.
  • Limited research exists on early cognitive function following sedation in children.
  • Understanding these effects is crucial for optimizing anesthetic practices in pediatric hematology.

Purpose of the Study:

  • To compare the effects of inhalational sevoflurane versus intravenous propofol sedation on early cognitive function in pediatric patients.
  • To evaluate the impact of anesthetic agents on memory and recognition using a novel assessment tool.
  • To determine if the number of sedation procedures influences cognitive outcomes.

Main Methods:

  • A prospective, randomized controlled trial involving 130 pediatric patients undergoing bone marrow aspiration and intrathecal chemotherapy.
  • Patients were randomized to either inhalational sevoflurane (IHG) or intravenous propofol (IVG) sedation.
  • Cognitive function was assessed using the early recognition assessment (ERA) tool, measuring image recall before and after sedation.

Main Results:

  • No significant differences in correct response rates on the ERA tool were observed between the inhalational and intravenous sedation groups.
  • Cognitive performance remained consistent across repeated sedation procedures in both groups.
  • The intravenous propofol group showed higher behavior response scores compared to the inhalational sevoflurane group.

Conclusions:

  • Neither sevoflurane nor propofol sedation significantly impacted early cognitive function as measured by the ERA tool in pediatric patients.
  • The choice of anesthetic agent did not affect the rates of correct responses, regardless of the number of procedures.
  • While minor differences in patient response were noted, cognitive outcomes were comparable, suggesting similar safety profiles for these agents in this context.

Related Concept Videos

Stages of General Anesthesia01:22

Stages of General Anesthesia

Various sedation levels offer significant advantages in facilitating procedural interventions for patients undergoing medical or invasive surgical procedures. These levels span from anxiolysis to general anesthesia, providing a spectrum of sedative effects to cater to specific patient needs. Anxiolysis reduces anxiety and is achieved through minimal sedation, enabling patients to remain awake and responsive while feeling more at ease during the procedure. This level can benefit minor...
391
General Anesthesia: Overview01:24

General Anesthesia: Overview

Anesthesia is a medical procedure that uses drugs for CNS suppression to enable painless surgeries and procedures. The selection of anesthetics is influenced by their pharmacokinetic properties, side effects, and patient characteristics. Various types of anesthesia include general, local, regional, spinal, and inhalational.
General anesthesia induces unconsciousness in the whole body, while the others target specific areas or sensations. It is administered to minimize adverse effects, maintain...
198
Inhalational Anesthetics: Overview01:20

Inhalational Anesthetics: Overview

Inhalation anesthetics are drugs that induce general anesthesia upon inhalation. They work by increasing the sensitivity of GABAA receptors or inhibiting NMDA receptors, leading to a decrease in central nervous system activity. The depth of anesthesia can be rapidly adjusted by changing the concentration of the inhaled gas. Some common examples of inhalational anesthetics include volatile liquids like isoflurane, desflurane, sevoflurane and gases like xenon and nitrous oxide. Isoflurane, a...
234