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Pediatric Decontamination Considerations in CBRN Events: A Scoping Review
Eman Alshaikh1,2,3, Fadi Issa1,2, Attila J Hertelendy1
1Department of Emergency Medicine, https://ror.org/04drvxt59Beth Israel Deaconess Medical Center, Boston, Massachusetts, USA.
Introduction:
Children are uniquely vulnerable to chemical, biological, radiological, and nuclear (CBRN) events due to anatomical, physiological, and psychological differences. Current decontamination practices are adapted from adult protocols.
Objective:
To evaluate current practices, challenges, and special considerations in pediatric decontamination during CBRN events.
Method:
A scoping review was conducted using six databases in accordance with PRISMA-ScR framework. Studies were eligible if they evaluated decontamination methods involving children (0-18 years) in real or simulated CBRN scenarios. Fourteen studies met the inclusion criteria, and data were thematically analyzed into four domains.
Results:
Disrobing is widely recognized as a critical first step in the decontamination process, and 43% of the studies reviewed identified it as such. When done immediately and appropriately, it can remove a significant amount of contaminants. Although its effectiveness varies based on how much of the body is covered and the nature of the exposure. Dry decontamination was discussed in 21% of studies, and wet decontamination was the most commonly reported approach, appearing in 93%. Key pediatric challenges included hypothermia, psychological distress, separation from caregivers, and difficulties managing non-ambulatory or special needs populations. Few studies addressed age-specific protocols or long-term psychological impacts. The results are presented in procedural order to reflect the typical sequence of decontamination in CBRN response.
Conclusions:
Current decontamination guidelines inadequately address pediatric-specific needs. There is a critical need for standardized, age-appropriate guidelines that integrate caregiver support and psychosocial considerations. A pediatric decontamination algorithm was developed to consolidate current evidence into a practical framework for CBRN mass casualty incidents.
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