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Fractional CO2 Laser Treatment Outcomes for Pediatric Hypertrophic Burn Scars
Sagar P Patel1, Ha Vi Nguyen1, Diana Mannschreck1
1Department of Dermatology, Johns Hopkins University School of Medicine, Baltimore, Maryland.
Insights
Carbon dioxide ablative fractional laser (CO2-AFL) therapy effectively improves pediatric hypertrophic burn scars. This study shows significant scar improvement using CO2-AFL, offering a safe alternative to other treatments.
Area of Science:
- Dermatology
- Pediatric Burn Care
- Laser Therapy
Background:
- Carbon dioxide ablative fractional laser (CO2-AFL) therapy lacks established guidelines for pediatric burn scar treatment.
- Limited literature exists on the outcomes of CO2-AFL in pediatric hypertrophic burn scars.
Purpose of the Study:
- To evaluate the clinical effectiveness of CO2-AFL therapy for pediatric hypertrophic, symptomatic burn scars.
- To provide data supporting the use of CO2-AFL in pediatric burn management.
Main Methods:
- Prospective cohort study involving 49 pediatric patients with hypertrophic burn scars.
- Utilized the Patient and Observer Scar Assessment Scale (POSAS) for pre- and post-treatment scar evaluation.
- Conducted 180 CO2-AFL treatment sessions over a 2-year period at a tertiary care center.
Main Results:
- Statistically significant improvements in observer-rated scar characteristics (pigment, thickness, relief, pliability, surface area) after one CO2-AFL treatment.
- Significant improvements in patient-rated scar features (color, stiffness, thickness, irregularity) were observed.
- Total POSAS scores improved significantly from baseline (89.6 ± 17.5) to post-treatment (69.2 ± 14.9).
Conclusions:
- CO2-AFL therapy demonstrates significant clinical and statistical improvement in pediatric hypertrophic burn scars.
- CO2-AFL offers a lower-risk alternative to invasive procedures and a more effective option than conservative treatments.
- Findings support CO2-AFL as a valuable therapeutic option for pediatric burn scar management.
Abstract:
Carbon dioxide ablative fractional laser (CO2-AFL) therapy has not been widely adopted in pediatric burn care given limited outcomes literature and no established guidelines on laser treatment protocols. We present our experience to further elucidate the clinical role of CO2-AFL therapy for pediatric hypertrophic burn scars. We conducted a prospective cohort study of pediatric burn patients undergoing CO2-AFL treatment of hypertrophic, symptomatic burn scars at a tertiary care regional burn center during a 2-year period. Scars were assessed before each treatment using the Patient and Observer Scar Assessment Scale (POSAS), a validated, subjective, comprehensive scar assessment tool. We treated 49 pediatric patients for a total of 180 laser sessions. Burn severity was full thickness (63.6%) or deep partial thickness (47.7%). Observer-rated POSAS scores revealed statistically significant improvements in pigment, thickness, relief, pliability, and surface area after one treatment with continued improvement until the last laser session. Patient-rated POSAS revealed statistically significant improvements in color, stiffness, thickness, and irregularity after laser treatments. Total POSAS improved from 89.6 ± 17.5 to 76.6 ± 16.8 (P < .0001) after one treatment with further improvement to 69.2 ± 14.9 (P < .0001) at the final laser session. We found convincing evidence that CO2-AFL therapy improves hypertrophic burn scars on both patient- and observer-rated scales confirming statistical and clinical significance to both providers and families. These findings demonstrate that CO2-AFL can improve hypertrophic burn scars in pediatric patients providing a lower risk alternative to invasive therapies and a more immediate, efficacious alternative to more conservative scar treatments.
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