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Published on: February 23, 2024
Burn-induced cardiac dysfunction increases length of stay in pediatric burn patients
Taylor S Howard1, Daniel G Hermann, Alexis L McQuitty
1University of Texas Medical Branch and Shriners Burns Hospital, Galveston, TX 77555, USA.
Insights
Pediatric burn patients often experience systolic dysfunction, impacting recovery. This cardiac issue significantly increases surgeries, ventilation, and intensive care unit stays, highlighting its clinical importance.
Area of Science:
- Cardiology
- Pediatric Critical Care
- Burn Medicine
Background:
- Cardiac dysfunction is a known complication following severe burns.
- Understanding perioperative cardiac function in pediatric burn patients is crucial for optimizing outcomes.
Purpose of the Study:
- To evaluate cardiac function and clinical outcomes in pediatric patients experiencing severe burns.
- To determine the association between systolic dysfunction and clinical outcomes in this population.
Main Methods:
- Transesophageal echocardiography was used to assess cardiac function in 40 pediatric burn patients.
- Patients were grouped based on ejection fraction (EF >50% vs. EF ≤50%) to compare clinical variables.
Main Results:
- Systolic dysfunction (EF ≤50%) was prevalent in 62% of patients.
- Systolic dysfunction correlated with increased surgeries, ventilator days, and ICU length of stay (67.2 days vs. 34.3 days).
- Diastolic dysfunction was common (88%) but not significantly correlated with clinical outcomes.
Conclusions:
- Perioperative systolic dysfunction is common in pediatric burn patients and has significant clinical consequences.
- This study provides evidence linking cardiac dysfunction to poorer clinical outcomes in pediatric burn care.
- The findings underscore the importance of monitoring cardiac function in this vulnerable population.
Abstract:
The aim of this study was to evaluate cardiac function and clinical outcomes in perioperative pediatric burn patients. Transesophageal echocardiography data were collected on 40 patients from 2004 to 2007. Of the 40 patients who received exams, a complete set of cardiac parameters and outcome variables was obtained in 26 patients. The mean age of the patients was 9.7 ± 0.9 years, and the mean TBSA burn size was 64 ± 3%. Patients were divided into two groups based on systolic function. One group represented patients with ejection fractions of >50% and the other ≤50%. Clinical variables were then compared among the groups. In our cohort, systolic dysfunction was observed in 62% of patients (EF ≤ 50%). Systolic dysfunction was associated with a statistically significant increase in number of surgeries, ventilator days, and length of stay in the intensive care unit. The length of stay in patients with preserved systolic function and those with systolic dysfunction was 34.3 ± 3.3 days and 67.2 ± 4.0 days, respectively. Diastolic function measurements were obtained in 65%, and 88% had evidence of diastolic dysfunction. Diastolic dysfunction was not associated with any statistically significant correlations. This study lends evidence to the well-supported basic science models showing cardiac dysfunction after burns. Additionally, it shows that cardiac dysfunction can have clinical consequences. To our knowledge, this is the first study that shows the clinical sequelae of systolic dysfunction in the perioperative pediatric burn population.
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