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Risk-stratification in febrile infants 29 to 60 days old: a cost-effectiveness analysis
Kathleen A Noorbakhsh1, Sriram Ramgopal2, Nancy S Rixe3
1Department of Pediatrics, University of Pittsburgh Medical Center, Children's Hospital of Pittsburgh, 4401 Penn Ave, Pittsburgh, PA, 15224 60611, USA. Katie.Noorbakhsh@chp.edu.
Insights
The Boston clinical prediction rule is a cost-effective strategy for identifying serious bacterial infections (SBI) in febrile infants. This approach offers economic advantages over other methods for risk stratification in emergency departments.
Area of Science:
- Pediatrics
- Health Economics
- Infectious Disease
Background:
- Serious bacterial infections (SBI) affect 8-13% of febrile infants up to 60 days old.
- Clinical prediction rules aim to risk-stratify these infants for timely intervention.
- Evaluating the cost-effectiveness of different strategies is crucial for healthcare resource allocation.
Purpose of the Study:
- To compare the cost-effectiveness of various clinical prediction rules for identifying SBI in febrile infants.
- To determine the optimal strategy for risk stratification in emergency department settings.
- To analyze outcomes including diagnostic accuracy and quality-adjusted life-years (QALYs) gained.
Main Methods:
- A Markov decision model was developed to simulate outcomes for well-appearing, febrile term infants.
- Eight strategies were evaluated: Boston, Rochester, Philadelphia, Modified Philadelphia, PECARN, Step-by-Step, Aronson, and clinical suspicion.
- Sensitivity analyses were conducted to assess the robustness of the findings, focusing on bacteremia, urinary tract infections, and bacterial meningitis.
Main Results:
- The Pediatric Emergency Care Applied Research Network (PECARN) strategy was the least expensive for bacteremia ($3671).
- The Boston strategy emerged as the most cost-effective at $9799/QALY gained for bacteremia.
- Clinical suspicion was found to be among the most expensive and least effective strategies.
Conclusions:
- The Boston clinical prediction rule provides an economically sound strategy for identifying SBI in infants.
- This rule presents a favorable alternative compared to other tested risk-stratification methods.
- The findings support the adoption of the Boston strategy for improved cost-effectiveness in pediatric emergency care.
Background:
Multiple clinical prediction rules have been published to risk-stratify febrile infants ≤60 days of age for serious bacterial infections (SBI), which is present in 8-13% of infants. We evaluate the cost-effectiveness of strategies to identify infants with SBI in the emergency department.
Methods:
We developed a Markov decision model to estimate outcomes in well-appearing, febrile term infants, using the following strategies: Boston, Rochester, Philadelphia, Modified Philadelphia, Pediatric Emergency Care Applied Research Network (PECARN), Step-by-Step, Aronson, and clinical suspicion. Infants were categorized as low risk or not low risk using each strategy. Simulated cohorts were followed for 1 year from a healthcare perspective. Our primary model focused on bacteremia, with secondary models for urinary tract infection and bacterial meningitis. One-way, structural, and probabilistic sensitivity analyses were performed. The main outcomes were SBI correctly diagnosed and incremental cost per quality-adjusted life-year (QALY) gained.
Results:
In the bacteremia model, the PECARN strategy was the least expensive strategy ($3671, 0.779 QALYs). The Boston strategy was the most cost-effective strategy and cost $9799/QALY gained. All other strategies were less effective and more costly. Despite low initial costs, clinical suspicion was among the most expensive and least effective strategies. Results were sensitive to the specificity of selected strategies. In probabilistic sensitivity analyses, the Boston strategy was most likely to be favored at a willingness-to-pay threshold of $100,000/QALY. In the urinary tract infection model, PECARN was preferred compared to other strategies and the Boston strategy was preferred in the bacterial meningitis model.
Conclusions:
The Boston clinical prediction rule offers an economically reasonable strategy compared to alternatives for identification of SBI.
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