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Modelled Distributional Cost-Effectiveness Analysis of Childhood Obesity Interventions: A Demonstration
Anagha Killedar1, Thomas Lung2,3, Rachael W Taylor4
1Menzies Centre for Health Policy and Economics, School of Public Health, Faculty of Medicine and Health, University of Sydney, Sydney, NSW, 2006, Australia. anagha.killedar@sydney.edu.au.
Insights
Two childhood obesity interventions, POI-Sleep and High Five for Kids, showed positive health benefits and equity impacts. The POI-Combo intervention resulted in net health loss and negative equity impact, highlighting the importance of distributional cost-effectiveness analysis.
Area of Science:
- Public Health
- Health Economics
- Epidemiology
Background:
- Childhood obesity is a significant public health concern with long-term health and economic consequences.
- Existing cost-effectiveness analyses often overlook socioeconomic position (SEP) disparities in intervention outcomes.
- Equitable distribution of health benefits is crucial for effective public health policy.
Purpose of the Study:
- To demonstrate distributional cost-effectiveness analyses for childhood obesity interventions.
- To assess the efficiency and equity impacts of specific interventions across different socioeconomic groups.
- To provide decision-makers with a framework for evaluating interventions considering both cost-effectiveness and equity.
Main Methods:
- Conducted modelled distributional cost-effectiveness analyses of three childhood obesity interventions (POI-Sleep, POI-Combo, High Five for Kids).
- Utilized a microsimulation model to simulate body mass index (BMI) trajectories, healthcare costs, and quality-adjusted life years (QALYs) stratified by SEP.
- Examined net health benefit and equity impact, incorporating uncertainty and scenario analyses.
Main Results:
- POI-Sleep and High Five for Kids demonstrated a high probability of net health benefit and positive equity impact.
- POI-Combo showed a high probability of net health loss and negative equity impact.
- Scenario analyses revealed that SEP-specific effect sizes significantly influenced equity impacts, particularly for POI-Combo and High Five for Kids.
Conclusions:
- Distributional cost-effectiveness analysis is a suitable method for differentiating and communicating intervention efficiency and equity.
- The findings highlight the varied impacts of different childhood obesity interventions across socioeconomic strata.
- This analytical approach aids in making informed decisions for equitable public health interventions.
Objective:
To demonstrate how distributional cost-effectiveness analyses of childhood obesity interventions could be conducted and presented for decision makers.
Methods:
We conducted modelled distributional cost-effectiveness analyses of three obesity interventions in children: an infant sleep intervention (POI-Sleep), a combined infant sleep, food, activity and breastfeeding intervention (POI-Combo) and a clinician-led treatment for primary school-aged children with overweight and obesity (High Five for Kids). For each intervention, costs and socioeconomic position (SEP)-specific effect sizes were applied to an Australian child cohort (n = 4898). Using a purpose-built microsimulation model we simulated SEP-specific body mass index (BMI) trajectories, healthcare costs and quality-adjusted life years (QALYs) from age 4 to 17 years for control and intervention cohorts. We examined the distribution of each health outcome across SEP and determined the net health benefit and equity impact accounting for opportunity costs and uncertainty due to individual-level heterogeneity. Finally, we conducted scenario analyses to test the effect of assumptions about health system marginal productivity, the distribution of opportunity costs and SEP-specific effect sizes. The results of the primary analyses, uncertainty analyses and scenario analyses were presented on an efficiency-equity impact plane.
Results:
Accounting for uncertainty, POI-Sleep and High Five for Kids were found to be 'win-win' interventions, with a 67% and 100% probability, respectively, of generating a net health benefit and positive equity impact compared with control. POI-Combo was found to be a 'lose-lose' intervention, with a 91% probability of producing a net health loss and a negative equity impact compared with control. Scenario analyses indicated that SEP-specific effect sizes were highly influential on equity impact estimates for POI-Combo and High Five for Kids, while health system marginal productivity and opportunity cost distribution assumptions primarily influenced the net health benefit and equity impact of POI-Combo.
Conclusions:
These analyses demonstrated that distributional cost-effectiveness analyses using a fit-for-purpose model are appropriate for differentiating and communicating the efficiency and equity impacts of childhood obesity interventions.
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