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Published on: April 7, 2023
Cost-effectiveness of routine screening for critical congenital heart disease in US newborns
Cora Peterson1, Scott D Grosse, Matthew E Oster
1National Center on Birth Defects and Developmental Disabilities, Centers for Disease Control and Prevention, Atlanta, GA 30333, USA. cora.peterson@cdc.hhs.gov
Insights
Newborn critical congenital heart disease (CCHD) screening using pulse oximetry is cost-effective, saving lives and preventing infant deaths. Routine CCHD screening in US newborns is a valuable public health intervention.
Area of Science:
- Public Health
- Neonatal Medicine
- Health Economics
Background:
- Clinical evidence supports pulse oximetry screening for critical congenital heart disease (CCHD) in newborns as lifesaving.
- CCHD was added to the US Recommended Uniform Screening Panel in 2011, with increasing state-level screening mandates.
- This study evaluates the cost-effectiveness of routine CCHD screening for US newborns without suspected CCHD.
Purpose of the Study:
- To estimate the cost-effectiveness of routine CCHD screening in US newborns.
- To quantify the health benefits and medical costs associated with CCHD screening.
- To compare routine screening against no screening for CCHD detection.
Main Methods:
- A cohort model with an infancy time horizon was developed.
- Model inputs included hospital screening costs and inpatient care for late-detected CCHD.
- Estimates focused on newborns identified at birth hospitals versus those diagnosed later.
Main Results:
- Routine screening costs an additional $6.28 per newborn.
- Incremental costs were $20,862 per CCHD case detected at birth and $40,385 per life-year gained.
- An estimated 1189 CCHD cases and 20 infant deaths could be averted annually, with minimal impact from 1975 false positives.
Conclusions:
- This is the first US cost-effectiveness analysis of CCHD screening.
- Routine CCHD screening in the US appears to be reasonably cost-effective.
- Future data from states with CCHD screening will refine these cost-effectiveness projections.
Objectives:
Clinical evidence indicates newborn critical congenital heart disease (CCHD) screening through pulse oximetry is lifesaving. In 2011, CCHD was added to the US Recommended Uniform Screening Panel for newborns. Several states have implemented or are considering screening mandates. This study aimed to estimate the cost-effectiveness of routine screening among US newborns unsuspected of having CCHD.
Methods:
We developed a cohort model with a time horizon of infancy to estimate the inpatient medical costs and health benefits of CCHD screening. Model inputs were derived from new estimates of hospital screening costs and inpatient care for infants with late-detected CCHD, defined as no diagnosis at the birth hospital. We estimated the number of newborns with CCHD detected at birth hospitals and life-years saved with routine screening compared with no screening.
Results:
Screening was estimated to incur an additional cost of $6.28 per newborn, with incremental costs of $20 862 per newborn with CCHD detected at birth hospitals and $40 385 per life-year gained (2011 US dollars). We estimated 1189 more newborns with CCHD would be identified at birth hospitals and 20 infant deaths averted annually with screening. Another 1975 false-positive results not associated with CCHD were estimated to occur, although these results had a minimal impact on total estimated costs.
Conclusions:
This study provides the first US cost-effectiveness analysis of CCHD screening in the United States could be reasonably cost-effective. We anticipate data from states that have recently approved or initiated CCHD screening will become available over the next few years to refine these projections.
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