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Updated: May 1, 2026

Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Assessing the accuracy of common pediatric age-based weight estimation formulae
Ray Ackwerh1, Laura Lehrian, Olubukola O Nafiu
1From the Department of Anesthesiology, University of Michigan, Ann Arbor, Michigan.
Insights
Accurate pediatric weight estimation is crucial, especially with rising childhood obesity. A new "Michigan formula" (weight = 3 x age + 10) shows high accuracy for children aged 2-12, outperforming older methods.
Area of Science:
- Pediatric Anesthesiology
- Clinical Pediatrics
- Medical Informatics
Background:
- Existing pediatric weight estimation formulas may be inaccurate for overweight/obese children.
- Assessed accuracy of Advanced Pediatric Life Support, Luscombe, and Theron formulas.
- Need for updated, accurate weight estimation in contemporary pediatric populations.
Purpose of the Study:
- Evaluate the accuracy of common pediatric weight estimation formulas.
- Develop and validate a new age-based formula for modern pediatric populations.
- Improve weight estimation for children undergoing surgery.
Main Methods:
- Utilized preoperative data from 13,933 children aged 2-12 years.
- Evaluated three existing age-based weight estimation formulas.
- Developed and validated a new formula (Michigan formula) using a derivation cohort (75% of sample).
Main Results:
- Formula accuracy varied; Luscombe formula had a bias of 3.4 kg.
- The new Michigan formula achieved 92% accuracy within 10% of measured weight.
- The Michigan formula demonstrated higher accuracy than existing formulas in the derivation cohort.
Conclusions:
- Established pediatric weight estimation formulas exhibit significant accuracy variations.
- The Michigan formula (weight (kg) = 3 x age (yr) + 10) offers high accuracy.
- The Michigan formula is potentially more suitable for contemporary American children's weight estimation.
Background:
Many of the common equations for weight estimation in children were either introduced before the widespread prevalence of childhood obesity or have not been assessed in overweight/obese children. Therefore, we assessed the accuracy of 3 common age-based weight estimation formulae (Advanced Pediatric Life Support, Luscombe, and Theron) for predicting the weight of children undergoing elective, noncardiac operations. We also developed and validated a new age-based weight estimation formula.
Methods:
We used preoperative anthropometric and clinical data on 13,933 children aged 2 to 12 years to evaluate the performance of 3 pediatric age-based weight estimation formulae. Ability of the formulae to predict measured weights was assessed in a derivation cohort (75% randomly selected from the study sample). We also developed and validated a new age-based formula (the Michigan formula) that could be used to estimate the weight of contemporary American children.
Results:
Among the 10,488 children in the derivation cohort, 31.8% were overweight or obese while 55.7% were boys. The accuracy of the formulae varied considerably. The Luscombe formula demonstrated the lowest mean bias of 3.4 kg (95% confidence interval, 3.2-3.5 kg) and 89.7% of estimates within 10% of measured weight. Our derived linear regression equation the "Michigan Formula" demonstrated the highest accuracy compared with the existing formulae with a bias of 4.6 kg (95% confidence interval, = 4.36-4.84 kg) and 92% of estimates within 10% of measured weights.
Conclusions:
Accuracies of current weight estimation formulae varied greatly. Our derived equation (Michigan formula: weight (kg) = 3 x age (yr) + 10) demonstrated high accuracy when compared with existing formulae and may be more applicable for estimating the weight of contemporary American children.
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