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Impact of age partitioning on classification discordance in pediatric ferritin reference intervals
Dien Minh Tran1, Dung Kim Le1, Thao Thu Ngoc1
1Vietnam National Children's Hospital, Hanoi, Vietnam.
Insights
Different ways of dividing pediatric age groups significantly impact ferritin reference interval classifications, especially in infants. Age-resolved analysis is crucial for accurate pediatric reference intervals.
Area of Science:
- Clinical Chemistry
- Pediatric Endocrinology
- Biostatistics
Background:
- Pediatric reference intervals (RIs) for serum ferritin are essential for diagnosing iron status.
- Existing age-partitioning strategies for pediatric RIs may not adequately capture physiological changes.
- The impact of different age-partitioning schemes on ferritin RI classification requires thorough investigation.
Purpose of the Study:
- To evaluate how various age-partitioning strategies influence the classification of results using discrete pediatric ferritin reference intervals.
- To compare the performance of data-driven, physiology-informed, and pragmatic age-partitioning schemes.
Main Methods:
- A prospective cohort of 3,322 healthy children (birth to <19 years) was studied.
- Serum ferritin was measured, and nonparametric RIs were derived for five distinct age-partitioning schemes.
- Classification performance was assessed using flagging rates, age-resolved analyses, and discordance metrics relative to a reference scheme.
Main Results:
- Overall flagging rates were similar across schemes (5.06-5.80%).
- Substantial age-specific differences in classification were observed, particularly in early infancy and during adolescent transitions.
- Broader age partitions showed increased discordance (up to 4.64%) and obscured physiological variations, with boundary discordance reaching 15.0% at 6 months.
Conclusions:
- Despite similar overall flagging rates, age-partitioning strategies significantly affect pediatric ferritin RI classification, especially in early infancy.
- Broader partitions can obscure physiological variations and increase classification discordance.
- Age-resolved evaluation is critical for defining accurate pediatric RIs, complementing statistical criteria.
Objectives:
To evaluate how alternative age-partitioning strategies affect result classification using discrete pediatric ferritin reference intervals (RIs).
Methods:
In a prospective cohort of 3,322 apparently healthy individuals aged birth to <19 years, serum ferritin was measured on the Cobas Pro platform. A common preprocessing pipeline, including Horn's algorithm, was applied once before all comparisons. Five age-partitioning schemes were evaluated: a data-driven classification and regression tree (CART)-based scheme (Scheme 1, reference), a physiology-informed high-resolution scheme, a CLSI-informed scheme, and two progressively broader pragmatic schemes. Nonparametric RIs were derived, and classification performance was assessed using apparent and out-of-bag (OOB) flagging rates, age-resolved analyses, discordance relative to Scheme 1, and boundary-focused and Lahti's evaluations.
Results:
Overall flagging rates were similar across schemes (5.06-5.33 % apparent; 5.23-5.80 % OOB). However, substantial age-specific differences were observed. Discordance relative to Scheme 1 was lowest for Scheme 3 (1.99 %) and similarly low for Scheme 2 (2.26 %), but increased for Schemes 4 and 5 (3.76-4.64 %). Boundary discordance reached 15.0 % at 6 months in broader schemes and reached 11.84 % at adolescent transitions. Age-resolved analyses showed marked heterogeneity during infancy, with overall flagging rates varying up to threefold between schemes within adjacent monthly bins. Lahti's evaluation confirmed non-interchangeability of adjacent partitions, particularly in early infancy.
Conclusions:
Despite similar overall flagging rates, marked age-specific classification differences occur, particularly in early infancy and around key developmental boundaries. Broader partitions may obscure physiological variation and increase classification discordance. Age-resolved evaluation should complement statistical criteria when defining pediatric RIs.
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