Related Experiment Video
Updated: Jan 28, 2026

Treatment of Liver Metastases Using an Internal Target Volume Method for Stereotactic Body Radiotherapy
Published on: May 8, 2018
Establishing CT-derived Normative Liver and Spleen Volumes for Children: Validation in Regional and International
Jae-Yeon Hwang1,2, Young Hun Choi1,2, Ah Young Jung3
1Department of Radiology, Seoul National University Hospital, Seoul, Republic of Korea.
Insights
This study establishes validated reference values for pediatric liver and spleen volumes using CT scans. The new model improves accuracy compared to existing formulas, aiding clinical assessment in children.
Area of Science:
- Radiology
- Pediatric Imaging
- Medical Imaging Analysis
Background:
- Accurate pediatric liver and spleen volume reference values are limited and require external validation.
- Current pediatric reference values for organ volumetry lack broad applicability.
Purpose of the Study:
- To establish normative liver and spleen volumes in children using contrast-enhanced CT.
- To validate these pediatric organ volume reference values in external regional and international datasets.
Main Methods:
- Retrospective analysis of contrast-enhanced CT scans from 1298 children (aged 2-18 years) for dataset derivation.
- Automated segmentation with manual correction of portal-phase CT images.
- Validation using datasets from regional (Seoul) and international (Cincinnati) children's hospitals.
Main Results:
- A quantile regression model incorporating sex, height, and weight demonstrated the best predictive performance for 50th percentile liver and spleen volumes.
- The developed model showed improved accuracy (lower average pinball loss) compared to previously published formulas in regional validation.
- External international validation confirmed comparable absolute errors and lower average pinball loss for predicting 50th percentile volumes.
Conclusions:
- Normative liver and spleen volumes for children were successfully derived using quantile regression models.
- The study presents a validated model with improved predictive performance for pediatric organ volumetry.
- These findings provide a more accurate tool for assessing liver and spleen size in pediatric patients.
Abstract:
Background Volumetric evaluation of liver and spleen size is useful, yet pediatric reference values remain limited and lack external validation. Purpose To establish normative liver and spleen volumes from contrast-enhanced CT in children and validate them in external regional and international datasets. Materials and Methods In this retrospective study, contrast-enhanced abdominal CT scans (patient age, 2-18 years) from Asan Medical Center and Pusan National University Yangsan Hospital (January 2005 to June 2021) were collected for the derivation dataset. Patients with chronic diseases, liver and/or spleen imaging abnormalities, or missing height and/or weight measurement within 3 months were excluded. Portal-phase CT images were segmented automatically with manual correction. Data from Seoul National University Children's Hospital (January 2018 to December 2021) and Cincinnati Children's Hospital Medical Center (January 2018 to July 2021) were used for regional and international validation, respectively. Model performance was assessed with the average pinball loss and absolute errors for predicting 50th percentiles. Results A total of 1298 children (median age, 11.3 years [IQR, 8.0-15.0 years]; 660 female) were included (derivation set, n = 1030 [all Asian]; regional validation set, n = 114 [all Asian]; international validation set, n = 154 [racially diverse]). The model including sex, height, and weight had the lowest average pinball loss for predicting 50th percentile liver (54.50 mL) and spleen (18.64 mL) volume and was therefore selected. Compared with previously published formulas, the model showed lower average pinball loss in the regional validation dataset for both liver (5th, 11.55 mL vs 11.93 mL; 50th, 50.88 mL vs 55.47-116.02 mL; 95th, 15.85 mL vs 19.49 mL) and spleen volumes (5th, 3.69 mL vs 3.74 mL; 50th, 15.19 mL vs 16.03 mL; 95th, 5.01 mL vs 5.59 mL). In international external validation, the average pinball loss was lower for the 50th percentiles (liver, 50.28 mL vs 50.30 mL; spleen, 20.97 mL vs 21.42 mL), and absolute errors were comparable (liver, 100.56 mL vs 100.60 mL [P = .53]; spleen, 41.93 mL vs 42.83 mL [P = .69]). Conclusion Normative liver and spleen volumes in children derived using quantile regression models and the respective predictive performance were presented. © RSNA, 2026 Supplemental material is available for this article.
Related Concept Videos
Internal Receptors
Reliability and Validity
Internal Energy
Constant Volume Calorimetry
Real Gases: Effects of Intermolecular Forces and Molecular Volume Deriving Van der Waals Equation
IR Frequency Region: Fingerprint Region

