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Facilitating comprehensive child health monitoring within REDCap - an open-source code for real-time Z-score
Priyanka Mendon1, Michael Witsch2, Marianne Becker2
1Competence Centre for Methodology and Statistics, Department of Medical Informatics, Luxembourg Institute of Health, Strassen, Luxembourg. priyanka.mendon@lih.lu.
Insights
This study introduces a new method for real-time Z-score calculation within REDCap, improving child growth and blood pressure monitoring. The integrated system streamlines assessments, ensuring accurate and timely interventions for pediatric health.
Area of Science:
- Pediatric Health
- Biostatistics
- Medical Informatics
Background:
- Monitoring child somatic development and detecting pediatric hypertension are crucial for long-term health.
- Traditional Z-score calculations are manual, time-consuming, and prone to errors, delaying interventions.
- An innovative open-code solution for real-time Z-score assessment in electronic data capture platforms is needed.
Purpose of the Study:
- To introduce an open-code solution for real-time Z-score assessments within the Research Electronic Data Capture (REDCap) platform.
- To streamline the monitoring of somatic development and blood pressure in children.
- To enhance the efficiency and accuracy of pediatric health assessments.
Main Methods:
- Integrated Z-score computations into REDCap using World Health Organization (WHO) growth standards and National Health and Nutrition Examination Survey (NHANES) references.
- Utilized Bland-Altman analyses to compare the REDCap method with established calculators (Knirps and Growth XP™).
- Employed synthetic data for validation of anthropometric variables and blood pressure measurements.
Main Results:
- Bland-Altman plots showed strong agreement between REDCap calculations and established systems (Knirps, Growth XP™).
- Z-scores for height, BMI, and blood pressure demonstrated consistent alignment across the measurement range.
- The accuracy of the REDCap-integrated method was affirmed for pediatric monitoring.
Conclusions:
- The REDCap integration streamlines data collection and analysis, eliminating separate software needs.
- The use of WHO and NHANES references ensures calculation accuracy and broad suitability for diverse research.
- Bland-Altman analyses confirm the reliability of this method for effective child growth and blood pressure monitoring.
Background:
Monitoring of somatic development through the assessment of anthropometric variables such as weight, height, and BMI is vital for evaluating the physical development and nutritional status of children. This approach aids in the early identification of somatic developmental disorders, enabling timely medical interventions. It traditionally relies on Z-scores, which compare anthropometric variables with reference standards. In addition to somatic development monitoring, the early detection and management of pediatric and adolescent hypertension are crucial due to potential long-term health risks. However, manual calculations of Z-scores are time-consuming and error-prone, impeding timely interventions for at-risk children. This article introduces an innovative open-code solution for real-time Z-score assessments directly within the electronic data capture platform, Research Electronic Data Capture, (REDCap™), aiming to streamline the monitoring of somatic development in children.
Methods:
Leveraging the World Health Organization (WHO) growth standards and National Health and Nutrition Examination Survey (NHANES) references, our approach integrates Z-score computations directly into REDCap, providing a secure and user-friendly environment for healthcare professionals and researchers. We employed Bland-Altman analyses to compare our method with established calculators (Knirps and Growth XP™) using synthetic data values for all variables.
Results:
Bland-Altman plots demonstrated strong agreement between our REDCap calculations and the Knirps and Growth XP systems. Z-scores for height, BMI, and blood pressure consistently aligned, affirming the accuracy of our approach across the measurement range.
Conclusion:
The integration with REDCap streamlines data collection and analysis, eliminating the need for separate software and data exports. Moreover, our solution uses the World Health Organization (WHO) growth standards and National Health and Nutrition Examination Survey (NHANES) references. This not only ensures calculation accuracy but also enhances its suitability for diverse research contexts. The Bland-Altman analyses establish the reliability of our method, contributing to a more effective approach to child growth and blood pressure monitoring.
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