Reliability and Agreement of Automated Head Measurements From 3-Dimensional Photogrammetry in Young Children

Author:

Abdel-Alim Tareq12,Tio Pauline3,Kurniawan Melissa13,Mathijssen Irene3,Dirven Clemens1,Niessen Wiro4,Roshchupkin Gennady25,van Veelen Marie-Lise16

Affiliation:

1. Department of Neurosurgery, Erasmus University Medical Center

2. Department of Radiology and Nuclear Medicine, Erasmus University Medical Center

3. Department of Plastic and Reconstructive Surgery, Erasmus University Medical Center, Rotterdam

4. Faculty of Medical Sciences, University Groningen, Groningen, The Netherlands

5. Department of Epidemiology, Erasmus University Medical Center

6. Child Brain Center, Erasmus MC Sophia Children's Hospital, Rotterdam, The Netherlands

Abstract

This study aimed to assess the reliability and agreement of automated head measurements using 3-dimensional (3D) photogrammetry in young children. Specifically, the study evaluated the agreement between manual and automated occipitofrontal circumference (OFC) measurements (n = 264) obtained from 3D images of 188 patients diagnosed with sagittal synostosis using a novel automated method proposed in this study. In addition, the study aimed to determine the interrater and intrarater reliability of the automatically extracted OFC, cephalic index, and volume. The results of the study showed that the automated OFC measurements had an excellent agreement with manual measurements, with a very strong regression score (R 2 = 0.969) and a small mean difference of −0.1 cm (−0.2%). The limits of agreement ranged from −0.93 to 0.74 cm, falling within the reported limits of agreement for manual OFC measurements. High interrater and intrarater reliability of OFC, cephalic index, and volume measurements were also demonstrated. The proposed method for automated OFC measurements was found to be a reliable alternative to manual measurements, which may be particularly beneficial in young children who undergo 3D imaging in craniofacial centers as part of their treatment protocol and in research settings that require a reproducible and transparent pipeline for anthropometric measurements. The method has been incorporated into CraniumPy, an open-source tool for 3D image visualization, registration, and optimization, which is publicly available on GitHub (https://github.com/T-AbdelAlim/CraniumPy).

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

General Medicine,Otorhinolaryngology,Surgery

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