Development of a semi‐automated tool to measure fetal abdominal wall thickness during ultrasound at 20 weeks' gestation

Author:

Seshadri Suresh1,Pudhukudi Sindhu12,Vajiravelu Jayanti1,Saravanan Ponnusamy34,Hyett Jon5,Ram Uma6ORCID

Affiliation:

1. Mediscan Systems Chennai India

2. Aster Fetal Medicine Aster Medcity Cochin India

3. Populations, Evidence and Technologies, Division of Health Sciences, Warwick Medical School University of Warwick Coventry UK

4. Department of Diabetes, Endocrinology and Metabolism George Eliot Hospital Nuneaton UK

5. Faculty of Medicine University of Sydney Sydney New South Wales Australia

6. Seethapathy Clinic and Hospital Chennai India

Abstract

AbstractObjectivesTo develop a semi‐automated tool for measuring fetal abdominal wall thickness (AWT). To validate the software using images captured by other centers and create a nomogram for fetal AWT between 18 and 20 weeks.MethodsA semiautomated tool that measured AWT was developed using images captured at the routine 20‐week morphology scan. The software was developed using digital images captured routinely during scans of low‐risk women. Inter‐ and intraobserver reliability was assessed between manual and semi‐automated measures. The tool was validated using images acquired from other centers. Linear regression and quadratic polynomials were used to create a nomogram for AWT.ResultsThe semi‐automated tool was able to measure AWT in all images. Interoperator reliability was 0.90 and 0.97 (P < 0.05) for manual and semi‐automated methods, respectively. Measurement agreement varied between three operators from moderate to excellent (0.77, 0.87, 0.92), with overall agreement being good (0.85). The tool could be successfully applied to 89% of images from other centers. A nomogram was generated for AWT measurements of fetuses at 18–20 weeks in normal, low risk mothers.ConclusionSemi‐automated measurement of AWT was feasible using images captured during the routine 20‐week scan. This approach had lower inter‐ and intraobserver variability compared to manual measurement.

Publisher

Wiley

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