Interobserver variability in the delineation of the primary lung cancer and lymph nodes on different four-dimensional computed tomography reconstructions

Susan Mercieca*, José S.A. Belderbos, Katrien De Jaeger, Dominic A.X. Schinagl, Noëlle van der Voort Van Zijp, Jacqueline Pomp, Jacqueline Theuws, Jonathan Khalifa, Paul van de Vaart, Marcel van Herk

*Corresponding author for this work

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Abstract

Purpose: The study compared interobserver variation in the delineation of the primary tumour (GTVp) and lymph nodes (GTVln) between three different 4DCT reconstruction types; Maximum Intensity Projection (MIP), Mid-Ventilation (Mid-V) and Mid-Position (Mid-P). Material and methods: Seven radiation oncologists delineated the GTVp and GTVln on the MIP, Mid-V and Mid-P 4DCT image reconstructions of 10 lung cancer patients. The volumes, the mean standard deviation (SD) and distribution of SD (SD/area) over the median surface contour were compared for different tumour regions. Results: The overall mean delineated volume on the MIP was significantly larger (p < 0.001) than the Mid-V and Mid-P. For the GTVp the Mid-P had the lowest interobserver variation (SD = 0.261 cm), followed by Mid-V (SD = 0.314 cm) and MIP (SD = 0.330 cm) For GTVln the Mid-V had the lowest interobserver variation (SD = 0.425 cm) followed by the MIP (SD = 0.477 cm) and Mid-P (SD = 0.543 cm). The SD/area distribution showed a statistically significant difference between the MIP versus Mid-P and Mid-P versus Mid-V for both GTVp and GTVln (p < 0.001), with outliers indicating interpretation differences for GTVp located close to the mediastinum and GTVln. Conclusion: The Mid-P reduced the interobserver variation for the GTVp. Delineation protocols must be improved to benefit from the improved image quality of Mid-P for the GTVln.

Original languageEnglish
JournalRadiotherapy and Oncology
Volume126
Issue number2
Early online date5 Dec 2017
DOIs
Publication statusPublished - Feb 2018

Keywords

  • 4DCT image reconstruction
  • Interobserver variation
  • Lung cancer radiotherapy

Research Beacons, Institutes and Platforms

  • Manchester Cancer Research Centre

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