Resection cavity auto-contouring for patients with pediatric medulloblastoma using only CT information
Soleil Hernandez, Callistus Nguyen, Skylar Gay, Jack Duryea,Rebecca, Howell, David Fuentes, Jeannette Parkes, Hester Burger, Carlos Cardenas,, Arnold C. Paulino, Julianne Pollard-Larkin, Laurence Court

TL;DR
This study developed a CT-based auto-contouring model for post-operative pediatric medulloblastoma GTVs, demonstrating promising accuracy and potential to improve efficiency especially in settings with limited MRI access.
Contribution
The paper introduces a novel CT-only auto-contouring method for pediatric medulloblastoma post-operative GTVs, addressing a gap in CT-based delineation literature.
Findings
Achieved Dice similarity coefficients up to 0.83 on pre-selected data.
Auto-contouring performed well on scans with contrast >=10 HU.
Potential to improve delineation efficiency in MRI-limited settings.
Abstract
Purpose: Target delineation for radiation therapy is a time-consuming and complex task. Autocontouring gross tumor volumes (GTVs) has been shown to increase efficiency. However, there is limited literature on post-operative target delineation, particularly for CT-based studies. To this end, we trained a CT-based autocontouring model to contour the post-operative GTV of pediatric patients with medulloblastoma. Methods: 104 retrospective pediatric CT scans were used to train a GTV auto-contouring model. 80 patients were then preselected for contour visibility, continuity, and location to train an additional model. Each GTV was manually annotated with a visibility score based on the number of slices with a visible GTV (1 = <25%, 2 = 25%-50%, 3 = >50%-75%, and 4 = >75%-100%). Contrast and the contrast-to-noise ratio (CNR) were calculated for the GTV contour with respect to a cropped…
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Taxonomy
TopicsAdvanced Radiotherapy Techniques · Glioma Diagnosis and Treatment · Medical Imaging Techniques and Applications
