Saxsons Group — India's trusted nuclear medicine, radiotherapy, oncosurgery, dosimetry and cyclotron supplier since 1986
📖 Free full textPeer-ReviewedPubMedResearch ArticleQA & dosimetryJournal of applied clinical medical physics · 2026

Evaluation of inter-fractional anatomical variations due to compression belt placement reproducibility using MR-guided radiotherapy treatment fraction images.

Shay O, Solis D, Aire M, Schneider C, Kirby K.

Abstract

BackgroundAbdominal compression (AC) using a belt-based system is widely employed in radiation therapy to limit respiration-induced target motion for abdominal and hepatic malignancies. While AC has demonstrated efficacy in reducing intrafraction motion amplitude, the interfractional anatomical consequences of daily compression belt (CB) placement variability remain poorly characterized. A clearer understanding of this variability is necessary to determine whether online adaptive radiotherapy (oART) is required to maintain dosimetric robustness throughout the treatment course.PurposeThis study aims to quantify interfractional anatomical variability associated with CB use in a clinical MR-guided radiotherapy cohort and to compare these findings against a matched cohort of non-compressed abdominal patients to determine the clinical significance of CB-induced setup variability.MethodsDaily treatment MR images were retrospectively collected from 17 CB patients and 17 matched non-CB controls treated on an MR-Linac. External contours were delineated at the center of the planning target volume (PTV) and at the region of maximum compression for CB patients. Interfractional variability was assessed using cross-sectional area (CSA), Dice Similarity Coefficient (DSC), Mean Distance to Agreement (MDA), and Hausdorff Distance (HD). Interfractional organ displacement of the liver and kidneys was quantified via rigid registration. Linear mixed-effects models (LMEMs) evaluated the association between patient demographics-including age, BMI, sex, subcutaneous adipose tissue (SAT), visceral adipose tissue (VAT)-and interfractional variability metrics.ResultsInterfractional DSC over the PTV region was significantly lower in the CB cohort compared with non-CB controls (p = 0.01 and p = 0.03 for comparisons to fraction one and sequential fraction comparisons, respectively), and MDA was significantly elevated in the CB cohort (p 2 m = 0.06-0.29), with the remainder attributable to patient-specific random effects. Interfractional organ displacement ranged from 5.91 to 9.15 mm across organs and cohorts, with no statistically significant difference between groups.ConclusionsCB use introduces measurable but modest increases in interfractional anatomical variability at the PTV level compared with standard abdominal setups. Compression-site variability does not propagate directly to the treatment target, and patient demographics alone are insufficient to predict CB-induced setup variability. Daily MR-based image guidance and selective adaptive replanning remain the appropriate management strategy for patients treated with abdominal compression.

Relevant Saxsons product

Related in the same topics