MRI-guided cardiac-induced target motion tracking for atrial fibrillation cardiac radioablation.

Lydiard, Suzanne; Pontré, Beau; Hindley, Nicholas; Lowe, Boris S; Sasso, Giuseppe; Keall, Paul · Radiother Oncol · 2021

basic_science · Level V

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Abstract

Atrial fibrillation (AF) cardiac radioablation (CR) challenges radiotherapy tracking: multiple small targets close to organs-at-risk undergo rapid differential cardiac contraction and respiratory motion. MR-guidance offers a real-time target tracking solution. This work develops and investigates MRI-guided tracking of AF CR targets with cardiac-induced motion. A direct tracking method (Tracking<sub>direct</sub>) and two indirect tracking methods leveraging population-based surrogacy relationships with the left atria (Tracking<sub>indirect_LA</sub>) or other target (Tracking<sub>indirect_target</sub>) were developed. Tracking performance was evaluated using transverse ECG-gated breathhold MRI images from 15 healthy and 10 AF participants. Geometric and volumetric tracking errors were calculated, defined as the difference between the ground-truth and tracked target centroids and volumes respectively. Transverse, breath-hold, noncardiac-gated cine images were acquired at 4 Hz in 5 healthy and 5 AF participants to qualitatively characterize tracking performance on images more comparable to MRILinac acquisitions. The average 3D geometric tracking errors for Tracking<sub>direct</sub>, Tracking<sub>indirect_LA</sub> and Tracking<sub>indirect_target</sub> respectively were 1.7 ± 1.2 mm, 1.6 ± 1.1 mm and 1.9 ± 1.3 mm in healthy participants and 1.7 ± 1.3 mm, 1.5 ± 1.0 mm and 1.7 ± 1.2 mm in AF participants. For Tracking<sub>direct</sub>, 88% of analyzed images had 3D geometric tracking errors <3 mm and the average volume tracking error was 1.7 ± 1.3 cc. For Tracking<sub>direct</sub> on non-cardiac-gated cine images, tracked targets overlapped organsat-risk or completely missed the target area on 2.2% and 0.08% of the images respectively. The feasibility of non-invasive MRI-guided tracking of cardiac-induced AF CR target motion was demonstrated for the first time, showing potential for improving AF CR treatment efficacy.

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