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Reinforcing treatment and evaluation workflow of stereotactic ablative body radiotherapy for refractory ventricular tachycardia.

Authors :
Hojin Kim
Sangjoon Park
Jihun Kim
Jin Sung Kim
Dong Wook Kim
Nalee Kim
Jae-Sun Uhm
Daehoon Kim
Hui-Nam Pak
Chae-Seon Hong
Hong In Yoon
Source :
Radiation Oncology Journal; Dec2024, Vol. 42 Issue 4, p319-329, 11p
Publication Year :
2024

Abstract

Purpose: Cardiac radioablation is a novel, non-invasive treatment for ventricular tachycardia (VT), involving a single fractional stereotactic ablative body radiotherapy (SABR) session with a prescribed dose of 25 Gy. This complex procedure requires a detailed workflow and stringent dose constraints compared to conventional radiation therapy. This study aims to establish a consistent institutional workflow for single-fraction cardiac VT-SABR, emphasizing robust plan evaluation and quality assurance. Materials and Methods: The study developed a consistent institutional workflow for VT-SABR, including computed tomography (CT) simulation, target volume definition, treatment planning, robust plan evaluation, quality assurance, and image-guided strategy. The workflow was implemented for two patients with cardiac arrhythmia. Accurate target volume definition using planning CT images and electronic anatomical mapping was critical. A four-dimensional (4D) cone-beam CT (CBCT) and breath-hold electrocardiographic gated CT images reliably detected target motion. Results: The resulting plans exhibited a conformity index greater than 0.7 and a gradient index around G4.0. Dose constraints for the planning target volume (PTV) aimed for 95% or higher PTV dose coverage, with a maximum dose of 200% or lower. However, one case did not meet the PTV dose coverage due to the proximity of the PTV to gastrointestinal organs. Plans adhered to dose constraints for organs at risk near the heart, but meeting constraints for specific cardiac sub-structures was challenging and dependent on PTV location. Conclusion: The plans demonstrated robustness against respiratory motion and patient positional uncertainty through a robust evaluation function. The 4D and intra-fractional CBCT were effective in verifying target motion and setup stability. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
22341900
Volume :
42
Issue :
4
Database :
Complementary Index
Journal :
Radiation Oncology Journal
Publication Type :
Academic Journal
Accession number :
182553489
Full Text :
https://doi.org/10.3857/roj.2024.00262