Literature DB >> 32700205

Assessment of dosimetric leaf gap correction factor in Mobius3D commissioning affected by couch top.

Min Cheol Han1, Jihun Kim1, Chae-Seon Hong2, Kyung Hwan Chang1, Su Chul Han1, Kwangwoo Park1, Dong Wook Kim1, Myoung Kyu Park3, Yu Yun Noh3, Jin Sung Kim4.   

Abstract

This study assesses the dosimetric leaf gap (DLG) correction factor in Mobius3D commissioning affected by a couch top platform and calculates the optimal DLG value according to the point dose difference function. DLG optimizations were performed for 3 LINAC machines and a total of 30 patient volumetric modulated arc therapy plans (i.e., 10 plans per each LINAC). Point dose calculations were performed using an automatic dose calculation system in Mobius3D as well as Mobis3D calculation using a Mobius Verification Phantom (MVP)-based quality assurance plan with a carbon fiber couch top. Subsequently, the results were compared with measurement data. The averaged point dose measured for the MVP with a couch top decreased by approximately 2% relative to that without the couch top. The average of the optimal DLG factors increased by 1.153 mm due to the couch top effect for a dose decrease of 2% at the measured point. In the procedure of Mobius beam commissioning, users should adjust the DLG correction factor using a specific phantom (including MVP) with a couch top structure. If the DLG optimization were performed by using MVP automatic dose calculation system, the factor should be increased by approximately 1.2 mm per 2% dose difference considering user's couch top effect.

Entities:  

Keywords:  Couch effect; Dosimetric leaf gap; Mobius; Mobius verification phantom

Mesh:

Year:  2020        PMID: 32700205     DOI: 10.1007/s13246-020-00905-z

Source DB:  PubMed          Journal:  Phys Eng Sci Med        ISSN: 2662-4729


  1 in total

1.  Assessment of log-based fingerprinting system of Mobius3D with Elekta linear accelerators.

Authors:  Yu-Yun Noh; Jihun Kim; Jin Sung Kim; Han-Back Shin; Min Cheol Han; Tae Suk Suh
Journal:  J Appl Clin Med Phys       Date:  2021-11-27       Impact factor: 2.102

  1 in total

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