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dc.contributor.authorHuang, CY
dc.contributor.authorKeall, P
dc.contributor.authorRice, A
dc.contributor.authorColvill, E
dc.contributor.authorNg, JA
dc.contributor.authorBooth, JT
dc.date.accessioned2018-10-17
dc.date.available2018-10-17
dc.date.issued2017-09-01
dc.identifier.citationAustralas Phys Eng Sci Med. 2017 Sep;40(3):643-649.en_AU
dc.identifier.urihttp://hdl.handle.net/2123/18868
dc.description.abstractInter-fraction and intra-fraction motion management methods are increasingly applied clinically and require the development of advanced motion platforms to facilitate testing and quality assurance program development. The aim of this study was to assess the performance of a 5 degrees-of-freedom (DoF) programmable motion platform HexaMotion (ScandiDos, Uppsala, Sweden) towards clinically observed tumor motion range, velocity, acceleration and the accuracy requirements of SABR prescribed in AAPM Task Group 142. Performance specifications for the motion platform were derived from literature regarding the motion characteristics of prostate and lung tumor targets required for real time motion management. The performance of the programmable motion platform was evaluated against (1) maximum range, velocity and acceleration (5 DoF), (2) static position accuracy (5 DoF) and (3) dynamic position accuracy using patient-derived prostate and lung tumor motion traces (3 DoF). Translational motion accuracy was compared against electromagnetic transponder measurements. Rotation was benchmarked with a digital inclinometer. The static accuracy and reproducibility for translation and rotation was <0.1 mm or <0.1°, respectively. The accuracy of reproducing dynamic patient motion was <0.3 mm. The motion platform’s range met the need to reproduce clinically relevant translation and rotation ranges and its accuracy met the TG 142 requirements for SABR. The range, velocity and acceleration of the motion platform are sufficient to reproduce lung and prostate tumor motion for motion management. Programmable motion platforms are valuable tools in the investigation, quality assurance and commissioning of motion management systems in radiation oncology.en_AU
dc.publisherSpringeren_AU
dc.relationNHMRC 1112096en_AU
dc.subjecttumor motionen_AU
dc.subject5 degrees-of-freedom motion platformen_AU
dc.subjectquality assuranceen_AU
dc.subjectmotion managementen_AU
dc.titlePerformance assessment of a programmable five degrees-of-freedom motion platform for quality assurance of motion management techniques in radiotherapy.en_AU
dc.typeArticleen_AU
dc.subject.asrcFoR::029903 - Medical Physicsen_AU
dc.identifier.doi10.1007/s13246-017-0572-0
dc.type.pubtypePost-printen_AU


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