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Journal Article

An open-source motion platform that replicates time synchronised internal and external patient motion for real-time image-guided radiotherapy

Alicja Kaczynska; Chris Kuban; Abbas Zahr; William Nixon; Paul Keall; Freeman Jin; Ann Yan; Daniel Mason; Maegan Stewart; Julia Johnson; Jonathan Hindmarsh; Chandrima Sengupta
Physical and Engineering Sciences in Medicine · Vol. 49, Issue 2 · pp. 931-944 · 2026

Abstract

Real-time Image-guided Radiotherapy (IGRT) technologies aim to track intra-fractional tumour motion during delivery of high radiation doses to tumours. For the development and safe implementation of real-time IGRT technologies into the clinic, there is a need for robust and repeatable quality assurance (QA) devices. Motivated by this need, this work presents the development and characterisation of a novel time-synchronised motion platform designed for QA purposes of real-time IGRT technologies that perform combined internal and external patient motion monitoring. The Int ernal- E xternal R obotic Act uator (IntERAct) QA device was developed to integrate a 6-degree-of-freedom (6DoF) robotic arm with a 1-degree-of-freedom (1DoF) motion actuator, which replicate 6DoF internal tumour and 1DoF external surface movements, respectively. The IntERAct device was validated by performing tests which replicated patient-measured lung and liver motion traces on the 6DoF and 1DoF platforms. The device synchronised the internal and external motions to within 0.1 s with under two-millimetre geometric accuracy. The full details of the IntERAct device have been compiled into an open-source repository on GitHub for the medical physics community to use: https://github.com/Image-X-Institute/IntERAct .

Bibliographic Information

JournalPhysical and Engineering Sciences in Medicine
PublisherSpringer
Publication Date2026-06-01
Publication Year2026
Volume49
Issue2
Pages931-944
Document TypeJournal Article
Print ISSN2662-4729
eISSN2662-4737
DOI10.1007/s13246-026-01710-w

Access Information

NARA Access Coverage2001-01-01~Current
Journal Homepagehttps://www.springer.com/journal/13246
Publisher PageOpen Publisher Page
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