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Tracking errors in a prototype real-time tumour tracking system
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Tracking errors in a prototype real-time tumour tracking system

Gregory C Sharp, Steve B Jiang, Shinichi Shimizu, Hiroki Shirato 和 Fang-Hsin Chen
Physics in medicine & biology, 卷.49(23), 頁碼.5347-5356
07/12/2004
PMID: 15656282
Web of Science ID: WOS:000226406200011

摘要

Algorithms Animals Computer Systems Equipment Failure Analysis Fluoroscopy Humans Models, Biological Neoplasms - radiotherapy Pattern Recognition, Automated Radiographic Image Interpretation, Computer-Assisted - methods Radiotherapy Dosage Reproducibility of Results Sensitivity and Specificity Time Factors
In motion-compensated radiation therapy, radio-opaque markers can be implanted in or near a tumour and tracked in real-time using fluoroscopic imaging. Tracking these implanted markers gives highly accurate position information, except when tracking fails due to poor or ambiguous imaging conditions. This study investigates methods for automatic detection of tracking errors, and assesses the frequency and impact of tracking errors on treatments using the prototype real-time tumour tracking system. We investigated four indicators for automatic detection of tracking errors, and found that the distance between corresponding rays was most effective. We also found that tracking errors cause a loss of gating efficiency of between 7.6 and 10.2%. The incidence of treatment beam delivery during tracking errors was estimated at between 0.8% and 1.25%.

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