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Sensitivity of a prompt-gamma slit-camera to detect range shifts for proton treatment verification.

Authors :
Nenoff, Lena
Priegnitz, Marlen
Janssens, Guillaume
Petzoldt, Johannes
Wohlfahrt, Patrick
Trezza, Anna
Smeets, Julien
Pausch, Guntram
Richter, Christian
Source :
Radiotherapy & Oncology. Dec2017, Vol. 125 Issue 3, p534-540. 7p.
Publication Year :
2017

Abstract

Background and purpose A prompt-gamma imaging (PGI) slit-camera was recently applied successfully in clinical proton treatments using pencil beam scanning (PBS) and double scattering (DS). However, its full capability under clinical conditions has still to be systematically evaluated. Here, the performance of the slit-camera is systematically assessed in well-defined error scenarios using realistic treatment deliveries to an anthropomorphic head phantom. Materials and methods The sensitivity and accuracy to detect introduced global and local range shifts with the slit-camera was investigated in PBS and DS irradiations. For PBS, measured PGI information of shifted geometries were compared spot-wise with un-shifted PGI information derived from either a reference measurement or a treatment-plan-based simulation. Furthermore, for DS and PBS the integral PGI signal of the whole field was evaluated. Results Deviations from the treatment plan were detected with an accuracy better than 2 mm in PBS. The PGI simulation accuracy was well below 1 mm. Interfractional comparisons are more affected by measurement noise. The field-integral PGI sum signal allows the detection of global shifts in DS. Conclusions Detection of global and local range shifts under close-to-clinical conditions is possible with the PGI slit-camera. Especially for PBS, high sensitivity and high accuracy in shift detection were found. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
01678140
Volume :
125
Issue :
3
Database :
Academic Search Index
Journal :
Radiotherapy & Oncology
Publication Type :
Academic Journal
Accession number :
126633800
Full Text :
https://doi.org/10.1016/j.radonc.2017.10.013