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The experience of a developing country using an electronic portal imaging device for the verification of patient positioning and dosimetry in radiotherapy for prostate cancer.

Authors :
Farhat, Leila
Fourati, N.
Mnejja, W.
Daoud, J.
Source :
Journal of Radiotherapy in Practice; Sep2018, Vol. 17 Issue 3, p297-301, 5p
Publication Year :
2018

Abstract

Purpose: This is a retrospective study to evaluate the efficacy and safety of routine use of electronic portal imaging device (EPID) in intensity-modulated radiation therapy for localised prostate cancer. Materials and methods: Data from 20 patients with localised prostate cancer treated by radical radiotherapy using intensity-modulated technique in Habib Bourguiba Hospital were analysed to define the action levels for pretreatment planer dose distribution of 100 treatment fields and the set-up errors of 418 portal imaging. Pretreatment planar dose distribution was measured with the EPID. The additional dose from repeated portal imaging was determined with treatment planning system. Results: For all 100 fields, the predicted and the measured planar dose distribution agrees well with mean±standard deviation value for γ <subscript>max</subscript>=2·31±0·57, γ <subscript>avg</subscript>=0·36±0·07 and γ <subscript>%</subscript>≤1=98·94%±0·71%, respectively. For the evaluation of set-up errors, the mean total errors with 1 SD in the lateral, longitudinal and vertical directions were 0·11±0·44 cm; 0·02±0·37 cm and −0·02±0·21 cm, respectively. The imaging additional dose was evaluated as 1 cGy per monitor unit. Conclusion: EPID is a useful tool to verify pretreatment dose distribution and to assess the correct field position without a significant increase in the absorbed dose due to the repetition of portal imaging. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14603969
Volume :
17
Issue :
3
Database :
Complementary Index
Journal :
Journal of Radiotherapy in Practice
Publication Type :
Academic Journal
Accession number :
131593474
Full Text :
https://doi.org/10.1017/S146039691800002X