SUI Jianfeng, SUN Jiawei, XIE Kai, GAO Liugang, LIN Tao, NI Xinye. Research on Position Verification of Multi-Leaf Collimator (MLC) and Dose Verification Based on Electronic Portal Imaging Device[J]. Chinese Journal of Medical Instrumentation, 2024, 48(2): 150-155. DOI: 10.12455/j.issn.1671-7104.230545
      Citation: SUI Jianfeng, SUN Jiawei, XIE Kai, GAO Liugang, LIN Tao, NI Xinye. Research on Position Verification of Multi-Leaf Collimator (MLC) and Dose Verification Based on Electronic Portal Imaging Device[J]. Chinese Journal of Medical Instrumentation, 2024, 48(2): 150-155. DOI: 10.12455/j.issn.1671-7104.230545

      Research on Position Verification of Multi-Leaf Collimator (MLC) and Dose Verification Based on Electronic Portal Imaging Device

      • Objective A quality control (QC) system based on the electronic portal imaging device (EPID) system was used to realize the Multi-Leaf Collimator (MLC) position verification and dose verification functions on Primus and VenusX accelerators.
        Methods  The MLC positions were calculated by the maximum gradient method of gray values to evaluate the deviation. The dose of images acquired by EPID were reconstructed using the algorithm combining dose calibration and dose calculation. The dose data obtained by EPID and two-dimensional matrix (MapCheck/PTW) were compared with the dose calculated by Pinnacle/TiGRT TPS for \gamma passing rate analysis.
        Results The position error of VenusX MLC was less than 1 mm. The position error of Primus MLC was significantly reduced after being recalibrated under the instructions of EPID. For the dose reconstructed by EPID, the average \gamma passing rates of Primus were 98.86% and 91.39% under the criteria of 3%/3 mm, 10% threshold and 2%/2 mm, 10% threshold, respectively. The average \gamma passing rates of VenusX were 98.49% and 91.11%, respectively.
        Conclusion The EPID-based accelerator quality control system can improve the efficiency of accelerator quality control and reduce the workload of physicists.
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