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  • 2024년 10월호
    [J Appl Clin Med Phys .] Characterization of a commercial plastic scintillator for electron FLASH dosimetry

    University of Nebraska Medical Center / 오규학, Ying Yan*, Sumin Zhou*

  • 출처
    J Appl Clin Med Phys .
  • 등재일
    2024 Aug
  • 저널이슈번호
    25(8):e14451. doi: 10.1002/acm2.14451. Epub 2024 Jul 1.
  • 내용

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    Abstract
    Purpose: This study investigated the potential of a commercially available plastic scintillator, the Exradin W2, as a real-time dosimeter for ultra-high-dose-rate (UHDR) electron beams. This work aimed to characterize this system's performance under UHDR conditions and addressed limitations inherent to other conventional dosimetry systems.

    Methods and materials: We assessed the W2's performance as a UHDR electron dosimeter using a 16 MeV UHDR electron beam from the FLASH research extension (FLEX) system. Additionally, the vendor provided a beta firmware upgrade to better handle the processing of the high signal generated in the UHDR environment. We evaluated the W2 regarding dose-per-pulse, pulse repetition rate, charge versus distance, and pulse linearity. Absorbed dose measurements were compared against those from a plane-parallel ionization chamber, optically stimulated luminescent dosimeters and radiochromic film.

    Results: We observed that the 1 × 1 mm W2 scintillator with the MAX SD was more suitable for UHDR dosimetry compared to the 1 × 3 mm W2 scintillator, capable of matching film measurements within 2% accuracy for dose-per-pulse up to 3.6 Gy/pulse. The W2 accurately ascertained the inverse square relationship regarding charge versus virtual source distance with R2 of ∼1.00 for all channels. Pulse linearity was accurately measured with the W2, demonstrating a proportional response to the delivered pulse number. There was no discernible impact on the measured charge of the W2 when switching between the available repetition rates of the FLEX system (18-180 pulses/s), solidifying consistent beam output across pulse frequencies.

    Conclusions: This study tested a commercial plastic scintillator detector in a UHDR electron beam, paving the way for its potential use as a real-time, patient-specific dosimetry tool for future FLASH radiotherapy treatments. Further research is warranted to test and improve the signal processing of the W2 dosimetry system to accurately measure in UHDR environments using exceedingly high dose-per-pulse and pulse numbers.

     

     

    Affiliation

    Kyuhak Oh 1, Megan A Hyun 1, Kyle J Gallagher 1, Ying Yan 1, Sumin Zhou 1
    1University of Nebraska Medical Center, Omaha, Nebraska, USA.

  • 키워드
    FLASH research extension (FLEX); dosimetry; electron ultra‐high dose rate (eFLASH); plastic scintillator.
  • 편집위원

    - 플래시 방사선치료의 실용화를 위해서 초고선량률 환경에서 실시간 측정이 가능한 소자의 개발이 요구되고 있다. 본 연구는 시판되는 플라스틱 섬광체(Exradin W2)를 사용하여 플래시 빔의 실시간 측정을 시도한 결과를 보고하고 있다.
    - 플라스틱 섬광체(W2)의 용도는 소조사면 측정용이나, 본 연구에서는 계측기의 업그레이드를 통한 신호 측정범위를 넓혀 높은 선량에서도 측정이 가능하도록 하였다.
    - FLEX 전자가속기를 사용하여 전자빔 펄스빔에 대한 실험적 연구결과 펄스 수에 대한 선형성이 우수함을 확인하였고 펄스당 최대 3.6 Gy까지 정확하게 측정할 수 있음을 확인하였다.
    - 본 연구는 현재 적절한 검출기나 방법이 개발되지 않은 플래시 방사선의 실시간 모니터링을 플라스틱 섬광체를 써서 실험적으로 가능성을 제시한 점에서 흥미롭다.

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