상세 보기
A feasibility study of using a 3D-printed tumor model scintillator to verify the energy absorbed to a tumor
- Kim, Tae Hoon;
- Lee, Sangmin;
- Kim, Dong Geon;
- Jeong, Jae Young;
- Yang, Hye Jeong;
- ... Kim, Yong Kyun;
- 외 4명
WEB OF SCIENCE
6SCOPUS
7초록
The authors developed a volumetric dosimetry detector system using in-house 3D-printable plastic scintillator resins. Three tumor model scintillators (TMSs) were developed using magnetic resonance images of a tumor. The detector system consisted of a TMS, an optical fiber, a photomultiplier tube, and an electrometer. The background signal, including the Cherenkov lights generated in the optical fiber, was subtracted from the output signal. The system showed 2.1% instability when the TMS was reassembled. The system efficiencies in collecting lights for a given absorbed energy were determined by calibration at a secondary standard dosimetry laboratory (kSSDL) or by calibration using Monte Carlo simulations (ksim). The TMSs were irradiated in a Gamma Knife® Icon™ (Elekta AB, Stockholm, Sweden) following a treatment plan. The energies absorbed to the TMSs were measured and compared with a calculated value. While the measured energy determined with kSSDL was (5.84 ± 3.56) % lower than the calculated value, the energy with ksim was (2.00 ± 0.76) % higher. Although the TMS detector system worked reasonably well in measuring the absorbed energy to a tumor, further improvements in the calibration procedure and system stability are needed for the system to be accepted as a quality assurance tool.
키워드
- 제목
- A feasibility study of using a 3D-printed tumor model scintillator to verify the energy absorbed to a tumor
- 저자
- Kim, Tae Hoon; Lee, Sangmin; Kim, Dong Geon; Jeong, Jae Young; Yang, Hye Jeong; Schaarschmidt, Thomas; Choi, Sang Hyoun; Cho, Gyu-Seok; Kim, Yong Kyun; Chung, Hyun-Tai
- 발행일
- 2021-09
- 유형
- Article in Press
- 권
- 53
- 호
- 9
- 페이지
- 3018 ~ 3025