- 영문명
- Evaluation of Scintillation Camera Applications of 3D Printing Phantom
- 발행기관
- 대한방사선과학회(구 대한방사선기술학회)
- 저자명
- 박훈희(Hoon-Hee Park) 이주영(Ju-young Lee) 김지현(Ji-Hyeon Kim)
- 간행물 정보
- 『방사선기술과학』방사선기술과학 제44권 제4호, 343~350쪽, 전체 8쪽
- 주제분류
- 의약학 > 방사선과학
- 파일형태
- 발행일자
- 2021.08.30

국문 초록
영문 초록
3D printing technology is an additive manufacturing technology produced through 3D scanning or modeling method. This technology can be produced in a short time without mold, which has recently been applied in earnest in various fields. In the medical field, 3D printing technology is used in various fields of radiology and radiation therapy, but related research is insufficient in the field of nuclear medicine. In this study, we compare the characteristics of traditional nuclear medicine phantom with 3D printing technology and evaluate its applicability in clinical trials. We manufactured the same size phantom of poly methyl meta acrylate(PMMA) and acrylonitrile butadiene styrene(ABS) based on the aluminum step wedge. We used BrightView XCT(Philips Health Care, Cleveland, USA) SPECT/CT. We acquired 60 min list mode for Aluminum, PMMA and ABS phantoms using Rectangular Flood Phantom (Biodex, New York, USA) 99mTcO4 3 mCi(111 MBq), 6 mCi (222MBq) and 57Co Flood phantom(adq, New Hampshire, USA). For the analysis of acquired images, the region of interest(ROI) were drawn and evaluated step by step for each phantom. Depending on the type of radioisotope and radiation dose, the counts of the ABS phantom was similar to that of the PMMA phantom. And as the step thickness increased, the counts decreased linearly. When comparing the linear attenuation coefficient of Aluminum, PMMA and ABS phantom, the linear attenuation coefficient of the aluminium phantom was higher than that of the others, and the PMMA and ABS phantom had similar the linear attenuation coefficient. Based on ABS phantom manufactured by 3D printing technology, as the thickness of the PMMA phantom increased, the counts and linear attenuation coefficient decreased linearly. It has been confirmed that ABS phantom is applicable in the clinical field of nuclear medicine. If the calibration factor is applied through further research, it is believed that practical application will be possible.
목차
Ⅰ. 서 론
Ⅱ. 대상 및 방법
Ⅲ. 결 과
Ⅳ. 고 찰
Ⅴ. 결 론
REFERENCES
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