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Intensity Modulated Radiotherapy (IMRT) Phantom Fabrication Using Fused Deposition Modeling (FDM) 3D Printing Technique

机译:使用熔融沉积建模(FDM)3D打印技术强度调制放射疗法(IMRT)幻像制造

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Design and fabrication of patient-specific radiotherapy phantom is now more accessible and cost-effective using 3D printing technology. This study fabricates a 3D printed radiotherapy phantom for quality assurance of Intensity Modulated Radiotherapy (IMRT). Using an IMRT Thorax anthropomorphic phantom (CIRS) as a substitute for an actual patient, a 3D printed radiotherapy phantom was designed based on a patient computed tomography (CT) scan during treatment planning. Before printing the phantom, the tissue equivalence of Acryloni- trile Butadiene Styrene (ABS) and Polylactic Acid (PLA) polymers used in 3D printing was characterized by quantifying its CT number and relative electron density to water. In the 3D printed phantom fabricated, it was shown that soft tissue and lungs can be simulated using PLA 100% infill (ρ_(e,w)~(130kV) = 0.99) and 20% infill plastic (ρ_(e,w)~(130kV) = 0.20).
机译:使用3D打印技术,患者特异性放射疗法幻像的设计和制造现在更可访问和成本效益。本研究制造了3D印刷放射疗法幻像,用于强度调制放射治疗(IMRT)的质量保证。使用IMRT胸部拟人偶像(CIRS)作为实际患者的替代品,基于治疗计划期间的患者计算机断层扫描(CT)扫描设计了3D印刷放射治疗幻像。在打印幻影之前,通过将其CT数和相对电子密度与水定量,表征在3D印刷中使用的丙烯酰基丁二烯苯乙烯(ABS)和聚乳酸(PLA)聚合物的组织等效。在制造的3D印刷幻影中,显示了使用PLA 100%填充(ρ_(e,w)〜(130kv)= 0.99)和20%填充塑料(ρ_(e,w)〜 (130kv)= 0.20)。

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