[1] ICRU. Phantoms and computational models in therapy, diagnosis and protection[R]. Bethesda: International Commission on Radiation Units and Measurements, 1992. [2] White D R, Constantinou C. Anthropomorphic phantom materials[M]//Orton C G. Progress in Medical Radiation Physics. 1st ed. New York: Springer, 1982: 133-193. [3] ICRU.Tissue substitutes in radiation dosimetry and measurement[R]. ICRU, 1989. [4] Alderson S W, Lanzl L H, Rollins M, et al. An instrumented phantom system for analog computation of treatment plans[J]. The American Journal of Rotentgenology, Radium Therapy, and Nuclear Medicine,1962, 87: 185-95. [5] Snyder S F, Traub R J.The livermore phantom history and supplementation[J]. Health Physics, 2010, 98(3):459-465. [6] ICRP.Adult mesh-type reference computational phantoms:ICRP Publication 145[R]. ICRP, 2020. [7] Kristiawan R B,Imaduddin F, Ariawan D, et al. A review on the fused deposition modeling (FDM) 3D printing: filament processing, materials, and printing parameters[J]. Open Engineering, 2021, 11(1):639-649. [8] ICRU.Photon, electron, protonand neutron interaction data for body tissues:ICRU report 46[R]. ICRU,1992. [9] Wojnarowska W, Rębisz S.Accuracy and surface characterization of 3D printed samples fabricated from thermoplastic and photopolymer resin[J]. Physics for Economy,2025,(7):21-39. [10] Zhang Q,Pardo M, Rudich Y. Chemcial composition and toxicity of particles emitted from a consumer-level 3D printer using various materials[J]. Environmental Science & Technology, 2019,53(20):12 054-12 061. [11] 范丽荣,任翀,曹一青.FDM工艺快速成型技术中均匀壁厚截面填充路径的优化[J]. 中国制造业信息化,2011,40(11):39-41. FAN Lirong, REN Chong, CAO Yiqing. Filling path optimization of consistent thickness in FDM rapid prototyping technology[J]. Manufacturing Information Engineering of China, 2011, 40(11): 39-41. [12] 宋晓玲,黄东,魏东.硬质PVC泡沫板材密度与性能的关系[J]. 聚氯乙烯,2021,49(7):10-13. SONG Xiaoling, HUANG Dong, WEI Dong. Relationship between density and properties of foamed rigid PVC sheet[J]. Polyvinyl Chloride, 2021, 49(7): 10-13. [13] 熊志远,张俊彦,毛快.密度和应变率对聚苯乙烯泡沫(EPS)准静态压缩力学行为的影响[J]. 材料科学与工程学报,2007,25(4):606-608. XIONG Zhiyuan, ZHANG Junyan, MAO Kuai. Effects of density and strain rate on quasi-static compressive behavior of EPS[J]. Journal of Materials Science and Engineering, 2007, 25(4): 606-608. [14] 杨慧丽,徐俊,姚占海,等.聚乙烯泡沫塑料物理性能的研究[J]. 高分子材料科学与工程,1997, 13(S1):75-78. YANG Huili, XU Jun, YAO Zhanhai, et al. Studies on physical properties of polyethylene foam[J]. Polymer Materials Science & Engineering,1997,13(S1):75-78. [15] 白丹石.硬质聚氨酯泡沫塑料密度测试[J]. 工厂计量与检测,1997(4):12. BAI Danshi. Density testing of rigid polyurethane foam[J]. Factory Measurement and Testing, 1997(4): 12. [16] Demarco J J, Solberg T D, Smathers J B .A CT-based Monte Carlo simulation tool for dosimetry planning and analysis[J]. Medical Physics, 1998, 25(1):1-11. |