[1] Arai K, Iwanaga S, Toda H, et al. Three-dimensional inkjet biofabrication based on designed images[J]. Biofabrication, 2011, 3(3): 034113.
[2] Bernhard JC, Isotani S, Matsugasumi T, et al. Personalized 3D printed model of kidney and tumor anatomy: a useful tool for patient education[J]. World J Urol, 2016, 34(3): 337-345.
[3] Ernoult C, Bouletreau P, Meyer C, et al. Reconstruction assistée par l’impression 3D en chirurgie maxillofaciale[J]. Rev stomatol chir maxillofac chir orale, 2015, 116(2): 95-102.
[4] Meier LM, Meineri M, Qua Hiansen J, et al. Structural and congenital heart disease interventions: the role of three-dimensional printing[J]. Neth Heart J, 2017, 25(2): 65-75.
[5] Wang Z, Qi L, Yuan P, et al. Application of three-dimensional visualization technology in laparoscopic partial nephrectomy of renal tumor: a comparative study[J]. J laparoendosc adv surg tech A, 2017, 27(5): 516-523.
[6] 葛宏伟, 张弋, 李宁忱, 等. 3D打印技术在肾肿瘤手术规划中的应用研究初探[J]. 中华泌尿外科杂志, 2014, 35(9): 659-663.
[7] 魏晓松, 刘征, 庄乾元, 等. 3D打印技术在经皮肾镜取石术术前规划及医患沟通中的应用研究[J]. 中华泌尿外科杂志, 2015; 36(12):881-885.
[8] Kaushik G, Leijten J, Khademhosseini A. Concise review: organ engineering: design, technology, and integration[J]. Stem Cells, 2017, 35(1): 51-60.
[9] Youssef RF, Spradling K, Yoon R, et al. Applications of three-dimensional printing technology in urological practice[J]. BJU Int, 2015, 116(5): 697-702.
[10] Alyaev YG, Bezrukov EA, Fiev DN, et al. Application of 3D printing in urology[J]. Urologiia, 2017 (4): 73-78.
[11] 汤润, 刘林, 时湛, 等.用于经皮肾镜取石术模拟的肾脏3D打印模型研究初探[J].中华泌尿外科杂志, 2015, 36(12): 886-890.
[12] 丘捷文, 李春, 文博, 等. 3D打印技术在经皮肾镜取石术中的应用[J].临床泌尿外科杂志, 2017, 32(7): 524-528.
[13] Huang BW, Xie WF, Yang ZH. Preparation withthe photosensitive resin for 3D printing stereolithography technique and study on its properties[J]. J Func Mater, 2014, 45(24): 24100-24104. |