Page 795 - 先天性心脏病的导管术:从婴幼儿期到成人期
P. 795

62 与经导管手术相关的 3D 打印和工程工具                                                   777


                       N, et al. Three-dimensional printed models for surgical planning of complex con-

                       genital heart defects: an international multicentre study. Eur J Cardiothorac Surg.
                       2017;52(6):1139-48.
                   [4]  Shearn AIU, Yeong M, Richard M, Ordoñez MV, Pinchbeck H, Milano EG, et al. Use of
                       3D models in the surgical decision-making process in a case of double-outlet right ven-

                       tricle with multiple ventricular septal defects. Front Pediatr. 2019;7:330.
                   [5]  Pluchinotta FR, Giugno L, Carminati M. Stenting complex aortic coarctation: simula-
                       tion in a 3D printed model. Euro Intervention. 2017;13(4):490.
                   [6]  Pluchinotta FR, Sturla F, Caimi A, Giugno L, Chessa M, Giamberti A, et al. 3-Dimen-

                       sional personalized planning for transcatheter pulmonary valve implantation in a dys-
                       functional right ventricular outflow tract. Int J Cardiol. 2020;309:33-9.
                   [7]  Schievano S, Migliavacca F, Coats L, Khambadkone S, Carminati M, Wilson N, et al.
                       Percutaneous pulmonary valve implantation based on rapid prototyping of right ventric-

                       ular outflow tract and pulmonary trunk from MR data. Radiology. 2007;242(2):490-7.
                   [8]  Schievano S, Taylor AM, Capelli C, Coats L, Walker F, Lurz P, et al. Firstin-man im-
                       plantation of a novel percutaneous valve: a new approach to medical device develop-
                       ment. Euro Intervention. 2010;5(6):745-50.

                   [9]  Knoops PGM, Biglino G, Hughes AD, Parker KH, Xu L, Schievano S, et al. A mock
                       circulatory system incorporating a compliant 3D-printed anatomical model to investi-
                       gate pulmonary hemodynamics. Artif Organs. 2017;41(7):637-46.
                   [10] Witowski J, Darocha S, Kownacki Ł, Pietrasik A, Pietura R, Banaszkiewicz M, et al.

                       Augmented reality and three-dimensional printing in percutaneous interventions on pul-
                       monary arteries. Quant Imaging Med Surg. 2019;9(1):23-9.
                   [11] Olivieri L, Krieger A, Chen MY, Kim P, Kanter JP. 3D heart model guides complex
                       stent angioplasty of pulmonary venous baffle obstruction in a mustard repair of D-TGA.

                       Int J Cardiol. 2014;172(2):e297-8.
                   [12] Anwar S, Singh GK, Miller J, Sharma M, Manning P, Billadello JJ, et al. 3D printing
                       is a transformative technology in congenital heart disease. JACC Basic Transl Sci.
                       2018;3(2):294-312.

                   [13] Anwar S, Rockefeller T, Raptis DA, Woodard PK, Eghtesady P. 3D printing provides
                       a precise approach in the treatment of tetralogy of fallot, pulmonary atresia with major
                       aortopulmonary collateral arteries. Curr Treat Options Cardiovasc Med. 2018;20(1):5.
                   [14] Li P, Fang F, Qiu X, et al. Personalized three-dimensional printing and echoguided pro-
   790   791   792   793   794   795   796   797   798   799   800