Leong K F,Cheah C M. Solid freeform fabrication of three-dimensional scaffolds for engineering replacement tissues and organs[J].Biomaterials,2003,24(13):2363-2378.
[2]
Yeong W Y,Chua C K,Leong K F,ChanfrasekaranM.Rapid Prototyping in Tissue Engineering:Challenges and Potential[J].Trends in Biotechnology,2004,22(2):643-652.
[3]
Seol Y J,JangT Y,Cho D W.Solid freeform fabrication technology applied to tissue engineering with various biomaterials[J].Soft Matter,2011,8(6):1730-1735.
OuKL,HosseinkhaniH.Development of 3D in vitro technology for medical applications[J].Int J Mol Sci,2014,15(10):17938-17962.
[6]
Hespe A M,White R,Hudson J.Invited review applications for 3D printers in veterinary medicine[J].Vet Radio Ultrasound,2014,55(4):347-358.
[7]
Klein G T,Lu Y,Wang M Y.3D printing and neurosurgery-ready for prime time[J].World Neurosurgery,2013,80 (3/4):233-235.
[8]
Bruce L T, Deborah Rooney.Development of a 3D-printed external ventricular drain placement simulator: technical note[J].J Neurosurg 2015,123(4):1070-1076.
[9]
Bruce L T, Anthony C,Wang,et al.A physical simulator for endoscopic endonasal drilling techniques: technical note[J].J Neurosurg,2016,124(3):811-816.
Oishi M,Fukuda M,Yajima N,et al.Interactivepresurgical simulation applying advanced 3D imaging and modeling techniques for skull base and deep tumors[J].J Neurosurg,2013,119(1):94-105.
[13]
Abe M,Tabuchi K,Goto M,et al.Model-based surgical planning and simulation of cranial base surgery[J].Neurol Med Chir(Tokyo),1998,38(11):746-750.
Steiner T,Juvela S,Unterberg A,et al.European Stroke Organization Guidelines for the management of intracranial aneurysms and subarachnoid haemorrhage[J].Cerebrovasc Dis,2013,35(2):93-112.
[17]
Li H,Pan R,Wang H,etal.Clipping versus coiling for ruptured intracranial aneurysms: a systematic review and meta-analysis[J].Stroke,2013,44(1):29-37.
[18]
Lawton M T, Spetzler R F. Surgical management of giant intracranial aneurysms: experience with 171 patients.[J]. Clinical Neurosurgery, 1995, 42:245-266.
[19]
Rinne J,Hernesniemi J,Niskanen M,et al.Management outcome for multiple intracranial aneurysms[J].Neurosurgery,1995,36(1):31-37.
[20]
D’Urso P S,Thompson R G.Cerebrovascularbiomodelling:a technical note[J].Surg Neurol,1999,52(5):490-500.
[21]
Toshihiro M,Keisuke O,Ryutaro K,et al.Development of Three-Dimensional Hollow Elastic Model for Cerebral Aneurysm Clipping Simulation Enabling Rapid and Low Cost Prototyping[J].World Neurosurgery,2015,83(3):351-361.
[22]
Chae K S, Jeon P, Kim K H, et al. Endovascular coil embolization of very small intracranial aneurysms.[J]. Neuroradiology, 2011, 11(5):536-541.
[23]
Kwon B J, Im S H, Park J C, et al.Shaping and navigating methods of microcatheters for endovascular ?treatment of paraclinoid aneurysms[J]. Neurosurgery,2010,67(1):34-40.
[24]
Katsunari N.Microcatheter Shaping for Intracranial Aneurysm Coiling Using the 3-Dimensional Printing Rapid Prototyping Technology: Preliminary Result in the First 10 Consecutive Cases[J]. World Neurosurgery,2015,84(1):178-186.
[25]
Thawani J P, Pisapia J M, Singh N, et al. 3D-Printed Modeling of an Arteriovenous Malformation Including Blood Flow.[J].World Neurosurgery, 2016, 90:675-683.
Guillemot F,Souquet A,Catros S,et al.High-throughput laser printing of cells and biomaterials for tissue engineering[J].Acta Biomater,2010,6(7): 2494-2500.
[32]
Kimura T, Morita A, Nishimura K, et al. Simulation of and training for cerebral aneurysm clipping with 3-dimensional models[J]. Neurosurgery, 2009, 65(4):719-725.
[33]
Wurm G,Tomancok B,Pogady P,et al.Cerebrovascularstereolithographicbiomodeling for aneurysm surgery.Technical note[J].J Neurosurg,2004,100(1):139-145.