Creating patient-specific anatomical models for 3D printing and AR/VR: a supplement for the 2018 Radiological Society of North America (RSNA) hands-on course

Nicole Wake1, Amy Alexander2, Andy Christensen3, Peter Liacouras4, Maureen Schickel5, Todd Pietila5, Jane M. Matsumoto2
1Department of Radiology, Montefiore Medical Center, Albert Einstein College of Medicine, 111 East 210th Street, Bronx, NY, 10467, USA
2Department of Radiology, Mayo Clinic, Rochester, MN, USA
3Department of Radiology, The Ottawa Hospital, Ottawa, Canada
43D Medical Applications Center, Walter Reed National Military Medical Center, Bethesda, MD, USA
5Materialise USA, Plymouth, MI, USA

Tóm tắt

Từ khóa


Tài liệu tham khảo

Lipson HKM. Fabricated: the new world of 3D printing. Indianapolis: Wiley; 2013.

Mitsouras D, Liacouras P, Imanzadeh A, et al. Medical 3D printing for the radiologist. Radiographics. 2015;35:1965–88.

Ventola CL. Medical applications for 3D printing: current and projected uses. P T. 2014;39:704–11.

Randall DMP, Dev Bardhan K, Spencer P, Gillott R, de Noronha R, Fenner JW. The oculus rift virtual colonoscopy: introducing a new technology and initial impressions. J Biomed Graph Comp. 2016;6:34–42.

Sutherland J, Belec J, Sheikh A, et al. Applying modern virtual and augmented reality technologies to medical images and models. J Digit Imaging. 2019;32:38–53.

Giannopoulos AA, Chepelev L, Sheikh A, et al. 3D printed ventricular septal defect patch: a primer for the 2015 Radiological Society of North America (RSNA) hands-on course in 3D printing. 3D Print Med. 2015;1:3.

Chepelev L, Hodgdon T, Gupta A, Wang A, Torres C, Krishna S, Akyuz A, Mitsouras D, Sheikh A. Medical 3D printing for vascular interventions and surgical oncology: a primer for the 2016 radiological society of North America (RSNA) hands-on course in 3D printing. 3D Print Med. 2016;2:5.

Chepelev L, Souza C, Althobaity W, et al. Preoperative planning and tracheal stent design in thoracic surgery: a primer for the 2017 Radiological Society of North America (RSNA) hands-on course in 3D printing. 3D Print Med. 2017;3:14.

Di Prima M, Coburn J, Hwang D, et al. 3D Print Med. 2016;2:1. https://doi.org/10.1186/s41205-016-0005-9

Materialise Mimics inPrint: Regulatory Information. https://www.materialise.com/en/medical/software/materialise-mimics-inprint/regulatory-information . Accessed 18 April 2019.

FDA’s Role in 3D Printing. https://www.fdagov/medical-devices/3d-printing-medical-devices/fdas-role-3d-printing 2017; Accessed October 28, 2019.

Toth BA, Ellis DS, Stewart WB. Computer-designed prostheses for Orbitocranial reconstruction. Plast Reconstr Surg. 1988;81:315–22.

Scholz M, Eufinger H, Wehmoller M, et al. CAD/CAM (computer-aided design/computer-aided manufacturing) titanium implants for cranial and craniofacial defect reconstruction. Zentralbl Neurochir. 1997;58:105–10.

Klein HM, Schneider W, Alzen G, et al. Pediatric craniofacial surgery: comparison of milling and stereolithography for 3D model manufacturing. Pediatr Radiol. 1992;22:458–60.

Andrews BT, Thurston TE, Tanna N, et al. A multicenter experience with image-guided surgical navigation: broadening clinical indications in complex Craniomaxillofacial surgery. J Craniofac Surg. 2015;26:1136–9.

Bolzoni Villaret A, Battaglia P, Tschabitscher M, et al. A 3-dimensional transnasal endoscopic journey through the paranasal sinuses and adjacent skull base: a practical and surgery-oriented perspective. Neurosurgery. 2014;10(Suppl 1):116–20 discussion 20.

Dehdashti AR, Ganna A, Witterick I, Gentili F. Expanded endoscopic endonasal approach for anterior cranial base and suprasellar lesions: indications and limitations. Neurosurgery. 2009;64:677–87 discussion 87-9.

Levine JP, Patel A, Saadeh PB, Hirsch DL. Computer-aided design and manufacturing in craniomaxillofacial surgery: the new state of the art. J Craniofac Surg. 2012;23:288–93.

Levine JP, Bae JS, Soares M, et al. Jaw in a day: total maxillofacial reconstruction using digital technology. Plast Reconstr Surg. 2013;131:1386–91.

Hirsch DL, Garfein ES, Christensen AM, et al. Use of computer-aided design and computer-aided manufacturing to produce orthognathically ideal surgical outcomes: a paradigm shift in head and neck reconstruction. J Oral Maxillofac Surg. 2009;67:2115–22.

Potamianos P, Amis AA, Forester AJ, et al. Rapid prototyping for orthopaedic surgery. Proc Inst Mech Eng H. 1998;212:383–93.

Shuang F, Hu W, Shao Y, et al. Treatment of Intercondylar humeral fractures with 3D-printed Osteosynthesis plates. Medicine (Baltimore). 2016;95:e2461.

Kim D, Lim JY, Shim KW, et al. Sacral reconstruction with a 3D-printed implant after Hemisacrectomy in a patient with sacral osteosarcoma: 1-year follow-up result. Yonsei Med J. 2017;58:453–7.

Hamid KS, Parekh SG, Adams SB. Salvage of severe foot and ankle trauma with a 3D printed scaffold. Foot Ankle Int. 2016;37:433–9.

Chana-Rodriguez F, Mananes RP, Rojo-Manaute J, et al. 3D surgical printing and pre contoured plates for acetabular fractures. Injury. 2016;47:2507–11.

Ma L, Zhou Y, Zhu Y, et al. 3D-printed guiding templates for improved osteosarcoma resection. Sci Rep. 2016;6:23335.

Silberstein JL, Maddox MM, Dorsey P, et al. Physical models of renal malignancies using standard cross-sectional imaging and 3-dimensional printers: a pilot study. Urology. 2014;84:268–72.

Bernhard JC, Isotani S, Matsugasumi T, et al. Personalized 3D printed model of kidney and tumor anatomy: a useful tool for patient education. World J Urol. 2016;34:337–45.

Wake N, Chandarana H, Huang WC, et al. Application of anatomically accurate, patient-specific 3D printed models from MRI data in urological oncology. Clin Radiol. 2016;71:610–4.

Wake N, Rude T, Kang SK, et al. 3D printed renal cancer models derived from MRI data: application in pre-surgical planning. Abdom Radiol (NY). 2017;42:1501–9.

Chepelev L, Wake N, AW RJ, Gupta A, Arribas E, Santiago L, Ballard D, Wang KC, Weadock W, Ionita CN, Mitsouras D, Morris J, Matsumoto J, Christensen A, Liacouras P, Rybicki FJ, Sheikh A, RSNA Special Interest Group for 3D Printing. Radiological Society of North America (RSNA) 3D Printing Special Interest Group (SIG): guidelines for medical 3D printing and appropriateness for clinical scenarios. 3D Print Med. 2018;4:1–38.

Mottart X, Slagmolen P. 3D Lab in a Hospital Environment: 3 key reasons why a professional desktop printer is a great fit. Materialise NV White Paper. 2017;1:1–19.

Li B, Chen B, Zhang Y, et al. Comparative use of the computer-aided angiography and rapid prototyping technology versus conventional imaging in the management of the tile C pelvic fractures. Int Orthop. 2016;40:161–6.

Hung CC, Li YT, Chou YC, et al. Conventional plate fixation method versus pre-operative virtual simulation and three-dimensional printing-assisted contoured plate fixation method in the treatment of anterior pelvic ring fracture. Int Orthop. 2019;43:425–31.

Li YT, Hung CC, Chou YC, et al. Surgical treatment for posterior dislocation of hip combined with Acetabular fractures using preoperative virtual simulation and three-dimensional printing model-assisted Precontoured plate fixation techniques. Biomed Res Int. 2019;2019:3971571.

Neville BWDD, Allen CM, Bouquot JE. Oral and Maxillofacial Pathology; 1995.

Chutchurru MS, Brusca MI, Palavecino R. Ameloblastoma: reconstruction using titanium plates adapted using Stereolithographic models. Ann Maxillofac Surg. 2018;8:337–41.

Dupret-Bories A, Vergez S, Meresse T, et al. Contribution of 3D printing to mandibular reconstruction after cancer. Eur Ann Otorhinolaryngol Head Neck Dis. 2018;135:133–6.

Chen N, Zhu K, Wang C, Sun X. 3D printing technique for guiding complicated cardiovascular surgery. J Thorac Dis. 2017;9:E945–E6.

Sivarajan G, Huang WC. Current practice patterns in the surgical management of renal cancer in the United States. Urol Clin North Am. 2012;39:149–60.

Ellison JS, Montgomery JS, Hafez KS, et al. Association of RENAL nephrometry score with outcomes of minimally invasive partial nephrectomy. Int J Urol. 2013;20:564–70.

Simhan J, Smaldone MC, Tsai KJ, et al. Objective measures of renal mass anatomic complexity predict rates of major complications following partial nephrectomy. Eur Urol. 2011;60:724–30.

Wake N, Rosenkrantz AB, Huang R, et al. Patient-specific 3D printed and augmented reality kidney and prostate cancer models: impact on patient education. 3D Print Med. 2019;5:4.

Wake N, Bjurlin MA, Rostami P, et al. Three-dimensional printing and augmented reality: enhanced precision for robotic assisted partial nephrectomy. Urology. 2018;116:227–8.