3D printing in hand surgery

Hand Surgery and Rehabilitation - Tập 38 - Trang 338-347 - 2019
V. Matter-Parrat1, P. Liverneaux1
1Department of Hand Surgery, SOS hand, University Hospital of Strasbourg, FMTS, University of Strasbourg, Icube CNRS 7357, 1, avenue Molière, 67000 Strasbourg, France

Tài liệu tham khảo

Soubeyrand, 2009, Cadaveric assessment of a new guidewire insertion device for volar percutaneous fixation of nondisplaced scaphoid fracture, Injury, 40, 645, 10.1016/j.injury.2009.01.131 Gupta, 2008, Total wrist arthroplasty, Am J Orthop (Belle Mead NJ), 37, 12 Anger, 2019, Results of wrist hemiarthroplasty for comminuted distal radius fractures in independent elderly people: a retrospective study on eleven patients, Hand Surg Rehabil, 38, 150, 10.1016/j.hansur.2018.11.004 Kwon, 2018, Morphometric variations in the volar aspect of the distal radius, Clin Orthop Surg, 10, 462, 10.4055/cios.2018.10.4.462 Hariri, 2013, Massive wrist prosthesis for giant cell tumour of the distal radius: a case report with a 3-year follow-up, Orthop Traumatol Surg Res, 99, 635, 10.1016/j.otsr.2013.04.001 Gobbato, 2019, Setting up your own home 3D printing “plant”, 195 Leblanc, 1972 Mankovich, 1990, The display of three-dimensional anatomy with stereolithographic models, J Digit Imaging, 3, 200, 10.1007/BF03167610 Furman, 2006 Bohl, 2019, Biomechanical testing of a 3D-printed L5 vertebral body model, Cureus, 11, e3893 Ledgard, 2018, Midcarpal arthrodesis biomechanics: memory staples versus cannulated screws, J Hand Surg Asian Pac, 23, 474, 10.1142/S2424835518500455 Cidonio, 2019, The cell in the ink: improving biofabrication by printing stem cells for skeletal regenerative medicine, Biomaterials, 209, 10, 10.1016/j.biomaterials.2019.04.009 Hann, 2019, Recent advances in 3D printing: vascular network for tissue and organ regeneration, Transl Res, 211, 46, 10.1016/j.trsl.2019.04.002 Charbe, 2019, Emergence of three-dimensional printed cardiac tissue: opportunities and challenges in cardiovascular diseases, Curr Cardiol Rev, 15, 188, 10.2174/1573403X15666190112154710 AbouHashem, 2015, The application of 3D printing in anatomy education, Med Educ Online, 20, 29847, 10.3402/meo.v20.29847 Garas, 2018, 3D-Printed specimens as a valuable tool in anatomy education: a pilot study, Ann Anat, 219, 57, 10.1016/j.aanat.2018.05.006 Chen, 2017, The role of three-dimensional printed models of skull in anatomy education: a randomized controlled trail, Sci Rep, 7, 575, 10.1038/s41598-017-00647-1 Wu, 2018, The addition of 3D printed models to enhance the teaching and learning of bone spatial anatomy and fractures for undergraduate students: a randomized controlled study, Ann Transl Med, 6, 403, 10.21037/atm.2018.09.59 Lazarus, 2017, Design and evaluation of a new synthetic wrist procedural simulator (Wristsim®) for training of distal radius fracture fixation by volar plating, Hand Surg Rehabil, 36, 275, 10.1016/j.hansur.2017.03.002 Naroura, 2018, Teaching of distal radius shortening osteotomy: three-dimensional procedural simulator versus bone procedural simulator, J Hand Surg Eur Vol, 43, 961, 10.1177/1753193417754179 Jew, 2019, The use of three-dimensional printing for complex scaphoid fractures, J Hand Surg [Am], 44, 165e1, 10.1016/j.jhsa.2018.10.018 Bizzotto, 2015, 3D Printed replica of articular fractures for surgical planning and patient consent: a two years multi-centric experience, 3D Print Med, 2, 2, 10.1186/s41205-016-0006-8 Bizzotto, 2016, 3D Printed models of distal radius fractures, Injury, 47, 976, 10.1016/j.injury.2016.01.013 Chen, 2017, Treatment of die-punch fractures with 3D printing technology, J Invest Surg, 31, 385, 10.1080/08941939.2017.1339150 D’Alessio, 2019, 3D printing for commercial orthopedic applications: advances and challenges, 65 Zolotov, 2004, Finger joint fusion with the aid of an aluminum template, Tech Hand Up Extrem Surg, 8, 193, 10.1097/01.bth.0000134707.51560.cc Osagie, 2017, Advances in 3D modeling: preoperative templating for revision wrist surgery, Hand (N Y), 12, NP68, 10.1177/1558944716681973 Taylor, 2017, Surgeon-based 3D printing for microvascular bone flaps, J Reconstr Microsurg, 33, 441, 10.1055/s-0037-1600133 Houdek, 2016, Technique for 3-dimesional (3D) modeling of osteoarticular medial femoral condyle vascularized grafting to replace the proximal pole of unsalvageable scaphoid nonunions, Tech Hand Up Extrem Surg, 20, 117, 10.1097/BTH.0000000000000129 Yin, 2017, 3-dimensional printing-assisted percutaneous fixation for acute scaphoid fracture: 1-shot procedure, J Hand Surg [Am], 42, 301, 10.1016/j.jhsa.2017.01.017 Schweizer, 2016, Computer-assisted 3-dimensional reconstructions of scaphoid fractures and nonunions with and without the use of patient-specific guides: early clinical outcomes and postoperative assessments of reconstruction accuracy, J Hand Surg [Am], 41, 59, 10.1016/j.jhsa.2015.10.009 Byrne, 2017, Corrective osteotomy for malunited diaphyseal forearm fractures using preoperative 3-dimensional planning and patient-specific surgical guides and implants, J Hand Surg [Am], 42, 836, 10.1016/j.jhsa.2017.06.003 Hamada, 2017, Corrective osteotomy of malunited diaphyseal fractures of the forearm simplified using 3-dimensional CT Data: proposal of our simple strategy through case presentation, Hand (N Y), 12, NP95, 10.1177/1558944717692087 Roner, 2017, Accuracy and early clinical outcome of 3-dimensional planned and guided single-cut osteotomies of malunited forearm bones, J Hand Surg [Am], 42, 1031e1, 10.1016/j.jhsa.2017.07.002 Kunz, 2013, Image-guided distal radius osteotomy using patient-specific instrument guides, J Hand Surg [Am], 38, 1618, 10.1016/j.jhsa.2013.05.018 Dobbe, 2014, Patient-specific distal radius locking plate for fixation and accurate 3D positioning in corrective osteotomy, Strategies Trauma Limb Reconstr, 9, 179, 10.1007/s11751-014-0203-1 Honigmann, 2016, A simple 3-dimensional printed aid for a corrective palmar opening wedge osteotomy of the distal radius, J Hand Surg [Am], 41, 464, 10.1016/j.jhsa.2015.12.022 Michielsen, 2018, Corrective osteotomy of distal radius malunions using three-dimensional computer simulation and patient-specific guides to achieve anatomic reduction, Eur J Orthop Surg Traumatol, 28, 1531, 10.1007/s00590-018-2265-0 Roner, 2018, Correction to: improving accuracy of opening-wedge osteotomies of distal radius using a patient-specific ramp-guide technique, BMC Musculoskelet Disord, 19, 403, 10.1186/s12891-018-2315-0 Schweizer, 2013, Three-dimensional correction of distal radius intra-articular malunions using patient-specific drill guides, J Hand Surg [Am], 38, 2339, 10.1016/j.jhsa.2013.09.023 de Muinck Keizer, 2017, Three-dimensional virtual planning of corrective osteotomies of distal radius malunions: a systematic review and meta-analysis, Strategies Trauma Limb Reconstr, 12, 77, 10.1007/s11751-017-0284-8 Kim, 2017, Biomechanical properties of 3-dimensional printed volar locking distal radius plate: comparison with conventional volar locking plate, J Hand Surg [Am], 42, 747, 10.1016/j.jhsa.2017.05.009 Lu, 2018, Uncemented three-dimensional-printed prosthetic replacement for giant cell tumor of distal radius: a new design of prosthesis and surgical techniques, Cancer Manag Res, 10, 265, 10.2147/CMAR.S146434 Honigmann, 2018, A three-dimensional printed patient-specific scaphoid replacement: a cadaveric study, J Hand Surg Eur Vol, 43, 407, 10.1177/1753193418757634 Xie, 2018, 3D printing lunate prosthesis for stage IIIc Kienböck's disease: a case report, Arch Orthop Trauma Surg, 138, 447, 10.1007/s00402-017-2854-0 Beltrami, 2018, Custom 3D-printed finger proximal phalanx as salvage of limb function after aggressive recurrence of giant cell tumour, BMJ Case Rep, 2018 Abreu de Souza, 2017, Proposal of custom made wrist orthoses based on 3D modelling and 3D printing, Conf Proc IEEE Eng Med Biol Soc, 3789 Chen, 2017, Application of 3D-printed and patient-specific cast for the treatment of distal radius fractures: initial experience, 3D Print Med, 3, 11, 10.1186/s41205-017-0019-y Graham, 2018, Conventional vs 3-Dimensional Printed Cast Wear Comfort, Hand (N Y) Nam, 2018, The application of three-dimensional printed finger splints for post hand burn patients: a case series investigation, Ann Rehabil Med, 42, 634, 10.5535/arm.2018.42.4.634 Yoshikawa, 2015, Rehand: realistic electric prosthetic hand created with a 3D printer, Conf Proc IEEE Eng Med Biol Soc, 2470 Gretsch, 2016, Development of novel 3D-printed robotic prosthetic for transradial amputees, Prosthet Orthot Int, 40, 400, 10.1177/0309364615579317 Burn, 2016, Three-dimensional printing of prosthetic hands for children, J Hand Surg [Am], 41, 103, 10.1016/j.jhsa.2016.02.008 Zuniga, 2015, Cyborg beast: a low-cost 3D-printed prosthetic hand for children with upper-limb differences, BMC Res Notes, 8, 10, 10.1186/s13104-015-0971-9