Printed titanium implants in UK craniomaxillofacial surgery. Part II: perceived performance (outcomes, logistics, and costs).

3D printing additive manufacture fibular flap, waferless osteotomy, orbital floor repair patient-specific implants/PSI

Journal

The British journal of oral & maxillofacial surgery
ISSN: 1532-1940
Titre abrégé: Br J Oral Maxillofac Surg
Pays: Scotland
ID NLM: 8405235

Informations de publication

Date de publication:
04 2021
Historique:
received: 30 04 2020
accepted: 13 08 2020
pubmed: 8 12 2020
medline: 24 4 2021
entrez: 7 12 2020
Statut: ppublish

Résumé

This second part explores perceptions and understanding of clinical performance, turnaround, and costs for printed titanium implants or plates in common procedures, evaluating both 'in-house' and 'outsourced' CAD-CAM pathways. A cross-sectional study, supported by the British Association of Oral and Maxillofacial Surgeons (BAOMS) and a national trainee-led recruitment team, was conducted over 14 weeks. A total of 132 participants took part (demographic data is reported in Part I). For fibular-flap mandibular reconstruction, most participants (69% - 91%) perceived printed titanium as superior to intraoperatively or preoperatively hand-bent plates for surgical duration, accuracy, dental restorability, and aesthetics. There was less agreement about complications and plate-failure risks. Most perceived printed plates to be superior to traditional wafer-based maxillary osteotomy for surgical duration (61%) and maxillary positioning (60%). For orbital floor repair, most perceived improvements in surgical duration (83%, especially higher-volume operators p=0.009), precision (84%), and ease of placement (69%). Rarely (less than 5%) was any outcome rated inferior to traditional techniques for any procedure. Perceived turnaround times and costs were variable, but the greatest consensus was for two-segment fibular-flap reconstructions and orbital floor repair. Industry estimates were generally consistent between two company representatives, but manufacturing-only costs differed when using in-house (departmental) designers. Costs and turnaround times are questionable barriers since few understand 'real-world' figures. Designing in-house can dramatically alter costs. Improved accuracy and surgical duration are common themes but biomechanical benefits are less-well understood. This study paints a picture of the potentially routine applications and benefits of printed titanium, capacity for uptake, understanding amongst surgeons, and areas for improvement.

Identifiants

pubmed: 33280945
pii: S0266-4356(20)30479-4
doi: 10.1016/j.bjoms.2020.08.088
pii:
doi:

Substances chimiques

Titanium D1JT611TNE

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

320-328

Informations de copyright

Copyright © 2020 The British Association of Oral and Maxillofacial Surgeons. Published by Elsevier Ltd. All rights reserved.

Auteurs

A M C Goodson (AMC)

Faculty of Life Sciences and Education, University of South Wales, Cemetery Road, Glyntaff, Pontypridd, CF37 4BD, United Kingdom. Electronic address: Alex.goodson@southwales.ac.uk.

S Parmar (S)

University Hospital Birmingham NHS Trust, Queen Elizabeth Hospital, Birmingham B15 2TH, United Kingdom. Electronic address: Sat.Parmar@uhb.nhs.uk.

S Ganesh (S)

Faculty of Life Sciences and Education, University of South Wales, Cemetery Road, Glyntaff, Pontypridd, CF37 4BD, United Kingdom. Electronic address: siva.ganesh@southwales.ac.uk.

D Zakai (D)

Health Education England (West Midlands), 213 Hagley Road, Edgbaston, Birmingham, B16 9RG, United Kingdom. Electronic address: dzakai@doctors.org.uk.

A Shafi (A)

NHS Education for Scotland, Westport 102, West Port, Edinburgh, EH3 9DN, United Kingdom. Electronic address: ahadshafi@nhs.net.

C Wicks (C)

Health Education England (South West), Park House, Newbrick Rd, Stoke Gifford, Bristol BS34 8YU, United Kingdom. Electronic address: cewicks@doctors.org.uk.

R O'Connor (R)

Health Education England (East Midlands), Westbridge Place, 1 Westbridge Close, Leicester, LE3 5DR, United Kingdom. Electronic address: rory.oconnor@nuh.nhs.uk.

E Yeung (E)

Health Education England (South London), 4, Stewart House, 32 Russell Square, Bloomsbury, London WC1B 5DN, United Kingdom. Electronic address: elizabethyeung@nhs.net.

F Khalid (F)

Health Education England (North West), 3 Piccadilly Place, Manchester, M1 3BN, United Kingdom. Electronic address: fkhalid1@nhs.net.

A Tahim (A)

Health Education England (North Central and East London, North West London), 4, Stewart House, 32 Russell Square, Bloomsbury, London WC1B 5DN, United Kingdom. Electronic address: arpantahim@doctors.org.uk.

S Gowrishankar (S)

Health Education England (Thames Valley), Chancellor Court, John Smith Drive, Oxford Business Park, Oxford, OX4 2GX, United Kingdom. Electronic address: Siddharth.gowrishankar@ouh.nhs.uk.

A Hills (A)

Health Education England (Kent, Surrey & Sussex), 7 Bermondsey Street, London, SE1 2DD, United Kingdom. Electronic address: alexanderhills1@nhs.net.

E M Williams (EM)

Faculty of Life Sciences and Education, University of South Wales, Cemetery Road, Glyntaff, Pontypridd, CF37 4BD, United Kingdom. Electronic address: mark.williams@southwales.ac.uk.

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Classifications MeSH