Literature DB >> 19553851

Accuracy and predictability in use of AO three-dimensionally preformed titanium mesh plates for posttraumatic orbital reconstruction: a pilot study.

Paolo Scolozzi1, Armen Momjian, Joris Heuberger, Elene Andersen, Martin Broome, Andrej Terzic, Bertrand Jaques.   

Abstract

The aim of this study was to prospectively evaluate the accuracy and predictability of new three-dimensionally preformed AO titanium mesh plates for posttraumatic orbital wall reconstruction.We analyzed the preoperative and postoperative clinical and radiologic data of 10 patients with isolated blow-out orbital fractures. Fracture locations were as follows: floor (N = 7; 70%), medial wall (N = 1; 1%), and floor/medial wall (N = 2; 2%). The floor fractures were exposed by a standard transconjunctival approach, whereas a combined transcaruncular transconjunctival approach was used in patients with medial wall fractures. A three-dimensional preformed AO titanium mesh plate (0.4 mm in thickness) was selected according to the size of the defect previously measured on the preoperative computed tomographic (CT) scan examination and fixed at the inferior orbital rim with 1 or 2 screws. The accuracy of plate positioning of the reconstructed orbit was assessed on the postoperative CT scan. Coronal CT scan slices were used to measure bony orbital volume using OsiriX Medical Image software. Reconstructed versus uninjured orbital volume were statistically correlated.Nine patients (90%) had a successful treatment outcome without complications. One patient (10%) developed a mechanical limitation of upward gaze with a resulting handicapping diplopia requiring hardware removal. Postoperative orbital CT scan showed an anatomic three-dimensional placement of the orbital mesh plates in all of the patients. Volume data of the reconstructed orbit fitted that of the contralateral uninjured orbit with accuracy to within 2.5 cm(3). There was no significant difference in volume between the reconstructed and uninjured orbits.This preliminary study has demonstrated that three-dimensionally preformed AO titanium mesh plates for posttraumatic orbital wall reconstruction results in (1) a high rate of success with an acceptable rate of major clinical complications (10%) and (2) an anatomic restoration of the bony orbital contour and volume that closely approximates that of the contralateral uninjured orbit.

Entities:  

Mesh:

Substances:

Year:  2009        PMID: 19553851     DOI: 10.1097/SCS.0b013e3181abb44b

Source DB:  PubMed          Journal:  J Craniofac Surg        ISSN: 1049-2275            Impact factor:   1.046


  10 in total

1.  Titanium preformed implants in orbital floor reconstruction - case presentation, review of literature.

Authors:  Bogdan Banica; Patricia Ene; Daniela Vranceanu; Razvan Ene
Journal:  Maedica (Bucur)       Date:  2013-03

2.  Three-dimensional pre-bent titanium implant for concomitant orbital floor and medial wall fractures in an East asian population.

Authors:  Kyung Min Lee; Ji Ung Park; Sung Tack Kwon; Suk Wha Kim; Eui Cheol Jeong
Journal:  Arch Plast Surg       Date:  2014-09-15

3.  Generation of customized orbital implant templates using 3-dimensional printing for orbital wall reconstruction.

Authors:  Sunah Kang; Jaeyoung Kwon; Chan Joo Ahn; Bita Esmaeli; Guk Bae Kim; Namkug Kim; Ho-Seok Sa
Journal:  Eye (Lond)       Date:  2018-08-28       Impact factor: 3.775

4.  "6 Anatomical Landmarks" Technique for Satisfactory Free-Hand Orbital Reconstruction With Standard Preformed Titanium Mesh.

Authors:  Gabriele Canzi; Federica Corradi; Giorgio Novelli; Alberto Bozzetti; Davide Sozzi
Journal:  Craniomaxillofac Trauma Reconstr       Date:  2021-04-06

5.  Combined orbital floor and medial wall fractures involving the inferomedial strut: repair technique and case series using preshaped porous polyethylene/titanium implants.

Authors:  Raymond I Cho; Brett W Davies
Journal:  Craniomaxillofac Trauma Reconstr       Date:  2013-05-31

6.  Long-term follow-up of blowout fractures of the orbital floor reconstructed with a polyglactin 910/PDS implant.

Authors:  F Blake; M Blessmann; R Smeets; R Friedrich; R Schmelzle; M Heiland; W Eichhorn
Journal:  Eur J Trauma Emerg Surg       Date:  2011-02-22       Impact factor: 3.693

7.  Biomaterials for orbital fractures repair.

Authors:  M Totir; R Ciuluvica; I Dinu; I Careba; S Gradinaru
Journal:  J Med Life       Date:  2014

Review 8.  Virtual Surgical Planning for Orbital Reconstruction.

Authors:  Srinivas M Susarla; Katherine Duncan; Nicholas R Mahoney; Shannath L Merbs; Michael P Grant
Journal:  Middle East Afr J Ophthalmol       Date:  2015 Oct-Dec

9.  Combined Orbital Fractures: Surgical Strategy of Sequential Repair.

Authors:  Su Won Hur; Sung Eun Kim; Kyu Jin Chung; Jun Ho Lee; Tae Gon Kim; Yong-Ha Kim
Journal:  Arch Plast Surg       Date:  2015-07-14

10.  Biomaterials for orbital fractures repair.

Authors:  M Totir; R Ciuluvica; I Dinu; I Careba; S Gradinaru
Journal:  J Med Life       Date:  2015 Jan-Mar
  10 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.