Literature DB >> 22072078

FEM assisted evaluation of PMMA and Ti6Al4V as materials for cranioplasty resulting mechanical behaviour and the neurocranial protection.

Alexander Tsouknidas1, Stergios Maropoulos, Savvas Savvakis, Nikolaos Michailidis.   

Abstract

Recent advances in Computer Aided Design and Manufacturing techniques (CAD/CAM) have facilitated the rapid and precise construction of customized implants used for craniofacial reconstruction. Data of the patients' trauma, acquired through Computer Topographies (CT), provide sufficient information with regard to the defect contour profile, thus allowing a thorough preoperative evaluation whilst ensuring excellent implant precision. During the selection, however, of a suitable implant material for the specific trauma, the mechanical aspects of the implant have to be considered. This investigation aims to assess the mechanical strength, the shock resistance and the critical deflection of cranial implants manufactured with two commonly used materials, Polymethylmethacrylate (PMMA) and Ti6Al4V. Even though the strength properties of Ti-alloys are far superior to those of PMMA, there are several aspects that may act in advantage of PMMA, e.g., it is known that discontinuities in the elastic modulus of adjoined parts (bone-implant) lead to bone resorption thus loosening the fixation of the implant over time.The implant design and fixation was the same in both cases allowing a direct comparison of the implant behavior for various loads. Finite Element Methods (FEM) assisted procedures were employed, providing a valuable insight to the neurocranial protection granted by these implants.

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Year:  2011        PMID: 22072078     DOI: 10.3233/BME-2011-0663

Source DB:  PubMed          Journal:  Biomed Mater Eng        ISSN: 0959-2989            Impact factor:   1.300


  8 in total

1.  Deformation of a Titanium Calvarial Implant following Trauma: A Case Report.

Authors:  Valerie R De Water; Ellianne J Dos Santos Rubio; Joost W Schouten; Maarten J Koudstaal
Journal:  Craniomaxillofac Trauma Reconstr       Date:  2015-11-05

Review 2.  The Recent Revolution in the Design and Manufacture of Cranial Implants: Modern Advancements and Future Directions.

Authors:  David J Bonda; Sunil Manjila; Warren R Selman; David Dean
Journal:  Neurosurgery       Date:  2015-11       Impact factor: 4.654

3.  Deformation of cranioplasty titanium mesh in a paediatric patient following head trauma.

Authors:  Basel Sharaf; Malke Asaad; Joseph Banuelos; Jesse Meaike
Journal:  BMJ Case Rep       Date:  2019-06-11

Review 4.  Characterisation of Selected Materials in Medical Applications.

Authors:  Kacper Kroczek; Paweł Turek; Damian Mazur; Jacek Szczygielski; Damian Filip; Robert Brodowski; Krzysztof Balawender; Łukasz Przeszłowski; Bogumił Lewandowski; Stanisław Orkisz; Artur Mazur; Grzegorz Budzik; Józef Cebulski; Mariusz Oleksy
Journal:  Polymers (Basel)       Date:  2022-04-09       Impact factor: 4.967

5.  Finite element analysis of 6 large PMMA skull reconstructions: A multi-criteria evaluation approach.

Authors:  Angela Ridwan-Pramana; Petr Marcián; Libor Borák; Nathaniel Narra; Tymour Forouzanfar; Jan Wolff
Journal:  PLoS One       Date:  2017-06-13       Impact factor: 3.240

6.  Considerations in computer-aided design for inlay cranioplasty: technical note.

Authors:  Erik Nout; Maurice Y Mommaerts
Journal:  Oral Maxillofac Surg       Date:  2018-01-08

7.  Surgical planning and finite element analysis for the neurocraneal protection in cranioplasty with PMMA: A case study.

Authors:  Freddy Patricio Moncayo-Matute; Pablo Gerardo Peña-Tapia; Efrén Vázquez-Silva; Paúl Bolívar Torres-Jara; Diana Patricia Moya-Loaiza; Gabriela Abad-Farfán; Andrés Fernando Andrade-Galarza
Journal:  Heliyon       Date:  2022-09-22

8.  Maxillofacial reconstruction with Medpor porous polyethylene implant: a case series study.

Authors:  Mansour Khorasani; Pejman Janbaz; Farshid Rayati
Journal:  J Korean Assoc Oral Maxillofac Surg       Date:  2018-06-26
  8 in total

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