Artur Mateus
Instituto Politécnico Nacional
Network
Latest external collaboration on country level. Dive into details by clicking on the dots.
Publication
Featured researches published by Artur Mateus.
Archive | 2018
Sara Gomes; David Ângelo; Paula Pascoal-Faria; Artur Mateus; Nuno Alves
The temporomandibular joint (TMJ) is an important joint that plays a paramount role during the mandibular movement. TMJ disc is an essential component in the normal TMJ, interposed between the mandibular condyle and temporal fossa with the following functions: it distributes the intra-articular load, stabilizes the joints during translation and decreases the wear of the articular surface. The mechanical behaviour study of this element is therefore essential to provide alternative solutions when its replacement becomes essential. The aim of this study is to present a preliminary three dimensional mechanical model to study the stresses distributions at TMJ disc and to provide an efficient tool as an alternative to experimental preclinical studies. The human mandibular condyle, the TMJ disc and the temporal fossa were considered to build the finite element model; additionally, two types of connections were used between the disc and the bone simulating the retrodiscal tissue and lateral pterygoid muscle: frictionless and bonded. At this stage, the elastic behaviour of materials was taken into account. Results show that the computed von Mises stresses are in accordance with previous studies.The temporomandibular joint (TMJ) is an important joint that plays a paramount role during the mandibular movement. TMJ disc is an essential component in the normal TMJ, interposed between the mandibular condyle and temporal fossa with the following functions: it distributes the intra-articular load, stabilizes the joints during translation and decreases the wear of the articular surface. The mechanical behaviour study of this element is therefore essential to provide alternative solutions when its replacement becomes essential. The aim of this study is to present a preliminary three dimensional mechanical model to study the stresses distributions at TMJ disc and to provide an efficient tool as an alternative to experimental preclinical studies. The human mandibular condyle, the TMJ disc and the temporal fossa were considered to build the finite element model; additionally, two types of connections were used between the disc and the bone simulating the retrodiscal tissue and lateral pterygoid muscle: fric...
Chemical Engineering Research & Design | 2016
Nuno Gomes; Cláudio P. Fonte; Carlos Costa e Sousa; Artur Mateus; Paulo Jorge Da Silva bartolo; Madalena M. Dias; José Carlos B. Lopes; Ricardo J. Santos
Archive | 2013
P Bártolo; Ana de Lemos; António Pereira; Artur Mateus; Carina Ramos; Cyril Santos; Elodie Pinto; Flávio Craveiro; Helena Bártolo; Henrique de Amorim Almeia; Inês Sousa; João Matias; Lina Durão; Miguel Gaspar; Nuno Fernandes Alves; Pedro Carreira; Telma Ferreira; Tiago Marques
Archive | 2011
Paulo Bártolo; Ana de Lemos; Ana Tojeira; António Pereira; Artur Mateus; Ausenda Mendes; Cyril Santos; Dino Freitas; Helena Bártolo; Henrique A. Almeida; Igor dos Reis; Juliana Dias; Marco Domingos; Nuno Alves; Ruben Pereira; Tatiana Patrício; Telma Ferreira
Archive | 2018
Cyril Santos; Artur Mateus; Luis Miguel Santana De Oliveira; Florindo Gaspar
Archive | 2017
Artur Mateus; Vidhura Subash Mahendra; Geoffrey R. Mitchell
Archive | 2017
Artur Mateus; Rui Manuel Ferreira Da Silva; Telmo Machado Silva Moleiro
Archive | 2017
Artur Mateus; Inês Sousa; C. Malça
Archive | 2017
Artur Mateus; Cyril Santos; Geoffrey R. Mitchell; Saeed Bridgemohan; Pedro Carreira
Archive | 2016
Nuno Alves; C. Malça; Artur Mateus; Marco António Coelho Sena