| Nome: | Descrição: | Tamanho: | Formato: | |
|---|---|---|---|---|
| Being the traumatic brain injury (TBI) a devastating cause of death, it grows day after day on a worldwide basis. So, the effort to prevent, detect and understand it must be pushed forward. In order to improve the technics applied today and achieve a much stronger effort, biomechanical and clinical theories need to be joined, leading to better technical approaches of the problem and to an improved understanding of it. In the light of this acknowledgement, it is proposed the development of a virtual platform using the BioCAD protocol, computer aided design software (CAD) and finite element method (FEM) analysis software. The computational model to achieve has to be adapted to the needs of the user and/or patient and will result in an innovative tool most needed to an improved development of the research and prevention of TBI. As a consequence this area will be pushed to a new level of understanding. | 620.31 KB | Adobe PDF |
Orientador(es)
Resumo(s)
Being the traumatic brain injury (TBI) a devastating cause of death, it grows day after day on a worldwide basis. So, the effort to prevent, detect and understand it must be pushed forward. In order to improve the technics applied today and achieve a much stronger effort, biomechanical and clinical theories need to be joined, leading to better technical approaches of the problem and to an improved understanding of it. In the light of this acknowledgement, it is proposed the development of a virtual platform using the BioCAD protocol, computer aided design software (CAD) and finite element method (FEM) analysis software. The computational model to achieve has to be adapted to the needs of the user and/or patient and will result in an innovative tool most needed to an improved development of the research and prevention of TBI. As a consequence this area will be pushed to a new level of understanding.
Descrição
Perestrelo, Pedro - Scopus ID: 55853707800
Link para o documento - https://scholar.google.com/scholar?q=Human%20Cranial%20Simulation
Link para o documento - https://scholar.google.com/scholar?q=Human%20Cranial%20Simulation
Palavras-chave
Specific patient modeling Traumatic brain injury Anatomical modeling BioCAD Finite element analysis Biomechanics analysis
Contexto Educativo
Citação
Perestrelo, P., Bártolo, P., Torres, M., Noritomi, P., & Silva, J. (2014). Human Cranial Simulation. Journal of Medical Imaging and Health Informatics, 4(1), 101-105. DOI: https://doi.org/10.1166/jmihi.2014.1231.
Editora
American Scientific Publishers
Licença CC
Sem licença CC
