Artigo De: orcid, cienciavitae, scopus
Direct MultiSearch optimization of TPMS scaffolds for bone tissue engineering
Computer Methods and Programs in Biomedicine
— 2024
Informações chave
Autores:
Publicado em
21 de novembro de 2024
Resumo
Background: Scaffolds designed for tissue engineering must consider multiple parameters, namely the permeability of the design and the wall shear stress experienced by the cells on the scaffold surface. However, these parameters are not independent from each other, with changes that improve wall shear stress, negatively impacting permeability and vice versa. This study introduces a novel multi-objective optimization framework using Direct MultiSearch (DMS) to design triply periodic minimal surface (TPMS) scaffolds for bone tissue engineering. Method: The optimization algorithm focused on maximizing the permeability of the scaffolds and obtaining a desired value of average wall shear stress (which ranges between the values that promote osteogenic differentiation of 0.1 mPa and 10 mPa). Multiple fluid inlet velocities and target wall shear stress were analyzed. The DMS method successfully generated Pareto fronts for each configuration, enabling the selection of optimized scaffolds based on specific structural requirements. Results: The findings reveal that increasing the target wall shear stress results in a greater number of non- dominated points on the Pareto front, highlighting a more robust optimization process. Additionally, it was also demonstrated that the tested Schwartz diamond scaffolds had a better permeability-wall shear stress relation when compared to Schoen gyroid geometries. Conclusions: Direct MultiSearch was proven as an effective tool to aid in the design of tissue engineering scaffolds. This adaptable optimization framework has potential applications beyond bone tissue engineering, including cartilage tissue differentiation.
Detalhes da publicação
Autores da comunidade :
José Firmino Aguilar Madeira
ist90345
André Paulo Galvão de Castro
ist428105
Paulo Rui Alves Fernandes
ist13157
Versão da publicação
AO - Versão original do autor
Título do contentor da publicação
Computer Methods and Programs in Biomedicine
Volume
257
Domínio Científico (FOS)
mechanical-engineering - Engenharia Mecânica
Palavras-chave
- Permeability
- Wall Shear Stress
- Computational Fluid Dynamics
- Optimization
- Direct MultiSearch
- Bone Tissue Engineering
- Triply Periodic Minimal Surface
Idioma da publicação (código ISO)
eng - Inglês
Identificador alternativo (URI)
https://doi.org/10.1016/j.cmpb.2024.108461
Acesso à publicação:
Acesso Aberto
Entidade financiadora da bolsa/projeto
Fundação para a Ciência e a Tecnologia