2023•Zenodo (CERN European Organization for Nuclear Research)Open access

Design of Bone Tissue Engineering scaffolds using Triply Periodic Minimal Surfaces (TPMS-Gyroid) and the signed distance field (SDF)

Haja-Sherief N Musthafa

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Abstract

Design of Bone Tissue Engineering scaffolds using Triply Periodic Minimal Surfaces (TPMS) and the signed distance field (SDF) : 1.) PS200 : Pore Size 200 µm and Strut Size 200 µm 2.) PS350 : Pore Size 350 µm and Strut Size 200 µm 3.) PS550 : Pore Size 550 µm and Strut Size 200 µm 4.) PS750 : Pore Size 750 µm and Strut Size 200 µm 5.) PS1000 : Pore Size 1000 µm and Strut Size 200 µm For Both Design and Finite Element Modeling Dataset is given below : N Musthafa, Haja-Sherief. "Design and Finite Element Analysis of Triply Periodic Minimal Surfaces (gyroid) Scaffolds". Zenodo, August 23, 2023. https://doi.org/10.5281/zenodo.8276799 The related scientific article is given below: N. Musthafa, Haja-Sherief et al. 2023. "In-Silico Prediction of Mechanical Behaviour of Uniform Gyroid Scaffolds Affected by Its Design Parameters for Bone Tissue Engineering Applications" Computation 11, no. 9: 181. https://doi.org/10.3390/computation11090181

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Design of Bone Tissue Engineering scaffolds using Triply Periodic Minimal Surfaces (TPMS) and the signed distance field (SDF) : 1.) PS200 : Pore Size 200 µm and Strut Size 200 µm 2.) PS350 : Pore Size 350 µm and Strut Size 200 µm 3.) PS550 : Pore Size 550 µm and Strut Size 200 µm 4.) PS750 : Pore Size 750 µm and Strut Size 200 µm 5.) PS1000 : Pore Size 1000 µm and Strut Size 200 µm For Both Design and Finite Element Modeling Dataset is given below : N Musthafa, Haja-Sherief. "Design and Finite Element Analysis of Triply Periodic Minimal Surfaces (gyroid) Scaffolds". Zenodo, August 23, 2023. https://doi.org/10.5281/zenodo.8276799 The related scientific article is given below: N. Musthafa, Haja-Sherief et al. 2023. "In-Silico Prediction of Mechanical Behaviour of Uniform Gyroid Scaffolds Affected by Its Design Parameters for Bone Tissue Engineering Applications" Computation 11, no. 9: 181. https://doi.org/10.3390/computation11090181

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Available abstract

Design of Bone Tissue Engineering scaffolds using Triply Periodic Minimal Surfaces (TPMS) and the signed distance field (SDF) : 1.) PS200 : Pore Size 200 µm and Strut Size 200 µm 2.) PS350 : Pore Size 350 µm and Strut Size 200 µm 3.) PS550 : Pore Size 550 µm and Strut Size 200 µm 4.) PS750 : Pore Size 750 µm and Strut Size 200 µm 5.) PS1000 : Pore Size 1000 µm and Strut Size 200 µm For Both Design and Finite Element Modeling Dataset is given below : N Musthafa, Haja-Sherief. "Design and Finite Element Analysis of Triply Periodic Minimal Surfaces (gyroid) Scaffolds". Zenodo, August 23, 2023. https://doi.org/10.5281/zenodo.8276799 The related scientific article is given below: N. Musthafa, Haja-Sherief et al. 2023. "In-Silico Prediction of Mechanical Behaviour of Uniform Gyroid Scaffolds Affected by Its Design Parameters for Bone Tissue Engineering Applications" Computation 11, no. 9: 181. https://doi.org/10.3390/computation11090181

Key concepts: Gyroid, Minimal surface, Tissue engineering, Field (mathematics), Biomedical engineering, Materials science, Engineering, Mathematics

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