modelling anisotropic inelastic response polymeric scaffolds is a B.Tech project topic for Biotechnology & Biomedical Engineering. It gives students a clear starting point for research, implementation planning, and documentation.
modelling anisotropic inelastic response polymeric scaffolds Project Details
| Abstract |
The project implements and validates a constitutive model that captures the anisotropic, inelastic behavior of electrospun polymer scaffolds used in cardiovascular tissue engineering. These scaffolds act as temporary extracellular matrices; after implantation they experience complex loads and are slowly replaced by the bodyβs own tissue. To predict their shortβterm response under physiological conditions, the anisotropic inelastic model is embedded in a finiteβelement framework. The model is coded as a userβdefined material subroutine in a commercial finiteβelement software package. Verification is done with simple deformation cases, including uniaxial and biaxial tension. A large parallelβplate compression test is also simulated and compared with experimental data. This computational tool helps engineers design scaffolds
with optimized mechanical properties for patientβspecific cardiovascular grafts and heartβvalve replacements. The work provides a clear, stepβbyβstep implementation for modeling fibrous biomaterials under large deformations.
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| Reference Paper |
Modelling the anisotropic inelastic response of polymeric scaffolds for in situ tissue engineering applications |
| Domain |
Biotechnology & Biomedical Engineering |
| Sub-Domain |
Tissue Engineering |
| PDF Download |
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