№ files_lp_4_process_3_102415
Academic engineering report presenting computational modeling and analysis of fluid shear conditions in a suspension bioreactor designed to support differentiation of mesenchymal stem cells into neural stem cells for large-scale biomedical applications.
Year: Not specified
Region / Country: Not specified
Academic Field: Biomedical Engineering
Research Area: Stem Cell Bioprocess Engineering
Keywords: Suspension Bioreactor, Neural Stem Cells, Shear Stress, Differentiation, Mesenchymal Stem Cells
Document Type: Academic Project Final Report
Course: BEE 4530 Computer-Aided Engineering: Applications to Biomedical Processes
Authors: Dustin Steinhagen; Gabrielle Ravelo; Sophia He
Institution: Not specified
Software Used: COMSOL Multiphysics
Main Methods: Fluid flow modeling using Navier–Stokes equations and Darcy flow; sensitivity analysis
Biological Focus: Mesenchymal stem cells and neural stem cell differentiation
Application Context: Bioreactor design for therapeutic-scale stem cell production
Sections Included: Executive Summary; Introduction; Literature Review; Problem Formulation; Governing Equations; Numerical Implementation; Results; Validation; Discussion; Appendix
Target Audience: Students and researchers in biomedical and bioprocess engineering
Price: 8 / 10 USD
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