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Computer-Aided Tissue Engineering /

Bibliographic Details
Corporate Author: SpringerLink (Online service)
Other Authors: Liebschner, Michael A.K. (Editor)
Format: eBook
Language:English
Published: Totowa, NJ : Humana Press : Imprint: Humana, 2012.
Edition:1st ed. 2012.
Series:Methods in Molecular Biology, 868
Subjects:
Table of Contents:
  • Computer-Aided Tissue Engineering: Benefiting from the Control Over Scaffold Micro-Architecture
  • Computer-Aided Approach for Customized Cell-Based Defect Reconstruction
  • A Novel Bone Scaffold Design Approach Based on Shape Function and All-Hexahedral Mesh Refinement
  • Rapid Prototyping Composite and Complex Scaffolds with PAM2
  • Scaffold Pore Space Modulation Through Intelligent Design of Dissolvable Micro-Particles
  • Scaffold Informatics and Biomimetic Design: Three-Dimensional Medical Reconstruction
  • The Development of Computer-Aided System for Tissue Scaffolds (CASTS) System for Functionally Graded Tissue-Engineering Scaffolds
  • Computer-Designed Nano-Fibrous Scaffolds
  • A Neural Network Technique for Re-Meshing of Bone Micro-Structure
  • Using the Taguchi Method to Obtain More Finesse to the Biodegradable Fibers
  • Numerical Modeling in the Design and Evaluation of Scaffolds for Orthopaedic Applications
  • Structural and Vascular Analysis of Tissue Engineering Scaffolds, Part 1: : Numerical Fluid Analysis
  • Vascular and Structural Analysis of Tissue Engineering Scaffolds, Part 2: Topology Optimization
  • Modeling of Bioreactor Hydrodynamic Environment and Its Effects on Tissue Growth
  • Recent Advances in 3D Printing of Tissue Engineering Scaffolds
  • Graft-Artery Junctions: Design Optimization and CAD Development
  • Projection Printing of 3-Dimensional Tissue Scaffolds
  • Laser Sintering for the Fabrication of Tissue Engineering Scaffolds
  • Three-Dimensional Microfabrication by Two-Photon Polymerization Technique
  • Direct Fabrication as a Patient Targeted Therapeutic in a Clinical Environment
  • Microstereolithography-Based Computer-Aided Manufacturing for Tissue Engineering.