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Titlebook: Computer-Aided Tissue Engineering; Michael A.K. Liebschner Book 2012 Springer Science+Business Media, LLC 2012 Advanced drug discovery.Bio

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https://doi.org/10.1007/978-1-4612-3604-7 optimization was performed in two parts. At first, the melt spinning process was optimized considering the drawing that followed and at second step the drawing was optimized. Fine (15 μm) fibers with feasible strength properties (730 MPa) for further processing were produced with the aid of Minitab software.
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The Roots of the Copernican Revolutionting approach are discussed. This chapter also describes indirect three-dimensional printing protocol to overcome convergent demands with a traditional method, without sacrificing the key advantage of material versatility.
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The Evolving Universe and the Origin of Life (TE) applications of this rapid prototyping technology it is an advantage that no toxic solvents or binders are necessary. This chapter reviews the direct and indirect use of LS to fabricate scaffolds for TE from single and multiphase materials.
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Scaffold Informatics and Biomimetic Design: Three-Dimensional Medical Reconstruction, related to data acquisition, enhancement, segmentation, and interpolation are discussed. After this, some available three-dimensional medical reconstruction software tools are presented. Finally, applications of these technologies are illustrated.
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Using the Taguchi Method to Obtain More Finesse to the Biodegradable Fibers, optimization was performed in two parts. At first, the melt spinning process was optimized considering the drawing that followed and at second step the drawing was optimized. Fine (15 μm) fibers with feasible strength properties (730 MPa) for further processing were produced with the aid of Minitab software.
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Recent Advances in 3D Printing of Tissue Engineering Scaffolds,ting approach are discussed. This chapter also describes indirect three-dimensional printing protocol to overcome convergent demands with a traditional method, without sacrificing the key advantage of material versatility.
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Laser Sintering for the Fabrication of Tissue Engineering Scaffolds, (TE) applications of this rapid prototyping technology it is an advantage that no toxic solvents or binders are necessary. This chapter reviews the direct and indirect use of LS to fabricate scaffolds for TE from single and multiphase materials.
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