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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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Searching for a Vision into the Futurescaffolds. Thirteen polyhedral configurations are available to select, depending on the biological and mechanical requirements of the target tissue/organ. Input parameters include the individual polyhedral units and overall scaffold block as well as the scaffold strut diameter. Taking advantage of i
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The Muenster Redshift Project (MRSP),ring. These scaffolds should be biocompatible, biodegradable, with appropriate porosity, pore structure, and pore distribution on top of presenting both surface and structural compatibility. This chapter presents the state-of-the-art in tissue engineering and scaffold design using numerical fluid an
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https://doi.org/10.1007/978-0-387-09534-9ring. These scaffolds should be biocompatible, biodegradable, with appropriate porosity, pore structure, and pore distribution, on top of presenting both surface and structural compatibility. Surface compatibility means a chemical, biological, and physical suitability with the host tissue. Structura
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The Roots of the Copernican Revolutionnts based on optimized models. In this chapter, three-dimensional printing technology is described, and several limitations in the current direct printing approach are discussed. This chapter also describes indirect three-dimensional printing protocol to overcome convergent demands with a traditiona
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The Evolving Universe and the Origin of Lifewerful tool in studying progenitor cell behavior and differentiation under biomimetic, three-dimensional (3D) culture conditions. The development of freeform fabrication technology has become a promising tool for the manufacturing of biological scaffolds for tissue regeneration and stem cell enginee
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