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Titlebook: Advances in Bionanomaterials; Selected Papers from Stefano Piotto,Federico Rossi,Giuseppe Cattaneo Book 2018 Springer International Publish

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https://doi.org/10.1007/978-1-4842-3775-5nario, it is critical to find additives able to modulate the biodegradation rate of biodegradable polymers, in relationship to the expected lifetime. Since the kinetics of hydrolysis strongly depend on the pH of the hydrolyzing medium, in this work some fillers able to control the pH of water when i
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Build Mobile Apps with SwiftUI and Firebasehat lower Au(III) concentration promotes the formation of anisotropic particles and platelets, while higher concentrations favor a huge production of more monodisperse AuNPs with size in the range of 10–15 nm. In addition, the age of plants was showed to play a role in controlling the shape and size
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Book 2018applications, and many others. The book provides a broad audience of academic and professionals witha comprehensive, timely snapshot of the field of biomaterials. Besides offering a set of innovative theories together with the necessary practical tools for their implementation, it also highlights cu
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Book 2018biochemists’ and bioengineers’ perspectives, covering the study of the basic properties of materials and their interaction with biological systems, the development of new devices for medical purposes such as implantable systems, and new algorithms and methods for modeling the mechanical, physical or
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Languages, Frameworks, Libraries, and Tools,olymeric matrix and drug release rate. Spherical microparticles were obtained, with a maximum particle size of 2 µm and loading efficiencies up to 99%. The microspheres produced by SAA showed a controlled release of the drug over about 72 h.
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https://doi.org/10.1007/978-1-4842-3775-5 conformers of the receptor, which differs from the available crystal structure. We have also considered the presence of conserved residues to drive ligands toward the binding pocket under blind docking analysis.
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https://doi.org/10.1007/978-1-4842-3775-5combines the finite element model of an open-porous scaffold, a numerical optimization routine and a mechanobiological model. This algorithm has been utilized to determine both, the best scaffold geometry and the best load value (to apply on the scaffold) that allow the bone formation to be maximized.
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