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Titlebook: Bioreactor Systems for Tissue Engineering; Cornelia Kasper,Martijn Griensven,Ralf P?rtner Book 2009 Springer-Verlag Berlin Heidelberg 2009

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期刊全稱Bioreactor Systems for Tissue Engineering
影響因子2023Cornelia Kasper,Martijn Griensven,Ralf P?rtner
視頻videohttp://file.papertrans.cn/189/188473/188473.mp4
發(fā)行地址Covers trends in modern biotechnology.All aspects of this interdisciplinary technology, where knowledge, methods and expertise are required from chemistry, biochemistry, microbiology, genetics, chemic
學科分類Advances in Biochemical Engineering/Biotechnology
圖書封面Titlebook: Bioreactor Systems for Tissue Engineering;  Cornelia Kasper,Martijn Griensven,Ralf P?rtner Book 2009 Springer-Verlag Berlin Heidelberg 2009
影響因子The editors of this special volume would first like to thank all authors for their excellent contributions. We would also like to thank Prof. Dr. Thomas Scheper, Dr. Marion Hertel and Ulrike Kreusel for providing the opportunity to compose this volume and Springer for organizational and technical support. Tissue engineering represents one of the major emerging fields in modern b- technology; it combines different subjects ranging from biological and material sciences to engineering and clinical disciplines. The aim of tissue engineering is the development of therapeutic approaches to substitute diseased organs or tissues or improve their function. Therefore, three dimensional biocompatible materials are seeded with cells and cultivated in suitable systems to generate functional tissues. Many different aspects play a role in the formation of 3D tissue structures. In the first place the source of the used cells is of the utmost importance. To prevent tissue rejection or immune response, preferentially autologous cells are now used. In particular, stem cells from different sources are gaining exceptional importance as they can be differentiated into different tissues by using special
Pindex Book 2009
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Bioreactors for Connective Tissue Engineering: Design and Monitoring Innovations,or transplantation. These strategies aim to grow a complex tissue with the appropri ate mechanical integrity necessary for functional load bearing. Monolayer culture systems lack correlation with the in vivo environment and the naturally occur ring cell phenotypes. Part of the development of more re
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Bioreactors for Tissue Engineering of Cartilage, (ACT) involved the transplantation of in vitro expanded chondrocytes to cartilage defects. The second generation involves the seeding of chondrocytes in a three-dimensional scaffold. The technique has several potential advantages such as the ability of arthroscopic implantation, in vitro pre-differ
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Methodology for Optimal In Vitro Cell Expansion in Tissue Engineering,lture conditions is now a fundamental problem that needs to be addressed. Herein, we provide a rational methodology for searching culture conditions that optimize the acquisition of large quantities of cells following a sequential expansion process. In particular, the analysis of both seeding densit
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Bioreactor Studies and Computational Fluid Dynamics,liferation and extra cellular matrix production. However, tissue engineers have looked at bioreactors as black boxes within which TECs are cultured mainly by trial and error, as the complex relationship between the hydrodynamic environment and tissue properties remains elusive, yet is critical to th
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