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Titlebook: Bioengineering in Cell and Tissue Research; Gerhard M. Artmann,Shu Chien Book 2008 Springer-Verlag Berlin Heidelberg 2008 Tissue Engineeri

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发表于 2025-3-21 18:21:56 | 显示全部楼层 |阅读模式
期刊全称Bioengineering in Cell and Tissue Research
影响因子2023Gerhard M. Artmann,Shu Chien
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发行地址Builds the Interface between Science and applications.Reviews the state of the art in the strongly developing science.Includes supplementary material:
图书封面Titlebook: Bioengineering in Cell and Tissue Research;  Gerhard M. Artmann,Shu Chien Book 2008 Springer-Verlag Berlin Heidelberg 2008 Tissue Engineeri
影响因子The idea of publishing this book on “Bioengineering in Cell and Tissue Research” was originated by Gerhard M. Artmann, with the goal of writing about our dreams and making the reader dream with the authors and be fascinated. The book is meant to have life and spirit, and to become a pioneer in technology and sciences, es- cially the life science. The chapters in this book are written by excellent scientists on advanced, frontier technology and address scienti?c questions that need consid- able thinking in terms of engineering. The aims are to provide the readers, including students, faculty, and all scientists working in academia and industry, new infor- tion on bioengineering in cell and tissue research to enhance their understanding and innovation. This book is composed of six sections that cover a broad hierarchy from genes to the universe. These sections are Genes, Genome and Information Network; Cell and Tissue Imaging; Regenerative Medicine and Nanoengineering; Mechanics of Soft Tissues, Fluids and Molecules; Bioengineering in Clinical Applications; and Plant and Microbial Bioengineering.
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Gene Arrays for Gene Discoverytire organismswith wanted properties. This is due to large scale sequencing projects that determined the DNA sequence of the entire human genome and of the genomes of several animal species, microorganisms and pathogens. At the same time microarray technology advanced to a stage that permits measuri
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Optical Coherence Tomography (OCT) – An Emerging Technology for Three-Dimensional Imaging of Biologire optically inhomogeneous due to microscopic variations of the refractive index. The resulting scattering limits resolution and imaging depth. Optical coherence tomography (OCT) is a relatively new approach for obtaining 3-D high resolution imaging of tissue which is successfully used in the diagno
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Ultrasonic Strain Imaging and Reconstructive Elastography for Biological Tissuelogical relevance. In order to obtain non-invasively mechanical properties of tissue, we developed a real-time strain imaging system for clinical applications. The output data of this system allows an inverse approach leading to the spatial distribution of the relative elastic modulus of tissue. The
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Aspects of Embryonic Stem Cell Derived Somatic Cell Therapy of Degenerative Diseasesenerative diseases such as heart and neurological diseases. However, clinical application of ES cell-based therapies will become possible after resolving the current barriers regarding safety aspects, purity and quantity of the cells, immunological rejection and ethical issues. Tissue engineering is
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Tissue Engineering – Combining Cells and Biomaterials into Functional Tissuests. Typically, cells are seeded onto a biomaterial scaffold to be integrated into a specific tissue. Both biological and synthetic biomaterials are currently employed includingmetals, ceramics and polymers. The cell/biomaterial interactions are complex and hardly predictable. Inevitably this require
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Micro and Nano Patterning for Cell and Tissue Engineeringicate and interact with one another and the physical and chemical environment in which they reside. In this chapter, we will focus on the micro and nano technologies that have been used to investigate the regulation of cell functions by micro and nano features in matrix distribution, surface topogra
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