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Titlebook: Biomaterials for Tissue Engineering Applications; A Review of the Past Jason A. Burdick,Robert L. Mauck Book 2011 Springer-Verlag/Wien 2011

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發(fā)表于 2025-3-21 17:00:27 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Biomaterials for Tissue Engineering Applications
期刊簡(jiǎn)稱A Review of the Past
影響因子2023Jason A. Burdick,Robert L. Mauck
視頻videohttp://file.papertrans.cn/188/187890/187890.mp4
發(fā)行地址Overview of specific topic within the field of tissue engineering written by tomorrow′s leaders of the field.Includes over 100 figures to illustrate technology development.Covers both general technolo
圖書封面Titlebook: Biomaterials for Tissue Engineering Applications; A Review of the Past Jason A. Burdick,Robert L. Mauck Book 2011 Springer-Verlag/Wien 2011
影響因子.A concise overview of tissue engineering technologies and materials towards specific applications, both past and potential growth areas in this unique discipline is provided to the reader. The specific area of the biomaterial component used within the paradigm of tissue engineering is examined in detail. This is the first work to specifically covers topics of interest with regards to the biomaterial component. The book is divided into 2 sections: (i) general materials technology (e.g., fibrous tissue scaffolds) and (ii) applications in the engineering of specific tissues (e.g., materials for cartilage tissue engineering). Each chapter covers the fundamentals and reflects not only a review of the literature, but also addresses the future of the topic. The book is intended for an audience of researchers in both industry and academia that are interested in a concise overview regarding the biomaterials component of tissue engineering, a topic that is timely and only growing as a field. .
Pindex Book 2011
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Fibrous Scaffolds for Tissue Engineeringomaterial scaffolds for tissue engineering since fibrous structures can morphologically resemble extracellular matrix components in tissues. In addition, fibers can be collected and processed into complex fibrous networks using conventional textile techniques, such as knitting, weaving, or braiding,
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Bioelastomers in Tissue Engineeringll function and tissue development. Further, many engineered soft-tissue constructs such as vascular grafts, cardiac patches, and cartilage are implanted in a mechanically dynamic environment, thus successful implants must sustain and recover from various deformations without mechanical irritations
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Microscale Biomaterials for Tissue Engineeringer, we present an overview of these technologies and their applications in controlling the cellular microenviroment for tissue engineering applications. We focus on concepts and techniques that can be used to create two- and three-dimensional tissue engineering substrates and scaffolds. Common to th
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Bioceramics in Tissue Engineeringinert ceramics are currently used as femoral heads, acetabular cups for hip replacement, and dental implants. Nano-structured bioinert ceramics with significantly improved toughness and stability are desirable for future clinical needs. Bioactive glass and calcium phosphates are being investigated a
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Natural Materials in Tissue Engineering Applicationsls may be harvested from a wide range of sources and possess an equally wide range of physical and biological properties. This chapter focuses upon seven of these materials, namely collagen, fibrin, elastin, hyaluronic acid, alginate, chitosan, and silk. These materials are first discussed with resp
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Cartilage Engineering: Current Status and Future Trendsmatrix (ECM) is comprised mainly of type II collagen and proteoglycans which are maintained by chondrocytes, the resident cell population. Cartilage is a structurally complex tissue, with zones that exhibit different cell morphologies and extracellular matrix structure depending on distance from the
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