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Titlebook: Engineering of Functional Skeletal Tissues; Felix Bronner (Professor Emeritus),Mary C. Farach- Book 2007 Springer-Verlag London 2007 bioen

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書目名稱Engineering of Functional Skeletal Tissues
編輯Felix Bronner (Professor Emeritus),Mary C. Farach-
視頻videohttp://file.papertrans.cn/312/311034/311034.mp4
概述A useful collection of information, not readily available in a concentrated and convenient form on the market.Provides a comprehensive overview of the field.Includes supplementary material:
叢書名稱Topics in Bone Biology
圖書封面Titlebook: Engineering of Functional Skeletal Tissues;  Felix Bronner (Professor Emeritus),Mary C. Farach- Book 2007 Springer-Verlag London 2007 bioen
描述The science of bone replacement has greatly advanced in recent decades, but replacing bone with bone tissue rather than with metallic components remains in early development. The current volume, third in the series Topics in Bone Biology, deals with problems inherent in inducing the body cells to accomplish bone tissue repair, to degrade devices introduced to provide initial mechanical support, and to attract and stimulate bone f- mation. It is therefore logical that Chapter 1, by Hicok and Hedrick, deals with stem cells, i. e. , pluripotential cells that may differentiate into cartilage and bone cells. The chapter begins with a description of how stem cells may be harvested; the limitations of autologous, embryonic, and adult stem cells; and the need to expand the harvested cells in culture. The authors then discuss the in? uences of the body environment on implanted cells and on the scaffolds that need to be introduced. They emphasize the need for adequate oxygenation and for rapid integration with the vascular system of the host/patient. Stem-cell-engineered cartilage is discussed at some length, along with the need for stem-cell-engineered ligaments and tendons. The chapter con
出版日期Book 2007
關(guān)鍵詞bioengineering; bone; cartilage; cells; rehabilitation; skeletal function and rehabilitation; skeletal tis
版次1
doihttps://doi.org/10.1007/978-1-84628-366-6
isbn_softcover978-1-4471-6122-6
isbn_ebook978-1-84628-366-6Series ISSN 2199-2436 Series E-ISSN 2199-2444
issn_series 2199-2436
copyrightSpringer-Verlag London 2007
The information of publication is updating

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rtant characteristics: the ability to undergo nearly unlimited self-renewal and the capability to differentiate into many (multipotent/pluripotent) or all (totipotent) mature cell phenotypes. The existence of stem cells and their ability to generate every tissue of the body during embryonic developm
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https://doi.org/10.1007/978-1-4419-5626-2is increase can be attributed to morbidities associated with bone autografts [., ., ., ., .], the increased availability of bone allografts, and the expansion of these applications [., ., ., ., ., ., ., .]. A variety of musculoskeletal allografts are available for different reconstructive applicatio
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https://doi.org/10.1007/978-94-007-0464-05 million people worldwide suffer from knee-joint failure each year due to the breakdown of surrounding cartilage in the joint and the inability of this cartilage to repair itself through the natural regenerative processes of healing in the body” [.]. Additionally, at least 10 percent of the populat
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https://doi.org/10.1007/978-94-011-0731-0 three phases: an inorganic mineral phase, an organic phase, and an aqueous phase. The inorganic phase of bone is calcium hydroxyapatite, Ca.(PO.).(OH).. The organic phase consists primarily of collagen fibers and associated noncollagenous ECM proteins. The molecular configuration of collagen provid
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