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Titlebook: Calcified Tissue; David W. L. Hukins Textbook 1989Latest edition Macmillan Publishers Limited 1989 histology.protein.proteins.spectroscopy

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书目名称Calcified Tissue
编辑David W. L. Hukins
视频videohttp://file.papertrans.cn/221/220754/220754.mp4
丛书名称Topics in Molecular and Structural Biology
图书封面Titlebook: Calcified Tissue;  David W. L. Hukins Textbook 1989Latest edition Macmillan Publishers Limited 1989 histology.protein.proteins.spectroscopy
描述Understanding the relationship between the structures and functions of calcified tissues is essential for an understanding of their pathology. This book emphasises aspects of calcification which are important to humans and presents aspects of current research, notably attempts to relate biological function to the structures and interactions, many chapters stress the importance of the extracellular matrix, and provide links with volumes 5 and 13 in the series Connective Tissue Matrix and Connective Tissue Matrix Part II respectively. Material selected for inclusion in this volume intentionally favour the more physical and physico-chemical aspects of contemporary research.
出版日期Textbook 1989Latest edition
关键词histology; protein; proteins; spectroscopy; tissue
版次1
doihttps://doi.org/10.1007/978-1-349-09868-2
copyrightMacmillan Publishers Limited 1989
The information of publication is updating

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Praxeologische Handlungsempfehlungenthe mineralised substance can sustain a compressive load while the demineralised matrix cannot. The skeleton is characterised by its capability to support compressive loads, whereas similar connective tissues like tendons and ligaments are strong only in tension.
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Mineral deposits in tissues,al described in subsequent chapters. Furthermore, because of the complexity of many of the minerals, it is impossible to understand how their structures are defined without some appreciation of the techniques involved. Several techniques which are important subjects of current research are described in more detail in chapters devoted to them.
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Sonic velocity and the ultrastructure of mineralised tissues,the mineralised substance can sustain a compressive load while the demineralised matrix cannot. The skeleton is characterised by its capability to support compressive loads, whereas similar connective tissues like tendons and ligaments are strong only in tension.
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Some characteristics of mineralised collagen,reviously available information should have sufficed for an acute observer. It is well known that the type I collagen in bone differs from that in soft tissue. For example, the collagen in bone cannot be split by collagenase until the tissue is demineralised. Also, the collagen in bone requires a much higher temperature to gelatinise.
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