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Titlebook: Biomaterials Science and Biocompatibility; Frederick H. Silver,David L. Christiansen Textbook 1999 Springer Science+Business Media New Yor

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發(fā)表于 2025-3-21 18:59:09 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Biomaterials Science and Biocompatibility
影響因子2023Frederick H. Silver,David L. Christiansen
視頻videohttp://file.papertrans.cn/188/187874/187874.mp4
圖書(shū)封面Titlebook: Biomaterials Science and Biocompatibility;  Frederick H. Silver,David L. Christiansen Textbook 1999 Springer Science+Business Media New Yor
影響因子Biomedical Engineering Program between Rutgers University and the University of Medicine and Dentistry of New Jersey entitled "Biopolymers" and "Patho- biology" during the past 15 years. It is our hope that this book will provide the reader with all the infor- mation necessary to understand the complexity of the biological reactions that are set into motion by implantation of a material or a device. We hope that this book will provide a framework for thinking about implant interactions with bio- logical systems. Although the field of studying pathobiological responses to im- plants is still in its infancy, we are now more aware of acute and chronic con- ditions that generate inflammatory responses as a result of wear debris, activation of complement, and acute hypersensitivity. As we learn more concerning these responses, it is hoped that our ability to design implants will also improve. We encourage readers to send to us any suggestions of additional topics that they would like to see covered in our book. Frederick H. Silver David L.
Pindex Textbook 1999
The information of publication is updating

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Introduction to Structure and Properties of Biological Tissues,ause these moieties are responsible for the completion of most biological processes. Biological macromolecules are classified into four groups of large molecules: proteins, polysaccharides (sugar polymers), nucleic acids, and lipids. These classes are differentiated by their repeat units, the chemic
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Determination of Physical Structure and Modeling,ample, the resistance of tendon to deformation reflects the high axial ratio of the collagen molecule and the packing of these molecules into parallel arrays in collagen fibrils and fibers. Although much information is gained from studying molecular structure by X-ray diffraction, from which the ave
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Assembly of Biological Macromolecules,of view, biological tissues contain highly ordered arrays of macromolecules. One might wonder why biological structures need to be made up of highly ordered arrays of proteins, polysaccharides, and lipids. The reason is that individual polymer molecules cannot sustain the weight of gravity without r
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Pathobiology and Response to Tissue Injury,d microscopic anatomical structures, which were introduced in Chapter 4, and cellular and tissue changes that are observed in injured or diseased tissue. Once the anatomical and microscopic structure and biochemistry of normal tissues is well understood, it is then possible to understand how injury
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Wound Healing,involves normal turnover of tissues found throughout the body. In addition, it involves the ability of mammalian tissues to repair themselves after injury. Without the ability of tissues to repair themselves, we would be unable to withstand the trauma of daily life or the invasion of bacteria, fungi
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Pathobiological Responses to Implants,und dressings, and other implants have extended the life spans and improved quality of life. However, the introduction of this new technology is also associated with pathobiological responses that in some cases can be life-threatening. Many of the adverse responses to implants are associated with in
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