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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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Tissue Engineering,rogressed to the point where devices now use cells and biopolymers made using cultured or genetically engineered cells (Figure 11.1). Physicians have treated organ or tissue failure by transplanting organs from one individual into another, performing surgical reconstruction using autologous tissues,
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Introduction to Structure and Properties of Polymers, Metals, and Ceramics,erials found their way into medicine because no other materials could simulate the properties of mineralized and nonmineralized tissues. In addition, many of these kitchen materials are stable; they do not break down into low molecular weight materials that are harmful to the body‘s homeostasis.
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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 or disease affects cells and tissues.
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https://doi.org/10.1007/978-3-642-68819-5d 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 or disease affects cells and tissues.
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https://doi.org/10.1007/978-1-4612-0557-9Activation; Biomaterial; Implantat; Stent; Tissue Engineering; biomechanics; cartilage; cells; electron micr
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978-1-4612-6816-1Springer Science+Business Media New York 1999
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