Download e-book for kindle: Advances in Polyurethane Biomaterials by Stuart L. Cooper, Jianjun Guan

By Stuart L. Cooper, Jianjun Guan

ISBN-10: 0081006144

ISBN-13: 9780081006146

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ISBN-13: 9780081006221

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ISBN-13: 9781845692643

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ISBN-13: 9781845693299

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Advances in Polyurethane Biomaterials brings jointly a radical assessment of advances within the homes and purposes of polyurethanes for biomedical purposes. the 1st set of chapters within the booklet offers a major evaluate of the basics of this fabric with chapters on homes and processing tools for polyurethane. additional sections conceal major makes use of akin to their tissue engineering and vascular and drug supply applications

Written via a world crew of prime authors, the publication is a finished and crucial reference in this very important biomaterial.

  • Brings jointly in-depth insurance of a major fabric, crucial for plenty of complex biomedical applications
  • Connects the basics of polyurethanes with cutting-edge research of important new functions, together with tissue engineering and drug delivery
  • Written by way of a crew of hugely a professional authors with a variety of specialist and educational event, overseen by means of an editor who's a number one professional within the field

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Extra info for Advances in Polyurethane Biomaterials

Sample text

Tailoring the degradation kinetics of poly(ester carbonate urethane)urea thermoplastic elastomers for tissue engineering scaffolds. Biomaterials 2010;31(15):4249–58. [104] Tang Y, Labow R, Santerre J. Enzyme-induced biodegradation of polycarbonate-polyurethanes: dependence on hard-segment chemistry. J Biomed Mater Res 2001;57(4):597–611. [105] Tang Y, Labow R, Santerre J. Enzyme-induced biodegradation of polycarbonate-polyurethanes: dependence on hard-segment concentration. J Biomed Mater Res 2001;57:516–28.

26] Hafeman A, Davidson J, Guelcher S. Effects of polyol, isocyanate, and additives on poly(ester urethane)urea scaffolds: material and in vivo histological properties. PMSE Prepr 2007;97:546. [27] Gisselfalt K, Helgee B. Effect of soft segment length and chain extender structure on phase separation and morphology in poly(urethane urea)s. Macromol Mater Eng 2003;288(3):265–71. [28] Martin DJ, et al. The effect of average soft segment length on morphology and properties of a series of polyurethane elastomers.

Microphase separation kinetics in segmented polyurethanes: effects of soft segment length and structure. Macromolecules 1992;25(21):5724–9. [62] Garrett J, Runt J, Lin J. Microphase separation of segmented poly(urethane urea) block copolymers. Macromolecules 2000;33(17):6353–9. [63] He Y, Zhang X, Runt J. The role of diisocyanate structure on microphase separation of solution polymerized polyureas. Polymer 2014;55(3):906–13. [64] Nakamae K, Nishino T, Asaoka S. Microphase separation and surface properties of segmented polyurethane—Effect of hard segment content.

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Advances in Polyurethane Biomaterials by Stuart L. Cooper, Jianjun Guan

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