Surface Analytical Techniques for Probing Biomaterial Processes describes four surface analytical techniques for probing dynamic, in situ processes at the biomaterial interface. The book presents the theoretical basis and biomaterial applications of:
  • Total Internal Reflection Fluorescence Spectroscopy (TIRFS)
  • Surface Plasmon Resonance (SPR)
  • Ellipsometry
  • Dynamic Contact Angle (DCA) analysis
    This book is not a review, but a practical description of the techniques to enable the biomaterialist to assess and intelligently use any one of the methods described. It deliberately avoids addressing expensive or non-dynamic tests, and concentrates instead on the growing field of biomaterials. Theory is presented in a simple and readable manner, experimental procedures are described, and the type of information obtained is discussed. It is written not just for the avid or interested reader but also, and perhaps more important, for the end user.
  • Les mer
    Describes four surface analytical techniques for probing dynamic, in situ processes at the biomaterial interface. This book describes experimental procedures and discusses the type of information obtained.
    Les mer
    Total Internal Reflection Fluorescence Spectroscopy, A.J. de Mello
    Total Internal Reflection Fluorescence Spectroscopy of Biomaterials, L.R. Fisher
    Surface Plasmon Resonance - Theory and Experimental Considerations, J. Davies and I. Faulkner
    Flow Cell Design Considerations for SPR Measurements, J. Davies and L. Skelton
    Kinetic Considerations of SPR Immunoassays, J. Davies and L. Skelton
    Ellipsometry and Protein Adsorption, J. Davies and C.S. Nunnerley
    Dynamic Contact Angle Analysis and Protein Adsorption, J. Davies
    Index
    Les mer

    Produktdetaljer

    ISBN
    9780849383526
    Publisert
    1996-08-28
    Utgiver
    Taylor & Francis Inc
    Vekt
    520 gr
    Høyde
    234 mm
    Bredde
    156 mm
    Aldersnivå
    UU, UP, P, 05, 06
    Språk
    Product language
    Engelsk
    Format
    Product format
    Innbundet
    Antall sider
    192

    Forfatter