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   系統號碼912950
   書刊名Scanning ion conductance microscopy [electronic resource] /
   主要著者edited by Tilman E. Schaffer ; with contributions by L. A. Baker ... [et al.].
   其他著者Schaffer, Tilman E.;A. Baker, L.,
   出版項Cham : Imprint: Springer, 2022.
   索書號QH212.S33S33 2022
   ISBN9783031144431
   標題Scanning probe microscopy.
Microscopy.
Analytical Chemistry.
Nanoscale Biophysics.
Biomaterials-Cells.
   電子資源https://doi.org/10.1007/978-3-031-14443-1
   叢書名Bioanalytical reviews,31867-2094 ;;Bioanalytical reviews ;3.1867-2094 ;
   
    
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內容簡介This book provides a selection of recent developments in scanning ion conductance microscopy (SICM) technology and applications. In recent years, SICM has been applied in an ever-increasing number of areas in the bioanalytical sciences. SICM is based on an electrolyte-filled nanopipette with a nanometer-scale opening, over which an electric potential is applied. The induced ion current is measured, which allows to directly or indirectly quantify various physical quantities such as pipette-sample distance, ion concentration, sample elastic modulus among many others. This makes SICM well suited for applications in electrolytes - most prominently for the study of live cells. This book starts with a historic overview starting from the days of the invention of SICM by Paul Hansma at the University of California at Santa Barbara in 1989. SICM is a member of the family of scanning probe microscopies. It is related to another prominent member of the family, atomic force microscopy (AFM), which has found application in almost any field of nanoscale science. The advantages and disadvantages of SICM over AFM are also outlined. One of the most effective and break-through applications of SICM nanopipettes is in electrochemistry. The different routes and applications for doing electrochemistry using nanopipettes are also discussed. In addition the book highlights the ability of SICM for surface positioning with nanometer precision to open up new vistas in patch clamp measurements subcellular structures. Finally the book presents one research area where SICM has been making a lot of contributions, cardiac research and the endeavors to combine SICM with super-resolution optical microscopy for highest-resolution joint topography and functional imaging.

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