Fluorescence Fluctuation Spectroscopy (FFS) Part B by Sergey Tetin

Fluorescence Fluctuation Spectroscopy (FFS) Part B

bySergey Tetin, Sergey Tetin

Other | December 29, 2012

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This new volume of Methods in Enzymology continues the legacy of this premier serial with quality chapters authored by leaders in the field. This volume covers fluorescence fluctuation spectroscopy and includes chapters on such topics as Förster resonance energy transfer (fret) with fluctuation algorithms, protein corona on nanoparticles by FCS, and FFS approaches to the study of receptors in live cells.

  • Continues the legacy of this premier serial with quality chapters authored by leaders in the field
  • Covers fluorescence fluctuation spectroscopy
  • Contains chapters on such topics as Förster resonance energy transfer (fret) with fluctuation algorithms, protein corona on nanoparticles by FCS, and FFS approaches to the study of receptors in live cells

Details & Specs

Title:Fluorescence Fluctuation Spectroscopy (FFS) Part BFormat:OtherDimensions:376 pages, 1 × 1 × 1 inPublished:December 29, 2012Publisher:Elsevier ScienceLanguage:English

The following ISBNs are associated with this title:

ISBN - 10:0124058574

ISBN - 13:9780124058576

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Table of Contents

  1. FCS in STED Microscopy: Studying the Nanoscale of Lipid Membrane Dynamics
  2. Analyzing Förster Resonance Energy Transfer (Fret) with Fluctuation Algorithms
  3. Fluorescence Fluctuation Spectroscopy Approaches to the Study of Receptors in Live Cells
  4. Studying the Protein Corona on Nanoparticles By FCS
  5. Studying Antibody - Antigen Interactions with Fluorescence Fluctuation Spectroscopy
  6. Fluorescence Fluctuation Approaches to the Study of Adhesion and Signaling
  7. Interactions in Gene Expression Networks Studied by Two-Photon Fluorescence Fluctuation Spectroscopy
  8. Studying Ion Exchange in Solution and at Biological Membranes by FCS
  9. Fluctuation Analysis of Activity Biosensor Images for the Study of Information Flow in Signaling Pathways
  10. Probing the Plasma Membrane Organization in Living Cells by Spot Variation Fluorescence Correlation Spectroscopy