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- W2499527465 abstract "Fluctuation Spectroscopy Methods for the Analysis of Membrane Processes Michelle A. Digman CONTENTS 10.1 Introduction 215 10.2 The Autocorrelation Function 218 10.3 The Principle of Scanning FCS 219 10.4 The RICS Principle 223 10.5 The iMSD Concept and the Generalization of Fluctuation Correlation Experiments 227 10.6 Example of Studies of Membrane Lateral Diffusion That Emphasize the Spatial Correlation Method 231 10.7 Conclusions 234 Acknowledgments 235 References 235 10.1 INTRODUCTION In the field of membrane lipid and protein dynamics, fluorescence recovery after photobleaching (FRAP) and single-particle tracking methods have provided ample evidence that lipids and proteins could have their motion restricted by interaction with other lipids and with the cell cytoskeleton. 1–8 Fluorescence correlation spec- troscopy (FCS) is a relatively new method in this field that has received particular attention recently because of the possible combination with super-resolution micros- copy methods. 9–14 In this context, the use of very small volumes of excitation or variable volumes of excitation 15 was considered necessary to unravel to transport of molecules at the nanoscale. However, most of the FCS studies done so far are based on the original idea of measuring temporal correlation at a single point in the membrane. Measuring a single location in the membrane is restrictive since the temporal fluctuations at one point cannot reveal local microstructures or the aniso- tropic molecular transport in membranes. In this contribution, we discuss fluctuation methods based on spatial correlation that reveal the dynamics of membrane lipids and proteins at the nanoscale. 16–27 We show here that spatial correlations intrinsi- cally contain more information than the classical temporal correlation first intro- duced with the single-point FCS. Spatiotemporal correlation approaches have the" @default.
- W2499527465 created "2016-08-23" @default.
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- W2499527465 date "2014-10-27" @default.
- W2499527465 modified "2023-09-23" @default.
- W2499527465 title "Fluctuation Spectroscopy Methods for the Analysis of Membrane Processes" @default.
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- W2499527465 doi "https://doi.org/10.1201/b17634-15" @default.
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