AbstractWe present an extensive investigation of the accuracy and precision of temporal image correlation spectroscopy (TICS). Using simulations of laser scanning microscopy image time series, we investigate the effect of spatiotemporal sampling, particle density, noise, sampling frequency, and photobleaching of fluorophores on the recovery of transport coefficients and number densities by TICS. We show that the recovery of transport coefficients is usually limited by spatial sampling, while the measurement of accurate number densities is restricted by background noise in an image series. We also demonstrate that photobleaching of the fluorophore causes a consistent overestimation of diffusion coefficients and flow rates, and a severe under...
We present a fluorescence fluctuation image correlation analysis method that can rapidly and simulta...
An important tool in molecular biology is fluorescence video microscopy, which helps to probe biomol...
Roth CM, Heinlein PI, Heilemann M, Herten D-P. Imaging diffusion in living cells using time-correlat...
AbstractWe present an extensive investigation of the accuracy and precision of temporal image correl...
This thesis is about the use and development of new fluorescence correlation techniques to measure t...
Single-point fluorescence correlation spectroscopy (FCS) allows measurements of fast diffusion and d...
ABSTRACT We present the theory and application of reciprocal space image correlation spectroscopy (k...
AbstractSingle-point fluorescence correlation spectroscopy (FCS) allows measurements of fast diffusi...
AbstractWe present the theory and application of reciprocal space image correlation spectroscopy (kI...
Molecular diffusion and transport processes are fundamental in physical, chemical, and biological sy...
Images obtained with a laser-scanning microscope contain a time structure that can be exploited to m...
This thesis studies optical microscopy based high order autocorrelation approaches for measuring mo...
AbstractWe present a comprehensive study of the accuracy and dynamic range of spatial image correlat...
AbstractSemiconductor nanocrystals or quantum dots (QDs) are becoming widely used as fluorescent lab...
AbstractImages obtained with a laser-scanning microscope contain a time structure that can be exploi...
We present a fluorescence fluctuation image correlation analysis method that can rapidly and simulta...
An important tool in molecular biology is fluorescence video microscopy, which helps to probe biomol...
Roth CM, Heinlein PI, Heilemann M, Herten D-P. Imaging diffusion in living cells using time-correlat...
AbstractWe present an extensive investigation of the accuracy and precision of temporal image correl...
This thesis is about the use and development of new fluorescence correlation techniques to measure t...
Single-point fluorescence correlation spectroscopy (FCS) allows measurements of fast diffusion and d...
ABSTRACT We present the theory and application of reciprocal space image correlation spectroscopy (k...
AbstractSingle-point fluorescence correlation spectroscopy (FCS) allows measurements of fast diffusi...
AbstractWe present the theory and application of reciprocal space image correlation spectroscopy (kI...
Molecular diffusion and transport processes are fundamental in physical, chemical, and biological sy...
Images obtained with a laser-scanning microscope contain a time structure that can be exploited to m...
This thesis studies optical microscopy based high order autocorrelation approaches for measuring mo...
AbstractWe present a comprehensive study of the accuracy and dynamic range of spatial image correlat...
AbstractSemiconductor nanocrystals or quantum dots (QDs) are becoming widely used as fluorescent lab...
AbstractImages obtained with a laser-scanning microscope contain a time structure that can be exploi...
We present a fluorescence fluctuation image correlation analysis method that can rapidly and simulta...
An important tool in molecular biology is fluorescence video microscopy, which helps to probe biomol...
Roth CM, Heinlein PI, Heilemann M, Herten D-P. Imaging diffusion in living cells using time-correlat...