A new framework for the estimation of diffusion coefficients from data on fluorescence recovery after photobleaching (FRAP) with confocal laser scanning microscopy (CLSM) is presented. It is a pixel-based statistical methodology that efficiently utilizes all information about the diffusion process in the available set of images. The likelihood function for a series of images is maximized which gives both an estimate of the diffusion coefficient and a corresponding error. This framework opens up possibilities (1) to obtain localized diffusion coefficient estimates in both homogeneous and heterogeneous materials, (2) to account for time differences between the registrations at the pixels within each image, and (3) to plan experiments optimize...
Confocal or multi-photon laser scanning microscopes are convenient tools to perform FRAP diffusion m...
Fourier transform fluorescence recovery after photobleaching (FT-FRAP) with patterned illumination i...
A new method for the measurement of diffusion in thick samples is introduced, based upon the spatial...
Jonasson et al. (2008), we presented a new pixel-based maximum likelihood framework for the estimati...
AbstractFluorescence recovery after photobleaching (FRAP) using confocal laser scanning microscopes ...
AbstractWe present a truly quantitative fluorescence recovery after photobleaching (FRAP) model for ...
Fluorescence recovery after photobleaching, FRAP, has been an established technique of quantifying t...
We introduce a new, to our knowledge, numerical model based on spectral methods for analysis of fluo...
AbstractFluorescence recovery after photobleaching has been an established technique of quantifying ...
AbstractFluorescence recovery after photobleaching (FRAP) is widely used to measure fluorophore diff...
AbstractConfocal scanning laser microscopes (CSLMs) are equipped with the feature to photobleach use...
© 2004 by The American Society for Cell Biology.Fluorescence recovery after photobleaching (FRAP) is...
Fluorescence recovery after photobleaching is a widely established method for the estimation of diff...
A simple fluorescence recovery after photobleaching (FRAP) apparatus using a fluorescence microscope...
Fluorescence recovery after photobleaching (FRAP) is one of the most widely used approaches to quant...
Confocal or multi-photon laser scanning microscopes are convenient tools to perform FRAP diffusion m...
Fourier transform fluorescence recovery after photobleaching (FT-FRAP) with patterned illumination i...
A new method for the measurement of diffusion in thick samples is introduced, based upon the spatial...
Jonasson et al. (2008), we presented a new pixel-based maximum likelihood framework for the estimati...
AbstractFluorescence recovery after photobleaching (FRAP) using confocal laser scanning microscopes ...
AbstractWe present a truly quantitative fluorescence recovery after photobleaching (FRAP) model for ...
Fluorescence recovery after photobleaching, FRAP, has been an established technique of quantifying t...
We introduce a new, to our knowledge, numerical model based on spectral methods for analysis of fluo...
AbstractFluorescence recovery after photobleaching has been an established technique of quantifying ...
AbstractFluorescence recovery after photobleaching (FRAP) is widely used to measure fluorophore diff...
AbstractConfocal scanning laser microscopes (CSLMs) are equipped with the feature to photobleach use...
© 2004 by The American Society for Cell Biology.Fluorescence recovery after photobleaching (FRAP) is...
Fluorescence recovery after photobleaching is a widely established method for the estimation of diff...
A simple fluorescence recovery after photobleaching (FRAP) apparatus using a fluorescence microscope...
Fluorescence recovery after photobleaching (FRAP) is one of the most widely used approaches to quant...
Confocal or multi-photon laser scanning microscopes are convenient tools to perform FRAP diffusion m...
Fourier transform fluorescence recovery after photobleaching (FT-FRAP) with patterned illumination i...
A new method for the measurement of diffusion in thick samples is introduced, based upon the spatial...