Total internal reflection fluorescence microscopy has become a powerful tool to study the dynamics of sub-cellular structures and single molecules near substrate surfaces. However, the penetration depth of the evanescent field, that is, the distance at which the excitation intensity has exponentially decayed to 1/e, is often left undetermined. This presents a limit on the spatial information about the imaged structures. Here, we present a novel method to quantitatively characterize the illumination in total internal reflection fluorescence microscopy using tilted, fluorescently labelled, microtubules. We find that the evanescent field is well described by a single exponential function, with a penetration depth close to theoretically predict...
International audienceWe propose an improved version of variable-angle total internal reflection flu...
We describe a novel measurement method to study the contact line of a droplet at nanoscale level. Th...
International audienceTotal internal reflection microscopy is mainly used in its fluorescence mode a...
Total internal reflection fluorescence microscopy has become a powerful tool to study the dynamics o...
Owing to its single-molecule sensitivity, objective-based total-internal-reflection fluorescence mic...
AbstractEvanescent light—light that does not propagate but instead decays in intensity over a subwav...
AbstractIn total internal reflection fluorescence microscopy (TIRFM), fluorophores near a surface ca...
The decay of evanescent field intensity beyond a dielectric interface depends upon beam incident ang...
AbstractTotal internal reflection fluorescence microscopy (TIRFM) achieves subdiffraction axial sect...
The decay of evanescent field intensity beyond a dielectric interface depends upon beam incident ang...
Total internal reflection fluorescence (TIRF) has come of age, but a reliable and easy-to-use tool f...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/72779/1/j.1600-0854.2001.21104.x.pd
The goal in fluorescence microscopy is to detect the signal of fluorescently labeled molecules with ...
Total internal reflection fluorescence microscopy (TIRFM) techniques play an important role in inves...
Abstract: Visualization of Cortex Organization and Dynamics in Microorganisms, using Total Internal ...
International audienceWe propose an improved version of variable-angle total internal reflection flu...
We describe a novel measurement method to study the contact line of a droplet at nanoscale level. Th...
International audienceTotal internal reflection microscopy is mainly used in its fluorescence mode a...
Total internal reflection fluorescence microscopy has become a powerful tool to study the dynamics o...
Owing to its single-molecule sensitivity, objective-based total-internal-reflection fluorescence mic...
AbstractEvanescent light—light that does not propagate but instead decays in intensity over a subwav...
AbstractIn total internal reflection fluorescence microscopy (TIRFM), fluorophores near a surface ca...
The decay of evanescent field intensity beyond a dielectric interface depends upon beam incident ang...
AbstractTotal internal reflection fluorescence microscopy (TIRFM) achieves subdiffraction axial sect...
The decay of evanescent field intensity beyond a dielectric interface depends upon beam incident ang...
Total internal reflection fluorescence (TIRF) has come of age, but a reliable and easy-to-use tool f...
Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/72779/1/j.1600-0854.2001.21104.x.pd
The goal in fluorescence microscopy is to detect the signal of fluorescently labeled molecules with ...
Total internal reflection fluorescence microscopy (TIRFM) techniques play an important role in inves...
Abstract: Visualization of Cortex Organization and Dynamics in Microorganisms, using Total Internal ...
International audienceWe propose an improved version of variable-angle total internal reflection flu...
We describe a novel measurement method to study the contact line of a droplet at nanoscale level. Th...
International audienceTotal internal reflection microscopy is mainly used in its fluorescence mode a...