Estimating the orientation and 3D position of rotationally constrained emitters with localization microscopy typically requires polarization splitting or a large engineered Point Spread Function (PSF). Here we utilize a compact modified PSF for single molecule emitter imaging to estimate simultaneously the 3D position, dipole orientation, and degree of rotational constraint from a single 2D image. We use an affordable and commonly available phase plate, normally used for STED microscopy in the excitation light path, to alter the PSF in the emission light path. This resulting Vortex PSF does not require polarization splitting and has a compact PSF size, making it easy to implement and combine with localization microscopy techniques. In addit...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
Estimating the orientation and 3D position of rotationally constrained emitters with localization mi...
Molecular orientation is often ignored during single-molecule localisation microscopy. Here, the aut...
Within condensed matter, single fluorophores are sensitive probes of their chemical environments, bu...
Within condensed matter, single fluorophores are sensitive probes of their chemical environments, bu...
Super-resolution techniques that localize single molecules in three dimensions through point spread ...
In single-molecule localization microscopy (SMLM), the use of engineered point spread functions (PSF...
Single-molecule localization microscopy has developed into a widely used technique to overcome the d...
Single-molecule localization microscopy has developed into a widely used technique to overcome the d...
Single-molecule localization microscopy has developed into a widely used technique to overcome the d...
We present a method to measure the molecular orientation and rotational mobility of single-molecule ...
We present a method to measure the molecular orientation and rotational mobility of single-molecule ...
We present a real-time fitter for 3D single-molecule localization microscopy using experimental poin...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
Estimating the orientation and 3D position of rotationally constrained emitters with localization mi...
Molecular orientation is often ignored during single-molecule localisation microscopy. Here, the aut...
Within condensed matter, single fluorophores are sensitive probes of their chemical environments, bu...
Within condensed matter, single fluorophores are sensitive probes of their chemical environments, bu...
Super-resolution techniques that localize single molecules in three dimensions through point spread ...
In single-molecule localization microscopy (SMLM), the use of engineered point spread functions (PSF...
Single-molecule localization microscopy has developed into a widely used technique to overcome the d...
Single-molecule localization microscopy has developed into a widely used technique to overcome the d...
Single-molecule localization microscopy has developed into a widely used technique to overcome the d...
We present a method to measure the molecular orientation and rotational mobility of single-molecule ...
We present a method to measure the molecular orientation and rotational mobility of single-molecule ...
We present a real-time fitter for 3D single-molecule localization microscopy using experimental poin...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...
International audienceHere, we present a 3D localization-based super-resolution technique providing ...