Combining orientation estimation with localization microscopy opens up the possibility to analyze the underlying orientation of biomolecules on the nanometer scale. Inspired by the recent improvement of the localization precision by shifting excitation patterns (MINFLUX, SIMFLUX), we have adapted the idea towards the modulation of excitation polarization to enhance the orientation precision. For this modality two modes are analyzed: i) normally incident excitation with three polarization steps to retrieve the in-plane angle of emitters and ii) obliquely incident excitation with p-polarization with five different azimuthal angles of incidence to retrieve the full orientation. Firstly, we present a theoretical study of the lower precision lim...
When excited with rotating linear polarized light, differently oriented fluorescent dyes emit period...
In single molecule orientation localization microscopy, aberrations cause changes in the shape of th...
Localization microscopy has circumvented the diffraction limit by sequentially imaging individual li...
Combining orientation estimation with localization microscopy opens up the possibility to analyze th...
Recently, spatial light modulators (SLMs) have been used to generate polarization-engineered laser b...
Single-molecule localization microscopy has been widely applied to count the number of biological mo...
Single-molecule localization microscopy has been widely applied to count the number of biological mo...
Many single nanoemitters such as fluorescent molecules produce dipole radiation that leads to system...
International audienceOptical contrasts in microscopy are sensitive to light polarization, whose int...
International audienceSuper-resolution imaging based on single molecule localization allows accessin...
Super-resolution localization microscopy is based on determining the positions of individual fluores...
Single molecules (SMs) have become important tools for studying nanoscale dynamics in biological stu...
The technique of determining the position of individual fluorescent molecules with nanometer resolut...
Estimating the orientation and 3D position of rotationally constrained emitters with localization mi...
Estimating the orientation and 3D position of rotationally constrained emitters with localization mi...
When excited with rotating linear polarized light, differently oriented fluorescent dyes emit period...
In single molecule orientation localization microscopy, aberrations cause changes in the shape of th...
Localization microscopy has circumvented the diffraction limit by sequentially imaging individual li...
Combining orientation estimation with localization microscopy opens up the possibility to analyze th...
Recently, spatial light modulators (SLMs) have been used to generate polarization-engineered laser b...
Single-molecule localization microscopy has been widely applied to count the number of biological mo...
Single-molecule localization microscopy has been widely applied to count the number of biological mo...
Many single nanoemitters such as fluorescent molecules produce dipole radiation that leads to system...
International audienceOptical contrasts in microscopy are sensitive to light polarization, whose int...
International audienceSuper-resolution imaging based on single molecule localization allows accessin...
Super-resolution localization microscopy is based on determining the positions of individual fluores...
Single molecules (SMs) have become important tools for studying nanoscale dynamics in biological stu...
The technique of determining the position of individual fluorescent molecules with nanometer resolut...
Estimating the orientation and 3D position of rotationally constrained emitters with localization mi...
Estimating the orientation and 3D position of rotationally constrained emitters with localization mi...
When excited with rotating linear polarized light, differently oriented fluorescent dyes emit period...
In single molecule orientation localization microscopy, aberrations cause changes in the shape of th...
Localization microscopy has circumvented the diffraction limit by sequentially imaging individual li...