Light-sheet microscopy (LSM) is a powerful imaging technique that uses a planar illumination oriented orthogonally to the detection axis. Two-photon (2P) LSM is a variant of LSM that exploits the 2P absorption effect for sample excitation. The light polarization state plays a significant, and often overlooked, role in 2P absorption processes. The scope of this work is to test whether using different polarization states for excitation light can affect the detected signal levels in 2P LSM imaging of typical biological samples with a spatially unordered dye population. Supported by a theoretical model, we compared the fluorescence signals obtained using different polarization states with various fluorophores (fluorescein, EGFP and GCaMP6s) and...
We implemented two-photon scanned light-sheet microscopy, combining nonlinear excitation with orthog...
The various benefits of light sheet microscopy have made it a widely used modality for capturing thr...
In this work, we present a complete theoretical description of the excited state order created by tw...
Light-sheet microscopy (LSM) is a powerful imaging technique that uses a planar illumination oriente...
Over the last decades, fluorescence microscopy techniques have been developed in order to provide a ...
Light-sheet microscopy, such as ultramicroscopy, single plane illumination microscopy (SPIM) [1] and...
We use the lipophilic fluorescence probe Laurdan to study cell membranes. The generalized polarizati...
We have combined a confocal laser scanning head modified for TPE (two-photon excitation) microscopy ...
AbstractThe orientational distribution of fluorophores is an important reporter of the structure and...
Although confocal microscopy provides an efficient means of fluorescence imaging, many obstacles inc...
Multiphoton fluorescence microscopy is now a well-established technique, currently attracting much i...
International audienceThe orientational distribution of fluorophores is an important reporter of the...
We use the lipophilic fluorescence probe Laurdan to study cell membranes. The generalized polarizati...
International audienceTwo-photon microscopy is the most effective approach for deep-tissue fluoresce...
Since its inception more than 15 years ago, two-photon laser scanning microscopy (2PLSM) has found w...
We implemented two-photon scanned light-sheet microscopy, combining nonlinear excitation with orthog...
The various benefits of light sheet microscopy have made it a widely used modality for capturing thr...
In this work, we present a complete theoretical description of the excited state order created by tw...
Light-sheet microscopy (LSM) is a powerful imaging technique that uses a planar illumination oriente...
Over the last decades, fluorescence microscopy techniques have been developed in order to provide a ...
Light-sheet microscopy, such as ultramicroscopy, single plane illumination microscopy (SPIM) [1] and...
We use the lipophilic fluorescence probe Laurdan to study cell membranes. The generalized polarizati...
We have combined a confocal laser scanning head modified for TPE (two-photon excitation) microscopy ...
AbstractThe orientational distribution of fluorophores is an important reporter of the structure and...
Although confocal microscopy provides an efficient means of fluorescence imaging, many obstacles inc...
Multiphoton fluorescence microscopy is now a well-established technique, currently attracting much i...
International audienceThe orientational distribution of fluorophores is an important reporter of the...
We use the lipophilic fluorescence probe Laurdan to study cell membranes. The generalized polarizati...
International audienceTwo-photon microscopy is the most effective approach for deep-tissue fluoresce...
Since its inception more than 15 years ago, two-photon laser scanning microscopy (2PLSM) has found w...
We implemented two-photon scanned light-sheet microscopy, combining nonlinear excitation with orthog...
The various benefits of light sheet microscopy have made it a widely used modality for capturing thr...
In this work, we present a complete theoretical description of the excited state order created by tw...