We report on recent developments in the use of adaptive optics (AO) in wide-field microscopy to remove both system and sample induced aberrations. We describe progress on using both a full AO system and image optimization techniques (wavefront sensorless AO). In the latter system the determination of the best mirror shape is found via two routes. In the first an optimization algorithm using a Simplex search pattern is used with an initial random set of mirror shapes. We then explore the use of specific Zernike terms as our starting basis set. In both cases the final optimization performance is not affected by the choice of optimization metric. We then describe an open loop AO system in which the equivalent of a laser guide star is used as t...
Subsurface microscopy is often limited by poor image quality due to sample-induced aberrations. Adap...
Adaptive optics (AO) is a technique that corrects for optical aberrations. It was originally propose...
Adaptive Optics (AO) improves the efficiency of the optical devices in confocal imaging systems by r...
We report on the development of a widefield microscope that achieves adaptive optics correction thro...
Traditionally, adaptive optics (AO) systems for microscopy have focused on AO at the pupil plane, ho...
We report on a closed loop widefield adaptive optics, optical microscopy system in which the feedbac...
We report on a closed loop widefield adaptive optics, optical microscopy system in which the feedbac...
Adaptive optics (AO) can potentially allow high resolution imaging deep inside living tissue, mitiga...
Aberrations arising from sources such as sample heterogeneity and refractive index mismatches are co...
Optical microscopy is still the main research tool for many biological studies. Indeed with the adve...
The quality of microscopy imaging is often degraded by sample-induced aberrations. Adaptive optics (...
Adaptive optics (AO), as the technology of compensating the wavefront distortion can significantly i...
We report on the introduction of active optical elements into confocal and multiphoton microscopes i...
We report on the introduction of active optical elements into confocal and multiphoton microscopes i...
We report on a single plane illumination microscope (SPIM) incorporating adaptive optics in the imag...
Subsurface microscopy is often limited by poor image quality due to sample-induced aberrations. Adap...
Adaptive optics (AO) is a technique that corrects for optical aberrations. It was originally propose...
Adaptive Optics (AO) improves the efficiency of the optical devices in confocal imaging systems by r...
We report on the development of a widefield microscope that achieves adaptive optics correction thro...
Traditionally, adaptive optics (AO) systems for microscopy have focused on AO at the pupil plane, ho...
We report on a closed loop widefield adaptive optics, optical microscopy system in which the feedbac...
We report on a closed loop widefield adaptive optics, optical microscopy system in which the feedbac...
Adaptive optics (AO) can potentially allow high resolution imaging deep inside living tissue, mitiga...
Aberrations arising from sources such as sample heterogeneity and refractive index mismatches are co...
Optical microscopy is still the main research tool for many biological studies. Indeed with the adve...
The quality of microscopy imaging is often degraded by sample-induced aberrations. Adaptive optics (...
Adaptive optics (AO), as the technology of compensating the wavefront distortion can significantly i...
We report on the introduction of active optical elements into confocal and multiphoton microscopes i...
We report on the introduction of active optical elements into confocal and multiphoton microscopes i...
We report on a single plane illumination microscope (SPIM) incorporating adaptive optics in the imag...
Subsurface microscopy is often limited by poor image quality due to sample-induced aberrations. Adap...
Adaptive optics (AO) is a technique that corrects for optical aberrations. It was originally propose...
Adaptive Optics (AO) improves the efficiency of the optical devices in confocal imaging systems by r...