Adaptive optics (AO) methods are widely used in microscopes to improve image quality through correction of phase aberrations. A range of wavefront-sensorless AO schemes exist, such as modal, pupil segmentation zonal, and pixelated piston-based methods. Each of these has a different physical implementation that makes direct comparisons difficult. Here, we propose a framework that fits in all sensorless AO methods and facilitates systematic comparisons among them. We introduce a general model for the aberration representation that encompasses many existing methods. Through modeling and experimental verification in a two-photon microscope, we compared sensorless AO schemes with a range of aberration representations to correct both simulated an...
Aberrations arising from sources such as sample heterogeneity and refractive index mismatches are co...
".tiff" images collected by a two-photon microscope on a 2 µm fluorescence bead cluster slide during...
International audienceWe implement wave front sensor-less adaptive optics in a structured illuminati...
Item does not contain fulltextOptical aberrations have detrimental effects in multiphoton microscopy...
Optical aberrations have detrimental effects in multiphoton microscopy. These effects can be curtail...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
The imaging properties of a microscope suffer from the presence of aberrations and optimum performan...
Aberrations limit scanning fluorescence microscopy when imaging in scattering materials such as biol...
Aberrations arising from sources such as sample heterogeneity and refractive index mismatches are co...
".tiff" images collected by a two-photon microscope on a 2 µm fluorescence bead cluster slide during...
International audienceWe implement wave front sensor-less adaptive optics in a structured illuminati...
Item does not contain fulltextOptical aberrations have detrimental effects in multiphoton microscopy...
Optical aberrations have detrimental effects in multiphoton microscopy. These effects can be curtail...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
Adaptive optics can improve the performance of optical systems and devices by correcting phase aberr...
The imaging properties of a microscope suffer from the presence of aberrations and optimum performan...
Aberrations limit scanning fluorescence microscopy when imaging in scattering materials such as biol...
Aberrations arising from sources such as sample heterogeneity and refractive index mismatches are co...
".tiff" images collected by a two-photon microscope on a 2 µm fluorescence bead cluster slide during...
International audienceWe implement wave front sensor-less adaptive optics in a structured illuminati...