<p>In this work, we present a new confocal laser scanning microscope capable to perform sensorless wavefront optimization in real time. The device is a parallelized laser scanning microscope in which the excitation light is structured in a lattice of spots by a spatial light modulator, while a deformable mirror provides aberration correction and scanning. A binary DMD is positioned in an image plane of the detection optical path, acting as a dynamic array of reflective confocal pinholes, images by a high performance CMOS camera. A second camera detects images of the light rejected by the pinholes for sensorless aberration correction.</p
Although Digital Micromirror Devices (DMD) have recently been used mainly for image- and video-proje...
Although confocal fluorescence microscopes are widely used in biology and have been proven to be pro...
We report on the use of a computer-controlled digital micromirror device (DMD) to select discrete wa...
In this work, we present a new confocal laser scanning microscope capable to perform sensorless wave...
In this work, we present a new confocal laser scanning microscope capable to perform sensorless wave...
This proceeding reports early results in the development of a new technique for adaptive optics in c...
This proceeding reports early results in the development of a new technique for adaptive optics in c...
This proceeding reports early results in the development of a new technique for adaptive optics in c...
Confocal microscopy is routinely used for high-resolution fluorescence imaging of biological specime...
Confocal microscopy is routinely used for high-resolution fluorescence imaging of biological specime...
The pinhole plays an important role in confocal laser scanning microscopy (CLSM) for adaptive optics...
The pinhole plays an important role in confocal laser scanning microscopy (CLSM) for adaptive optics...
Scanned confocal microscopes enhance imaging capabilities, providing improved contrast and image res...
Specimen induced aberrations can have detrimental effects in all types of high-resolution microscope...
Although confocal fluorescence laser scanning microscopy is a widely used technique in biology, thes...
Although Digital Micromirror Devices (DMD) have recently been used mainly for image- and video-proje...
Although confocal fluorescence microscopes are widely used in biology and have been proven to be pro...
We report on the use of a computer-controlled digital micromirror device (DMD) to select discrete wa...
In this work, we present a new confocal laser scanning microscope capable to perform sensorless wave...
In this work, we present a new confocal laser scanning microscope capable to perform sensorless wave...
This proceeding reports early results in the development of a new technique for adaptive optics in c...
This proceeding reports early results in the development of a new technique for adaptive optics in c...
This proceeding reports early results in the development of a new technique for adaptive optics in c...
Confocal microscopy is routinely used for high-resolution fluorescence imaging of biological specime...
Confocal microscopy is routinely used for high-resolution fluorescence imaging of biological specime...
The pinhole plays an important role in confocal laser scanning microscopy (CLSM) for adaptive optics...
The pinhole plays an important role in confocal laser scanning microscopy (CLSM) for adaptive optics...
Scanned confocal microscopes enhance imaging capabilities, providing improved contrast and image res...
Specimen induced aberrations can have detrimental effects in all types of high-resolution microscope...
Although confocal fluorescence laser scanning microscopy is a widely used technique in biology, thes...
Although Digital Micromirror Devices (DMD) have recently been used mainly for image- and video-proje...
Although confocal fluorescence microscopes are widely used in biology and have been proven to be pro...
We report on the use of a computer-controlled digital micromirror device (DMD) to select discrete wa...