In this paper, we present a new multi-focus microscope (MFM) system based on a phase mask and HiLo algorithm, achieving high-speed (20 volumes per second), high-resolution, low-noise 3-D fluorescent imaging. During imaging, the emissions from the specimen at nine different depths are simultaneously modulated and focused to different regions on a single CCD chip, i.e., the CCD chip is subdivided into nine regions to record images from the different selected depths. Next, HiLo algorithm is applied to remove the background noises and to form clean 3-D images. To visualize larger volumes, the nine layers are scanned axially, realizing fast 3-D imaging. In the imaging experiments, a mouse kidney sample of ~ 60 × 60 × 16 μm3 is visualized with on...
Super-resolution microscopies have become an established tool in biological research. However, imagi...
AbstractIn this article, we report a new type of fluorescence confocal microscope: frequency divisio...
One of the key frontiers in optical imaging is to maximize the spatial information retrieved from a ...
Due to the classical conflict between spatial and temporal resolution, microscopy studies of fast ev...
Fluorescence microscopy provides an unparalleled tool for imaging biological samples. However, produ...
Conventional acquisition of three-dimensional (3D) microscopy data requires sequential z scanning an...
Acquisition speed in high-resolution imaging in three dimensions (3D) remainsa major challenge in mo...
Microscopic techniques with high spatial and temporal resolution are required for in vivo studying b...
Super-resolution optical fluctuation imaging (SOFI) provides an elegant way of overcoming the diffra...
We developed a multiple light-sheet microscopy (MLSM) system capable of 3D fluorescence imaging. Emp...
Most methods to observe three-dimensional processes in living samples are based on imaging a single ...
We developed a multiple light-sheet microscopy (MLSM) system capable of 3D fluorescence imaging. Emp...
Super-resolution optical fluctuation imaging (SOFI) provides an elegant way of overcoming the diffra...
© 2021 The Authors. Advanced Photonics Research published by Wiley-VCH GmbH. This is an open access ...
Super-resolution fluorescence microscopy provides unprecedented insight into cellular and subcellula...
Super-resolution microscopies have become an established tool in biological research. However, imagi...
AbstractIn this article, we report a new type of fluorescence confocal microscope: frequency divisio...
One of the key frontiers in optical imaging is to maximize the spatial information retrieved from a ...
Due to the classical conflict between spatial and temporal resolution, microscopy studies of fast ev...
Fluorescence microscopy provides an unparalleled tool for imaging biological samples. However, produ...
Conventional acquisition of three-dimensional (3D) microscopy data requires sequential z scanning an...
Acquisition speed in high-resolution imaging in three dimensions (3D) remainsa major challenge in mo...
Microscopic techniques with high spatial and temporal resolution are required for in vivo studying b...
Super-resolution optical fluctuation imaging (SOFI) provides an elegant way of overcoming the diffra...
We developed a multiple light-sheet microscopy (MLSM) system capable of 3D fluorescence imaging. Emp...
Most methods to observe three-dimensional processes in living samples are based on imaging a single ...
We developed a multiple light-sheet microscopy (MLSM) system capable of 3D fluorescence imaging. Emp...
Super-resolution optical fluctuation imaging (SOFI) provides an elegant way of overcoming the diffra...
© 2021 The Authors. Advanced Photonics Research published by Wiley-VCH GmbH. This is an open access ...
Super-resolution fluorescence microscopy provides unprecedented insight into cellular and subcellula...
Super-resolution microscopies have become an established tool in biological research. However, imagi...
AbstractIn this article, we report a new type of fluorescence confocal microscope: frequency divisio...
One of the key frontiers in optical imaging is to maximize the spatial information retrieved from a ...