We present a novel 3D tracking approach capable of locating single particles with nanometric precision over wide axial ranges. Our method uses a fast acousto-optic liquid lens implemented in a bright field microscope to multiplex light based on color into different and selectable focal planes. By separating the red, green, and blue channels from an image captured with a color camera, information from up to three focal planes can be retrieved. Multiplane information from the particle diffraction rings enables precisely locating and tracking individual objects up to an axial range about 5 times larger than conventional single-plane approaches. We apply our method to the 3D visualization of the well-known coffee-stain phenomenon in evaporating...
We developed a new method for real-time, three-dimensional tracking of fluorescent particles. The in...
A new single-aperture 3D particle-localization and tracking technique is presented that demonstrates...
86 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.We have developed a 3D single-...
The precise localization of nanometric objects in three dimensions is essential to identify function...
The precise localization of nanometric objects in three dimensions is essential to identify function...
The precise localization of nanometric objects in three dimensions is essential to identify function...
Multifocal plane microscopy allows for capturing images at different focal planes simultaneously. Us...
Multifocal plane microscopy allows for capturing images at different focal planes simultaneously. Us...
Three-dimensional tracking of 1 µm beads in an evaporating drop of a water. Originally published in ...
We present a novel optical technique for three-dimensional tracking of single fluorescent particles ...
Recent technological advances have rendered widefield fluorescence microscopy as an invaluable tool ...
A new single-aperture 3D particle-localization and tracking technique is presented that demonstrates...
Tracking of single particles in optical microscopy has been employed in studies ranging from materia...
We have developed a 3D single-particle-tracking (SPT) system based around the two-photon laser-scann...
86 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.We have developed a 3D single-...
We developed a new method for real-time, three-dimensional tracking of fluorescent particles. The in...
A new single-aperture 3D particle-localization and tracking technique is presented that demonstrates...
86 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.We have developed a 3D single-...
The precise localization of nanometric objects in three dimensions is essential to identify function...
The precise localization of nanometric objects in three dimensions is essential to identify function...
The precise localization of nanometric objects in three dimensions is essential to identify function...
Multifocal plane microscopy allows for capturing images at different focal planes simultaneously. Us...
Multifocal plane microscopy allows for capturing images at different focal planes simultaneously. Us...
Three-dimensional tracking of 1 µm beads in an evaporating drop of a water. Originally published in ...
We present a novel optical technique for three-dimensional tracking of single fluorescent particles ...
Recent technological advances have rendered widefield fluorescence microscopy as an invaluable tool ...
A new single-aperture 3D particle-localization and tracking technique is presented that demonstrates...
Tracking of single particles in optical microscopy has been employed in studies ranging from materia...
We have developed a 3D single-particle-tracking (SPT) system based around the two-photon laser-scann...
86 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.We have developed a 3D single-...
We developed a new method for real-time, three-dimensional tracking of fluorescent particles. The in...
A new single-aperture 3D particle-localization and tracking technique is presented that demonstrates...
86 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.We have developed a 3D single-...