This paper presents a new experiment with which we are able to measure the 3D translational motion of a single particle at 10 μs time resolution and with ∼10 nm spatial resolution while at the same time determining the 3D orientation of the same single particle with 250 μs time resolution. These high time resolutions are ∼40 times greater than previous simultaneous measurements of 3D position and 3D orientation. Detailed numerical simulations and experiments are used to demonstrate that the technique can measure 3D orientation at the shot-noise limit. The microscope is also able to simultaneously measure the length or width (with the other assumed) of the plasmonic nanorods used here in situ and nondestructively, which should yield a greate...
86 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.We have developed a 3D single-...
Live cell imaging using metallic nanoparticles as tags is an emerging technique to visualize long an...
Single molecules (SMs) have become important tools for studying nanoscale dynamics in biological stu...
The key information about any nanoscale system relates to the orientations and conformations of its ...
In real time and space, four-dimensional electron microscopy (4D EM) has enabled observation of tran...
Coating a close-packed fluorescent colloid monolayer with a nanometer-thick metal film followed by s...
3D single particle tracking spectroscopy is a technique which allows a person to follow a freely dif...
point microscopy Abstract. We demonstrate high-resolution, high-speed 3D nanoparticle tracking using...
Superlocalization of single molecules and nanoparticles has become an essential procedure to bring n...
The overwhelming effort in the development of new microscopy methods has been focused on increasing ...
Single-particle and single-molecule orientation determination plays a vital role in deciphering nano...
We report an automated single particle tracking technique for tracking the x, y, z coordinates, azim...
We present a new, high-speed technique to track the three-dimensional translation and rotation of no...
We present a new, high-speed technique to track the three-dimensional translation and rotation of no...
Optical manipulation and imaging of nano‐objects with nanometer precision is highly desirable for na...
86 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.We have developed a 3D single-...
Live cell imaging using metallic nanoparticles as tags is an emerging technique to visualize long an...
Single molecules (SMs) have become important tools for studying nanoscale dynamics in biological stu...
The key information about any nanoscale system relates to the orientations and conformations of its ...
In real time and space, four-dimensional electron microscopy (4D EM) has enabled observation of tran...
Coating a close-packed fluorescent colloid monolayer with a nanometer-thick metal film followed by s...
3D single particle tracking spectroscopy is a technique which allows a person to follow a freely dif...
point microscopy Abstract. We demonstrate high-resolution, high-speed 3D nanoparticle tracking using...
Superlocalization of single molecules and nanoparticles has become an essential procedure to bring n...
The overwhelming effort in the development of new microscopy methods has been focused on increasing ...
Single-particle and single-molecule orientation determination plays a vital role in deciphering nano...
We report an automated single particle tracking technique for tracking the x, y, z coordinates, azim...
We present a new, high-speed technique to track the three-dimensional translation and rotation of no...
We present a new, high-speed technique to track the three-dimensional translation and rotation of no...
Optical manipulation and imaging of nano‐objects with nanometer precision is highly desirable for na...
86 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 2003.We have developed a 3D single-...
Live cell imaging using metallic nanoparticles as tags is an emerging technique to visualize long an...
Single molecules (SMs) have become important tools for studying nanoscale dynamics in biological stu...