The demand for high-throughput electron tomography is rapidly increasing in biological and material sciences. However, this 3D imaging technique is computationally bottlenecked by alignment and reconstruction which runs from hours to days. We demonstrate real-time tomography with dynamic 3D tomographic visualization to enable rapid interpretation of specimen structure immediately as data is collected on an electron microscope. Using geometrically complex chiral nanoparticles, we show volumetric interpretation can begin in less than 10 minutes and a high-quality tomogram is available within 30 minutes. Real-time tomography is integrated into tomviz, an open-source and cross-platform 3D data analysis tool that contains intuitive graphical use...
Cryo-electron microscopy enables high-resolution imaging for both protein structure determination an...
In this paper, we propose a 3D visualization method for ultra-high voltage electron microscope tomog...
Electron tomography is a 3D non-destructive nano-characterization technique. It is an essential tech...
The demand for high-throughput electron tomography is rapidly increasing in biological and material ...
A detailed 3D investigation of nanoparticles at a local scale is of great importance to connect thei...
Three-dimensional (3D) structural analysis is essential to understand the relationship between the s...
Electron tomography (ET) has become a well-established technique to visualize nanomaterials in three...
Transmission electron microscopy allows the collection of multiple views of specimens and their comp...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
Three-dimensional (3D) tomography using electrons and x-rays has pushed and expanded our understandi...
A detailed 3D investigation of nanoparticles at a local scale is of great importance to connect thei...
Electron tomography in materials science has flourished with the demand to characterize nanoscale ma...
Electron tomography provides three-dimensional (3D) imaging of noncrystalline and crystalline equili...
Electron tomography was originally developed in 1968, and has been primarily applied to determine th...
With electron tomography, we can reconstruct a threedimensional(3D) volume of a specimen from a seri...
Cryo-electron microscopy enables high-resolution imaging for both protein structure determination an...
In this paper, we propose a 3D visualization method for ultra-high voltage electron microscope tomog...
Electron tomography is a 3D non-destructive nano-characterization technique. It is an essential tech...
The demand for high-throughput electron tomography is rapidly increasing in biological and material ...
A detailed 3D investigation of nanoparticles at a local scale is of great importance to connect thei...
Three-dimensional (3D) structural analysis is essential to understand the relationship between the s...
Electron tomography (ET) has become a well-established technique to visualize nanomaterials in three...
Transmission electron microscopy allows the collection of multiple views of specimens and their comp...
Over the last two decades, electron tomography, the combination of tomographic methods and transmiss...
Three-dimensional (3D) tomography using electrons and x-rays has pushed and expanded our understandi...
A detailed 3D investigation of nanoparticles at a local scale is of great importance to connect thei...
Electron tomography in materials science has flourished with the demand to characterize nanoscale ma...
Electron tomography provides three-dimensional (3D) imaging of noncrystalline and crystalline equili...
Electron tomography was originally developed in 1968, and has been primarily applied to determine th...
With electron tomography, we can reconstruct a threedimensional(3D) volume of a specimen from a seri...
Cryo-electron microscopy enables high-resolution imaging for both protein structure determination an...
In this paper, we propose a 3D visualization method for ultra-high voltage electron microscope tomog...
Electron tomography is a 3D non-destructive nano-characterization technique. It is an essential tech...