AbstractReconstructed volumes generated by tilt-image electron-microscope tomography offer the best spatial resolution currently available for studying cell structures in situ. Analysis is often accomplished by creating surface models that delineate grayscale contrast boundaries. Here, we introduce a specialized and convenient sequence of segmentation operations for making such models that greatly improves their reliability and spatial resolution as compared to current approaches, providing a basis for making accurate measurements. To assess the reliability of the surface models, we introduce a spatial uncertainty measurement based on grayscale gradient scale length. The model generation and measurement methods are validated by applying the...
Electron tomography is the only technique available that allows us to visualize the three-dimensiona...
Mapping neuroanatomy, in the pursuit of linking hypothesized computational models consistent with ob...
Abstract—Kinetochore microtubules (KMTs) and the associated plus-ends have been areas of intense inv...
AbstractReconstructed volumes generated by tilt-image electron-microscope tomography offer the best ...
al., 1997). Although this method reveals the general shape and organization of logically distinct ce...
Electron tomography (ET) of biological samples is used to study the organization and the structure o...
Advances in electron microscopy (EM) allow for structure determination of large macromolecular machi...
Transmission electron microscopy allows the collection of multiple views of specimens and their comp...
Electron tomography (ET) of biological samples is used to study the organization and the structure o...
Electron tomography provides opportunities to determine three-dimensional cellular architecture at r...
In this paper, we propose a 3D visualization method for ultra-high voltage electron microscope tomog...
Because of the significance of electron microscope tomography in the investigation of biological str...
Electron tomography is a powerful tool that is widely used in materials science to unravel the 3D mo...
Electron tomography is a powerful tool that is widely used in materials science to unravel the 3D mo...
Electron tomography enables three-dimensional (3D) visualization and analysis of the subcellular arc...
Electron tomography is the only technique available that allows us to visualize the three-dimensiona...
Mapping neuroanatomy, in the pursuit of linking hypothesized computational models consistent with ob...
Abstract—Kinetochore microtubules (KMTs) and the associated plus-ends have been areas of intense inv...
AbstractReconstructed volumes generated by tilt-image electron-microscope tomography offer the best ...
al., 1997). Although this method reveals the general shape and organization of logically distinct ce...
Electron tomography (ET) of biological samples is used to study the organization and the structure o...
Advances in electron microscopy (EM) allow for structure determination of large macromolecular machi...
Transmission electron microscopy allows the collection of multiple views of specimens and their comp...
Electron tomography (ET) of biological samples is used to study the organization and the structure o...
Electron tomography provides opportunities to determine three-dimensional cellular architecture at r...
In this paper, we propose a 3D visualization method for ultra-high voltage electron microscope tomog...
Because of the significance of electron microscope tomography in the investigation of biological str...
Electron tomography is a powerful tool that is widely used in materials science to unravel the 3D mo...
Electron tomography is a powerful tool that is widely used in materials science to unravel the 3D mo...
Electron tomography enables three-dimensional (3D) visualization and analysis of the subcellular arc...
Electron tomography is the only technique available that allows us to visualize the three-dimensiona...
Mapping neuroanatomy, in the pursuit of linking hypothesized computational models consistent with ob...
Abstract—Kinetochore microtubules (KMTs) and the associated plus-ends have been areas of intense inv...