While much is already known about the basic metabolism of bacterial cells, many fundamental questions are still surprisingly unanswered, including for instance how they generate and maintain specific cell shapes, establish polarity, segregate their genomes, and divide. In order to understand these phenomena, imaging technologies are needed that bridge the resolution gap between fluorescence light microscopy and higher-resolution methods such as X-ray crystallography and NMR spectroscopy. Electron cryotomography (ECT) is an emerging technology that does just this, allowing the ultrastructure of cells to be visualized in a near-native state, in three dimensions (3D), with macromolecular resolution (~4nm). In ECT, cells are imaged in a vitreou...
Electron cryotomography is an emerging technology that enables thin samples, including small intact ...
Electron cryotomography (ECT) can produce three-dimensional images of biological samples such as int...
Determining the three-dimensional structure of biomacromolecules at high resolution in their native ...
While much is already known about the basic metabolism of bacterial cells, many fundamental question...
While much is already known about the basic metabolism of bacterial cells, many fundamental question...
While much is already known about the basic metabolism of bacterial cells, many fundamental question...
Electron cryotomography (ECT) delivers 3D images of native structures inside intact cells with resol...
Electron cryotomography (ECT) delivers 3D images of native structures inside intact cells with resol...
Electron cryotomography (ECT) is an emerging technology that allows thin samples such as small bacte...
Electron cryotomography (ECT) provides three-dimensional views of macromolecular complexes inside ce...
Electron cryotomography (ECT) provides three-dimensional views of macromolecular complexes inside ce...
Electron cryotomography (ECT) provides three-dimensional views of macromolecular complexes inside ce...
Electron cryotomography (ECT) is an emerging technology that allows thin samples such as macromolecu...
Electron cryotomography (ECT) is an emerging technology that allows thin samples such as macromolecu...
Electron cryotomography (ECT) enables intact cells to be visualized in 3D in an essentially native s...
Electron cryotomography is an emerging technology that enables thin samples, including small intact ...
Electron cryotomography (ECT) can produce three-dimensional images of biological samples such as int...
Determining the three-dimensional structure of biomacromolecules at high resolution in their native ...
While much is already known about the basic metabolism of bacterial cells, many fundamental question...
While much is already known about the basic metabolism of bacterial cells, many fundamental question...
While much is already known about the basic metabolism of bacterial cells, many fundamental question...
Electron cryotomography (ECT) delivers 3D images of native structures inside intact cells with resol...
Electron cryotomography (ECT) delivers 3D images of native structures inside intact cells with resol...
Electron cryotomography (ECT) is an emerging technology that allows thin samples such as small bacte...
Electron cryotomography (ECT) provides three-dimensional views of macromolecular complexes inside ce...
Electron cryotomography (ECT) provides three-dimensional views of macromolecular complexes inside ce...
Electron cryotomography (ECT) provides three-dimensional views of macromolecular complexes inside ce...
Electron cryotomography (ECT) is an emerging technology that allows thin samples such as macromolecu...
Electron cryotomography (ECT) is an emerging technology that allows thin samples such as macromolecu...
Electron cryotomography (ECT) enables intact cells to be visualized in 3D in an essentially native s...
Electron cryotomography is an emerging technology that enables thin samples, including small intact ...
Electron cryotomography (ECT) can produce three-dimensional images of biological samples such as int...
Determining the three-dimensional structure of biomacromolecules at high resolution in their native ...