Transmission electron microscopy (TEM) has a profound impact on knowledge and understanding of bacteria and other microbial populations. The 1000-fold improvement in resolution provided by TEM has allowed visualization of bacterial cells. Of all the types of microscopy exploited to date, TEM is the one with the most advantageous resolution limit and therefore it is a very efficient technique for deciphering the cell architecture and relating it to function. This visual experiment aims to provide an overview of the most important technique, TEM that we can apply to a biological sample, tissue or cells, to observe it with an internal structure, from the most conventional to the latest generation. Processes and concepts are defined, and the ad...
A protocol was developed to visualize and analyze the structure of membrane vesicles (MVs) from Gram...
This lecture from the iBioSeminars project is presented by Eva Nogales Molecular Cell Biology Profes...
It is now possible to visualize at nanometer resolution the infection of a living biological cell wi...
Transmission electron microscopy (TEM) has a profound impact on knowledge and understanding of bacte...
Abstract. Transmission electron microscopy is a proven technique in the field of cell biology and a ...
Transmission electron microscopy is a proven technique in the field of cell biology and a very usefu...
Researchers have used transmission electron microscopy (TEM) to make contributions to cell biology f...
Electron cryotomography (ECT) delivers 3D images of native structures inside intact cells with resol...
Some bacteria are amongst the most important model organisms for biology and medicine. Here we revie...
Some bacteria are amongst the most important model organisms for biology and medicine. Here we revi...
The first useful applications of the electron microscope to biology were quite naturally made upon o...
Wet scanning-transmission electron microscopy (STEM) is a technique that allows high-resolution tran...
[出版社版]Various techniques for electron microscopy have been developed and applied to many fields of b...
Structural biology aims at the visualization of microscopic biological structures with the ultimate ...
International audienceTransmission Electron Microscopy (TEM) is currently the only method that enabl...
A protocol was developed to visualize and analyze the structure of membrane vesicles (MVs) from Gram...
This lecture from the iBioSeminars project is presented by Eva Nogales Molecular Cell Biology Profes...
It is now possible to visualize at nanometer resolution the infection of a living biological cell wi...
Transmission electron microscopy (TEM) has a profound impact on knowledge and understanding of bacte...
Abstract. Transmission electron microscopy is a proven technique in the field of cell biology and a ...
Transmission electron microscopy is a proven technique in the field of cell biology and a very usefu...
Researchers have used transmission electron microscopy (TEM) to make contributions to cell biology f...
Electron cryotomography (ECT) delivers 3D images of native structures inside intact cells with resol...
Some bacteria are amongst the most important model organisms for biology and medicine. Here we revie...
Some bacteria are amongst the most important model organisms for biology and medicine. Here we revi...
The first useful applications of the electron microscope to biology were quite naturally made upon o...
Wet scanning-transmission electron microscopy (STEM) is a technique that allows high-resolution tran...
[出版社版]Various techniques for electron microscopy have been developed and applied to many fields of b...
Structural biology aims at the visualization of microscopic biological structures with the ultimate ...
International audienceTransmission Electron Microscopy (TEM) is currently the only method that enabl...
A protocol was developed to visualize and analyze the structure of membrane vesicles (MVs) from Gram...
This lecture from the iBioSeminars project is presented by Eva Nogales Molecular Cell Biology Profes...
It is now possible to visualize at nanometer resolution the infection of a living biological cell wi...