Cryoelectron microsopy is a widely used technique to observe biological material in an almost physiological, fully hydrated state. The sample is prepared for electron microsopy observation by quickly reducing its temperature to -180 degrees C. The high-speed cooling induces the formation of vitreous water, which preserves the sample conformation. However, the way vitrification occurs is still poorly understood. In order to better understand the phenomenon, we have used a stroboscopic device to visualize the interaction between the electron microscopy grid and the cryogen. By blocking the free fall of the plunger once the grid has penetrated the coolant by half its diameter, we have elucidated the way in which vitrification propagates. The f...
We investigated the possibility of vitrifying temperature‐sensitive lipid phases as well as (small) ...
As cryo-EM approaches the physical resolution limits imposed by electron optics and radiation damage...
Rapid freezing has long promised the most faithful structural presentation of biological material fo...
Cryoelectron microsopy is a widely used technique to observe biological material in an almost physio...
Summary Cryoelectron microsopy is a widely used technique to observe biological material in an almos...
In the process of vitrifying aqueous suspensions for cryotransmission electron microscopy, water is ...
Water is the most abundant component of biological material, but it is systematically excluded from ...
Preparation of biological samples for transmission electron microscopy is not a trivial task. The sa...
Cryo-electron microscopy of vitrified specimens was just emerging as a practical method when Richard...
Since the beginning of the 1980s, cryo-electron microscopy of a thin film of vitrified aqueous suspe...
L'eau liquide peut être aisément vitrifiée en une forme favorable à la cryo-microscopie électronique...
Electron cryotomography is the highest-resolution structural technique currently available that can ...
The preparation and high resolution observation of frozen hydrated thin sections has been studied by...
Cryoultramicrotomy allows the sectioning of vitrified biological samples. These biological samples a...
We investigated the possibility of vitrifying temperature‐sensitive lipid phases as well as (small) ...
We investigated the possibility of vitrifying temperature‐sensitive lipid phases as well as (small) ...
As cryo-EM approaches the physical resolution limits imposed by electron optics and radiation damage...
Rapid freezing has long promised the most faithful structural presentation of biological material fo...
Cryoelectron microsopy is a widely used technique to observe biological material in an almost physio...
Summary Cryoelectron microsopy is a widely used technique to observe biological material in an almos...
In the process of vitrifying aqueous suspensions for cryotransmission electron microscopy, water is ...
Water is the most abundant component of biological material, but it is systematically excluded from ...
Preparation of biological samples for transmission electron microscopy is not a trivial task. The sa...
Cryo-electron microscopy of vitrified specimens was just emerging as a practical method when Richard...
Since the beginning of the 1980s, cryo-electron microscopy of a thin film of vitrified aqueous suspe...
L'eau liquide peut être aisément vitrifiée en une forme favorable à la cryo-microscopie électronique...
Electron cryotomography is the highest-resolution structural technique currently available that can ...
The preparation and high resolution observation of frozen hydrated thin sections has been studied by...
Cryoultramicrotomy allows the sectioning of vitrified biological samples. These biological samples a...
We investigated the possibility of vitrifying temperature‐sensitive lipid phases as well as (small) ...
We investigated the possibility of vitrifying temperature‐sensitive lipid phases as well as (small) ...
As cryo-EM approaches the physical resolution limits imposed by electron optics and radiation damage...
Rapid freezing has long promised the most faithful structural presentation of biological material fo...