We present the design of a new scanning force microscope specially suited for the investigation of soft matter, particularly biological, in an ultrahigh vacuum. The key point is that the samples are immobilized by shock freezing in order to maintain their native structure before they are introduced into the vacuum system. The vacuum system itself consists of a transfer chamber, which allows an exchange of the cold sample with cryo-electron microscopes, a preparation chamber including a stage for in-situ freeze drying, freeze etching, or freeze fracturing, and the analysis chamber with the microscope. Sample cooling is maintained in all chambers. The microscope is mounted on a commercially available vibration isolation system; a flow cryosta...
The introduction of cryo-techniques to the focused ion-beam scanning electron microscope (FIB-SEM) h...
Laser scanning microscopy is emerging as a powerful imaging tool in cryobiology. The basic microscop...
We present an atomic force microscope ~AFM for operation at low temperatures under ultrahigh vacuum ...
In order to reduce radiation damage in observing biological specimens, a cryogenic sample stage for ...
In order to reduce radiation damage in observing biological specimens, new cryogenic sample stage fo...
Preparation of biological samples for transmission electron microscopy is not a trivial task. The sa...
Cryogenic microscopy methods have gained increasing popularity, as they offer an unaltered view on t...
A microbiopsy system for fast excision and transfer of biological specimens from donor to high-press...
A microbiopsy system for fast excision and transfer of biological specimens from donor to high-press...
A new low temperature, ultrahigh vacuum cryostat design has been developed for atomic force and scan...
A microbiopsy system was developed to overcome long sampling times for tissues before they are cryo-...
During the past year, scanning probe microscopy, especially atomic force microscopy (AFM), has taken...
Studying biological structures with fine details does not only require a microscope with high resolu...
Studying biological structures with fine details does not only require a microscope with high resolu...
Beamline P11 at PETRA III is dedicated to structural investigations of biological samples. It provid...
The introduction of cryo-techniques to the focused ion-beam scanning electron microscope (FIB-SEM) h...
Laser scanning microscopy is emerging as a powerful imaging tool in cryobiology. The basic microscop...
We present an atomic force microscope ~AFM for operation at low temperatures under ultrahigh vacuum ...
In order to reduce radiation damage in observing biological specimens, a cryogenic sample stage for ...
In order to reduce radiation damage in observing biological specimens, new cryogenic sample stage fo...
Preparation of biological samples for transmission electron microscopy is not a trivial task. The sa...
Cryogenic microscopy methods have gained increasing popularity, as they offer an unaltered view on t...
A microbiopsy system for fast excision and transfer of biological specimens from donor to high-press...
A microbiopsy system for fast excision and transfer of biological specimens from donor to high-press...
A new low temperature, ultrahigh vacuum cryostat design has been developed for atomic force and scan...
A microbiopsy system was developed to overcome long sampling times for tissues before they are cryo-...
During the past year, scanning probe microscopy, especially atomic force microscopy (AFM), has taken...
Studying biological structures with fine details does not only require a microscope with high resolu...
Studying biological structures with fine details does not only require a microscope with high resolu...
Beamline P11 at PETRA III is dedicated to structural investigations of biological samples. It provid...
The introduction of cryo-techniques to the focused ion-beam scanning electron microscope (FIB-SEM) h...
Laser scanning microscopy is emerging as a powerful imaging tool in cryobiology. The basic microscop...
We present an atomic force microscope ~AFM for operation at low temperatures under ultrahigh vacuum ...