We provide a stand-alone software, the BioAFMviewer, which transforms biomolecular structures into the graphical representation corresponding to the outcome of atomic force microscopy (AFM) experiments. The AFM graphics is obtained by performing simulated scanning over the molecular structure encoded in the corresponding PDB file. A versatile molecular viewer integrates the visualization of PDB structures and control over their orientation, while synchronized simulated scanning with variable spatial resolution and tip-shape geometry produces the corresponding AFM graphics. We demonstrate the applicability of the BioAFMviewer by comparing simulated AFM graphics to high-speed AFM observations of proteins. The software can furthermore process ...
The Atomic Force Microscope is a type of high-resolution Scanning Probe Microscope where the image r...
This thesis is concerned with the investigation of structure and dynamics of biological macromolecul...
Single molecule experiments provide insight into the individuality of biological macromolecules, the...
: Atomic force microscopy (AFM) can visualize the dynamics of single biomolecules under near-physiol...
In this thesis a dedicated Atomic Force Microscopy (AFM) setup is used for imaging biochemical react...
The application of atomic force microscopy (AFM) for functional imaging and manipulating biomolecule...
Atomic force microscopy (AFM) has become a well-established technique for imaging single biomacromol...
The atomic force microscope (AFM) has a unique capability of allowing the high-resolution imaging of...
The atomic force microscope (AFM) provides a powerful instrument for investigating and manipulating ...
Here we discuss the experimental approaches that have allowed high resolution atomic force microscop...
To study the structure, function, and interactions of proteins, a plethora of techniques is availabl...
International audienceAtomic Force Microscopy is now widely used to explore biological questions1....
Imaging of nano-sized particles and sample features is crucial in a variety of research fields. For ...
In the life sciences, it has long been a dream to view the nanometer-scale dynamic behavior of indiv...
Atomic force microscopy (AFM) is a promising tool to visualize biomolecules at the sub-nanometer sca...
The Atomic Force Microscope is a type of high-resolution Scanning Probe Microscope where the image r...
This thesis is concerned with the investigation of structure and dynamics of biological macromolecul...
Single molecule experiments provide insight into the individuality of biological macromolecules, the...
: Atomic force microscopy (AFM) can visualize the dynamics of single biomolecules under near-physiol...
In this thesis a dedicated Atomic Force Microscopy (AFM) setup is used for imaging biochemical react...
The application of atomic force microscopy (AFM) for functional imaging and manipulating biomolecule...
Atomic force microscopy (AFM) has become a well-established technique for imaging single biomacromol...
The atomic force microscope (AFM) has a unique capability of allowing the high-resolution imaging of...
The atomic force microscope (AFM) provides a powerful instrument for investigating and manipulating ...
Here we discuss the experimental approaches that have allowed high resolution atomic force microscop...
To study the structure, function, and interactions of proteins, a plethora of techniques is availabl...
International audienceAtomic Force Microscopy is now widely used to explore biological questions1....
Imaging of nano-sized particles and sample features is crucial in a variety of research fields. For ...
In the life sciences, it has long been a dream to view the nanometer-scale dynamic behavior of indiv...
Atomic force microscopy (AFM) is a promising tool to visualize biomolecules at the sub-nanometer sca...
The Atomic Force Microscope is a type of high-resolution Scanning Probe Microscope where the image r...
This thesis is concerned with the investigation of structure and dynamics of biological macromolecul...
Single molecule experiments provide insight into the individuality of biological macromolecules, the...