The determination of the characteristics of micro-organisms in clinical specimens is essential for the rapid diagnosis and treatment of infections. A thorough investigation of the nanoscale properties of bacteria can prove to be a fundamental tool. Indeed, in the latest years, the importance of high resolution analysis of the properties of microbial cell surfaces has been increasingly recognized. Among the techniques available to observe at high resolution specific properties of microscopic samples, the Atomic Force Microscope (AFM) is the most widely used instrument capable to perform morphological and mechanical characterizations of living biological systems. Indeed, AFM can routinely study single cells in physiological conditions and can...
P>Although much is known about the structure and biosynthesis of microbial cell envelope constituent...
Structural Biology (SB) techniques are particularly successful in solving virus structures. Taking a...
In recent years, the atomic force microscope (AFM) has greatly improved our understanding of microbi...
The determination of the characteristics of micro-organisms in clinical specimens is essential for t...
In the latest years the importance of high resolution analysis of the microbial cell surface has bee...
The cell envelope of gram-negative bacteria is responsible for many important biological functions: ...
Stiffness tomography is a new atomic force microscopy imaging technique that allows highlighting str...
The application of atomic force microscopy (AFM) to probe the ultrastructure and physical properties...
Structural Biology (SB) techniques are particularly successful in solving virus structures. Taking a...
<div><p>Structural Biology (SB) techniques are particularly successful in solving virus structures. ...
The atomic force microscope is a widely used surface scanning apparatus capable of reconstructing at...
International audienceThe main goal of this paper is to probe mechanical properties of living and de...
[[abstract]]In this study, the feasibility using atomic force microscopy (AFM) to study the interact...
Bacterial mechanical properties (cell wall stiffness and turgor) are important factors for bacterial...
International audiencePrecise localization and biophysical characterization of cellular structures i...
P>Although much is known about the structure and biosynthesis of microbial cell envelope constituent...
Structural Biology (SB) techniques are particularly successful in solving virus structures. Taking a...
In recent years, the atomic force microscope (AFM) has greatly improved our understanding of microbi...
The determination of the characteristics of micro-organisms in clinical specimens is essential for t...
In the latest years the importance of high resolution analysis of the microbial cell surface has bee...
The cell envelope of gram-negative bacteria is responsible for many important biological functions: ...
Stiffness tomography is a new atomic force microscopy imaging technique that allows highlighting str...
The application of atomic force microscopy (AFM) to probe the ultrastructure and physical properties...
Structural Biology (SB) techniques are particularly successful in solving virus structures. Taking a...
<div><p>Structural Biology (SB) techniques are particularly successful in solving virus structures. ...
The atomic force microscope is a widely used surface scanning apparatus capable of reconstructing at...
International audienceThe main goal of this paper is to probe mechanical properties of living and de...
[[abstract]]In this study, the feasibility using atomic force microscopy (AFM) to study the interact...
Bacterial mechanical properties (cell wall stiffness and turgor) are important factors for bacterial...
International audiencePrecise localization and biophysical characterization of cellular structures i...
P>Although much is known about the structure and biosynthesis of microbial cell envelope constituent...
Structural Biology (SB) techniques are particularly successful in solving virus structures. Taking a...
In recent years, the atomic force microscope (AFM) has greatly improved our understanding of microbi...