International audienceThe main goal of this paper is to probe mechanical properties of living and dead bacteria via atomic force microscopy (AFM) indentation experimentations. Nevertheless, the prerequisite for bioAFM study is the adhesion of the biological sample on a surface. Although AFM has now been used in microbiology for 20 years, the immobilization of micro-organisms is still challenging. Immobilizing a single cell, without the need for chemical fixation has therefore constituted our second purpose. Highly ordered arrays of single living bacteria were generated over the millimeter scale by selective adsorption of bacteria onto micrometric chemical patterns. The chemically engineered template surfaces were prepared with a microcontac...
51 pages; 15figures; 3 tables, accepted for publication in PloS ONEInternational audienceWe present ...
The cell envelope of gram-negative bacteria is responsible for many important biological functions: ...
Knowledge of the surface properties of microbial cells is a key to gain a detailed understanding of ...
International audienceThe main goal of this paper is to probe mechanical properties of living and de...
Atomic force microscopy (AFM) holds great potential for studying the nanoscale surface structures of...
Atomic force microscopy (AFM) has emerged as a powerful technique for mapping the surface morphology...
This Master project was done in the Department of Physics at NTNU in the spring2013. The project foc...
Atomic force microscopy (AFM) has emerged as a powerful technique for mapping the surface morphology...
The application of atomic force microscopy (AFM) to probe the ultrastructure and physical properties...
The determination of the characteristics of micro-organisms in clinical specimens is essential for t...
The determination of the characteristics of micro-organisms in clinical specimens is essential for t...
In recent years it has been recognized that single cell studies with microbial cells, as compared to...
Greif D, Wesner D, Regtmeier J, Anselmetti D. High resolution imaging of surface patterns of single ...
Mechano-bactericidal nanomaterials rely on their mechanical or physical interactions with bacteria a...
Bacterial adhesion is the first step of biofilm formation that plays various roles in the environmen...
51 pages; 15figures; 3 tables, accepted for publication in PloS ONEInternational audienceWe present ...
The cell envelope of gram-negative bacteria is responsible for many important biological functions: ...
Knowledge of the surface properties of microbial cells is a key to gain a detailed understanding of ...
International audienceThe main goal of this paper is to probe mechanical properties of living and de...
Atomic force microscopy (AFM) holds great potential for studying the nanoscale surface structures of...
Atomic force microscopy (AFM) has emerged as a powerful technique for mapping the surface morphology...
This Master project was done in the Department of Physics at NTNU in the spring2013. The project foc...
Atomic force microscopy (AFM) has emerged as a powerful technique for mapping the surface morphology...
The application of atomic force microscopy (AFM) to probe the ultrastructure and physical properties...
The determination of the characteristics of micro-organisms in clinical specimens is essential for t...
The determination of the characteristics of micro-organisms in clinical specimens is essential for t...
In recent years it has been recognized that single cell studies with microbial cells, as compared to...
Greif D, Wesner D, Regtmeier J, Anselmetti D. High resolution imaging of surface patterns of single ...
Mechano-bactericidal nanomaterials rely on their mechanical or physical interactions with bacteria a...
Bacterial adhesion is the first step of biofilm formation that plays various roles in the environmen...
51 pages; 15figures; 3 tables, accepted for publication in PloS ONEInternational audienceWe present ...
The cell envelope of gram-negative bacteria is responsible for many important biological functions: ...
Knowledge of the surface properties of microbial cells is a key to gain a detailed understanding of ...