Bacterial adhesion to substratum surfaces is determined by the combined action of a large number of different interactions, which have hitherto been inferred from macroscopic cell surface properties, such as electrostatic double-layer forces, hydrophobic interactions, hydrogen bonding, and steric interactions. The origin of these interactions arises from a molecular level, but nevertheless they have always been estimated from a macroscopic point of view. The macroscopic bacterial cell surface hydrophobicity, for instance, is commonly inferred from water contact angles on bacterial lawns, and cell surface charge is macroscopically determined by electrophoresis or titration methods. Although these macroscopic properties of bacteria have been ...
This thesis represents a further attempt to correlate microscopic surface properties of bacterial ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Knowledge of the surface properties of microbial cells is a key to gain a detailed understanding of ...
Bacterial adhesion to substratum surfaces is determined by the combined action of a large number of ...
Bacterial adhesion to substratum surfaces is determined by the combined action of a large number of ...
Bacterial adhesion to substratum surfaces is determined by the combined action of a large number of ...
Bacterial adhesion to substratum surfaces is determined by the combined action of a large number of ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
This thesis represents a further attempt to correlate microscopic surface properties of bacterial ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Knowledge of the surface properties of microbial cells is a key to gain a detailed understanding of ...
Bacterial adhesion to substratum surfaces is determined by the combined action of a large number of ...
Bacterial adhesion to substratum surfaces is determined by the combined action of a large number of ...
Bacterial adhesion to substratum surfaces is determined by the combined action of a large number of ...
Bacterial adhesion to substratum surfaces is determined by the combined action of a large number of ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
This thesis represents a further attempt to correlate microscopic surface properties of bacterial ...
Application of physico-chemical models to describe bacterial adhesion to surfaces has hitherto only ...
Knowledge of the surface properties of microbial cells is a key to gain a detailed understanding of ...