Investigation of biofilms and visualization using non-destructive imaging techniques like X-ray μCT has recently gained interest. Biofilms are congregations of microorganisms that attach to surfaces and comprise of microbial cells embedded in extracellular polymeric substances (EPS). They are ubiquitous entities that are commonly found in any non-sterile setting and have direct implications on human health. Methods to visualize them in-situ are highly needed to understand their behaviour (attachment and detachment) inside a substrate. Contrast-enhanced X-ray μCT is a 3D imaging technique that is capable of visualising objects that have very low attenuation contrast. The use of contrast agents in X-ray μCT has been an evolving process, howev...
International audienceIn this study, a new technique for three-dimensional imaging of biofilm within...
1. Introduction Bacteria colonize porous media and form biofilms affecting the material properties. ...
Graduation date: 2014This work focuses primarily the development of methods for imaging microbial bi...
Investigation of biofilms and visualization using non-destructive imaging techniques like X-ray μCT ...
Investigation of biofilms and visualization using non-destructive imaging techniques like X-ray μCT ...
Investigation of biofilms and visualization using non-destructive imaging techniques like X-ray μCT ...
Investigation of biofilms and visualization using non-destructive imaging techniques like X-ray μCT ...
X-ray tomography is a powerful tool giving access to the morphology of biofilms, in 3D porous media,...
X-ray tomography is a powerful tool giving access to the morphology of biofilms, in 3D porous media,...
X-ray tomography is a powerful tool giving access to the morphology of biofilms, in 3D porous media,...
X-ray tomography is a powerful tool giving access to the morphology of biofilms, in 3D porous media,...
X-ray tomography is a powerful tool giving access to the morphology of biofilms, in 3D porous media,...
International audienceIn this study, a new technique for three-dimensional imaging of biofilm within...
International audienceIn this study, a new technique for three-dimensional imaging of biofilm within...
International audienceIn this study, a new technique for three-dimensional imaging of biofilm within...
International audienceIn this study, a new technique for three-dimensional imaging of biofilm within...
1. Introduction Bacteria colonize porous media and form biofilms affecting the material properties. ...
Graduation date: 2014This work focuses primarily the development of methods for imaging microbial bi...
Investigation of biofilms and visualization using non-destructive imaging techniques like X-ray μCT ...
Investigation of biofilms and visualization using non-destructive imaging techniques like X-ray μCT ...
Investigation of biofilms and visualization using non-destructive imaging techniques like X-ray μCT ...
Investigation of biofilms and visualization using non-destructive imaging techniques like X-ray μCT ...
X-ray tomography is a powerful tool giving access to the morphology of biofilms, in 3D porous media,...
X-ray tomography is a powerful tool giving access to the morphology of biofilms, in 3D porous media,...
X-ray tomography is a powerful tool giving access to the morphology of biofilms, in 3D porous media,...
X-ray tomography is a powerful tool giving access to the morphology of biofilms, in 3D porous media,...
X-ray tomography is a powerful tool giving access to the morphology of biofilms, in 3D porous media,...
International audienceIn this study, a new technique for three-dimensional imaging of biofilm within...
International audienceIn this study, a new technique for three-dimensional imaging of biofilm within...
International audienceIn this study, a new technique for three-dimensional imaging of biofilm within...
International audienceIn this study, a new technique for three-dimensional imaging of biofilm within...
1. Introduction Bacteria colonize porous media and form biofilms affecting the material properties. ...
Graduation date: 2014This work focuses primarily the development of methods for imaging microbial bi...