ABSTRACT Neutron imaging has been employed in life sciences in recent years and has proven to be a viable technique for studying internal features without compromising integrity and internal structure of samples in addition to being complementary to other methods such as X-ray or magnetic resonance imaging. Within the last decade, a neutron imaging beamline, IMAT, was designed and built at the ISIS Neutron and Muon Source, UK, to meet the increasing demand for neutron imaging applications in various fields spanning from materials engineering to biology. In this paper, we present the first neutron imaging experiments on different biological samples during the scientific commissioning of the IMAT beamline mainly intended to explore the beamli...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
Neutron imaging has been employed in life sciences in recent years and has proven to be a viable tec...
Neutron imaging has been employed in life sciences in recent years and has proven to be a viable tec...
Neutron imaging has been employed in life sciences in recent years and has proven to be a viable tec...
The focus of this article is on further improvements of methods in neutron imaging: the increased sp...
Neutron imaging as a method for non-destructive studies takes advantage of the alternative contrast ...
AbstractA new facility for combined neutron imaging and neutron diffraction called IMAT is currently...
A combined neutron imaging and diffraction facility, IMAT (Imaging and Materials Science & Engineeri...
Neutron imaging and tomography allow observing the structure of large objects (from few to hundred c...
Neutron imaging and tomography allow observing the structure of large objects (from few to hundred c...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
Neutron imaging has been employed in life sciences in recent years and has proven to be a viable tec...
Neutron imaging has been employed in life sciences in recent years and has proven to be a viable tec...
Neutron imaging has been employed in life sciences in recent years and has proven to be a viable tec...
The focus of this article is on further improvements of methods in neutron imaging: the increased sp...
Neutron imaging as a method for non-destructive studies takes advantage of the alternative contrast ...
AbstractA new facility for combined neutron imaging and neutron diffraction called IMAT is currently...
A combined neutron imaging and diffraction facility, IMAT (Imaging and Materials Science & Engineeri...
Neutron imaging and tomography allow observing the structure of large objects (from few to hundred c...
Neutron imaging and tomography allow observing the structure of large objects (from few to hundred c...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...
International audienceNeutron imaging and tomography allow observing the structure of large...