Nuclear magnetic resonance is a powerful tool for probing the structures of chemical and biological systems. Combined with field gradients it leads to NMR imaging (MRI), a widespread tool in non-invasive examinations. Sensitivity usually limits MRI's spatial resolution to tens of micrometers, but other sources of information like those delivered by constrained diffusion processes, enable one extract morphological information down to micron and sub-micron scales. We report here on a new method that also exploits diffusion-isotropic or anisotropic-to sense morphological parameters in the nm-mm range, based on distributions of susceptibility-induced magnetic field gradients. A theoretical framework is developed to define this source of informa...
The quantification of brain white matter properties is a key area of application of Magnetic Resonan...
When a porous material is inserted into a uniform magnetic field, spatially varying fields typically...
When a porous material is inserted into a uniform magnetic field, spatially varying fields typically...
A high resolution NMR probe was modified with gradient coils (31 mm diameter) for the measurement of...
We introduce a nuclear magnetic resonance method for quantifying the shape of axially symmetric micr...
The contrast in diffusion-weighted MR images is due to variations of diffusion properties within the...
The contrast in diffusion-weighted MR images is due to variations of diffusion properties within the...
The contrast in diffusion-weighted MR images is due to variations of diffusion properties within the...
International audienceThis paper describes a new NMR imaging modality--MR diffusion tensor imaging. ...
When a porous material is inserted in a uniform magnetic field, spatially varying fields typically a...
This paper describes a new NMR imaging modality--MR diffusion tensor imaging. It consists of estimat...
The ability to characterize heterogeneous and anisotropic water diffusion processes within macroscop...
Linear magnetic field gradients are used in conventional magnetic resonance (MR) imaging in order to...
The study of diffusion anisotropy via diffusion NMR was pioneered 40 years ago in systems pertaining...
ABSTRACT This paper describes a new NMR imaging modality-MR diffusion tensor imaging. It consists of...
The quantification of brain white matter properties is a key area of application of Magnetic Resonan...
When a porous material is inserted into a uniform magnetic field, spatially varying fields typically...
When a porous material is inserted into a uniform magnetic field, spatially varying fields typically...
A high resolution NMR probe was modified with gradient coils (31 mm diameter) for the measurement of...
We introduce a nuclear magnetic resonance method for quantifying the shape of axially symmetric micr...
The contrast in diffusion-weighted MR images is due to variations of diffusion properties within the...
The contrast in diffusion-weighted MR images is due to variations of diffusion properties within the...
The contrast in diffusion-weighted MR images is due to variations of diffusion properties within the...
International audienceThis paper describes a new NMR imaging modality--MR diffusion tensor imaging. ...
When a porous material is inserted in a uniform magnetic field, spatially varying fields typically a...
This paper describes a new NMR imaging modality--MR diffusion tensor imaging. It consists of estimat...
The ability to characterize heterogeneous and anisotropic water diffusion processes within macroscop...
Linear magnetic field gradients are used in conventional magnetic resonance (MR) imaging in order to...
The study of diffusion anisotropy via diffusion NMR was pioneered 40 years ago in systems pertaining...
ABSTRACT This paper describes a new NMR imaging modality-MR diffusion tensor imaging. It consists of...
The quantification of brain white matter properties is a key area of application of Magnetic Resonan...
When a porous material is inserted into a uniform magnetic field, spatially varying fields typically...
When a porous material is inserted into a uniform magnetic field, spatially varying fields typically...