The diameter of a myelinated nerve axon is directly proportional to its conduction velocity, so the axon diameter distribution helps determine the channel capacity of nervous transmission along fascicles in the central (CNS) and peripheral nervous systems (PNS). Previously, this histological information could only be obtained using invasive tissue biopsies. Here we propose a new NMR-based approach that employs a model of water diffusion within “restricted” cylindrical axons to estimate their diameter distribution within a nerve bundle. This approach can be combined with MRI to furnish an estimate of the axon diameter distribution within each voxel. This method is validated by comparing the diameter distributions measured using the NMR and h...
Diffusion Magnetic Resonance Imaging (dMRI) has beenused to infer the axon diameter of the tissues u...
International audienceAxon diameter estimation has been a focus of the diffusion MRI community for t...
Diffusion imaging enables microscopic assessment of tissue structure by measuring the displacement o...
The diameter of a myelinated nerve axon is directly proportional to its conduction velocity, so the ...
The diameter of myelinated axons is a key neurophysiological parameter since it is directly proporti...
Axon diameter plays a key role in the function and performance of nerve pathways of the central and ...
Here, we present the first in vivo non-invasive measurement of the axon diameter distribution in the...
Here, we present the first in vivo non-invasive measurement of the axon diameter distribution in the...
Here, we present the first in vivo non-invasive measurement of the axon diameter distribution in the...
Here, we present the first in vivo non-invasive measurement of the axon diameter distribution in the...
\u3cp\u3eAxon diameter estimation has been a focus of the diffusion MRI community for the past decad...
Synopsis The estimation of neural micro-structure in general and axon diameter in particular became ...
Synopsis The estimation of neural micro-structure in general and axon diameter in particular became ...
Synopsis The estimation of neural micro-structure in general and axon diameter in particular became ...
Diffusion-weighted NMR spectroscopy (MRS) was performed on isolated bovine optic nerve and rat brain...
Diffusion Magnetic Resonance Imaging (dMRI) has beenused to infer the axon diameter of the tissues u...
International audienceAxon diameter estimation has been a focus of the diffusion MRI community for t...
Diffusion imaging enables microscopic assessment of tissue structure by measuring the displacement o...
The diameter of a myelinated nerve axon is directly proportional to its conduction velocity, so the ...
The diameter of myelinated axons is a key neurophysiological parameter since it is directly proporti...
Axon diameter plays a key role in the function and performance of nerve pathways of the central and ...
Here, we present the first in vivo non-invasive measurement of the axon diameter distribution in the...
Here, we present the first in vivo non-invasive measurement of the axon diameter distribution in the...
Here, we present the first in vivo non-invasive measurement of the axon diameter distribution in the...
Here, we present the first in vivo non-invasive measurement of the axon diameter distribution in the...
\u3cp\u3eAxon diameter estimation has been a focus of the diffusion MRI community for the past decad...
Synopsis The estimation of neural micro-structure in general and axon diameter in particular became ...
Synopsis The estimation of neural micro-structure in general and axon diameter in particular became ...
Synopsis The estimation of neural micro-structure in general and axon diameter in particular became ...
Diffusion-weighted NMR spectroscopy (MRS) was performed on isolated bovine optic nerve and rat brain...
Diffusion Magnetic Resonance Imaging (dMRI) has beenused to infer the axon diameter of the tissues u...
International audienceAxon diameter estimation has been a focus of the diffusion MRI community for t...
Diffusion imaging enables microscopic assessment of tissue structure by measuring the displacement o...