The conduction velocity (CV) of action potentials along axons is a key neurophysiological property central to neural communication. The ability to estimate CV in humans in vivo from non-invasive MRI methods would therefore represent a significant advance in neuroscience. However, there are two major challenges that this paper aims to address: (1) Much of the complexity of the neurophysiology of action potentials cannot be captured with currently available MRI techniques. Therefore, we seek to establish the variability in CV that can be captured when predicting CV purely from parameters that have been reported to be estimatable from MRI: inner axon diameter (AD) and g-ratio. (2) errors inherent in existing MRI-based biophysical models of tis...
Axon radius and packing density provide information on the role and performance of white-matter path...
Axonal density and diameter are two fundamental properties of brain white matter. Recently, advanced...
Synopsis The estimation of neural micro-structure in general and axon diameter in particular became ...
The conduction velocity (CV) of action potentials along axons is a key neurophysiological property c...
Axon caliber plays a crucial role in determining conduction velocity and, consequently, in the timin...
The noninvasive quantification of axonal morphology is an exciting avenue for gaining understanding ...
Data were provided by the Human Connectome Project (HCP), WU-MinnConsortium (Principal Investigato...
Axon radius is a potential biomarker for brain diseases and a crucial tissue microstructure paramete...
Network models based on structural connectivity have been increasingly used as the blueprint for lar...
PURPOSE: Diffusion MRI has recently been used with detailed models to probe tissue microstructure. M...
The feasibility of non-invasive axonal diameter quantification with diffusion MRI is a strongly deba...
By modelling the average activity of large neuronal populations, continuum mean field models (MFMs) ...
Tissue microstructure features, namely axon radius and volume fraction, provide important informatio...
New methods for the analysis of electrically-evoked compound action potentials (eCAPs) are described...
Contains fulltext : 88463.pdf (publisher's version ) (Open Access)By modelling the...
Axon radius and packing density provide information on the role and performance of white-matter path...
Axonal density and diameter are two fundamental properties of brain white matter. Recently, advanced...
Synopsis The estimation of neural micro-structure in general and axon diameter in particular became ...
The conduction velocity (CV) of action potentials along axons is a key neurophysiological property c...
Axon caliber plays a crucial role in determining conduction velocity and, consequently, in the timin...
The noninvasive quantification of axonal morphology is an exciting avenue for gaining understanding ...
Data were provided by the Human Connectome Project (HCP), WU-MinnConsortium (Principal Investigato...
Axon radius is a potential biomarker for brain diseases and a crucial tissue microstructure paramete...
Network models based on structural connectivity have been increasingly used as the blueprint for lar...
PURPOSE: Diffusion MRI has recently been used with detailed models to probe tissue microstructure. M...
The feasibility of non-invasive axonal diameter quantification with diffusion MRI is a strongly deba...
By modelling the average activity of large neuronal populations, continuum mean field models (MFMs) ...
Tissue microstructure features, namely axon radius and volume fraction, provide important informatio...
New methods for the analysis of electrically-evoked compound action potentials (eCAPs) are described...
Contains fulltext : 88463.pdf (publisher's version ) (Open Access)By modelling the...
Axon radius and packing density provide information on the role and performance of white-matter path...
Axonal density and diameter are two fundamental properties of brain white matter. Recently, advanced...
Synopsis The estimation of neural micro-structure in general and axon diameter in particular became ...