Post-mortem diffusion MRI (dMRI) enables acquisitions of structural imaging data with otherwise unreachable resolutions - at the expense of longer scanning times. These data are typically acquired using highly segmented image acquisition strategies, thereby resulting in an incomplete signal decay before the MRI encoding continues. Especially in dMRI, with low signal intensities and lengthy contrast encoding, such temporal inefficiency translates into reduced image quality and longer scanning times. This study introduces Multi Echo (ME) acquisitions to dMRI on a human MRI system - a time-efficient approach, which increases SNR (Signal-to-Noise Ratio) and reduces noise bias for dMRI images. The benefit of the introduced ME-dMRI method was val...
Diffusion weighted MRI (DWI) is sensitive to the Brownian motion of the intra- and extra-cellular wa...
Purpose: Advanced diffusion magnetic resonance imaging benefits from collecting as much data as is f...
Thesis (Ph. D.)--University of Rochester. Dept. of Electrical and Computer Engineering, 2009.Magneti...
Post-mortem diffusion MRI (dMRI) enables high SNR (signal-to-noise ratio) images with high spatial r...
International audiencePost-mortem diffusion MRI (dMRI) enables acquisitions of structural imaging da...
Ex-vivo dMRI acquisitions achieve very high resolutions from increased SNR at the cost of prolonged ...
We provide a novel method to increase SNR of segmented diffusion-weighted EPI acquisitions. Multiple...
Diffusion MRI (dMRI) provides invaluable information for the study of tissue microstructure and brai...
2018-10-08Diffusion MRI (dMRI) has the unique ability to non-invasively quantify the Brownian motion...
Purpose The characterization of tissue microstructure using diffusion MRI (dMRI) signals is rapid...
AbstractPost-mortem diffusion imaging of whole, human brains has potential to provide data for valid...
Diffusion magnetic resonance imaging (dMRI) is an imaging technique to obtain information about the ...
Diffusion MRI (dMRI) has become an invaluable tool to assess the microstructural organization of bra...
PURPOSE: Oscillating gradient spin-echo (OGSE) diffusion MRI provides information about the microstr...
AbstractDiffusion imaging of post-mortem brains could provide valuable data for validation of diffus...
Diffusion weighted MRI (DWI) is sensitive to the Brownian motion of the intra- and extra-cellular wa...
Purpose: Advanced diffusion magnetic resonance imaging benefits from collecting as much data as is f...
Thesis (Ph. D.)--University of Rochester. Dept. of Electrical and Computer Engineering, 2009.Magneti...
Post-mortem diffusion MRI (dMRI) enables high SNR (signal-to-noise ratio) images with high spatial r...
International audiencePost-mortem diffusion MRI (dMRI) enables acquisitions of structural imaging da...
Ex-vivo dMRI acquisitions achieve very high resolutions from increased SNR at the cost of prolonged ...
We provide a novel method to increase SNR of segmented diffusion-weighted EPI acquisitions. Multiple...
Diffusion MRI (dMRI) provides invaluable information for the study of tissue microstructure and brai...
2018-10-08Diffusion MRI (dMRI) has the unique ability to non-invasively quantify the Brownian motion...
Purpose The characterization of tissue microstructure using diffusion MRI (dMRI) signals is rapid...
AbstractPost-mortem diffusion imaging of whole, human brains has potential to provide data for valid...
Diffusion magnetic resonance imaging (dMRI) is an imaging technique to obtain information about the ...
Diffusion MRI (dMRI) has become an invaluable tool to assess the microstructural organization of bra...
PURPOSE: Oscillating gradient spin-echo (OGSE) diffusion MRI provides information about the microstr...
AbstractDiffusion imaging of post-mortem brains could provide valuable data for validation of diffus...
Diffusion weighted MRI (DWI) is sensitive to the Brownian motion of the intra- and extra-cellular wa...
Purpose: Advanced diffusion magnetic resonance imaging benefits from collecting as much data as is f...
Thesis (Ph. D.)--University of Rochester. Dept. of Electrical and Computer Engineering, 2009.Magneti...