Ultra-high-b radial diffusion-weighted imaging (UHb-rDWI) of human cervical spinal cord

Author:

Thapa Bijaya12,Sapkota Nabraj12,Lee YouJung1ORCID,Jeong Kyle13,Rose John4,Shah Lubdha M.5,Bisson Erica6,Jeong Eun-Kee15

Affiliation:

1. Utah Center for Advanced Imaging Research; University of Utah; Salt Lake City Utah USA

2. Department of Physics and Astronomy; University of Utah; Salt Lake City Utah USA

3. Department of Bioengineering; University of Utah; Salt Lake City Utah USA

4. Department of Neurology

5. Department of Radiology and Imaging Sciences; University of Utah; Salt Lake City Utah USA

6. Department of Neurosurgery; University of Utah; Salt Lake City Utah USA

Funder

Alice and Kevin Steiner in addition to NMSS Research Grant

VA Merit Review Grant from the US Veterans Administration

Publisher

Wiley

Subject

Radiology Nuclear Medicine and imaging

Reference38 articles.

1. Axonal damage in the spinal cord of MS patients occurs largely independent of T2 MRI lesions;Bergers;Neurology,2002

2. MR imaging of spinal cord and vertebral body infarction;Yuh;Am J Neuroradiol,1992

3. Diffusion-weighted MR imaging of the spinal cord;Bammer;Am J Neuroradiol,2000

4. MR diffusion tensor imaging and fiber tracking in spinal cord compression;Facon;Am J Neuroradiol,2005

5. Diffusion tensor imaging of somatosensory tract in cervical spondylotic myelopathy and its link with electrophysiological evaluation;Wen;Spine J,2014

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