Changes in lumbosacral spinal nerve roots on diffusion tensor imaging in spinal stenosis
Lumbosacral degenerative disc disease is a common cause of lower back and leg pain. Conventional T1-weighted imaging (T1WI) and T2-weighted imaging (T2WI) scans are commonly used to image spinal cord degeneration. However, these modalities are unable to image the entire lumbosacral spinal nerve root...
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Wolters Kluwer Medknow Publications
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doaj-8075e450b65f4bf8aa544101d82e4b122020-11-25T02:25:15ZengWolters Kluwer Medknow PublicationsNeural Regeneration Research1673-53742015-01-0110111860186410.4103/1673-5374.170317Changes in lumbosacral spinal nerve roots on diffusion tensor imaging in spinal stenosisZhong-jun HouYong HuangZi-wen FanXin-chun LiBing-yi CaoLumbosacral degenerative disc disease is a common cause of lower back and leg pain. Conventional T1-weighted imaging (T1WI) and T2-weighted imaging (T2WI) scans are commonly used to image spinal cord degeneration. However, these modalities are unable to image the entire lumbosacral spinal nerve roots. Thus, in the present study, we assessed the potential of diffusion tensor imaging (DTI) for quantitative assessment of compressed lumbosacral spinal nerve roots. Subjects were 20 young healthy volunteers and 31 patients with lumbosacral stenosis. T2WI showed that the residual dural sac area was less than two-thirds that of the corresponding normal area in patients from L 3 to S 1 stenosis. On T1WI and T2WI, 74 lumbosacral spinal nerve roots from 31 patients showed compression changes. DTI showed thinning and distortion in 36 lumbosacral spinal nerve roots (49%) and abruption in 17 lumbosacral spinal nerve roots (23%). Moreover, fractional anisotropy values were reduced in the lumbosacral spinal nerve roots of patients with lumbosacral stenosis. These findings suggest that DTI can objectively and quantitatively evaluate the severity of lumbosacral spinal nerve root compression.http://www.nrronline.org/article.asp?issn=1673-5374;year=2015;volume=10;issue=11;spage=1860;epage=1864;aulast=Hounerve regeneration; magnetic resonance imaging; diffusion tensor imaging; lumbosacral area; degeneration; nerve root; fractional anisotropy; neural regeneration |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zhong-jun Hou Yong Huang Zi-wen Fan Xin-chun Li Bing-yi Cao |
spellingShingle |
Zhong-jun Hou Yong Huang Zi-wen Fan Xin-chun Li Bing-yi Cao Changes in lumbosacral spinal nerve roots on diffusion tensor imaging in spinal stenosis Neural Regeneration Research nerve regeneration; magnetic resonance imaging; diffusion tensor imaging; lumbosacral area; degeneration; nerve root; fractional anisotropy; neural regeneration |
author_facet |
Zhong-jun Hou Yong Huang Zi-wen Fan Xin-chun Li Bing-yi Cao |
author_sort |
Zhong-jun Hou |
title |
Changes in lumbosacral spinal nerve roots on diffusion tensor imaging in spinal stenosis |
title_short |
Changes in lumbosacral spinal nerve roots on diffusion tensor imaging in spinal stenosis |
title_full |
Changes in lumbosacral spinal nerve roots on diffusion tensor imaging in spinal stenosis |
title_fullStr |
Changes in lumbosacral spinal nerve roots on diffusion tensor imaging in spinal stenosis |
title_full_unstemmed |
Changes in lumbosacral spinal nerve roots on diffusion tensor imaging in spinal stenosis |
title_sort |
changes in lumbosacral spinal nerve roots on diffusion tensor imaging in spinal stenosis |
publisher |
Wolters Kluwer Medknow Publications |
series |
Neural Regeneration Research |
issn |
1673-5374 |
publishDate |
2015-01-01 |
description |
Lumbosacral degenerative disc disease is a common cause of lower back and leg pain. Conventional T1-weighted imaging (T1WI) and T2-weighted imaging (T2WI) scans are commonly used to image spinal cord degeneration. However, these modalities are unable to image the entire lumbosacral spinal nerve roots. Thus, in the present study, we assessed the potential of diffusion tensor imaging (DTI) for quantitative assessment of compressed lumbosacral spinal nerve roots. Subjects were 20 young healthy volunteers and 31 patients with lumbosacral stenosis. T2WI showed that the residual dural sac area was less than two-thirds that of the corresponding normal area in patients from L 3 to S 1 stenosis. On T1WI and T2WI, 74 lumbosacral spinal nerve roots from 31 patients showed compression changes. DTI showed thinning and distortion in 36 lumbosacral spinal nerve roots (49%) and abruption in 17 lumbosacral spinal nerve roots (23%). Moreover, fractional anisotropy values were reduced in the lumbosacral spinal nerve roots of patients with lumbosacral stenosis. These findings suggest that DTI can objectively and quantitatively evaluate the severity of lumbosacral spinal nerve root compression. |
topic |
nerve regeneration; magnetic resonance imaging; diffusion tensor imaging; lumbosacral area; degeneration; nerve root; fractional anisotropy; neural regeneration |
url |
http://www.nrronline.org/article.asp?issn=1673-5374;year=2015;volume=10;issue=11;spage=1860;epage=1864;aulast=Hou |
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