Feasibility of 3.0 T diffusion-weighted nuclear magnetic resonance imaging in the evaluation of functional recovery of rats with complete spinal cord injury
Diffusion tensor imaging is a sensitive way to reflect axonal necrosis and degeneration, glial cell regeneration and demyelination following spinal cord injury, and to display microstructure changes in the spinal cord in vivo. Diffusion tensor imaging technology is a sensitive method to diagnose spi...
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doaj-397ac22d53e44167b00155e8b1f8f5812020-11-25T03:33:49ZengWolters Kluwer Medknow PublicationsNeural Regeneration Research1673-53742015-01-0110341241810.4103/1673-5374.153689Feasibility of 3.0 T diffusion-weighted nuclear magnetic resonance imaging in the evaluation of functional recovery of rats with complete spinal cord injuryDuo ZhangXiao-hui LiXu ZhaiXi-jing HeDiffusion tensor imaging is a sensitive way to reflect axonal necrosis and degeneration, glial cell regeneration and demyelination following spinal cord injury, and to display microstructure changes in the spinal cord in vivo. Diffusion tensor imaging technology is a sensitive method to diagnose spinal cord injury fiber tractography visualizes the white matter fibers, and directly displays the structural integrity and resultant damage of the fiber bundle. At present, diffusion tensor imaging is restricted to brain examinations, and is rarely applied in the evaluation of spinal cord injury. This study aimed to explore the fractional anisotropy and apparent diffusion coefficient of diffusion tensor magnetic resonance imaging and the feasibility of diffusion tensor tractography in the evaluation of complete spinal cord injury in rats. The results showed that the average combined scores were obviously decreased after spinal cord transection in rats, and then began to increase over time. The fractional anisotropy scores after spinal cord transection in rats were significantly lower than those in normal rats (P <0.05) the apparent diffusion coefficient was significantly increased compared with the normal group (P < 0.05). Following spinal cord transection, fractional anisotropy scores were negatively correlated with apparent diffusion coefficient values (r = -0.856, P < 0.01), and positively correlated with the average combined scores (r = 0.943, P < 0.01), while apparent diffusion coefficient values had a negative correlation with the average combined scores (r = -0.949, P < 0.01). Experimental findings suggest that, as a non-invasive examination, diffusion tensor magnetic resonance imaging can provide qualitative and quantitative information about spinal cord injury. The fractional anisotropy score and apparent diffusion coefficient have a good correlation with the average combined scores, which reflect functional recovery after spinal cord injury.http://www.nrronline.org/article.asp?issn=1673-5374;year=2015;volume=10;issue=3;spage=412;epage=418;aulast=ZhangtamoxifenSrc kinasePP2traumaregenerationneuroprotectionauranofindextromethorphanrosiglitazoneAlzheimer′s diseaseneuroinflammationneurodegenerationmicrogliaastrocytesnerve regenerationspinal cordelectroacupuncture therapyneural stem cellsnotch signaling pathwayastrocytesinflammationsurvival curveproliferationdifferentiationreal-time quantitative PCRwestern blot assayneural regenerationnerve regenerationsuperparamagnetic iron oxidemagnetic guidancebone marrow mesenchymal stem cellsspinal cord injurycell transplantationmagnetic resonance imagelumbar punctureneural regenerationnerve regenerationspinal cord injuryspinal cord transectionaverage combined scoremagnetic resonance imagingdiffusion tensor imagingfractional anisotropyapparent diffusion coefficientfiber tractographyneural regeneration |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Duo Zhang Xiao-hui Li Xu Zhai Xi-jing He |
spellingShingle |
Duo Zhang Xiao-hui Li Xu Zhai Xi-jing He Feasibility of 3.0 T diffusion-weighted nuclear magnetic resonance imaging in the evaluation of functional recovery of rats with complete spinal cord injury Neural Regeneration Research tamoxifen Src kinase PP2 trauma regeneration neuroprotection auranofin dextromethorphan rosiglitazone Alzheimer′s disease neuroinflammation neurodegeneration microglia astrocytes nerve regeneration spinal cord electroacupuncture therapy neural stem cells notch signaling pathway astrocytes inflammation survival curve proliferation differentiation real-time quantitative PCR western blot assay neural regeneration nerve regeneration superparamagnetic iron oxide magnetic guidance bone marrow mesenchymal stem cells spinal cord injury cell transplantation magnetic resonance image lumbar puncture neural regeneration nerve regeneration spinal cord injury spinal cord transection average combined score magnetic resonance imaging diffusion tensor imaging fractional anisotropy apparent diffusion coefficient fiber tractography neural regeneration |
author_facet |
Duo Zhang Xiao-hui Li Xu Zhai Xi-jing He |
author_sort |
Duo Zhang |
title |
Feasibility of 3.0 T diffusion-weighted nuclear magnetic resonance imaging in the evaluation of functional recovery of rats with complete spinal cord injury |
title_short |
Feasibility of 3.0 T diffusion-weighted nuclear magnetic resonance imaging in the evaluation of functional recovery of rats with complete spinal cord injury |
title_full |
Feasibility of 3.0 T diffusion-weighted nuclear magnetic resonance imaging in the evaluation of functional recovery of rats with complete spinal cord injury |
title_fullStr |
Feasibility of 3.0 T diffusion-weighted nuclear magnetic resonance imaging in the evaluation of functional recovery of rats with complete spinal cord injury |
title_full_unstemmed |
Feasibility of 3.0 T diffusion-weighted nuclear magnetic resonance imaging in the evaluation of functional recovery of rats with complete spinal cord injury |
title_sort |
feasibility of 3.0 t diffusion-weighted nuclear magnetic resonance imaging in the evaluation of functional recovery of rats with complete spinal cord injury |
publisher |
Wolters Kluwer Medknow Publications |
series |
Neural Regeneration Research |
issn |
1673-5374 |
publishDate |
2015-01-01 |
description |
Diffusion tensor imaging is a sensitive way to reflect axonal necrosis and degeneration, glial cell regeneration and demyelination following spinal cord injury, and to display microstructure changes in the spinal cord in vivo. Diffusion tensor imaging technology is a sensitive method to diagnose spinal cord injury fiber tractography visualizes the white matter fibers, and directly displays the structural integrity and resultant damage of the fiber bundle. At present, diffusion tensor imaging is restricted to brain examinations, and is rarely applied in the evaluation of spinal cord injury. This study aimed to explore the fractional anisotropy and apparent diffusion coefficient of diffusion tensor magnetic resonance imaging and the feasibility of diffusion tensor tractography in the evaluation of complete spinal cord injury in rats. The results showed that the average combined scores were obviously decreased after spinal cord transection in rats, and then began to increase over time. The fractional anisotropy scores after spinal cord transection in rats were significantly lower than those in normal rats (P <0.05) the apparent diffusion coefficient was significantly increased compared with the normal group (P < 0.05). Following spinal cord transection, fractional anisotropy scores were negatively correlated with apparent diffusion coefficient values (r = -0.856, P < 0.01), and positively correlated with the average combined scores (r = 0.943, P < 0.01), while apparent diffusion coefficient values had a negative correlation with the average combined scores (r = -0.949, P < 0.01). Experimental findings suggest that, as a non-invasive examination, diffusion tensor magnetic resonance imaging can provide qualitative and quantitative information about spinal cord injury. The fractional anisotropy score and apparent diffusion coefficient have a good correlation with the average combined scores, which reflect functional recovery after spinal cord injury. |
topic |
tamoxifen Src kinase PP2 trauma regeneration neuroprotection auranofin dextromethorphan rosiglitazone Alzheimer′s disease neuroinflammation neurodegeneration microglia astrocytes nerve regeneration spinal cord electroacupuncture therapy neural stem cells notch signaling pathway astrocytes inflammation survival curve proliferation differentiation real-time quantitative PCR western blot assay neural regeneration nerve regeneration superparamagnetic iron oxide magnetic guidance bone marrow mesenchymal stem cells spinal cord injury cell transplantation magnetic resonance image lumbar puncture neural regeneration nerve regeneration spinal cord injury spinal cord transection average combined score magnetic resonance imaging diffusion tensor imaging fractional anisotropy apparent diffusion coefficient fiber tractography neural regeneration |
url |
http://www.nrronline.org/article.asp?issn=1673-5374;year=2015;volume=10;issue=3;spage=412;epage=418;aulast=Zhang |
work_keys_str_mv |
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1724561380171841536 |