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Assessing neuraxial microstructural changes in a transgenic mouse model of early stage Amyotrophic Lateral Sclerosis by ultra-high field MRI and diffusion tensor metrics

机译:超高场MRI和扩散张量度量评估早期肌营养侧硬化的转基因小鼠模型中的神经组织变化

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摘要

Objective: Cell structural changes are one of the main features observed during the development of amyotrophic lateral sclerosis(ALS). In this work, we propose the use of diffusion tensor imaging(DTI) metrics to assess specific ultrastructural changes in the central nervous system during the early neurodegenerative stages of ALS.Methods: Ultra-high field MRI and DTI data at 17.6 T were obtained from fixed, excised mouse brains, and spinal cords from ALS(G93 A-SOD1) mice.Results: Changes in fractional anisotropy(FA) and linear, planar, and spherical anisotropy ratios(C_L, C_P, and C_S, respectively) of the diffusion eigenvalues were measured in white matter(WM) and gray matter(GM) areas associated with early axonal degenerative processes(in both the brain and the spinal cord). Specifically, in WM structures(corpus callosum, corticospinal tract, and spinal cord funiculi) as the disease progressed, FA, C_L, and C_P values decreased, whereas C_S values increased. In GM structures(prefrontal cortex, hippocampus, and central spinal cord) FA and C_P decreased, whereas the C_L and C_S values were unchanged or slightly smaller. Histological studies of a fluorescent mice model(YFP, G93 A-SOD1 mouse) corroborated the early alterations in neuronal morphology and axonal connectivity measured by DTI.Conclusions: Changes in diffusion tensor shape were observed in this animal model at the early, nonsymptomatic stages of ALS. Further studies of C_L, C_P, and C_S as imaging biomarkers should be undertaken to refine this neuroimaging tool for future clinical use in the detection of the early stages of ALS.

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  • 来源
    《动物模型与实验医学(英文)》 |2020年第002期|117-129|共13页
  • 作者单位

    Department of Bioengineering University of Illinois at Chicago Chicago IL USA;

    Instituto de Fisiología Biologia Molecular y Neurociencias-IFIBYNE-CONICET University of Buenos Aires Buenos Aires Argentina;

    Department of Biochemistry National High Magnetic Field Laboratory University of Florida Gainesville FL USA;

    Department of Pathology School of Medicine Northwestern University Chicago IL USA;

    Department of Pathology School of Medicine Northwestern University Chicago IL USA;

    Department of Biochemistry National High Magnetic Field Laboratory University of Florida Gainesville FL USA;

    Instituto de Fisiología Biologia Molecular y Neurociencias-IFIBYNE-CONICET University of Buenos Aires Buenos Aires Argentina;

    Department of Bioengineering University of Illinois at Chicago Chicago IL USA;

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  • 正文语种 eng
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  • 入库时间 2022-08-19 04:46:48
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