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Neuronal and Axonal Degeneration in Experimental Spinal Cord Injury: In Vivo Proton Magnetic Resonance Spectroscopy and Histology

机译:实验性脊髓损伤中的神经元和轴突变性:体内质子磁共振波谱和组织学。

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摘要

Longitudinal in vivo proton magnetic resonance spectroscopy (1H-MRS) and immunohistochemistry were performed to investigate the tissue degeneration in traumatically injured rat spinal cord rostral and caudal to the lesion epicenter. On 1H-MRS significant decreases in N-acetyl aspartate (NAA) and total creatine (Cr) levels in the rostral, epicenter, and caudal segments were observed by 14 days, and levels remained depressed up to 56 days post-injury (PI). In contrast, the total choline (Cho) levels increased significantly in all three segments by 14 days PI, but recovered in the epicenter and caudal, but not the rostral region, at 56 days PI. Immunohistochemistry demonstrated neuronal cell death in the gray matter, and reactive astrocytes and axonal degeneration in the dorsal, lateral, and ventral white-matter columns. These results suggest delayed tissue degeneration in regions both rostrally and caudally from the epicenter in the injured spinal cord tissue. A rostral-caudal asymmetry in tissue recovery was seen both on MRI-observed hyperintense lesion volume and the Cho, but not NAA and Cr, levels at 56 days PI. These studies suggest that dynamic metabolic changes take place in regions away from the epicenter in injured spinal cord.
机译:进行了纵向体内质子磁共振波谱( 1 H-MRS)和免疫组化研究,研究了创伤后大鼠脊髓前额部和尾部至损伤中心的组织变性。在 1 H-MRS上,在14天时观察到了鼻翼,震中和尾段的N-乙酰天门冬氨酸(NAA)和总肌酸(Cr)水平显着降低,直至受伤后56天(PI)。相反,到第14天,总胆碱(Cho)水平在所有三个区段中均显着增加,但在第56天时,在震中和尾端恢复,但在鼻端区域未恢复。免疫组织化学显示神经元细胞在灰质中死亡,而反应性星形胶质细胞和轴突变性在背,外侧和腹白质柱中。这些结果表明,受损伤的脊髓组织的震中从中心到尾端都在组织上延迟了组织变性。 MRI观察到的高强度病灶体积和在PI第56天时的Cho(而非NAA和Cr)水平均观察到组织恢复中的尾-尾不对称。这些研究表明动态的代谢变化发生在远离脊髓损伤中心的区域。

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