首页> 美国卫生研究院文献>Journal of Neurotrauma >Diffusion-Weighted Magnetic Resonance Imaging Characterization of White Matter Injury Produced by Axon-Sparing Demyelination and Severe Contusion Spinal Cord Injury in Rats
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Diffusion-Weighted Magnetic Resonance Imaging Characterization of White Matter Injury Produced by Axon-Sparing Demyelination and Severe Contusion Spinal Cord Injury in Rats

机译:大鼠保留轴突脱髓鞘和严重挫伤性脊髓损伤引起的白色物质损伤的弥散加权磁共振成像表征。

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摘要

Alterations in magnetic resonance imaging (MRI)–derived measurements of water diffusion parallel (D∥) and perpendicular (D⊥) to white matter tracts have been specifically attributed to pathology of axons and myelin, respectively. We test the hypothesis that directional diffusion measurements can distinguish between axon-sparing chemical demyelination and severe contusion spinal cord white matter injury. Adult rats received either unilateral ethidium bromide (EB) microinjections (chemical demyelination) into the lateral funiculus of the spinal cord at C5 or were subjected to unilateral severe contusion spinal cord injury (SCI). Diffusion MRI metrics in the lateral funiculus were analyzed at early and late time-points following injury and correlated with histology. Early EB-demyelination resulted in a significant elevation in D⊥ and significant reduction in D∥ at the injury epicenter, with histological evidence of uniform axon preservation. Alterations in D⊥ and D∥ at the epicenter of early EB-demyelination were not significantly different from those observed with severe contusion at the epicenter, where histology demonstrated severe combined axonal and myelin injury. Diffusion abnormalities away from the injury epicenter were seen with contusion injury, but not with EB-demyelination. Chronic EB lesions underwent endogenous remyelination with normalization of diffusion metrics, whereas chronic contusion resulted in persistently altered diffusivities. In the early setting, directional diffusion measurements at the injury epicenter associated with chemical demyelination are indistinguishable from those seen with severe contusive SCI, despite dramatic pathologic differences between injury models. Caution is advised in interpretation of diffusion metrics with respect to specific white matter structural alterations. Diffusion analysis should not be limited to the epicenter of focal spinal lesions as alterations marginal to the epicenter are useful for assessing the nature of focal white matter injury.
机译:磁共振成像(MRI)得出的与白质束平行(D∥)和垂直(D to)的水扩散测量结果的变化分别被分别归因于轴突和髓鞘的病理。我们测试了定向扩散测量可以区分保留轴突的化学脱髓鞘和严重挫伤性脊髓白质损伤的假说。成年大鼠在C5处接受了单侧溴化乙锭(EB)显微注射(化学脱髓鞘)进入脊髓的侧耳,或遭受了单侧严重挫伤性脊髓损伤(SCI)。在损伤后的早期和晚期时间点分析外侧真菌的扩散MRI指标,并与组织学相关。早期的EB脱髓鞘作用导致损伤中心的D significant明显升高和D reduction显着降低,并有组织学证据表明轴突可均匀保存。早期EB脱髓鞘的震中D⊥和D∥的变化与震中严重挫伤所观察到的变化无明显差异,在震中组织学显示轴突和髓鞘受到严重损伤。挫伤损伤处可见远离震中中心的扩散异常,而EB脱髓鞘则未见。慢性EB病变通过扩散指标正常化进行内源性髓鞘再生,而慢性挫伤导致扩散率持续变化。在早期情况下,尽管损伤模型之间存在巨大的病理差异,但与化学脱髓鞘相关的损伤震中的方向扩散测量与严重挫伤性脊髓损伤所观察到的方向弥散测量没有区别。建议在解释有关特定白质结构改变的扩散指标时要谨慎。扩散分析不应仅限于局灶性脊髓病变的震中,因为震中边缘的改变对评估局灶性白质损伤的性质很有用。

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