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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Correlation between brain reorganization, ischemic damage, and neurologic status after transient focal cerebral ischemia in rats: a functional magnetic resonance imaging study.
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Correlation between brain reorganization, ischemic damage, and neurologic status after transient focal cerebral ischemia in rats: a functional magnetic resonance imaging study.

机译:大鼠短暂性局灶性脑缺血后脑组织重组,缺血性损伤与神经系统状态之间的相关性:功能磁共振成像研究。

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The pattern and role of brain plasticity in stroke recovery has been incompletely characterized. Both ipsilesional and contralesional changes have been described, but it remains unclear how these relate to functional recovery. Our goal was to correlate brain activation patterns with tissue damage, hemodynamics, and neurologic status after temporary stroke, using functional magnetic resonance imaging (fMRI). Transverse relaxation time (T2)-weighted, diffusion-weighted, and perfusion MRI were performed at days 1 (n = 7), 3 (n = 7), and 14 (n = 7) after 2 hr unilateral middle cerebral artery occlusion in rats. Functional activation and cerebrovascular reactivity maps were generated from contrast-enhanced fMRI during forelimb stimulation and hypercapnia, respectively. Before MRI, rats were examined neurologically. We detected loss of activation responses in the ipsilesional sensorimotor cortex, which was related to T2 lesion size (r = -0.858 on day 3, r = -0.979 on day 14; p < 0.05). Significant activationresponses in the contralesional hemisphere were detected at days 1 and 3. The degree of shift in balance of activation between the ipsilesional and contralesional hemispheres, characterized by the laterality index, was linked to the T2 and apparent diffusion coefficient in the ipsilesional contralesional forelimb region of the primary somatosensory cortex and primary motor cortex at day 1 (r = -0.807 and 0.782, respectively; p < 0.05) and day 14 (r = -0.898 and -0.970, respectively; p < 0.05). There was no correlation between activation parameters and perfusion status or cerebrovascular reactivity. Finally, we found that the laterality index and neurologic status changed in parallel over time after stroke, so that when all time points were grouped together, neurologic status was inversely correlated with the laterality index (r = -0.571; p = 0.016). This study suggests that the degree of shift of activation balance toward the contralesional hemisphere early after stroke increases with the extent of tissue injury and that functional recovery is associated mainly with preservation or restoration of activation in the ipsilesional hemisphere.
机译:脑可塑性在中风恢复中的模式和作用尚未完全表征。已经描述了同侧和反侧的变化,但是仍不清楚这些变化与功能恢复之间的关系。我们的目标是使用功能性磁共振成像(fMRI)将暂时性卒中后脑部激活模式与组织损伤,血液动力学和神经系统状态相关联。在单侧大脑中动脉闭塞2小时后的第1天(n = 7),第3天(n = 7)和第14天(n = 7),进行了横向弛豫时间(T2)加权,弥散加权和灌注MRI。大鼠。功能增强和脑血管反应性图分别从前肢刺激和高碳酸血症期间的对比增强fMRI生成。在MRI之前,对大鼠进行了神经学检查。我们在同侧感觉运动皮层中检测到激活反应的丧失,这与T2病变的大小有关(第3天r = -0.858,第14天r = -0.979; p <0.05)。在第1天和第3天检测到对侧半球有明显的激活反应。同侧和对侧半球之间激活平衡的转移程度(以侧向指数为特征)与同侧对侧前肢区域的T2和表观扩散系数有关。第1天(分别为r = -0.807和0.782; p <0.05)和第14天(分别为r = -0.898和-0.970; p <0.05)的初级躯体感觉皮质和初级运动皮质。激活参数与灌注状态或脑血管反应性之间没有相关性。最后,我们发现脑卒中后横向指数和神经系统状态随时间平行变化,因此,将所有时间点组合在一起时,神经系统状态与横向指数成反比关系(r = -0.571; p = 0.016)。这项研究表明,卒中后激活平衡向对侧半球的转移程度随组织损伤程度的增加而增加,功能恢复主要与同侧半球激活的保存或恢复有关。

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