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实验和初步临床证据表明,存在一个伴有持续电皮质抑制的缺血区,其周围有一个正常灌注的组织带,伴有长时间的负直流偏移。

Experimental and preliminary clinical evidence of an ischemic zone with prolonged negative DC shifts surrounded by a normally perfused tissue belt with persistent electrocorticographic depression.

机构信息

Department of Experimental Neurology, Charité University Medicine Berlin, Berlin, Germany.

出版信息

J Cereb Blood Flow Metab. 2010 Aug;30(8):1504-19. doi: 10.1038/jcbfm.2010.40. Epub 2010 Mar 24.

Abstract

In human cortex it has been suggested that the tissue at risk is indicated by clusters of spreading depolarizations (SDs) with persistent depression of high-frequency electrocorticographic (ECoG) activity. We here characterized this zone in the ET-1 model in rats using direct current (DC)-ECoG recordings. Topical application of the vasoconstrictor endothelin-1 (ET-1) induces focal ischemia in a concentration-dependent manner restricted to a region exposed by a cranial window, while a healthy cortex can be studied at a second naïve window. SDs originate in the ET-1-exposed cortex and invade the surrounding tissue. Necrosis is restricted to the ET-1-exposed cortex. In this study, we discovered that persistent depression occurred in both ET-1-exposed and surrounding cortex during SD clusters. However, the ET-1-exposed cortex showed longer-lasting negative DC shifts and limited high-frequency ECoG recovery after the cluster. DC-ECoG recordings of SD clusters with persistent depression from patients with aneurysmal subarachnoid hemorrhage were then analyzed for comparison. Limited ECoG recovery was associated with significantly longer-lasting negative DC shifts in a similar manner to the experimental model. These preliminary results suggest that the ischemic zone in rat and human cortex is surrounded by a normally perfused belt with persistently reduced synaptic activity during the acute injury phase.

摘要

在人类大脑皮质中,有人提出,风险组织由持续存在高频脑电图 (ECoG) 活动抑制的弥散性去极化 (SD) 簇指示。我们在此使用直流 (DC)-ECoG 记录对大鼠 ET-1 模型中的这个区域进行了特征描述。局部应用血管收缩剂内皮素-1 (ET-1) 以浓度依赖性方式诱导局灶性缺血,局限于暴露于颅窗的区域,而可以在第二个未暴露的窗口研究健康的皮质。SD 起源于 ET-1 暴露的皮质并侵入周围组织。坏死局限于 ET-1 暴露的皮质。在这项研究中,我们发现 SD 簇期间,在 ET-1 暴露和周围皮质中均出现持续抑制。然而,与簇后 ET-1 暴露的皮质相比,暴露的皮质显示出更长时间的负直流偏移和有限的高频 ECoG 恢复。然后分析了来自蛛网膜下腔出血患者的具有持续抑制的 SD 簇的 DC-ECoG 记录以进行比较。有限的 ECoG 恢复与类似的实验模型一样,与持续存在的负直流偏移显著相关。这些初步结果表明,在急性损伤阶段,大鼠和人类皮质的缺血区周围有一个正常灌注的带,突触活动持续减少。

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