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首页> 外文期刊>Journal of Cerebral Blood Flow and Metabolism: Official Journal of the International Society of Cerebral Blood Flow and Metabolism >Role of cortical spreading depressions for secondary brain damage after traumatic brain injury in mice.
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Role of cortical spreading depressions for secondary brain damage after traumatic brain injury in mice.

机译:皮质扩散性凹陷在小鼠脑外伤后继发性脑损伤中的作用。

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摘要

In recent years, several studies have unequivocally shown the occurrence of cortical spreading depressions (CSDs) after stroke and traumatic brain injury (TBI) in humans. The fundamental question, however, is whether CSDs cause or result from secondary brain damage. The aim of the current study was, therefore, to investigate the role of CSDs for secondary brain damage in an experimental model of TBI. C57/BL6 mice were traumatized by controlled cortical impact. Immediately after trauma, each animal showed one heterogeneous direct current (DC) potential shift accompanied by a profound depression of electroencephalogram (EEG) amplitude, and a temporary decrease of ipsi- and contralateral regional cerebral blood flow (rCBF) suggesting bilateral CSDs. Within the next 3 h after TBI, CSDs occurred at a low frequency (0.38 CSD/h per animal, n=7) and were accompanied by rCBF changes confined to the ipsilateral hemisphere. No significant relationship between the number of SDs and lesion size or intracranial pressure (ICP) could be detected. Even increasing the number of posttraumatic CSDs by application of KCl by more than six times did not increase ICP or contusion volume. We therefore conclude that CSDs may not contribute to posttraumatic secondary brain damage in the normally perfused and oxygenated brain.
机译:近年来,几项研究明确表明,中风和脑外伤(TBI)后发生了皮质扩散性抑郁症(CSD)。但是,根本的问题是CSD是由继发性脑损伤引起还是由其引起。因此,本研究的目的是在TBI实验模型中研究CSD在继发性脑损伤中的作用。 C57 / BL6小鼠受到可控的皮层撞击的创伤。创伤后,每只动物立即表现出一种异质直流(DC)电位移动,伴有脑电图(EEG)幅度的严重下降,同侧和对侧区域性脑血流量(rCBF)暂时减少,提示双侧CSD。在TBI后的3小时内,CSD发生频率较低(每只动物0.38 CSD / h,n = 7),并伴有局限于同侧半球的rCBF变化。在SD的数量与病变大小或颅内压(ICP)之间没有发现明显的相关性。通过使用氯化钾将创伤后CSD的数量增加六倍以上,也不会增加ICP或挫伤量。因此,我们得出结论,CSD可能不会对正常灌注和充氧的大脑造成创伤后继发性脑损伤。

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