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早期梗死演变过程中扩散性去极化的独特时空模式:来自实时成像的证据

Distinct spatiotemporal patterns of spreading depolarizations during early infarct evolution: evidence from real-time imaging.

作者信息

Kumagai Tetsuya, Walberer Maureen, Nakamura Hajime, Endepols Heike, Sué Michael, Vollmar Stefan, Adib Sasan, Mies Günter, Yoshimine Toshiki, Schroeter Michael, Graf Rudolf

机构信息

Max Planck Institute for Neurological Research, Cologne, Germany.

出版信息

J Cereb Blood Flow Metab. 2011 Feb;31(2):580-92. doi: 10.1038/jcbfm.2010.128. Epub 2010 Aug 11.

Abstract

Experimental and clinical studies indicate that waves of cortical spreading depolarization (CSD) appearing in the ischemic penumbra contribute to secondary lesion growth. We used an embolic stroke model that enabled us to investigate inverse coupling of blood flow by laser speckle imaging (CBF(LSF)) to CSD as a contributing factor to lesion growth already in the early phase after arterial occlusion. Embolization by macrospheres injected into the left carotid artery of anesthetized rats reduced CBF(LSF) in the territories of the middle cerebral artery (MCA) (8/14 animals), the posterior cerebral artery (PCA) (2/14) or in less clearly defined regions (4/14). Analysis of MCA occlusions (MCAOs) revealed a first CSD wave starting off during ischemic decline at the emerging core region, propagating concentrically over large portions of left cortex. Subsequent recurrent waves of CSD did not propagate concentrically but preferentially circled around the ischemic core. In the vicinity of the core region, CSDs were coupled to waves of predominantly vasoconstrictive CBF(LSF) responses, resulting in further decline of CBF in the entire inner penumbra and in expansion of the ischemic core. We conclude that CSDs and corresponding CBF responses follow a defined spatiotemporal order, and contribute to early evolution of ischemic territories.

摘要

实验和临床研究表明,出现在缺血半暗带的皮质扩散性去极化(CSD)波会促使继发性损伤扩大。我们使用了一种栓塞性中风模型,该模型使我们能够通过激光散斑成像(CBF(LSF))研究血流与CSD的反向耦合,将其作为动脉闭塞后早期损伤扩大的一个促成因素。向麻醉大鼠的左颈动脉注射大球体进行栓塞,可使大脑中动脉(MCA)区域(8/14只动物)、大脑后动脉(PCA)区域(2/14只)或界限不太明确的区域(4/14只)的CBF(LSF)降低。对大脑中动脉闭塞(MCAO)的分析显示,在缺血衰退期,第一个CSD波在新出现的核心区域开始,并在左皮质的大部分区域呈同心圆状传播。随后反复出现的CSD波并非呈同心圆状传播,而是优先围绕缺血核心区域循环。在核心区域附近,CSD与主要为血管收缩性的CBF(LSF)反应波耦合,导致整个内半暗带的CBF进一步下降以及缺血核心区域扩大。我们得出结论,CSD和相应的CBF反应遵循特定的时空顺序,并促成缺血区域的早期演变。

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