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猫短暂大脑中动脉闭塞后皮质神经元的选择性功能易损性

Selective functional vulnerability of cortical neurons following transient MCA-occlusion in the cat.

作者信息

Rosner G, Graf R, Kataoka K, Heiss W D

出版信息

Stroke. 1986 Jan-Feb;17(1):76-82. doi: 10.1161/01.str.17.1.76.

Abstract

Simultaneous recordings of several cortical neurons were obtained before, during and after transient 15 min occlusion of the middle cerebral artery in cats. With the use of a multiple electrode array consisting of 4-7 platinum/iridium microelectrodes, the cortical pericellular blood flow was concurrently measured by means of the hydrogen clearance technique. Hydrogen clearance measurements revealed a homogeneous blood flow distribution throughout all phases of the experiment in the area covered by the different microelectrodes. Considering only the results of experiments with low residual blood flow during ischemia (less than 0.1 ml/g/min), single unit activity ceased immediately after occlusion and remained so during the ischemic period. The recovery time of action potentials after reperfusion ranged from 10 min to 3 hours depending on the examined neuron. Lower values for discharge rates of the individual cells were generally observed after reoccurrence, although some units exhibited temporarily an even higher spike frequency. Furthermore, the spike form usually changed in that the hyperpolarizing afterpotentials were enlarged after recirculation. However, some cells with a nearly unchanged spike form were found as well. The results indicate that the recovery of cell function largely depends on the individual neuron which supports the idea of a selective functional vulnerability of cortical neurons in response to ischemia.

摘要

在猫大脑中动脉短暂闭塞15分钟的前、中、后阶段,同时记录了几个皮质神经元的活动。使用由4 - 7个铂/铱微电极组成的多电极阵列,通过氢清除技术同时测量皮质细胞周围的血流。氢清除测量结果显示,在整个实验过程中,不同微电极覆盖区域的血流分布均匀。仅考虑缺血期间残余血流较低(小于0.1毫升/克/分钟)的实验结果,闭塞后单个单位活动立即停止,并在缺血期间保持这种状态。再灌注后动作电位的恢复时间根据所检查的神经元不同,从10分钟到3小时不等。再次出现活动后,单个细胞的放电率通常较低,尽管一些单位暂时表现出更高的尖峰频率。此外,尖峰形态通常会发生变化,即再循环后超极化后电位增大。然而,也发现了一些尖峰形态几乎不变的细胞。结果表明,细胞功能的恢复在很大程度上取决于单个神经元,这支持了皮质神经元对缺血反应存在选择性功能易损性的观点。

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