Chen Q, Chopp M, Bodzin G, Chen H
Department of Radiation, Henry Ford Hospital, Detroit, Michigan 48202.
J Cereb Blood Flow Metab. 1993 May;13(3):389-94. doi: 10.1038/jcbfm.1993.52.
The role of cerebral depolarizations in focal cerebral ischemia is unknown. We therefore measured the direct current (DC) electrical activity in the cortex of Wistar rats subjected to transient occlusion of the middle cerebral artery (MCA). Focal ischemia was induced for 90 min by insertion of an intraluminal filament to occlude the MCA. To modulate cell damage, we subjected the rats to hypothermic (30 degrees C, n = 4), normothermic (37 degrees C, n = 4), and hyperthermic (40 degrees C, n = 6) ischemia. Controlled temperatures were also maintained during 1 h of reperfusion. Continuous cortical DC potential changes were measured using two active Ag-AgCl electrodes placed in the cortical lesion. Animals were killed 1 week after ischemia. The brains were sectioned and stained with hematoxylin and eosin, for evaluation of neuronal damage, and calculation of infarct volume. All animals exhibited an initial depolarization within 30 min of ischemia, followed by a single depolarization event in hypothermic animals, and multiple periodic depolarization events in both normothermic and hyperthermic animals. Hyperthermic animals exhibited significantly more (p < 0.05) DC potential deflections (n = 6.17 +/- 0.67) than normothermic animals (n = 2.75 +/- 0.96). The ischemic infarct volume (% of hemisphere) was significantly different for the various groups; hypothermic animals exhibited no measurable infarct volume, while the ischemic infarct volume was 10.2 +/- 12.3% in normothermic animals and 36.5 +/- 3.4% in hyperthermic animals (p < 0.05). A significant correlation was detected between the volume of infarct and number of depolarization events (r = 0.90, p < 0.001).(ABSTRACT TRUNCATED AT 250 WORDS)
脑去极化在局灶性脑缺血中的作用尚不清楚。因此,我们测量了大脑中动脉(MCA)短暂闭塞的Wistar大鼠皮质中的直流电(DC)电活动。通过插入腔内细丝闭塞MCA诱导局灶性缺血90分钟。为了调节细胞损伤,我们将大鼠置于低温(30℃,n = 4)、正常体温(37℃,n = 4)和高温(40℃,n = 6)缺血状态。在再灌注1小时期间也维持控制温度。使用置于皮质病变处的两个活性Ag - AgCl电极测量连续的皮质DC电位变化。缺血1周后处死动物。将大脑切片并用苏木精和伊红染色,以评估神经元损伤并计算梗死体积。所有动物在缺血30分钟内均出现初始去极化,随后低温动物出现单次去极化事件,正常体温和高温动物出现多次周期性去极化事件。高温动物的DC电位偏转(n = 6.17±0.67)明显多于正常体温动物(n = 2.75±0.96)(p < 0.05)。不同组的缺血梗死体积(占半球的百分比)有显著差异;低温动物未显示可测量的梗死体积,而正常体温动物的缺血梗死体积为10.2±...