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1.Effects of Ahalysantinfarctase on Pia Mater Microcirculation in Monglial Gerbils Cerebral Ischemia
蝮蛇抗栓酶对沙鼠脑缺血软脑膜微循环的作用收藏指正
2.A delicate membrane that encloses the spinal cord and brain, and lies between the pia mater and dura mater.
蛛网膜包围脊髓或脑的精细膜,位于软脑脊膜及硬膜之间收藏指正
3.Dynamic Alteration and Significance on Pia Mater Microcirculation After High-voltage Electric Burn
实验高压电烧伤软脑膜微循环动态变化和意义收藏指正
4.Various part of brain substance was: medulla (pars ventralis), cortax(pars dorsalis), pia mater encephali.
脑内组织依次为:髓质(被盖部)、皮质(基底部)、软脑膜。收藏指正
5.A network of extremely small blood vessels passing between the pia mater and the cerebral cortex.
大脑绒被从软膜和大脑皮层之间穿过的极细的小血管形成的网收藏指正
6.Effects of ahalysantinfarctase in prevention and treatment on pia mater microcirculation in gebils from cerebral ischemia and reperfusion were studied by quantitating the index of pia mater microcirculation,detemining active changes of Na,K-AT Pase in cerebral cell,observing changes of ultrastructure in cerebral cells.
通过对沙鼠软脑膜微循环指标观测、脑组织细胞Na,K-ATP酶活性测定以及大脑神经细胞组织病理学以及透射电镜观察,探讨了蝮蛇抗栓酶对动物急性脑缺血的防治作用。收藏指正
7.Results VEGF expression in neurons and pia mater could be observed at 1 h reperfusion after 90 min ischemia, reached peak at 1 d( P <0.01), the expression in neurons then decreased sharply after 1 d, while the VEGF expression of pia mater remained high level till 7 d ;
结果 实验大鼠再灌注1h ,缺血半暗带神经元及同侧大脑中动脉供血区软脑膜开始表达VEGF ,1d达峰值 (P <0 0 1) ,前者于 1d后快速下降 ,后者维持高水平至 7d。收藏指正
8.Objective To investigate the changes of NO as well as the effect of blocked choline receptor in pia mater microarteries in gerbils with cerebral ischemia.
目的 测量脑缺血时沙土鼠软脑膜细动脉中一氧化氮 (NO)含量的变化及胆碱能受体阻断后的效应。收藏指正
9.Methods The changes of the diameters of gerbil?s pia mater microvessels were measured by using Laser Doppler and the changes of NO were measured by electrical chemistry.
方法 采用激光多谱勒和电化学方法 ,测量沙土鼠软脑膜微血管管径和NO的变化。收藏指正
10.Using the open skull window and microcirculatory microscopic video magnify system, the influences of ginsenoside Rg 1 at 3 dosage on pia mater microcirculation in rats with focal cerebral ischemia were studied, which was caused by middle artery occlusion(MCAO).
采用大鼠开放式颅骨开窗法和微循环显微电视放大系统观察不同剂量(10、20、40mg/kg)的人参皂甙Rg1对大鼠大脑中动脉缺血(MCAO)引起的软脑膜微循环障碍的改善作用。收藏指正
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