镜下观,这个神经鞘瘤由梭形细胞组成(象多数间叶细胞起源的瘤),细胞大小一致,胞浆丰富、呈粉红色。
The schwannoma is seen microscopically to be composed of spindle cells (like most neoplasms of mesenchymal origin), but the cells are fairly uniform and there is plenty of pink cytoplasm.
结果:NGF主要位于正常大脑皮质各层、海马各区以及脑干网状结构神经元细胞的胞浆与胞核;
Results NGF chiefly located in endochylema and cell nucleus of neuron in cerebral cortex , hippocampus and reticular formation of brain stem.
在前人试验研究工作的基础上,利用人工神经网络法对大直径浆体输送管道的淤积临界流速进行了拟合和预测。
Based on the previous experimental works, critical deposition velocity in large pipe has been fitted and predicated by artificial neural network.
针对配浆浓度控制过程存在的滞后、大干扰等问题,提出一种基于动态矩阵预测的单神经元pid配浆浓度控制算法。
According to problems of plasma consistency with lag and big interference, a dynamic matrix prediction based on single neuron PID control algorithm is present.
目的观察异丙酚对兔脊髓缺血再灌注损伤时血清神经源性胞浆酶的变化与影响,以探讨异丙酚的保护效果及其机制。
Objective to observe the effect of propofol on the changes of serum cytosolic enzymes and MDA during spinal cord ischemia reperfusion in rabbits.
免疫组化研究显示,肿瘤细胞神经内分泌标志物阳性,电镜检查可见胞浆内数量不等的神经内分泌颗粒。
Immunohistochemical findings indicated that the tumor cells were positive for neuroendocrine markers, and neurosecretory granules were found in tumor cells by electron microscopy.
失血性休克死亡组和脑挫裂伤死亡组神经元胞浆内染色较深,在整个视野中大部分的神经元胞浆受累及,两组间无明显染色差别;
In hemorrhagic shock and death group, brain contusion death group, the staining involved most neurons, but there were no significant differences between the two groups.
结果:光镜下各组背根神经节的细胞数、胞膜、胞浆、胞核形态和细胞间神经纤维、血管相比较均无明显变化和差别。
The morphology of cells, the nucleolus, membrane and cytoplasm of neurons in DRG had not been changed under light microscope and electron microscope in all groups.
结论以上结果提示,海康灵可通过抑制胞浆钙离子升高,进而稳定线粒体膜电位,从而发挥其抑制神经细胞凋亡的作用。
CONCLUSION Anti-dementia effects of Haikangling were related to restraining the apoptosis, stabilizing mitochondria membrane potential and restraining Ca2 + inflow of neurocyte.
结论以上结果提示,海康灵可通过抑制胞浆钙离子升高,进而稳定线粒体膜电位,从而发挥其抑制神经细胞凋亡的作用。
CONCLUSION Anti-dementia effects of Haikangling were related to restraining the apoptosis, stabilizing mitochondria membrane potential and restraining Ca2 + inflow of neurocyte.
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