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Micromanipulation with stereoscopic imaging

机译:立体成像的显微操作

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摘要

The neuronal organization of the hippocampus is extensively studied. However, the synoptic connections between neurons of the hilus and neurons of the granule cell layer are still debate. In the present study, we utilized automated micromanipulation technique combined with visual image processing to analyze the synaptic connections between hilar mossy cells or mossy fibers, and granule cells or basket cells in the granule cell layer. The stereoscopic microscope image of the dentate gyms of coronal slice in adult rat brain was converted into a binary image. The area of the dentate gyms is detected by genetic algorithms. This was matched with the template image made from a microscopic photo of cresyl violet-stained coronal section of the rat brain by parallel and rotation matching. A glass microelectrode inserted into the apex of the dentate gyrus by the micromanipulation system. Lipophilic fluorescent tracer DiI or DiD was injected into the hilus by a nanoinjector.
机译:对海马的神经元组织进行了广泛的研究。然而,hilus神经元与颗粒细胞层神经元之间的天气关系仍在争论中。在本研究中,我们利用自动化的显微操作技术结合视觉图像处理来分析肺门苔藓细胞或苔藓纤维与颗粒细胞层中的颗粒细胞或篮状细胞之间的突触连接。将成年大鼠脑中冠状切片的齿状体育馆的立体显微镜图像转换为二进制图像。齿科体育馆的面积通过遗传算法进行检测。这与通过平行和旋转匹配从鼠脑的甲酚紫染色冠状切片的显微照片制成的模板图像相匹配。通过微操纵系统将玻璃微电极插入齿状回的顶端。通过纳米注射器将亲脂性荧光示踪剂DiI或DiD注射到hilus中。

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