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Large-Volume Reconstruction of Brain Tissue from High-Resolution Serial Section Images Acquired by SEM-Based Scanning Transmission Electron Microscopy

机译:由SEM系扫描透射电子显微镜获取的高分辨率串口图像大量重建脑组织

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摘要

With recent improvements in instrumentation and computational tools, serial section electron microscopy has become increasingly straightforward. A new method for imaging ultrathin serial sections is developed based on a field emission scanning electron microscope fitted with a transmitted electron detector. This method is capable of automatically acquiring high-resolution serial images with a large field size and very little optical and physical distortions. In this chapter, we describe the procedures leading to the generation and analyses of a large-volume stack of high-resolution images (64 μm × 64 μm × 10 μm, or larger, at 2 nm pixel size), including how to obtain large-area serial sections of uniform thickness from well-preserved brain tissue that is rapidly perfusion-fixed with mixed aldehydes, processed with a microwave-enhanced method, and embedded into epoxy resin.
机译:随着仪器和计算工具的最新改进,串行截面电子显微镜已变得越来越简单。基于装有透射电子检测器的场发射扫描电子显微镜,开发了一种对超薄连续切片成像的新方法。该方法能够自动获取具有大视场大小且光学和物理失真很小的高分辨率串行图像。在本章中,我们将介绍导致生成和分析高分辨率图像(在2 nm像素大小下为64μm×64μm×10μm或更大)的大体积堆栈的过程,包括如何获取大图像。 -从保存良好的脑组织中均匀厚度的连续区域,迅速混合醛固定灌注,用微波增强的方法处理,并包埋在环氧树脂中。

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