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用于材料切片的超薄切片技术
了解这些用于材料切片的超薄切片技术的宝贵见解,并学习如何克服在处理聚合物、金属和脆性材料时遇到的挑战。千万不要错过这个提高您对先进显微镜样品制备方法的认识的机会。
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How Marine Microorganism Analysis can be Improved with High-pressure Freezing
In this application example we showcase the use of EM-Sample preparation with high pressure freezing, freeze substiturion and ultramicrotomy for marine biology focusing on ultrastructural analysis of…
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Exploring the Structure and Life Cycle of Viruses
The SARS-CoV-2 outbreak started in late December 2019 and has since reached a global pandemic, leading to a worldwide battle against COVID-19. The ever-evolving electron microscopy methods offer a…
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使用增强功能电子显微镜研究大脑切片中的突触
神经科学的一个基本问题就是突触的结构与其功能特性之间有何关系?过去几十年,电生理学揭示了突触传递机制,而电子显微镜(EM)深入探索了突触形态。用于关联突触生理学和超微结构的方法可以追溯到20世纪中叶。目标是获得突触传递的快照,即捕获电子显微照片中的动态过程。
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Workflows and Instrumentation for Cryo-electron Microscopy
Cryo-electron microscopy is an increasingly popular modality to study the structures of macromolecular complexes and has enabled numerous new insights in cell biology. In recent years, cryo-electron…
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显微镜在病毒学中的应用
引起新型冠状病毒肺炎(Covid-19)的冠状病毒SARS-CoV-2肆虐全球并影响了我们生活的方方面面。对于免疫和治疗方法的搜索研究(即如何抗击该病毒)成为了2020年全人类的第一要务。显微镜在这类研究中起着重要作用。为了了解受体结合、基因组释放、复制、装配和病毒出芽的基本原理以及我们的免疫系统效应,可以使用不同的方法和显微镜。本文概述了为什么显微镜是病毒学和感染生物学的重要工具,并举例说明了不…
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Workflow Solutions for Sample Preparation Methods for Material Science
This brochure presents and explains appropriate workflow solutions for the most frequently required sample preparation methods for material science samples.