医疗

医疗

医疗

探索专为神经外科、眼科、整形外科、耳鼻喉科和牙科 HCP 量身定制的科学和临床综合资源,包括行业洞见、临床案例研究和专题研讨会。重点突出手术显微镜的最新进展,让您了解AR荧光、三维可视化和术中OCT成像等尖端技术如何赋能复杂手术决策的信心和精准操作。
Comparison when observing a rodent model organism with a Greenough versus CMO (common main objective) stereo microscope for a task like surgery.

Rodent and Small-Animal Surgery

Learn how you can perform rodent (mouse, rat, hamster) and small-animal surgery efficiently with a microscope for developmental biology and medical research applications by reading this article.
Left: Tissue cells marked with an immunolabel (FITC) illuminated with wide-band UV excitation. Note the tissue structure with blue autofluorescence. Right: Same tissue and same immunostaining with FITC label illuminated with epi-illumination using narrow-band blue (490 nm) light. Note the increased image contrast (Ploem, 1967)

Milestones in Incident Light Fluorescence Microscopy

Since the middle of the last century, fluorescence microscopy developed into a bio scientific tool with one of the biggest impacts on our understanding of life. Watching cells and proteins with the…
Mar 06, 2017
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Milestones in Incident Light Fluorescence Microscopy
Gene editing with Cas9

Gene Editing with CRISPR/Cas9 - Breakthrough in Genome Engineering

The CRISPR/Cas9 system is one of several different bacterial systems for defense against viral attacks. It consists of two main components. One is a small piece of RNA which binds to the viral target…
Transgenic zebrafish larva where fluorescent proteins label the heart muscle blue, blood and blood vessels red, and all circulatory system cells green. Image recorded with a M205 FA microscope.

Imaging and Analyzing Zebrafish, Medaka, and Xenopus

Discover how to image and analyze zebrafish, medaka, and Xenopus frog model organisms efficiently with a microscope for developmental biology applications from this article.
Fluorescence stereo microscope image of anesthetized Mediterranean fruit flies recorded with a M205 stereo microscope.

研究果蝇(黑腹果蝇Drosophila melanogaster)

由于每个实验室的需求可能会有很大的差异,本文展示了科学家和技术人员研究果蝇并使用不同显微镜设置的的实例。此外,基于不同果蝇实验室的经验介绍了推荐的工作流程。本文可以作为建立或扩展果蝇实验室时的参考或指南。
C. elegans

研究秀丽隐杆线虫(C. elegans)

对于在研究实验室或教室中使用秀丽隐杆线虫(C. elegans)的科学家、技术人员和教师,本报告旨在提供有用的信息,以帮助改进他们的日常工作。其目的是使拾取虫体、转基因、RNA干扰、筛选和功能成像等工作步骤更加高效。本报告还详细介绍了配置研究虫实验室或生物教室/教学实验室的各种可能性,并解释了有关研究虫体方法的内容。
A 17th-century compound microscope (© Golub Collection – University of California, Berkeley/Steven Ruzin, Curator)

光学显微镜简史

显微镜的历史始于中世纪。早在11世纪,阿拉伯世界就使用抛光绿柱石制成的平凸透镜作为阅读石来放大手稿。然而,将这些透镜发展成显微镜并非某一个人的功劳,而是众多科学家和学者共同努力的结果。
Forensics microscopy

一条线索都不能少——没有显微镜,就没有法医学

没有线索,就没有犯罪。线索可能很明显,例如犯罪现场的弹壳或者门锁被撬坏的明显痕迹。然而有的时候,线索可能小到微观世界。除了经典的指纹信息,犯罪者还会留下毛发或纤维痕迹。

光学显微镜 – 基础入门

150多年来,光学显微镜一直都是生命科学研究以及材料科学当中的标准工具之一。要经济有效地使用这一工具,了解光学的基础知识,尤其是构成每一台显微镜的基本组成部分将会获得很大的帮助。
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