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アプリケーション
アプリケーション
さまざまな現場で非常に重要な役割を担っている顕微鏡観察。そのアプリケーションは多岐にわたります。ライカマイクロシステムズは、あなたの目的にあわせてお選びいただける多種多様な顕微鏡・周辺機器を開発しています。反復作業やハイスループットタスクはもちろん、特定の研究課題に取り組んでいる方にも、それぞれのニーズに合ったイメージングソリューションを提供致します。製品知識が豊富なセールス&アプリケーションチームが、あなたに最適なイメージングシステム、また電子顕微鏡用試料作製装置をご提案致します。
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最新の記事を読む
ライカマイクロシステムズのサイエンスラボポータル は、顕微鏡をテーマとする科学研究や記事を提供しています。 コンテンツは、日常業務や実験で、ビギナーから経験豊富な専門家、科学者まで幅広くサポートします。

How Fluorescence Guides Sectioning of Resin-embedded EM Samples
Electron microscopes, including transmission electron microscopes (TEM) and scanning electron microscopes (SEM), are widely utilized to gain detailed structural information about biological samples or non-living materials. Ultramicrotomy is the preferred technique for producing ultrathin sections, less than 100 nm thick for TEM/SEM analysis. During sample preparation small sample pieces are embedded in epoxy or acrylic resin, excess resin is trimmed away, and the specimen is sliced into ultrathin sections (50 nm - 100 nm) using a glass or diamond knife.

Coherent Raman Scattering Microscopy Publication List
CRS (Coherent Raman Scattering) microscopy is an umbrella term for label-free methods that image biological structures by exploiting the characteristic, intrinsic vibrational contrast of their molecules. The two most important CRS techniques are Coherent Anti-Stokes Raman Scattering (CARS) and Stimulated Raman Scattering (SRS). The biochemical image contrast of CRS is in many ways complementary to the molecular contrast obtained in fluorescence microscopy. A second crucial advantage of these methods is that they preserve the specimen/sample in a near pristine state. This reference list presents current and basic papers on CRS microscopy.

レーザーマイクロダイセクション
小動物などの解剖を行うとき、顕微鏡の接眼レンズを何時間ものぞくことがあります。 ライカ マイクロシステムズでは、さまざまな顕微鏡と幅広い解剖顕微鏡部品やアクセサリーから選ぶことができるため、ニーズに最適な顕微鏡ソリューションを見つけることができます。

Get to Insights Faster and Easier with AI Image Analysis Tools
Discover how Aivia helps scientists streamline image analysis with fast setup, accurate AI detection, and easy batch processing.

Unlocking the Secrets of Organoid Models in Biomedical Research
Get ready to delve deeper into the world of organoids and 3D models, which are essential tools for advancing our understanding of human health. Navigating these complex structures and obtaining clear images for analysis can be challenging. In this event, researchers from The University of Oxford and University College London will join us to show how the THUNDER Imager Cell Spinning Disk can provide more convincing, high-quality data for deeper insights into a variety of models.

A Guide to Polarized Light Microscopy
Polarized light microscopy (POL) enhances contrast in birefringent materials and is used in geology, biology, and materials science to study minerals, crystals, fibers, and plant cell walls.

Factors to Consider when Selecting Clinical Microscopes
What matters if you would like to purchase a clinical microscope? Learn how to arrive at the best buying decision from our Science Lab Article.

Clinical Microscopy: Considerations on Camera Selection
The need for images in pathology laboratories has significantly increased over the past few years, be it in histopathology, cytology, hematology, clinical microbiology, or other applications. They serve many purposes on top of the documentation of the diagnosis. Yet, the view through the eyepieces and the image are different in nature, the one is an optical image, the other a digital image. Looking at a few aspects of this process that are related cameras will help you make sure you can obtain the images with all the detail and color fidelity you need.
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