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Leica Microsystems develops and manufactures microscopes and scientific instruments for the analysis of microstructures and nanostructures. Ever since the company started as a family business in the nineteenth century, its instruments have been widely recognized for their optical precision and innovative technology. It is one of the market leaders in compound and stereo microscopy, digital microscopy, confocal laser scanning microscopy with related imaging systems, electron microscopy sample preparation, and surgical microscopes. Leica Microsystems has seven major plants and product development sites around the world. The company is represented in over 100 countries, has sales and service organizations in 20 countries, and an international network of distribution partners. Its headquarters are located in Wetzlar, Germany. Leica Microsystems is proud to be part of Danaher Danaher’s science and technology leadership puts solutions from Leica Microsystems at the forefront of the industry, so they can reach more people. Being part of Danaher means we can offer unparalleled breadth and depth of expertise and solutions to our customers. Together with Danaher’s other businesses across Biotechnology, Diagnostics and Life Sciences, we unlock the transformative potential of cutting-edge science and technology to improve billions of lives every day.
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https://fcld.ly/leica-linkedin
Externer Link zu Leica Microsystems
- Branche
- Herstellung medizinischer Geräte
- Größe
- 1.001–5.000 Beschäftigte
- Hauptsitz
- Wetzlar
- Art
- Privatunternehmen
- Spezialgebiete
- Light Microscopes, Confocal Microscopes, Surgical Microscopes, Stereo Microscopes and Macroscopes, Digital Microscopes, Microscope Software & Cameras, Electron Microscopy Sample Preparation, Super-Resolution Microscopes und Nanoscopes
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Beschäftigte von Leica Microsystems
Updates
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ESCAPE to fast volumetric imaging with the Viventis SCAPE single objective light sheet microscope! The extremely fast SCAPE scanning enables volumetric imaging without moving the sample and allows you to follow rapid signaling processes in all dimensions as they unfold. Learn more: https://fcld.ly/rruusde Video: Freely moving Caenorhabditis elegans imaged at 3 volumes per second over a volume of 199 μm (x) × 220 μm (y) × 20 μm (z). 220 planes were imaged per volume. The animal expresses a polyglutamine expansion reporter (Q40::YFP) and carries the myosin heavy chain B mutation unc-54(s95). Sample courtesy of Tali Gidalevitz, PhD, Department of Biology, Drexel University, Philadelphia, USA. #LightSheetMicroscopy #LiveCellImaging #3DImaging #VolumetricImaging #Microscopy
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📅 28 May 2026 | 15:00 BST | 16:00 CET | 10:00 EST 👉 Join this live webinar to discover how confocal fluorescence microscopy enables high‑resolution 3D visualization of nanomaterial uptake and intracellular trafficking. Register here: https://fcld.ly/atmr983 🎓 Prof. Barbara Rothen‑Rutishauser will share real research examples covering: – Real‑time visualization of nanomaterial uptake – How physicochemical properties influence cellular processing – Differences across cell models and phenotypes – Insights from bioprinted epithelial gradient models #ConfocalMicroscopy #Nanomaterials #CellImaging #Nanomedicine #Bioscience
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Working with a microscope shouldn’t mean suffering from eye, shoulder, back or neck strain. Leica ergonomic microscope accessories can help make the instruments in your workplace adjustable for each user. Discover our full range here: https://fcld.ly/4axspuq #ElectronicsIndustry #PCB #SemiconductorIndustry
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May was our #SpatialMonth, and what an incredible month it has been! We hosted Spatial Biology Symposium in Boston & San Francisco with Abcam and MBC BioLabs, bringing the community together for inspiring conversations around spatial proteomics and multiplexed imaging. Grateful for the amazing speakers, partners, and attendees who made these events so impactful - Wayne Stallaert, Emily Condiff, Andrea J. Radtke, Tim Ragan, Kaitlynn McCay, Kit-Yi Yam, Ph.D., Amy McCann, Vidyodhaya Sundaram, PhD, MBA, Paola Betancur, Eliah Shamir, David Joy, William Leineweber, Leah Makley, Hanchen Wang, Silvia Sbacchi and Rick Heil-Chapdelaine. Learn more: https://fcld.ly/1d2220b #SpatialBiology #MultiplexImaging #LifeSciences
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ESCAPE phototoxicity – with the recently launched Viventis SCAPE single-objective light sheet microscope! Perform gentle, fast or long-term volumetric imaging without harming your sample or altering your process of interest. Follow processes in 3D over extended periods and reveal dynamic events that might otherwise remain undetected. Learn more: https://fcld.ly/rruusde Video: Timelapse of ovulation inside live adult C. elegans, actin fluorescently labeled. Sample courtesy of Jan Felix Geisler, Stephan Grill lab. #LightSheetMicroscopy #LiveCellImaging #3DImaging #VolumetricImaging #Microscopy
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With the Visoria M materials microscope, you can quickly capture sample details with a press of a button while keeping your eyes on the image. The button for image acquisition is easily accessible on the microscope stand. Simplify your documentation with Visoria M. Learn more: https://fcld.ly/d6z1obc #MaterialsScience #Polymers #Electronics
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To understand how the biconvex shape of the eye of a fruit fly is produced, researchers examined the role of a main component: chitin. This image was acquired using microscopy from Leica Microsystems. Learn more about this research: https://fcld.ly/aa9uva0 Discover more on Oxford University’s Biomedical Picture of the Day website. This platform engages everyone in the wonders of biology and its impact on medicine. Want to submit an image from your research? Get in touch! #Microscopy #LifeScience
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Learn how FLIM-FRET improves data quality and precision for molecular interactions from this article. Förster resonance energy transfer (FRET) is useful for studying interactions, like between proteins. Fluorescence lifetime imaging microscopy (FLIM) improves precision. https://fcld.ly/ortef6i Image: Ribbon diagram of a donor (D) and acceptor (A) molecule which participate in FRET (Förster resonance energy transfer).
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Looking for the perfect microscopy solution? 🔬 Leica Microsystems will be at EPHJ Geneva from June 16-19, 2026. Visit us at Booth R25 to see our latest solutions and benefit from special trade show promotions! See you there! 👋 https://fcld.ly/qnad8v4 #EPHJ2026 #LeicaMicrosystems #Microscopy #QualityControl #Innovation #Geneva
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