Nikon Microscope Solutions

Nikon Microscope Solutions Nikon has over 100 years of optical experience and remains the only microscope company to manufacture its own glass.

The official account for the Life Science Solutions division of the Nikon Healthcare Business, with a focus on biological microscopy products and services for the life science, biotech/pharma, and clinical laboratory markets. We are here to be your trusted partner in imaging – from basic microscopes to the latest high-end scientific imaging technologies, including advanced confocal and super-resol

ution options. Our global corporate mission statement centers on promoting trustworthiness and creativity. We are focused on shedding new light on healthcare by accelerating imaging innovation in key fields such as regenerative medicine and drug discovery, as well as life science research more broadly. Ultimately, our goal is to help people around the world realize a better quality of life. We also run Nikon’s annual Small World competitions – globally recognized for over 50 years as the leading forum for showcasing the beauty and complexity of life as seen through the light microscope. To find contact information for your world area, please visit our website here: https://www.microscope.healthcare.nikon.com/contact

07/22/2026

Today is , a global awareness day about brain health and neurological disorders, emphasizing prevention, access to care, and lifelong brain wellness.

Looking to explore the latest neuroscience research? Nikon's PubScope database includes more than 20,000 publications tagged with the Neuroscience concept, showcasing the breadth of research enabled by Nikon's advanced imaging technologies.

🔎Explore the articles: https://bit.ly/4bCMhK5

🧠Optimize transfection, made simple with AI.​🚀The Transfection Efficiency assay on the ECLIPSE Ji Smart Imaging System q...
07/21/2026

🧠Optimize transfection, made simple with AI.​

🚀The Transfection Efficiency assay on the ECLIPSE Ji Smart Imaging System quantifies the percentage of cells expressing a target protein, helping determine expression efficiency quickly and accurately. Using AI to detect nuclei and cellular regions from brightfield images, it enables evaluation with minimal cell damage. No complex setup required.​

🔗Discover more in our application note: https://bit.ly/4fpN6qD

07/20/2026

Cells rely on tiny, dynamic compartments called stress granules to survive challenging conditions, but how these structures form has remained difficult to study in controlled environments.

🫧 In a new Nature Communications study, the Ruggieri lab at the University of Heidelberg, which hosts one of our Nikon Imaging Centers ( ), introduces a cytosolic extract-in-oil droplet system to reconstitute stress granules outside living cells. By mimicking the intracellular environment, they show that phase separation can be triggered and tuned under defined conditions.

This work opens new ways to explore how stress granules contribute to cellular adaptation and disease, including neurodegeneration.

🔗 Read the study: https://go.nature.com/4pvdMuY

07/17/2026

🎥Missed our live webinar? The recording of our recent webinar "Calcium Imaging in Plants: From Single Organelles to Whole Organisms" is now available on our website!

🌱How do plants translate environmental stimuli into biological action? The answer lies in “calcium signatures”- the complex, tightly regulated Ca2+ fluxes that define how plants respond to the world around them.

👉Watch the archive here: https://bit.ly/4vER84x

🤖 This  , we're reflecting on Nikon's journey in developing AI-powered imaging solutions designed to make microscopy sma...
07/16/2026

🤖 This , we're reflecting on Nikon's journey in developing AI-powered imaging solutions designed to make microscopy smarter, faster, and more reproducible.

➡️ Swipe through to see our AI journey - how far we've come, and where we’re headed next.

🔗Learn more about the NIS-Elements AI modules here: https://bit.ly/4f40FNL

07/14/2026

🔬How is automation shaping the future of fertility treatments?

🗣️We sat down with Dr. David Jareño Martínez, Senior Embryologist at CHIREC, to discuss how the Nikon ECLIPSE Ti2-I is advancing ICSI and IMSI procedures. By automating critical microscope settings, the ECLIPSE Ti2-I helps enhance treatment quality in a field where precision and experience are everything.

👉Read the full article here: https://bit.ly/4yp0Ef4

In the recent   story featuring Nikon Centre of Excellence at Leibniz Institute of Virology (LIV), we highlighted their ...
07/13/2026

In the recent story featuring Nikon Centre of Excellence at Leibniz Institute of Virology (LIV), we highlighted their C2 confocal microscope that has been empowering the researchers for years ✨

The C2 confocal has been a workhorse in labs since its introduction in 2010. It built a name for itself on being incredibly stable and having great optics.

Fast forward to today, and that same DNA is in our 10th-generation AX R point scanner, a critical tool for researchers everywhere.

Read the full article here 👉 https://bit.ly/4vjbDUk

We had an amazing time connecting with the brightest minds in neuroscience at Europe's largest neuroscience event -   in...
07/10/2026

We had an amazing time connecting with the brightest minds in neuroscience at Europe's largest neuroscience event - in Barcelona! 🧠🔬

Whether you checked out our AX R MP multiphoton microscope replica (and the cutest handmade crocheted mouse on its stage 🐭) or made a good memory to take home with you at the photobooth, thank you for stopping by our booth and having a chat with us!

Curious about the AX R MP multiphoton microscope system? Visit our website to learn more: https://bit.ly/44Pe06v

What an incredible few days at   in London! 🇬🇧✨It was fantastic to see so much interest in our ECLIPSE Ti2-I motorized i...
07/09/2026

What an incredible few days at in London! 🇬🇧✨

It was fantastic to see so much interest in our ECLIPSE Ti2-I motorized inverted microscope for and procedures. A huge thank you to FertiPro for showcasing it so brilliantly through their live demonstrations - we hope you had the chance to see it in action! 🔬🌟

Want to learn more or continue the conversation? Get in touch with us today! 👉 https://bit.ly/4aJ55Hg

07/08/2026

🧬How do cells switch from “pulsing” movements to a steady force during division?

As cells prepare to divide, they must shift from dynamic, fluctuating contractions to a more stable and coordinated state. In a new preprint, the group of Perihan Nalbant (Universität Duisburg-Essen) shows that the protein Ect2 plays a key role in this transition.

🔬 Using live-cell imaging, they found that when Ect2 attaches to the cell membrane, it stops pulsations and creates a smooth, uniform contraction, essential for successful division. Without this attachment, the pulsing behavior returns.

This work reveals how cells fine-tune their internal forces to divide properly.

🔗 Read the full preprint: https://doi.org/10.64898/2026.06.03.729549

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