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Red, blue, and green fluorescently labelled cells on a black background.
In Living Color: Exploring Advances in Quantitative Live Cell Imaging 
The latest technological developments and imaging platforms take live cell imaging to the next level.
In Living Color: Exploring Advances in Quantitative Live Cell Imaging 
In Living Color: Exploring Advances in Quantitative Live Cell Imaging 

The latest technological developments and imaging platforms take live cell imaging to the next level.

The latest technological developments and imaging platforms take live cell imaging to the next level.

confocal fluorescence microscopy

<em >The Scientist</em>&rsquo;s Journal Club: Neuroscience and Cell Biology
The Scientist’s Journal Club: Neuroscience and Cell Biology
The Scientist Staff | Mar 20, 2024 | 1 min read
Scientists discuss their latest findings on cell secretory states, synapse formation, and neurodegenerative disease.
Microscopic image of a live amoeba.
Illuminating Specimens Through Live Cell Imaging
Charlene Lancaster, PhD | Mar 14, 2024 | 8 min read
Live cell imaging is a powerful microscopy technique employed by scientists to monitor molecular processes and cellular behavior in real time.
Izzy Jayasinghe stands in front of a projection of a map, looking as though she is speaking
Izzy Jayasinghe Harnesses Cutting-Edge Microscopy to Image Cells
Shawna Williams | Jul 1, 2021 | 4 min read
The University of Sheffield researcher devises new protocols to gain molecular-level insights.
Live-cell Imaging
The Scientist | Aug 27, 2020 | 1 min read
Download this eBook to take a closer look at past efforts, modern challenges, and future advances!
Image of the Day: Break Apart
Sukanya Charuchandra | Sep 13, 2018 | 1 min read
Scientists can now view mitosis one protein (or more) at a time using a 4-D computer model.
Image of the Day: X-Ray Vision
Sukanya Charuchandra | Jun 28, 2018 | 1 min read
Using a unique microscope, researchers looked inside a yet-to-be identified pseudoscorpion from Peru.
Image of the Day: Burst Your Bubble
The Scientist | Jun 15, 2017 | 1 min read
Intracellular electrostatic exchanges between RNA and proteins create dynamic glob-like membraneless organelles.
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