The TruFocus system makes multiposition experiments and long-term, time-lapse imaging more robust and reliable. Learn more.
More Robust and Reliable Experiments
The TruFocus system makes multiposition experiments and long-term, time-lapse imaging more robust and reliable.
An accurate beam maintains the focus position, compensating for thermal drift caused by changes in room temperature or drug delivery during experiments
TruFocus Red system maintains the focus position during near-infrared (NIR) imaging when using dyes like Cy7
3D imaging of NK cells attacking spheroid HT-29 tumor cells for 48 hours.
Image data courtesy of: Dr. Yuji Mishima, The Cancer Chemotherapy Center of JFCR.
TruFocus Z-Drift Compensation
Focus find mode allows you to easily find the focus position of your sample
Single-shot autofocus (AF) mode allows you to perform multi-focus multi-position experiments for efficient 3D and 4D imaging
Continuous AF mode enables to focus your sample in real time for high resolution, long term time-lapse imaging
Compatible with plastic and glass vessels
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3D Time-Lapse Imaging of Spheroids with the FLUOVIEW FV3000 Confocal Microscope
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Development of a New Fucci (CA) Application: A Fluorescent Probe for Visualizing Cell Cycles
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Silicone Immersion Objectives for Long-Term Live-Cell Imaging of Plant Zygote Embryogenesis
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A Z-Drift Compensation System for a Multidimensional Cell-Based Assay at the Single Cell Level
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Related Products
Utilize the Olympus real time controller for physiologically relevant data with minimal cell disturbance
Maintain cell viability while imaging with various environmental control options
Maintain focus accurately and reliably in time-lapse experiments with TruFocus
Discover the real shape of your cells with Olympus silicone immersion optics
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Excellent simultaneous multi-color TIRF for investigation of membrane dynamics and single molecule detection
Exact colocalization of up to four markers thanks to individual penetration depth control
Take advantage of Olympus’ remarkable TIRF objective with the world's highest NA of 1.7* (*As of July 25, 2017. According to Olympus research)
Intuitive set-up of complex experiments with Graphical Experiment Manager (GEM)
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Rapid and high-resolution confocal imaging with a spinning disk system
3D confocal time-lapse imaging of live cells with less phototoxicity and bleaching
Precise 3D imaging with improved light collection using silicone oil immersion objectives
Upgrade to the IXplore SpinSR super resolution system depending on your research progress and/or budget
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Super resolution down to 120 nm XY resolution
Prolonged cell viability in confocal time-lapse imaging due to less phototoxicity and bleaching
Switch between widefield, confocal and super-resolution with one click
Accurate 3D reconstruction with Olympus silicone oil immersion objectives
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Game-changing dynamic range for imaging from the macro scale to subcellular structures
Multiplex up to six channels simultaneously with TruSpectral technology
Redesigned high-speed, high-resolution scanners for fixed and live cell imaging
Improved depth and photosensitivity with pioneering NIR capabilities and renowned optics
Peace of mind with the reliable, repeatable SilVIR detector
Industry leading* ten laser lines with a broader spectral range from 405 nm to 785 nm
*As of October 2023.
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Acquire accurate, quantitative image data from the macro scale to subcellular structures
Obtain more information from a single multicolor image
Monitor neuron and other essential dynamics with high-speed imaging
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Fast and precise image acquisition and analysis
Hyper-precise real-time experiment control
Analysis module
Learn More
Utilize the Olympus real time controller for physiologically relevant data with minimal cell disturbance
Maintain cell viability while imaging with various environmental control options
Maintain focus accurately and reliably in time-lapse experiments with TruFocus
Discover the real shape of your cells with Olympus silicone immersion optics
Learn More
Rapid and high-resolution confocal imaging with a spinning disk system
3D confocal time-lapse imaging of live cells with less phototoxicity and bleaching
Precise 3D imaging with improved light collection using silicone oil immersion objectives
Upgrade to the IXplore SpinSR super resolution system depending on your research progress and/or budget
Learn More
Super resolution down to 120 nm XY resolution
Prolonged cell viability in confocal time-lapse imaging due to less phototoxicity and bleaching
Switch between widefield, confocal and super-resolution with one click
Accurate 3D reconstruction with Olympus silicone oil immersion objectives
Learn More
Game-changing dynamic range for imaging from the macro scale to subcellular structures
Multiplex up to six channels simultaneously with TruSpectral technology
Redesigned high-speed, high-resolution scanners for fixed and live cell imaging
Improved depth and photosensitivity with pioneering NIR capabilities and renowned optics
Peace of mind with the reliable, repeatable SilVIR detector
Industry leading* ten laser lines with a broader spectral range from 405 nm to 785 nm
*As of October 2023.
Learn More
Acquire accurate, quantitative image data from the macro scale to subcellular structures
Obtain more information from a single multicolor image
Monitor neuron and other essential dynamics with high-speed imaging
Learn More
Innovative Tru technologies help researchers overcome the challenges of imaging experiments.
Seamless deconvolution for clearer, sharper images.
High light efficiency for bright, precise multicolor images.
Automated correction for brighter and sharper images at depth.
Accurate and efficient image analysis based on deep-learning technology.
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