Violet 3.0 is the all-in-one microscopy platform for QF-Pro® technology, bringing Fluorescence Lifetime Imaging Microscopy (FLIM) and Förster Resonance Energy Transfer (FRET) to any lab.
This comprehensive benchtop solution features a high-end modulated laser, sensitive image sensor, and also a multi-channel LED for immunofluorescence. Violet 3.0 includes two stage inserts:
Its ease of use supports both experienced scientists and beginners in exploring spatial biology with confidence. Experience research as never before and pave the way for groundbreaking advancements in spatial biology.
What makes Violet 3.0 even more accessibleand easy to use is the accompanying QF-Pro® software suite. This guides users of all experience through the process of loading their samples and creating a map of Regions of Interest (ROIs) to be acquired. The platform then sequentially acquires all mapped ROIs and calculates a QF-Pro® score and image per region. Post-acquisition analyses, such as the application of a threshold or change in Lookup Table (LUT) is automated, with the option of fine-tuning for more experienced users. All data can then be seamlessly exported from the QF-Pro® software into Microsoft Excel (data) or PowerPoint/PDF (images). The combination of Violet 3.0 and QF-Pro® software allows any laboratory or researcher to access to benefits of QF-Pro®.
Flexible reagent kits which allow QF-Pro® to be used in any laboratory setting. These kits contain everything needed for a user to perform QF-Pro® analytics in house and can be applied to any biomarker.
Violet 3.0 has an easy to switch stage insert, allowing for the analysis of microwell plates or up to four standard microscope slides at a time. It is equipped with 10X, 20X and 40X dry objectives.
Violet 3.0 is accompanied with one desktop licence of our QF-Pro® software allowing users of all expertise to easily run the device and generate groundbreaking data.
Alongside the modulated laser required for QF-Pro® analysis a secondary multichannel LED (365nm, 488nm, 585nm and 635nm) is included for the illumination of secondary biomarkers of interest.
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