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BETAIMAGER DFINE High resolution digital autoradiography system

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  • BETAIMAGER DFINE High resolution digital autoradiography system

    description: The ONLY high-resolution digital autoradiography solution.     
    Summarize
    The ONLY high-resolution digital autoradiography solution.
    The BetaIMAGER™ DFINE is the system of choice for applications involving smaller tissue sections and where the best possible spatial resolution is required. Four samples, up to 24 x 32mm each in size, can be loaded onto the automated stage for sequential image acquisition. Spatial resolution as high as 10μm can be achieved with tritium.
    The DFINE is the perfect ex-vivo complement to PET and SPECT molecular imaging.
    The BetaIMAGER DFINE is 50 times faster than film with tritium-labeled samples, allowing precise quantitation.  The DEFINE boasts a 10μm resolution for tritiated samples and is unsurpassed by any other non-film technique. Further, DFINE has no complex techniques or procedures to learn.
    The BetaIMAGER™ tRACER is the system of choice for applications requiring the highest sensitivity and either high throughput, or larger sample sizes. With the BetaIMAGER tRACER, autoradiography becomes a fast and easy routine.
    Tritium is a reliable beta emitter for measurement of biological samples. The big problem is that detection is slow. Traditional film and phosphor imaging methods can take weeks to complete. But now, there’s a better way to meet the high throughput needs of your lab: The BetaIMAGER tRACER system cuts your tritium imaging time from weeks to hours. Exceptional sensitivity can be obtained even with ultra-low energy tritium emissions: the tRACER system detects tritium levels as low as 0,007 cpm/mm2
    With a 200 x 250mm maximum field of view, the BetaIMAGER can accommodate up to 15 microscope slides, several larger tissue sections, or TLC plates for simultaneous image acquisition.

    Advantage
    Faster imaging time: No need for blind exposure, no overexposure or underexposure, observe the first result in a short period of time.
    Detect multiple radioactive isotopes, multiple labeling schemes available.
    Higher detection sensitivity.
    Higher detection resolution.
    Scintillation foil detector.
    Gaseous avalanche detector.

    Application
    Molecular imaging, pharmacology, physiology, neuroscience, molecular biology, cancer research, botany, etc..

    Detailed Specifications