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    uAIFI Empowered 1.5T MR uMR 680

           
               

    Experience the New Clinical Reality

               

    The uMR 680 stands at the forefront of innovation, empowered by the uAIFI technology. This cutting-edge suite of technologies not only revolutionizes patient comfort but also maximizes efficiency and productivity while delivering high-quality imaging. With its advanced capabilities such as, uCS (united Compressed Sensing), uMR 680 ensures fast scanning to optimize workflow and throughput. Exceptional system performance opens doors to a myriad of clinical scenarios, allowing for a more comprehensive range of applications and patient care.

           
       

    Deliver a New Reality of AI Technology


    Our uMR 680 is fully equipped with the innovative uAIFI platform, allowing it to surpass the limitations of traditional magnetic resonance scanning. These advanced technologies enhance imaging capabilities, delivering clearer and more detailed results that ultimately improve diagnostic accuracy and patient care.

    DeepRecon

    Based on a deep learning-based image reconstruction algorithm, DeepRecon enables intelligent denoising for improved signal-to-noise ratio, while increasing the image sharpness simultaneously.

    Switch to DeepRecon
    Switch to convetional
    Significant improvement in SNR

    Switch to DeepRecon
    Switch to convetional
    Image quality enhancement while time savings

    Deliver a New Reality of Comfort


    Traditional MRI scans can be challenging for some patients, leading to discomfort, anxiety, claustrophobia, or involuntary movement. These factors can affect the quality of the examination, leading to unusable images or requiring repeat scans. Our innovative solutions are specifically designed to significantly enhance patient comfort and deliver superior image quality.

    The MRI bore design greatly affects patient experience. Unique starlight and custom color lighting effect helps reduce claustrophobia, creating a warm, serene environment that enhances patient comfort.

    Acoustic noise during MRI scans has been a major concern, impacting patient experience. QScan addresses this issue by transforming gradient pulses into a smoother waveform, allowing patients to undergo MRI examinations at conversational noise levels with up to 97% acoustic noise reduction1.

    1 Data on file. The actual consumption may vary depending on usage patterns and configurations.

    Industry's first millimeter-wave radar solution for belt-free respiratory gating and monitoring. Patients can experience a belt-free exam with EasySense, fully integrated inside the MRI bore, providing contactless sensing of a patient's respiratory motion.

    Starlight Experience

    The MRI bore design greatly affects patient experience. Unique starlight and custom color lighting effect helps reduce claustrophobia, creating a warm, serene environment that enhances patient comfort.

    Conversation-Level Scan Sound with QScan

    Acoustic noise during MRI scans has been a major concern, impacting patient experience. QScan addresses this issue by transforming gradient pulses into a smoother waveform, allowing patients to undergo MRI examinations at conversational noise levels with up to 97% acoustic noise reduction1.

    1 Data on file. The actual consumption may vary depending on usage patterns and configurations.

    Touchless Respiratory Gating with EasySense

    Industry's first millimeter-wave radar solution for belt-free respiratory gating and monitoring. Patients can experience a belt-free exam with EasySense, fully integrated inside the MRI bore, providing contactless sensing of a patient's respiratory motion.

    Deliver a New Reality of Performance


    UIH achieves in-house R&D control over core components and key technologies, ensuring seamless coordination and exceptional stability. Consequently, our uMR 680 delivers outstanding system performance, positioning it as a leader in its class and enhancing the overall user experience.

    The remarkable 45 mT/m & 200 T/m/s (simultaneous on each axis) unlock higher signal-to-noise ratio for various clinical scenario.

    Unmatched homogeneity in its class (0.033ppm @ 30 cm DSV (Typical)), means that you can achieve skin-to-skin fat saturation, while the spacious 50 × 50 × 50 cm3 field-of-view allows for easy patient positioning.

    Up to 96 RF independent receive channels enable the system to collect more data for image reconstruction in less time, reducing scan time and enhancing image resolution.

    Powerful Gradient Performance

    The remarkable 45 mT/m & 200 T/m/s (simultaneous on each axis) unlock higher signal-to-noise ratio for various clinical scenario.

    Excellent Uniform Magnet

    Unmatched homogeneity in its class (0.033ppm @ 30 cm DSV (Typical)), means that you can achieve skin-to-skin fat saturation, while the spacious 50 × 50 × 50 cm3 field-of-view allows for easy patient positioning.

    High-Density RF Channels

    Up to 96 RF independent receive channels enable the system to collect more data for image reconstruction in less time, reducing scan time and enhancing image resolution.

    Deliver a New Reality of Productivity


    From patient and scan preparation, through data acquisition, to post-processing, our uMR 680 is empowered by uAIFI technology throughout the entire workflow. High productivity not only elevates patient satisfaction and overall experience but also boosts the operational efficiency and reputation of the healthcare institution.

    Technical Details
    • Magnet System
    • Gradient System
    • RF System
    • Installation Information

    Magnet System

     

    Field Strength

    1.5 Tesla

    Bore Diameter

    70 cm

    Evaporation Rate of the Cryogen During Scanning

    0% (Under normal use)

    Shimming

    Passive & Active

    Gradient System

     

    Maximum Gradient Amplitude

    45 mT/m

    Maximum Slew Rate

    200 T/m/s

    RF System

     

    Number of Independent Receiver Channels

    Up to 96

    Installation Information

     

    Scanning Room Area (Minimum)

    19.83 m2

    Control Room Area (Minimum)

    4 m2

    Complies with the following safety standards: EN 60601-1, EN 60601-1-2, and EN 60601-2-33.
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