Magnetic Resonance Imaging

uMR 780

Fast. Exquisite. Accessible.

uMR 780

The uMR 780 ushers in a new era of rapid imaging with uCS (united Compressed Sensing) platform, breaking through limits of both speed and resolution with a maximum 36x acceleration factor of 16 and sub-millimeter isotropic resolution up to 0.5mm or less.

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The uMR® 780 ushers in a new era of rapid imaging with ACS (AI-assisted Compressed), a deep learning-based MR acceleration technology capable of doing acquisitions in seconds. Featuring exceptional homogeneity and gradient performance, combined with a comprehensive suite of advanced applications, the uMR® 780 enables you to achieve new levels of performance in anatomic and functional imaging.
Break Through the Limits of Speed with ACS (AI-assisted Compressed Sensing)
Intelligent Workflow for Improved Efficiency and Consistency
A Full Range of Advanced Applications for Clinical and Scientific Research

ACS | AI-assisted Compressed Sensing

ACS (AI-assisted Compressed Sensing) is United Imaging’s exclusive MR acceleration solution to best balance speed and image quality, combining CS, HF and PI and innovatively introducing the state-of-the-art deep learning neural network as the AI module into the reconstruction procedure. It empowers users to achieve either improved image quality without prolonging imaging time, or reduced imaging time without sacrificing image quality — allowing more complete examinations while enriching radiologists’ confidence and enhancing patient comfort.

Combination of Four Acceleration Methods

Allows higher acceleration level for MRI imaging.

Up to CT-like Scanning Speed

Enables each body part acquisition within 100 seconds, significantly increasing patient throughput and reducing motion artifacts.

Higher Resolution within Shorter Scan Times

Better depiction of small anatomical structures expands diagnostic capabilities.

Motion Freezing

Benefits elderly, pediatric and other special patients who have trouble tolerating MRI exams, improving the success rate.

High Performance System

High Performance Gradients

The high performance 42 mT/m & 220 T/m/s (simultaneous on each axis) gradients* improves data acquisition and scanning speed, which achieves higher work efficiency.

High-Density RF Channels

The 32/48 high-channel RF complements our integrated high-density coils, resulting in significant image SNR increase.

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Ultra-High Magnet Homogeneity

The powerful 3.0T magnet uses a 170 cm short-magnet design to ensure high homogeneity of the magnetic field, which provides a solid foundation for fast imaging and excellent fat saturation over a large FOV, as well as outstanding off-center imaging.

uCS®2.0 Platform

The uCS®2.0 Platform enables efficient application of compressed sensing with a routine clinical workflow for 2D, 3D and 4D MR exams. The uCS®2.0 imaging technology pushes the clinical boundaries of isotropic resolution and dynamic imaging speed.
uCS®2.0 Imaging Technology

uCS®2.0 combines the strength of conventional acceleration technologies and innovative compressed sensing, breaking through the limits of both speed and resolution with a maximum acceleration factor of 36x and sub-millimeter isotropic spatial resolution.

uCS®2.0 Processing Engine

The uCS®2.0 Processing Engine is a high-performance computing hardware platform that includes memory, data network, and a premier CPU. The intelligent reconstruction algorithm complements the outstanding computational power, resulting in ultra-fast reconstruction.

A Powerful System

High-performance Gradients

The gradient performance is designed with excellent performance to improve sequence acquisition, increase data acquisition speed, and achieve faster imaging.

High-density RF Channels

The high channel-count RF receiver architecture enables the full use of high-density surface coil arrays, thus significantly increasing Signal-to-Noise. Multiple high-density coils can be used in different combinations to reduce scan time and improve workflow efficiency.

Industry-leading Uniform Magnet

The powerful 3.0T magnet adopts an 170cm short magnet design to ensure the leading homogeneity of the magnetic field, bringing fast imaging and large-coverage fat saturation.

Clinical Application

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