The uMR® 790 is a system designed to energize innovative and collaborative research with exceptional gradient performance and ultra-high homogeneity, delivering finely detailed anatomical structures and valuable functional information. Outstanding long-lasting stability and consistency facilitate group studies and multicenter clinical research projects. An extensive range of advanced applications enables complex examinations across the whole body, taking your capabilities to the next level.
- Remarkable 100mT/m & 200T/m/s Gradient Performance
- Strong Collaboration and Open Architecture
- United Imaging Scientific Research Platform system
- The uMR® 790 provides ultra-high magnet homogeneity and gradient performance, which is a solid hardware foundation for scientific research
- Ultra-High Gradient Performance
The uMR® 790 is designed with ultra-high gradient performance of 100 mT/m & 200 T/m/s. The Research Gradients employ a full-digital GPA with 2.0 MW peak power developed in-house by United Imaging. It breaks technical bottlenecks in designing and manufacturing gradient coils with high strength, high linearity, and high precision, allowing for constantly high power-output and higher gradient performance.
- Ultra-High Uniformity Magnet
The uMR® 790 achieves an ultra-high magnet homogeneity which is several times the uniformity of conventional high-end 3.0T MR scanners. It also provides both wide-range and local magnetic fields with more precision, delivering outstanding image quality for both large FOV imaging and high-definition small FOV imaging.
- The uCS2.0 Platform enables efficient application of compressed sensing with a routine clinical workflow for 2D/3D/4D MR exams
- uCS2.0 Imaging Technology
- The uCS2.0 Processing Engine is a high-performance computing hardware that includes memory, data network and premier CPU
- PlaqueTool* One-click post-processing for plaque identification and analysis.
- Intelligent Centerline Extraction
- Intelligent Vessel Wall Segmentation and Analysis
- Intelligent Plaque Analysis
- 3D Mesh