Brivo MR235 0.3T MRI Scanner from GE Healthcare

High-precision imaging and enhanced efficiency now made affordable.

You always seek pristine, reliable image quality in an MRI. Equally crucial are high efficiency, operational consistency, patient comfort, and ease of use. And of course, you look for responsive support. Understanding your need to balance performance and investment, we present the Brivo MR235 — a 0.3T permanent magnet MRI system with dynamic balancing technology. This pathbreaking system delivers the features of a higher-field MRI at a price that is well within your reach.

The Brivo MR235 is designed with your needs in mind, incorporating the evolving requirements of today's MRI environment. Robust imaging technology, superior productivity, and improved patient comfort are all yours at an affordable price. Open magnet with dual post magnet design and homogeneity for quality imaging and flexibility. Wide patient bore for enhanced patient comfort and better access. 3D self-shielded gradient coil practical solution technology for an ideal imaging environment that reduces eddy currents and residual magnetization. Comprehensive set of dedicated coils for whole-body applications. High-order active shim coils for high spatial homogeneity equivalent to high-field systems.
Benefits

The Brivo MR235 is designed with your needs in mind, incorporating the evolving requirements of today's MRI environment. Robust imaging technology, superior productivity, and improved patient comfort are all yours at an affordable price.

Superior image quality with better visualization
The heart of the Brivo MR235 is a high homogeneity magnet that features a dynamic 3rd order (9 channels) autoshim and actively shielded gradients — the first of their kind in a permanent magnet system. Maintaining field uniformity throughout the imaging volume, this magnet delivers consistent results from routine to most demanding applications such as off-center FOV, fat water imaging, EPI diffusion, and FIESTA. The results: superb image quality and accurate pixel registration.

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