
Fujifilm’s innovation spans across specialties to provide tailored and integrated solutions to meet the unique challenges of modern healthcare.
The AIRIS Vento is a revolutionary MRI solution boasting exceptional affordability, operational efficiency, and patient comfort. Its truly open design, combined with advanced magnetic circuit technology, ensures excellent image quality while maintaining a compact and minimalist footprint. Flexibility and ease of installation make it the preferred choice for facilities seeking superior performance with minimal infrastructure needs.
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Enhanced operability to support efficient and reliable diagnosis, including ease of operation and image sharing.
Supports correct image cross-section settings and reduces strain on the operator.
A soft celadon-based colour set, has been adopted for the GUI (Graphical User Interface).
Reconstruction capability of various cross-sectional images from the 3D images
Offers simultaneous image reconstruction of multiple cross-sections
Optimize Costs with a High ROI
The AIRIS Vento® is crafted with affordability in mind, offering low running costs and a reduced total cost of ownership. The permanent magnet design ensures a stable magnetic field without the need for cooling systems or additional equipment typically associated with superconductive MRI systems.
Unlike superconductive MRI systems that require complex RF and magnetic shielding, the AIRIS Vento® minimizes construction and installation requirements. Its compact structure simplifies setup, ensuring facilities can start imaging operations with reduced delays.
With its wide open gantry and ergonomic design, the AIRIS Vento® prioritizes patient comfort while reducing stress and anxiety associated with traditional MRI systems. Comfortable patients are less prone to movement, resulting in higher-quality imaging.
Comfort-Driven Design Features:
The AIRIS Vento is designed for flexibility, featuring a compact gantry with just three main components: gantry, console, and power supply system. This design significantly reduces the required installation space compared to traditional superconductive systems.