Description
Imaging & Technology
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High-definition flat detector imaging
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Real-time advanced image processing
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Adaptive radiation dose optimization
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Superior soft tissue and device visualization
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Wide-field imaging coverage for complex interventions
System Design
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Floor-mounted C-arm system with precise motorized movements
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Flexible table positioning for various procedures
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Ergonomic and space-efficient layout
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Designed for cath labs and hybrid OR installations
Workflow & Controls
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Integrated touch-screen and smart control module
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Automated workflow presets for faster procedures
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Customizable imaging parameters
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Seamless data integration and reporting tools
Clinical Applications
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Cardiology interventions
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Neurovascular imaging and treatments
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Peripheral vascular procedures
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Image-guided therapy in advanced surgical environments
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The Philips Azurion 7 B20/15 is an advanced interventional imaging platform created to enhance precision and efficiency in complex minimally invasive procedures. Combining state-of-the-art imaging technology with superior workflow integration, the system provides high-resolution visualization essential for cardiovascular, neurovascular, and peripheral interventions. Its reliable performance and optimized ergonomics allow clinicians to maintain consistent image quality while working comfortably in high-demand environments.
Designed with a versatile floor-mounted architecture, the Azurion 7 B20/15 offers excellent patient access and smooth system movement, making it suitable for both cath labs and hybrid operating rooms. The intelligent user interface, along with integrated touch-screen controls, ensures seamless operation, reducing manual steps and helping teams work faster and more accurately.
The system’s advanced dose management, customizable imaging protocols, and real-time image enhancements ensure a safe and efficient clinical workflow. Whether guiding stent placements, vascular treatments, or neurointerventional therapies, the Azurion 7 B20/15 delivers clarity, consistency, and procedural control.
Built for modern interventional environments, it supports better decision-making, improved patient outcomes, and high operational efficiency.






