DirectDensity Algorithm
The DirectDensity algorithm delivers electron density images independent of kV settings, supporting simple dose calculation workflows at any kV voltage. The technology removes the traditional 120 kV constraint, supporting personalized RT imaging across diverse oncology populations.
iMAR Metal Artifact Reduction
iMAR iterative metal artifact reduction significantly reduces artifacts from implants, surgical fixations, dental restorations, and spinal hardware. The technology supports confident contouring and accurate dose calculation across oncology patients with hip replacements, port-a-caths, and metal fixations.
Dual Energy CT Imaging
Dual Energy automatically acquires two CT scans at different kV voltages, allowing image manipulation to improve visualisation and support clinicians. The all-new detector enhances Dual Energy performance for advanced RT planning across complex oncology cases.
CARE kV Adaptable kV Settings
CARE kV automatic task-based kV selection moves beyond the traditional 120 kV constraint, supporting personalized imaging for each RT patient. Adaptable kV settings deliver dose-optimized images tailored to patient anatomy, body habitus, and treatment objectives.
80 cm Wide Bore
The 80 cm wide bore accommodates radiation therapy patients with immobilisation devices, thermoplastic body masks, breast boards, prone positioning aids, and other RT-specific patient setup. The wide aperture supports treatment-position scanning across diverse oncology cases worldwide.
syngo.via RT Image Suite
syngo.via RT Image Suite delivers AI-powered AutoContouring with Deep Learning, Hybrid Atlas, and Model-based methods, plus rigid and deformable registration, multimodality contouring, and integration with multi-parametric MR, dual-energy CT, and 4D PET/CT data sources.
Direct SPR for Proton Therapy
Direct SPR (Stopping Power Ratio) for Siemens Healthineers Dual Energy scanners supports proton therapy treatment planning. The technology enables direct calculation of proton stopping power from Dual Energy CT data across modern proton therapy centres.
