IRILLIC

Technologies

Precision diagnostics through

Fluorescence Imaging

NIR Fluorescence in Open Surgery

Our cutting-edge Near-Infrared (NIR) Fluorescence technology revolutionizes open surgery procedures. By providing real-time, high-contrast visualization of critical structures, surgeons can make more informed decisions during complex operations. This advanced imaging modality enhances tissue differentiation, allowing for precise identification of tumor margins, lymph nodes, and vascular structures.

Key benefits:

Real time visualisation of auto fluorescence of the Parathyroid glands during Thyroid surgery

Key benefits:

Minimal Invasive Surgery with True 4K

Our Minimally Invasive Fluorescence Imaging Solution with 4K resolution sets a new standard for laparoscopic procedures. By integrating advanced fluorescence capabilities into a compact, ergonomic design, we enable surgeons to perform complex minimally invasive surgeries with unprecedented clarity and precision. This innovative system minimizes tissue trauma while maximizing surgical outcomes.

Key Features

Experience vascular structures like never before with our Advanced Micro Vascular Imaging technology. This imaging modality enhances the visibility of fine blood vessels and capillaries, providing surgeons with crucial information about tissue vascularity and perfusion. By offering multiple spectral imaging options, our system adapts to various surgical scenarios and tissue types.

Advantages

Our revolutionary 24 Axis Colour Calibration system ensures unparalleled color accuracy and consistency across all imaging modes. By precisely adjusting color representation along 24 distinct axes, this technology provides surgeons with the most true-to-life visualization of tissue structures. This level of color fidelity enhances tissue differentiation and supports more accurate clinical decision-making.

Advantages

Elevate your minimally invasive procedures with our advanced Near-Infrared (NIR) Fluorescence capabilities. This powerful imaging modality penetrates deeper into tissue than visible light, revealing critical structures and functional information that might otherwise remain hidden. By seamlessly switching between white light and NIR fluorescence modes, surgeons can navigate complex anatomies with greater confidence and precision.

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