High-precision ultrasound, right where the patient needs it.

The HAPTUS robotic platform offers imaging specialists—radiologists, cardiologists, sports medicine physicians, and vascular surgeons—the ability to perform ultrasound scans with rigorous precision. This technology eliminates distance: the procedure is as reliable as in-person scans. The system allows for remote, real-time control of the probe, adjustment of acquisition parameters, and image visualization.

Designed by radiologists, engineered for their practice. SWIIFT Imaging was developed in collaboration with radiologists to meet the needs of the field.

It’s a very user-friendly solution. You feel like you’re controlling the movement at the other end of your arm. It really inspires confidence!

Olivier ROUVIERE

Head of Radiology Department, University Hospital of Lyon

The force feedback is both pleasant and precise. A fantastic sensation! It allows for a completely calm examination. I can easily see myself using such a solution tomorrow.

Cloé DURDILLY

Vascular physician, private sector

It works! Clearly a new approach to radiology. What impressed me most? The incredible quality of the force feedback. I’m ready to use it right now!

Félix AMIOT

Doctor & CEO - EchoFirst

Simple, ergonomic and intuitive interface

Quality of movement with fluidity, precision and feedback of effort

Seamless integration with existing RIS/PACS systems

Physical Imaging

We believe that the combination of robotics and artificial intelligence paves the way for a major revolution in medical imaging.

Ultrasound solutions incorporating advanced artificial intelligence will assist radiologists in performing examinations. These technologies will facilitate more reproducible, precise, and standardized acquisitions, while also guiding the operator in probe positioning and optimizing acquisition parameters.

Ultrasound solutions incorporating advanced artificial intelligence will assist radiologists in performing examinations. These technologies will facilitate more reproducible, precise, and standardized acquisitions, while also guiding the operator in probe positioning and optimizing acquisition parameters.

Thanks to real-time image analysis, the system can suggest adjustments, highlight anatomical structures of interest, and contribute to consistent examination quality. By combining medical expertise, artificial intelligence, and advanced assistance tools, this approach aims to improve the quality of care and medical productivity, while expanding access to high-quality imaging, regardless of the practice setting.

Phisical AI Scheme

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