RAYDIAX has developed the TACT, a therapeutic imaging system that combines 3D multislice CT and 2D angiography to enhance the precision and safety of minimally invasive tumor interventions. This system optimizes radiation dose and improves interventional workflows, enabling physicians to perform efficient procedures with reduced complications for patients.
Funding
$2.5M raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

BVHHFounders
Product
Problem
Minimally invasive tumor interventions require precise imaging to ensure accuracy and safety, but current systems often involve suboptimal radiation doses and inefficient workflows. This can lead to increased complications and limit the spectrum of treatable patients.
Solution
RAYDIAX has developed the TACT, a hybrid imaging system that combines high-quality 3D multislice CT imaging with large-area 2D angiography to enhance minimally invasive therapies. The TACT's integrated design allows for rapid modality switching, enabling uninterrupted management of bleeding complications. The system is designed for therapeutic applications, optimizing radiation dose for both patients and clinical staff while creating safe and reliable treatment conditions. Its open design and intuitive user interface increase the safety and efficiency of daily procedures, expanding the possibilities for minimally invasive interventions.
Target Audience
The primary audience includes physicians performing minimally invasive tumor interventions, as well as hospitals and research centers focused on advancing therapeutic imaging techniques and robotic surgery.
Features
- Combines 3D multislice CT and 2D angiography in a single system
- Integrated design with a small footprint for fast modality switching
- Optimized imaging chain for therapeutic applications, reducing radiation dose
- One-meter free inner diameter and free-floating table for user flexibility
- Specialized API for closed-loop control and GUI integration with surgical robots