MAB-T600 Advantages:
• High-Performance Computing:
Powered by 12th/13th generation Intel® Core™ processors, can quickly integrate medical images, perform 3D image reconstruction, and accurately locate a patient's cranial structure and lesion using surface matching technology. Its powerful computing capacity also allows for simultaneous control of the robotic arm, execution of surgical navigation, and real-time precise tracking of the surgical site.
• GPU Expansion for AI-Driven Machine Vision:
The MAB-T600 is equipped with a PCIe x16 slot, allowing flexible GPU expansion to enhance computing performance. This enables the application of machine vision technology to drive the robotic arm to the optimal position and use facial recognition for precise localization and real-time tracking. In addition, NaoTrac features an automatic surgical instrument recognition function, allowing it to identify the tools attached to the robotic arm, ensuring smoother surgical procedures.
• Customized Power-on Design & Secure Data Transmission:
The MAB-T600 includes three PCIe x1 slots,, offering customization and expansion options. To support the MAB-T600 within the NaoTrac robot, the PCIe slots can connect to custom COM port expansion boards, extending the PC power button to the robot's exterior. Furthermore, PCIe slots can connect to USB expansion cards, enabling the secure transmission of patient CT/MRI data via USB, reducing cybersecurity risks from network transmission.
• Medical-Grade Certified Reliability:
Compliance with medical-grade EMC and safety standards, the MAB-T600 makes it suitable for use in operating rooms. In addition, Avalue provides long-term supply guarantees and immediate technical support for seamless upgrades and maintenance.
Currently, NaoTrac has successfully performed nearly 160 surgeries, showcasing the excellent effectiveness of AI surgical navigation. Avalue will continue collaborating with innovative partners in the medical field to further integrate AI, robotics, and medical applications, creating smarter and more efficient surgical and healthcare environments.