This project is a 3D medical animation showcasing the operating principle of Robotics, a robotic-assisted interventional system developed by LN Robotic.
The system is designed to precisely assist and perform stent placement procedures for the treatment of blood flow disorders caused by coronary artery stenosis and occlusion. Its primary purpose is to restore normal blood flow by accurately expanding narrowed vessels affected by plaque buildup.
We created a 3D medical animation that illustrates the mechanism and workflow of the Robotics system.
The animation anatomically recreates a narrowed blood vessel and visualizes the step-by-step process of a catheter and stent navigating to the lesion site, followed by vessel expansion and restoration of normal blood flow.
In addition, it demonstrates the remote-control architecture that allows clinicians to operate the system from a console without direct radiation exposure, along with the precise movement mechanism of the robotic arm.
Through this visualization, the animation effectively communicates the system’s key advantages:
⦁ Reduced radiation exposure for medical staff
⦁ Improved procedural accuracy
⦁ Advanced remote-controlled precision intervention technology
This medical explainer project presents a complex robotic interventional procedure through clear, technology-focused 3D visuals that highlight both clinical functionality and engineering innovation.

Robotics
This project visualizes the cardiovascular intervention mechanism of Robotics in 3D, including the remote-controlled stent placement procedure.













