Curious about the robots deployed?
The CUVIS-Joint surgical robot is a medical solution specialized for active artificial joint surgery capable of navigation-based automatic cutting.
It enhances the perfection of artificial joint surgery through precise bone cutting and enables patient-customized surgery by providing various implant options. Optimal surgical planning enables predictable outcomes, and a flexible workflow can reduce surgery time.
Components
| Robot | Main Console; Robotic Arm; Planner |
|---|
Workflow
| STEP 1. | CT Scan |
|---|---|
| STEP 2. | Surgical planning |
| STEP 3. | Registration (Aligning patient with scanned images) |
| STEP 4. | Cutting and gap check |
| STEP 5. | Implant insertion |
※ The content provided by Bigwave Robotics is protected under U.S. and Canadian copyright and intellectual property laws. Unauthorized reproduction, distribution, or use of this content is strictly prohibited.
Recommended Use Cases
LG CLOi GuideBot - Hallym University Sacred Heart Hospital Guide Robot Edition
This is an example of the installation of the LG CLOi GuideBot, a project conducted by Bigwave Robotics (Marosol) with Pyeongchon Hallym University Sacred Heart Hospital as a large-scale robot convergence model demonstration project. With the installation of Guide robots that provide guide, the hospital is transforming into a facility that offers more advanced services.
LG CLOi Sterilization Robot
This solution is a case study of sterilization tests and pilot operations in various vertical environments utilizing the LG CLOi UV-C Bot developed by LG Electronics. The LG CLOi UV-C Bot is a robot equipped with six UV-C lamps on each side that moves to sterilize spaces within a maximum area of 1 meter by up to 99.999%. It can operate in narrow spaces and passageways and can be used continuously for up to 6 hours. With its easy operation method, users can directly map and specify the robot's path, monitor the progress of sterilization remotely via an app, and receive a notification upon completion of operation to inform the user that disinfection is finished.
Large Hospital Sterilization and Goods Transportation using Twinny Nargo and Bykiller
This sterilization robot is a 2-in-1 autonomous logistics capable of transporting essential supplies for large hospital while simultaneously completing Disinfection within wards. The Nargo Bykiller solution utilizes triple safety sensors and autonomous driving technology to safely perform tasks even in crowded and complex indoor environments. Furthermore, equipped with a powerful three-stage air purification function, it offers excellent sterilization, deodorization, and harmful gas decomposition effects even while in motion. By automating the supply and collection of items for each department, it allows hospital staff to focus more on patient care. It offers a double benefit: in these times of heightened concern over infectious diseases like COVID-19, it enables Hospital visitors to visit with peace of mind. This project was undertaken not only to prevent the spread of infectious diseases such as COVID-19 through air purification and sterilization, but also to eliminate concerns about viral infection by introducing a reassuring sterilization solution for Hospital visitors. Following the project, work fatigue caused by increased patient care was reduced by minimizing hospital travel distances, and customer responsiveness was enhanced through efficient division of labor.
The CUVIS-Joint surgical robot is a medical solution specialized for active artificial joint surgery capable of navigation-based automatic cutting.
It enhances the perfection of artificial joint surgery through precise bone cutting and enables patient-customized surgery by providing various implant options. Optimal surgical planning enables predictable outcomes, and a flexible workflow can reduce surgery time.
Components
| Robot | Main Console; Robotic Arm; Planner |
|---|
Workflow
| STEP 1. | CT Scan |
|---|---|
| STEP 2. | Surgical planning |
| STEP 3. | Registration (Aligning patient with scanned images) |
| STEP 4. | Cutting and gap check |
| STEP 5. | Implant insertion |
※ The content provided by Bigwave Robotics is protected under U.S. and Canadian copyright and intellectual property laws. Unauthorized reproduction, distribution, or use of this content is strictly prohibited.










