This startup develops an AI-powered robotic assistant for laparoscopic surgeons, enabling independent camera control and real-time guidance during procedures. The system aims to reduce surgical errors and improve safety in laparoscopic surgeries.
Funding
Funding not disclosed
Founders
Product
Problem
Laparoscopic surgeries can be technically challenging, requiring precise camera control and real-time guidance, which can lead to increased surgical errors and compromise patient safety. Surgeons often rely on assistants for camera maneuvering, which can be suboptimal due to communication lags and varying skill levels. Existing robotic surgery systems are expensive, limiting their accessibility for many healthcare providers.
Solution
Scichip Robotics offers an AI-powered robotic assistant designed to enhance precision and safety in laparoscopic procedures. The Raibo system provides surgeons with independent control of the laparoscopic camera, enabling more intuitive and dexterous maneuvering within the surgical field. Utilizing advanced image-guided navigation and proprietary AI algorithms, the system facilitates pre-surgical planning, real-time surgical guidance, and post-operative analytics. Scichip's solutions aim to reduce surgical times, minimize invasiveness, and improve patient outcomes by making advanced robotic assistance more affordable and accessible to healthcare providers. The modular design allows for customization based on specific user requirements.
Target Audience
The primary target audience includes surgeons specializing in minimally invasive procedures, hospitals seeking to enhance surgical precision and safety, and healthcare providers aiming to adopt cost-effective robotic surgery solutions.
Features
- AI-powered robotic arm for precise and stable laparoscopic camera control
- Image-guided navigation software (PlanR) for pre-operative planning and real-time surgical guidance
- Proprietary AI algorithms for surgical analytics and performance optimization
- Modular design for customized configurations based on surgical needs
- Remote tele-operation capabilities (Veda) for collaborative surgical procedures
- Intuitive user interface designed for ease of use and minimal training
- Cost-effective design to increase accessibility of robotic surgery