Shoulder Replacement Surgical Robot
A new benchmark for global precision medicine, restoring pain‑free mobility for shoulder‑joint patients.

A new benchmark for global precision medicine, restoring pain‑free mobility for shoulder‑joint patients.
China’s first orthopedic surgical robot dedicated to shoulder‑joint indications. It significantly lowers technical barriers for shoulder surgery and brings benefits to patients undergoing high‑difficulty, high‑risk orthopedic interventions.
Precise Positioning
Compliant Hand‑Guiding
Safety Protection
PersonalizationImport CT data into the robot system. AI automatically segments and reconstructs 3D models of patient scapula and humerus, identifies anatomical landmarks, recommends personalized prosthesis specifications and implantation positions, and simulates joint mobility to guarantee optimal surgical plans.
Algorithms for automatic segmentation and landmark recognition; mirrored reconstruction of patient anatomy from contralateral healthy side
Image Segmentation & Reconstruction
Scapula Landmark Detection
Humerus Landmark Detection
Contralateral Mirror ReconstructionAuto‑match prosthesis specifications, intelligently simulate and evaluate prosthesis placement
Scapula Planning
Humerus Planning
Range‑of‑Motion Simulation
Built on profound technical expertise and rich clinical experience, it supports reverse total shoulder arthroplasty, anatomic total shoulder arthroplasty and hemi‑shoulder arthroplasty. Primary indications include pain caused by lesions of humeral head and glenoid, as well as impaired joint mobility, such as comminuted proximal humerus fractures, primary / secondary arthritis and osteonecrosis. Its open‑architecture platform supports future clinical expansion for advanced department‑level requirements.
Jointly developed with clinical experts, this domestically unique robot‑optimized shoulder‑replacement workflow covers the full chain: medical image processing, surgical planning, range‑of‑motion assessment, manipulator positioning, intra‑operative osteotomy and prosthesis implantation. Surgeons leverage real‑time intra‑operative navigation to execute and validate personalized plans precisely for accurate placement of humeral and scapular prostheses and reduced complication risks.

◆ Robot control system continuously senses applied muscle force
◆ Cable‑driven transmission delivers superior compliance
◆ Emergency stop effectively terminates hazardous loads
◆ Overload protection ensures procedural safety