Personalized Customized Hip Prosthesis · Knee Prosthesis · Shoulder Prosthesis · Elbow Prosthesis · Ankle Prosthesis
Beijing Huakang Tianyi Biotech Co., Ltd. fully meets the regulatory requirements for producing customized joint bone defect repair products:
Personalized Customized Hip Prosthesis
Based on 3D reconstruction and personalized design using patient CT data, it adopts a 3D-printed titanium alloy trabecular structure to precisely match the patient's anatomical morphology, achieving initial stability and long-term osseointegration. It is suitable for complex hip revision, severe bone defects, and cases where conventional prostheses cannot match.
Personalized Customized Knee Prosthesis
For complex cases such as severe knee deformity, bone defects, and reconstruction after tumor resection, it provides personalized customization solutions for the femoral condyle and tibial plateau. The biomimetic trabecular porous structure promotes bone ingrowth, and the anatomical design restores normal alignment and motor function of the knee joint.
Personalized Customized Shoulder Prosthesis
Suitable for severe shoulder bone defects, revision surgery, and tumor limb salvage treatment. Personalized design of glenoid and humeral stem components, with a 3D-printed porous structure providing a good osseointegration interface, restoring shoulder stability and range of motion.
Personalized Customized Elbow Prosthesis
For complex elbow fractures, bone defects, revision, and tumor reconstruction cases, it provides customized humeral and ulnar components. The anatomical design restores elbow flexion, extension, and rotation functions, and the porous coating promotes osseointegration, improving the long-term survival rate of the prosthesis.
Personalized Customized Ankle Prosthesis
Suitable for severe ankle deformity, post-traumatic arthritis, bone defects, and revision cases. Personalized talar and tibial component design precisely matches the patient's ankle anatomical morphology, restores normal weight-bearing and motor function of the ankle joint, and the 3D-printed porous structure promotes osseointegration.
