Custom manufacturing is paramount in the medical industry for tailored solutions to diverse patient needs. Technologies like 3D printing, CNC machining, and injection molding enable precise fabrication of medical devices. They offer flexibility, speed, and cost-efficiency in prototyping and production, facilitating the development of personalized implants, prosthetics, and surgical instruments. This ensures optimal patient outcomes, driving innovation and advancing healthcare delivery globally.
LUSHI assists clients in crafting innovative solutions by leveraging cutting-edge technologies tailored to unique scenarios and custom requirements, ensuring delivery of satisfactory outcomes.
Leverage our cutting-edge machinery and state-of-the-art technologies to achieve top-tier quality while significantly reducing lead times.
With technical know-hows crossing diverse manufacturing industry and adhering to rigorous quality control standards, we ensure the delivery of satisfactory products.
We assist clients in optimizing designs and streamlining production processes while maintaining cost consciousness, ensuring cost-effectiveness without sacrificing quality.
We are flexible and respond quickly for any types of quotes and production. With cutting-edge technologies we can enhance the productivity up to 50%.
Prototyping and CNC machining facilitate the rapid development of surgical guides and specialized tools for precise interventions.
3D printing enables the production of implants tailored to individual patient anatomy, improving surgical outcomes.
3D printing and CNC machining produce dental crowns, bridges, and implants with high accuracy and customization.
Injection molding creates orthopedic braces and supports that conform perfectly to patient anatomy for optimal comfort and support.
CNC machining fabricates diagnostic instruments, such as ultrasound probes and endoscopic components, to exact specifications.
3D printing and injection molding manufacture wearable devices for continuous health monitoring, promoting patient engagement and preventive care.
Prototyping and CNC machining create microfluidic devices used in lab-on-a-chip applications for diagnostic testing and drug discovery.
3D printing generates anatomically accurate medical models used for educational purposes and surgical planning.