This inventor holds 1 USPTO granted patent. Top assignee: Beijing Tiantan Hospital, Capital Medical University. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Baoge Liu: Innovator in Bionic Artificial Cervical Disc Prosthesis
Introduction
Baoge Liu is a prominent inventor based in Beijing, China. He has made significant contributions to the field of biomedical engineering, particularly in the development of bionic artificial cervical disc prostheses. His innovative approach combines advanced simulation techniques with practical applications in medical prosthetics.
Latest Patents
Baoge Liu holds a patent for a "Method for manufacturing personalized bionic artificial cervical disc prosthesis and prosthesis." This patent outlines a comprehensive method that includes establishing a three-dimensional simulation model of a cervical spine with a degenerated cervical disc. The process involves modifying the morphological structures and material properties of the degenerated cervical disc to create a model of the artificial cervical disc prosthesis. The model is then implanted into the cervical spine simulation, where it undergoes testing to mimic physiological motion. The kinematics and biomechanical indexes are calculated to ensure optimal performance of the prosthesis.
Career Highlights
Baoge Liu is affiliated with Beijing Tiantan Hospital, Capital Medical University. His work focuses on integrating engineering principles with medical needs, aiming to improve patient outcomes through innovative prosthetic solutions. His dedication to research and development has positioned him as a key figure in his field.
Collaborations
Baoge Liu collaborates with notable colleagues, including Bingxuan Wu and Lin Lin. These partnerships enhance the research and development process, fostering an environment of innovation and shared expertise.
Conclusion
Baoge Liu's contributions to the field of bionic artificial cervical disc prostheses exemplify the intersection of technology and medicine. His innovative methods and collaborative efforts continue to push the boundaries of what is possible in biomedical engineering.