This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignees: Columbia University, University of Missouri. Active years: 2013.
Company Filing History:


Years Active: 2013
Title: Li Ming Bian: Innovator in Osteochondral Implants
Introduction
Li Ming Bian is a prominent inventor based in New York, NY (US). She has made significant contributions to the field of biomedical engineering, particularly in the development of osteochondral implants. Her innovative work focuses on methods and devices for resurfacing or repairing articular cartilage bearing surfaces in biological organisms.
Latest Patents
Li Ming Bian holds a patent for her invention titled "Osteochondral implants, arthroplasty methods, devices, and systems." This patent describes implants designed for resurfacing or repairing one or more articular cartilage bearing surfaces. The implants consist of engineered tissue and a biocompatible porous substrate that secures the engineered tissue to the native bone. The engineered tissue includes a scaffold made from biocompatible material and a plurality of living chondrocytes supported by the scaffold. Additionally, the patent provides methods for culturing chondrocytes for incorporation into a biocompatible implant, as well as a bioreactor for producing functional cartilaginous tissue from a cell-seeded scaffold.
Career Highlights
Throughout her career, Li Ming Bian has worked with esteemed institutions such as the University of Missouri and Columbia University. Her research has significantly advanced the understanding and application of osteochondral implants in medical procedures.
Collaborations
Li Ming Bian has collaborated with notable professionals in her field, including Gerard A Ateshian and Clark T Hung. These collaborations have further enriched her research and contributions to biomedical engineering.
Conclusion
Li Ming Bian is a trailblazer in the development of osteochondral implants, with a patent that showcases her innovative approach to repairing articular cartilage. Her work continues to influence the field of biomedical engineering and improve patient outcomes.