Company Filing History:
Years Active: 2005-2012
Title: Innovations by Shailesh C Kulkarni in Bone Implantation Technology
Introduction
Shailesh C Kulkarni is an accomplished inventor based in Natick, MA (US). He has made significant contributions to the field of biomedical engineering, particularly in the development of materials for bone implantation. With a total of 4 patents to his name, Kulkarni's work is paving the way for advancements in medical technology.
Latest Patents
Kulkarni's latest patents focus on the production of porous β-tricalcium phosphate (TCP) granules. These innovations provide a porous β-TCP material that is essential for bone implantation. The multiple pores in the porous TCP body are separate discrete voids and are not interconnected. The pore size diameter ranges from 20-500 μm, with a preference for 50-125 μm. This porous β-TCP material serves as a carrier matrix for bioactive agents and can form a moldable putty composition when a binder is added. The bioactive agent is preferably encapsulated in a biodegradable agent. His inventions also include a kit and an implant device comprising the porous β-TCP, a bioactive agent, and a binder. Additionally, he has developed an implantable prosthetic device that features a porous β-TCP material on its surface region, which may include a bioactive agent or a binder. Methods for producing the porous β-TCP material and inducing bone formation are also part of his innovative contributions.
Career Highlights
Shailesh C Kulkarni is currently associated with Stryker Corporation, a leading company in the medical technology sector. His work at Stryker has allowed him to focus on developing advanced materials that enhance patient outcomes in orthopedic procedures.
Collaborations
Kulkarni has collaborated with notable colleagues such as Paresh S Dalal and Godofredo R Dimaano. These collaborations have further enriched his research and development efforts in the field of bone implantation technology.
Conclusion
Shailesh C Kulkarni's innovative work in the development of porous β-tricalcium phosphate materials is making a significant impact in the field of biomedical engineering. His contributions are essential for advancing bone implantation technologies and improving patient care.
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