Clemson, SC, United States of America

David Pierre


Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Innovations by David Pierre in Orthopedic Implants

Introduction

David Pierre is an accomplished inventor based in Clemson, SC (US). He has made significant contributions to the field of orthopedic implants, particularly in the prevention of fretting corrosion. His innovative approach utilizes lipids to enhance the performance and longevity of these medical devices.

Latest Patents

David Pierre holds a patent for the "Use of lipids for preventing fretting corrosion in the modular tapers of orthopedic implants." This patent focuses on the application of lipids in the taper junction or other metal-on-metal interfaces of modular orthopedic implants. The incorporation of lipids is designed to prevent fretting corrosion and increase the pull-off load. By integrating lipids or lipid-like substrates within the taper junction, the onset load is increased, and the amount of corrosion is decreased. This advancement is crucial as it enhances the pull-off load necessary to separate the head from the neck of the implant. Consequently, the use of lipids in orthopedic implants is expected to reduce the need for revisions, particularly in knee and hip replacements, which are often required due to fretting corrosion.

Career Highlights

David Pierre is affiliated with Syracuse University, where he continues to work on innovative solutions in the field of orthopedic technology. His research and development efforts are aimed at improving patient outcomes and reducing the complications associated with orthopedic implants.

Collaborations

David collaborates with Jeremy L. Gilbert, contributing to advancements in orthopedic research and innovation.

Conclusion

David Pierre's work in utilizing lipids to prevent fretting corrosion in orthopedic implants represents a significant advancement in medical technology. His contributions are poised to improve the durability and effectiveness of these essential devices, ultimately benefiting patients in need of orthopedic solutions.

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