Kendall Park, NJ, United States of America

Raymond W Augustin


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 142(Granted Patents)


Company Filing History:


Years Active: 1992

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1 patent (USPTO):Explore Patents

Title: Innovations in Orthopedic Solutions by Raymond W. Augustin

Introduction

Raymond W. Augustin, an inventive mind based in Kendall Park, NJ, has made notable contributions to the field of orthopedic medicine. With a focus on enhancing the effectiveness of bone cement used in prosthetic applications, Augustin holds a patent that significantly improves the durability and functionality of orthopedic implants.

Latest Patents

Augustin's patent titled "Pressurization of Bone Cement Surrounding an Endoprosthesis" presents a method and apparatus aimed at reducing the volatilization of the monomer component of bone cement during and after prosthesis implantation. The apparatus includes a generally annular inflatable sealing member, designed to fit securely over the exposed end of the prosthesis. This innovative tool covers the bone cement’s surface, ensuring optimal polymerization by applying pressure to the cement.

Career Highlights

Working at Pfizer Hospital Products Group, Inc., Augustin has utilized his engineering skills to develop advanced techniques in prosthetic applications. His career is marked by a commitment to research and innovation, contributing to the medical community's understanding of orthopedic solutions.

Collaborations

Throughout his journey, Augustin has worked closely with esteemed colleagues such as Nestor A. Arroyo and Casper F. Stark. Their collaborative efforts in research and development have fostered an environment of innovation that has led to significant advancements in orthopedic technologies.

Conclusion

Raymond W. Augustin exemplifies how dedication to innovation in medical technology can lead to groundbreaking patents that enhance patient care. His contributions, particularly through the development of methods like the pressurization of bone cement, remain vital to the future of orthopedic procedures.

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