Colorado Springs, CO, United States of America

Richard P Meinig


Average Co-Inventor Count = 3.0

ph-index = 1

Forward Citations = 148(Granted Patents)


Company Filing History:


Years Active: 1997

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1 patent (USPTO):Explore Patents

Title: **Richard P. Meinig: Pioneer in Bone Regeneration Technology**

Introduction

Richard P. Meinig is a distinguished inventor based in Colorado Springs, CO, known for his innovative contributions to the field of biomedical engineering. With a focus on enhancing surgical procedures and improving patient outcomes, Meinig's work has garnered attention within the medical community.

Latest Patents

One of Richard P. Meinig's significant inventions is a patent for a bone regeneration membrane. This novel membrane is composed of resorbable or degradable polymeric and/or polymeric-ceramic materials, with a glass transition temperature ranging from -30°C to +200°C. The bone regeneration membrane aims to facilitate the spontaneous regeneration of bone, while also enhancing the application of autologous or allogenic graft materials and therapeutic agents. This innovation represents a noteworthy advancement in medical technology, particularly in orthopedics and reconstructive surgery.

Career Highlights

Richard P. Meinig is affiliated with the Laboratorium für Experimentelle Chirurgie at a renowned research institution. His tenure at this facility has enabled him to pursue groundbreaking research and drive innovative solutions to complex medical challenges. Meinig's expertise in material science and regenerative medicine has positioned him as a valuable inventor in the field.

Collaborations

Throughout his career, Meinig has collaborated with esteemed colleagues, including Sylwester Gogolewski and Stephan M. Perren. These partnerships have fostered an environment of creativity and innovation, resulting in advancements that continue to shape the landscape of surgical technology and materials science.

Conclusion

Richard P. Meinig's contributions through his patent for a bone regeneration membrane exemplify the spirit of innovation in medical technology. His work not only pushes the boundaries of what is possible in tissue regeneration but also has the potential to improve outcomes for countless patients undergoing surgical procedures. As he continues to explore new frontiers in this essential field, the medical community eagerly anticipates the future advancements that he and his collaborators will bring forth.

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