Palos Verdes, CA, United States of America

Ann Hover


Average Co-Inventor Count = 8.0

ph-index = 1

Forward Citations = 75(Granted Patents)


Company Filing History:


Years Active: 2004

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1 patent (USPTO):Explore Patents

Title: Innovations by Ann Hover in Orthopaedic Technology

Introduction

Ann Hover is a notable inventor based in Palos Verdes, California. She has made significant contributions to the field of orthopaedics, particularly through her innovative patent related to intramedullary nails. Her work focuses on enhancing the effectiveness of bone fixation techniques.

Latest Patents

Ann Hover holds a patent for "Non-metal spacers for intramedullary nail." This invention involves an intramedullary nail structure that features opposing dynamization windows. Bioresorbable spacers are strategically positioned within these windows, which are designed to be longer than they are wide. The spacers can be integrally formed as a single insert, allowing for improved functionality. The nail is utilized with a bone fastener, such as a bone screw, which is advanced transversely through the bone and into the spacer. This design permits a bicortical attachment with the bone, enhancing stability. As the spacers resorb, stress is increasingly transmitted through the fracture site rather than through the intramedullary nail, allowing for better healing dynamics.

Career Highlights

Ann Hover is currently associated with DePuy Orthopaedics, Inc., where she continues to innovate in the field of orthopaedic devices. Her work has been instrumental in developing solutions that improve patient outcomes in bone healing and fixation.

Collaborations

Throughout her career, Ann has collaborated with notable colleagues, including Roy Werner Sanders and Donald Martin Sturgeon. These partnerships have contributed to the advancement of her inventions and the overall progress in orthopaedic technology.

Conclusion

Ann Hover's contributions to orthopaedic technology through her innovative patent demonstrate her commitment to improving medical devices. Her work not only enhances the effectiveness of bone fixation but also paves the way for future advancements in the field.

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