Gilbert, AZ, United States of America

Adam J Cundiff

USPTO Granted Patents = 24 

Average Co-Inventor Count = 2.6

ph-index = 2

Forward Citations = 26(Granted Patents)


Location History:

  • Gilbert, AZ (US) (2020 - 2024)
  • Mesa, AZ (US) (2024)

Company Filing History:


Years Active: 2020-2025

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24 patents (USPTO):Explore Patents

Title: Innovative Contributions of Adam J. Cundiff

Introduction

Adam J. Cundiff, an accomplished inventor based in Gilbert, AZ, has made significant contributions to the field of surgical instruments. With a total of 19 patents to his name, Cundiff's work emphasizes the intersection of healthcare and technology through innovative design and functionality.

Latest Patents

Among his latest accomplishments, Cundiff has developed surgical instruments specifically designed for performing osteotomies. His innovative instruments include a body with distinct features such as a distal end, a proximal end, a first surface, and a second surface. The design allows for cutting burrs to be positioned on either surface, enhancing the surgical process. Additionally, the instrument may feature both cutting burrs and cutting blades strategically placed to facilitate effective surgical procedures.

Career Highlights

Cundiff's career has been marked by his commitment to advancing surgical techniques. He has worked with notable organizations, including Fusion Orthopedics, LLC, where he has contributed his expertise in the development of cutting-edge surgical instruments and methods.

Collaborations

Throughout his journey, Cundiff has collaborated with other professionals in the field, including Nathan G. Peterson and Mark William Roberts, Jr. These collaborations have undoubtedly played a role in fostering innovation and enhancing the quality of surgical instruments available on the market.

Conclusion

Adam J. Cundiff stands out as a prominent figure in the realm of surgical innovations. With his vast array of patents and collaborative efforts, he continues to push the boundaries of what is possible in surgical instrument design, ultimately aiming to improve patient outcomes in medical procedures.

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