Canoga Park, CA, United States of America

Daniel E Pesantez

USPTO Granted Patents = 11 

 

 

Average Co-Inventor Count = 4.6

ph-index = 2

Forward Citations = 34(Granted Patents)


Company Filing History:


Years Active: 2017-2024

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11 patents (USPTO):Explore Patents

Title: Innovations by Daniel E Pesantez

Introduction

Daniel E Pesantez is a notable inventor based in Canoga Park, California. He has made significant contributions to the field of medical devices, particularly in the development of polymer surfaces that enhance the performance of implantable devices. With a total of 11 patents to his name, Pesantez has established himself as a key figure in medical innovation.

Latest Patents

Among his latest patents, one focuses on "Implantable polymer surfaces exhibiting reduced in vivo inflammatory responses." This invention provides optimized polymeric surfaces designed for use with implantable medical devices. The polymer surfaces are engineered to inhibit or avoid inflammatory immune responses, which is crucial for the success of such devices. A typical embodiment includes an implantable glucose sensor that aids in diabetes management. Another significant patent is for "Interference rejection membranes useful with analyte sensors." This invention offers amperometric analyte sensors with optimized elements, including interference rejection membranes. These sensors are particularly beneficial in glucose monitoring for diabetes management.

Career Highlights

Daniel E Pesantez is currently associated with Medtronic Minimed, Inc., a leading company in the medical device industry. His work focuses on enhancing the functionality and safety of implantable devices through innovative materials and designs.

Collaborations

Pesantez has collaborated with notable colleagues such as Ashwin K Rao and Bradley Chi Liang, contributing to the advancement of medical technology through teamwork and shared expertise.

Conclusion

Daniel E Pesantez's contributions to medical device innovation are significant, particularly in the development of polymer surfaces that improve patient outcomes. His work continues to influence the field and enhance the effectiveness of implantable medical devices.

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