Beverly Hills, CA, United States of America

David L Hankin


Average Co-Inventor Count = 2.3

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2012-2019

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3 patents (USPTO):Explore Patents

Title: Innovations of David L Hankin in Biocompatible Filaments

Introduction

David L Hankin is an accomplished inventor based in Beverly Hills, CA. He has made significant contributions to the field of biocompatible materials, particularly in the development of electrically conductive filaments designed for medical applications. With a total of 3 patents to his name, Hankin's work focuses on enhancing the functionality and adaptability of filaments used in contact with living tissue.

Latest Patents

Hankin's latest patents include innovative technologies such as "Stiffness Enhanced Filaments" and "Method for Providing Stiffness Enhanced Filaments." These inventions describe biocompatible, pliable electrically conductive filaments that can maintain contact with living tissue while allowing for electrical communication. The unique feature of these filaments is their ability to temporarily stiffen through a soluble coating, enabling them to penetrate dense tissue when necessary. Once the coating dissolves in body fluids, the filaments revert to their original pliable state, making them ideal for various medical applications.

Career Highlights

Throughout his career, David L Hankin has worked with notable organizations, including the Alfred E. Mann Foundation for Scientific Research. His expertise in biocompatible materials has positioned him as a key figure in the development of innovative medical technologies.

Collaborations

Hankin has collaborated with esteemed colleagues such as Joseph H Schulman and Daniel R Merrill, contributing to advancements in the field of medical devices and materials.

Conclusion

David L Hankin's contributions to the field of biocompatible filaments demonstrate his commitment to innovation in medical technology. His patents reflect a deep understanding of the interaction between materials and living tissue, paving the way for future advancements in healthcare.

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