Anderson, SC, United States of America

Clayton Joseph Culbreath

USPTO Granted Patents = 2 

 

Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2021-2023

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2 patents (USPTO):Explore Patents

Title: Clayton Joseph Culbreath: Innovator in Medical Implant Technology

Introduction

Clayton Joseph Culbreath is a notable inventor based in Anderson, SC (US). He has made significant contributions to the field of medical technology, particularly in the development of synthetic implant devices that replicate natural tissue structures. With a total of 2 patents, Culbreath's work is paving the way for advancements in medical applications.

Latest Patents

Culbreath's latest patents include a synthetic implant device that replicates natural tissue structure and methods of making the same. This composite implant device is designed for use in medical applications and comprises a synthetically-derived mesh that mimics critical aspects of a biologically-derived mesh. The device can be utilized for the reinforcement and reconstruction of tissues within the body, featuring a majority of synthetic components and a minority of naturally-derived components that replicate the structure and function of a naturally-derived mesh. Another patent focuses on a method for forming a multi-layer construct, further enhancing the capabilities of composite implant devices in medical applications.

Career Highlights

Culbreath is currently associated with Poly-Med, Inc., a company that specializes in innovative medical solutions. His work at Poly-Med has allowed him to explore and develop groundbreaking technologies that address critical needs in the medical field.

Collaborations

Culbreath collaborates with talented individuals such as Seth Dylan McCullen and Michael Aaron Vaughn, contributing to a dynamic team focused on advancing medical technology.

Conclusion

Clayton Joseph Culbreath's innovative work in synthetic implant devices represents a significant advancement in medical technology. His contributions are essential for the future of tissue reinforcement and reconstruction, showcasing the potential of synthetic materials in healthcare.

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