Loveland, OH, United States of America

Matthew S Corbin

USPTO Granted Patents = 42 

 

Average Co-Inventor Count = 4.5

ph-index = 12

Forward Citations = 2,194(Granted Patents)


Location History:

  • Loveland, OH (US) (2018 - 2022)
  • Brea, CA (US) (2021 - 2022)
  • Placentia, CA (US) (2022 - 2024)

Company Filing History:


Years Active: 2018-2025

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42 patents (USPTO):Explore Patents

Title: Matthew S. Corbin: Innovator in Surgical Access Technologies

Introduction

Matthew S. Corbin, based in Loveland, OH, has made significant contributions to the field of surgical access devices, holding an impressive 38 patents. His innovative designs are pioneering advancements that enhance surgical procedures and improve patient outcomes.

Latest Patents

Among Matthew's latest patents is the "Threaded Cannula Depth Limiter," which presents an assembly designed to stabilize a cannula relative to a patient's body cavity wall. This device features a depth limiter that can be adjusted finely or coarsely, allowing for precise surgical access. Another noteworthy patent is the "Radio Frequency Identification Token for Wireless Surgical Instruments," which entails a modular energy system that wirelessly pairs surgical instruments using RFID technology. This modern approach streamlines the connection process, making surgeries more efficient and integrated.

Career Highlights

Matthew has built his career at prestigious companies, including Ethicon, GmbH, and Cilag International GmbH. His work in these organizations has focused on creating innovative surgical technologies that facilitate better surgical practice.

Collaborations

Throughout his career, Matthew has collaborated with notable professionals such as Cory G. Kimball and Veronica J. Schlegel. These partnerships have fostered a shared expertise in the development of cutting-edge surgical instruments and methodologies.

Conclusion

Matthew S. Corbin stands out as a prominent inventor in the surgical technology realm. His multiple patents and collaborations reflect a commitment to enhancing surgical accessibility and functionality. His work continues to influence the evolution of medical devices, ultimately benefiting both surgeons and patients alike.

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