Fort Wayne, IN, United States of America

Gregory C Stalcup

USPTO Granted Patents = 77 

 

 

Average Co-Inventor Count = 3.3

ph-index = 28

Forward Citations = 5,285(Granted Patents)

Forward Citations (Not Self Cited) = 5,159(Dec 10, 2025)


Inventors with similar research interests:


Location History:

  • Columbia City, IN (US) (1994 - 2022)
  • Fort Wayne, IN (US) (2018 - 2024)

Company Filing History:


Years Active: 1994-2025

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Areas of Expertise:
Bone Fusion Device
Orthopaedic Implant
Medical Implants
Heat Bonding
Porous Regions
Therapeutic Agent Delivery
Implant Manufacturing
Fixation Features
Drug Delivery Implants
Soft Tissue Attachment
Removable Augment
Tissue Ingrowth Structure
77 patents (USPTO):Explore Patents

Title: Gregory C Stalcup: A Pioneer in Orthopaedic Invention

Introduction:

Gregory C Stalcup, a prominent figure in the field of orthopaedic inventions, hails from Fort Wayne, Indiana, in the United States. With an impressive portfolio of 49 patents, Stalcup's innovative contributions have significantly impacted the field of orthopaedic trauma devices and bone fusion techniques. This article aims to shed light on some of his noteworthy patents, affiliations, and fellow collaborators.

Orthopaedic Trauma Devices with Porous Regions and Therapeutic Agent Delivery:

One of Stalcup's groundbreaking inventions includes a device designed to treat orthopaedic trauma. This device features a cannulation that runs through its entire length and is equipped with porous ingrowth material regions on its exterior surface. These porous regions allow the device to deliver therapeutic agents from the cannulation to the surrounding region. This remarkable invention has the potential to revolutionize the way orthopaedic trauma is treated, offering effective localized therapy for accelerated healing.

Bone Fusion Device:

Another noteworthy patent attributed to Gregory C Stalcup is the bone fusion device. This invention addresses the need for stability during bone fusion procedures, particularly in the spinal column. The bone fusion device incorporates extendable tabs, linked by rotating mechanisms, which can be efficiently inserted using arthroscopic surgical techniques. Initially in a compact configuration, the tabs are expanded to provide the necessary stability between the bones during the fusion process. The precise positioning of the tabs, integrated with the bone fusion device, ensures optimal alignment and support during the crucial fusion period.

Affiliations:

Stalcup's expertise and commitment to orthopaedic innovation have led him to collaborate with various notable companies. Among these, SMed-TA/TD, LLC and Neuropro Technologies, Inc., stand out as key platforms for developing and implementing his groundbreaking inventions. These associations illustrate Stalcup's dedication to advancing orthopaedic technologies and his ability to bring his innovative ideas to fruition alongside like-minded individuals.

Collaborators:

Within his professional journey, Gregory C Stalcup has had the opportunity to work with esteemed colleagues and fellow innovators. Notably, Troy D Knapp and Benjamin J Remington have been acknowledged as notable collaborators in Stalcup's inventive endeavors. Their combined expertise and contributions have undoubtedly enhanced the development and implementation of the patented technologies.

Conclusion:

Gregory C Stalcup has made significant contributions to the field of orthopaedic inventions, with an impressive portfolio of 49 patents. His creations, such as the orthopaedic trauma devices with porous regions and therapeutic agent delivery system, as well as the bone fusion device, highlight his dedication to improving patient care and outcomes in orthopaedic medicine. With his affiliations and collaborations, Stalcup continues to make a lasting impact on the industry, setting the stage for further advancements in orthopaedic innovation.

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