Red Bank, NJ, United States of America

Keyvan Behnam

This inventor holds 35 USPTO granted patents and 5 published patent applications, plus 5 CIPO patents and 15 EPO patents, primarily in Bone Matrix Compositions. Top assignees: Warsaw Orthopedic, Inc., University of California, The United States Government as Represented by the Department of Veterans Affairs. Active years: 2012-2019.

USPTO Granted Patents = 35 

% Patents Active = 80.0

 

 

Average Co-Inventor Count = 3.1

ph-index = 13

Forward Citations = 1,553(Granted Patents)


Location History:

  • Simi Valley, CA (US) (2012 - 2018)
  • Redbank, NJ (US) (2012 - 2019)

Company Filing History:


Years Active: 2012-2019

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Areas of Expertise:
Bone Matrix Compositions
Bone Morphogenic Protein
BMP Binding Peptide
Osteoinductive Bone
Demineralized Bone Matrix
Surgical Applications
Bone Formation
Nanoscale Textured Surfaces
Delivery Systems
Hemostatic Bone Graft
Enhancement of BMP Retention
Cancellous Bone
35 patents (USPTO):Explore Patents

Title: Innovations by Keyvan Behnam in Osteoinductive Compositions

Introduction

Keyvan Behnam, an accomplished inventor based in Red Bank, NJ, holds an impressive portfolio of 35 patents. His pioneering work primarily focuses on osteoinductive compositions and methods that improve biological activities associated with bone healing and formation. Behnam's contributions to the field underscore significant advancements in medical technologies, particularly in the area of orthopedic treatments.

Latest Patents

Among his latest innovations, Behnam has developed bone matrix compositions and methods that include osteoinductive compositions and implants exhibiting enhanced biological activities. These activities may consist of bone forming, healing, osteoinductive activity, osteogenic and chondrogenic activity, as well as neurogenic and wound-healing capabilities. In one of his significant methods, he describes the production of an osteoinductive composition by using partially demineralized bone and treating it to disrupt its collagen structure. Another embodiment details an implantable composition that enhances bone growth and healing when introduced into a mammalian body, facilitating the full developmental cascade of endochondral bone formation.

Career Highlights

Behnam has demonstrated a robust career path by working with notable organizations, including Warsaw Orthopedic, Inc. and the University of California. His experience and research in these esteemed institutions have significantly influenced his innovative approaches to osteoinduction and bone healing.

Collaborations

Throughout his career, Keyvan Behnam has collaborated with several distinguished individuals, including coworkers Guobao Wei and Nanette Forsyth. These collaborations have played a key role in advancing his research and enhancing the effectiveness of his innovations in the field of bone matrix compositions.

Conclusion

Keyvan Behnam's contributions to osteoinductive compositions not only represent a significant advancement in orthopedic science but also have profound implications for future therapies in bone healing and regeneration. His ongoing commitment to innovation and collaboration exemplifies the potential of his work to transform medical practices and improve patient outcomes in the field of regenerative medicine.

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