Warsaw, IN, United States of America

Cheryl Renee Blanchard



 

Average Co-Inventor Count = 3.6

ph-index = 23

Forward Citations = 1,138(Granted Patents)


Location History:

  • San Antonio, TX (US) (1992 - 2003)
  • Fort Wayne, IN (US) (2014)
  • Warsaw, IN (US) (2002 - 2015)

Company Filing History:


Years Active: 1992-2015

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36 patents (USPTO):Explore Patents

Title: Innovations and Contributions of Cheryl Renee Blanchard

Introduction: Cheryl Renee Blanchard, based in Warsaw, Indiana, has made significant strides in the field of biomedical engineering, particularly in orthopedic implants. With an impressive portfolio of 36 patents to her name, she has been at the forefront of innovations aimed at improving joint health and patient outcomes.

Latest Patents: Among her notable inventions is the orthopedic implant with a bone interface anchoring. This cartilage resurfacing implant serves to replace cartilage in skeletal joints with opposed surfaces, featuring a body that provides a bearing surface optimal for articulation. Additionally, she has developed treatment methods utilizing particulate cadaveric allogenic juvenile cartilage particles. This invention focuses on compositions comprising neocartilage and juvenile cartilage particles combined with a matrix, promising advancements in cartilage repair treatments.

Career Highlights: Cheryl has held pivotal roles at prominent companies, including Keraplast Technologies Ltd. and Zimmer GmbH, where she applied her expertise to develop innovative medical devices and surgical solutions that address critical orthopedic challenges.

Collaborations: Throughout her career, Cheryl has collaborated with esteemed professionals, including Robert Allen Smith and Scott F. Timmons. These partnerships have facilitated the successful development of cutting-edge technologies and has furthered research in the orthopedic field.

Conclusion: Cheryl Renee Blanchard's contributions to the realm of orthopedic innovation are profound, evidenced by her substantial patent portfolio and collaborative efforts. Her work continues to influence the standards of care in joint replacement and cartilage repair, leaving a lasting impact on the medical community.

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