Solihull, United Kingdom

Jonathan Woodward


Average Co-Inventor Count = 3.6

ph-index = 3

Forward Citations = 24(Granted Patents)


Location History:

  • Kingston, TN (US) (2002)
  • Surrey, GB (2010)
  • Knoxville, TN (US) (2006 - 2011)
  • Ashtead, GB (2011)
  • Solihull, GB (2012 - 2016)

Company Filing History:


Years Active: 2002-2016

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9 patents (USPTO):Explore Patents

Title: Innovations of Jonathan Woodward

Introduction

Jonathan Woodward is a notable inventor based in Solihull, GB. He has made significant contributions to the field of tissue repair, holding a total of 9 patents. His work focuses on developing innovative materials that enhance the healing process in medical applications.

Latest Patents

One of Jonathan Woodward's latest patents is a method of tissue repair using a composite material. This composite biocompatible hydrogel material includes a porous polymer matrix, which provides a Young's modulus of at least 10 GPa. The matrix contains a plurality of pores, and a calcium comprising salt is disposed in at least some of these pores. The porous polymer matrix can comprise cellulose, including bacterial cellulose. This composite can be utilized as a bone graft material. The method involves inserting the hydrogel material into cartilage or bone tissue of an animal, supporting cell colonization in vitro for autologous cell seeding.

Career Highlights

Throughout his career, Jonathan has worked with reputable organizations such as UT-Battelle, Inc. and the University of Tennessee Research Foundation. His experience in these institutions has allowed him to advance his research and contribute to the field of tissue engineering.

Collaborations

Some of his notable coworkers include Barbara R. Evans and Hugh M. O'Neill. Their collaboration has likely enriched the research environment and fostered innovative ideas in their projects.

Conclusion

Jonathan Woodward's contributions to the field of tissue repair through his innovative patents demonstrate his commitment to advancing medical technology. His work continues to impact the way tissue repair is approached in clinical settings.

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