Seffner, FL, United States of America

Timothy Fawcett


Average Co-Inventor Count = 7.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2022-2024

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2 patents (USPTO):Explore Patents

Title: Innovations by Timothy Fawcett

Introduction

Timothy Fawcett is an accomplished inventor based in Seffner, Florida. He has made significant contributions to the field of electroporation, with a focus on improving the precision and effectiveness of electrical treatments for target cells. With two patents to his name, Fawcett's work is paving the way for advancements in cellular treatment technologies.

Latest Patents

Fawcett's latest patents include a "Method for electroporation controlled by electrical impedance measurements." This invention provides a system and method for measuring the impedance of one or more target cells before and after an electroporation protocol has been applied. The feedback control derived from the impedance measurement allows for customization of the electrical treatment tailored to specific target cells or cellular tissues. His second patent, titled "System and method for electroporation controlled by electrical impedance measurements," reiterates the same innovative approach, emphasizing the importance of impedance measurement in enhancing electroporation protocols.

Career Highlights

Timothy Fawcett is affiliated with the University of South Florida, where he continues to engage in research and development in the field of electroporation. His work has garnered attention for its potential applications in medical and biotechnological fields.

Collaborations

Fawcett has collaborated with notable colleagues, including Mark Jeffrey Jaroszeski and Richard Jason Connolly. Their combined expertise contributes to the advancement of research in electroporation and its applications.

Conclusion

Timothy Fawcett's innovative work in electroporation and his contributions to the field through his patents highlight his role as a significant inventor. His research continues to influence advancements in cellular treatment technologies.

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