Cardiff, CA, United States of America

Philip D Weyman

USPTO Granted Patents = 1 

Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: The Innovative Contributions of Philip D Weyman

Introduction

Philip D Weyman is an accomplished inventor based in Cardiff, CA (US). With a focus on biotechnology, he has made significant strides in manipulating biological systems for enhanced gene expression. His innovative approach combines a deep understanding of circadian rhythms with genetic engineering.

Latest Patents

Weyman's most notable patent is titled "Manipulating the circadian clock to increase gene expression." This patent details a method of increasing gene expression through the manipulation of the circadian clock. The process involves transforming a photosynthetic organism to include an expression control sequence that adjusts the expression of a clock gene, ultimately leading to an increased expression of a target gene. Additionally, it describes photosynthetic organisms that exhibit a modified circadian cycle reflecting this innovative method.

Career Highlights

Currently, Philip D Weyman is affiliated with Vanderbilt University, where he continues to engage in important research and pioneering work in the field of biotechnology. His contributions help advance our understanding of how manipulating biological systems can lead to enhanced agricultural and biotechnological outcomes.

Collaborations

Throughout his career, Weyman has had the opportunity to collaborate with esteemed colleagues, including Carl Hirschie Johnson and Qing Xu. These collaborations illustrate the importance of teamwork and shared knowledge in driving forward innovations in science and technology.

Conclusion

Philip D Weyman's contributions to the field of biotechnology, reflected in his patent and collaborations, showcase the significant impact that innovative thinkers can have on advancing our understanding of genetic expression through the manipulation of biological processes. His work holds promise for future applications in agriculture and beyond, demonstrating the importance of innovation in scientific research.

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