Tampa, FL, United States of America

Qingyou Li

USPTO Granted Patents = 2 

Average Co-Inventor Count = 4.0

ph-index = 2

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2022-2023

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2 patents (USPTO):Explore Patents

Title: The Innovations of Inventor Qingyou Li in Neurology

Introduction

Qingyou Li is a notable inventor based in Tampa, FL, recognized for his contributions to the field of neurological research. With a focus on innovative solutions for treating neurological disorders, he has secured a total of two patents. His work is instrumental in advancing our understanding and treatment of complex brain functions.

Latest Patents

Qingyou Li's latest patents revolve around the activation of the Reelin signaling system. Disclosed in his patents are compounds designed for activating this signaling system, which plays a crucial role in the treatment of various neurological disorders. Additionally, the patents introduce methods for activating lipoprotein receptors, such as ApoER2 or VLDLR, further highlighting his inventive contributions to medical science.

Career Highlights

Currently, Qingyou Li is affiliated with the University of South Florida, which provides him with an academic platform to advance his research. His work has gathered significant attention due to its potential impact on how neurological conditions are treated. His patents reflect a deep understanding of both biology and pharmacology, showcasing his commitment to pushing the boundaries of medical innovations.

Collaborations

In the course of his career, Qingyou Li has collaborated with esteemed colleagues, including Edwin John Weeber and Melinda Marie Peters. Their collective expertise fosters an environment rich in research and development, enabling the team to explore new therapeutic pathways and refine existing treatment modalities for neurological disorders.

Conclusion

Qingyou Li's innovative spirit and dedication to neurological research mark him as a significant inventor in the field. With his patents focusing on activation mechanisms that could change the landscape of treatment for neurological disorders, his work is instrumental in paving the way for future breakthroughs. His contributions through academic collaboration and research will undoubtedly continue to influence the world of medical science.

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