Eugene, OR, United States of America

Vivian Rose MacKenzie

USPTO Granted Patents = 4 

Average Co-Inventor Count = 9.4

ph-index = 1

Forward Citations = 7(Granted Patents)


Company Filing History:


Years Active: 2007-2017

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4 patents (USPTO):Explore Patents

Title: The Innovations of Vivian Rose MacKenzie: Pioneering Benzimidazole Derivatives

Introduction: Vivian Rose MacKenzie, an esteemed inventor based in Eugene, OR, has made significant contributions to the field of pharmaceuticals with a portfolio of four patents. Known for her innovative work, MacKenzie is particularly recognized for her research on benzimidazole derivatives, which have considerable implications in treating various medical conditions.

Latest Patents: MacKenzie's latest patents focus on benzimidazole derivatives as selective blockers of persistent sodium currents. These inventions are directed towards compounds that offer potential therapeutic benefits in managing diseases or conditions linked to elevated persistent sodium current. Notably, her work outlines methods for treating ocular disorders, multiple sclerosis, seizure disorders, and chronic pain through specific pharmaceutical compositions. The innovative nature of her research reflects a commitment to advancing medical science.

Career Highlights: Vivian MacKenzie currently works for Allergan, Inc., where she continues to push the boundaries of pharmaceutical research. Her dedication to developing effective treatments showcases her expertise and determination in addressing complex health issues.

Collaborations: Throughout her career, MacKenzie has collaborated with esteemed colleagues such as Alfred Arthur Avey, Jr. and Lloyd Jay Dolby. These partnerships have been instrumental in fostering a creative environment that supports innovation and the development of groundbreaking medical therapies.

Conclusion: Vivian Rose MacKenzie is a notable figure in the field of innovation, specifically within the pharmaceutical industry. Her work on benzimidazole derivatives not only contributes to a better understanding of persistent sodium currents but also opens new avenues for treating various debilitating conditions. Her career continues to inspire future inventors and researchers in the quest for impactful medical solutions.

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