Sturbridge, MA, United States of America

Alexandra Damiano


Average Co-Inventor Count = 2.0

ph-index = 1


Company Filing History:


Years Active: 2021

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1 patent (USPTO):Explore Patents

Title: Innovations of Alexandra Damiano

Introduction

Alexandra Damiano is an accomplished inventor based in Sturbridge, MA (US). She has made significant contributions to the field of microfluidics, showcasing her innovative spirit and technical expertise. Her work has the potential to revolutionize laboratory practices and field applications in precision biology.

Latest Patents

Alexandra holds a patent for a microfluidic device. This invention eliminates the conventional need for feedback control by utilizing a passive, open-loop approach with a novel microfluidic droplet generator featuring a step enhancement. The droplet generator produces uniform droplet volumes across a wide range of operating pressures, ensuring robust performance at a low cost. The invention also introduces a method of droplet generation that enhances the performance of various droplet generator configurations. This stability allows for manual operation while delivering best-in-class microfluidic performance. Consequently, her invention simplifies laboratory operations and enables precision biology applications in field settings without reliance on electrical power.

Career Highlights

Alexandra is currently associated with Lariat Biosciences, Inc., where she continues to develop innovative solutions in the field of microfluidics. Her work is characterized by a commitment to advancing scientific research and improving operational efficiency.

Collaborations

One of her notable collaborators is Jonathan William Larson, with whom she has worked closely to further her innovative projects.

Conclusion

Alexandra Damiano's contributions to microfluidics exemplify her dedication to innovation and her ability to address complex challenges in scientific research. Her inventions not only enhance laboratory efficiency but also expand the possibilities for conducting precision biology in diverse environments.

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