Company Filing History:
Years Active: 2016-2023
Title: Innovations by Fabrice Monti
Introduction
Fabrice Monti is a notable inventor based in Saulx les Chartreux, France. He has made significant contributions to the field of fluid dynamics and product efficacy evaluation, holding a total of four patents. His work primarily focuses on innovative methods for assessing the effectiveness of deodorant products and the production of microfluidic devices.
Latest Patents
One of Monti's latest patents is an "In vitro system for evaluating the effectiveness of a deodorant." This process involves introducing sweat into a main channel of a fluidic device, measuring the flow rate, and controlling it through a closed-loop system. The deodorant product is then reacted with the sweat while maintaining a zero flow rate, allowing for the determination of various physicochemical and biological parameters of the reaction.
Another significant patent is the "Microfluidic device for production and collection of droplets of a fluid." This device is designed to produce and collect single droplets of a first fluid dispersed in a second immiscible fluid. It features a microfluidic platform with a droplet microchannel that facilitates the distribution of the flow of droplets.
Career Highlights
Fabrice Monti has worked with prestigious organizations such as the Centre National de la Recherche Scientifique and L'Oréal. His experience in these institutions has allowed him to develop and refine his innovative ideas, contributing to advancements in product testing and microfluidic technology.
Collaborations
Monti has collaborated with notable colleagues, including Patrick Tabeling and Fréderic Baltenneck. Their combined expertise has further enhanced the research and development of Monti's inventions.
Conclusion
Fabrice Monti's contributions to the field of innovation, particularly in deodorant efficacy evaluation and microfluidic devices, showcase his dedication to advancing technology. His patents reflect a commitment to improving product testing methods and enhancing fluid dynamics applications.