Location History:
- Los Angeles, CA (US) (2008)
- Newport Beach, CA (US) (2012)
Company Filing History:
Years Active: 2008-2012
Title: Mahsa Rouhanizadeh: Innovator in Vascular Sensing Technology
Introduction
Mahsa Rouhanizadeh is a prominent inventor based in Newport Beach, CA (US). She has made significant contributions to the field of vascular sensing technology, holding 2 patents that showcase her innovative spirit and technical expertise.
Latest Patents
One of her latest inventions is the MEMS vascular sensor. This micromachined sensor is designed for measuring vascular parameters, such as fluid shear stress. It features a substrate with a front-side surface and a backside surface opposite the front-side surface. The sensor includes a diaphragm that overlies a cavity etched within the substrate, along with a heat sensing element positioned on the front-side surface and above the diaphragm. This heat sensing element is electrically couplable to electrode leads formed on the backside surface of the substrate. The sensor is equipped with an electronic system that measures changes in heat convection from the sensing element to the surrounding fluid when heated by an electric current. This system is further configured to derive vascular parameters, such as the shear stress of fluid flowing past the sensing element.
Career Highlights
Mahsa Rouhanizadeh is affiliated with the University of Southern California, where she continues to advance her research and development in innovative technologies. Her work has garnered attention for its potential applications in medical diagnostics and treatment.
Collaborations
She collaborates with esteemed colleagues, including Tzung Hsiai and Hongyu Yu, who contribute to her research endeavors and enhance the impact of her inventions.
Conclusion
Mahsa Rouhanizadeh is a trailblazer in the field of vascular sensing technology, with her innovative patents paving the way for advancements in medical technology. Her contributions are poised to make a significant impact on healthcare and patient monitoring.