Los Angeles, CA, United States of America

Gopkrishnani Soundararajan


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2008

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1 patent (USPTO):Explore Patents

Title: Gopkrishnani Soundararajan: Innovator in Vascular Sensing Technology

Introduction

Gopkrishnani Soundararajan is a notable inventor based in Los Angeles, CA. He has made significant contributions to the field of biomedical engineering, particularly in the development of advanced sensing technologies. His work focuses on creating innovative solutions that enhance the measurement of vascular parameters.

Latest Patents

Gopkrishnani Soundararajan holds a patent for a MEMS vascular sensor. This micromachined sensor is designed to measure vascular parameters, such as fluid shear stress. The sensor features a substrate with a front-side surface and a backside surface. It includes a diaphragm over a cavity etched within the substrate, along with a heat sensing element positioned on the front-side surface. This element is electrically connectable to electrode leads on the backside surface. 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 technology allows for the derivation of vascular parameters, including the shear stress of fluid flowing past the sensing element.

Career Highlights

Gopkrishnani Soundararajan is affiliated with the University of Southern California, where he continues to advance his research in vascular sensing technologies. His work has garnered attention for its potential applications in medical diagnostics and treatment.

Collaborations

Some of his notable coworkers include Tzung Hsiai and E S Kim, who have collaborated with him on various research projects.

Conclusion

Gopkrishnani Soundararajan is a pioneering inventor whose work in MEMS vascular sensors is paving the way for advancements in biomedical engineering. His contributions are essential for improving the understanding and measurement of vascular parameters.

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