Ann Arbor, MI, United States of America

Xiaoyue Zhu

USPTO Granted Patents = 4 

Average Co-Inventor Count = 6.1

ph-index = 2

Forward Citations = 36(Granted Patents)


Company Filing History:


Years Active: 2007-2012

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4 patents (USPTO):Explore Patents

Title: Innovations of Xiaoyue Zhu

Introduction

Xiaoyue Zhu is a prominent inventor based in Ann Arbor, MI (US). She has made significant contributions to the field of microfluidics, particularly through her innovative designs and applications. With a total of 4 patents, her work continues to push the boundaries of technology and its practical uses.

Latest Patents

One of her latest patents is titled "Integrated microfluidic control employing programmable tactile actuators." This invention focuses on microfluidic devices that feature active components such as valves, peristaltic pumps, and mixing portions. These devices are designed with a thin elastomeric membrane covering the active features. The activation of these features is achieved through a tactile actuator that is external to the membrane, such as a commercial Braille display. This display can be controlled by a computer, allowing for precise activation of individual or multiple Braille protrusions to operate the active portions of the microfluidic device. The design allows for integral devices that incorporate tactile actuators while remaining external to the membrane.

Career Highlights

Xiaoyue Zhu is affiliated with the University of Michigan, where she continues her research and development in microfluidic technologies. Her work has garnered attention for its innovative approach and practical applications in various fields.

Collaborations

Some of her notable coworkers include Shuichi Takayama and Gary Daniel Smith. Their collaborative efforts contribute to the advancement of research in microfluidics and related technologies.

Conclusion

Xiaoyue Zhu's contributions to the field of microfluidics exemplify her innovative spirit and dedication to advancing technology. Her patents reflect her commitment to creating practical solutions that enhance the functionality of microfluidic devices.

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