Madison, WI, United States of America

Yu Huang


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 2(Granted Patents)


Company Filing History:


Years Active: 2018

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1 patent (USPTO):Explore Patents

Title: Innovations in Neural Growth: The Contributions of Yu Huang

Introduction

Yu Huang is an accomplished inventor based in Madison, WI (US). She has made significant strides in the field of neural engineering, particularly with her innovative approach to promoting neural growth. Her work is not only groundbreaking but also has the potential to impact various applications in neuroscience and medical technology.

Latest Patents

Yu Huang holds a patent for a "Tubular scaffold for neural growth." This invention consists of tubes designed to facilitate neural growth through their interiors. The tubes can be affixed to a substrate, providing electrical or optical pathways for sensors or stimulating probes. Additionally, steering electrodes positioned between the tubes can selectively encourage the growth of interconnections among different axons in a one, two, or three-dimensional manner. This innovative scaffold represents a significant advancement in the field of neural regeneration.

Career Highlights

Yu Huang is associated with the Wisconsin Alumni Research Foundation, where she continues to develop her research and inventions. Her dedication to advancing neural engineering has positioned her as a key figure in this specialized field. With her unique insights and expertise, she is paving the way for future innovations that could transform how we approach neural repair and regeneration.

Collaborations

Yu Huang collaborates with notable colleagues, including Robert H Blick and Justin C Williams. These partnerships enhance her research efforts and contribute to the collective knowledge in the field of neural engineering.

Conclusion

In summary, Yu Huang's contributions to neural growth through her patented tubular scaffold exemplify her innovative spirit and commitment to advancing medical technology. Her work holds promise for future developments in neuroscience and regenerative medicine.

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