Atlanta, GA, United States of America

Zhen Qian


Average Co-Inventor Count = 6.0

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2020

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1 patent (USPTO):Explore Patents

Title: Zhen Qian: Innovator in 3D Printed Metamaterial Tissue-Mimicking Phantoms

Introduction

Zhen Qian is a prominent inventor based in Atlanta, GA (US). He has made significant contributions to the field of biomedical engineering through his innovative work in 3D printing technologies. His research focuses on creating advanced models that mimic biological tissues, which can have profound implications for medical research and applications.

Latest Patents

Zhen Qian holds a patent for a groundbreaking invention titled "3D printed metamaterial tissue-mimicking phantoms." This patent describes systems and methods for producing a model of biological tissue. The model comprises a primary elastic material shaped like an organ, with a secondary stiffener material embedded within it. This secondary material is designed in a metamaterial configuration that enhances the elastic modulus of the model in specific directions. The resulting models effectively replicate both the shape and mechanical properties of the organs they represent.

Career Highlights

Zhen Qian is affiliated with the Georgia Tech Research Corporation, where he conducts his research and development activities. His work has garnered attention for its innovative approach to tissue modeling, which is essential for various applications in medical training and device testing.

Collaborations

Zhen collaborates with notable colleagues, including Kan Wang and Chun Zhang, who contribute to his research endeavors. Their combined expertise enhances the quality and impact of their projects.

Conclusion

Zhen Qian's contributions to the field of biomedical engineering through his patent on 3D printed metamaterial tissue-mimicking phantoms exemplify the potential of innovative technologies in advancing medical research. His work continues to pave the way for future developments in tissue modeling and related applications.

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