Allston, MA, United States of America

Nima Saeidi

USPTO Granted Patents = 4 

Average Co-Inventor Count = 2.0

ph-index = 2

Forward Citations = 21(Granted Patents)


Company Filing History:


Years Active: 2012-2016

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4 patents (USPTO):Explore Patents

Title: Nima Saeidi: Innovator in Collagen-Based Technologies

Introduction

Nima Saeidi is a prominent inventor based in Allston, MA (US). He has made significant contributions to the field of tissue engineering through his innovative work with collagen. With a total of 4 patents, Saeidi's research focuses on the organization of collagen into fibrillar networks and the use of nanoparticles in tissue applications.

Latest Patents

Saeidi's latest patents include groundbreaking methods and compositions for organizing collagen into fibrillar networks. This technology allows for both short and long-range organization of collagen, which can be utilized in tissue engineering applications. Another notable patent involves the organization of nanoparticles or microparticles into nanostructures or microstructures, using collagen as a template. These advancements have the potential to revolutionize the way we approach tissue engineering and material science.

Career Highlights

Nima Saeidi is affiliated with Northeastern University, where he continues to push the boundaries of research in his field. His work has garnered attention for its innovative approach to utilizing collagen in various applications. Saeidi's dedication to advancing tissue engineering technologies has positioned him as a key figure in the scientific community.

Collaborations

Saeidi collaborates with Jeffrey W Ruberti, enhancing the research output and innovation in their projects. Their combined expertise contributes to the development of new technologies and methodologies in the field.

Conclusion

Nima Saeidi's contributions to collagen-based technologies and tissue engineering are noteworthy. His innovative patents and collaborations reflect his commitment to advancing scientific knowledge and practical applications. Saeidi's work continues to inspire future research in the field.

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