Company Filing History:
Years Active: 2021-2024
Title: The Innovative Contributions of Erik M. Shapiro
Introduction
Erik M. Shapiro is a notable inventor based in Okemos, Michigan. He has made significant contributions to the field of nanoparticle technology and magnetic resonance imaging. With a total of 2 patents, his work is recognized for its innovative approaches to medical imaging and contrast agents.
Latest Patents
One of Erik's latest patents is focused on tantalum oxide nanoparticle contrast agents. This patent describes a nanoparticle composition that includes a core made of tantalum oxide, along with a covalent coating that enhances its functionality. The coating comprises various surface modifiers, which are crucial for the application of these nanoparticles in medical imaging.
Another significant patent involves a system and method for quantifying cell numbers in magnetic resonance imaging (MRI). This invention provides a comprehensive method for tracking magnetically-labeled substances, such as transplanted cells, using MRI technology. The process includes administering a magnetically-labeled substance, performing an imaging scan, and utilizing machine learning to quantify the presence and location of the substance within the subject.
Career Highlights
Erik M. Shapiro is affiliated with Michigan State University, where he contributes to research and development in his field. His work is instrumental in advancing the applications of nanoparticles in medical diagnostics and treatment.
Collaborations
Erik collaborates with esteemed colleagues, including Muhammad Jamal Afridi and Arun Ross. Their combined expertise enhances the research output and innovation in their respective projects.
Conclusion
Erik M. Shapiro's contributions to the fields of nanoparticle technology and MRI are noteworthy. His innovative patents reflect a commitment to advancing medical imaging techniques. Through his work at Michigan State University, he continues to push the boundaries of research and development in these critical areas.