Philadephia, PA, United States of America

Carlos F Lopez


Average Co-Inventor Count = 4.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 2012

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1 patent (USPTO):Explore Patents

Title: The Innovative Journey of Carlos F. Lopez

Introduction

Carlos F. Lopez, based in Philadelphia, PA, is an esteemed inventor recognized for his innovative contributions to the field of biomembrane simulation. With a unique focus on utilizing coarse grain models, Lopez has made significant strides in understanding lipid molecular behavior.

Latest Patents

His notable patent, titled "Methods, systems, and computer program products for simulating biomembranes using coarse grain models," introduces a groundbreaking approach to simulating the self-assembly of lamellar bilayers. This patent showcases a coarse grain model that mimics lipid molecules, such as dimyristoylphosphatidylcholine (DMPC). Unlike all-atom models that require substantial CPU time, this model is orders of magnitude less demanding. Leveraging Monte Carlo simulation techniques, an initial bilayer-like structure is generated from a disordered configuration, which is then refined through molecular dynamics simulations, adaptable to various system sizes under different conditions.

Career Highlights

Currently, Carlos works at the University of Pennsylvania, where he actively engages in pioneering research and development activities. His work reflects a commitment to advancing our understanding of molecular dynamics and biomolecular simulations.

Collaborations

Throughout his career, Carlos has collaborated with several talented colleagues, including Steven O. Nielsen and Preston B. Moore. These partnerships highlight the collaborative spirit present in innovative research environments, fostering the exchange of ideas and expertise.

Conclusion

Carlos F. Lopez stands as a remarkable figure in the realm of biomolecular simulation. His invention advances the field by providing more efficient modeling methods to study biomembrane behaviors, ultimately contributing to the broader understanding and applications of lipid dynamics in various scientific and medical fields. His endeavors continue to inspire fellow researchers and inventors looking to push the boundaries of innovation.

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