This inventor holds 2 USPTO granted patents and 1 published patent application. Top assignee: Wisconsin Alumni Research Foundation. Active years: 2015-2017.
Company Filing History:
Years Active: 2015-2017
Title: Innovator Spotlight: Nathaniel James Cira from Cedarburg, WI
Introduction: Nathaniel James Cira is an accomplished inventor based in Cedarburg, Wisconsin, known for his groundbreaking work in microfluidic technology. With two patents to his name, he has made significant contributions to the field of chemical and biological analysis, showcasing his dedication to innovation.
Latest Patents: Nathaniel's latest patents include the "Self-loading Microfluidic Device and Methods of Use." His innovative microfluidic devices are designed to conduct chemical and biological assays without the need for external connections, tethers, tubing, valves, or actuators. These devices enable the analysis of a wide variety of chemical and biological interactions, such as molecule-molecule interactions, enzyme-substrate interactions, molecule identification, and the determination of minimum inhibitory concentrations, therapeutically effective amounts, and toxic amounts.
Career Highlights: Cira is affiliated with the Wisconsin Alumni Research Foundation, where he is actively involved in advancing research and developing innovative solutions. His work emphasizes practical applications of microfluidic technology in various scientific fields, underlining the importance of his contributions to understanding complex biochemical processes.
Collaborations: Throughout his career, Nathaniel has collaborated with fellow researcher Douglas Benjamin Weibel. Together, they have explored innovative approaches to harnessing the potential of microfluidic devices, further enhancing the capabilities of chemical and biological assays.
Conclusion: Nathaniel James Cira is a notable inventor whose work is transforming the landscape of microfluidic technology. With his two patents, he continues to drive innovation in the analysis of chemical and biological interactions, making a lasting impact in scientific research. His dedication to improving methods for conducting assays illustrates the power of ingenuity in tackling complex challenges in the modern scientific world.
