This inventor holds 1 USPTO granted patent. Top assignee: Rutgers, The State University of New Jersey. Active years: 2020.
Company Filing History:
Years Active: 2020
Title: The Innovative Contributions of Robert J. Laumbach
Introduction
Robert J. Laumbach is a notable inventor based in Fanwood, NJ (US). He has made significant contributions to the field of respiratory health through his innovative patent. His work focuses on the quantification of inflammatory molecules in exhaled breath, which is crucial for understanding respiratory conditions.
Latest Patents
Laumbach holds a patent for a device that detects biomarkers for inflammation in the respiratory system. The patent, titled "Quantification of inflammatory molecules in exhaled breath condensate using differential pulse voltammetry on reduced graphene oxide sensor," describes a system that includes a sample collection area for exhaled breath condensate (EBC). The device features an electrode system made of reduced graphene oxide (rGO) and circuitry that applies voltage to the EBC sample. This setup measures the current in response to the voltage, allowing for the determination of nitrite concentration, a biomarker for inflammation in the respiratory system. Laumbach's patent represents a significant advancement in non-invasive diagnostic techniques.
Career Highlights
Robert J. Laumbach is affiliated with Rutgers, The State University of New Jersey, where he continues to contribute to research and innovation in respiratory health. His work has implications for improving diagnostic methods and understanding inflammatory responses in respiratory diseases.
Collaborations
Laumbach has collaborated with esteemed colleagues such as Howard M. Kipen and Clifford P. Weisel. These collaborations have further enhanced the impact of his research and innovations in the field.
Conclusion
Robert J. Laumbach's contributions to respiratory health through his innovative patent highlight the importance of advancements in medical technology. His work not only aids in the detection of inflammation but also paves the way for future research in respiratory diagnostics.
