This inventor holds 1 USPTO granted patent. Top assignee: The University of Texas System. Active years: 1990.
Company Filing History:
Years Active: 1990
Title: The Innovative Contributions of Malcolm R Smyth
Introduction
Malcolm R Smyth is a notable inventor based in Dublin, Ireland. He has made significant contributions to the field of immunochemistry through his innovative patent. His work focuses on methods and apparatus that utilize galvanic immunoelectrodes for detecting immunochemical reactions.
Latest Patents
Malcolm R Smyth holds a patent for "Methods and apparatus using galvanic immunoelectrodes." This invention involves methods and apparatus for detecting immunochemical reactions and levels of antigens and antibodies in serum. The process includes binding a selected immunochemical reactant to the surface of a first electrode. A second electrode is provided, allowing the electrodes to generate a galvanic current when electrically interconnected and immersed in a conductive aqueous solution. The electrodes are then immersed in a solution containing the complementary immunochemical reactant. The galvanic current generated is measured over time, and the level of the complementary immunochemical reactant is calculated by comparing the measured current with a standard current. This innovative approach enhances the accuracy of immunochemical detection.
Career Highlights
Malcolm R Smyth is affiliated with the University of Texas System, where he continues to contribute to research and development in his field. His work has implications for medical diagnostics and therapeutic applications, showcasing his commitment to advancing scientific knowledge.
Collaborations
Some of his notable coworkers include Christopher L Reading and Richard O'Kennedy. Their collaborative efforts have likely contributed to the success of his research and innovations.
Conclusion
Malcolm R Smyth's contributions to the field of immunochemistry through his patent demonstrate his innovative spirit and dedication to scientific advancement. His work has the potential to significantly impact medical diagnostics and improve healthcare outcomes.
