This inventor holds 2 USPTO granted patents. Top assignee: Eastman-Kodak Company. Active years: 1997-1998.
Company Filing History:
Years Active: 1997-1998
Title: Innovations by Paul James Heaney
Introduction
Paul James Heaney is a notable inventor based in Branford, CT (US). He has made significant contributions to the field of analytical chemistry, particularly in the development of dry analytical elements and test kits. With a total of 2 patents, Heaney's work has advanced the methods used for chemiluminescent detection.
Latest Patents
Heaney's latest patents focus on dry elements, test devices, and test kits for chemiluminescent detection. One of his key innovations involves a dry, removable analytical element that detects chemiluminescent signals produced from the reaction of peroxidase and a chemiluminescent detection system. This analytical element consists of at least two layers, with the outer layer being non-tacky and either water-soluble or water-permeable. It is designed to contact a gel plate or transblotting membrane containing multiple analytes. The resulting chemiluminescent signal can be recorded using a photosensitive element. Additionally, the test kits include various packaged components necessary for utilizing the analytical element in analyte detection. Within the element, critical amounts of oxidase and an oxidase substrate are included to ensure highly sensitive analyte detection.
Career Highlights
Heaney is currently associated with the Eastman Kodak Company, where he continues to innovate in the field of analytical devices. His work has been instrumental in enhancing the sensitivity and efficiency of chemiluminescent detection methods.
Collaborations
Heaney has collaborated with notable colleagues, including Robert Edwin Emmons and John C Mauck, contributing to the advancement of their shared field.
Conclusion
Paul James Heaney's contributions to analytical chemistry through his innovative patents have significantly impacted the methods of chemiluminescent detection. His work continues to influence the development of sensitive analytical devices.
