Company Filing History:
Years Active: 2015-2018
Title: Lynn E Gilmour: Innovator in Electrode Catheter Technology
Introduction
Lynn E Gilmour is a prominent inventor based in Savage, MN (US). She has made significant contributions to the field of medical technology, particularly in the development of electrode catheter devices. With a total of 2 patents, her work focuses on improving patient outcomes through innovative medical solutions.
Latest Patents
One of Gilmour's latest patents is for an electrode catheter device with an indifferent electrode for direct current tissue therapies. This device features flexible tubing with at least one ablation electrode, which can be used in conjunction with a sheath for introducing the tubing into a patient's body. The indifferent electrode on the sheath serves as a ground for a direct current (DC) pulse, delivering electrical energy to create an electrical field adjacent to tissue. Various embodiments of this technology are also disclosed.
Another significant patent involves systems and methods for determining the likelihood of endocardial barotrauma in tissue during ablation. This method and system utilize an electronic control unit (ECU) to acquire values of complex impedance between an electrode and the tissue. The ECU calculates an index that indicates the likelihood of barotrauma occurring in the tissue, enhancing the safety and effectiveness of ablation procedures.
Career Highlights
Lynn E Gilmour works at St Jude Medical, Atrial Fibrillation Division, Inc., where she continues to innovate in the field of medical devices. Her expertise and dedication to improving medical technology have made her a valuable asset to her team and the industry.
Collaborations
Gilmour collaborates with talented individuals such as Israel A Byrd and Saurav Paul, contributing to the advancement of medical technology through teamwork and shared expertise.
Conclusion
Lynn E Gilmour's contributions to electrode catheter technology and her innovative patents demonstrate her commitment to enhancing medical treatments. Her work continues to impact the field positively, paving the way for future advancements in patient care.