Company Filing History:
Years Active: 2003-2018
Title: The Innovative Mind of Vernon Jensen
Introduction
Vernon Jensen, an accomplished inventor based in Draper, UT, has made significant contributions to the field of robotic surgery and electromagnetic sensing. With an impressive portfolio of 30 patents, he continues to push the boundaries of innovation in medical technology.
Latest Patents
Among his latest inventions, one notable patent is the "System for image-based robotic surgery." This method involves coupling components of a fluoroscopic imaging system to robotic arms in order to enhance the precision of surgical procedures. The system is designed to optimize the spatial positioning of imaging components while employing a sensing system to improve surgical outcomes.
Another key patent, titled "Method and apparatus for correction of multiple EM sensor positions," focuses on enhancing the accuracy of electromagnetic sensors. This method allows for the selection between multiple sensors to correct potential distortions in electromagnetic fields, thus improving signal quality and reliability in various applications.
Career Highlights
Vernon Jensen has built an impressive career, having worked with prominent companies such as General Electric Company and Mako Surgical Corporation. His experience in these organizations has allowed him to develop groundbreaking technologies and contribute to innovations in the medical field.
Collaborations
Throughout his career, Vernon has collaborated with talented professionals, including Dun Alex Li and William Hullinger Huber. These partnerships have played a crucial role in the development of his patented technologies and have fostered a collaborative environment conducive to innovation.
Conclusion
With 30 patents to his name, Vernon Jensen continues to be a trailblazer in the domains of robotic surgery and electromagnetic sensing. His innovative spirit and dedication to improving medical technology set him apart as a key figure in the field, and his ongoing contributions promise to shape the future of healthcare.