This inventor holds 1 USPTO granted patent. Top assignee: The University of New Brunswick. Active years: 2017.
Company Filing History:
Years Active: 2017
Title: Frederic Goora: Innovator in Magnetic Field Gradient Technology
Introduction
Frederic Goora is a notable inventor based in Fredericton, Canada. He has made significant contributions to the field of magnetic resonance measurement through his innovative patent. His work focuses on enhancing the accuracy and efficiency of magnetic field gradient monitoring.
Latest Patents
Frederic Goora holds a patent for a "Magnetic field gradient monitor and magnetic field gradient waveform correction apparatus and methods." This invention outlines a method for correcting the magnetic field gradient waveform in a magnetic resonance measurement. The process includes extracting an impulse response from the measured step response of a magnetic resonance system, determining the slew rate of the system during the step response measurement, modifying the desired output waveform to ensure it is constrained within the slew rate and bandwidth of the system, and determining the required pre-equalized input waveform. This patent showcases his expertise and innovative approach to solving complex problems in magnetic resonance technology. He has 1 patent to his name.
Career Highlights
Frederic Goora is affiliated with the University of New Brunswick, where he contributes to research and development in his field. His work at the university allows him to collaborate with other experts and advance the understanding of magnetic resonance technologies.
Collaborations
Frederic Goora has worked alongside Bruce J Balcom, a fellow researcher, to further explore advancements in magnetic resonance measurement techniques. Their collaboration highlights the importance of teamwork in driving innovation.
Conclusion
Frederic Goora's contributions to magnetic field gradient technology exemplify the impact of innovative thinking in scientific research. His patent and collaboration with other experts continue to push the boundaries of what is possible in magnetic resonance measurement.
