Company Filing History:
Years Active: 2005-2011
Title: **Innovative Contributions of Anthony Tienhuan Vu in Magnetic Resonance Imaging**
Introduction
Anthony Tienhuan Vu, an accomplished inventor based in Waukesha, Wisconsin, has made significant contributions to the field of magnetic resonance imaging (MRI). With a total of 14 patents to his name, Vu's innovative techniques and systems have enhanced the efficiency and effectiveness of MRI technologies.
Latest Patents
One of Vu's latest patents, titled "Method and System for Modifying Pulse Sequences," describes methods and systems for adjusting pulse sequences based on estimated peripheral nerve stimulation (PNS). This innovation includes mechanisms to reduce the slew rate and adjust maximum gradient amplitudes to ensure safe levels during procedures. Another notable patent, "Method and Apparatus for View Ordering of Magnetic Resonance Imaging Data for Dynamic Studies," details a method for efficiently acquiring MRI data in a three-dimensional dynamic study by strategically partitioning views into inner and outer regions. This approach results in improved image generation from acquired data, as inner views are prioritized during acquisition.
Career Highlights
Throughout his career, Vu has worked with prominent organizations such as General Electric Company and Michigan State University. His experience with these institutions has facilitated the development and refinement of his groundbreaking technologies in MRI applications.
Collaborations
Vu has collaborated with other notable professionals in the industry, including Ersin Bayram and Charles Robert Michelich. These partnerships have contributed to the innovative advancements in MRI techniques and methods that Vu is known for today.
Conclusion
Anthony Tienhuan Vu stands out as a key figure in the realm of medical imaging with his significant patents and contributions. His dedication to innovation continues to influence the ways in which magnetic resonance imaging is utilized, ultimately leading to improved patient outcomes and advancing the field of medical diagnostics.