Company Filing History:
Years Active: 2011-2019
Title: Innovator Edzer Lienson Wu: Pioneering Advancements in Magnetic Resonance Imaging
Introduction
Edzer Lienson Wu is a prominent inventor based in Taipei, Taiwan, whose contributions to the field of magnetic resonance imaging (MRI) have led to the issuance of eight patents. His inventive methods and apparatus reflect a commitment to enhancing imaging techniques and expanding the capabilities of MRI technology.
Latest Patents
Among Edzer Wu's latest patents is a patent titled "Method and Apparatus for Single Carrier Wideband Magnetic Resonance Imaging (MRI) Data Acquisition." This method encompasses various steps, including exciting a slice or slab using an RF pulse and a selection gradient, applying phase and frequency encoding gradients, and utilizing k-space subsampling for data acquisition. Another significant patent is for a "3D Magnetic Resonance Imaging" method, which details a procedure for applying slab selection gradients, exciting the subject with radiofrequency pulses, and performing spatial encoding across three dimensions to generate detailed 3D images.
Career Highlights
Throughout his career, Edzer has contributed to various esteemed institutions, most notably at National Taiwan University. His experience and expertise in MRI technology have positioned him as a leading innovator in the field, ensuring the continuous evolution of imaging processes and applications.
Collaborations
Edzer Lienson Wu has collaborated with notable colleagues such as Jyh-Horng Chen and Tzi-Dar Chiueh. These collaborations have enabled the exchange of ideas and expertise, fostering innovative approaches to the challenges faced in magnetic resonance imaging.
Conclusion
Edzer Lienson Wu's work in the development of magnetic resonance imaging methodologies exemplifies the importance of innovation in medical technology. With a total of eight patents to his name, Wu's contributions significantly enhance the accuracy and efficiency of MRI, paving the way for future advancements in diagnostic imaging. His ongoing efforts continue to inspire future innovations within the field.