Aachen, Germany

Richard Patzak



Average Co-Inventor Count = 5.0

ph-index = 1


Company Filing History:


Years Active: 2009

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1 patent (USPTO):Explore Patents

Title: The Innovative Mind of Richard Patzak

Introduction

Richard Patzak is a notable inventor based in Aachen, Germany. He has made significant contributions to the field of imaging methods, particularly in nuclear magnetic resonance. His innovative approach has led to the development of a unique imaging method that utilizes fractal surface-filling curves.

Latest Patents

Richard Patzak holds a patent for an "Imaging method based on fractal surface-filling or space-filling curves." This invention relates to an imaging method and device for nuclear magnetic resonance. The method provides image coding through an additional field with unique field strength values for each point on a two-dimensional grating surface within the sample. This approach allows for the recording of magnetic resonance images with a single high-frequency excitation, minimizing sound generation associated with traditional methods. Additionally, the sounds produced during read-out are shifted to a frequency range less sensitive to human hearing, thereby reducing technical requirements and enhancing device performance.

Career Highlights

Throughout his career, Richard Patzak has worked with prominent research institutions, including Forschungszentrum Jülich GmbH. His work has focused on advancing imaging techniques and improving the efficiency of nuclear magnetic resonance applications.

Collaborations

Richard has collaborated with notable colleagues such as Daniel Gembris and Stephan Appelt. Their combined expertise has contributed to the success of various projects in the field of imaging and resonance technology.

Conclusion

Richard Patzak's innovative contributions to imaging methods in nuclear magnetic resonance highlight his role as a leading inventor in this specialized field. His work continues to influence advancements in imaging technology and enhances the understanding of resonance behavior in samples.

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