George Barany

Falcon Heights, MN, United States of America

George Barany

USPTO Granted Patents = 38 

 

Average Co-Inventor Count = 3.8

ph-index = 19

Forward Citations = 2,324(Granted Patents)


Company Filing History:


Years Active: 1992-2016

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38 patents (USPTO):Explore Patents

Title: The Innovations of George Barany: Pioneering Nucleic Acid Detection

Introduction

George Barany, an esteemed inventor based in Falcon Heights, MN, has made significant contributions to the field of molecular biology with a remarkable portfolio of 38 patents. His work primarily focuses on innovative methods for nucleic acid detection, enhancing our ability to diagnose and understand genetic variations.

Latest Patents

One of Barany's latest inventions is a novel method for detecting nucleic acid sequence differences using the ligase detection reaction with addressable arrays. This method allows researchers to identify various sequences that differ by single base changes, insertions, deletions, or translocations in multiple target nucleotide sequences. The process comprises three crucial phases: ligation, capture, and detection. During the ligation phase, two oligonucleotide probes—the first with a target sequence-specific portion and an addressable array-specific portion, and the second with a target sequence-specific portion and a detectable label—are utilized. The probes are then hybridized to a solid support in the capture phase, followed by detecting the labels of the ligated probes in the detection phase.

Career Highlights

Throughout his career, George Barany has been associated with prominent institutions such as the Cornell Research Foundation Inc. and the University of Minnesota. His extensive research and dedication have established him as a leading figure in his field.

Collaborations

Barany has worked alongside notable colleagues, including Robert P. Hammer and Francis Barany. These collaborations have further enriched the innovative research and development stemming from his work.

Conclusion

George Barany’s innovative contributions, particularly in the detection of nucleic acid sequence differences, showcase the potential of his work in advancing genetic research and diagnostics. His impressive body of patents underscores the importance of continued innovation in the molecular biology field, paving the way for future discoveries and applications.

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