Durham, NC, United States of America

Connor Puett


Average Co-Inventor Count = 4.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):Explore Patents

Title: The Innovations of Connor Puett in Dental Imaging Technology

Introduction

Connor Puett is an innovative inventor based in Durham, North Carolina. With a focus on advancements in dental imaging, he has made significant contributions to the field through his patented technology, enhancing the process of capturing and analyzing dental radiographs.

Latest Patents

Connor Puett holds a patent for "Systems and methods for generating multi-view synthetic dental radiographs for intraoral tomosynthesis." This invention revolves around a sophisticated approach to dental imaging, where the method involves generating or receiving two-dimensional (2D) projection images. The process manipulates pixel values in these images and reconstructs a three-dimensional (3D) space containing voxel values. Tunable weighting algorithms are employed to highlight specific features of interest, allowing for the generation of multiple synthetic dental radiographs from varying perspectives. This technology promises to improve diagnostic accuracy and enhance the capabilities of dental practitioners.

Career Highlights

Connor Puett is affiliated with the University of North Carolina at Chapel Hill, where he engages in pioneering research and development initiatives. His role at the university has enabled him to focus on cutting-edge technologies in dental imaging, placing him at the forefront of innovation in this vital healthcare field.

Collaborations

Throughout his career, Connor has collaborated with notable colleagues, including Otto Z Zhou and Jianping Lu. Together, they have contributed to advancements in dental imaging technology, sharing insights and expertise that drive their research forward.

Conclusion

Connor Puett's contributions through his patented invention signify a meaningful advancement in dental radiography. By enhancing the methodologies of intraoral tomosynthesis, he is helping to shape the future of dental diagnostics, ultimately improving patient care and outcomes in the dental field.

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