Danbury, CT, United States of America

Guoyun Ru


 

Average Co-Inventor Count = 1.3

ph-index = 1

Forward Citations = 1(Granted Patents)


Company Filing History:


Years Active: 2022-2025

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3 patents (USPTO):Explore Patents

Title: Guoyun Ru: Innovator in Medical Imaging Technologies

Introduction

Guoyun Ru is a notable inventor based in Danbury, CT (US), recognized for his contributions to medical imaging technologies. He holds a total of 3 patents, showcasing his innovative approach to improving imaging systems.

Latest Patents

One of his latest patents is titled "Systems and methods for determining performance of a breast compression paddle." This invention involves a method for assessing the performance characteristics of a breast compression paddle used in breast imaging systems. The method includes receiving a force application signal related to the compressive force applied to a patient's breast and utilizing an algorithm to calculate an updated paddle performance value.

Another significant patent is "Systems and methods for adaptively controlling filament current in an X-ray tube." This invention focuses on the adaptive control of filament current in an X-ray tube, which is crucial for optimizing imaging quality. The system monitors the resistance value of the filament over time and adjusts the filament current based on any changes detected.

Career Highlights

Guoyun Ru is currently employed at Hologic, Inc., a company dedicated to advancing women's health through innovative medical technologies. His work at Hologic has positioned him as a key player in the development of cutting-edge imaging solutions.

Collaborations

Throughout his career, Guoyun has collaborated with talented individuals such as David Aizer and J Austin Fraley. These collaborations have contributed to the successful development of his patented technologies.

Conclusion

Guoyun Ru's innovative work in medical imaging technologies has made a significant impact in the field. His patents reflect a commitment to enhancing the effectiveness of imaging systems, ultimately benefiting patient care.

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