Cambridge, MA, United States of America

Kaymie Sato-Hayashi-Kagawa Shiozawa

USPTO Granted Patents = 1 

Average Co-Inventor Count = 14.0

ph-index = 1


Company Filing History:


Years Active: 2025

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1 patent (USPTO):

Title: Kaymie Sato-Hayashi-Kagawa Shiozawa: Innovator in Access Request Risk Mitigation

Introduction

Kaymie Sato-Hayashi-Kagawa Shiozawa is an accomplished inventor based in Cambridge, MA. He has made significant contributions to the field of computing security, particularly in the area of access request risk mitigation. His innovative approach utilizes machine learning to enhance the security of computing systems.

Latest Patents

Shiozawa holds a patent titled "Anomaly-based mitigation of access request risk." This patent addresses the challenges associated with access to secured items in computing systems. Instead of persistent access, his invention allows for just-in-time access requests. Anomalous access requests are detected using machine learning models that analyze historic patterns. The models can create human-understandable explanations of threat assessments, enhancing the decision-making process regarding access requests.

Career Highlights

Kaymie Sato-Hayashi-Kagawa Shiozawa is currently employed at Microsoft Technology Licensing, LLC. His work focuses on developing innovative solutions that improve security protocols within computing systems. His expertise in machine learning and risk assessment has positioned him as a valuable asset in the tech industry.

Collaborations

Shiozawa collaborates with notable colleagues, including Christopher Michael Jeffords and Srikanth Bolisetty. Their combined efforts contribute to advancing the field of computing security and developing effective risk mitigation strategies.

Conclusion

Kaymie Sato-Hayashi-Kagawa Shiozawa is a pioneering inventor whose work in access request risk mitigation is shaping the future of computing security. His innovative patent and collaboration with esteemed colleagues highlight his commitment to enhancing technology safety.

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