Nasushiobara, Japan

Asuka Ozawa

USPTO Granted Patents = 2 

 

Average Co-Inventor Count = 3.4

ph-index = 1


Company Filing History:


Years Active: 2023-2024

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2 patents (USPTO):Explore Patents

Title: The Innovative Journey of Asuka Ozawa

Introduction: Asuka Ozawa, an accomplished inventor based in Nasushiobara, Japan, has made significant strides in the field of ultrasonic diagnostic devices. With two patents to her name, her work reflects a commitment to advancing medical technology and improving diagnostic procedures.

Latest Patents: Asuka's latest patents include an "Ultrasonic Diagnostic Device" and an "Ultrasonic Diagnostic Apparatus and Body Mark Display Method." The ultrasonic diagnostic device features processing circuitry that acquires ultrasonic images of subjects and executes specific procedures. This device determines recommended steps based on the consistency between registered set images and the acquired ultrasonic image, enhancing the efficiency of current diagnostic practices. Additionally, her ultrasonic diagnostic apparatus is designed to acquire real-time position information of an ultrasonic probe in three-dimensional space, allowing for seamless switching between body marks indicating different body parts, ensuring accuracy during examinations.

Career Highlights: Throughout her career, Asuka Ozawa has remained dedicated to her work at Canon Medical Systems Corporation. Her contributions to the company have not only launched new medical technologies but also influenced the standards within the diagnostic imaging field.

Collaborations: Asuka has collaborated with talented individuals such as Takashi Masuda and Nobuhide Ooi. Their combined efforts foster an environment of innovation, further propelling advancements in medical diagnostics.

Conclusion: Asuka Ozawa's innovative spirit and technical expertise have positioned her as a notable figure in the field of ultrasonic diagnostics. Through her patents and collaborations, she continues to pave the way for improvements in medical technology, ultimately enhancing patient care and diagnostic efficacy.

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