This inventor holds 2 USPTO granted patents. Top assignees: The University of Electro-Communications, Yokohama City University, The University of Tokyo. Active years: 2020.
Company Filing History:


Years Active: 2020
Title: Kazushi Numata: Innovator in In Vivo Movement Tracking Technology
Introduction
Kazushi Numata is a prominent inventor based in Yokohama, Japan. He has made significant contributions to the field of in vivo movement tracking technology, holding 2 patents that enhance the accuracy and robustness of tracking biological movements.
Latest Patents
Numata's latest patents include an "In Vivo Movement Tracking Apparatus" and an "In Vivo Motion Tracking Device and Method." The in vivo movement tracking apparatus is designed to track a portion of interest that moves within a biological system. It improves tracking accuracy by estimating the position of an organ based on its past movements and searching for contour points that represent the organ's shape. This apparatus determines the position of a moving portion associated with the organ by referencing previously acquired sample data. The in vivo motion tracking device, on the other hand, utilizes an ultrasonic image to track in vivo motion. It includes an image acquiring unit, an advance learning unit for processing the ultrasonic image, and a tracking unit that follows the position of the tracking target after the learning phase.
Career Highlights
Kazushi Numata has worked at notable institutions such as the University of Electro-Communications and Yokohama City University. His work at these universities has allowed him to develop innovative technologies that push the boundaries of in vivo tracking.
Collaborations
Numata has collaborated with esteemed colleagues, including Norihiro Koizumi and Kyohei Tomita. Their joint efforts have contributed to advancements in the field of movement tracking technology.
Conclusion
Kazushi Numata's innovative work in in vivo movement tracking technology showcases his dedication to improving biological imaging and tracking methods. His patents reflect a commitment to enhancing the accuracy and effectiveness of tracking systems in medical applications.