Location History:
- Hachioji, JP (1983)
- Tokyo, JP (1984 - 1985)
Company Filing History:
Years Active: 1983-1985
Title: The Innovative Contributions of Kitijiro Kohri
Introduction
Kitijiro Kohri is a notable inventor based in Tokyo, Japan. He has made significant contributions to the field of medical technology, particularly through his innovative designs in medical capsule devices. With a total of 3 patents to his name, Kohri continues to push the boundaries of medical device engineering.
Latest Patents
Kohri's latest patents include advanced medical capsule devices that enhance the delivery of medication. One of his inventions features a capsule body with a chamber and a communicating path that allows for interaction with the outside environment. This device includes a movable member that can shift between a liquid-receiving position, maximizing the chamber's volume, and a liquid-pushing position, minimizing it. The operation of this device is facilitated by a coiled member made of shape memory alloy, which is activated by ultrasonic waves. Another patent describes a similar medical capsule device that utilizes temperature changes to control the movement of the movable member, ensuring precise delivery of liquid medication.
Career Highlights
Kohri is currently employed at Olympus Optical Company, Ltd., where he applies his expertise in medical device innovation. His work at Olympus has allowed him to collaborate with other talented professionals in the field, further enhancing the development of cutting-edge medical technologies.
Collaborations
Some of Kohri's notable coworkers include Koji Kambara and Kazuo Misawa. Their collaborative efforts contribute to the advancement of medical devices and the overall mission of Olympus Optical Company.
Conclusion
Kitijiro Kohri's innovative work in medical capsule devices exemplifies the impact of dedicated inventors in the healthcare industry. His patents reflect a commitment to improving medical technology and patient care. Kohri's contributions will undoubtedly continue to influence the future of medical device engineering.