Fukuoka, Japan

Kazuo Hayashi


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 10(Granted Patents)


Company Filing History:


Years Active: 1994

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1 patent (USPTO):Explore Patents

Title: Kazuo Hayashi: Innovator in Artificial Hip Joint Technology

Introduction

Kazuo Hayashi is a notable inventor based in Fukuoka, Japan. He has made significant contributions to the field of medical technology, particularly in the development of artificial hip joints. His innovative designs aim to enhance the functionality and durability of these essential medical devices.

Latest Patents

Kazuo Hayashi holds a patent for an acetabular socket for an artificial hip joint. This invention features an acetabular socket that is designed as a virtually inverted bowl-shaped shell or a hemispherical shell. The opening edge of the socket includes outer flanges at regular intervals along its circumference. These outer flanges are equipped with vertical and horizontal concave grooves on their surfaces. This design increases the contact area between the socket and the cortex bone, thereby enhancing the strength for supporting the acetabular socket. Additionally, the socket can be coated with a living body activation material, such as apatite, to further improve its integration with the body.

Career Highlights

Kazuo Hayashi is associated with Kyocera Corporation, a leading company in the field of advanced ceramics and electronics. His work at Kyocera has allowed him to focus on innovative solutions in medical technology, particularly in orthopedic applications.

Collaborations

Kazuo Hayashi has collaborated with Noriyuki Ishida, contributing to the advancement of artificial joint technologies. Their partnership has fostered innovation and development in this critical area of healthcare.

Conclusion

Kazuo Hayashi's contributions to the field of artificial hip joints exemplify the importance of innovation in medical technology. His patented designs not only enhance the performance of artificial joints but also improve patient outcomes. His work continues to influence the future of orthopedic solutions.

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