Osaka, Japan

Hirobumi Okabe


Average Co-Inventor Count = 9.0

ph-index = 1

Forward Citations = 3(Granted Patents)


Company Filing History:


Years Active: 1987

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1 patent (USPTO):Explore Patents

Title: **Innovative Contributions of Hirobumi Okabe in Medical Implant Technology**

Introduction

Hirobumi Okabe, an esteemed inventor based in Osaka, Japan, is noted for his groundbreaking work in the development of medical implant alloys. His contributions have significantly impacted the fields of material science and biomedical engineering, particularly in creating safer and more efficient implant solutions for medical treatments.

Latest Patents

Okabe holds a patent for an innovative Fe-Cr-Al type implant alloy composite specifically designed for medical applications. This alloy comprises 20-32% chromium, 0.5-5.0% aluminum, and 0.5-4.0% molybdenum, with the remainder being primarily iron. A notable feature of this alloy is the oxide film on its surface, predominantly composed of α-Al2O3, which enhances its biocompatibility and durability in medical environments. The patent outlines the method of producing this alloy implant, showcasing his ingenuity in the field.

Career Highlights

Throughout his career, Hirobumi Okabe has made substantial advancements in the development of metal alloys for medical devices. His expertise in material composition and treatment processes has positioned him as a valuable asset within the industry. He has worked at Kyocera Corporation, where he has collaborated on various projects aimed at improving the performance of medical implants.

Collaborations

Okabe has also worked alongside notable colleagues, including Eiji Tsuji and Hideo Ike, fostering teamwork that has led to significant breakthroughs in implant technology. Their collective efforts have enabled the development of materials that not only meet strict medical standards but also enhance patient outcomes.

Conclusion

Hirobumi Okabe's innovative work in creating the Fe-Cr-Al type implant alloy composite exemplifies the intersection of material science and healthcare. His patent and collaborations with other experts continue to push the boundaries of what is possible in medical treatments, ensuring that he remains a pivotal figure in the evolution of medical implant technology.

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