Tokyo, Japan

Kanji Mizunaka


Average Co-Inventor Count = 2.0

ph-index = 1

Forward Citations = 4(Granted Patents)


Company Filing History:


Years Active: 2010

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1 patent (USPTO):Explore Patents

Title: Kanji Mizunaka: Innovator in Liquid-Absorbing Technology

Introduction

Kanji Mizunaka is a notable inventor based in Tokyo, Japan. He has made significant contributions to the field of liquid-absorbing technologies, particularly in the development of innovative materials for drug delivery systems. His work has implications for various applications, enhancing the efficiency and effectiveness of drug volatilizers.

Latest Patents

Mizunaka holds a patent for a liquid-absorbing core designed for suction-type drug volatilizers. This core comprises hydrophilic fibers and/or water-absorbing fibers, which are essential for optimal performance. The hydrophilic fibers, such as rayon and cotton, exhibit a strong affinity for water, making them particularly effective. Rayon is especially preferred due to its high water affinity. Additionally, the water-absorbing fibers include synthetic options made from polymers like polyvinyl alcohol or polysodium acrylate. The design of the liquid-absorbing core allows for a porosity ranging from 10 to 80%, optimizing its functionality in drug delivery systems.

Career Highlights

Mizunaka's career is marked by his dedication to advancing material science and its applications in healthcare. His innovative approach has led to the development of technologies that improve the delivery of medications, showcasing his commitment to enhancing patient care.

Collaborations

Mizunaka has collaborated with Masatoshi Takahashi, a fellow innovator in the field. Their partnership has fostered the exchange of ideas and expertise, contributing to the advancement of liquid-absorbing technologies.

Conclusion

Kanji Mizunaka's contributions to liquid-absorbing technology highlight his role as a key innovator in the field. His patent for a liquid-absorbing core demonstrates his commitment to improving drug delivery systems. His work continues to influence advancements in healthcare and material science.

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