Gunma, Japan

Minoru Kamakura


Average Co-Inventor Count = 5.0

ph-index = 1

Forward Citations = 9(Granted Patents)


Company Filing History:


Years Active: 1991

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1 patent (USPTO):Explore Patents

Title: Minoru Kamakura: Innovator in Microbial Immobilization

Introduction

Minoru Kamakura is a notable inventor based in Gunma, Japan. He has made significant contributions to the field of microbial technology, particularly in the immobilization of microorganisms for various applications. His innovative approach has led to the development of a unique method that enhances the efficiency of microbial growth.

Latest Patents

Kamakura holds a patent for the "Immobilization of growing microorganisms on polymer-coated cotton gauze." This invention involves preparing a carrier for immobilizing microorganisms by impregnating cotton gauze with a vinyl monomer, such as ethylene glycol methacrylate. The polymer coating formed through ionizing radiation allows for high air permeability and effective diffusion of liquid culture medium. This method enables the growth of microorganisms, such as Trichoderma reesei, in a liquid culture medium, resulting in a fabric that contains growing cells of the microorganism. He has 1 patent to his name.

Career Highlights

Minoru Kamakura is affiliated with the Japan Atomic Energy Research Institute, where he has been involved in various research projects. His work focuses on the intersection of microbiology and material science, leading to advancements in how microorganisms can be utilized in different industrial applications.

Collaborations

Kamakura has collaborated with notable colleagues, including Masao Tamada and Noboru Kasai. Their combined expertise has contributed to the success of their research endeavors and the development of innovative solutions in microbial technology.

Conclusion

Minoru Kamakura's contributions to the field of microbial immobilization demonstrate his commitment to innovation and research. His patented method for immobilizing microorganisms on polymer-coated fabrics represents a significant advancement in the field. His work continues to inspire future research and applications in microbial technology.

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