Taichung, Taiwan

Pei-Hsun Chou


Average Co-Inventor Count = 4.4

ph-index = 1

Forward Citations = 18(Granted Patents)


Company Filing History:


Years Active: 2016-2017

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2 patents (USPTO):Explore Patents

Title: Pei-Hsun Chou: Innovator in Wound Dressing Technology

Introduction

Pei-Hsun Chou is a notable inventor based in Taichung, Taiwan. He has made significant contributions to the field of biomedical technology, particularly in the development of advanced wound dressing solutions. With a total of 2 patents, Chou's work focuses on enhancing the healing process through innovative materials and designs.

Latest Patents

One of Pei-Hsun Chou's latest patents is a unique wound dressing designed to effectively cover and protect wounds. This invention features at least one absorbing member made from a foamed polymeric material, which includes a multitude of pores. The dressing incorporates elongated activated carbon fibers that are strategically distributed within the absorbing member. Each activated carbon fiber has a diameter ranging from 2-15 μm and a length between 40-1500 μm. This design allows the absorbing member to absorb tissue fluid leaking from the wound, preventing soakage. Additionally, the activated carbon fibers emit far-infrared rays, promoting blood circulation around the wound and accelerating the healing process.

Career Highlights

Pei-Hsun Chou is currently employed at Bio-Medical Carbon Technology Co., Ltd., where he continues to innovate in the field of wound care. His work is characterized by a commitment to improving patient outcomes through advanced materials and technologies.

Collaborations

Chou collaborates with talented individuals such as Tse-Hao Ko and Jui-Hsiang Lin, who contribute to the development of cutting-edge biomedical solutions. Their teamwork enhances the potential for groundbreaking advancements in the industry.

Conclusion

Pei-Hsun Chou's contributions to wound dressing technology exemplify the impact of innovative thinking in healthcare. His patents reflect a dedication to improving healing processes and patient care through scientific advancements.

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