Company Filing History:
Years Active: 2015-2017
Title: Innovations by Yen-Ju Su in Wound Dressing Technology
Introduction
Yen-Ju Su 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 3 patents to his name, his work focuses on enhancing the healing process through innovative materials and designs.
Latest Patents
One of Yen-Ju Su's latest patents is a unique wound dressing designed to cover and protect wounds effectively. This wound dressing consists of at least one absorbing member and a plurality of elongated activated carbon fibers. The absorbing member is crafted from a foamed polymeric material that contains numerous pores. The activated carbon fibers are strategically distributed within the absorbing member, with some fibers protruding into the pores. Each activated carbon fiber has a diameter ranging from 2 to 15 micrometers and a length between 40 to 1500 micrometers. This innovative design allows the absorbing member to absorb tissue fluid leaking from the wound, preventing soakage. Additionally, the activated carbon fibers emit far-infrared rays, which promote blood circulation around the wound, thereby accelerating the healing process.
Career Highlights
Yen-Ju Su is associated with Bio-Medical Carbon Technology Co., Ltd., where he continues to develop cutting-edge solutions in the biomedical field. His work has garnered attention for its potential to improve patient outcomes through enhanced wound care technologies.
Collaborations
Yen-Ju Su collaborates with talented individuals in his field, including Tse-Hao Ko and Jui-Hsiang Lin, who contribute to the innovative projects at Bio-Medical Carbon Technology Co., Ltd.
Conclusion
Yen-Ju Su's contributions to wound dressing technology exemplify the impact of innovation in healthcare. His patented designs not only address practical challenges in wound care but also enhance the healing process through advanced materials.