Location History:
- Staten Island, NY (US) (1996)
- Franklin Park, NJ (US) (1996)
Company Filing History:
Years Active: 1996
Title: Stefanie C Decker: Innovator in Controlled Release Technologies
Introduction
Stefanie C Decker is a notable inventor based in Staten Island, NY (US). She has made significant contributions to the field of controlled release technologies, holding 2 patents that showcase her innovative spirit and technical expertise.
Latest Patents
One of her latest patents is titled "Temperature Activated Controlled Release." This invention involves a polymeric device designed for the controlled release of active agents. The device operates by utilizing a polymer with a glass transition temperature that exceeds the normal storage temperature. When the device is heated to or above this temperature, the active agent is released. The release mechanism can be toggled on or off by adjusting the temperature of the polymeric device.
Another significant patent is the "Thermoplastic Hydrogel Impregnated Composite Material." This composite material is intended for use in wound dressings. It features a fibrous wound-contacting substrate, such as cotton gauze, that is impregnated with a thermoplastic hydrogel forming polymer. The methods of creating this composite material are also outlined in the patent.
Career Highlights
Throughout her career, Stefanie has worked with prominent companies, including Bristol-Myers Squibb Company and E.R. Squibb & Sons, Inc. Her experience in these organizations has contributed to her development as an inventor and innovator in her field.
Collaborations
Stefanie has collaborated with notable professionals, including Kishore R Shah and Agis F Kydonieus. These collaborations have likely enriched her work and expanded her impact in the industry.
Conclusion
Stefanie C Decker is a pioneering inventor whose work in controlled release technologies has the potential to make significant advancements in various applications. Her patents reflect her commitment to innovation and her ability to address complex challenges in her field.