Location History:
- Freital, DE (2019)
- Recklinghausen, DE (2020)
Company Filing History:
Years Active: 2019-2025
Title: Innovations by Alexander Friebe
Introduction
Alexander Friebe is a notable inventor based in Recklinghausen, Germany. He has made significant contributions to the field of medical technology, particularly in the area of blood treatment systems. With a total of 3 patents to his name, Friebe's work focuses on enhancing the efficiency and safety of hemodialysis and related procedures.
Latest Patents
Friebe's latest patents include an air elimination device for extracorporeal blood treatment. This innovative blood circulation system is designed to conduct blood from a patient to a dialysis unit and back, incorporating a dynamic bubble trap and an air separator to ensure optimal performance. Another significant patent is for a hemocompatible adsorber that separates protein-bound uremic toxins during hemodialysis. This device utilizes a polymer based on cyclic oligosaccharides to effectively adsorb harmful substances from the blood. Additionally, he has developed a device for hemodiafiltration that integrates a hemocompatible adsorber within the hemodialyzer, further improving the purification process.
Career Highlights
Friebe is currently employed at B. Braun Avitum AG, a leading company in the medical technology sector. His work there has been instrumental in advancing technologies that improve patient outcomes in dialysis treatments. His innovative designs and patents reflect his commitment to enhancing medical devices and procedures.
Collaborations
Throughout his career, Friebe has collaborated with several professionals in the field, including Angela Baier-Goschütz and Roland Napierala. These collaborations have contributed to the development of cutting-edge technologies in blood treatment.
Conclusion
Alexander Friebe's contributions to medical technology through his patents and innovations have made a significant impact on the field of hemodialysis. His work continues to pave the way for advancements that improve patient care and treatment efficacy.