This inventor holds 1 USPTO granted patent and 1 published patent application and 1 EPO patent. Top assignee: Universitat Basel Vizerektorat Forschung. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Innovations of Raphael Guzman in Neural Implant Technology
Introduction
Raphael Guzman is an innovative inventor based in Allschwil, Switzerland. He has made significant contributions to the field of neural implants, particularly through his groundbreaking patent that focuses on a cellulose-based thin film technology. His work aims to enhance the safety and effectiveness of neural prostheses and tissue regeneration.
Latest Patents
Guzman's most notable patent is a neural implant based on a cellulose thin film and a corresponding fabrication process. This novel ultra-thin neural implant features an array of electrodes, allowing for precise electrical stimulation and recording of nerve signals. The use of cellulose as the base material ensures that the implant can be safely handled during micro-surgery, despite its high softness and conformability. The robustness of the implant is enhanced by a woven fabric integrated into the cellulose carrier thin film. This innovation opens up numerous applications, including electro-stimulated regeneration of neural tissue.
Career Highlights
Raphael Guzman is affiliated with the University of Basel, specifically within the Vice Rectorate for Research. His work in this esteemed institution has allowed him to collaborate with other leading researchers in the field. Guzman's dedication to advancing neural implant technology has positioned him as a key figure in this area of research.
Collaborations
Guzman has worked alongside notable colleagues such as Bekim Osmani and Alois Hopf. Their collaborative efforts have contributed to the development of innovative solutions in neural technology.
Conclusion
Raphael Guzman's contributions to neural implant technology through his cellulose-based innovations represent a significant advancement in the field. His work not only enhances the safety and effectiveness of neural prostheses but also paves the way for future research and applications in neural tissue regeneration.