This inventor holds 1 USPTO granted patent and 1 published patent application. Top assignee: California Institute of Technology. Active years: 2019.
Company Filing History:
Years Active: 2019
Title: Innovations of Trevor M Fowler in Neural Probes
Introduction
Trevor M Fowler is an accomplished inventor based in Pasadena, CA. He has made significant contributions to the field of biomedical engineering, particularly in the development of neural probes for light stimulation of biological tissues. His innovative work has the potential to advance medical treatments and research in neuroscience.
Latest Patents
Trevor M Fowler holds 1 patent for his invention titled "Implantable, highly collimated light-emitters for biological applications." This patent describes a neural probe designed for light stimulation of tissue. The probe features a base with light supplying circuitry and one or more elongated microsized shanks extending from the base. Each shank contains waveguides that are optically connected to the light supplying circuitry, allowing for precise light emission through diffraction grating couplers. This technology enables targeted stimulation of tissues, which could have significant implications for medical therapies.
Career Highlights
Trevor M Fowler is affiliated with the California Institute of Technology, where he continues to push the boundaries of innovation in his field. His work is characterized by a commitment to enhancing the capabilities of neural probes, which are crucial for advancing our understanding of brain functions and developing new treatment methods.
Collaborations
Throughout his career, Trevor has collaborated with notable colleagues, including Laurent Moreaux and Michael Roukes. These partnerships have fostered a collaborative environment that encourages the exchange of ideas and expertise, further enhancing the impact of their research.
Conclusion
Trevor M Fowler's contributions to the field of neural probes exemplify the intersection of innovation and medical science. His patented technology holds promise for future advancements in tissue stimulation and neuroscience research.
