This inventor holds 1 USPTO granted patent. Top assignee: Los Alamos National Security, LLC. Active years: 2009.
Company Filing History:
Years Active: 2009
Title: John C. Mosher: Innovator in Neural Imaging Techniques
Introduction
John C. Mosher is a prominent inventor based in Los Alamos, NM (US). He has made significant contributions to the field of neural imaging, particularly through his innovative patent that focuses on the direct imaging of neural currents. His work has implications for understanding brain activity and its correlation with various neural processes.
Latest Patents
Mosher holds a patent titled "Direct imaging of neural currents using ultra-low field magnetic resonance techniques." This patent describes a method that utilizes resonant interactions to directly and tomographically image neural activity in the human brain using magnetic resonance imaging (MRI) techniques at ultra-low field (ULF). The approach is sensitive to magnetic field distributions local to the spin population in the cortex at the Larmor frequency of the measurement field. By manipulating the Larmor frequency, Mosher envisions using ULF-DNI to image the frequency distribution of local fields in the cortex. This method allows for non-invasive exploration of the correlation between local fields induced by neural activity and more distant measures of brain activity such as MEG and EEG.
Career Highlights
John C. Mosher is associated with Los Alamos National Security, LLC, where he continues to advance research in neural imaging. His work has garnered attention for its innovative approach and potential applications in neuroscience.
Collaborations
Mosher has collaborated with notable colleagues, including Michelle A. Espy and Robert Henry Kraus, Jr. These collaborations have contributed to the development and refinement of his research in neural imaging techniques.
Conclusion
John C. Mosher's contributions to the field of neural imaging through his innovative patent highlight the importance of advanced techniques in understanding brain activity. His work continues to pave the way for future research in neuroscience and medical imaging.
