This inventor holds 2 USPTO granted patents. Top assignee: Mcw Research Foundation, Inc.. Active years: 1994-1998.
Company Filing History:
Years Active: 1994-1998
Title: John F Neitz: Innovator in Vision Disorders and Medical Imaging
Introduction
John F Neitz is a prominent inventor based in New Berlin, WI (US), known for his significant contributions to the field of vision disorders and medical imaging. With a total of 2 patents, Neitz has made strides in understanding and addressing cone-photoreceptor-based vision disorders.
Latest Patents
Neitz's latest patents include innovative methods and systems that enhance medical diagnostics. One of his notable inventions is the "Detection of cone-photoreceptor-based vision disorders," which discloses a method for examining the amino acid sequences of a patient's L or M photopigments. This method correlates specific amino acid combinations with vision disorders, providing a valuable tool for early detection and intervention. Another significant patent is the "Patient video system for medical imaging equipment." This system allows patients positioned in the bore of an MRI scanner to view a remote target area through a scope while scans are performed. The liquid crystal display system produces a color image at the target area, which can be manipulated with a computer to conduct MRI brain function experiments or tests.
Career Highlights
John F Neitz is associated with the Mcw Research Foundation, Inc., where he continues to develop and refine his innovative ideas. His work has had a profound impact on the medical community, particularly in the areas of vision science and imaging technology.
Collaborations
Neitz has collaborated with notable colleagues, including Edgar A DeYoe and Maureen E Neitz, contributing to a rich environment of research and innovation.
Conclusion
John F Neitz's contributions to the fields of vision disorders and medical imaging exemplify the spirit of innovation. His patents not only advance scientific understanding but also enhance patient care through improved diagnostic methods.