This inventor holds 2 USPTO granted patents and 1 EPO patent. Top assignee: Barbara Ann Karmanos Cancer Institute. Active years: 2005-2007.
Company Filing History:
Years Active: 2005-2007
Title: The Innovations of Robert Henry Barter
Introduction
Robert Henry Barter is an accomplished inventor based in Oakland, CA. He holds 2 patents that showcase his contributions to the field of medical technology. His work primarily focuses on advanced imaging techniques that enhance the evaluation of tissue.
Latest Patents
Barter's latest patents include a "Computerized Ultrasound Risk Evaluation System." This invention provides a method and system for examining tissue by maintaining it in a position suitable for insonification with a variety of pulsed spherical or cylindrical acoustic waves. The acoustic waves scatter upon interaction with the tissue, allowing for the reception of scattered acoustic radiation, which includes a mix of reflected and transmitted waves. A representation of the tissue is then derived from this received data. Another significant patent is for "Methods and Systems for Using Reference Images in Acoustic Image Processing." This method involves insonifying a field that includes tissue and registration fiducials, receiving scattered acoustic information, and deriving a representation of the field from the received acoustic radiation.
Career Highlights
Throughout his career, Barter has worked with notable organizations such as the Barbara Ann Karmanos Cancer Institute and Delphinus Medical Technologies, Inc. His contributions to these institutions have been instrumental in advancing medical imaging technologies.
Collaborations
Barter has collaborated with esteemed colleagues, including Thomas L. Moore and Nebojsa Duric. Their combined expertise has furthered the development of innovative solutions in the field of ultrasound imaging.
Conclusion
Robert Henry Barter's work exemplifies the impact of innovation in medical technology. His patents reflect a commitment to improving tissue evaluation methods, which can significantly enhance diagnostic capabilities.