This inventor holds 1 USPTO granted patent. Top assignee: University of Washington. Active years: 2010.
Company Filing History:
Years Active: 2010
Title: Innovations by Wendy McDougald
Introduction
Wendy McDougald is a notable inventor based in Mercer Island, WA (US). She has made significant contributions to the field of medical imaging, particularly in the calibration of PET scanners. Her innovative approach has the potential to enhance the accuracy and efficiency of these vital diagnostic tools.
Latest Patents
Wendy McDougald holds 1 patent for her invention titled "Calibration method and system for PET scanners." This patent describes a method, system, and kit for calibrating a PET scanner. The invention involves providing a first aliquot containing a quantity of a radionuclide dispersed in a solid matrix material, which is sized and configured for measurement by a conventional dose calibrator. A second aliquot is also provided, which is designed to be scanned in a PET scanner. The radionuclide/matrix materials in both aliquots are derived from the same batch, ensuring they have the same radioactivity density. The method allows for accurate calibration of the PET scanner by correlating the intensity of the scanned image with the known radioactivity measured by the dose calibrator.
Career Highlights
Wendy McDougald has established herself as a key figure in her field through her innovative work at the University of Washington. Her research focuses on improving medical imaging technologies, which are crucial for accurate diagnosis and treatment planning in healthcare.
Collaborations
Wendy has collaborated with esteemed colleagues such as Paul Eugene Kinahan and Keith C Allberg. These partnerships have furthered her research and contributed to advancements in the calibration of PET scanners.
Conclusion
Wendy McDougald's contributions to the field of medical imaging through her innovative patent demonstrate her commitment to enhancing healthcare technology. Her work is a testament to the importance of innovation in improving diagnostic accuracy and patient outcomes.
