Company Filing History:
Years Active: 2020-2022
Title: Maureen Petterson: Innovator in Charged Particle Detection
Introduction
Maureen Petterson is a distinguished inventor based in Somerville, MA (US). She has made significant contributions to the field of medical imaging and cancer therapy through her innovative inventions. With a total of 4 patents, her work focuses on utilizing charged particles for advanced imaging techniques.
Latest Patents
One of her latest patents is the "Multi-color charged particle detector apparatus and method of use thereof." This invention involves a method and apparatus for using a multi-layer multi-color scintillation-based detector element to image tumors in patients. The process includes transmitting positively charged particles through the patient and detecting secondary photons from different scintillation materials to generate an image based on residual energies.
Another notable patent is the "Relativistic energy compensating cancer therapy apparatus and method of use thereof." This invention outlines a method for imaging tumors using positively charged particles accelerated to relativistic energies. The process involves transporting these particles through a beam transport system and generating computed tomography images based on the residual relativistic velocity of the particles.
Career Highlights
Maureen Petterson has established herself as a leading figure in her field. Her innovative approaches to medical imaging and cancer therapy have garnered attention and recognition. She continues to push the boundaries of technology in healthcare, aiming to improve diagnostic methods and treatment options for patients.
Collaborations
Maureen collaborates with William Davis Lee, contributing to the advancement of their shared goals in medical technology. Their partnership exemplifies the importance of teamwork in driving innovation.
Conclusion
Maureen Petterson's work in charged particle detection and imaging represents a significant advancement in medical technology. Her inventions have the potential to enhance cancer diagnosis and treatment, showcasing her dedication to improving patient care.