This inventor holds 2 USPTO granted patents. Top assignee: Commissariat a L'energie Atomique Et Aux Energies Alternatives. Active years: 1999-2000.
Location History:
- Grenoble, FR (1999)
- Lyons, FR (2000)
Company Filing History:
Years Active: 1999-2000
Title: Jerome De Murcia: Innovator in Image Reconstruction Technologies
Introduction
Jerome De Murcia is a notable inventor based in Lyons, France. He has made significant contributions to the field of image reconstruction, particularly in medical imaging technologies. With a total of 2 patents, his work focuses on enhancing the accuracy and efficiency of imaging processes.
Latest Patents
Jerome De Murcia's latest patents include a process for producing a restored sequence of images of a moving object. This invention aims to obtain a series of restored images from original measurements of a mobile object, such as a beating heart. The process minimizes an error function that considers the adequation between the restored images and the measurements, as well as the movement of the object over time. Another significant patent is for the reconstruction of three-dimensional images of a mobile object, such as the heart. This tomographic process utilizes sets of measurements from different states of the object to create approximate images, gradually refining them by incorporating information from previous measurements.
Career Highlights
Jerome De Murcia is associated with the Commissariat à l'Énergie Atomique, where he applies his expertise in image processing and reconstruction. His innovative approaches have the potential to revolutionize how medical imaging is conducted, particularly in dynamic scenarios.
Collaborations
One of his notable collaborators is Pierre Grangeat, with whom he has worked on various projects related to image reconstruction technologies.
Conclusion
Jerome De Murcia's contributions to the field of image reconstruction highlight his innovative spirit and dedication to advancing medical imaging technologies. His patents reflect a commitment to improving the accuracy and effectiveness of imaging processes, which can have a profound impact on medical diagnostics and treatment.
