This inventor holds 1 USPTO granted patent. Top assignee: Biomat. Active years: 1998.
Company Filing History:
Years Active: 1998
Title: Christian Maresca: Innovator in Osteosynthesis Implant Technology
Introduction
Christian Maresca is a notable inventor based in Marseilles, France. She has made significant contributions to the field of medical devices, particularly in the area of osteosynthesis implants. Her innovative approach has led to the development of a unique implant designed to enhance the healing process of bone fractures.
Latest Patents
Maresca holds a patent for an "Upper femoral epiphysis osteosynthesis implant." This invention features a longitudinal revascularization conduit formed within the body of the implant. The conduit is designed to be blind at the distal end, which is implanted in one bone fragment, such as the trochanter. It opens via transverse orifices at the proximal end to be implanted in another bone fragment, like the femoral head. The implant includes at least one self-tapping section at the distal end to secure it within the bone. Additionally, an anchor end-piece can be slidably mounted on the body, equipped with a damping device that maintains compression at the fracture site. The distal end may also be affixed to a cylindrical portion of a plate secured on the diaphysis of the femur.
Career Highlights
Christian Maresca is currently associated with Biomat, a company focused on advancing biomaterials and medical devices. Her work has been instrumental in developing innovative solutions that address complex medical challenges.
Collaborations
Maresca collaborates with esteemed colleagues, including Michel Lahille and Philippe Cottin. Their combined expertise contributes to the advancement of medical technology and the development of effective treatment solutions.
Conclusion
Christian Maresca's contributions to the field of osteosynthesis implants exemplify her commitment to innovation in medical technology. Her patented invention showcases her ability to address critical needs in bone healing and fracture management.