This inventor holds 1 USPTO granted patent and 1 EPO patent. Top assignee: Depuy Mitek, Inc.. Active years: 2013.
Company Filing History:
Years Active: 2013
Title: Innovations by Elizabeth Heneberry in Surgical Cutting Technology
Introduction
Elizabeth Heneberry is an accomplished inventor based in Westwood, MA (US). She has made significant contributions to the field of surgical technology, particularly in the area of cutting hard materials during surgical procedures. Her innovative approach has the potential to enhance surgical efficiency and precision.
Latest Patents
Heneberry holds a patent for an "Abrasive Cutting System and Method." This high-pressure fluid jet system is designed to cut hard materials effectively during surgical procedures. The system delivers abrasive solid particles along with a high-pressure fluid, making the cutting process more efficient. The patent outlines a method for using a surgical tool that delivers a pressurized stream of fluid through a nozzle, allowing for precise cutting of hard materials within a patient. The fluid used in this process can include a delivery liquid containing abrasive solid particles formed from organic materials.
Career Highlights
Elizabeth Heneberry is associated with DePuy Mitek, Inc., where she applies her expertise in developing advanced surgical tools. Her work focuses on improving surgical techniques and outcomes through innovative technologies. Heneberry's contributions have been recognized within the medical community, showcasing her commitment to enhancing patient care.
Collaborations
Throughout her career, Heneberry has collaborated with notable colleagues, including Mehmet Ziya Sengun and Ian D McRury. These partnerships have fostered a collaborative environment that encourages innovation and the sharing of ideas in the field of surgical technology.
Conclusion
Elizabeth Heneberry's innovative work in surgical cutting technology exemplifies her dedication to improving surgical procedures. Her patent for an abrasive cutting system highlights her contributions to the medical field, showcasing the potential for enhanced surgical efficiency and patient outcomes.
