Company Filing History:
Years Active: 2018-2023
Title: Greg Lentner: Innovator in Spinal Implant Technology
Introduction
Greg Lentner is a notable inventor based in Maumee, Ohio, with a focus on advancements in spinal implant technology. He holds a total of six patents, showcasing his commitment to innovation in the medical field. His work has significantly contributed to improving spinal surgery techniques and patient outcomes.
Latest Patents
Among his latest patents is the "Adjustable Trial for Sizing a Spinal Implant." This invention features an adjustable trial that allows for precise spinal implant sizing. The design includes a first and second plate that can be adjusted between zero and degrees, utilizing continuously sloped edges that interface with a positioning band. Protrusions attached to each plate and the positioning band enable rotation to change the angle of the plates, with a tool marked to indicate the angle of movement.
Another significant patent is the "Low Profile Rod-to-Rod Coupler." This device is a low-profile cross-connector formed from an outer bar member with a receptacle at one end and a coupling mechanism for a spinal rod at the other. An inner bar with a unidirectional insertion end can be slidably inserted into the receptacle, allowing for secure coupling to a second spinal rod. The design includes a locking member that facilitates movement and engagement within the receptacle.
Career Highlights
Greg Lentner has worked with several companies, including Hammill Medical LLC and Ortho Inventions, LLC. His experience in these organizations has allowed him to develop and refine his innovative ideas in spinal implant technology.
Collaborations
One of his notable collaborators is John E Hammill, Sr. Their partnership has contributed to the development of advanced medical devices that enhance surgical procedures.
Conclusion
Greg Lentner's contributions to spinal implant technology through his patents and collaborations highlight his role as an innovator in the medical field. His work continues to influence the design and functionality of spinal implants, ultimately benefiting patients and healthcare professionals alike.