This inventor holds 3 USPTO granted patents. Top assignee: Columbia University. Active years: 2000-2002.
Company Filing History:
Years Active: 2000-2002
Title: Van C Mow: Innovator in Prosthetic Technology
Introduction
Van C Mow is a distinguished inventor based in Briarcliff Manor, NY (US). He has made significant contributions to the field of prosthetics, holding a total of 3 patents. His work focuses on creating anatomically accurate solutions that enhance the quality of life for patients requiring joint prostheses.
Latest Patents
Mow's latest patents include an "Anatomically Correct Prosthesis and Method and Apparatus for Manufacturing Prosthesis." This invention describes a joint prosthesis designed for attachment to a patient's bone, featuring an anchor with a head surface and a stem. The head surface is crafted to have an anatomically accurate shape, ensuring better integration with the human body. Another notable patent is "Three Dimensional Multibody Modeling of Anatomical Joints." This invention outlines a method for generating a three-dimensional representation of anatomical joints, which includes multiple movable bodies and links. The process involves inputting anatomically representative data, selecting link types and characteristics, generating equilibrium conditions, and displaying a three-dimensional representation of the joint.
Career Highlights
Van C Mow is affiliated with Columbia University, where he continues to advance research in prosthetic technology. His innovative work has garnered attention in both academic and medical communities, contributing to the development of more effective prosthetic solutions.
Collaborations
Mow has collaborated with notable colleagues such as Robert J Pawluk and Gerard A Ateshian. These partnerships have further enriched his research and development efforts in the field of prosthetics.
Conclusion
Van C Mow's contributions to prosthetic technology exemplify the impact of innovation in healthcare. His patents reflect a commitment to improving patient outcomes through advanced engineering and design.
