Location History:
- Borgerhout, BE (2015)
- Rotterdam, NL (2019)
Company Filing History:
Years Active: 2015-2019
Title: Innovations by Toon Huysmans in Orthosis and Surface Mapping
Introduction
Toon Huysmans, an innovative inventor based in Rotterdam, Netherlands, has made significant contributions to the fields of orthotics and surface mapping. With two patents to his name, his work showcases a blend of advanced technology and practical application, benefiting various medical and engineering sectors.
Latest Patents
One of Huysmans' notable patents is a method for creating an orthosis for a body part. This method includes several steps: measuring the body part to obtain crucial data, correlating that data with a predetermined statistical shape model, digitally forming an orthosis model based on the calculated parameters, and ultimately producing the orthosis using CAD/CAM technology. This innovative approach enhances the customization and effectiveness of orthoses for patients.
His second patent addresses the parameterization of tubular surfaces to a cylinder, providing methods for cylindrical surface parameterization, such as colon flattening. This technique modifies the length of the cylinder to reduce distortion during parameterization, which is essential in various engineering applications.
Career Highlights
Throughout his career, Toon Huysmans has collaborated with esteemed institutions such as the University of Antwerp and IMinds Vzw, where he has honed his skills and applied his inventions. His contributions have fostered advancements in these institutions, particularly in the intersection of technology and healthcare.
Collaborations
Huysmans has worked alongside notable colleagues, including Jan Sijbers and Jan Jozef Maria Sijbers. Their collaborations have enriched the research and development environment, enabling cutting-edge innovations in both orthotics and parameterization technologies.
Conclusion
Toon Huysmans exemplifies the spirit of innovation through his patents and collaborative efforts. His advancements in orthosis creation and cylindrical surface parameterization demonstrate a commitment to enhancing user-specific solutions in medicine and engineering. As his work continues to evolve, it holds promising potential for future breakthroughs in these fields.