This inventor holds 1 USPTO granted patent. Top assignee: The University of North Carolina at Charlotte. Active years: 2026.
Company Filing History:
Years Active: 2026
Title: Innovations in Laser Lithotripsy by Nicholas C Giglio
Introduction
Nicholas C Giglio is an accomplished inventor based in Waxhaw, NC (US). He has made significant contributions to the field of medical technology, particularly in the treatment of urinary tract stone disease. His innovative approach focuses on enhancing the effectiveness of laser lithotripsy, a minimally invasive procedure used to treat kidney stones.
Latest Patents
Nicholas C Giglio holds a patent for "Methods for surfactant enhanced laser-induced vapor bubbles for use in laser lithotripsy." This patent addresses a common and costly health issue that affects approximately 10% of the United States population. The method involves the use of a surfactant composition that is introduced into the ureter and/or kidney during the laser lithotripsy procedure. This technique allows for the formation of larger and more durable vapor bubbles, which enhances the ablation of urinary tract stones.
Career Highlights
Giglio is affiliated with the University of North Carolina at Charlotte, where he continues to advance research in medical technologies. His work has the potential to improve patient outcomes and reduce the costs associated with treating urinary tract stones. With a focus on innovation, he has dedicated his career to developing more effective medical procedures.
Collaborations
One of his notable collaborators is Thomas C Hutchens. Together, they have worked on advancing the techniques and methodologies related to laser lithotripsy, contributing to the field of urology.
Conclusion
Nicholas C Giglio's innovative work in laser lithotripsy exemplifies the impact of research and development in medical technology. His patent for surfactant enhanced laser-induced vapor bubbles represents a significant advancement in the treatment of urinary tract stones. Through his contributions, he continues to shape the future of minimally invasive medical procedures.