This inventor holds 1 USPTO granted patent. Top assignee: Becton Dickinson and Company Limited. Active years: 2014.
Company Filing History:
Years Active: 2014
Title: Innovations by Anders Bengt Erik Nilsson
Introduction
Anders Bengt Erik Nilsson is a notable inventor based in Helsingborg, Sweden. He has made significant contributions to the field of medical devices, particularly in the area of vascular access. His innovative approach aims to enhance safety and reduce contamination risks associated with hypodermic needles.
Latest Patents
One of Nilsson's key patents is focused on blood exposure prevention in vascular access devices. This patent describes an apparatus designed to prevent blood exposure or contamination upon the withdrawal of a hypodermic needle. The apparatus includes a needle with a tip and a shield that is configured to at least partially entrap the needle tip during withdrawal. Additionally, it features a blood stabilizing material that ensures blood carried by the needle does not escape the apparatus. The design may also incorporate a protective device and a housing that shields the needle tip upon withdrawal, enhancing safety for both patients and healthcare providers.
Career Highlights
Anders Nilsson is associated with Becton Dickinson and Company Limited, a leading global medical technology company. His work at Becton Dickinson has allowed him to focus on developing innovative solutions that address critical healthcare challenges. His patent reflects his commitment to improving patient safety and advancing medical technology.
Collaborations
Throughout his career, Nilsson has collaborated with talented professionals in the field. Notable coworkers include Karl Johan Mårten Söderholm and Johan Fredrik Thörne, who have contributed to the development of innovative medical devices alongside him.
Conclusion
Anders Bengt Erik Nilsson's contributions to the field of medical devices, particularly through his patent on blood exposure prevention, highlight his dedication to enhancing safety in healthcare. His work continues to influence the design and functionality of vascular access devices, making a significant impact on patient care.
