This inventor holds 9 USPTO granted patents, plus 4 CIPO patents and 2 EPO patents. Top assignee: The State University of New York. Active years: 1997-2018.
Location History:
- Buffalo, NY (US) (1997 - 2009)
- West Seneca, NY (US) (2009 - 2013)
- Mayville, NY (US) (2018)
Company Filing History:
Years Active: 1997-2018
Title: Mark S Dowhy: Innovator in Breathing-Gas Delivery Systems
Introduction
Mark S Dowhy is a notable inventor based in Buffalo, NY (US), recognized for his contributions to the field of breathing-gas delivery systems. With a total of 9 patents to his name, Dowhy has made significant advancements in medical technology, particularly in ventilator systems.
Latest Patents
One of Dowhy's latest patents is a "Breathing-gas delivery and sharing system and method." This innovative device, system, and method are designed to isolate a ventilator from one or more patients. The system allows for the delivery conditions of gas from a ventilator to be adjusted, enabling the breathing-gas to be delivered to patients under varying conditions. The isolation device features a housing and a movable partition, which separates the patient side from the actuating side. Additionally, the device includes an inlet pressure regulator and an exhaust pressure regulator, which can modify the delivery conditions, such as pressure and volume, of the breathing-gas provided to patients.
Career Highlights
Mark S Dowhy is affiliated with the State University of New York, where he continues to innovate and contribute to research in medical technology. His work has been instrumental in enhancing the safety and effectiveness of ventilator systems, particularly in critical care settings.
Collaborations
Dowhy has collaborated with notable colleagues, including Bradley P Fuhrman and Lynn J Hernan, who have contributed to his research and development efforts in the field.
Conclusion
Mark S Dowhy's innovative work in breathing-gas delivery systems exemplifies the impact of dedicated inventors in advancing medical technology. His contributions continue to shape the future of patient care and respiratory support.
