This inventor holds 3 USPTO granted patents. Top assignee: Terumo Bct, Inc.. Active years: 2012-2018.
Company Filing History:
Years Active: 2012-2018
Title: Innovations by John R. Linder
Introduction
John R. Linder is a notable inventor based in Morrison, Colorado, who has made significant contributions to the field of blood processing technology. With a total of three patents to his name, Linder's work focuses on improving the efficiency and effectiveness of blood separation systems.
Latest Patents
Linder's latest patents include a "System for blood separation with replacement fluid apparatus and method." This innovative method allows for the addition of replacement fluid in a centrifugal blood processing system without the need for a dedicated peristaltic pump. The disposable blood processing set designed for this method features a hermetically sealed set of blood bags, connecting tubes, and a replacement fluid line that connects directly to a return reservoir.
Another significant patent is the "Blood processing apparatus with robust automated process control." This invention involves a centrifuge equipped with a camera that observes fluid flow and a controller that manages this flow. The system utilizes advanced image processing techniques to detect the location of an interface, enhancing the precision of blood separation.
Career Highlights
John R. Linder is currently employed at Terumo BCT, Inc., where he continues to develop innovative solutions in blood processing technology. His work has been instrumental in advancing the capabilities of medical devices used in transfusion and blood management.
Collaborations
Linder has collaborated with notable colleagues, including William Sweat and Christopher Fletcher, to further enhance the development of blood processing technologies.
Conclusion
John R. Linder's contributions to blood processing technology through his innovative patents demonstrate his commitment to improving medical practices. His work continues to impact the field positively, making significant strides in the efficiency of blood separation systems.
