Company Filing History:
Years Active: 1977-1993
Title: **Milton S. Isaacson: Pioneer in Blood Pump Technology**
Introduction
Milton S. Isaacson, an accomplished inventor based in Dayton, Ohio, has made significant contributions to the field of biomedical engineering. With a remarkable portfolio of 13 patents, his innovations primarily focus on advanced blood pump technologies that aim to enhance patient care and treatment efficacy.
Latest Patents
Among Isaacson's latest patents are the **Axial Flow Blood Pump with Hydrodynamically Suspended Rotor** and the **Split Stator for Motor/Blood Pump**. The axial flow blood pump is designed for both intracorporeal and extracorporeal use, effectively pumping blood axially through a cylindrical conduit within a patient’s bloodstream. This innovative pump integrates a magnetic rotor, suspended by hydrodynamic bearings formed by blood flow, which results in a reduced size while eliminating the need for traditional radial bearings.
In addition, the split stator design allows for a reusable stator to be conveniently connected or disconnected from a disposable pump housing. By utilizing this mechanism, the motor controller can actuate the stator halves to drive the rotor, ensuring a continuous and efficient blood flow during medical procedures such as those involving a heart/lung machine.
Career Highlights
Throughout his career, Milton Isaacson has been affiliated with notable companies, including Nu-Tech Industries, Inc. and Xerox Corporation. His work in these organizations has underscored his commitment to advancing technology in the biomedical field, particularly within the realm of blood pump systems.
Collaborations
Isaacson's innovative journey has also been marked by fruitful collaborations with esteemed coworkers, including Anthony P. Lioi and John H. Knight. Together, they have contributed to groundbreaking research and development initiatives, driving forward the possibilities in medical technology.
Conclusion
Milton S. Isaacson's impressive array of patents and his contributions to biomedical engineering exemplify his dedication to enhancing patient outcomes through innovative technological solutions. His work not only addresses critical needs in medical devices but also paves the way for future advancements in life-saving equipment.