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US Patent 11235138 Non-occluding intravascular blood pump providing reduced hemolysis

Patent 11235138 was granted and assigned to Procyrion, Inc. on February, 2022 by the United States Patent and Trademark Office.

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Is a
Patent
Patent

Patent attributes

Current Assignee
‌
Procyrion, Inc.
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
11235138
Patent Inventor Names
Benjamin A. Hertzog0
Sascha Gross-Hardt0
Tim Kaufmann0
William L. Clifton0
Jason J. Heuring0
Date of Patent
February 1, 2022
Patent Application Number
15276590
Date Filed
September 26, 2016
Patent Citations
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US Patent 10413648 Method and apparatus for long-term assisting a left ventricle to pump blood
0
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US Patent 10111994 Blood pump with separate mixed-flow and axial-flow impeller stages and multi-stage stators
0
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US Patent 10443738 Magnetic fluid seal for implantable devices
0
Patent Citations Received
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US Patent 12133976 Percutaneous circulatory support device facilitating reduced hemolysis class
0
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US Patent 11779751 Blood pumps
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US Patent 11804767 Magnetic coupling element with a magnetic bearing function
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US Patent 12005248 Rotor bearing system
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US Patent 12017060 Support structures for intravascular blood pumps
0
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US Patent 12064615 Axial-flow pump for a ventricular assist device and method for producing an axial-flow pump for a ventricular assist device
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US Patent 12076549 Feed line for a pump unit of a cardiac assistance system, cardiac assistance system and method for producing a feed line for a pump unit of a cardiac assistance system
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US Patent 12078192 Non-occluding intra vascular blood pump providing reduced hemolysis
0
...
Patent Primary Examiner
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Ninh H. Nguyen
Patent abstract

A non-occluding intravascular pump comprises a shroud providing an inlet for incoming blood flow and an outlet for outgoing blood flow, wherein the shroud is a cylindrical housing; an impeller positioned within shroud, wherein a central axis of the shroud and impeller are shared; a motor coupled to the impeller, wherein the motor rotates the impeller to causes blood to be drawn through the inlet and output to the outlet, and the motor is centrally disposed and shares the central axis with the shroud and the impeller; and a plurality of pillars coupling the motor to the shroud, wherein the pillars secure the shroud in close proximity to the impeller. Various design features of the pump may be optimized to reduce hemolysis, such as, but not limited to, inlet length, impeller design, pillar angle, and outlet design.

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