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US Patent 12078192 Non-occluding intra vascular blood pump providing reduced hemolysis

Patent 12078192 was granted and assigned to Procyrion, Inc. on September, 2024 by the United States Patent and Trademark Office.

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Is a
Patent
Patent
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Patent attributes

Patent Applicant
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Procyrion, Inc.
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Current Assignee
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Procyrion, Inc.
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
120781920
Patent Inventor Names
Jason J. Heuring0
Tim Kaufman0
Sascha Gross-Hardt0
Benjamin A. Hertzog0
William L. Clifton0
Date of Patent
September 3, 2024
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Patent Application Number
175889910
Date Filed
January 31, 2022
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Patent Citations
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US Patent 7125376 Implantable heart assist system and method of applying same
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US Patent 7189260 Ventricular assist system secondary impeller
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US Patent 7374531 Long term ambulatory intra-aortic balloon pump with three dimensional tortuous shape
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US Patent 7381034 Hydrodynamic pressure bearing pump with a shaft and a bearing having hydrodynamic pressure generating grooves
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US Patent 7393181 Expandable impeller pump
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US Patent 7396327 Blood pump system and method of operation
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US Patent 7473220 Surgical port device
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US Patent 7534258 Intravascular stent
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...
Patent Primary Examiner
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Kenneth J Hansen
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CPC Code
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A61M 60/205
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A61M 60/237
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F04D 3/005
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F04D 3/02
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A61M 60/806
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F04D 29/181
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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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