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US Patent 11648391 Blood pump

Patent 11648391 was granted and assigned to Magenta Medical on May, 2023 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent
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Patent attributes

Patent Applicant
Magenta Medical
Magenta Medical
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Current Assignee
Magenta Medical
Magenta Medical
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
116483910
Patent Inventor Names
Daniel Glozman0
Yosi Tuval0
Ehud Schwammenthal0
Date of Patent
May 16, 2023
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Patent Application Number
168594920
Date Filed
April 27, 2020
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Patent Citations
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US Patent 10179197 Catheter pump with a pump head for insertion into the aorta
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US Patent 10196899 Radially compressible and expandable rotor for a pump having an impeller blade
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US Patent 10207037 Cannula assembly
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US Patent 10208763 Fluid pump having at least one impeller blade and a support device
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US Patent 10215187 Expandable impeller pump
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US Patent 10231838 Venous valve prosthesis
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US Patent 10245363 Catheter-based pump for improving organ function
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US Patent 10299918 Vena-caval device
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...
Patent Citations Received
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US Patent 12005248 Rotor bearing system
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US Patent 11944805 Pump for delivering a fluid and method of manufacturing a pump
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US Patent 11804767 Magnetic coupling element with a magnetic bearing function
Patent Primary Examiner
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Joseph M Dietrich
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CPC Code
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A61B 17/12136
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A61M 2230/30
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A61M 60/833
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A61M 60/135
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A61M 60/216
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A61M 60/857
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A61M 2205/505
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A61M 2205/52
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...

Apparatus and methods are described including a blood pump that includes a catheter, a first impeller disposed on the catheter, and a second impeller disposed on the catheter, proximally to the first impeller. A control unit drives the first and second impellers to pump blood of a subject, by driving the first and second impellers to rotate. The blood pumps is configured such that (a) the first and second impellers are shaped differently from each other when the first and second impellers are in non-radially-constrained configurations, (b) the first and second impellers are sized differently from each other when the first and second impellers are in non-radially-constrained configurations, and/or (c) the first and second impellers are driven by the control unit to rotate under respective rotation conditions that are different from each other. Other applications are also described.

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