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US Patent 11589880 System and methods for removing undesirable material within a circulatory system utilizing during a surgical procedure

Patent 11589880 was granted and assigned to AngioDynamics on February, 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
AngioDynamics
AngioDynamics
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Current Assignee
AngioDynamics
AngioDynamics
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Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
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Patent Number
115898800
Date of Patent
February 28, 2023
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Patent Application Number
164585290
Date Filed
July 1, 2019
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Patent Citations
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US Patent 10098651 Devices and methods for treating vascular occlusion
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US Patent 10201360 Devices and methods for removal of acute blockages from blood vessels
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US Patent 10238406 Methods and apparatus for treating embolism
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US Patent 10265086 System for removing a clot from a blood vessel
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US Patent 10278717 Clot retrieval device for removing clot from a blood vessel
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US Patent 10285720 Clot retrieval system for removing occlusive clot from a blood vessel
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US Patent 10292722 Clot retrieval device for removing clot from a blood vessel
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US Patent 10292723 Clot engagement and removal system
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Patent Primary Examiner
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Leslie R Deak
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CPC Code
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A61B 2017/22079
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A61M 1/3621
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A61M 2202/0021
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A61M 2202/005
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A61M 1/60
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A61M 1/741
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A61B 17/22
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A method for capturing dislodged vegetative growth during a surgical procedure is provided. The method includes maneuvering, into a circulatory system, a first cannula having a distal end and an opposing proximal end, such that the first cannula is positioned to capture the vegetative growth en bloc. A second cannula is positioned in fluid communication with the first cannula, such that a distal end of the second cannula is situated in spaced relation to the distal end of the first cannula. A suction force is provided through the distal end of the first cannula so as to capture the vegetative growth. Fluid removed by the suction force is reinfused through the distal end of the second cannula. Subsequent to becoming dislodged, the vegetative growth is captured by the first cannula. A method for capturing a vegetative growth during removal of a pacemaker lead is also provided.

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