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US Patent 11832836 Electrically enhanced retrieval of material from vessel lumens

Patent 11832836 was granted and assigned to Covidien on December, 2023 by the United States Patent and Trademark Office.

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Contents

Patent abstractTimelineTable: Further ResourcesReferences
Is a
Patent
Patent
1

Patent attributes

Patent Applicant
Covidien
Covidien
1
Current Assignee
Covidien
Covidien
1
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
1
Patent Number
118328361
Patent Inventor Names
Christopher Andrews1
Gaurav Girdhar1
Andyanhdzung Huynh1
Ashok Nageswaran1
Hoai Nguyen1
Date of Patent
December 5, 2023
1
Patent Application Number
176473191
Date Filed
January 6, 2022
1
Patent Citations
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US Patent 8382821 Helical hybrid stent
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US Patent 8603014 Hands-free operator-independent transcranial ultrasound apparatus and methods
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US Patent 8795305 Retrieval systems and methods for use thereof
1
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US Patent 8837800 Automated detection of arterial input function and/or venous output function voxels in medical imaging
1
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US Patent 8888788 Low profile electrodes for an angioplasty shock wave catheter
1
‌
US Patent 8965534 Apparatus and method for energy distribution in a medical electrode
1
‌
US Patent 9011431 Electrical ablation devices
1
‌
US Patent 9039753 System and method to electrically charge implantable devices
1
...
Patent Citations Received
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US Patent 11974752 Electrically enhanced retrieval of material from vessel lumens
2
Patent Primary Examiner
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Timothy J Neal
1
CPC Code
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A61B 2017/00154
1
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A61B 2017/00867
1
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A61B 2017/00929
1
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A61B 2017/22034
1
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A61B 2017/22042
1
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A61B 2017/2215
1
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A61B 2090/3966
1
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A61B 18/12
1
...
Patent abstract

Retrieval of material from vessel lumens can be improved by electrically enhancing attachment of the material to the removal device. The removal device can have a core assembly that includes a hypotube coupled to a first electrical terminal and a pushwire coupled to a second electrical terminal, the pushwire extending through the hypotube lumen. An insulating layer separates the hypotube and the pushwire, and an interventional element is coupled to a distal end of the pushwire. The interventional element can be disposed adjacent to a thrombus. An electrical signal is delivered to the interventional element to promote adhesion of the thrombus to the interventional element. The electrical signal can optionally be a periodic waveform, and the total energy delivered can be between 0.75-24,000 mJ and the peak current delivered via the electrical signal can be between 0.5-5 mA.

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