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US Patent 9539047 Transvascular methods of treating extravascular tissue

Patent 9539047 was granted and assigned to Ablative Solutions on January, 2017 by the United States Patent and Trademark Office.

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Contents

Is a
Patent
Patent

Patent attributes

Patent Applicant
Ablative Solutions
Ablative Solutions
Current Assignee
Ablative Solutions
Ablative Solutions
Patent Jurisdiction
United States Patent and Trademark Office
United States Patent and Trademark Office
Patent Number
9539047
Date of Patent
January 10, 2017
Patent Application Number
14932128
Date Filed
November 4, 2015
Patent Citations Received
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US Patent 12108982 Peri-vascular tissue access catheter with locking handle
0
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US Patent 11964113 Expandable catheter system for peri-ostial injection and muscle and nerve fiber ablation
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US Patent 11980408 Transvascular methods of treating extravascular tissue
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0
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US Patent 11752303 Catheter systems and packaged kits for dual layer guide tubes
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US Patent 11751787 Intravascular catheter with peri-vascular nerve activity sensors
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US Patent 11759608 Intravascular fluid catheter with minimal internal fluid volume
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US Patent 11937933 Apparatus for effective ablation and nerve sensing associated with denervation
0
...
Patent Primary Examiner
‌
Imani Hayman
Patent abstract

An intravascular catheter for peri-vascular or peri-urethral tissue ablation includes multiple needles advanced through supported guide tubes which expand with open ends around a central axis to engage the interior surface of the wall of the renal artery or other vessel of a human body allowing the injection an ablative fluid for ablating tissue, such as nerve fibers in the outer layer or deep to the outer layer of the vessel, or in prostatic tissue. The system also includes controls the depth of penetration of the ablative fluid into and beyond the tissue of the vessel wall. The preferred embodiment of the catheter includes structures which provide radial and lateral support to the guide tubes so that the guide tubes open uniformly and maintain their position against the interior surface of the vessel wall as the sharpened injection needles are advanced to penetrate into the vessel wall.

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