Invention Grant
US07873417B2 Methods and apparatus for pulsed electric field neuromodulation via an intra-to-extravascular approach
有权
通过血管内血管内途径进行脉冲电场神经调节的方法和装置
- Patent Title: Methods and apparatus for pulsed electric field neuromodulation via an intra-to-extravascular approach
- Patent Title (中): 通过血管内血管内途径进行脉冲电场神经调节的方法和装置
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Application No.: US12616708Application Date: 2009-11-11
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Publication No.: US07873417B2Publication Date: 2011-01-18
- Inventor: Denise Demarais , Benjamin J. Clark , Nicolas Zadno , Erik Thai , Hanson Gifford, III
- Applicant: Denise Demarais , Benjamin J. Clark , Nicolas Zadno , Erik Thai , Hanson Gifford, III
- Applicant Address: US CA Mountain View
- Assignee: Ardian, Inc.
- Current Assignee: Ardian, Inc.
- Current Assignee Address: US CA Mountain View
- Agency: Perkins Coie LLP
- Main IPC: A61N1/05
- IPC: A61N1/05

Abstract:
Methods and apparatus are provided for pulsed electric field neuromodulation via an intra-to-extravascular approach, e.g., to effectuate irreversible electroporation or electrofusion, necrosis and/or inducement of apoptosis, alteration of gene expression, changes in cytokine upregulation and other conditions in target neural fibers. In some embodiments, the ITEV PEF system comprises an intravascular catheter having one or more electrodes configured for intra-to-extravascular placement across a wall of patient's vessel into proximity with target neural fibers. With the electrode(s) passing from an intravascular position to an extravascular position prior to delivery of the PEF, a magnitude of applied voltage or energy delivered via the electrode(s) and necessary to achieve desired neuromodulation may be reduced relative to an intravascular PEF system having one or more electrodes positioned solely intravascularly. The methods and apparatus of the present invention may, for example, be used to modulate one or more target neural fibers that contribute to renal function.
Public/Granted literature
- US20100057150A1 METHODS AND APPARATUS FOR PULSED ELECTRIC FIELD NEUROMODULATION VIA AN INTRA-TO-EXTRAVASCULAR APPROACH Public/Granted day:2010-03-04
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