IP Library › Granted Patent US 10,117,701
Granted Patent B2
US 10,117,701 · App. 14/639,632 · Granted Nov 6, 2018

Tissue ablation with irreversible electroporation

Inventors: Rafael Davalos (Oakland, CA); Boris Rubinsky (El Cerrito, CA)
Assignee: The Regents of the University of California
A61B18/12A61B18/1233A61N1/0412A61B18/1477A61B2018/00577A61B2018/00613A61B2018/1425A61N1/0472A61N1/05A61N1/327
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Quick Facts
Patent No.
US 10,117,701
App. No.
14/639,632
Granted
Nov 6, 2018
Kind
B2
Abstract

A new method for the ablation of undesirable tissue such as cells of a cancerous or non-cancerous tumor is disclosed. It involves the placement of electrodes into or near the vicinity of the undesirable tissue through the application of electrical pulses causing irreversible electroporation of the cells throughout the entire area of the undesirable tissue. The electric pulses irreversibly permeate the cell membranes, thereby invoking cell death. The irreversibly permeabilized cells are left in situ and are removed by the body immune system. The amount of tissue ablation achievable through the use of irreversible electroporation without inducing thermal damage is considerable.

Claims (6)

1. A device for ablating tissue, comprising:

first and second electrodes configured to-position a tissue zone to be treated there between;

a voltage generator in electrical connection with the first and second electrodes, and configured for applying a voltage between the first and second electrodes in a manner which provides a predetermined electric field around the tissue zone for a time sufficient to perform irreversible electroporation to kill substantially all of the cells in the identified tissue zone; and

a voltage regulator in electrical connection with the voltage generator and configured for adjusting the voltage and pulse duration of the voltage generator to obtain irreversible electroporation of cells in the tissue zone while minimizing damage to cells not in the tissue zone, the voltage regulator is configured to use a Laplace equation to calculate the electrical potential distribution in tissue during typical electroporation pulses and is further configured to use a modified Pennes equation to calculate the resulting temperature distribution.

2. The device of claim 1 , wherein the voltage regulator provides pulses of 100 microseconds±about 10 microseconds at a voltage gradient in a range of from about 50 volt/cm to about 8000 volt/cm.

3. The system of claim 1 , wherein the voltage regulator provides pulses at a voltage gradient of at least 600 v/cm.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2015
From: DAVALOS, RAFAEL; RUBINSKY, BORIS
To: THE REGENTS OF THE UNIVERSITY OF CALIFORNIA
Reel/Frame 036022/0227 →
Continuity (5)
Division 13546339 · Jul 11, 2012
Division 13237199 · Sep 20, 2011
Continuation 10571162
Provisional Application 60532588 · Dec 24, 2003
Related Publication 20150173824A1 · Jun 25, 2015
Cited By (16)
US 12,186,011 US 12,201,349 US 12,214,189 US 12,232,792 US 12,239,365 US 12,257,080 US 12,295,637 US 12,295,648 US 12,349,953 US 12,390,262 US 12,390,268 US 12,426,948 US 12,485,279 US 12,697,172 US 12,708,766 US 12,714,495