Brain stimulation models, systems, devices, and methods
First Claim
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1. A computer-implemented method comprising:
- receiving, by a computer processor, a target volume of activation and a target volume to avoid activating;
for each of a plurality of test electrode locations or test electrode parameters of a stimulation leadwire;
ascertaining, by the processor, a respective distribution of electrical values of an electric field estimated to be produced in an anatomical region by the stimulation leadwire using the test electrode location or test electrode parameter;
based on the ascertained distribution of electrical values, determining, by the processor, an estimate of a volume of activation (VOA) of tissue in the anatomical region, in which volume an electrical characteristic of the tissue, which is dependent on the distribution of electrical values of the electric field, is predicted to reach a threshold level that causes the tissue to be activated, wherein, in the determining step, the processor estimates that tissue in at least a portion of the anatomical region in which some of the ascertained distribution of electrical values is located would not be activated by the electric field with the ascertained distribution of electrical values distribution; and
comparing, by the processor, the respective VOA to both the target volume of activation and the target volume to avoid activating;
selecting a target electrode location or a target electrode parameter using the comparisons between the respective VOAs and both the target volume of activation and the target volume to avoid activating; and
displaying, by the processor and on a display screen, the respective VOA to which the selected target electrode location or target electrode parameter corresponds; and
communicating the selected target electrode location or target electrode parameter to an implanted controller circuit to initiate production of electrical stimulation of patient tissue using an implanted leadwire coupled to the controller circuit at the selected target electrode location or using the selected target electrode parameter.
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Abstract
This document discusses, among other things, brain stimulation models, systems, devices, and methods, such as for deep brain stimulation (DBS) or other electrical stimulation. In an example, a target volume of activation (VOA) can be received, a test VOA can be simulated, and at least one of a target electrode location or parameter can be provide using a relationship between the target VOA and the test VOA.
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Citations
20 Claims
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1. A computer-implemented method comprising:
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receiving, by a computer processor, a target volume of activation and a target volume to avoid activating; for each of a plurality of test electrode locations or test electrode parameters of a stimulation leadwire; ascertaining, by the processor, a respective distribution of electrical values of an electric field estimated to be produced in an anatomical region by the stimulation leadwire using the test electrode location or test electrode parameter; based on the ascertained distribution of electrical values, determining, by the processor, an estimate of a volume of activation (VOA) of tissue in the anatomical region, in which volume an electrical characteristic of the tissue, which is dependent on the distribution of electrical values of the electric field, is predicted to reach a threshold level that causes the tissue to be activated, wherein, in the determining step, the processor estimates that tissue in at least a portion of the anatomical region in which some of the ascertained distribution of electrical values is located would not be activated by the electric field with the ascertained distribution of electrical values distribution; and comparing, by the processor, the respective VOA to both the target volume of activation and the target volume to avoid activating; selecting a target electrode location or a target electrode parameter using the comparisons between the respective VOAs and both the target volume of activation and the target volume to avoid activating; and displaying, by the processor and on a display screen, the respective VOA to which the selected target electrode location or target electrode parameter corresponds; and communicating the selected target electrode location or target electrode parameter to an implanted controller circuit to initiate production of electrical stimulation of patient tissue using an implanted leadwire coupled to the controller circuit at the selected target electrode location or using the selected target electrode parameter. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11)
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12. A system comprising:
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a processor; and a non-transitory computer-readable medium on which are stored instructions that are executable by the processor, the instructions which, when executed by the processor, cause the processor to; receive a target volume of activation and a target volume to avoid activating; for each of a plurality of test electrode locations or test electrode parameters of a stimulation leadwire; ascertain a respective distribution of electrical values of an electric field estimated to be produced in an anatomical region by the stimulation leadwire using the test electrode location or test electrode parameter; based on the ascertained distribution of electrical values, determine, by the processor an estimate of a volume of activation (VOA) of tissue in the anatomical region, in which volume an electrical characteristic of the tissue, which is dependent on the distribution of electrical values of the electric field, is predicted to reach a threshold level that causes the tissue to be activated, wherein, in the determination, the processor estimates that tissue in at least a portion of the anatomical region in which some of the ascertained distribution of electrical values is located would not be activated by the electric field with the ascertained distribution of electrical values; and compare the respective VOA to both the target volume of activation and the target volume to avoid activating; select a target electrode location or a target electrode parameter using the comparison between the respective VOAs and both the target volume of activation and the target volume to avoid activating; display on a display screen the respective VOA to which the selected target electrode location or target electrode parameter corresponds; and communicate the selected target electrode location or target electrode parameter to an implanted controller circuit to initiate production of electrical stimulation of patient tissue using an implanted leadwire coupled to the controller circuit at the selected target electrode location or using the selected target electrode parameter. - View Dependent Claims (13, 14, 15, 16, 17, 18)
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19. A computer-implemented method comprising:
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receiving, by a computer processor, a target volume of activation (target VOA) and a target volume to avoid activating; for each of a plurality of test electrode locations or test electrode parameters of a stimulation leadwire; ascertaining, by the processor, a respective distribution of electrical values of an electric field estimated to be produced in an anatomical region by the stimulation leadwire using the test electrode location or test electrode parameter; based on the ascertained distribution of electrical values, determining, by the processor, an estimate of a volume of activation (estimated VOA) of tissue in the anatomical region, in which volume an electrical characteristic of the tissue, which is dependent on the distribution of electrical values of the electric field, is predicted to reach a threshold level that causes the tissue to be activated; comparing, by the processor, the respective estimated VOA to both the target VOA and the target volume to avoid activating; using the comparison between the respective estimated VOAs and both the target VOA and the target volume to avoid activating, by the processor, to calculate a respective score for each of the respective estimated VOAs, wherein the score for the respective estimated VOA is calculated by an algorithm that includes mapping how much of the target VOA is within the respective estimated VOA; based on the scores, selecting a target electrode location or a target electrode parameter; displaying, by the processor and on a display screen, the respective estimated VOA to which the selected target electrode location or target electrode parameter corresponds; and communicating the selected target electrode location or target electrode parameter to an implanted controller circuit to initiate production of electrical stimulation of patient tissue using an implanted leadwire coupled to the controller circuit at the selected target electrode location or using, the selected target electrode parameter.
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20. A system comprising:
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a processor; and a non-transitory computer-readable medium on which are stored instructions that are executable by the processor, the instructions which, when executed by the processor, cause the processor to; receive a target volume of activation (target VOA) and a target volume to avoid activating; predict a respective VOA for each of a plurality of test electrode locations or test electrode parameters; compare the respective predicted VOAs to both the target VOA and the target volume to avoid activating; using the comparison between the respective predicted VOAs and both the target VOA and the target volume to avoid activating, compute a respective predicted VOA score for each of the respective predicted VOAs, wherein the respective score for the respective predicted VOA is computed by an algorithm that includes mapping how much of the target VOA is within the respective predicted VOA; select a target electrode location or a target electrode parameter using the scores; display on a display screen the respective predicted VOA to which the selected target electrode location or target electrode parameter corresponds; and communicate the selected target electrode location or target electrode parameter to an implanted controller circuit to initiate production of electrical stimulation of patient tissue using an implanted leadwire coupled to the controller circuit at the selected target electrode location or using the selected target electrode parameter.
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Specification