System and method for monitoring or treating nervous system disorders
First Claim
Patent Images
1. A medical device system comprising:
- (a) a brain monitoring element for sensing activity of the brain and outputting a brain signal;
(b) a cardiac monitoring element for sensing activity of the heart and outputting a cardiac signal; and
(c) a processor in communication with the brain monitoring element and the cardiac monitoring element, the processor configured to;
(i) receive the brain signal and obtain information identifying one or more neurological events in the brain signal;
(ii) receive the cardiac signal and obtain information identifying one or more cardiac events in the cardiac signal; and
(iii) compare the brain signal to the cardiac signal,wherein the processor being configured to compare the brain signal to the cardiac signal comprises the processor being configured to perform the following;
(a) for each of the one or more neurological events, determining whether said neurological event is within a specified time period of one of the one or more cardiac events; and
(b) for each of the one or more cardiac events, determining whether said cardiac event is within a specified time period of one of the one or more neurological events.
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Abstract
A medical device system that includes a brain monitoring element, cardiac monitoring element and a processor. The processor is configured to receive a brain signal from the brain monitoring element and a cardiac signal from the cardiac monitoring element. The processor is further configured to compare the brain signal to the cardiac signal. A method of comparing a brain signal to a cardiac signal is also provided.
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Citations
23 Claims
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1. A medical device system comprising:
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(a) a brain monitoring element for sensing activity of the brain and outputting a brain signal; (b) a cardiac monitoring element for sensing activity of the heart and outputting a cardiac signal; and (c) a processor in communication with the brain monitoring element and the cardiac monitoring element, the processor configured to; (i) receive the brain signal and obtain information identifying one or more neurological events in the brain signal; (ii) receive the cardiac signal and obtain information identifying one or more cardiac events in the cardiac signal; and (iii) compare the brain signal to the cardiac signal, wherein the processor being configured to compare the brain signal to the cardiac signal comprises the processor being configured to perform the following; (a) for each of the one or more neurological events, determining whether said neurological event is within a specified time period of one of the one or more cardiac events; and (b) for each of the one or more cardiac events, determining whether said cardiac event is within a specified time period of one of the one or more neurological events. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13)
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14. A medical device system comprising:
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(a) a brain monitoring element for sensing activity of the brain and outputting a brain signal; (b) a cardiac monitoring element for sensing activity of the heart and outputting a cardiac signal; and (c) a processor in communication with the brain monitoring element and the cardiac monitoring element, the processor configured to; (i) receive the brain signal and obtain information identifying one or more neurological events in the brain signal; (ii) receive the cardiac signal and obtain information identifying one or more cardiac events in the cardiac signal; and (iii) compare the brain signal to the cardiac signal, wherein comparing the brain signal to the cardiac signal performed by the processor comprises; (a) categorizing the neurological event as cardiac matched when there is a cardiac event in close temporal relationship with the neurological event; and (b) computing a rate of concordance between the neurological events and the cardiac events based on the number of cardiac matched events and the number of neurological events. - View Dependent Claims (15)
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16. A medical device system comprising:
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(a) a brain monitoring element for sensing activity of the brain and outputting a brain signal; (b) a cardiac monitoring element for sensing activity of the heart and outputting a cardiac signal; and (c) a processor in communication with the brain monitoring element and the cardiac monitoring element, the processor configured to; (i) receive the brain signal and obtain information identifying one or more neurological events in the brain signal; (ii) receive the cardiac signal and obtain information identifying one or more cardiac events in the cardiac signal; and (iii) compare the brain signal to the cardiac signal, wherein the processor is further configured to perform the following; (a) dividing the neurological event into at least two segments; and (b) assigning the cardiac event to one or more of the segments according to when the cardiac event occurred relative to the segments. - View Dependent Claims (17)
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18. A medical device system comprising:
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(a) a brain monitoring element for sensing activity of the brain and outputting a brain signal; (b) a cardiac monitoring element for sensing activity of the heart and outputting a cardiac signal; and (c) a processor in communication with the brain monitoring element and the cardiac monitoring element, the processor configured to; (i) receive the brain signal and obtain information identifying one or more neurological events in the brain signal; (ii) receive the cardiac signal and obtain information identifying one or more cardiac events in the cardiac signal; and (iii) compare the brain signal to the cardiac signal, wherein the processor is further configured to obtain information categorizing each cardiac event as one or more of first type cardiac event and second type cardiac event, and wherein the first type cardiac event and second type cardiac event are selected from the group consisting of bradycardia, asystole, tachyrhythmia, ST segment elevation.
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19. A medical device system comprising:
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(a) a brain monitoring element for sensing activity of the brain and outputting a brain signal; (b) a cardiac monitoring element for sensing activity of the heart and outputting a cardiac signal; and (c) a processor in communication with the brain monitoring element and the cardiac monitoring element, the processor configured to; (i) receive the brain signal and obtain information identifying one or more neurological events in the brain signal; (ii) receive the cardiac signal and obtain information identifying one or more cardiac events in the cardiac signal; and (iii) compare the brain signal to the cardiac signal, wherein the processor is further configured to obtain information categorizing each cardiac event as one or more of first type cardiac event and second type cardiac event, and wherein comparing the brain signal to the cardiac signal performed by the processor comprises; (a) categorizing the neurological event as first type cardiac matched when there is a first type cardiac event within a specified time period of the neurological event; (b) categorizing the neurological event as second type cardiac matched when there is a second type cardiac event within a specified time period of the neurological event; (c) computing a first rate of concordance between the neurological events and the first type cardiac events based on the number of first type cardiac matched events and the number of neurological events; and (d) computing a second rate of concordance between the neurological events and the second type cardiac events based on the number of second type cardiac matched events and the number of neurological events. - View Dependent Claims (20)
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21. A medical device system comprising:
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(a) brain monitoring means for sensing activity of the brain and outputting a brain signal; (b) cardiac monitoring means for sensing activity of the heart and outputting a cardiac signal; and (c) processing means for receiving the brain signal, receiving the cardiac signal, and comparing the brain signal to the cardiac signal, wherein the processing means further comprises; (a) neurological event detection means for evaluating the brain signal and identifying one or more neurological events; and (b) cardiac event detection means for evaluating the cardiac signal and identifying one or more cardiac events, and wherein the processing means further comprises; concordance means for determining a rate of concordance between the neurological events and the cardiac events.
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22. A non-transitory computer readable medium containing executable instructions causing a processor to perform the following:
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(a) receiving a brain signal from a brain monitoring element; (b) receiving a cardiac signal from a cardiac monitoring element; and (c) comparing the brain signal to the cardiac signal, wherein the step of comparing the brain signal to the cardiac signal comprises; (a) detecting one or more neurological events in the brain signal; (b) detecting one or more cardiac events in the cardiac signal; (c) for each of the one or more neurological events, determining whether said neurological event is within a specified time period of one of the one or more cardiac events; and (d) for each of the one or more cardiac events, determining whether said cardiac event is within a specified time period of one of the one or more neurological events. - View Dependent Claims (23)
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Specification