IP Library › Granted Patent US 12,311,183
Granted Patent B2
US 12,311,183 · App. 17/465,673 · Granted May 27, 2025

Current steering for cardiac pacing

Inventors: Randolph E. Crutchfield (Scottsdale, AZ); James J. St. Martin (Blaine, MN)
Assignee: Medtronic, Inc.
A61N1/3686A61N1/025A61N1/0587A61N1/37516
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Quick Facts
Patent No.
US 12,311,183
App. No.
17/465,673
Granted
May 27, 2025
Kind
B2
Abstract

The disclosure describes capturing the cardiac tissue using current steering techniques with a multi-pole cardiac lead implanted near the cardiac tissue. The techniques may include current-controlled sources in an IMD to provide current regulation to the pacing pulses allowing direct stimulation through multiple electrode contacts with known current delivery to the tissue. This current steering technique may use a delivery current source coupled to a delivery electrode and a receiving current source coupled to a receiving electrode to steer the current to the desired tissue to be stimulated. In some examples, different electrode pairs may be paced sequentially or together. In other examples, two or more electrodes may be considered the “delivery electrodes” and two or more electrodes may be considered the “receiving electrodes.” In some examples a current-controlled source in the IMD may be implemented using a source degeneration circuit.

Claims (72)

1. A medical system comprising:

an implantable medical device coupled to a cardiac lead and configured to deliver pacing therapy to cardiac tissue of a heart via a plurality of electrodes of the cardiac lead, wherein the implantable medical device comprises a first current source configured to output an electrical current stimulation pulse and a second current source configured to sink the electrical current stimulation pulse to capture a portion of the cardiac tissue; and

processing circuitry configured to:

electrically connect the first current source to a first electrode of the plurality of electrodes to output the electrical current stimulation pulse to the cardiac tissue; and

electrically connect the second current source to a second electrode of the plurality of electrodes to sink the electrical current stimulation pulse to the cardiac tissue,

wherein a first channel of implantable medical device comprises the first current source, the first channel further comprising:

a first switch configured to connect an output terminal of the first current source to the first electrode;

a first recharge switch configured to connect the first electrode to a reference voltage;

a second recharge switch configured to connect the first electrode to the reference voltage through a capacitor; and

a second first channel current source, comprising an input terminal and an output terminal wherein:

the output terminal of the second first channel current source connects to the reference voltage,

the input terminal of the second first channel current source is configured to connect to the first electrode through the capacitor and a second switch, and

the second first channel current source is configured to sink current from the first electrode when the second switch is closed and conducting current.

2. The medical system of claim 1 ,

wherein the implantable medical device further comprises a third current source configured to sink the electrical current stimulation pulse, and

wherein the processing circuitry is further configured to:

electrically connect the third current source to a third electrode of the plurality of electrodes to sink the electrical current stimulation pulse to the cardiac tissue, such that the electrical current stimulation pulse captures the portion of the cardiac tissue between the first electrode and the second and the third electrodes.

3. The medical system of claim 1 ,

wherein the implantable medical device further comprises a third current source configured to output the electrical current stimulation pulse, and

wherein the processing circuitry is further configured to electrically connect the third current source to a third electrode of the plurality of electrodes to output the electrical current stimulation pulse to the cardiac tissue, such that the electrical current stimulation pulse captures the portion of the cardiac tissue between the third electrode and the second and the first electrodes.

4. The medical system of claim 1 ,

wherein the implantable medical device further comprises a third current source configured to sink the electrical current stimulation pulse, and

wherein the processing circuitry is further configured to:

electrically connect the third current source to a third electrode to sink the electrical current stimulation pulse to the cardiac tissue, wherein the third electrode is separate from the plurality of electrodes, such that the electrical current stimulation pulse passes through a portion of the cardiac tissue between the first electrode to the second electrode and the third electrode.

5. The medical system of claim 4 , wherein the third electrode is a housing electrode proximate to a housing of the implantable medical device.

6. The medical system of claim 5 , wherein the third electrode is a part of a second lead separate from the cardiac lead electrode and the second lead is electrically connected to the implantable medical device.

7. The medical system of claim 1 ,

wherein the implantable medical device further comprises a third current source configured to output the electrical current stimulation pulse, and

wherein the processing circuitry is further configured to:

electrically connect a third current source to a third electrode to output the electrical current stimulation pulse to the cardiac tissue, wherein the third electrode is separate from the plurality of electrodes, such that the electrical current stimulation pulse passes through a portion of the cardiac tissue between the third electrode to the second electrode and the first electrode.

8. The medical system of claim 7 , wherein the third electrode is a housing electrode proximate to a housing of the implantable medical device.

9. The medical system of claim 8 , wherein the third electrode is a part of a second lead separate from the cardiac lead and the second lead is electrically connected to the implantable medical device.

10. The medical system of claim 1 , wherein the cardiac tissue comprises a left ventricle of the heart.

11. The medical system of claim 1 , wherein the cardiac tissue comprises one or more of: a right atrium, a right ventricle, Purkinje fibers, bundle of His, and a bundle branch.

12. A computer readable storage medium containing instructions that when executed by processing circuitry of an implantable medical device, cause the processing circuitry to:

electrically connect a first current source to a first electrode of a plurality of electrodes to output an electrical current stimulation pulse to cardiac tissue; and

electrically connect a second current source to a second electrode of the plurality of electrodes to sink the electrical current stimulation pulse,

wherein a cardiac lead comprising the plurality of electrodes is coupled to the implantable medical device,

wherein the implantable medical device is configured to deliver pacing therapy to the cardiac tissue of a heart via the plurality of electrodes of the cardiac lead,

wherein the implantable medical device comprises the first current source configured to output an electrical current stimulation pulse and the second current source configured to sink the electrical current stimulation pulse to capture a portion of the cardiac tissue, and

wherein a first channel of implantable medical device comprises the first current source, the first channel further comprising:

a first switch configured to connect an output terminal of the first current source to the first electrode;

a first recharge switch configured to connect the first electrode to a reference voltage;

a second recharge switch configured to connect the first electrode to the reference voltage through a capacitor; and

a second first channel current source, comprising an input terminal and an output terminal wherein:

the output terminal of the second first channel current source connects to the reference voltage,

the input terminal of the second first channel current source is configured to connect to the first electrode through the capacitor and a second switch, and

the second first channel current source is configured to sink current from the first electrode when the second switch is closed and conducting current.

13. The computer readable storage medium of claim 12 ,

wherein the implantable medical device further comprises a third current source configured to sink the electrical current stimulation pulse, and

wherein instructions further cause the processing circuitry to electrically connect the third current source to a third electrode of the plurality of electrodes to sink the electrical current stimulation pulse to the cardiac tissue, such that the electrical current stimulation pulse captures the portion of the cardiac tissue between the first electrode and the second and the third electrodes.

14. The computer readable storage medium of claim 12 ,

wherein the implantable medical device further comprises a third current source configured to output the electrical current stimulation pulse, and

wherein the processing circuitry is further configured to electrically connect the third current source to a third electrode of the plurality of electrodes to output the electrical current stimulation pulse to the cardiac tissue, such that the electrical current stimulation pulse captures the portion of the cardiac tissue between the third electrode and the second and the first electrodes.

15. The computer readable storage medium of claim 12 , wherein the cardiac tissue comprises a left ventricle of the heart.

16. The computer readable storage medium of claim 12 , wherein the cardiac tissue comprises one or more of: a right atrium, a right ventricle, Purkinje fibers, bundle of His, and a bundle branch.

17. A medical system comprising:

an implantable medical device coupled to a cardiac lead and configured to deliver pacing therapy to cardiac tissue of a heart via a plurality of electrodes of the cardiac lead, wherein the implantable medical device comprises a first current source configured to output an electrical current stimulation pulse and a second current source configured to sink the electrical current stimulation pulse to capture a portion of the cardiac tissue; and

processing circuitry configured to:

electrically connect the first current source to a first electrode of the plurality of electrodes to output the electrical current stimulation pulse to the cardiac tissue; and

electrically connect the second current source to a second electrode of the plurality of electrodes to sink the electrical current stimulation pulse to the cardiac tissue,

wherein a first channel of implantable medical device comprises the first current source,

wherein a second channel of implantable medical device comprises the second current source,

wherein the first channel further comprises:

a first switch configured to connect an output terminal of the first current source to the first electrode; and

a first recharge switch configured to connect the first electrode to a reference voltage (GND);

wherein the second channel further comprises:

a second recharge switch configured to connect the second electrode to the reference voltage through a capacitor;

the second current source comprising an input terminal and an output terminal wherein:

the output terminal of the second current source connects to the reference voltage,

the input terminal of the second current source is configured to connect to the second electrode through the capacitor and a second switch, and

the second current source is configured to sink current from the second electrode when the second switch is closed and conducting current.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 4, 2021
From: CRUTCHFIELD, RANDOLPH E.; ST. MARTIN, JAMES J.
To: MEDTRONIC, INC.
Reel/Frame 057694/0366 →
Continuity (2)
Provisional Application 63080891 · Sep 21, 2020
Related Publication 20220088391A1 · Mar 24, 2022
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