EP2429633A2

Grounding of a shield of an implantable medical lead

Abstract

This record has no abstract on file.

Term

3.6 yearsto projected expiry

Projected expiry 27 April 2030, counted from filing; an application has no term until it is granted.

  1. Priority
  2. Filed
  3. Published
  4. Today
  5. Projected expiry

46 claims: 14 independent, 32 dependent

  1. 1
    Claims of equivalent WO 2010126884 A2 What is claimed is:1. A method of grounding a shield of an implantable lead, comprising: establishing a pathway capable of conducting electrical energy at radio frequencies between the shield at a first point along the lead and a metal can of an implantable medical device, where the first point along the lead is spaced apart from a proximal end of the lead that is positioned within a header of the implantable medical device.
  2. 6
    The method of any of claims 3-5, wherein the metal conductor within the pass- through comprises a spring-loaded connector and wherein establishing physical contact comprises trapping the ground electrode within the spring-loaded connector.
  3. 10
    The method of any of claims 7-9, wherein the metal connector comprises a spring- loaded connector.
  4. 16
    An implantable medical system, comprising:an implantable medical device housed within a metal can and having a header portion that houses electrical contacts;an implantable lead comprising a shield and fϊlars and further comprising electrodes at a proximal end and at a distal end, wherein the filars provide a direct current connection between the electrodes at the proximal end and the electrodes at the distal end, the proximal end being positioned within the header so that the electrodes on the proximal end establish physical contact with the electrical contacts within the header;a ground conductor;a first coupling at a first point along the implantable lead that is spaced from the proximal end and the header, the first coupling establishing a radio frequency pathway between the shield at the first point and the ground conductor;and a second coupling at the can that establishes a radio frequency pathway between the ground conductor and the metal can.
  5. 21
    The implantable medical system of any of claims 16-18, wherein the radio frequency pathway between the ground conductor and the metal can is a capacitive coupling between the ground conductor and the metal can.
  6. 22
    An implantable medical system, comprising:an implantable medical device housed within a metal can and having a header portion that houses electrical contacts, a ground plate being affixed to the header;an implantable lead comprising a shield and filars and further comprising electrodes at a proximal end and at a distal end, wherein the filars provide a direct current connection between the electrodes at the proximal end and the electrodes at the distal end, the proximal end being positioned within the header so that the electrodes on the proximal end establish physical contact with the electrical contacts within the header;a ground conductor;a first coupling at a first point along the implantable lead that establishes a radio frequency pathway between the shield at the first point and the ground conductor;and a second coupling at the ground plate that establishes a radio frequency pathway between the ground conductor and the ground plate.
  7. 25
    The implantable medical system of any of claims 22-24, wherein the ground plate comprises a metal attachment block that affixes the proximal end of the implantable lead within the header.
  8. 26
    The implantable medical system of any of claims 22-25, wherein the first point is spaced from the proximal end and the header.
  9. 27
    The implantable medical system of any of claims 22-25, wherein the first point is within the header and the ground conductor extends through the header to the ground plate.
  10. 29
    A method of grounding a shield of an implantable lead, comprising:establishing a pathway capable of conducting electrical energy at radio frequencies between the shield at a first point along the lead and a metal can of an implantable medical device, where the first point along the lead is in proximity to a proximal end of the lead that is positioned within a header of the implantable medical device such that the first point is positioned within the header, the pathway being provided by a connector affixed within the header that is in physical contact with an electrode on the proximal end of the implantable lead.
  11. 32
    The method of any of claims 29-31, wherein the connector is at least one of a spring loaded connector and a set screw block.
  12. 33
    A method of grounding a shield of an implantable lead, comprising:establishing a pathway capable of conducting electrical energy at radio frequencies between the shield at a first point along the lead and a metal can of an implantable medical device, where the pathway comprises a capacitive coupling and where the first point along the lead is in proximity to a proximal end of the lead that is positioned within a header of the implantable medical device such that the first point is positioned within the header.
  13. 36
    The method of any of claims 33-35, wherein providing the capacitive coupling comprises utilizing a header connector having a shunt plate that extends from the header connector to a point within the header that is closer to the metal can.
  14. 37
    The method of any of claims 33-35, wherein providing the capacitive coupling comprises utilizing a header connector that has a filter feed through connection to the metal can.
  15. 38
    An implantable medical system, comprising:an implantable medical device housed within a metal can and having a header portion that houses electrical contacts;an implantable lead comprising a shield and fϊlars and further comprising electrodes at a proximal end and at a distal end, wherein the filars provide a direct current connection between the electrodes at the proximal end and the electrodes at the distal end, the proximal end being positioned within the header so that the electrodes on the proximal end establish physical contact with the electrical contacts within the header;a ground conductor;a connector at a first point along the implantable lead that is proximate to the proximal end and is within the header, the connector establishing a radio frequency pathway between the shield at the first point and the ground conductor;and a coupling at the can that establishes a radio frequency pathway between the ground conductor and the metal can.
  16. 41
    The implantable medical system of any of claims 38-40, wherein the connector is at least one of a spring loaded connector and a set screw block and wherein a ground electrode that is electrically coupled to the shield abuts the connector.
  17. 42
    An implantable medical system, comprising:an implantable medical device housed within a metal can and having a header portion that houses electrical contacts;an implantable lead comprising a shield and fϊlars and further comprising electrodes at a proximal end and at a distal end, wherein the filars provide a direct current connection between the electrodes at the proximal end and the electrodes at the distal end, the proximal end being positioned within the header so that the electrodes on the proximal end establish physical contact with the electrical contacts within the header;a first coupling at a first point along the implantable lead that is proximate to the proximal end and is within the header, the first coupling establishing a capacitively coupled pathway between the shield at the first point and the metal can.
  18. 45
    The implantable medical system of any of claims 42-44, wherein the first coupling comprises a header connector having a shunt plate that extends from the header connector to a point within the header that is closer to the metal can.
  19. 46
    The implantable medical system of any of claims 42-44, wherein the first coupling comprises a header connector that has a filter feed through connection to the metal can.
Independent claims19