MRI conditionally safe lead with multi-layer conductor
First Claim
Patent Images
1. An implantable electrical lead, comprising:
- a flexible body having a proximal region including a proximal end, a distal region, and a longitudinal body lumen extending from the proximal end through the distal region;
a connector assembly configured to mechanically and electrically connect the implantable electrical lead to an implantable pulse generator;
an electrode coupled to the flexible body in the distal region; and
a multi-layer coil conductor extending within the longitudinal body lumen from the connector assembly to at least the electrode, the multi-layer coil conductor configured to minimize heat rise when exposed to magnetic resonance imaging (MRI) scans, the multi-layer coil conductor including;
a first coil layer including one or more filars wound so as to have a close pitch, the first coil layer having a proximal end at the connector assembly and a distal end at the electrode, the first coil layer electrically connected to the connector assembly and the electrode; and
a second coil layer disposed about the first coil layer including one or more filars wound so as to have a close pitch, the second coil layer having a proximal end at the connector assembly and a distal end at the electrode, the second coil layer electrically connected to the connector assembly and the electrode, the second coil layer defining a lumen within which the first coil layer extends from the proximal end to the distal end, wherein the first and second coil layers are electrically coupled to one another at their respective proximal ends and at their respective distal ends to provide parallel conductive paths between the connector assembly and the electrode.
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Abstract
An implantable medical lead exhibits reduced heating under MRI conditions. The lead includes a multi-layer coil conductor including an inner coil layer, a middle coil layer disposed around the inner coil layer, and an outer coil layer disposed around the middle coil layer. Each of the coil layers is characterized by one or more of a filar thickness, a coil pitch, or a coil diameter configured such that the coil conductor exhibits a high inductance when exposed to MRI radiation. Each of the coil layers is electrically connected to the other coil layers to provide parallel conductive paths resulting in a coil conductor resistance suitable for defibrillation lead applications.
370 Citations
20 Claims
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1. An implantable electrical lead, comprising:
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a flexible body having a proximal region including a proximal end, a distal region, and a longitudinal body lumen extending from the proximal end through the distal region; a connector assembly configured to mechanically and electrically connect the implantable electrical lead to an implantable pulse generator; an electrode coupled to the flexible body in the distal region; and a multi-layer coil conductor extending within the longitudinal body lumen from the connector assembly to at least the electrode, the multi-layer coil conductor configured to minimize heat rise when exposed to magnetic resonance imaging (MRI) scans, the multi-layer coil conductor including; a first coil layer including one or more filars wound so as to have a close pitch, the first coil layer having a proximal end at the connector assembly and a distal end at the electrode, the first coil layer electrically connected to the connector assembly and the electrode; and a second coil layer disposed about the first coil layer including one or more filars wound so as to have a close pitch, the second coil layer having a proximal end at the connector assembly and a distal end at the electrode, the second coil layer electrically connected to the connector assembly and the electrode, the second coil layer defining a lumen within which the first coil layer extends from the proximal end to the distal end, wherein the first and second coil layers are electrically coupled to one another at their respective proximal ends and at their respective distal ends to provide parallel conductive paths between the connector assembly and the electrode. - View Dependent Claims (2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12)
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13. An implantable medical lead, comprising:
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a flexible body having a proximal region including a proximal end, a distal region, and a longitudinal body lumen extending from the proximal end through the distal region; a connector assembly configured to mechanically and electrically connect the implantable medical lead to an implantable pulse generator; an electrode coupled to the flexible body in the distal region; and a multi-layer coil conductor extending within the longitudinal body lumen, the multi-layer coil conductor comprising a proximal end at the connector assembly and a distal end at the electrode, the multi-layer coil conductor configured to minimize heat rise when exposed to MRI scans, the multi-layer coil conductor including; an inner coil conductor having a proximal end and a distal end, an outer diameter (OD) and a close pitch, the inner coil conductor electrically connected to the connector assembly and the electrode; a middle coil conductor having a proximal end and a distal end, a close pitch, an inner diameter (ID) greater than the OD of the inner coil conductor, and wherein the middle coil conductor radially surrounds the inner coil conductor along the length of the inner coil conductor from the proximal end to the distal end, the middle coil conductor electrically connected to the connector assembly and the electrode; and an outer coil conductor radially surrounding the middle coil conductor from the proximal end to the distal end, the outer coil conductor having proximal end and a distal end, a close pitch, the outer coil conductor electrically connected to the connector assembly and the electrode, and, wherein the inner coil conductor, the middle coil conductor, and the outer coil conductor are electrically coupled to each other at their respective proximal ends and at their respective distal ends in parallel. - View Dependent Claims (14, 15, 16, 17, 18, 19)
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20. An implantable electrical lead, comprising:
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a flexible body having a longitudinal body lumen; and a multi-layer coil conductor extending within the longitudinal body lumen from a connector assembly to at least one electrode, the multi-layer coil conductor including a first coil layer including one or more filars, and a second coil layer disposed about the first coil layer including one or more filars, wherein the first coil layer comprises a first coil layer proximal end connected to the connector assembly and a first coil layer distal end connected to the at least one electrode, the second coil layer comprises a second coil layer proximal end connected to the connector assembly and a second coil layer distal end connected to the at least one electrode, the first coil layer proximal end is connected to the second coil layer proximal end at or near the connector assembly, and the first coil layer distal end is connected to the second coil layer distal end at or near the at least one electrode such that the first and second coil layers are electrically coupled to one another to provide parallel conductive paths.
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Specification