IP Library Granted Patent US 8,831,749
Granted Patent B2
US 8,831,749 · App. 13/664,959 · Granted Sep 9, 2014

Implantable medical electrical lead conductors and construction methods

Inventors: Gregory A. Boser (Richfield, MN); Peter B. McIntyre (Mounds View, MN); Kevin R. Seifert (Forest Lake, MN)
Assignee: Medtronic, Inc.
A61N1/0563H01R43/02H01R43/04
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Quick Facts
Patent No.
US 8,831,749
App. No.
13/664,959
Granted
Sep 9, 2014
Kind
B2
Abstract

A coiled continuous conductor wire of an implantable medical electrical lead includes a first, electrode length and a second, insulated length, wherein the insulated length of the wire has a radial cross-section defined by a round profile, while the electrode length of the wire has a radial cross-section defined by a flattened profile, a long axis edge of which defines an outer diameter surface of the electrode length. The radial cross-section profile, along the electrode length of wire, is preferably flattened after an entire length of the wire has been coiled.

Claims (30)

1. An implantable medical electrical lead comprising a continuous conductor wire wound in a coil, the conductor wire comprising an insulated length, extending distally from a connector terminal of the lead, and an electrode length, extending distally from the insulated length, and wherein the improvement comprises: the insulated length of the wire having a radial cross-section defined by a round profile, while the electrode length of the wire having a radial cross-section defined by a flattened profile, the flattened profile having a long axis and a short axis, and an outer diameter surface of the electrode length being defined by a long axis edge of the flattened profile;

wherein the electrode length of the conductor wire includes a shunt portion located in proximity to the insulated length.

2. A method for constructing an implantable medical electrical lead, the method comprising:

flattening a radial cross-section profile of at least one round conductor wire along a only first length of an overall length of the wire to form an electrode length, the overall length of the at least one wire having been wound in a coil, and the coil extending from a proximal end thereof to a distal end thereof;

insulating a second length of the overall length of the at least one conductor wire; and

coupling a connector terminal contact to the proximal end of the coil;

wherein the first length of the at least one conductor wire extends proximally from the distal end of the coil; and

and the second length of the at least one conductor wire extends distally from the coupled connector terminal and toward the first length of the conductor wire; and

wherein flattening the radial cross-section of the at least one wire comprises rotary swaging.

3. A method for constructing an implantable medical electrical lead, the method comprising:

flattening a radial cross-section profile of at least one round conductor wire along a only first length of an overall length of the wire to form an electrode length, the overall length of the at least one wire having been wound in a coil, and the coil extending from a proximal end thereof to a distal end thereof;

insulating a second length of the overall length of the at least one conductor wire; and

coupling a connector terminal contact to the proximal end of the coil;

wherein the first length of the at least one conductor wire extends proximally from the distal end of the coil; and

and the second length of the at least one conductor wire extends distally from the coupled connector terminal and toward the first length of the conductor wire; and

further comprising overlaying a portion of an outer surface of the first length of the conductor wire with a dielectric material, after flattening the radial cross-section profile thereof, the portion being located in proximity to the second length of the conductor wire.

4. A method for constructing an implantable medical electrical lead, the method comprising:

flattening a radial cross-section profile of at least one round conductor wire along a only first length of an overall length of the wire to form an electrode length, the overall length of the at least one wire having been wound in a coil, and the coil extending from a proximal end thereof to a distal end thereof;

insulating a second length of the overall length of the at least one conductor wire; and

coupling a connector terminal contact to the proximal end of the coil;

wherein the first length of the at least one conductor wire extends proximally from the distal end of the coil; and

and the second length of the at least one conductor wire extends distally from the coupled connector terminal and toward the first length of the conductor wire; and

further comprising removing a jacket of one or more layers of insulation from the first length of the at least one conductor wire.

5. A method for constructing an implantable medical electrical lead, the method comprising:

flattening a radial cross-section profile of at least one round conductor wire along a only first length of an overall length of the wire to form an electrode length, the overall length of the at least one wire having been wound in a coil, and the coil extending from a proximal end thereof to a distal end thereof;

insulating a second length of the overall length of the at least one conductor wire; and

coupling a connector terminal contact to the proximal end of the coil;

wherein the first length of the at least one conductor wire extends proximally from the distal end of the coil; and

and the second length of the at least one conductor wire extends distally from the coupled connector terminal and toward the first length of the conductor wire; and

further comprising winding the coil to have a first pitch, over the first length, and a second pitch, over the second length, the first pitch being longer than the second pitch.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 31, 2012
From: BOSER, GREGORY A; MCINTYRE, PETER B; SEIFERT, KEVIN R
To: MEDTRONIC, INC.
Reel/Frame 029219/0293 →
Continuity (1)
Related Publication 20140121742A1 · May 1, 2014