IP Library › Granted Patent US 11,083,491
Granted Patent B2
US 11,083,491 · App. 14/962,485 · Granted Aug 10, 2021

Extravascular implant tools utilizing a bore-in mechanism and implant techniques using such tools

Inventors: Ronald A. Drake (St. Louis Park, MN); Kevin R. Seifert (Forest Lake, MN); Lester O. Stener (Hudson, WI); Amy E. Thompson-Nauman (Ham Lake, MN)
Assignee: MEDTRONIC, INC.
A61B17/3468A61M25/0194A61N1/0573A61N1/0592A61B2017/320056A61N1/0504A61N1/0563
View Patent ↗
Loading inventors, assignments & file history…
Monitor This Case
Get email alerts when status or documents change.
Order Certified Copies
Most orders are placed with the USPTO same day — all within 24 business hours.
Order via The Patent Place →
Pre-filled with this patent's details
Quick Facts
Patent No.
US 11,083,491
App. No.
14/962,485
Filed
Dec 8, 2015
Granted
Aug 10, 2021
Kind
B2
Art Unit
3771
USPC
606/129
Abstract

Extravascular implant tools that utilize a bore-in mechanism to safely access extravascular locations and implant techniques utilizing these tools are described. The bore-in mechanism may include a handle and a helix extending from the handle. The bore-in mechanism is used, for example, in conjunction with a tunneling tool to traverse the diaphragmatic attachments to access a substernal location. The tunneling tool may be an open channel tunneling tool or a conventional tunneling tool (e.g., metal rod).

Claims (23)

1. An implant tool for implanting an implantable medical lead, implantable catheter or other implantable component within a patient, the implant tool comprising:

an open channel delivery tool that includes:

a delivery tool handle, and

a delivery tool shaft, the delivery tool shaft having:

a proximal end adjacent to the delivery tool handle, and

a distal end, and the delivery tool shaft defining:

an arc-shaped open channel that is open along an entire section of the delivery tool shaft which extends from near the proximal end to the distal end, wherein a cross-section of the entire delivery tool shaft along the entire section is arc-shaped; and

a bore-in mechanism configured to interact with the open channel delivery tool, wherein the bore-in mechanism includes:

a bore-in mechanism handle; and

a helix extending from the bore-in mechanism handle, the bore-in mechanism handle and the helix forming a lumen that extends through the bore-in mechanism handle and the helix and is configured to receive the delivery tool shaft.

2. The implant tool of claim 1 , wherein a distal end of the helix of bore-in mechanism is sharp.

3. The implant tool of claim 1 , wherein a length of the helix extending from the bore-in mechanism handle is between approximately 1.5 and 3.5 inches.

4. An implant tool for implanting an implantable medical lead, implantable catheter or other implantable component within a patient, the implant tool comprising:

a bore-in mechanism that includes:

a bore-in mechanism handle, and

a helix extending from the bore-in mechanism handle, the bore-in mechanism handle and the helix forming a lumen that extends through the bore-in mechanism handle and the helix; and

a tunneling tool that includes a shaft configured to be placed through the lumen of the bore-in mechanism, the shaft having:

a proximal end, and

a distal end, and the shaft defining:

an arc-shaped open channel, wherein the open channel is open along an entire section of the shaft which extends the length of the shaft from near the proximal end to the distal end, and wherein a cross-section of the entire shaft along the entire section is arc-shaped.

5. The implant tool of claim 4 , wherein a distal end of the helix is sharp.

6. The implant tool of claim 4 , wherein the tunneling tool comprises a tunneling tool handle, and wherein the shaft is adjacent to the tunneling tool handle.

7. The implant tool of claim 4 , wherein a length of the helix extending from the bore-in mechanism handle is between approximately 1.5 and 3.5 inches.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 8, 2015
From: DRAKE, RONALD A.; SEIFERT, KEVIN R.; STENER, LESTER O.; THOMPSON-NAUMAN, AMY E.
To: MEDTRONIC, INC.
Reel/Frame 037239/0302 →
Continuity (2)
Provisional Application 62089489 · Dec 9, 2014
Related Publication 20160157890A1 · Jun 9, 2016