IP Library › Granted Patent US 8,690,821
Granted Patent B2
US 8,690,821 · App. 13/681,694 · Granted Apr 8, 2014

Robotic catheter rotatable device cartridge

Inventors: Mark B. Kirschenman (Waverly, MN); Troy T. Tegg (Elk River, MN); John A. Hauck (Shoreview, MN)
Assignee: St. Jude Medical, Atrial Fibrillation Division, Inc.
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Quick Facts
Patent No.
US 8,690,821
App. No.
13/681,694
Granted
Apr 8, 2014
Kind
B2
Abstract

A robotic catheter rotatable device cartridge may include a housing member attachable to a drive mechanism for rotating the cartridge and a catheter attached to the cartridge along an axial direction of the catheter. A slider block may be generally slidable relative to the housing and engaged with one or more steering wires for controlling movement of the catheter in a transverse direction relative to the axial direction. The catheter may include the steering wire(s) engaged therewith and movable in the transverse direction when the slider block is linearly driven in a predetermined direction.

Claims (23)

1. A rotatable device cartridge for a robotic catheter system, the cartridge comprising:

a housing having a longitudinal axis and configured for removable attachment to a drive head mechanism configured to rotate both the cartridge and a catheter coupled to the cartridge around the longitudinal axis;

a first slider block disposed along a first channel in the housing, wherein the first slider block is engaged with a first steering wire and is configured to move linearly parallel to the longitudinal axis to cause deflection of the catheter in a first direction; and

a second slider block disposed along a second channel in the housing, wherein the second slider block is engaged with a second steering wire and is configured to move linearly parallel to the longitudinal axis to cause deflection of the catheter in a second direction.

2. The robotic catheter rotatable device cartridge according to claim 1 , further comprising at least one magnetic mount in the housing configured for engagement with a complementary surface of the drive head mechanism for releasable locking of the cartridge with the drive head.

3. The robotic catheter rotatable device cartridge according to claim 1 , further comprising at least one recess in the housing configured for engagement with at least one complementary locking detent on the drive head mechanism for releasable locking of the cartridge with the drive head mechanism.

4. The robotic catheter rotatable device cartridge according to claim 1 , wherein the second direction is generally opposite the first direction.

5. The robotic catheter rotatable device cartridge according to claim 1 , wherein the first slider block is linearly driveable to pull the first steering wire along a length of the first steering wire and wherein the second slider block is linearly drivable to pull the second steering wire along a length of the second steering wire.

6. The robotic catheter rotatable device cartridge according to claim 1 , further comprising integrated force sensors operatively connected to the housing for permitting active tensioning of the first steering wire and the second steering wire for controlling deflection of the catheter.

7. The robotic catheter rotatable device cartridge according to claim 1 , further comprising integrated force sensors operatively connected to the housing for limiting stress on the catheter by limiting movement of the cartridge.

8. A robotic catheter rotatable device cartridge comprising:

a housing having a longitudinal axis and configured for removable attachment to a drive head configured to rotate the cartridge around the longitudinal axis;

a first element disposed along a first channel of the housing and generally linearly movable parallel to the longitudinal axis, wherein the first element is engaged with a first steering wire and is configured to cause deflection of a surgically insertable device in a first direction; and

a second element disposed along a second channel and generally linearly movable parallel to the longitudinal axis, wherein the second element is engaged with a second steering wire and is configured to cause deflection of the surgically insertable device in a second direction.

9. The robotic catheter rotatable device cartridge according to claim 8 , further comprising at least one magnetic mount in the housing configured for engagement with a complementary surface on the drive head for releasable locking of the cartridge with the drive head.

10. The robotic catheter rotatable device cartridge according to claim 8 , wherein the second direction is generally opposite the first direction.

11. The robotic catheter rotatable device cartridge according to claim 8 , wherein the first element is linearly driveable to pull the first steering wire along a length of the first steering wire and wherein the second element is linearly drivable to pull the second steering wire along a length of the second steering wire.

12. The robotic catheter rotatable device cartridge according to claim 8 , wherein the first element is a slider block.

13. The robotic catheter rotatable device cartridge according to claim 8 wherein the housing comprises a first portion and a second portion.

14. The robotic catheter rotatable device cartridge according to claim 8 wherein the surgically insertable device is one of a catheter, a sheath, and a transseptal needle.

15. The robotic catheter rotatable device cartridge according to claim 8 , wherein the linear movability of the first element is configured to generally eliminate any backlash or discontinuities during driving of the surgically insertable device.

16. The robotic catheter rotatable device cartridge according to claim 8 , further comprising integrated force sensors operatively connected to the housing for permitting active tensioning of the first steering wire and the second steering wire for controlling deflection of the surgically insertable device.

17. The robotic catheter rotatable device cartridge according to claim 8 , further comprising integrated force sensors operatively connected to the housing for limiting stress on the surgically insertable device by limiting movement of the cartridge.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 31, 2013
From: KIRSCHENMAN, MARK B.; TEGG, TROY T.; HAUCK, JOHN A.
To: ST. JUDE MEDICAL, ATRIAL FIBRILLATION DIVISION, INC.
Reel/Frame 029732/0853 →
Continuity (4)
Continuation 12347842 · Dec 31, 2008
Provisional Application 61040143 · Mar 27, 2008
Provisional Application 61099904 · Sep 24, 2008
Related Publication 20130123803A1 · May 16, 2013