IP Library Granted Patent US 8,005,529
Granted Patent B2
US 8,005,529 · App. 12/749,234 · Granted Aug 23, 2011

Systems and methods for internal tissue penetration

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Quick Facts
Patent No.
US 8,005,529
App. No.
12/749,234
Granted
Aug 23, 2011
Kind
B2
Abstract

A medical system includes an inner core and an imager located at the distal end of the inner core, wherein the imager is extendable from within an elongated tubular member and configured to penetrate a body tissue within a living body. The elongated tubular member is configured to slideably receive the inner core. The inner core is configured to rotate radially around a longitudinal axis of the elongated member, and the imager can be configured to image a body tissue and output an image signal to an imaging system communicatively coupled with the imager. The imaging system is configured to generate an image of the body tissue from the image signal of the imager when the imager is rotated and placed into contact with the body tissue.

Claims (27)

1. A medical system, comprising:

a flexible inner core comprising a distal end, the distal end of the inner core comprising an imager configured to generate an image signal and to penetrate body tissue by application of axial force while being rotated;

a flexible elongated tubular member configured to slideably receive act the inner core, the tubular member having a distal end configured to allow the inner core to advance outside the elongated member, the inner core configured to rotate radially about a longitudinal axis of the elongated member, wherein the inner core is movable between a first position where the distal end of the inner core is disposed within the tubular member, and a second position where the inner core distal end is disposed distally of the tubular member distal end;

an imaging system communicatively coupled with the imager and configured to generate an image of the body tissue from the image signal of the imager.

2. The system of claim 1 , wherein a distal end of the imager is configured to penetrate the body tissue.

3. The system of claim 2 , wherein the distal end of the imager is substantially flat.

4. The system of claim 1 , wherein the imaging system comprises a display configured to display the image and facilitate the location of a safe penetration region of the body tissue.

5. The system of claim 1 , further comprising a control system configured to control the rotation of the inner core.

6. The system of claim 5 , wherein the control system is further configured to measure a level of torque applied to the inner core.

7. The system of claim 1 , wherein the elongated member is insertable into a lumen of a body.

8. The system of claim 1 , further comprising a stop device configured to prevent the inner core from advancement greater than a pre-determined length past the distal end of the elongated member.

9. The system of claim 1 , further comprising a gauge configured to gauge the advancement of the inner core past the distal end of the elongated member.

10. The system of claim 1 , further comprising a control system coupled to a proximal end of the inner core and configured to measure a level of torque applied to the inner core when the imager penetrates the body tissue.

11. The system of claim 10 , wherein the control system is further configured to control advancement of the inner core outside the elongated member and to stop advancement of the inner core when a pre-determined level of torque on the inner core is reached.

12. A medical system, comprising:

a flexible inner core comprising a distal end, the distal end of the inner core comprising an imager configured to generate an image signal, the imager having a substantially flat distal end configured to penetrate body tissue by application of axial force while being rotated;

a flexible elongated tubular member configured to slideably receive the inner core, the tubular member having a distal end configured to allow the inner core to advance outside the elongated member, the inner core configured to rotate radially about a longitudinal axis of the elongated member, wherein the inner core is movable between a first position where the distal end of the inner core is disposed within the tubular member, and a second position where the inner core distal end is disposed distally of the tubular member distal end;

an imaging system comprising a display, the imaging system communicatively coupled with the imager and configured to generate and display an image of the body tissue from the image signal of the imager; and

a control system configured to control the rotation of the inner core.

13. The system of claim 12 , wherein the control system is further configured to measure a level of torque applied to the inner core.

14. A medical system, comprising:

a flexible, rotatable inner core comprising a distal end, the distal end of the inner core comprising an imager configured to generate an image signal, the imager having a distal end configured to penetrate body tissue by application of axial force while being rotated;

a flexible elongated tubular member configured to slideably receive the rotatable inner core, the tubular member having a distal end configured to allow the inner core to advance outside the elongated member, wherein the inner core is movable between a first position where the distal end of the inner core is disposed within the tubular member, and a second position where the inner core distal end is disposed distally of the tubular member distal end;

an imaging system communicatively coupled with the imager and configured to generate an image of the body tissue from the image signal of the imager; and

a control system coupled to a proximal end of the inner core and configured to measure a level of torque applied to the inner core when the imager distal end penetrates the body tissue, wherein the control system is further configured to control advancement of the inner core outside the elongated member and to stop advancement of the inner core when a pre-determined level of torque on the inner core is reached.

15. The system of claim 14 , further comprising a gauge configured to gauge the advancement of the inner core past the distal end of the elongated member.

16. The system of claim 14 , further comprising a stop device configured to prevent the inner core from advancement greater than a pre-determined length past the distal end of the elongated member.

Assignments (7)
NUNC PRO TUNC ASSIGNMENT Recorded Jun 7, 2020
From: STRYKER EUROPEAN HOLDINGS I, LLC
To: STRYKER EUROPEAN HOLDINGS III, LLC
Reel/Frame 052861/0001 →
CHANGE OF NAME Recorded Jun 7, 2020
From: STRYKER EUROPEAN HOLDINGS III, LLC
To: STRYKER EUROPEAN OPERATIONS HOLDINGS LLC
Reel/Frame 052860/0716 →
CORRECTIVE ASSIGNMENT TO CORRECT THE INCORRECT LISTED SERIAL NOS. 09/905,670 AND 07/092,079 PREVIOUSLY RECORDED AT REEL: 037153 FRAME: 0241. ASSIGNOR(S) HEREBY CONFIRMS THE NUNC PRO TUNC ASSIGNMENT EFFECTIVE DATE 9/29/2014. Recorded Mar 8, 2016
From: STRYKER MEDTECH LIMITED
To: STRYKER EUROPEAN HOLDINGS I, LLC
Reel/Frame 038043/0011 →
CORRECTIVE ASSIGNMENT TO CORRECT THE INCORRECT SERIAL # 09/905,670 AND 07/092,079 PREVIOUSLY RECORDED AT REEL: 037153 FRAME: 0034. ASSIGNOR(S) HEREBY CONFIRMS THE NUNC PRO TUNC ASSIGNMENT. Recorded Mar 8, 2016
From: STRYKER NV OPERATIONS LIMITED
To: STRYKER MEDTECH LIMITED
Reel/Frame 038039/0001 →
NUNC PRO TUNC ASSIGNMENT Recorded Nov 23, 2015
From: STRYKER NV OPERATIONS LIMITED
To: STRYKER MEDTECH LIMITED
Reel/Frame 037153/0034 →
NUNC PRO TUNC ASSIGNMENT Recorded Nov 23, 2015
From: STRYKER MEDTECH LIMITED
To: STRYKER EUROPEAN HOLDINGS I, LLC
Reel/Frame 037153/0241 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 17, 2011
From: BOSTON SCIENTIFIC SCIMED, INC.
To: STRYKER CORPORATION; STRYKER NV OPERATIONS LIMITED
Reel/Frame 025969/0841 →