IP Library Granted Patent US 8,663,264
Granted Patent B2
US 8,663,264 · App. 13/051,257 · Granted Mar 4, 2014

Reciprocating rotary arthroscopic surgical instrument

Inventors: Peter M. Cesarini (Londonderry, NH); Karen Drucker (Danville, NH); Rafal Jezierski (Boston, MA); Roger R. Cassidy, Jr. (Methuen, MA)
Assignee: Smith & Nephew, Inc.
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Quick Facts
Patent No.
US 8,663,264
App. No.
13/051,257
Granted
Mar 4, 2014
Kind
B2
Abstract

A surgical instrument includes a cutting member with an implement for cutting tissue, and a drive coupled to the cutting member to simultaneously rotate and translate the cutting member in response to a force applied to the drive. A method of cutting tissue includes positioning an outer member such that tissue is located within the outer member, engaging the tissue with an inner member, and simultaneously rotating and translating the inner member to cut the tissue. A tangential cutting force is applied to the tissue with the inner member to mechanically cut the tissue. The inner member is mechanically driven to undergo simultaneous rotation and translation.

Claims (21)

1. A surgical instrument, comprising:

a cutting member including an implement for cutting tissue; and

a drive coupled to the cutting member to simultaneously rotate, translate, and reciprocate the cutting member in response to only a rotational force applied to the drive in a single direction and to cut tissue during simultaneous rotation and translation of the cutting member, wherein the drive includes a drive member having a helical groove, and wherein the cutting member rotates about a longitudinal axis and translates along the longitudinal axis.

2. The surgical instrument of claim 1 , wherein drive member is coupled to the cutting member.

3. The surgical instrument of claim 2 , wherein the drive further includes a translation piece.

4. The surgical instrument of claim 3 , wherein the translation piece is disposed in the helical groove of the drive member such that rotation of the drive member causes the cutting member to translate.

5. The surgical instrument of claim 1 , wherein the helical groove makes at least two revolutions around the drive member and is configured to cause the cutting member to translate in a first direction, directly from a first location to a second location, along an axis of the cutting member while the drive member completes at least two full rotations.

6. The surgical instrument of claim 1 , wherein the helical groove comprises a left-hand threaded helical channel and a right-hand threaded helical channel.

7. The surgical instrument of claim 6 , wherein the left-hand threaded helical channel and the right-hand threaded helical channel blend together at their ends to form a continuous groove such that there is a smooth transition from the left-hand threaded helical channel to the right-hand threaded helical channel.

8. The surgical instrument of claim 7 , wherein the cutting member is received within an outer tubular member, the outer tubular member including a cutting window disposed proximate to a tip of the outer tubular member.

9. The surgical instrument of claim 8 , wherein the cutting window includes an opening in the outer tubular member exposing the cutting member to tissue.

10. The surgical instrument of claim 9 , wherein the right-hand threaded helical channel, the left-hand threaded helical channel, or both make two complete revolutions around the drive member and is configured to cause the cutting member to translate in a first direction, directly from a first location to a second location, along an axis of the cutting member while the drive member completes at least two full rotations.

11. The surgical instrument of claim 9 , wherein translation of the cutting member over a complete translational path of the cutting member requires the cutting member to complete more than one full rotation.

12. A surgical instrument, comprising:

a cutting member including an implement for cutting tissue; and

a drive coupled to the cutting member to simultaneously rotate, translate, and reciprocate the cutting member in response to only a rotational force applied to the drive in a single direction and to cut tissue during simultaneous rotation and translation of the cutting member, the drive including a drive member having a helical groove, the helical groove of the drive member including a left-hand threaded helical channel and a right-hand threaded helical channel, the left-hand threaded helical channel and the right-hand threaded helical channel being blended together at both ends to form a continuous groove, and the left-hand threaded helical channel, the right-hand threaded helical channel, or both making at least two revolutions around the drive member between the blended ends, wherein the cutting member rotates about a longitudinal axis and translates along the longitudinal axis.

13. A surgical instrument, comprising:

a cutting member including an implement for cutting tissue;

a drive coupled to the cutting member to simultaneously rotate, translate, and reciprocate the cutting member in response to only a rotational force applied to the drive in a single direction and to cut tissue during simultaneous rotation and translation of the cutting member, the drive including a drive member having a helical groove extending at least two revolutions around the drive member; and

an outer tubular member, the cutting member being received within the outer tubular member, the outer tubular member including a cutting window disposed proximate to a tip of the outer tubular member.

14. The surgical instrument of claim 13 , wherein the cutting member rotates about a longitudinal axis and translates along the longitudinal axis.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2016
From: SMITH & NEPHEW, INC.
To: COVIDIEN LP
Reel/Frame 039511/0756 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jan 26, 2012
From: CESARINI, PETER M.; JEZIERSKI, RAFAL Z.; DRUCKER, KAREN; CASSIDY, ROGER R.
To: SMITH & NEPHEW, INC.
Reel/Frame 027601/0384 →
Continuity (3)
Continuation 11734674 · Apr 12, 2007
Continuation 09983810 · Oct 26, 2001
Related Publication 20110230904A1 · Sep 22, 2011