IP Library Granted Patent US 10,383,630
Granted Patent B2
US 10,383,630 · App. 15/223,849 · Granted Aug 20, 2019

Surgical stapling device with rotary driven firing member

Inventors: Frederick E. Shelton, IV (Hillsboro, OH); Jeffrey S. Swayze (West Chester, OH); Chester O. Baxter, III (Loveland, OH)
Assignee: Ethicon LLC
A61B17/07207A61B17/068A61B17/295A61B34/30A61B34/37A61B34/74A61B2017/00199A61B2017/00309A61B2017/00314A61B2017/00327A61B2017/00398A61B2017/00464A61B2017/00477A61B2017/00734A61B2017/07257A61B2017/07271A61B2017/07285A61B2017/2903A61B2017/2905A61B2017/2908A61B2017/2923A61B2017/2927A61B2017/2929A61B2017/2931A61B2017/2943A61B2034/306
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Quick Facts
Patent No.
US 10,383,630
App. No.
15/223,849
Filed
Jul 29, 2016
Granted
Aug 20, 2019
Kind
B2
Art Unit
3731
USPC
227/175.1
Abstract

A rotary drive arrangement for a surgical instrument that includes a surgical end effector. In one form, the rotary drive arrangement includes a drive shaft assembly that is selectively axially movable between a first position and a second position. A rotary transmission operably interfaces with the drive shaft assembly such that when the drive shaft assembly is in the first axial position, application of one of the rotary drive motions to the drive shaft assembly causes the rotary transmission to apply a first rotary control motion to the surgical end effector and when the drive shaft assembly is in the second axial position, application of the rotary drive motion to the drive shaft assembly causes the rotary transmission to apply a second rotary control motion to the surgical end effector.

Claims (124)

1. A surgical stapling assembly, comprising:

a shaft assembly;

an articulation joint;

an end effector coupled to said shaft assembly by said articulation joint for selective articulation relative thereto, said end effector comprising:

an anvil;

a staple cartridge comprising a plurality of staples, wherein said staples are movable between unfired positions and fired positions during a staple firing stroke;

a first jaw; and

a second jaw moveable relative to said first jaw; and

a firing system, comprising:

a rotary drive system configured to generate rotary drive motions;

an end effector drive screw configured to receive said rotary drive motions from said rotary drive system; and

a firing member operably coupled with said end effector drive screw, wherein, upon receiving rotary drive motions from said end effector drive screw, said firing member is actuated to perform said staple firing stroke, wherein said firing member comprises:

a body portion;

a cutting member;

a first camming portion engageable with said first jaw; and

a second camming portion engageable with said second jaw,

wherein said body portion of said firing member comprises an internal threaded section threadably engaged with said end effector drive screw, and

wherein said internal threaded section comprises a plurality of rods forming threads of said internal threaded section.

2. The surgical stapling assembly of claim 1 , wherein said staple cartridge comprises a sled assembly actuatable by said firing member and configured to deploy said staples from said staple cartridge, and wherein said sled assembly is not threadably engaged with said end effector drive screw.

3. The surgical stapling assembly of claim 1 , wherein said end effector drive screw comprises:

a proximal bearing segment positioned distal of said articulation joint;

a threaded section; and

a distal thrust bearing.

4. A surgical stapling assembly, comprising:

a shaft assembly;

an articulation joint;

an end effector coupled to said shaft assembly by said articulation joint for selective articulation relative thereto, said end effector comprising:

an anvil;

a staple cartridge comprising a plurality of staples, wherein said staples are movable between unfired positions and fired positions during a staple firing stroke;

a first jaw; and

a second jaw moveable relative to said first jaw; and

a firing system, comprising:

a rotary drive system configured to generate rotary drive motions;

an end effector drive screw configured to receive said rotary drive motions from said rotary drive system; and

a firing member operably coupled with said end effector drive screw, wherein, upon receiving rotary drive motions from said end effector drive screw, said firing member is actuated to perform said staple firing stroke, wherein said firing member comprises:

a body portion;

a cutting member;

a first camming portion engageable with said first jaw; and

a second camming portion engageable with said second jaw,

wherein said body portion of said firing member comprises an internal threaded section threadably engaged with said end effector drive screw, and

wherein said internal threaded section comprises a pair of windows configured to receive a pair of cooperative threaded plugs.

5. The surgical stapling assembly of claim 4 , wherein said staple cartridge comprises a sled assembly actuatable by said firing member and configured to deploy said staples from said staple cartridge, and wherein said sled assembly is not threadably engaged with said end effector drive screw.

6. The surgical stapling assembly of claim 4 , wherein said end effector drive screw comprises:

a proximal bearing segment positioned distal of said articulation joint;

a threaded section; and

a distal thrust bearing.

7. A surgical stapling assembly, comprising:

a shaft assembly;

an articulation joint defining an articulation axis;

an end effector coupled to said shaft assembly by said articulation joint, wherein said end effector is configured to be articulated about said articulation axis relative to said shaft assembly, said end effector comprising:

an anvil;

a staple cartridge comprising a plurality of staples, wherein said staples are configured to be ejected from said staple cartridge during a staple firing stroke;

a first jaw; and

a second jaw moveable relative to said first jaw; and

a firing system, comprising:

a rotary drive system configured to generate rotary drive motions;

a rotary drive shaft configured to receive said rotary drive motions from said rotary drive system; and

a firing member threadably coupled with said rotary drive shaft distal of said articulation joint, wherein, upon receiving rotary drive motions from said rotary drive shaft, said firing member is actuated to perform said staple firing stroke, wherein said firing member comprises:

a body portion;

a cutting member;

a first camming portion extending laterally from said body portion, wherein said first camming portion is engageable with said first jaw; and

a second camming portion extending laterally from said body portion, wherein said second camming portion is engageable with said second jaw,

wherein said body portion of said firing member comprises an internal threaded section threadably engaged with said rotary drive shaft, and

wherein said internal threaded section comprises a plurality of rods forming threads of said internal threaded section.

8. The surgical stapling assembly of claim 7 , wherein said staple cartridge comprises a sled assembly actuatable by said firing member and configured to eject said staples from said staple cartridge, and wherein said sled assembly is not threadably engaged with said rotary drive shaft.

9. The surgical stapling assembly of claim 7 , wherein said rotary drive shaft comprises:

a proximal bearing segment positioned distal of said articulation joint;

a threaded section; and

a distal thrust bearing.

10. A surgical stapling assembly, comprising:

a shaft assembly;

an articulation joint defining an articulation axis;

an end effector coupled to said shaft assembly by said articulation joint, wherein said end effector is configured to be articulated about said articulation axis relative to said shaft assembly, said end effector comprising:

an anvil;

a staple cartridge comprising a plurality of staples, wherein said staples are configured to be ejected from said staple cartridge during a staple firing stroke;

a first jaw; and

a second jaw moveable relative to said first jaw; and

a firing system, comprising:

a rotary drive system configured to generate rotary drive motions;

a rotary drive shaft configured to receive said rotary drive motions from said rotary drive system; and

a firing member threadably coupled with said rotary drive shaft distal of said articulation joint, wherein, upon receiving rotary drive motions from said rotary drive shaft, said firing member is actuated to perform said staple firing stroke, wherein said firing member comprises:

a body portion;

a cutting member;

a first camming portion extending laterally from said body portion, wherein said first camming portion is engageable with said first jaw; and

a second camming portion extending laterally from said body portion, wherein said second camming portion is engageable with said second jaw,

wherein said body portion of said firing member comprises an internal threaded section threadably engaged with said rotary drive shaft, and

wherein said internal threaded section comprises a pair of windows configured to receive a pair of cooperative threaded plugs.

11. The surgical stapling assembly of claim 10 , wherein said staple cartridge comprises a sled assembly actuatable by said firing member and configured to eject said staples from said staple cartridge, and wherein said sled assembly is not threadably engaged with said rotary drive shaft.

12. The surgical stapling assembly of claim 10 , wherein said rotary drive shaft comprises:

a proximal bearing segment positioned distal of said articulation joint;

a threaded section; and

a distal thrust bearing.

13. A surgical stapling assembly, comprising:

a shaft assembly;

an articulation joint defining an articulation axis;

an end effector coupled to said shaft assembly by said articulation joint, wherein said end effector is configured to be articulated about said articulation axis relative to said shaft assembly, said end effector comprising:

a first jaw comprising a staple cartridge, wherein said staple cartridge comprises a plurality of staples configured to be ejected from said staple cartridge during a staple firing stroke; and

a second jaw comprising an anvil, said second jaw moveable relative to said first jaw; and

a firing system, comprising:

a rotary drive system configured to generate rotary drive motions;

a drive screw configured to receive said rotary drive motions from said rotary drive system; and

a firing member threadably coupled with said drive screw distal of said articulation joint, wherein, upon receiving rotary drive motions from said drive screw, said firing member is actuated to perform said staple firing stroke, wherein said firing member comprises:

a body portion;

a cutting member; and

tissue gap controlling means configured to control a distance between said staple cartridge and said anvil during said staple firing stroke,

wherein said body portion of said firing member comprises an internal threaded section threadably engaged with said drive screw, and

wherein said internal threaded section comprises a plurality of rods forming threads of said internal threaded section.

14. The surgical stapling assembly of claim 13 , wherein said staple cartridge comprises a sled assembly actuatable by said firing member and configured to eject said staples from said staple cartridge, and wherein said sled assembly is not threadably engaged with said drive screw.

15. A surgical stapling assembly, comprising:

a shaft assembly;

an articulation joint defining an articulation axis;

an end effector coupled to said shaft assembly by said articulation joint, wherein said end effector is configured to be articulated about said articulation axis relative to said shaft assembly, said end effector comprising:

a first jaw comprising a staple cartridge, wherein said staple cartridge comprises a plurality of staples configured to be elected from said staple cartridge during a staple firing stroke; and

a second jaw comprising an anvil, said second jaw moveable relative to said first jaw; and

a firing system, comprising:

a rotary drive system configured to generate rotary drive motions;

a drive screw configured to receive said rotary drive motions from said rotary drive system; and

a firing member threadably coupled with said drive screw distal of said articulation joint, wherein, upon receiving rotary drive motions from said drive screw, said firing member is actuated to perform said staple firing stroke, wherein said firing member comprises:

a body portion;

a cutting member; and

tissue gap controlling means configured to control a distance between said staple cartridge and said anvil during said staple firing stroke,

wherein said body portion of said firing member comprises an internal threaded section threadably engaged with said drive screw, and

wherein said internal threaded section comprises a pair of windows configured to receive a pair of cooperative threaded plugs.

16. The surgical stapling assembly of claim 15 , wherein said staple cartridge comprises a sled assembly actuatable by said firing member and configured to eject said staples from said staple cartridge, and wherein said sled assembly is not threadably engaged with said drive screw.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 6, 2021
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 056983/0569 →
CHANGE OF NAME Recorded Dec 14, 2017
From: ETHICON ENDO-SURGERY, LLC
To: ETHICON LLC
Reel/Frame 045644/0357 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 17, 2017
From: SHELTON, FREDERICK E., IV; SWAYZE, JEFFREY S.; BAXTER, CHESTER O., III
To: ETHICON ENDO-SURGERY, LLC
Reel/Frame 041287/0267 →
Continuity (2)
Continuation 13536313 · Jun 28, 2012
Related Publication 20160331375A1 · Nov 17, 2016
Cited By (60)
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