IP Library Granted Patent US 11,304,695
Granted Patent B2
US 11,304,695 · App. 15/668,324 · Granted Apr 19, 2022

Surgical system shaft interconnection

Inventors: Frederick E. Shelton, IV (Hillsboro, OH); Gregory J. Bakos (Mason, OH)
Assignee: Cilag GmbH International
A61B17/07207A61B17/068A61B17/115A61B17/29A61B34/30A61B34/70A61B90/98A61B17/00A61B17/04A61B2017/00017A61B2017/0046A61B2017/00075A61B2017/00367A61B2017/00398A61B2017/00407A61B2017/00455A61B2017/00477A61B2017/2927A61B2017/2933A61B2090/0811
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 11,304,695
App. No.
15/668,324
Granted
Apr 19, 2022
Kind
B2
Abstract

A surgical instrument assembly comprising a proximal shaft assembly comprising a proximal drive member and a distal shaft assembly attachable to and detachable from the proximal shaft assembly is disclosed. The distal shaft assembly comprises a distal drive member configured to be coupled to and decoupled from the proximal drive member, wherein the distal drive member is configured to be actuated through a drive stroke by the proximal drive member. The drive stroke comprises a beginning of stroke position, an end of stroke position distal to the beginning of stroke position, and a home position. The proximal drive member and the distal drive member are configured to be coupled to and decoupled from each other when the proximal drive member and the distal drive member are in the home position, wherein the home position is not at the beginning of stroke position or the end of stroke position.

Claims (66)

1. A surgical instrument assembly, comprising:

a proximal shaft assembly comprising a first proximal drive member;

a distal shaft assembly attachable to and detachable from said proximal shaft assembly, wherein said distal shaft assembly comprises a first distal drive member configured to be coupled to and decoupled from said first proximal drive member, wherein said first distal drive member is configured to be actuated through a drive stroke by said first proximal drive member to actuate a function of said surgical instrument assembly, and wherein said drive stroke comprises:

a beginning of stroke position;

an end of stroke position distal to said beginning of stroke position; and

a first home position; and

an end effector,

wherein said first proximal drive member and said first distal drive member are configured to be coupled to and decoupled from each other when said first proximal drive member and said first distal drive member are in said first home position, wherein said first home position is not at said beginning of stroke position or said end of stroke position, wherein said proximal shaft assembly further comprises a second proximal drive member and said distal shaft assembly further comprises a second distal drive member, wherein said second proximal drive member and said second distal drive member are configured to be coupled and decoupled when said second proximal drive member and said second distal drive member are in a second home position, wherein said second proximal drive member and said second distal drive member are movable through a second drive stroke, and wherein said second home position is not at the beginning of said second drive stroke.

2. The surgical instrument assembly of claim 1 , wherein said first home position is proximal to said beginning of stroke position.

3. The surgical instrument assembly of claim 1 , wherein said first home position is distal to said beginning of stroke position and proximal to said end of stroke position.

4. The surgical instrument assembly of claim 1 , wherein said drive stroke further comprises at least one interval drive stroke position corresponding to at least one specific event of said function of said surgical instrument assembly, wherein said at least one interval drive stroke position is distal to said beginning of stroke position and proximal to said end of stroke position, and wherein said first home position is not at said at least one interval drive stroke position.

5. The surgical instrument assembly of claim 1 , further comprising a control system, wherein said first proximal drive member and said first distal drive member are automatically moved to said beginning of stroke position by said control system after said proximal shaft assembly and said distal shaft assembly are attached.

6. The surgical instrument assembly of claim 1 , wherein said first proximal drive member and said first distal drive member are automatically moved to said first home position when said distal shaft assembly is uncoupled from said proximal shaft assembly.

7. The surgical instrument assembly of claim 1 , wherein said proximal shaft assembly and said distal shaft assembly employ a twisting motion to attach and detach said proximal shaft assembly and said distal shaft assembly.

8. The surgical instrument assembly of claim 1 , further comprising a staple cartridge comprising a plurality of staples removably stored therein.

9. The surgical instrument assembly of claim 1 , further comprising a staple firing drive, wherein said staple firing drive includes said first proximal drive member and said first distal drive member, and wherein said beginning of stroke position and said end of stroke position define ends of a staple firing stroke.

10. The surgical instrument assembly of claim 9 , further comprising a control system including an electric motor, wherein said control system is configured to operate said electric motor to move said first proximal drive member and said first distal drive member to said beginning of stroke position after said proximal shaft assembly and said distal shaft assembly are connected.

11. The surgical instrument assembly of claim 10 , wherein said control system is configured to operate said electric motor to automatically move said first proximal drive member and said first distal drive member to said first home position when said distal shaft assembly is uncoupled from said proximal shaft assembly.

12. The surgical instrument assembly of claim 1 , wherein said end effector is movable between an open configuration and a closed configuration, wherein said surgical instrument assembly comprises a closure drive configured to move said end effector into said closed configuration during a closure stroke, wherein said closure drive includes said first proximal drive member and said first distal drive member, and wherein said beginning of stroke position and said end of stroke position define ends of said closure stroke.

13. The surgical instrument assembly of claim 12 , further comprising a control system including an electric motor, wherein said control system is configured to operate said electric motor to move said first proximal drive member and said first distal drive member to said beginning of stroke position after said proximal shaft assembly and said distal shaft assembly are connected.

14. The surgical instrument assembly of claim 13 , wherein said control system is configured to operate said electric motor to automatically move said first proximal drive member and said first distal drive member to said first home position when said distal shaft assembly is uncoupled from said proximal shaft assembly.

15. The surgical instrument assembly of claim 1 , wherein said distal shaft assembly comprises a proximal connection interface which is rotated relative to said proximal shaft assembly to connect said distal shaft assembly to said proximal shaft assembly.

16. A surgical instrument assembly, comprising:

an end effector;

an articulation joint;

a proximal shaft assembly comprising a first proximal drive member; and

a distal shaft assembly attachable to and detachable from said proximal shaft assembly, wherein said distal shaft assembly comprises a first distal drive member configured to be coupled to and decoupled from said first proximal drive member, wherein said first distal drive member is configured to be actuated through a drive stroke by said first proximal drive member to articulate said end effector, and wherein said drive stroke comprises:

a first articulated position where said end effector is fully articulated in a first direction;

a second articulated position where said end effector is fully articulated in a second direction which is opposite said first direction;

an unarticulated position where said end effector is unarticulated, and wherein said unarticulated position is intermediate said first articulated position and said second articulated position; and

a first home position,

wherein said first proximal drive member and said first distal drive member are configured to be coupled to and decoupled from each other when said first proximal drive member and said first distal drive member are in said first home position, wherein said first home position is not at said first articulated position, said second articulated position, or said unarticulated position, wherein said proximal shaft assembly further comprises a second proximal drive member and said distal shaft assembly further comprises a second distal drive member, wherein said second proximal drive member and said second distal drive member are configured to be coupled and decoupled when said second proximal drive member and said second distal drive member are in a second home position, wherein said second proximal drive member and said second distal drive member are movable through a firing stroke, and wherein said second home position is not at the beginning of said firing stroke.

17. The surgical instrument assembly of claim 16 , wherein said first home position is either intermediate said first articulated position and said unarticulated position or intermediate said second articulated position and said unarticulated position.

18. The surgical instrument assembly of claim 16 , further comprising a control system, wherein said first proximal drive member and said first distal drive member are automatically moved to said unarticulated position by said control system after said proximal shaft assembly and said distal shaft assembly are attached.

19. The surgical instrument assembly of claim 16 , further comprising a control system, wherein said first proximal drive member and said first distal drive member are automatically moved to said first home position by said control system when said distal shaft assembly is decoupled from said proximal shaft assembly.

20. The surgical instrument assembly of claim 16 , wherein said proximal shaft assembly and said distal shaft assembly employ a twisting motion to attach and detach said proximal shaft assembly and said distal shaft assembly.

21. The surgical instrument assembly of claim 16 , further comprising a staple cartridge comprising a plurality of staples removably stored therein.

22. A surgical instrument assembly, comprising:

a proximal shaft assembly comprising a proximal drive member; and

a distal shaft assembly attachable to and detachable from said proximal shaft assembly, wherein said distal shaft assembly comprises a distal drive member configured to be coupled to and decoupled from said proximal drive member, wherein said distal drive member is configured to be actuated through a drive stroke by said proximal drive member to actuate a function of said surgical instrument assembly, and wherein said drive stroke comprises:

a beginning of stroke position;

an end of stroke position distal to said beginning of stroke position;

at least one interval drive stroke position corresponding to at least one specific event of said function of said surgical instrument assembly, wherein said at least one interval drive stroke position is distal to said beginning of stroke position and proximal to said end of stroke position; and

a park position, wherein said proximal drive member and said distal drive member are configured to be coupled to and decoupled from each other when said proximal drive member and said distal drive member are in said park position, wherein said park position is not at said beginning of stroke position, said end of stroke position, or said at least one interval drive stroke position, and wherein said park position is proximal to said beginning of stroke position.

23. A surgical instrument assembly, comprising:

a proximal shaft assembly comprising a proximal drive member; and

a distal shaft assembly attachable to and detachable from said proximal shaft assembly, wherein said distal shaft assembly comprises a distal drive member configured to be coupled to and decoupled from said proximal drive member, wherein said distal drive member is configured to be actuated through a drive stroke by said proximal drive member to actuate a function of said surgical instrument assembly, and wherein said drive stroke comprises:

a beginning of stroke position;

an end of stroke position distal to said beginning of stroke position;

at least one interval drive stroke position corresponding to at least one specific event of said function of said surgical instrument assembly, wherein said at least one interval drive stroke position is distal to said beginning of stroke position and proximal to said end of stroke position; and

a park position, wherein said proximal drive member and said distal drive member are configured to be coupled to and decoupled from each other when said proximal drive member and said distal drive member are in said park position, and wherein said park position is not at said beginning of stroke position, said end of stroke position, or said at least one interval drive stroke position, and

a control system, wherein said proximal drive member and said distal drive member are automatically moved to said beginning of stroke position by said control system after said proximal shaft assembly and said distal shaft assembly are attached.

24. A surgical instrument assembly, comprising:

an end effector;

a proximal shaft assembly, comprising:

an elongate shaft insertable through a trocar; and

a first proximal drive member; and

a distal shaft assembly attachable to and detachable from said proximal shaft assembly, wherein said distal shaft assembly comprises a first distal drive member configured to be coupled to and decoupled from said first proximal drive member, wherein said first distal drive member is configured to be actuated through a drive stroke by said first proximal drive member to articulate said end effector, and wherein said drive stroke comprises:

a first articulated position where said end effector is fully articulated in a first direction;

a second articulated position where said end effector is fully articulated in a second direction which is opposite said first direction;

a central position where said end effector is aligned with said elongate shaft such that said end effector can be inserted through the trocar, and wherein said central position is between said first articulated position and said second articulated position; and

a first home position,

wherein said first proximal drive member and said first distal drive member are configured to be coupled to and decoupled from each other when said first proximal drive member and said first distal drive member are in said first home position, wherein said first home position is not at said first articulated position, said second articulated position, or said central position, wherein said proximal shaft assembly further comprises a second proximal drive member and said distal shaft assembly further comprises a second distal drive member, wherein said second proximal drive member and said second distal drive member are configured to be coupled and decoupled when said second proximal drive member and said second distal drive member are in a second home position, wherein said second proximal drive member and said second distal drive member are movable through a firing stroke, and wherein said second home position is not at the beginning of said firing stroke.

25. The surgical instrument assembly of claim 24 , further comprising a control system including an electric motor, wherein said control system is configured to operate said electric motor to move said first proximal drive member and said first distal drive member to said central position after said proximal shaft assembly and said distal shaft assembly are connected.

26. The surgical instrument assembly of claim 25 , wherein said control system is configured to operate said electric motor to automatically move said first proximal drive member and said first distal drive member to said first home position when said distal shaft assembly is uncoupled from said proximal shaft assembly.

27. The surgical instrument assembly of claim 24 , wherein said distal shaft assembly comprises a proximal connection interface which is rotated relative to said proximal shaft assembly to connect said distal shaft assembly to said proximal shaft assembly.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 27, 2021
From: ETHICON LLC
To: CILAG GMBH INTERNATIONAL
Reel/Frame 056601/0339 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 8, 2017
From: SHELTON, FREDERICK E., IV; BAKOS, GREGORY J.
To: ETHICON LLC
Reel/Frame 044069/0932 →
Continuity (1)
Related Publication 20190038279A1 · Feb 7, 2019
Cited By (63)
US 12,185,946 US 12,193,698 US 12,201,339 US 12,207,820 US 12,213,666 US 12,213,670 US 12,213,671 US 12,220,126 US 12,226,099 US 12,226,100 US 12,232,723 US 12,232,724 US 12,239,316 US 12,239,360 US 12,245,764 US 12,245,901 US 12,256,931 US 12,262,888 US 12,262,937 US 12,274,445 US 12,285,166 US 12,285,171 US 12,290,261 US 12,324,579 US 12,324,580 US 12,324,581 US 12,324,585 US 12,336,709 US 12,343,063 US 12,349,961 US 12,357,309 US 12,369,909 US 12,369,912 US 12,383,259 US 12,383,263 US 12,383,267 US 12,408,967 US 12,414,768 US 12,432,790 US 12,433,627 US 12,440,208 US 12,440,209 US 12,440,213 US 12,446,877 US 12,453,557 US 12,453,571 US 12,458,455 US 12,465,363 US 12,465,384 US 12,471,982 US 12,502,171 US 12,521,116 US 12,527,571 US 12,527,575 US 12,533,126 US 12,533,127 US 12,622,721 US 12,636,006 US 12,653,602 US 12,702,409 US 12,702,466 US 12,712,326 US 12,714,425