Circular stapler with controlled tissue compression
There are provided torque limiting mechanisms for use in tissue clamping surgical instruments. The torque limiting mechanisms generally include a driven member, engageable with an approximating mechanism of the surgical instruments, and having a driven surface and a driving member having a driving surface engageable with the driven surface of the driven member. The driving member is rotatable relative to the driven member such that the driving surface of the driving member slips relative to or dissengages from the driven surface of the driven member at a predetermined engagement pressure.
1. A surgical instrument comprising:
a head assembly including first and second clamping members, the first clamping member movable relative to the second clamping member;
an approximating mechanism including a drive screw and a rotatable sleeve, the drive screw operatively coupled to the first clamping member such that rotation of the rotatable sleeve causes translation of the drive screw; and
a torque limiting mechanism including:
a driving member having a driving surface;
a driven member having a driven surface configured for concomitant rotation with the rotatable sleeve, the driving and driven surfaces engaging each other, whereby rotation of the driving surface causes rotation of the driven surface, wherein the driving surface is configured to slip relative to the driven surface at a predetermined torque value;
a biasing member biasing the driving surface toward the driven surface; and
a finger configured to selectively adjust an amount of pressure applied by the biasing member, whereby an amount of pressure applied to the driven surface by the driving surface is selectively adjustable.
2. The surgical instrument according to claim 1 , wherein the torque limiting mechanism further includes indicia to indicate the amount of pressure applied by the biasing member based on a position of the finger.
3. The surgical instrument according to claim 1 , wherein the torque limiting mechanism further includes a slider slidably disposed on the surgical instrument, the slider including the finger.
4. The surgical instrument according to claim 1 , wherein the finger includes a hook configured to selectively engage coils of the biasing member.
5. The surgical instrument according to claim 1 , wherein the drive screw defines a helical groove configured to receive a pin extending from the rotatable sleeve, whereby rotation of the rotatable sleeve causes translation of the drive screw.
6. The surgical instrument according to claim 1 , wherein the driving and driven surfaces have interengaging structures.
7. The surgical instrument according to claim 6 , wherein the interengaging structures have interengaging teeth.
8. The surgical instrument according to claim 6 , wherein the interengaging structures include a detent mechanism.
9. The surgical instrument according to claim 8 , wherein the detent mechanism includes a socket positioned on one of the driving surface and the driven surface and a ball positioned on the other one of the driving surface and the driven surface, the ball being at least partially engageable with the socket.
10. The surgical instrument according to claim 1 , further comprising an approximation knob operatively coupled with the driving surface.
11. The surgical instrument according to claim 10 , wherein the driving surface is movable relative to the approximation knob.
12. The surgical instrument according to claim 1 , wherein the first clamping member includes an anvil.
13. The surgical instrument according to claim 1 , wherein the second clamping member includes a staple cartridge including a plurality of staples.