Robotically-controlled surgical stapling devices that produce formed staples having different lengths
A surgical stapling device that comprises an end effector that is configured to receive various control motions from a robotic system.
1. A stapling system for use with a surgical robot, wherein the stapling system comprises:
a housing, comprising,
an attachment portion configured to be mounted to the surgical robot; and
a drive system configured to receive rotary motions from the surgical robot;
an elongate shaft extending from said housing; and
a loading unit attached to said elongate shaft, wherein said loading unit comprises:
a loading unit shaft extending from said elongate shaft; and
an end effector extending from said loading unit shaft, wherein said end effector comprises:
a first jaw;
a second jaw, wherein said second jaw is movable relative to said first jaw between an open position and a closed position;
an anvil, comprising:
a tissue facing surface;
a plurality of staple forming pockets defined in said tissue facing surface; and
a longitudinal cavity;
a staple cartridge, comprising:
a longitudinal slot;
a first deck surface positioned a first distance from said tissue facing surface when said second jaw is in said closed position;
a second deck surface positioned a second distance from said tissue facing surface when said second jaw is in said closed position, wherein said first distance and said second distance are different;
a plurality of staple cavities; and
a plurality of staples removably stored in said staple cavities; and
a camming member configured to move within said longitudinal slot of said staple cartridge, wherein said camming member is further configured to move within said longitudinal cavity of said anvil.
2. The stapling system of claim 1 , wherein the staple cartridge is replaceable.
3. The stapling system of claim 1 , wherein said drive system comprises a rotary disk configured to receive said rotary motions from the surgical robot.
4. The stapling system of claim 1 , wherein said camming member is operably responsive to said drive system, and wherein said camming member is configured to perform a staple firing stroke.
5. The stapling system of claim 4 , further comprising a firing lockout configured to prevent said camming member from performing said firing stroke unless said second jaw is in said closed position.