Patent classifications
A61B17/0686
MULTIPLE-SENSOR FIRING LOCKOUT MECHANISM FOR POWERED SURGICAL STAPLER
A surgical stapling instrument includes a shaft assembly, an end effector at a distal end of the shaft assembly and having a first jaw with an anvil and a second jaw operable to cooperate with the first jaw to clamp tissue, and a cartridge inserted into the second jaw. The cartridge includes staples, a movable member translatable distally during a firing stroke to discharge the staples into tissue, a first sensor assembly configured to monitor a first condition of the cartridge, and a second sensor assembly configured to monitor a second condition of the cartridge. A first processor is coupled with the first and second sensor assemblies and is configured to receive first and second signals from the sensor assemblies, respectively, where each signal is indicative of the respective condition of the cartridge. The first processor is configured to selectively permit or restrict the firing stroke based upon the signals.
FIRING BAILOUT SYSTEM FOR POWERED SURGICAL STAPLER
A surgical instrument includes a body, a shaft assembly, an end effector, an actuation assembly, and a bailout mechanism. The shaft assembly extends distally from the body. The end effector is disposed on a distal end of the shaft assembly and includes a first jaw and a second jaw. The actuation assembly includes a pusher member configured to move relative to the end effector to drive movement of the first jaw, the second jaw, or both the first jaw and the second jaw. The bailout mechanism includes a first elongate actuation element and a second elongate actuation element. A portion of the bailout mechanism is configured to selectively apply tension to the first elongate actuation element and the second elongate actuation element to move the pusher member. The first elongate actuation element is stronger in tension than the second elongate actuation element cable.
ADJUSTABLE POWER TRANSMISSION MECHANISM FOR POWERED SURGICAL STAPLER
A surgical instrument includes a body, a shaft assembly, an end effector, a stapling assembly, and a drive system. The shaft assembly extends distally from the body. The end effector is disposed on a distal end of the shaft assembly and includes a first jaw and a second jaw. The stapling assembly is supported by one of the first jaw or the second jaw of the end effector. The drive system includes a shift mechanism configured to selectively modify a mechanical advantage of a drive input driven by a motor and used to power one or more functions associated with operation of the end effector.
MULTI-THRESHOLD MOTOR CONTROL ALGORITHM FOR POWERED SURGICAL STAPLER
A surgical instrument includes a shaft assembly, an end effector, a driving assembly, at least one motor, and a motor controller. The at least one motor is configured to actuate the driving assembly to deploy staples. The motor controller is in communication with the motor. The motor controller is configured to determine whether values of first and second trigger variables exceed predetermined thresholds. The motor controller is configured to modify at least one motor control parameter in response to determining that the values of the first and second trigger variables exceed the predetermined thresholds. The motor control parameters include a motion profile instituted by the motor controller for the motor, a waiting period during which power to the motor is reduced or stopped, or the predetermined threshold relating to current or force for proximal retraction to be different from the predetermined threshold relating to current or force for distal advancement.
PROXIMALLY LOCATED FIRING LOCKOUT MECHANISM FOR SURGICAL STAPLER
A surgical instrument includes a shaft assembly, an end effector, a firing system, and a firing lockout assembly. The end effector is operatively coupled with the shaft assembly. The end effector includes first and second jaws. The first jaw includes an anvil. The second jaw is configured to removably receive an unspent staple cartridge. The firing system extends through at least a portion of the shaft assembly and the end effector. The firing lockout assembly is selectively coupled with the firing system. The firing lockout assembly is disposed proximal to the end effector. The firing lockout assembly is configured to allow actuation of the firing system in an unlocked configuration in response to the unspent staple cartridge being coupled with the second jaw; and inhibit actuation of the firing system in a locked configuration in response to the unspent staple cartridge being absent from the second jaw.
METHODS OF OPERATING A ROBOTIC SURGICAL STAPLER
A method of operating a robotically controlled surgical instrument that includes an end effector, a driving assembly, and a lockout, the method includes inhibiting actuation of the driving assembly when the lockout is in a locked configuration in response to an unspent staple cartridge being absent from a first jaw of the end effector. The method also includes inserting the unspent staple cartridge into the first jaw of the end effector to switch the lockout to an unlocked configuration. The method also includes actuating the driving assembly to pivot the first jaw, which includes the staple cartridge, toward a second jaw of the end effector to at least one of staple or cut tissue with the end effector when the lockout is in the unlocked configuration.
Small diameter linear surgical stapling apparatus
A surgical stapling apparatus includes a housing assembly and an adapter assembly. The adapter assembly defines a longitudinal axis and is selectively attachable to the housing assembly. The adapter assembly includes an end effector and an articulation assembly. The articulation assembly includes an articulation drive screw, an articulation nut threadedly mounted to the articulation drive screw, an articulation yolk coupled to the articulation nut, and an articulation tube that is positioned to move in response to movement of the articulation nut. Movement of the articulation tube causes the end effector to articulate relative to the longitudinal axis.
Staple cartridge with knife
A surgical stapling device includes cartridge assembly having a replaceable staple cartridge. The replaceable staple cartridge includes a knife having a cutting blade that is movable between a shielded position and an exposed position in response to advancement of a drive assembly of the stapling device. In aspects of the disclosure, the knife is pivotably coupled to an actuation sled of the cartridge assembly and is biased by a resilient finger on the actuation sled to move the cutting blade to the shielded position.
Surgical stapling device with optimized drive assembly
A surgical stapling device includes a tool assembly that includes a drive assembly having a drive member and a working end. The working end of the drive assembly has a I-beam configuration and includes a first beam, a second beam, and a strut interconnecting the first beam and the second beam. The strut defines a slot. The drive member includes a distal portion that is press-fit into the slot in the strut to secure the working end to the drive member.
SURGICAL BUTTRESS ATTACHMENT ASSEMBLIES FOR SURGICAL STAPLING APPARATUS
Surgical buttress attachment assemblies for surgical stapling apparatus include a staple cartridge and a surgical buttress releasably secured to the staple cartridge. The staple cartridge includes buttress attachment features, such as posts, covers, and/or slots, and the surgical buttress are configured to engage the buttress attachment features of the staple cartridge.