Patent classifications
A61B17/105
BUTTRESS ATTACHMENT FOR SURGICAL STAPLING INSTRUMENT
A surgical stapling apparatus includes a handle, a tool assembly, and a staple cartridge. The handle includes an actuation trigger. The tool assembly is operatively coupled to the handle. In addition, the tool assembly includes a first jaw member and a second jaw member. The staple cartridge is releasably supported on the first jaw member. The staple cartridge includes first and second buttress materials and a spring member extending from the staple cartridge. The spring member is configured to support the second buttress material away from the first buttress material.
Stapling system comprising a lockout
A stapling assembly system for use with a surgical stapling instrument is disclosed. The stapling assembly system comprises a shaft portion and a first replaceable cartridge jaw that comprises a first retainer configured to prevent first staple drivers from falling out of said first replaceable cartridge jaw. The stapling assembly system further comprises a second replaceable cartridge jaw that comprises a second retainer configured to prevent second staple drivers from falling out of said second replaceable cartridge jaw. The stapling assembly system further comprises a second jaw comprising an anvil, a firing member configured to engage said first staple drivers during a first firing stroke of said firing member and said second staple drivers during a second firing stroke of said firing member, and a lockout configured to selectively prevent said firing member from being advanced through a said firing stroke.
Powered surgical instrument
A method for deforming a staple comprising a base, a first staple leg, and a second staple leg, wherein the base, the first staple leg, and the second staple leg are positioned within a common plane prior to being deformed, the method comprising positioning the first staple leg within a first cup of a staple pocket, the first cup comprising a first inner surface, applying a first compressive force to the first staple leg to bend the first staple leg toward the base and the second staple leg, contacting the first inner surface with the end of the first staple leg to bend the end of the first staple leg toward a first side of the base, and deforming the first staple leg such that the end of the first staple leg crosses a mid-line of the staple defined between the first staple leg and the second staple leg.
Surgical instrument including a flexible support configured to support a flexible firing member
A surgical instrument that includes an elongate channel that is configured to operably support a surgical staple cartridge therein. In at least one form, an anvil is pivotally coupled to a proximal end of the elongate channel such that the anvil is pivotal about a discrete, non-movable anvil axis defined by the elongate channel. A firing member is configured for axial travel within the elongate channel in response to an application of firing motions thereto. The firing member is configured to movably engage the anvil and the elongate channel to space the anvil relative to the elongate channel at a desired spacing as the firing member is axially driven through the elongate channel. A closure member is configured to move the anvil from an open position to closed positions relative to the elongate channel upon application of closure motions to the closure member.
Firing system lockout arrangements for surgical instruments
A surgical stapling attachment configured to be operably attached to and detached from a surgical robot is disclosed. The surgical stapling attachment comprises an attachment interface, a shaft extending from the attachment interface, and an end effector extending from the shaft. The end effector comprises a firing member, a first closure member, a second closure member, a staple cartridge comprising staples removably stored therein, a cartridge jaw, and an anvil jaw movable relative to the cartridge jaw. The first closure member is configured to be actuated by the surgical robot to move the anvil jaw relative to the cartridge jaw between an unclamped configuration and a first clamped configuration. The second closure member is configured to be actuated by the surgical robot independent of the first closure member to move the anvil jaw relative to the cartridge jaw between the first clamped configuration and a second clamped configuration.
Tissue thickness compensators
A two-part tissue thickness compensator assembly can include a first tissue thickness compensator configured to be positioned relative to an anvil of a surgical stapler, a second tissue thickness compensator configured to be positioned relative to a staple cartridge of the surgical stapler, and a hinge connecting the first tissue thickness compensator to the second tissue thickness compensator. The first and/or second tissue thickness compensators may include additional engagement features, such as a raised ridge that engages a slot in the anvil and/or the staple cartridge. In certain embodiments, the first and/or second tissue thickness compensators may include an encasement that contains a suitable biologic agent. An end effector assembly may be provided for attachment to a surgical instrument that includes, for example, a staple cartridge, an anvil, a first tissue thickness compensator positioned on the anvil, and a second tissue thickness compensator positioned on the staple cartridge.
STAPLE CARTRIDGE ASSEMBLY COMPRISING VARIOUS TISSUE COMPRESSION GAPS AND STAPLE FORMING GAPS
An end effector including an anvil and a staple cartridge assembly is disclosed. The staple cartridge assembly comprises a deck having steps defined thereon for compressing tissue positioned between the anvil and the staple cartridge assembly to different pressures. The staple cartridge assembly further comprises staples having different unformed heights removably stored therein. The staples are deformed against the anvil to different formed heights.
Surgical fastener cartridges with driver stabilizing arrangements
A fastener cartridge for use with a surgical instrument. The cartridge may include a cartridge body that has a series of staple pockets therein. A driver is movably supported in each staple pocket and is configured to operably support at least one surgical staple thereon. In one arrangement, at least some of the drivers may be formed with one or more laterally extending features that are configured to be received in correspondingly-shaped grooves in the cartridge body to provide lateral support to the driver as it is operably moved within the staple pocket. In other arrangements, at least one inwardly-extending features is formed in the inner wall surface of the pocket and is configured to be movably supported within correspondingly-shaped groove in the driver.
ENDOSCOPIC REPOSABLE SURGICAL CLIP APPLIER
The present disclosure relates to endoscopic reposable surgical clip appliers having a shaft assembly. The shaft assembly includes a spindle, pusher bar, and a barrel assembly. The spindle and pusher bar are each translatably supported within the shaft assembly. The barrel cam assembly includes a first portion in mechanical communication with the spindle and a second portion in mechanical communication with the pusher bar. Translation of the spindle effectuates rotation of a portion of the barrel cam assembly and the rotation of the portion of the barrel cam assembly effectuates translation of the pusher bar.
Surgical instrument including an electronic firing lockout
A surgical instrument comprising a housing, a shaft, a loading unit, a firing member configured to perform a firing stroke, a motor, a battery, a firing trigger, a control system, an electronic lockout, and a firing trigger lockout is disclosed. The electronic lockout is configured to prevent the firing member from performing the firing stroke when the loadinq unit is not attached to the shaft. The electronic lockout is further configured to prevent the firing member from performing the firing stroke when the loading unit is attached to the shaft and the loading unit has been at least partially fired. The firing trigger lockout is in a locked position when the loading unit is not attached to the elongate shaft. The firing trigger lockout is in the locked position when the loading unit is attached to the elongate shaft and the loading unit has been at least partially fired.