Articulation joint having an inner guide
Devices and methods for articulating a distal end of a surgical device are provided. In one exemplary embodiment, the device includes an articulation joint that includes both an inner guide and an outer sleeve. The inner guide includes one channel extending therethrough that receives both a cutting mechanism and a closure band. Further, an outer surface of the inner guide, in conjunction with the outer sleeve, can define two additional channels that each receive an articulation band for articulating an end effector coupled to the articulation joint. The outer surface of the inner guide can include a plurality of ribs that also help define the two additional channels. Further, the outer sleeve can include a plurality of slots formed in it to improve flexibility and stability. Additional configurations of articulation joints, and configurations of components of a surgical device, are also provided, as are methods for using the same.
1 . A surgical method, comprising:
closing opposed jaws of a surgical device on tissue disposed between the jaws to grasp the tissue, the opposed jaws being coupled at a proximal end thereof to a distal end of an articulation joint of the surgical device, the articulation joint being coupled to an elongate shaft of the surgical device and the articulation joint including an outer sleeve and an inner guide disposed radially inward from the outer sleeve;
articulating the opposed jaws with respect to a central longitudinal axis extending through the elongate shaft of the surgical device; and
distally advancing a cutting mechanism through a channel extending through a length of the inner guide and through at least a portion of the opposed jaws to cut the tissue disposed therebetween,
wherein the articulation joint is configured to receive a distally advancing cutting mechanism through a channel formed in the inner guide when the opposed jaw assembly is in a straight configuration, in a fully-articulated configuration, and in a partially-articulated configuration disposed between the straight configuration and the fully-articulated configuration, and
wherein closing the opposed jaws of the surgical device comprises moving a closure band longitudinally through the same channel through which the cutting mechanism extends to actuate one of the jaws toward the other such that the jaws close before the cutting mechanism extends into the jaws.
2 . The surgical method of claim 1 , further comprising applying energy by way of an electrode associated with at least one of the opposed jaws to the tissue disposed between the opposed jaws.
3 . The surgical method of claim 1 , wherein the inner guide includes one or more stiffening elements disposed therein.
4 . The surgical method of claim 3 , wherein distal ends of the one or more stiffening elements are coupled to the proximal end of the opposed jaws.
5 . The surgical method of claim 1 , wherein an outer surface of the inner guide and the outer sleeve define second and third channels of the inner guide, the step of articulating the opposed jaws with respect to a central longitudinal axis extending through the elongate shaft of the surgical device further comprising:
distally advancing a first articulation band coupled to at least one of the opposed jaws through the second channel to cause the opposed jaws to be articulated in one direction away from the central longitudinal axis.
6 . The surgical method of claim 1 , wherein the outer sleeve has a plurality of circumferentially extending slots formed therein.
7 . The surgical method of claim 6 , wherein the plurality of circumferentially-extending slots extend through only a portion of a thickness of the outer sleeve.
8 . The surgical method of claim 6 , wherein the plurality of circumferentially-extending slots extend through an entirety of a thickness of the outer sleeve.
9 . A surgical device, comprising:
a handle portion;
an elongate shaft extending distally from the handle portion;
an articulation joint extending distally from the elongate shaft, the articulation joint defining separate first, second, and third lumens receiving therein a first articulation mechanism, a second articulation mechanism, and a closure member, respectively, the articulation joint including a tube composed of a stiff material and an inner guide positioned in the tube;
an end effector including a pair of jaws configured to engage tissue therebetween;
a first actuator at the handle portion configured to be actuated and thereby cause movement of the first articulation mechanism within the first lumen and the movement of second articulation mechanism within the second lumen, the movement of the first and second articulation mechanisms being configured to cause the articulation joint to bend relative to the elongate shaft such that the end effector articulates relative to the elongate shaft; and
a second actuator at the handle portion configured to be actuated and thereby cause movement of the closure member within the third lumen, the movement of the closure member within the third lumen being configured to cause the jaws to selectively open and close.
10 . The surgical device of claim 9 , wherein the tube of the articulation joint has a plurality of slots formed therein.
11 . The surgical device of claim 9 , wherein the first, second, and third lumens are independent of one another.
12 . The surgical device of claim 9 , further comprising a wire extending along the inner guide, the wire being configured to provide electrical power to an electrode of the end effector.
13 . The surgical device of claim 9 , further comprising a cutting element configured to translate distally along the end effector to cut the tissue engaged by the end effector.
14 . A surgical device, comprising:
a proximal handle;
a distal end effector configured to engage tissue;
an elongate shaft coupled to the proximal handle and to the distal end effector;
a flex region disposed between the distal end effector and the elongate shaft, the flex region including a stiff tube having a plurality of cut-outs, the plurality of cut-outs each extending around a partial circumference of the stiff tube; and
an actuator configured to be actuated to flex the flex region and thereby articulate the distal end effector relative to the elongate shaft and the proximal handle.
15 . The surgical device of claim 14 , wherein the flex region also includes an elongate body located in the stiff tube and a plurality of reinforcements extending along the elongate body that increase a stiffness of the elongate body.
16 . The surgical device of claim 14 , further comprising a cutting element configured to translate distally along the end effector to cut the tissue engaged by the end effector.
17 . The surgical device of claim 14 , wherein the actuator is located at the proximal handle and is configured to be actuated by moving relative to the proximal handle.