Tissue-binding devices
The flexible tissue fastening device addresses the challenge of navigating complex anatomy by using a connector, cartridge holder, and pivotally coupled anvil to deploy staples, ensuring precise and damage-free stapling and cutting in minimally invasive procedures.
Patent Information
- Application Number
- JP2021576547
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2019-07-24
- Filing Date
- 2020-07-23
- Publication Date
- 2025-09-25
- Estimated Expiration
- 2040-07-23
AI Technical Summary
Existing medical staplers, particularly linear staplers with rigid members, struggle to navigate tortuous anatomy without causing tissue damage during laparoscopic and endoscopic procedures.
A flexible tissue fastening device with a connector, cartridge holder, and pivotally coupled anvil, featuring a flexible member and actuation wire to deploy staples, allowing for navigation through complex anatomical paths while minimizing tissue damage.
Enables precise and damage-free stapling and cutting of tissue in minimally invasive procedures by accommodating tortuous anatomical paths, reducing procedural duration and patient irritation.
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Abstract
Description
[Technical Field]
[0001] The present disclosure relates generally to closing tissue. More particularly, at least some embodiments of the present disclosure relate to stapling mechanisms of medical devices, such as endoscopic staplers, and related methods of using the stapling mechanisms. [Background technology]
[0002] Stapling is used in many medical procedures, including, for example, laparoscopic procedures. These procedures often involve resecting a portion or section of tissue followed by closure using staples. An exemplary procedure is colorectal anastomosis. In hybrid surgeries, where physicians perform the procedure using laparoscopic and endoscopic platforms, rigid staplers are often used. Linear staplers, which may include long rigid members, may not be able to be guided through tortuous anatomy without damaging the tissue. Summary of the Invention
[0003] Aspects of the present disclosure relate, inter alia, to systems, devices and methods for fastening tissue. Each of the aspects disclosed herein can include one or more of the features described in connection with any of the other disclosed aspects.
[0004] According to one aspect, a fastening device can include a connector having (1) a portion configured to couple to a distal end of a medical device, (2) a cartridge holder, and (3) an anvil pivotally coupled to the cartridge holder. The cartridge holder and anvil can extend distally from the portion and can be configured to extend distally of a distal-most face of the medical device when the portion is coupled to the distal end of the medical device. A flexible member can be configured to extend through a channel in the medical device. A fastener cartridge including at least one fastener can be coupled to the distal end of the flexible member and can be configured to releasably couple to the cartridge holder.
[0005] In other aspects of the present disclosure, the device can include one or more of the following features. The fastener cartridge can include a protrusion, and the cartridge holder can include a recess configured to receive the protrusion. The recess can be a first recess, the protrusion can be a first protrusion, the fastener cartridge can include a second protrusion, and the cartridge holder can include a second recess configured to receive the second protrusion. The device can include a knife for incising tissue. The knife can be configured to move from a cavity in the cartridge holder through a channel in the fastener cartridge. A distal-most end of the fastener cartridge can be distal to the cavity when the fastener cartridge is coupled to the cartridge holder. The knife can be configured to move proximally from the cavity at a distal portion of the cartridge holder. As the knife moves proximally, the knife can be positioned adjacent to the fastener cartridge and within the channel of the cartridge holder. The knife can include a first proximally-facing sharp edge. The anvil can include a channel configured to receive the knife. The cartridge holder can include a channel that receives the fastener cartridge, and the at least one tongue can extend into the channel. The fastener cartridge can include at least one recess configured to receive the at least one tongue, and the at least one tongue can be positioned within the at least one recess when the fastener cartridge is coupled to the cartridge holder. The anvil can include a distal portion and two spaced-apart proximal portions extending from a proximal end of the distal portion, and each of the two proximal portions can be pivotally coupled to the coupling body. The flexible member can be a first flexible member, and the device further includes a second flexible member coupled to the coupling body and configured to extend to a proximal portion of the medical device, and an actuation wire extending through the second flexible member.The actuation wire can be configured to move the anvil toward and / or away from the cartridge holder. The cartridge holder can include a protrusion at a distal portion thereof, the protrusion configured to contact the anvil when the anvil is moved toward the cartridge holder, stopping movement of the anvil toward the cartridge holder and leaving a space between the fastener cartridge and the anvil. The coupling body can include a flange configured to limit movement of the anvil relative to the cartridge holder. The flexible member can include at least one actuation wire configured to deploy at least one fastener from the fastener cartridge.
[0006] In another aspect, the medical device can include a flexible member configured to extend through a channel of an endoscope, and a stapler cartridge can be coupled to a distal end of the flexible member and can include a plurality of staples. The stapler cartridge can be configured to extend through a channel of the endoscope and can be removably coupled to a cartridge holder.
[0007] In other aspects of the present disclosure, the device can have one or more of the following features: The stapler cartridge can include a protrusion configured to be positioned within a recess of the cartridge holder when the fastener cartridge is coupled to the cartridge holder. The stapler cartridge can define a longitudinal channel configured to receive a knife.
[0008] In another aspect, a medical method can include inserting a flexible medical device into a natural orifice in the body; deploying at least one fastener from a fastener cartridge coupled to a cartridge holder at a distal end of the medical device; disconnecting the fastener cartridge from the cartridge holder while the flexible medical device, cartridge holder, and fastener cartridge are within the body; and removing the fastener cartridge from the body by moving the fastener cartridge proximally through a channel in the medical device.
[0009] In other aspects of the medical methods of the present disclosure, the methods can include one or more of the following features: The fastener cartridge can be a first fastener cartridge, and the method can further include, while the flexible medical device is within the body, moving a second fastener cartridge distally through the channel and coupling the second fastener cartridge to the cartridge holder.
[0010] It is to be understood that both the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the invention, as claimed.
[0011] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate exemplary aspects of the disclosure and, together with the description, serve to explain the principles of the disclosure. [Brief explanation of the drawings]
[0012] [Figure 1] 1 is a perspective view of an exemplary medical device coupled to an endoscope, according to aspects of the present disclosure. [Figure 2] 2 is a perspective view of an exemplary portion of the medical device of FIG. 1 according to an embodiment of the present disclosure. [Figure 3] 2 is a perspective view of an exemplary portion of the medical device of FIG. 1 according to an embodiment of the present disclosure. [Figure 4A]1A-1C are cross-sectional views of a portion of an exemplary interlocking feature of a medical device, according to aspects of the present disclosure. [Figure 4B] 1A-1C are cross-sectional views of a portion of an exemplary interlocking feature of a medical device, according to aspects of the present disclosure. [Figure 4C] 1A-1C are cross-sectional views of a portion of an exemplary interlocking feature of a medical device, according to aspects of the present disclosure. [Figure 5A] 1A-1C are cross-sectional views of a portion of an exemplary interlocking feature of a medical device, according to aspects of the present disclosure. [Figure 5B] 1A-1C are cross-sectional views of a portion of an exemplary interlocking feature of a medical device, according to aspects of the present disclosure. [Figure 5C] 1A-1C are cross-sectional views of a portion of an exemplary interlocking feature of a medical device, according to aspects of the present disclosure. [Figure 6A] 1 is a side view of an exemplary medical device according to aspects of the present disclosure. [Figure 6B] 1 is a side view of an exemplary medical device according to aspects of the present disclosure. [Figure 7] 1 is a side view of an exemplary medical device according to aspects of the present disclosure. [Figure 8] 1 is a perspective view of a portion of an exemplary medical device according to aspects of the present disclosure. [Figure 9] 1 is a perspective view of a portion of an exemplary medical device according to aspects of the present disclosure. [Figure 10A] 1 is a perspective view of a portion of an exemplary medical device according to aspects of the present disclosure. [Figure 10B] 1 is a perspective view of a portion of an exemplary medical device according to aspects of the present disclosure. [Figure 11] FIG. 10C is a side cross-sectional view of a portion of the exemplary medical device shown in FIG. 10B, according to an embodiment of the present disclosure. DETAILED DESCRIPTION OF THE INVENTION
[0013]
[0003] The present disclosure relates, inter alia, to systems, devices, and methods for joining, dissecting, dissecting, and / or resecting tissue. Reference will now be made in detail to aspects of the present disclosure, examples of which are illustrated in the accompanying drawings. Wherever possible, the same or similar reference numerals will be used throughout the drawings to refer to the same or similar parts. The term "distal" refers to the portion of the device farthest from a user when introducing the device into a patient. In contrast, the term "proximal" refers to the portion of the device closest to a user when placing the device in a patient. Throughout the drawings, the distal direction is indicated as an arrow labeled "D," and the proximal direction is indicated as an arrow labeled "P." The term "joining tissue together" can refer, for example, to stapling, securing, attaching, fastening, or otherwise joining two portions of tissue together. The term "fastener" can include staples, clips, elastic bands, sutures, or any other fastener known in the art. As used herein, the term "comprising" or any other variation thereof is intended to cover a non-exclusive inclusion, whereby a process, method, document, or apparatus that comprises recited elements does not necessarily include only those elements, but may include other elements not expressly recited or inherent in such process, method, document, or apparatus. The term "exemplary" is used in the sense of "example" rather than "ideal."
[0014] Embodiments of the present disclosure can be used to visualize, resect, and / or join together targeted tissue in an intraluminal space, or to facilitate the process. In particular, some embodiments combine a tissue resection device with a tissue stapling device. Other embodiments can have a stapling device without a resection mechanism. For example, a device can have a cutting or cutting mechanism (e.g., an integrated knife) and a stapling mechanism (staplers). The device can be coupled to an endoscope, arthroscope, colonoscope, hysteroscope, sheath, catheter, or other medical device and delivered to a targeted tissue site via the device. In some examples, a cartridge holding fasteners, such as staples, can be delivered to the device through the working channel of the medical device to which the device is coupled. All or some portions of the device can be made of metal, plastic, or include a shape memory metal (e.g., nitinol), a shape memory polymer, or any combination of polymers or materials.
[0015] FIG. 1 illustrates a distal portion of a medical device 101 coupled to a distal tip 100 of an endoscope 103, according to one embodiment of the present disclosure. The device 101 may be a surgical stapling device configured to engage body tissue, apply one or more fasteners thereto, and optionally form an incision in the fastened body tissue, during a minimally invasive procedure, such as a laparoscopic or endoscopic procedure. The device 101 may be removably coupled to the distal tip 100 of a medical device, such as an endoscope 103. The tip 100 is covered by a portion of the device 101 in FIG. 1. The device 101 may be used to apply surgical clips or other fasteners, but will be described primarily in the context of applying staples from a staple cartridge positioned on a portion of the body of the device, such as a loading unit.
[0016] As shown in FIG. 1 , the distal section of the device 101 can include a connector or first body 108, a second body 104 coupled to the first body 108, an anvil 102, a cartridge 106, and two elongate bodies 110, 112 extending from the distal section to the proximal section of the device 101. Each elongate body 110, 112 can extend any length suitable for an endoscopic or laparoscopic procedure and, in some instances, can be configured to be positioned adjacent to a radially outer surface of an endoscope 103 or other medical device. The elongate bodies 110, 112 can be coupled at their proximal ends to an actuation assembly, such as a handle having one or more actuators. In some instances, each elongate body 110, 112 can be both flexible and rotatable about its axis, or can be either flexible or rotatable about its axis. The elongate bodies 110, 112 can be positioned within the covering elongate members 113, 114 and can extend through longitudinal lumens in the covering elongate members 111, 113. The covering elongate members 111, 113 can be a polymeric material and can protect the elongate bodies 110, 112 from contacting the interior surface of the patient's body. Each elongate body 110, 112 can have a lumen for positioning an operating wire therein.
[0017] These actuation wires, positioned within one or more lumens of one or more elongate bodies 110, 112, can serve a variety of possible functions. In one exemplary embodiment, the first body 108 can have an internal channel (not shown) through which the elongate bodies 110, 112 (or just the wires 110a, 112a of the bodies 110, 112) extend, whereby the distal ends of those bodies 110, 112 connect with the anvil 102 (to pivot the anvil 102 about pivot point 114) and / or with an actuation mechanism within the second body 104 that deploys staples. The wires 110a, 112a extend from the anvil 102 through lumens within the first body 108 and can provide a means for moving the anvil 102 between an open position (shown in FIG. 1 ) and a closed position in which a portion of the anvil 102 contacts the second body 104. In other examples, wires (e.g., 110a, 112a) can extend from the anvil 102 outside the first body 108. In these examples, the actuation wires (e.g., wires 110a, 112a) can be coupled to locations on the anvil 102 such that movement of the actuation wires causes the anvil 102 to pivot about a first pivot point 114 and a second pivot point (not shown) on the first body 108 opposite the first pivot point 114. In some examples, a biasing member can bias the anvil 102 toward the open position (shown in FIG. 1 ), and pulling one or more wires (e.g., wires 110a, 112a) coupled to the anvil 102 near the pivot point 114 can move the anvil 102 from the open position to the closed position. In some examples, each elongate body 110, 112 can be a Bowden cable, consisting of a wire within a coil / sheath. In some examples, the elongate bodies 110, 112 can be fixedly coupled to the first body 108, and in other examples, the elongate bodies 110, 112 can be detachably or releasably coupled to the first body 108.In some examples (not shown), the device 101 can have only one elongate body 110, 112 or more than two elongate bodies 110, 112.
[0018] The first body 108 can be configured to support the anvil 102 and the second body 104. For example, the distal tip 100 of the endoscope 103 can be inserted into the lumen 129 of the first body 108, and the apparatus 101 can be coupled to the distal tip 100. In some examples, the first body 108 can be annular and partially annular, or annular or partially annular, and can be configured to receive the distal tip 100 of the endoscope 103 or another medical device. In some examples, the first body 108 can have a first annular portion 108a that receives a second annular portion 108b, and the second annular portion 108b can be configured to be coupled to the distal tip 100. The first body 108 can have a first radial protrusion 108c positioned on the radially outermost surface of the second annular portion 108b and a second radial protrusion 108d positioned on the radially outermost surface of the first annular portion 108a. In some examples, additional annular protrusions (not shown) can be positioned on the first body 108. The first annular protrusion 108c and the second annular protrusion 108d can have openings into the interior channel of the first body 108 and can be configured to receive the elongate bodies 110, 112, the covering elongate members 111, 113, and / or the wires 110a, 112a. A distal flange 108f of the first annular portion 108a can be positioned proximate the pivot point 114 to limit rotation of the anvil 102. 2 shows the device 101 with the anvil 102, a portion of the second annular portion 108b, and the elongate members 110, 112 removed. The first body 108 can have a rough or irregular radial inner surface within the lumen 129, which can facilitate coupling the first body 108 to the endoscope 103 via a friction fit or an interference fit.
[0019] In some examples, the distal front surface 120 of the distal tip 100 can contact the proximal surface of the second body 104 when fully inserted into the lumen 129 of the first body 108, thereby causing the body 104 to act as an insertion stop for the endoscope 103.
[0020] The anvil 102 can be rotatably or pivotally coupled to a proximal portion of the first body 108 at one or more pivot points 114. The anvil 102 can be Y-shaped (e.g., having two proximal arms that each extend to a distal portion 132 of the anvil) and can extend distally from the first body 108. In some examples, the anvil 102 can be rotatably biased and biased to an open configuration, i.e., biased away from the body 104 and cartridge 106, creating a space between the distal portion of the anvil 102 and the distal portions of the body 104 and cartridge 106. The anvil 102 can be rotatable to contact the body 104 or to pinch tissue between the anvil 102 and the body 104, providing a surface against which staples can be driven as they are ejected from the cartridge 106. The space 131 between the distal portion 132 of the anvil 102 and the distal front face 120 of the endoscope 103 can provide space for one or more instruments to be positioned distally relative to the distal front face 120 of the endoscope 103 when the anvil 102 is in the closed or open position. For example, the space 131 can allow a user to pull tissue between the anvil 102 and the second body 104, and then the user can actuate the anvil 102 to clamp the tissue between the anvil 102 and the second body 104 without the instrument preventing the anvil 102 from fully closing against the second body 104.
[0021] The second body 104 can be rigidly coupled to the first body 108 and can extend distally from the first body 108. In another example (not shown), the second body 104 can be pivotally coupled to the first body 108 and can rotate relative to the fixed anvil. The second body 104 can be longitudinally aligned with the endoscope 103 when the device 101 is coupled to the endoscope 103, such that a central longitudinal axis of the endoscope 103 is substantially parallel to a longitudinal axis of the second body 104. When the device 101 is coupled to the distal tip 100, the second body 104 can be configured to align with the working channel 116 of the endoscope 103, extend adjacent to the central longitudinal axis of the working channel 116, and / or both. The second body 104 can have one or more cavities in a distal portion thereof, which can be configured to receive one or more actuators, such as an actuation sled or mechanism for deploying staples. The cavities can be within the distal portions 132, 134 and can be configured to hold one or more actuation sleds and / or one or more devices for cutting tissue (e.g., knives). For example, the distal portion 128 of the second body 104 (shown in FIG. 2 with the top surface of the distal portion 128 removed) can be configured to receive a knife 126 for cutting tissue. In some examples, the distal portion 128 can have a pocket 135 configured to receive the knife 126 and prevent the knife 126 from contacting the patient's tissue during insertion of the device into the patient or during certain other procedural steps, such as stapling. The distal portion 128 and the pocket (or cavity) 135 can protrude from the top surface 191 of the cartridge 106, such that when the anvil 102 is in the closed position, it contacts the distal portion 128, thereby forming a gap between the anvil 102 and the top surface 191 of the cartridge 106. By forming a gap between the anvil 102 and the top surface 191, this gap can provide sufficient space for one or more tissue layers.In some examples, the anvil 102 can have a recess (not shown) configured to receive the distal portion 128 of the second body 104 when the anvil 102 is in the closed position.
[0022] In some examples, the second body 104 can have a channel 136 that supports the cartridge 106. The channel 136 can extend along the second body 104 in a direction substantially parallel to a central longitudinal axis of the endoscope 103. The cartridge 106 can house a plurality of surgical fasteners, such as staples, which can be deployed from the cartridge 106 under the influence of a driving force, such as a driving force provided by an actuator moving through or along the cartridge 106. A plurality of spaced-apart longitudinal slots 122 in the cartridge 106 allow the staples to penetrate through the cartridge 106 and into tissue. In some examples, an actuation sled or mechanism, when actuated, can be moved longitudinally proximally from the distal end of the cartridge 106 and second body 104, or of the cartridge 106 or second body 104, to contact the fasteners in the cartridge 106 and push the fasteners through the longitudinal slots 122 to engage the fasteners in tissue. In some examples, the fasteners can be deployed from cartridge 106 in the same or similar manner as disclosed in U.S. Patent Application No. 62 / 812,538, filed March 1, 2019, entitled "Systems, Devices, and Related Methods for Fastening Tissue," the contents of which are incorporated herein by reference in their entirety. The fasteners can penetrate the tissue and contact anvil 102, coupling the fasteners to the tissue. In some examples, a single fastener can extend through each slot 122. Each fastener can be partially within slot 122 prior to deployment to aid in alignment of the fastener with slot 122. In some examples, different actuators can be required to actuate fasteners in different longitudinal rows within cartridge 106.
[0023] The cartridge 106 may also have a longitudinal slot or channel 124. The longitudinal slot 124 may be configured to receive and / or support a cutting instrument, such as a knife 126 or other device for cutting tissue. The longitudinal slot 124 may be positioned in the center of the cartridge 106 and may extend longitudinally from the proximal portion to the distal end of the cartridge 106. In some examples, an equal number of spaced-apart longitudinal slots 122 may be positioned on each side of the longitudinal slot 124. The anvil 102 can have a longitudinally positioned groove (not shown) that can align with the longitudinal slot 124 when the anvil 102 is in a closed position (e.g., the anvil 102 is rotated so that a distal portion of the anvil 102 contacts the second body 104 and / or the cartridge 106, or pinches tissue between the anvil 102 and the body 104), and such groove can be configured to receive a resecting instrument, such as a knife 126 or other sharp dissecting instrument, within the longitudinal slot 124. The dissecting instrument can be actuated by an actuation wire or other mechanism that moves the knife 126 proximally. The cartridge 106 can be rigidly coupled to the second body 104 or can be detachable from the second body 104. In some examples, the cartridge 106 can be integrally formed with the second body 104. Both or either the actuation wire of the actuation sled, which can deploy the fasteners, and the actuation wire which moves the tissue-resecting device (such as knife 126), can extend through one or more of elongate bodies 110, 112 and / or proximal elongate member 144 of cartridge 106.
[0024] FIG. 3 illustrates an exemplary cartridge 106 having slots 122, longitudinal slots 124, channels 152, proximal elongate member 144, and coupling protrusions 125. Channels 152 can extend longitudinally through cartridge 106 and can be configured to receive actuators used to deploy fasteners from slots 122. In some examples, each channel 152 can house an actuator, such as an actuation sled, that can be configured to move from the distal end of cartridge 106 to the proximal end of cartridge 106 and deploy fasteners as it moves proximally. For example, the actuation sled can be a ramp or other component configured to engage staples and extend the staples upwardly through longitudinal slots 122 when moved proximally. Proximal elongate member 144 can be securely coupled to cartridge 106 and can have one or more lumens. The proximal elongate member 144 can be configured to receive one or more actuation wires that extend from the cartridge 106 to a proximal portion of the proximal elongate member 144. In some examples, the proximal elongate member 144 can be flexible and configured to bend and allow movement through tortuous paths in a patient's body. For example, the proximal elongate member 144 can have one or more articulation joints (not shown) that allow the proximal elongate member 144 to bend through tortuous paths. Suitable articulation joints can be any known in the field of medical devices, including endoscopic devices such as endoscopes, that allow for anchoring of the device. In some examples, the proximal end of the proximal elongate member 144 can have a spool-type handle or wheel-type knob configured to deploy fasteners within the cartridge 106, for example, by pulling or rotating the spool-type handle or wheel-type knob to actuate an actuation sled, although any suitable handle or actuator can be used.
[0025] Cartridge 106 can be sized to fit within working channel 116, allowing a user to move cartridge 106 through working channel 116 and couple cartridge 106 to second body 104. In some embodiments, cartridge 106 can be replaceable to deploy additional staples without removing endoscope and device 101 from the patient's body cavity.
[0026] The coupling protrusion 125 can be positioned on a distal portion of the cartridge 106 and can extend from a surface 190 of the second body 104 on a side opposite the surface 191 having the slot 122. The coupling protrusion 125 can be configured to be positioned within a recess 142 of the channel 136. In some examples, the coupling protrusion 125 can be configured to removably couple the cartridge 106 to the second body 104. The coupling protrusion 125 can have recesses 150, 151 that can be configured to receive the protrusion 143 within the recess 142. The coupling protrusion 125 can extend from each side of the cartridge 106 (e.g., substantially perpendicular to the central longitudinal axis of the endoscope 103), such that there is a coupling protrusion 125 on each side of the channel 124, or the coupling protrusion 125 can extend from only one side of the channel 124. In some examples, the interlocking protrusion 125 and / or the recess 142 may be one or more of a boss, protrusion, detent, fin, prong, hook, ball, divot, socket, recess, snap, tab, key, or restraint, or may otherwise form a friction or interference fit. In some examples, the interlocking protrusion 125 may be overmolded. The surfaces defining the recess 142 may be configured to distort, flex, and / or yield as the interlocking protrusion 125 moves within the recess 142 to provide a snap fit between the recess 142 and the interlocking protrusion 125.
[0027] 4A-4C show cross-sectional views of an exemplary coupling mechanism that can be used to couple coupling protrusion 125 within recess 142. In FIG. 4A, coupling protrusion 125 of cartridge 106 is being inserted into recess 142. As shown in FIG. 4B, when coupling protrusion 125 contacts protrusions 401, 402 within recess 142, sidewalls / surfaces 404, 405 forming recess 142 elastically deflect or expand outward from the central longitudinal axis of recess 142 (indicated by arrows in FIG. 4B) until recesses 150, 151 align with protrusions 401, 402. Once protrusions 401, 402 are positioned within recesses 150, 151, coupling protrusion 125 is sufficiently coupled within recess 142 to withstand forces applied during a medical procedure and remain within recess 142. 5A-5C show cross-sectional views of additional exemplary coupling mechanisms that can be used to couple coupling protrusion 125 within recess 142, substantially similar to the coupling mechanism shown in FIGS. 4A-4C. In FIGS. 5A-5C, a portion of the material forming channel 142 expands outward as coupling protrusion 125 is inserted into recess 142. The material forming channel 142 can be biased to cause protrusions 501, 502 to move or snap into recesses 150, 151, coupling coupling protrusion 125 within recess 142. To position coupling protrusion 125 within recess 142 and thus couple cartridge 106 to second body 104 within channel 136, a user can couple cartridge 106 to second body 104 by pulling, pushing, rotating, or otherwise moving proximal elongate member 144, or by using a separate instrument inserted into the endoscope channel. Similarly, the user can pull, push, rotate or otherwise move the proximal elongate member 144, or use a separate instrument, to release the cartridge 106 from the second body 104.By providing a releasable coupling mechanism between the cartridge 106 and the second body 104, a user can use the working channel 116 to replace the cartridge without removing the device 101 and endoscope 103 from their position within the patient's body, which can prevent irritation or injury to the patient during the procedure and can reduce the overall procedure duration.
[0028] Prior to using device 101 in a procedure, a user can couple device 101 to endoscope 103 and position proximal elongate member 144 with cartridge 106 within working channel 116. In some examples, a user can first couple first body 108 to distal tip 100 of endoscope 103, then position proximal elongate member 144 within working channel 116 and couple cartridge 106 to channel 136 of second body 104. To use device 101, cartridge 106 is positioned within channel 136 to deploy fasteners from cartridge 106. A user can use device 101 to attach one or more fasteners to tissue by first positioning tissue within the active area of device 101 between anvil 102 and second body 104. Once tissue is positioned within the active area of the device 101, a user can actuate the actuators through one or more of the elongate bodies 110, 112, as described above, which can then close the anvil 102 against the tissue positioned within the active area. While the user holds the anvil 102 in the closed position, thus maintaining the stapler device's hold on the tissue, the user can deploy one or more staples from the slots 122, for example, by pulling proximally on the actuator and translating an actuation wire coupled to an actuation sled within the cartridge 106 or second body 104. When the actuation sled or mechanism is translated proximally via the actuation wire, the actuator can push fasteners through the longitudinal slots 122 and penetrate the tissue. Once the fasteners are deployed by the actuator, they can then engage the anvil 102 and join layers of tissue together. In some examples, the actuator can actuate an actuation wire connected to both the actuation sled or mechanism and the cutting instrument (such as knife 126), causing both the actuation sled and the cutting instrument to translate simultaneously, penetrating and fastening the tissue with one or more fasteners, and cutting the tissue.
[0029] 6A and 6B show side views of a device 601 similar to device 101, having an anvil 602, a first body 608, a second body 604, and a proximal elongate member 644 of a cartridge (not shown) extending through the second body 604. As shown in FIGS. 6A and 6B, the proximal elongate member 644 can be fed rearwardly through a working channel 610 of an endoscope 603 when the device 601 is coupled to the endoscope 603. The distal front surface 620 can contact a portion of the device 601 when the first body 608 is coupled to the distal tip of the endoscope 603.
[0030] FIG. 7 illustrates an alternative embodiment of a cartridge 706 and proximal elongate member 761 extending from a working channel 716 of a distal end 700 of a medical device. The cartridge 706 can have a coupling protrusion 725 having any one or more features of the coupling protrusion 125. The surface of the cartridge 706 can have cuts, slots, ridges, or other features that add flexibility to the cartridge 706, allowing it to more easily extend through the channel 716. The cartridge 706 can be coupled to the proximal elongate member 761 via a coupler 763. The coupler 763 can be mated with the cartridge 706 and releasable via an actuator. In some examples, the coupler 763 can have a feature 726 overmolded to the shape of the cartridge 706, and the overmolded feature 726 can be cylindrical. In some examples, the overmolded feature 726 of the coupler 763 can be overmolded to the shape of the cartridge 706, such that when the cartridge 706 is closed against tissue, the tension applied to the entire assembly by the operator overcomes the material strength of the coupler 763 and can therefore push the elongated member 761 into the material of the coupler 763, which can then release the cartridge 706.
[0031] 8 shows a perspective view of a portion of second body 804, which is substantially similar to second body 104. Cartridge 806 is shown coupled to second body 804, with knife 826 moving from a cavity in a distal portion 828 of second body 804 into channel 824 of cartridge 806. Knife 826 can be moved through channel 824 to incise the patient's tissue before, during, or after fasteners are deployed from cartridge 806 and into the patient's tissue. Knife 826 has a proximally facing cutting edge 833 and a blunt or otherwise atraumatic distally facing edge 835, which can prevent undesired incision of tissue during operation as the device is moved distally.
[0032] FIG. 9 shows a perspective view of an alternative embodiment of a second body 904 for use in a device substantially similar to device 101. In FIG. 9, a cartridge 906 is positioned on only one side of a channel 924 and extends parallel to the channel 924. The channel 924 receives a knife 926 from a cavity or pocket 940 in a distal portion 928 of the second body 904. By providing a cartridge 906 on only one side of the channel 924, a user can excise tissue from a patient and fasten or staple only a single side of the incised tissue. Either the second body 804 or the second body 904 can incorporate any of the features described above in connection with device 101 and / or have any of the features described above in connection with device 101.
[0033] 10A and 10B show perspective views of a portion of a device 1001 that can have any of the features described above in connection with device 101. The device 1001 can have a first body 1008, a second body 1004, a cartridge 1006 having a fastener slot 1022, and a channel 1024 configured to receive a knife 1026. The second body 1004 can have a channel 1036 configured to receive the cartridge 1006. A pair of flanges or tongues 1075, 1076 can extend from a surface defining the channel 1036 and can be flexible. The tongues 1075, 1076 can be configured to flex to allow a user to slide the cartridge 1006 within the channel 1036, and the tongues 1075, 1076 flex when a bottom surface 1080 of the cartridge 1006 moves distally and contacts the surface defining the channel 1036. When recesses 1078 in bottom surface 1080 align with tongues 1075, 1076, tongues 1075, 1076 can spring and move into recess 1078, or can spring or move into recess 1078. Tongues 1075, 1076 can have curved distal portions 1077 (shown in FIG. 11 ). Curved distal portion 1077 can be configured to slide along the surface of cartridge 1006 and facilitate positioning of tongues 1075, 1076 into recesses 1078 of cartridge 1006. Curved distal portion 1077 can curve downward, away from channel 1036. In some examples, the curved distal portion 1077 can facilitate proximal movement of the cartridge 1006 by deflecting the tongues 1075, 1076 downward and away from the channel 1036 when the distal surface 1097 of the recess 1078 contacts the tongues 1075, 1076 as the cartridge 1006 is moved proximally. Lip protrusions 1070, 1071 can extend into the distal portion of the channel 1036 above the top surface of the inserted cartridge 1006 to retain the cartridge 1006 within the channel 1036.For example, a user can slide cartridge 1006 within channel 1036 and bend tongues 1075, 1076 when moving cartridge 1006 distally to position a distal portion of cartridge 1006 beneath lip projections 1070, 1071 (shown in FIG. 11 in a cross-sectional view along line 11-11 in FIG. 10B ). Recess 1078 of cartridge 1006 can be positioned such that tongues 1075, 1076 are received by recess 1078 when a distal portion of cartridge 1006 is positioned beneath lip projections 1070, 1071. The combination of tongues 1075, 1076 positioned within recess 1078 and lip projections 1070, 1071 on cartridge 1006 can retain cartridge 1006 within channel 1036. The recess 1078 in the bottom surface 1080 can have an angled proximal surface 1096 and an angled distal surface 1097, where the angled distal surface 1097 can be at an angle less than 90 degrees relative to the longitudinal axis of the cartridge 1006. In some examples, the angled distal surface 1097 can be positioned at an angle relative to the longitudinal axis of the cartridge 1006 that is greater than the angle of the proximal surface 1096 relative to the longitudinal axis. The distal surface 1097 can be angled at a higher angle relative to the proximal surface 1096, such that a greater force is required to remove the cartridge 1006 from the channel 1036 of the second body 1004 (e.g., by moving the cartridge 1006 proximally) compared to the force required to insert the cartridge 1006 into the channel 1036 (e.g., to position the tongues 1075, 1076 within the recess 1078 by moving the cartridge 1006 distally). An intermediate surface 1098 of the recess 1078 can be positioned between the proximal surface 1096 and the distal surface 1097 , and the intermediate surface 1098 can be substantially parallel to the longitudinal axis of the cartridge 1006 .
[0034] 10B , some embodiments of the device can have a knife 1026 positioned proximal to the distal end of the cartridge 1006, including proximal to some of the distal-most slots 1022 and associated fasteners. By positioning the knife 1026 at a starting position proximal to the end of the cartridge 1006 and proximal to the distal-most slot 1022 of the cartridge 1006, a user can staple the entire length of tissue to be incised as the knife 1026 is moved proximally. For example, a user can grasp tissue between the second body 1004 and an anvil (similar to the anvil 102) and staple the tissue together, and then actuate the knife 1026 and move it proximally to incise a portion of tissue adjacent to the portion of tissue being stapled without incising beyond the distal end of the stapled tissue. Additionally, the distal front surface 1028 of the second body 1004 can be distal to the knife 1026 and can prevent the knife 1026 from contacting tissue when the knife 1026 is positioned at the distal end of the channel 1024. For example, the distal front surface 1028 can extend radially inward relative to a central longitudinal axis of the second body 1008 and, in some instances, can be angled to align with the edge of the knife 1026.
[0035] Each of the above-described instruments and devices can be used to visualize, join, and / or cut tissue. In some examples, a user can load the proximal elongate member 144 of the cartridge 106 into the working channel of the endoscope by feeding the proximal elongate member 144 back through the distal end of the working channel of the endoscope and positioning a portion of the proximal elongate member 144 within the working channel. Once the proximal elongate member 144 is positioned within the working channel, a handle assembly or actuation assembly can be coupled to the proximal end of the proximal elongate member 144. In another example, a user can couple cartridge 106 to second body 104 by moving cartridge 106 and proximal elongate member 144 from a proximal portion of endoscope 103 through working channel 116 and moving a proximal portion of proximal elongate member 144 through working channel 116 to move cartridge 106 within channel 136 and coupling protrusion 125 within recess 142. The user can then introduce endoscope 103 into the patient's body and move endoscope 103 toward the target area. The user can use the endoscope to locate a target area (such as a tumor or other diseased tissue) within the subject's body cavity by directly visualizing the target area using an image sensor. Once the distal end of the endoscope is positioned at the target area, the user can actuate device 101 to move anvil 102 to the open position, creating space between stapler anvil 102 and second body 104. The user can then move tissue from a target area between or near the active portions of the apparatus 101, for example, the space between the anvil 102 and second body 104 of the stapler device. The user can use a tissue capturing device, such as a grasper, positioned within the working channel 116 of the endoscope 103 to pull the tissue up to the active portion of the apparatus 101. Once the tissue is positioned within the active portion of the stapler device, the user can move the anvil 102 of the stapler device to a closed position and clamp the grasped tissue with the apparatus 101.The user can then actuate the actuator to pull the actuation wire, thus moving the actuation sled of the device proximally. By moving the actuation sled or mechanism proximally via the actuator, the user can deploy fasteners from the cartridge 106 into the clamped tissue and against the anvil 102. In some examples, the user can actuate the knife 126 in the device 101 to incise portions of the targeted tissue before or after fastening the tissue together with the fasteners.
[0036] A stapler instrument according to an exemplary embodiment has a fastener cartridge that can be removed and replaced during a procedure through a working channel of a medical device. Use of such an instrument can reduce the duration of a procedure and limit irritation and / or injury to a patient resulting from repeated removal and reinsertion of a medical device into the patient's body caused by the need to replace the stapler's fastener cartridge. Endoscopic stapling can be particularly useful in outpatient endoscopic procedures. The scope of the present disclosure is defined by the appended claims, not by the ability to solve a particular problem.
[0037] It will be apparent to those skilled in the art that various modifications and variations can be made in the disclosed devices and methods without departing from the scope of the disclosure. Other aspects of the disclosure will be apparent to those skilled in the art from consideration of the specification and practice of the features disclosed herein. It is intended that the specification and examples be considered as illustrative only.
Claims
1. A linker, a coupling portion that removably couples to a distal end of an endoscope; A cartridge holder; the coupling body including an anvil pivotally coupled to the cartridge holder, the cartridge holder and the anvil extending distally from the coupling portion and configured to extend distally of a distal-most face of the endoscope when the coupling portion is coupled to the distal end of the endoscope; a flexible member extending through a working channel of the endoscope; a fastener cartridge coupled to a distal end of the flexible member, the fastener cartridge comprising at least one fastener, the fastener cartridge being configured to be releasably coupled to the cartridge holder, the fastener cartridge being configured such that decoupling of the fastener cartridge from the cartridge holder decouples the flexible member from the coupling body, and decoupling of the fastener cartridge from the cartridge holder decouples the flexible member from the coupling body such that the flexible member and the fastener cartridge can move proximally through the working channel after decoupling of the fastener cartridge from the cartridge holder.
2. The device of claim 1 , wherein the fastener cartridge includes a protrusion, and the cartridge holder has a recess configured to receive the protrusion.
3. 3. The device of claim 2, wherein the recess is a first recess, the protrusion is a first protrusion, the fastener cartridge has a second protrusion, and the cartridge holder has a second recess configured to receive the second protrusion.
4. The device of any one of claims 1 to 3, further comprising a knife for cutting tissue.
5. The device of claim 4 , wherein the knife is configured to move from a cavity in the cartridge holder through a channel in the fastener cartridge.
6. The device of claim 5 , wherein a distal-most end of the fastener cartridge is distal relative to the cavity when the fastener cartridge is coupled to the cartridge holder.
7. 5. The device of claim 4, wherein the knife is configured to move proximally from a cavity in a distal portion of the cartridge holder, and as the knife moves proximally, the knife is positioned adjacent to the fastener cartridge and within a channel of the cartridge holder.
8. The device of any one of claims 4 to 7, wherein the knife has a first proximally facing sharp edge.
9. The device according to any one of claims 4 to 8, wherein the anvil has a channel for receiving the knife.
10. The cartridge holder a channel for receiving the fastener cartridge; at least one tongue extending into the channel; A device according to any one of claims 1 to 9, wherein the fastener cartridge has at least one recess for receiving the at least one tongue, and the at least one tongue is positioned within the at least one recess when the fastener cartridge is connected to the cartridge holder.
11. 11. The device of claim 1, wherein the anvil has a distal portion and two spaced apart proximal portions extending from a proximal end of the distal portion, each of the two proximal portions pivotally connected to the coupling body.
12. The flexible member is a first flexible member, and the device is a second flexible member connected to the connector and extending to a proximal portion of the endoscope; 12. The device of claim 1, further comprising an actuation wire extending through the second flexible member, the actuation wire configured to move the anvil towards and / or away from the cartridge holder.
13. The device of any one of claims 1 to 12, wherein the cartridge holder has a protrusion on a distal portion thereof, the protrusion being configured to contact the anvil when the anvil is moved toward the cartridge holder, stop the movement of the anvil toward the cartridge holder, and leave a space between the fastener cartridge and the anvil.
14. A device according to any preceding claim, wherein the coupling body has a flange for limiting movement of the anvil relative to the cartridge holder.
15. The device of any one of claims 1 to 14, wherein the flexible member has at least one actuation wire configured to deploy the at least one fastener from the fastener cartridge, the cartridge being a first cartridge, and wherein (i) after the first cartridge is decoupled from the cartridge holder and moved proximally through the working channel to remove the first cartridge, the cartridge holder remains distal to the working channel of the endoscope, and (ii) after the first cartridge is removed from the working channel, the cartridge holder is configured to couple to a second cartridge extended distally through the working channel.
Citation Information
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