Apparatus, system and method for instrument accessories - Patents.com

The instrument attachment with an expandable member addresses the challenge of stabilizing medical devices during duodenal endoscopy by expanding within the body lumen to prevent movement and facilitate accurate cannulaization into the bile duct, enhancing surgical efficiency and effectiveness.

JP7673079B2Active Publication Date: 2025-05-08BOSTON SCIENTIFIC SCIMED INC
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Patent Information

Application Number
JP2022546088
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Priority Date
2020-02-04
Filing Date
2021-02-02
Publication Date
2025-05-08
Estimated Expiration
2041-02-02

AI Technical Summary

Technical Problem

During duodenal endoscopy, endoscopy, and colonoscopy surgeries, the movement within the duodenum makes it difficult to achieve positioning and stabilizing the medical device, and cannulaization into the bile duct can be challenging due to duodenal peristalsis and the need for high accuracy in navigating through the nipple valve.

Method used

The use of an instrument attachment with an expandable member that includes a constraining element and an expandable material, such as a sponge, which can be expanded within the body lumen to prevent movement of the medical device and maintain frictional contact, thereby stabilizing the device and facilitating cannulaization.

Benefits of technology

The expandable member effectively stabilizes the medical device within the duodenum, preventing movement and allowing for accurate cannulaization into the bile duct, thereby improving the effectiveness and efficiency of the surgical procedures.

✦ Generated by Eureka AI based on patent content.

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Abstract

In its various aspects, the present invention relates to an instrument attachment device, implementation method, and associated delivery system. The present invention enhances the effectiveness and efficiency of endoscopic procedures, such as endoscopic retrograde cholangiopancreatography (ERCP). One example includes an instrument attachment device with an expandable member, the device configured to receive an instrument through an instrument lumen, the outer surface comprising an expandable material. The device includes a restraining element disposed around the outer surface of the expandable member, the restraining element including a proximal end, a distal end inner surface, and an outer surface.
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Description

[Technical field]

[0001] The present invention relates to medical devices, and more particularly to instrument attachment devices and associated systems and methods that can enhance the effectiveness and efficiency of duodenoscopy, endoscopy and colonoscopy procedures. [Background technology]

[0002] Medical instruments such as duodenoscopes, endoscopes, and colonoscopes are used in medical procedures to examine and treat conditions within the digestive tract. Endoscopic retrograde cholangiopancreatography (ERCP) is used to examine and treat diseases in the common bile duct and pancreatic duct. In some surgeries, cannulation of the bile duct can be difficult due to the difficulty in achieving positioning and stabilization of the medical instruments due to their movement within the duodenum. Patients need to be medicated to inhibit peristalsis in the duodenum. In addition, because the papilla is a tightly contracting muscular tissue, a high level of precision is required to maneuver the medical instruments through the papilla opening. As a result, the effectiveness and efficiency of the surgery can be compromised, and ERCP can fail if the common bile duct cannot be cannulated.

[0003] In view of these and other considerations, improvements of the present invention would be useful. Summary of the Invention

[0004] The present invention, in its various aspects, generally relates to instrumentation attachments, implementation methods, and associated systems. Embodiments of the invention, including those described herein, may enhance the effectiveness and efficiency of procedures, particularly those used to examine and treat conditions within the body, such as cannulating the bile duct during ERCP.

[0005] In one aspect, the instrument accessory device includes an expandable member having a proximal end, a distal end, a longitudinal axis, an inner surface, and an outer surface, the outer surface defining an outer diameter. The inner surface defines an instrument lumen extending between the proximal and distal ends of the expandable member. The instrument lumen is configured to receive an instrument therethrough. The expandable member may include an expandable material. The device includes a constraining element disposed about the outer surface of the expandable member, the constraining element including a proximal end, a distal end, an inner surface, and an outer surface.

[0006] In various embodiments described herein or otherwise, the expandable material may include a sponge. The device includes a wire in communication with a proximal end of an outer surface of the constraining element, the constraining element including an irrigation port. The wire includes a fluid lumen (i.e., the wire is in the form of a tubular member). The inner surface of the constraining element includes an irrigation port. The expandable member includes a base, the expandable material is disposed about the base, the base includes a proximal end, a distal end, a longitudinal axis, and an instrument lumen extending between the proximal and distal ends of the base. The expandable material is bonded to the base. The base includes an irrigation port. The instrument lumen may be configured to receive a medical device, such as a duodenoscope, endoscope, or colonoscope. The instrument lumen may be configured to maintain frictional contact with the medical device. When the expandable member is in an expanded state, the outer diameter may be larger than when the expandable member is in a constrained state.

[0007] In one aspect, a medical system includes an instrument. The system may include a disposable instrument accessory disposed about an outer periphery of the instrument. The instrument accessory includes an expandable member having a proximal end, a distal end, a longitudinal axis, an inner surface, and an outer surface disposed about the inner surface. The outer surface of the instrument accessory defines an outer diameter, and the inner surface of the instrument accessory defines an instrument lumen. The instrument lumen extends between the proximal and distal ends of the expandable member. The expandable member includes an expandable material. A restraining element is disposed on a circumferential surface of the expandable member. The restraining element includes a proximal end, a distal end, an inner surface, and an outer surface. The instrument lumen is configured to slidably receive at least a portion of the instrument when the expandable member is in an expanded state.

[0008] In various embodiments described herein or otherwise, the instrument attachment is configured to maintain frictional contact with the instrument. The expandable member may be electrically or mechanically expandable. In various embodiments, the expandable member may expand upon contacting the expandable material with an expansion fluid. The instrument may be a medical device such as a duodenoscope, colonoscope, or endoscope.

[0009] In one aspect, a method of performing a medical procedure includes mounting an instrument attachment to a distal end of an instrument. The instrument attachment includes an expandable member having a proximal end, a distal end, a longitudinal axis, an inner surface, and an outer surface, the outer surface of the instrument attachment defining an outer diameter, and the inner surface of the instrument attachment defining an instrument lumen extending between the proximal and distal ends of the expandable member. The instrument lumen is configured to receive an instrument therethrough. The expandable member may include an expandable material. A restraining element is disposed on an outer circumferential surface of the expandable member and includes a proximal end, a distal end, an inner surface, and an outer surface. The instrument may be advanced through the instrument lumen of the instrument attachment, the instrument attachment including an expandable member and a restraining element disposed on an outer circumferential surface of the expandable member. The instrument and the instrument attachment may be inserted into a patient's body. The restraining element may be removed from around a portion of the expandable member. The expandable member may be expanded.

[0010] In various embodiments described herein or otherwise, the method also includes using the instrument to perform the procedure. The expandable member can be contracted and the instrument and instrument attachment can be removed. For example, the constraining element can be a contractible mesh, whereby contraction of the mesh around the expandable member causes the expandable member to contract. Alternatively, the constraining element can be an overlay cover, whereby repositioning the expandable member within the overlay cover causes the expandable member to contract. The method can further include removing the instrument and instrument attachment. Expanding the expandable member within the patient's body can include expanding an outer diameter. Expanding the expandable member can prevent movement of the expandable member within the patient's body. Expanding the expandable member can include contacting the expandable member with an expansion fluid. The outer surface can expand to conform to the body lumen. The instrument can include a medical device such as a duodenoscope, endoscope, or colonoscope.

[0011] In one aspect, a method of performing a medical procedure may include mounting an instrument attachment to a distal end of an instrument. The instrument attachment includes an expandable member having a proximal end, a distal end, a longitudinal axis, an inner surface, and an outer surface, the outer surface of the instrument attachment defining an outer diameter, and the inner surface of the instrument attachment defining an instrument lumen extending between the proximal and distal ends of the expandable member. The instrument lumen is configured to receive an instrument therethrough. The expandable member may include an expandable material. A restraining element may be disposed on an outer circumferential surface of the expandable member, the restraining element including a proximal end, a distal end, an inner surface, and an outer surface. The instrument attachment may be mounted to the distal end of the instrument by advancing the instrument through the instrument lumen of the instrument attachment. The instrument and the instrument attachment may be inserted into the patient's body. The restraining element may be removed from around a portion of the expandable member, and the expandable member may be expanded.

[0012] Non-limiting examples of the present invention are described by way of example with reference to the accompanying drawings, which are schematic and are not intended to be drawn to scale. In the drawings, each identical or nearly identical component shown in the figures is generally represented by a single numeral. For clarity, not every component is labeled in every drawing, and not every component of each embodiment of the present invention is shown unless illustration is necessary to enable those skilled in the art to understand the invention. [Brief description of the drawings]

[0013] [Figure 1] 1 illustrates an exemplary medical device of the type described in one embodiment of the present invention. [Figure 2A] 2 is a partial cross-sectional view of a medical device system including an instrument attachment device in a collapsed configuration within a body and an exemplary medical device, such as the medical device of FIG. 1, extending therethrough, in accordance with an embodiment of the present invention. [Figure 2B] 2B is a partial cross-sectional view of a medical device system including an instrument attachment device in an expanded form within the body, such as the device shown in FIG. 2A, and an exemplary medical device, such as the medical device of FIG. 1, extending therethrough, in accordance with an embodiment of the present invention. [Diagram 3] 1 is a partial cross-sectional view of an instrument attachment device, in accordance with one embodiment of the present invention; [Figure 4A] FIG. 2 is a perspective view of an instrument attachment device in a retracted configuration, in accordance with one embodiment of the present invention; [Figure 4B] FIG. 4B is a perspective view of the instrument attachment device of FIG. 4A in an expanded position. [Figure 4C] 1 is a perspective view of an instrument attachment device in a collapsed configuration according to one embodiment of the present invention; FIG. [Figure 5A] 1 is a perspective view of a colonoscopy system in a collapsed configuration, in accordance with one embodiment of the present invention; FIG. [Figure 5B] FIG. 5B is a partial cross-sectional view of the colonoscope system of FIG. 5A in a collapsed configuration. [Figure 6A] FIG. 1 is a perspective view of a colonoscopy system in an extended configuration in accordance with an embodiment of the present invention. [Figure 6B]FIG. 6B is a partial cross-sectional view showing the colonoscopic system of FIG. 6A in an expanded configuration. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0014] It should be noted that the drawings are intended to depict only typical or exemplary embodiments of the invention, and therefore should not be considered as limiting the scope of the invention. The invention will now be described in more detail with reference to the accompanying drawings, in which:

[0015] Various embodiments of the present invention are described below: As used herein, "proximal end" refers to the end of the device along the device that is closest to the physician when the device is introduced into the patient's body, and "distal end" refers to the end of the device or object along the device that is furthest from the physician during implantation, positioning, or delivery.

[0016] As used in this specification and the appended claims, the singular forms "a," "an," and "the" include plural referents unless the content clearly dictates otherwise. As used in this specification and the appended claims, the term "or" is generally used in its sense including "and / or" unless the content clearly dictates otherwise.

[0017] It should be noted that references herein to "embodiments," "some embodiments," "other embodiments," etc., indicate that the described embodiments may include one or more of a particular element, structure, and / or feature. However, such references do not necessarily imply that all embodiments include a particular element, structure, and / or feature. Furthermore, if a particular element, structure, and / or characteristic is described in connection with one embodiment, it should be understood that such element, structure, and / or feature may be used in connection with other embodiments, whether or not expressly described, unless expressly denied.

[0018] The detailed description should be read with reference to the drawings, which are not necessarily to scale, depict illustrative embodiments and are not intended to limit the scope of the invention. The embodiments of the present invention include an instrument accessory as a device for use with the instrument. The instrument may be a medical instrument such as an endoscope, duodenoscope, colonoscope, etc. The device may include various elements and configurations. The embodiments of the present invention may include a medical instrument system. The medical instrument system may include an instrument, a handle, an instrument accessory, and / or an expansion fluid, etc. Using the device and system embodiments, the instrument may fill the patient's body lumen around itself during a medical procedure to inhibit instrument movement. Alternatively, the device and system embodiments may be used to fill the patient's body lumen around itself to open intestinal folds that may make examination difficult, for example, during a colonoscopy. Various embodiments described herein include a device having an expandable member around an instrument lumen that can slidably receive an instrument extending therethrough. The expandable member once expanded within the body lumen may, in some embodiments, inhibit instrument movement within the body lumen. In some embodiments, the body lumen may include a lumen, organ, blood vessel, passageway, etc., within, for example, the digestive system.

[0019] Endoscopic retrograde cholangiopancreatography (ERCP) is used to examine and treat diseases in the common bile duct and pancreatic duct. A duodenoscope is introduced into the patient through the mouth and advanced through the stomach and small intestine. The duodenoscope is used to access the ampulla of Vater to reach the pancreatic and bile ducts, which is formed by the connection of the pancreatic and common bile ducts and is specifically located at the major duodenal papilla. Positioning of the duodenoscope relative to the papilla can affect the success of the procedure and can be made difficult by duodenal migration. The expandable member of the accessory device of the present invention, when expanded within the duodenum, can prevent instrument migration within the duodenum.

[0020] Colonoscopy may be used to examine and treat diseases of the digestive system, particularly the large intestine. A colonoscope is introduced into a patient's body via the rectum, colon, and advanced through the large intestine. Intestinal folds may make examination difficult as they may hide polyps and debris. The expandable members of the accessory device of the present invention, when expanded within the intestine, may relax the folds improving the quality of the examination.

[0021] Utilizing embodiments of the accessory devices, systems and methods of the present invention for various uses of duodenoscopes, endoscopes, colonoscopes or other instruments in various body lumens and for various purposes as discussed above may enable physicians to perform procedures with greater precision, accuracy and ease than would be possible without the accessory devices.

[0022] The instrument accessory according to the present invention includes an expandable member. The expandable member may include an expandable material such as medical grade collagen, cellulose, silicone or polyurethane, a shape memory material in the form of a sponge, foam, brush, braid, etc. The expandable member may include an inner surface that corresponds to the expandable material, or an inner surface that may correspond to a layer of frictional material such as silicone. The expandable member may include an outer surface that corresponds to the expandable material, or an outer surface that corresponds to an elastic material such as a scaffold, sponge, mesh, braid, etc., or an outer surface that is a non-expandable material such as a cover. The expandable member may be mechanically driven, electrically driven, pneumatically / hydraulically driven, inflated, etc. In various embodiments, the expandable member is expanded by contacting the expandable material with an expansion fluid. The expandable member may transition from a contracted configuration to an expanded configuration to occlude a body lumen, stretch a body lumen, establish patency of a body lumen, or maintain patency of a body lumen.

[0023] The instrument accessory may include a restraining element. The restraining element may be a non-elastic material, such as a polyamine such as nylon, a fluoropolymer such as polytetrafluoroethylene (PTFE), a semi-elastic material such as polyether block amide (e.g., Pebax®), modified poly(ethylene terephthalate) (MPET), or silicone, a polyurethane such as ChronoFlex® polycarbonate-based thermoplastic urethane, latex, or a braid formed of similar materials. In various embodiments, the restraining element has the form of an overlying cover that may be advanced over or retracted into the expandable member.

[0024] The instrument accessory has a fluid inlet extending through a base of the expandable member, the fluid inlet capable of receiving irrigation fluid for wetting and lubricating the expandable member. In a method of performing an endoscopy, the distal end of a medical device, such as a duodenoscope, may be advanced through the patient's mouth and through the small intestine. Once inside the patient's body, the digestive system may be visually inspected and the pancreas and bile duct may be accessed using instruments extending through working channels from a handle at the proximal end of the externalized medical instrument.

[0025] An embodiment of a medical device of the type described in this invention is shown in FIG. The medical device 101 is an example of an instrument that can be used with the instrument attachment devices described further herein. The medical device 101 has a distal end 103 and a proximal end 104, and a lumen or working channel extending therethrough. A handle 105 at the proximal end 104 is manipulated by a physician to manipulate the medical device 101. The medical device 101 may include cutouts or channels 106 along a wall 106 of an insertion portion of the medical instrument 101 to facilitate ease of movement within a patient's body and to increase flexibility, for example, by manipulation of a steering knob on the handle 105.

[0026] 1, 2A and 2B show a medical device system within the body according to an embodiment of the present invention. The medical device system includes an instrument attachment device 102 slidably disposed around a medical device 101 (e.g., medical device 101 of FIG. 1). The distal end 103 of the medical device 101 and instrument attachment device 102 is advanced through the stomach 100 while the proximal end of the medical device 101 remains outside the body. As the medical device is advanced, the instrument attachment device 102 remains disposed around the medical device 101. Once the medical device and instrument attachment device 102 are in place, the expandable member 201 of the instrument attachment device 102 is expanded (FIG. 2B). While in the expanded configuration, the expandable member 201 of the instrument attachment device 102 may substantially expand the body lumen 109 (FIG. 2A). The expandable member 201 may be transitioned from a contracted configuration to an expanded configuration by removing the restraining element. A body lumen 109, e.g., the small intestine, duodenum, etc., may be substantially occluded by the expandable member 201 when the expandable member 201 is in an expanded state as the expandable member 201 is able to fill the body lumen 109. Contact formed between the expandable member 201 and the body lumen 109 upon expansion of the expandable member 201 may prevent longitudinal, rotational, and / or movement within the body lumen 109. Because the medical device 101 is substantially immobile within an instrument lumen in the expandable member 201, the pancreas and bile duct may be accessed using an instrument 110 passing through a working channel of the medical device, for example.

[0027] 3 illustrates a partial cross-sectional view of an instrument attachment 102 according to an embodiment of the present invention. The instrument attachment 102 includes an expandable member 201 having a proximal end 202 and a distal end 203. An inner surface 302 defines an inner diameter of the expandable member 201 extending between the proximal end 202 and the distal end 203. The inner surface 302 defines an instrument lumen 205 having a longitudinal axis 204, a proximal opening 221 at the proximal end 202, and a distal opening 222 at the distal end 203, the instrument lumen 205 extending therethrough. The instrument lumen 205 is configured to receive an expandable instrument therethrough, such as the medical device of FIG. 1. The expandable member 201 having the proximal end 202 and the distal end 203 is shown in a contracted configuration in FIG. 3. The outer surface 310, which defines the outer diameter of the expandable member 201, extends along a length along the longitudinal axis 204 of the instrument lumen 205 between the proximal end 202 and the distal end 203 of the expandable member 201. The longitudinal axis 204 of the instrument lumen 205 and the longitudinal axis of the expandable member 201 may be coincident with one another or radially offset from one another, as shown. In the illustrated embodiment, the expandable member 201 comprises a base 304, which comprises a proximal end and a distal end, and forms an inner surface 302. The expandable member 201 is supported by the base 304 and extends between the distal end 203 and the proximal end 202 of the base 304. The expandable member 201 also comprises an expandable material 400 disposed about the base 304 and an outer structure 406 (i.e., a restraining element) disposed about the expandable material 400. The base 304 includes an irrigation port 404 connected to a fluid source. The material of the inner surface 302 may be a material, such as silicone, that maintains frictional contact with an instrument within the instrument lumen 204. In this regard, the material of the inner surface 302 may correspond to the material of the base 304 or to a coating of material on the base 304. The material of the outer structure 406 may be an expandable material, such as a mesh material.

[0028] 3, 4A, 4B, and 4C show an instrument attachment 102 according to an embodiment of the present invention. The instrument attachment 102 includes an expandable member 201 having a proximal end 202, a distal end 203, and an instrument lumen 205 therethrough. The instrument attachment 102 in FIG. 4A is in a contracted configuration. A number of loops 307 are disposed at the proximal end 202 of the expandable member 201. In the contracted configuration, the loops 307 are held by an attachment. The attachment can be removed to provide the expanded configuration shown in FIG. 4B. To further expand the expandable member 201, a fluid is injected into the expandable member 102 through the irrigation port 404 in the base 304 in FIG. 3 such that the fluid contacts and expands the expandable material 400 of the expandable member 102. The instrument attachment 102 in FIG. 4C is in a contracted configuration. In this embodiment, the loops 308 are held together until released for expansion of the expandable member 201. The expandable member 201 is compressed when the outer structure 406 is restrained. The base 304 is bonded to the outer structure 406 along the length of the expandable member 201. The bonded surfaces can be achieved by adhesives, flowable materials, welding (e.g., laser, ultrasonic, hot jaw thermal, etc.), melt / remelt flow processes, etc. The bonded surfaces can form a substantially fluid-tight seal between the base 304 and the outer structure 406 to allow expansion fluid to be delivered through the fluid lumen to move the expandable member 201 between the contracted configuration of FIG. 4A and the expanded configuration of FIG. 4B. Although the expandable member 201 in the expanded configuration is shown as a rounded cylinder, the expandable member 201 may be other shapes, such as, for example, a spheroid, a torus, combinations thereof, etc. The inner surface 302 is maintained in frictional contact with the medical device when the expandable member 201 is compressed. Thus, a body lumen can be examined using a medical device extending through the instrument lumen 205 of the expandable member 201. When the expandable member 201 in its expanded configuration within the body lumen expands to the diameter of the body lumen, the medical device is held in place within the body lumen.

[0029] In FIGS. 3 and 4A-C, the instrument attachment 102 is shown to receive the medical device 101 through the proximal end 202 towards the distal end 203. In Figures 5A, 5B, 6A and 6B, the instrument attachment 102 is shown in a contracted configuration as part of a colonoscope system including a colonoscope 600 according to an embodiment of the present invention. The constraining element 500 surrounds the expandable material 400 of the expandable member. Retracting the constraining element 500 causes the expandable material 400 of the expandable member to become expandable. In some embodiments, the outer structure 500 corresponds to a retractable overcoat. The constraining element 500 can be a non-elastic material, for example, nylon, PTFE, Pebax, MPET. The instrument attachment 102 shown in Figures 5A, 5B, 6A and 6B is shown at the distal end 601 of the colonoscope 600 including the expandable member 201. The expandable member 201 is positioned to frictionally engage the periphery of the colonoscope 600. The distal end 601 of the colonoscope 600 extends further than the distal end 203 of the instrument attachment 102. A wire 502 having a fluid lumen is disposed at the proximal end 501 of a restraining element 500 that has an irrigation port on its inner surface.

[0030] In various embodiments, the expandable member may have an expanded and contracted configuration. The expandable member includes an exterior surface formed of an exterior material and an interior surface formed of an interior material. The exterior surface material may include a variety of flexible, semi-flexible, or inflexible materials. These materials may include silicone, latex, polyurethane, rubber, isobutylene, and the like. The wall thickness of the exterior surface material may vary from material to material and may relate to the outer diameter of the exterior surface in the contracted and expanded configurations. The interior surface material may include a variety of flexible, semi-flexible, or inflexible materials. These materials may include silicone, latex, polyurethane, rubber, isobutylene, and the like. The wall thickness of the interior surface may vary from material to material and may relate to the inner diameter of the interior surface in the contracted and expanded configurations. The expandable member may be expanded, contracted, or otherwise stretched one or more times to increase its elasticity prior to use within a patient's body, which may improve the symmetric expansion of the expandable member as well as improve the centering mechanism of the expandable member. The expandable member can be expanded via the supply of an expansion fluid through one or more irrigation ports. The same irrigation port can be used to expand the expandable member.

[0031] As noted above, the inner and outer surfaces of the expandable member may comprise a polymeric material. When the expandable member is expanded, the inner surface may crimp the instrument in place, immobilizing the instrument within the instrument lumen.

[0032] In various embodiments, the instrument attachment device may be disposable. In alternative embodiments, the instrument attachment device may be reusable. In various embodiments, the expansion fluid delivered via the elongate delivery member may include saline, water, dilute contrast media, and the like.

[0033] In various embodiments, a method of performing a medical procedure may include disposing an instrument accessory at a distal end of an instrument. While the expandable member is in a contracted configuration, the instrument is advanced through the lumen of the instrument. The expandable member is disposed around the instrument and configured to maintain frictional contact with the instrument. The instrument and instrument accessory are both inserted into the patient's body. The expandable member may be expanded within the patient's body to expand the patient's body lumen, e.g., colon, intestine, etc. As the expandable member expands, the diameter of the expandable member increases, allowing the instrument to remain in a stable position within the body lumen. While the expandable member is expanded, a procedure such as ERCP may be performed. After the procedure, the expandable member is contracted (e.g., by repositioning the expandable member within the restraining element), and the instrument and instrument accessory are removed from the patient's body. Expanding the expandable member and stabilizing the instrument allows for precise movement of the catheter from within the instrument, as the outer diameter expands the body lumen to prevent the instrument from migrating. The instrument may be any device used to perform surgery, for example a medical device such as a duodenoscope, endoscope, colonoscope, etc.

[0034] In various embodiments, a method of performing a colonoscopy may include disposing an instrument accessory at a distal end of an instrument. The instrument is advanced through a lumen of the instrument while the expandable member is in a contracted state. The expandable member is disposed about the instrument and configured to maintain frictional contact with the instrument. The instrument and instrument accessory are inserted together into the patient's body. The expandable member may be expanded within the patient to expand the patient's body lumen, e.g., colon, intestine, etc. The expandable member may remain expanded while the instrument and instrument accessory are removed from the patient, thereby allowing the expandable member to disrupt folds and crevices for colonoscopic investigation.

[0035] In addition to the various embodiments described herein, those skilled in the art will appreciate that variations, modifications, and other implementations of the invention will occur to those skilled in the art, and therefore the invention is to be defined by the following claims rather than the foregoing illustrative description.

Claims

1. an expandable member having a proximal end, a distal end, a longitudinal axis, an inner surface, and an outer surface, the outer surface defining an outer diameter, the inner surface defining an instrument lumen extending between the proximal end and the distal end, the instrument lumen configured to receive an instrument therein, the expandable member containing an expandable material; an expandable and contractible restraining element disposed about an outer periphery of the expandable member and including a proximal end having a loop, a distal end, an inner surface, and an outer surface; Equipped with An instrument accessory that holds the loop with an attachment to contract the restraining element around the expandable member, thereby contracting the expandable member.

2. The device of claim 1 , wherein the expandable material comprises a sponge.

3. The device of claim 1 or 2, wherein the inner surface of the restraining element includes an irrigation port.

4. 4. The device of claim 1, wherein the expandable member includes a base, the expandable material is disposed about the base, and the base includes a proximal end, a distal end, a longitudinal axis, and an instrument lumen extending between the proximal end of the base and the distal end of the base.

5. The apparatus of any one of claims 1 to 4, wherein the instrument lumen is configured to receive a duodenoscope, endoscope or colonoscope.

6. The device of claim 5 , wherein the instrument lumen is configured to maintain frictional contact with a duodenoscope, endoscope, or colonoscope.

7. Equipment and A disposable instrument accessory device according to any one of claims 1 to 6, which is disposed around the outer periphery of the instrument; A medical system comprising: The instrument lumen of the instrument accessory device slidably receives at least a portion of the instrument.

8. The system of claim 7 , wherein the instrument accessory maintains frictional contact with the instrument.

9. The system of claim 7 or 8, wherein the expandable material expands upon contact with an expansion fluid.

10. The system according to any one of claims 7 to 9, wherein the instrument is a duodenoscope, an endoscope or a colonoscope.

Citation Information

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