Medical and Surgical Tubing
The tracheostomy tube design addresses manufacturing inefficiencies by forming a lumen within the cuff region and using a reinforcing member to facilitate a seamless overmolding process, enhancing durability and reducing costs.
Patent Information
- Application Number
- JP2023557169
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Priority Date
- 2021-03-16
- Filing Date
- 2022-02-21
- Publication Date
- 2025-11-18
- Estimated Expiration
- 2042-02-21
AI Technical Summary
Existing tracheostomy tubes face issues with rough edges and increased manufacturing time due to the process of sealing the inflation lumen, leading to additional costs and potential tube discard.
A lumen is formed along the inner tubular component, extending to a first location and opening outwardly at a second location within the inflatable cuff region, with an outer tubular component occluding the lumen at the first location, and a reinforcing member optionally added for structural support, allowing for a seamless overmolding process to form the inflation lumen outlets.
This method reduces manufacturing time and eliminates rough edges, thereby reducing costs and improving the durability and functionality of the tracheostomy tube.
Smart Images

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Abstract
Description
[Technical Field]
[0001] The present invention relates to a medical-surgical tube of the type that includes a shaft, an inflatable cuff toward the forward, patient end of the shaft, and a lumen through which inflation fluid is supplied to or from the interior of the cuff. [Background technology]
[0002] Tracheostomy tubes are used to allow a patient to ventilate, respire, or breathe spontaneously. Tracheostomy tubes are inserted into the trachea through a surgical opening in the neck, with one end positioned within the trachea and the other end positioned outside the patient adjacent to the surface of the neck. Tracheostomy tubes can be inserted by different techniques, such as a surgical cut-down procedure performed in an operating room or a cricothyrotomy, which can be performed in an emergency.
[0003] Tracheostomy tubes are commonly used for longer-term ventilation or when an airway cannot be inserted through the mouth or nose. Patients often remain conscious while breathing through a tracheostomy tube. Tracheostomy tubes may be open to the atmosphere or may be connected by tubing to some form of mechanical ventilator. The tube is held securely in place by flanges that are fixed to the tube and positioned to extend outward on either side of the tube.
[0004] Tracheostomy tubes can be manufactured from a variety of materials, typically made from a flexible plastic material such as PVC, polyurethane, or silicone. Tracheostomy tubes, and other medical-surgical tubes, also often include some form of sealing means toward their patient end to form a seal with the trachea, trapping gas flow along the tube's bore. Typically, this sealing means takes the form of an inflatable sealing cuff that is inflated via an inflation lumen extending along the tube. The inflation lumen can be extruded or molded with the wall of the tube's shaft. In this case, the lumen must be open to the exterior in the region of the sealing cuff and closed distally at the patient end of the shaft to prevent inflation fluid from escaping. Typically, the lumen is opened in the region of the cuff by cutting into the lumen through the outside of the shaft. The lumen is closed at the patient end by a secondary operation, such as inserting a plug of material similar to the shaft into the open end of the lumen and bonding it in place with an adhesive. This process can result in unacceptable rough edges around the occlusion, which can require the tube to be discarded. This, along with the time taken for the sealing operation, can lead to additional costs. Summary of the Invention [Problem to be solved by the invention]
[0005] It is an object of the present invention to provide an alternative medical-surgical tubing. [Means for solving the problem]
[0006] According to one aspect of the present invention, there is provided a medical-surgical tube of the type identified above, characterized in that a lumen is formed along the wall of the inner tubular component and extends toward the patient end of the component to a first location. The lumen is positioned to open outwardly at a second location rearward of the first location and is positioned along the length of the cuff within the inflatable region of the cuff. The tube includes an outer tubular component that extends along at least a major portion of the inner component and above the first location to occlude the lumen at the first location.
[0007] The lumen preferably extends along an outwardly protruding rib of the inner component. The rib preferably terminates a short distance rearward of the patient end of the inner component. The tube may include a reinforcing member between the inner and outer tubular components. The reinforcing member extends around a portion of the circumference of the inner component, leaving a longitudinal gap along which the rib extends. The lumen may open into the cuff at two longitudinally spaced locations. The cuff is preferably made of silicone. The tube may be a tracheal tube.
[0008] According to another aspect of the present invention, there is provided a method of manufacturing a cuffed medical-surgical tubing, the method including the steps of forming an inner tubular member having a central bore, longitudinal ribs along the exterior of the inner member, and an inflation lumen extending along the length of the ribs and opening toward the patient end of the inner member, applying an outer layer over the inner member along at least a majority of its length and over the open patient end of the lumen to block the end of the lumen, forming an opening in the inflation lumen aft of the blocked end, and applying a sealing cuff over the opening.
[0009] The method can include removing a short length of the rib at the patient end before applying the outer layer so that the inflation lumen opens a short distance rearward of the patient end of the inner component.The method can include applying a reinforcing member to the inner component before applying the outer layer so that the reinforcing member extends around a portion of the circumference of the inner component leaving a longitudinal gap along which the rib extends.
[0010] According to a further aspect of the present invention there is provided a tube manufactured by a method according to any of the other aspects of the present invention.
[0011] An exemplary tracheostomy tube according to the present invention will now be described with reference to the accompanying drawings. [Brief explanation of the drawings]
[0012] [Figure 1] FIG. 1 is a side view of a tracheostomy tube. [Figure 2] FIG. 1 is a perspective view of the front patient end of the inner tube part in a first stage of manufacture. [Figure 3] 3 is a perspective view of a subsequent stage in the manufacture of the part shown in FIG. 2. FIG. [Figure 4] FIG. 4 is a perspective view of the component shown in FIG. 3 with the addition of an outer stiffening member. [Figure 5] FIG. 10 is a perspective view of a tube shaft at a later stage in manufacture, prior to the addition of a sealing cuff. DETAILED DESCRIPTION OF THE INVENTION
[0013] Referring to FIG. 1 , the tracheostomy tube 1 has a generally curved shaft 10, a laterally extending mounting or neck flange 11 attached to the rear of the shaft, a machine end 12, and a sealing cuff 13 attached to the distal, forward, or patient end 14 of the shaft by attachment end collars 15 and 16. The cuff 13 is preferably made of a resilient material, such as silicone, shaped to tightly surround the shaft 10 when deflated. The shaft 10 is also preferably made of silicone; however, other materials may be used for both the cuff and the shaft. A male, tapered connector 17 is attached to the proximal, rear, or machine end 12 of the shaft 10 and is used to connect the tube to a mating connector at one end of a breathing tube (not shown) that extends to a ventilator or the like. Alternatively, the connector 17 can be left open when the patient is breathing spontaneously. The tube also includes means 20 for supplying inflation fluid to and from the inside of the sealing cuff 13 to inflate and deflate the cuff. The inflation fluid used to inflate the cuff 13 can be a gas, such as air, or a liquid, such as water.
[0014] The means 20 for supplying inflation fluid to the inside of the cuff 13 includes a combined inflation indicator and valved connector 21 connected to the machine end of inflation tubing 22. At its opposite, patient end, within the flange 11, the inflation tubing 22 connects with the machine end of an inflation lumen 23 formed within the wall of the shaft 10. The inflation lumen 23 is blocked at a first position 24 a short distance rearward of the patient end 14. At a second position 25 a short distance rearward of its blocked end 24, the inflation lumen 23 opens into the sealing cuff 13 between the two attachment collars 15 and 16, i.e., within the inflatable region of the cuff.
[0015] Further details of the construction of shaft 10 will become apparent from the following description of its manufacturing method, also with reference to FIGS.
[0016] The first step is to provide an inner tubular member 30 of the type shown in Figure 2. The tubular member 30 has a continuous cylindrical wall 31 with a central coaxial bore 32 of circular cross section. The member 30 also includes an integral longitudinal rib 33. The longitudinal rib 33 extends along the entire exterior length of the member 30 and defines a circular bore. The circular bore is parallel to the main bore 32 and provides the inflation lumen 23.
[0017] The next, second step is to remove or trim a short length of rib 33 from the patient end 14 of part 30, as shown in FIG. 3. As a result, inflation lumen 23 opens outward at location 24 a short distance from the patient end. This can be done by any conventional manual or automated trimming operation, such as involving machining or cutting. The length of rib 33 removed is less than the distance between the patient end 14 and location 25 where inflation lumen 23 opens into sealing cuff 13. The thickness of rib 33 removed may include a small amount of the underlying wall 31, as shown, or may leave a small amount of rib remaining on the wall.
[0018] At this stage, an optional reinforcing member 40 can be added to the part 30 to form a subassembly 50, as shown in FIG. 4 . The reinforcing member 40 is in the form of a C-section coil 41 formed by a rigid element 42. The rigid element 42 is zigzag or bistrophedon-shaped, leaving longitudinal gaps 43 through which the ribs 33 extend, and extends partially around the part 30. The reinforcing member 40 may be an iron-based metal, a metal amalgam, a hard polymer, a ceramic, or the like. The reinforcing member 40 may be preformed to a predetermined shape and then clipped onto, wrapped around, or slid along the tubular part 30. This reinforcing member is optional and may be omitted or an alternative reinforcing member may be used.
[0019] The next step, as shown in FIG. 5, is to place the subassembly 50, including any optional reinforcing members 40, into a mold and overmold an outer component 51 in the form of a plastic or elastomer that fits around the curved outer surface of the subassembly. Before this is done, a thin mandrel (not shown) is threaded from the machine end along the inflation lumen 23 of the rib 33 until the forward, or patient, end is adjacent to, at, or just protruding from the open patient end of the lumen. The purpose of the mandrel is to prevent material of the overmold layer 51 from flowing too far backward along the lumen 23 and blocking the location where the opening 25 into the sealing cuff 13 is formed. After overmolding, the mandrel is removed. The mold cavity can define exterior surface formations on the shaft 10, such as a shallow annular recess 52 and a raised adhesive dam 53, to receive the collars 15 and 16 at both ends of the cuff. Only the surface structure for the forward end of the cuff 13 is shown in FIG. 5. Thus, the overmolding process completely defines the tip at the patient end 14 of the shaft 10 without the need for any additional manipulations to occlude the end of the inflation lumen 23. After overmolding the outer layer 51, one or more openings 54 are cut through the outer layer and the underlying ribs 33 into the inflation lumen 23. This results in the sealing cuff 13 opening outwardly and centrally between the locations where it is attached by its collars 15 and 16, i.e., at the inflatable region of the cuff. As shown in this embodiment, the openings 25 into the cuff 13 are provided by two slots 54 cut through the ribs 33 and into the lumen 23 at closely spaced locations longitudinally along the shaft 10. Providing two or more outlets from the lumen 23 can help ensure more uniform deflation of the sealing cuff 13 by reducing the risk of the cuff deflation where it contacts the shaft adjacent the inflation opening, trapping a volume of inflation fluid within the cuff. It may also help promote more uniform inflation of the cuff 13 .
[0020] Connection to the rear, machine end of inflation lumen 23 can be made by any conventional method. Typically, an opening is formed through the outside of shaft 10 and into inflation lumen 23 in the area of flange 11. One end of a rigid PTFE coupling (not shown) is inserted into the opening formed in inflation lumen 23 and adhesively bonded in place. The forward end of inflation line 22 is adhesively bonded onto the opposite end of the coupling. Flange 11 is then slid over this connection to protect and conceal it and then bonded in place.
[0021] It is not necessary that the patient end of the inflation lumen rib 33 be removed prior to overmolding, as the inner component 30 can be left as shown in FIG. 2, with or without the addition of an outer reinforcement member, and then overmolded with an outer layer, which will block the open end of the inflation lumen 23 and simultaneously form a short cylindrical tip at the patient end.
[0022] The present invention is not limited to tracheostomy tubes, but can be used with other tubes having a sealing cuff. The sealing cuff may be self-inflating, including a resilient material, such as foam, that gives the cuff a natural inflated shape and is sucked into a flatter configuration for insertion and removal by applying negative pressure to the inflation lumen.
Claims
1. A medical-surgical tube comprising a shaft (10), an inflatable cuff (13) toward a forward, patient-side end (14) of the shaft, and a lumen (23) through which inflation fluid is supplied to or from the interior of the cuff, wherein the shaft (10) comprises an inner tubular part (30) having a cylindrical wall (31) extending in the longitudinal direction of the shaft (10) and a rib (33) extending from an outer surface of the cylindrical wall (31) and extending in the longitudinal direction, the lumen (23) being a bore extending in the longitudinal direction within the rib (33), the rib (33) and the lumen (23) being arranged in a first position rearward of the patient-side end (14) of the cylindrical wall (31). a first position (24) behind the first position (24), the lumen (23) having an opening that opens to the front side of the shaft, an outer tubular part (51) overmolded on the outer surface of the inner tubular part (30), the outer tubular part (51) covering the cylindrical wall (31) and the ribs (33) to make the outer peripheral shape of the shaft (10) circular and closing the opening of the lumen (23) at the first position, and an opening (54) penetrating the outer tubular part (51) and the ribs (33) from the outside and reaching into the lumen (23) at a second position (25) behind the first position (24), the opening (54) being disposed inside the inflatable region of the cuff.
2. 2. A tube according to claim 1, characterized in that the tube includes a reinforcing element (40) between the inner tubular part (30) and the outer tubular part (51), the reinforcing element (40) extending around a portion of the circumference of the inner tubular part (30) leaving a longitudinal gap along which the rib (33) extends.
3. 3. A tube according to claim 1 or 2, characterized in that the lumen (23) opens into the cuff (13) at two locations (54) spaced apart longitudinally from one another.
4. Tube according to any one of claims 1 to 3, characterized in that the cuff (13) is made of silicone.
5. 5. A tube according to any one of claims 1 to 4, characterized in that the tube is a tracheal tube.
Citation Information
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