A stoma enema kit device

By designing an enema kit with a conical fixator, a balloon, and a spiral support, the problems of poor sealing and complex operation were solved, achieving effective sealing of the enema fluid and preventing overflow, thus reducing the risk of stoma inflammation and contamination.

CN121102629BActive Publication Date: 2026-03-13HANGZHOU TRADITIONAL CHINESE MEDICINE HOSPITAL (HANGZHOU TRADITIONAL CHINESE MEDICINE HOSPITAL AFFILIATED TO ZHEJIANG UNIV OF TRADITIONAL CHINESE MEDICINE)
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-11-13
Publication Date
2026-03-13

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Abstract

This application discloses a stoma enema kit, comprising a fixation component, a tubing component, an enema component, and a contamination prevention component. The tubing component includes a first enema tube and a second tube communicating with the fixation component. The first tube is used to introduce enema fluid from a container through the stoma into the intestine. The second tube is used to introduce gas or liquid into the fixation component, ensuring a tight fit between the fixation component and the stoma. The fixation component includes at least two balloons, a conical fixation member, and a spiral support member. One balloon is disposed on the conical tip of the conical fixation member. The other balloon and the spiral support member are both disposed within the inner cavity of the conical fixation member, with the balloon located inside the cavity space formed by the spiral support member. The stoma enema kit of this invention avoids the risk of leakage due to stoma folds, increases the contact area with the stoma, and prevents overflow of the enema fluid.
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Description

Technical Field

[0001] This invention belongs to the field of medical devices, specifically relating to a stoma enema kit device. Background Technology

[0002] An enterostomy is a surgical procedure that creates an opening in the abdominal wall for the intestines. It is a treatment for partial or complete loss of intestinal function caused by conditions such as intestinal obstruction, colorectal cancer, or intestinal necrosis due to enteritis. An enterostomy typically involves making a 2-3 cm incision in the abdomen, bringing the intestines out, and suturing them to the skin at the incision site. The enterostomy helps patients to expel waste normally when intestinal function is impaired. Generally, medical personnel or family members need to perform related enemas to promote the normal expulsion of waste from the intestines.

[0003] Stoma enema procedures typically involve introducing warm saline or glycerin into the intestines through the stoma to stimulate intestinal peristalsis and expel waste. The enema usually lasts from ten minutes to half an hour. During this time, the enema fluid gradually enters the intestines and stimulates intestinal peristalsis. Due to the influx of enema fluid and its low viscosity, coupled with the pressure generated by the peristalsis, the enema fluid can easily carry back and overflow excrement. If this overflowing excrement is not cleaned up promptly, it can easily cause inflammation of the stoma.

[0004] To prevent overflow during enema, enema medical devices typically seal the stoma with balloons or water balloons. For example, the scheme disclosed in publication number CN111228029A uses a double balloon structure to seal both sides of the stoma with balloons. This scheme can effectively prevent overflow, but in actual operation, there are problems such as incomplete sealing and complicated operation. Summary of the Invention

[0005] To address the aforementioned technical problems, this application provides a stoma enema kit device, which is a medical device used for intestinal irrigation after enterostomy. The enema kit device features simple operation, excellent sealing effect, and low cost.

[0006] Specifically, the stoma enema kit device provided by the present invention includes a fixing component, an anti-fouling component, a tube component, and an enema component;

[0007] The tubing assembly includes a first tube for enema and a second tube connected to the fixing assembly;

[0008] The first tube is used to introduce enema fluid from the container through the stoma into the intestine;

[0009] The second tube is used to fill the fixation component with gas or liquid, so that the fixation component is tightly connected to the stoma and prevents the enema kit from loosening.

[0010] Furthermore, the fixation component includes at least one balloon; preferably, it includes two balloons.

[0011] The balloon can be filled with gas or liquid;

[0012] The balloon expands after being filled with gas or liquid. This expansion allows the fixation components to be stably fixed at the stoma, preventing backflow of enema fluid and excrement from the intestines, which could contaminate the stoma and the patient's clothing or bed sheets.

[0013] Furthermore, the fixing component also includes a tapered fixing member;

[0014] The conical fixation piece is similar to a trumpet shape. One end of the conical fixation piece can penetrate deep into the stoma and support the stoma, thereby expanding the stoma, improving the fixation effect, and preventing the backflow of enema fluid and excrement.

[0015] It should be noted that the incision for an intestinal stoma is generally located in the abdomen. The stoma protrudes from the abdomen and is often uneven and wrinkled. Furthermore, the abdomen has a lot of fat and relatively soft, loose skin, making it difficult to secure with traditional balloons. This makes it difficult to effectively prevent the overflow of irrigation fluid and excrement, leading to stoma contamination and soiling of clothing and bedding. This invention uses a funnel-shaped conical fixation device. The smaller end of the conical fixation device extends into the stoma, supporting it and allowing for a larger contact area, thereby preventing the overflow of irrigation fluid and excrement.

[0016] Furthermore, the conical fixing member is made of a flexible material, which is silicone, preferably medical-grade silicone;

[0017] The silicone used is medical-grade silicone. Because the conical fixation piece has a close contact with the stoma and the irrigation time is relatively long, the medical-grade material can effectively relieve the irritation of the stoma and prevent the inflammatory reaction of the stoma.

[0018] In some embodiments, the fixation component includes a balloon;

[0019] The balloon is positioned at the tip of the cone-shaped fixing member, i.e., at the top of the cone.

[0020] Furthermore, the balloon is disposed outside the conical tip of the conical fixation member;

[0021] The balloon is a balloon or a liquid balloon, and the capacity of the balloon is 50mL-60mL.

[0022] In practice, filling the balloon with 25-30 mL of gas or liquid is generally sufficient to fix the enema system to the stoma; however, for some special stomas, the liquid can be further injected to increase the deformation of the balloon and achieve a better fixation effect.

[0023] The balloon forms a basically spherical outer periphery after being filled with liquid or gas;

[0024] It should be noted that since the balloon is encircled on the outside of the cone tip of the cone-shaped fixation piece, the balloon is actually a hollow ring. When filled with liquid or gas, it presents a ring structure, and the inner side of the ring is fixed to the cone-shaped fixation piece.

[0025] In another embodiment, the fixation component includes two balloons;

[0026] The first balloon is disposed on the outer side of the conical tip of the conical fixation member; the second balloon is disposed in the inner cavity of the conical fixation member; the capacity of the second balloon is 60-80 mL.

[0027] When the second balloon is filled with liquid or gas, it can support the conical fixation member and increase the volume of the conical fixation member, which is beneficial for the conical fixation member to have a larger contact area with the stoma.

[0028] It should be noted that the outer periphery of the second balloon is connected to the conical fixation cavity. After being filled with gas, the outer periphery of the second balloon takes on a basic spherical shape and is connected to the inner wall of the conical fixation cavity.

[0029] The second balloon is at least partially connected to the inner wall of the conical fixation chamber;

[0030] In some embodiments, the fixing component includes a helical support member;

[0031] The spiral support is disposed within the cavity of the conical fixing member;

[0032] The spiral support is at least partially connected and fixed to the inner wall of the conical fixing member cavity;

[0033] The spiral support is a conical spiral support, and its structure is basically the same as that of the conical fastener.

[0034] Furthermore, the second balloon is disposed inside the cavity space formed by the helical support member;

[0035] The second balloon is at least partially connected to the inner wall of the conical fixation chamber;

[0036] At this time, the spiral support is positioned between the inner wall of the second balloon and the conical fixation cavity, and this structure can fix the spiral support.

[0037] Furthermore, when the second balloon is inflated with gas or liquid, it supports the conical fixation component on one hand, and the helical support component limits the second balloon to prevent slippage. Because there is a gap between the upper and lower helical units of the helical support component, the second balloon deforms as it fills with gas or liquid. The helical units of the helical support component limit this deformation, while the second balloon protrudes more between the upper and lower helical units. This protruding structure changes the smooth shape of the traditional balloon, better supporting the conical fixation component and allowing it to seal the uneven stoma gap more tightly, thus providing better fixation and preventing backflow of irrigation fluid.

[0038] In another embodiment, the outer periphery of the bottom of the cone of the conical fastener is provided with an annular groove;

[0039] The channel of the annular groove faces the top of the conical fixing member;

[0040] It should be noted that during the enema process, due to the unevenness of the intestinal folds and the stoma protruding from the body surface, there may still be leakage of enema fluid. The annular groove can guide the enema fluid and excrement, preventing the excrement and enema fluid from contaminating surrounding clothing or bed sheets.

[0041] In some embodiments, the stoma enema kit further includes a contamination prevention component;

[0042] The aforementioned anti-fouling component is made of highly absorbent fabric or porous material;

[0043] The highly absorbent fabric is a nonwoven fabric made of one or more of cotton fiber, seaweed fiber, and viscose fiber;

[0044] The nonwoven fabric described above has a relatively loose structure and can adapt to certain deformations;

[0045] Furthermore, the anti-fouling component is at least partially connected to the outer periphery of the cone bottom of the conical fastener, which is provided with an annular groove.

[0046] Because cotton, viscose fiber, and seaweed fiber have high water absorption, especially seaweed fiber, which can absorb up to 20g / g of liquid, this design can effectively hold the overflowing enema fluid and excrement.

[0047] In some embodiments, the tubing assembly of the stoma enema kit includes a first conduit for enema and a second conduit communicating with the fixation assembly;

[0048] The first tube is used to introduce enema fluid from the container into the intestine through the stoma, and the first tube has at least one side hole at the end that extends into the intestine.

[0049] Furthermore, the first pipe passes through the inner cavity of the conical fastener and exits through the through hole at the top of the conical fastener;

[0050] Furthermore, the first conduit passes through the middle of the second balloon;

[0051] Preferably, the second balloon is a ring structure, and its inner ring is fixed to the first tube;

[0052] More preferably, the outer ring of the second balloon is at least partially connected to the inner wall of the conical fixation member;

[0053] In some embodiments, the second conduit is used to introduce gas or liquid into the fixation assembly, so that the fixation assembly is tightly fitted to the stoma, preventing the enema kit from loosening from the stoma;

[0054] Furthermore, the second pipe is connected to the balloon of the fixing component, and a one-way valve is provided on the second pipe to ensure unidirectional flow of liquid or gas.

[0055] Furthermore, a pressure relief valve is provided on the second pipeline to release the gas or liquid inside the balloon after the operation is completed.

[0056] It should be noted that there are various types of valves for inflating or filling the balloon, such as Y-type valves, which can be integrated into one unit, or set separately. These are all easily implemented by those skilled in the art, and will not be elaborated here.

[0057] In another embodiment, the second conduit has two branches, each connected to one of the two balloons, and can independently control the inflation or deflation of the two balloons.

[0058] Furthermore, the enema assembly includes an enema solution bag; the enema solution bag is connected to the first conduit;

[0059] It should be noted that the connection between the enema solution bag and the tubing is a mature connection structure in this field, and will not be shown or described in detail here;

[0060] In some other embodiments, the enema assembly may also include a reservoir bag for storing excrement from the stoma. However, such a reservoir bag is not essential to the present invention.

[0061] Compared with the prior art, this application includes the following beneficial technical effects:

[0062] First, the stoma enema kit provided by the present invention includes a fixing component, which includes a conical fixing member. The conical fixing member can support the stoma, avoid the risk of leakage due to the folds of the stoma, increase the contact area between the stoma and the stoma, and prevent the overflow of the enema fluid.

[0063] Second, by setting up a balloon, the conical fixation device can be effectively fixed relative to the stoma;

[0064] Third, by designing a spiral conical support and a balloon within the spiral conical support cavity, a smooth curved surface with performance different from traditional balloons is formed, which can maximize the support of the conical fixation component and form a stable contact with the stoma to avoid overflow.

[0065] Fourth, by setting an annular groove at the bottom of the conical fastener and designing an anti-fouling component inside the annular groove, the anti-fouling component is made of highly absorbent fabric, which can effectively prevent the spread of pollutants caused by overflow. Attached Figure Description

[0066] The present application will be described in further detail below with reference to the accompanying drawings and preferred embodiments. However, those skilled in the art will understand that these drawings are drawn only for the purpose of explaining the preferred embodiments and therefore should not be construed as limiting the scope of this disclosure. Furthermore, unless specifically indicated, the drawings are only schematic representations of the composition or structure of the described objects and may contain exaggerated depictions, and the drawings are not necessarily drawn to scale.

[0067] Figure 1 This is a schematic diagram showing the position of the first balloon in the stoma enema kit of this embodiment.

[0068] Figure 2 This is a schematic diagram showing the positions of the second balloon and the spiral support of the stoma enema kit in this embodiment.

[0069] Figure 3 This is a schematic diagram of the anti-fouling component of the stoma enema kit in this embodiment.

[0070] Figure 4 This is a schematic diagram of the installation of the stoma enema kit tubing assembly in this embodiment.

[0071] Figure 5 This is another schematic diagram showing the installation of the stoma enema kit tubing assembly in this embodiment.

[0072] Figure 6 This is a cross-sectional schematic diagram of the stoma enema kit device in this embodiment.

[0073] Among them, 1. Conical fixing component; 2. First balloon; 3. Through hole; 4. Second balloon; 5. Spiral support component; 6. Annular groove; 7. Anti-fouling component; 8. First pipe; 9. Second pipe; 10. Side hole. Detailed Implementation

[0074] The following is in conjunction with the appendix Figures 1 to 6 The diagram shows a stoma enema kit provided by the present invention, and provides a detailed description of the present disclosure.

[0075] To make the objectives, technical solutions, and advantages of this disclosure clearer, the following detailed description is provided in conjunction with embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the scope of this disclosure. Furthermore, it should be noted that because the solutions provided by this invention design numerous flexible components, and due to the characteristics of drafting software, the product form cannot be completely reproduced; therefore, the illustrations provided in this invention are all schematic diagrams.

[0076] See appendix Figures 1-6 The stoma enema kit provided in this embodiment should be noted that the stoma enema kit shown in the accompanying drawings is only a model of the stoma enema kit and not the final product. The stoma enema kit provided in this embodiment is a flexible part and has a large deformation.

[0077] Includes fixing components, anti-fouling components, pipe components, and enema components;

[0078] In the enema kit, the tubing assembly includes a first tube for enema and a second tube connected to the fixation assembly; the first tube is used to introduce enema liquid from the container into the intestine through the stoma; the second tube is used to introduce gas or liquid into the fixation assembly, so that the fixation assembly is tightly connected to the stoma, preventing the enema kit from loosening from the stoma;

[0079] See Figure 1 This is a schematic diagram showing the position of the first balloon in the stoma enema kit of this embodiment. As can be seen from the attached diagram, the enema kit includes a fixation component. Figure 1 The fixation components are shown as a conical fixation member 1 and a first balloon 2. The conical fixation member 1 is horn-shaped, and the first balloon 2 is designed at the tip of the conical shape of the conical fixation member.

[0080] exist Figure 1 The first balloon 2 shown is in a partially inflated / or liquid-filled state. After the first balloon 2 is inflated or liquid-filled, the first balloon 2 will expand and support outward. The first balloon 2 is partially or completely connected to the conical fixing member 1. Figure 1 The conical fastener 1 is in an extended state, which can be supported by the strength of the material itself.

[0081] It should be noted that there is a certain supporting force between the conical fixing member 1 and the first balloon 2, and this supporting force can be supported by the strength of the material of the conical fixing member 1 itself.

[0082] See further Figure 1 A through hole 3 is also provided at the top of the conical fastener 1. The through hole is used to reserve an installation position for the pipe assembly. During production, the pipe assembly is inserted into the through hole 3 and fixed in the position of the through hole 3. The specific fixing method may include bonding or welding. It should be noted that the installation and fixing of the pipe assembly are well known to those skilled in the art and will not be described in detail here.

[0083] See Figure 1 In the illustrated embodiment, during use, the conical tip of the conical fixation member 1 can penetrate deep into the stoma and support it, causing the stoma to expand. Due to the shape of the conical fixation member, the contact area between the conical fixation member 1 and the stoma is increased, and the friction between the stoma and the conical fixation member 1 increases in a stepped manner, that is, the friction gradually increases away from the conical tip of the conical fixation member 1, and the sealing performance is better. This structure prevents the backflow of enema fluid and excrement. In addition, since a first balloon 2 is provided at the top of the conical fixation member, the first balloon 2 expands after being inflated with air or liquid, forming a basically spherical outer periphery. The maximum inflation capacity of the balloon is usually designed to be 50mL-60mL, and under normal circumstances, inflating it with 25-30mL of liquid or gas can achieve a good fixation effect. Since the first balloon 2 can be well fixed inside the stoma after being inflated with air or liquid, it plays a role in expansion fixation, and the shape of the conical fixation member is used to fix the outside of the stoma.

[0084] See Figure 2 This is a schematic diagram showing the positions of the second balloon and the spiral support of the stoma enema kit in this embodiment. Figure 2 In the illustrated embodiment, the first balloon 2 is not shown, and the second balloon 4 is not filled with gas or liquid.

[0085] Figure 2 In another embodiment, the conical fixation member 1 of the stoma enema kit includes an inner cavity, which includes a spiral support member 5 and a second balloon 4. The capacity of the second balloon 4 is 60-80 mL. The second balloon 4 is at least partially connected to the inner wall of the conical fixation member 1 cavity.

[0086] The outer periphery of the second balloon 4 is connected to the cavity of the conical fixation member 1. After being filled with gas, the outer periphery of the second balloon 4 presents a basic spherical shape and is connected to the inner wall of the cavity of the conical fixation member 1.

[0087] After being filled with gas or liquid, the second balloon 4 can support the conical fixation member 1 and increase the volume of the conical fixation member 1, which is beneficial for the conical fixation member 1 to have a larger contact area with the stoma.

[0088] See Figure 2The spiral support 5 of the fixing component is disposed in the cavity of the conical fixing component 1, and the spiral support 5 is at least partially connected and fixed to the inner wall of the cavity of the conical fixing component 1; the spiral support 5 is a conical spiral support, and its structure is basically the same as that of the conical fixing component 1.

[0089] See further Figure 2 The second balloon 4 is disposed inside the cavity space formed by the spiral support 5; and at least a portion of the second balloon 4 is connected to at least a portion of the inner wall of the conical fixation member 1 cavity; that is, the spiral support 5 is disposed between the second balloon 4 and the inner wall of the conical fixation member 1 cavity, and this structure can fix the spiral support member.

[0090] During use, when the second balloon 4 is filled with gas or liquid, it supports the conical fixation member 1 on one hand, and the spiral support member 5 limits the movement of the second balloon 4 to prevent slippage. Since there is a gap between the upper and lower spiral units of the spiral support member 5, the second balloon 4 will deform when filled with gas or liquid. The upper and lower spiral units of the spiral support member limit the deformation of the second balloon 4. The second balloon 4 will protrude more between the upper and lower spiral units. This protruding structure can generate a more concentrated force on the conical fixation member 1, which can better support the conical fixation member 1, thereby better fixing the conical fixation member to the stoma and preventing backflow of irrigation fluid.

[0091] See appendix Figure 3 This is a schematic diagram of the anti-fouling component of the stoma enema kit in this embodiment; the tube assembly is not shown in this schematic diagram. The conical fixing member 1 has an annular groove 6 on the outer periphery of its cone-shaped bottom, with the groove 6 facing towards the cone-shaped top of the conical fixing member 1.

[0092] During use, due to the unevenness of the intestinal folds, there may still be leakage of enema fluid. This annular groove can drain the enema fluid and excrement, preventing the excrement and enema fluid from contaminating surrounding clothing or bed sheets.

[0093] The conical fastener 1 includes an anti-fouling component 7 in the annular groove 6. The anti-fouling component 7 is made of highly absorbent fabric or porous material. The anti-fouling component 7 is at least partially connected to the annular groove 6 on the outer periphery of the bottom of the cone of the conical fastener 1.

[0094] The highly absorbent fabric is a nonwoven fabric made of one or more of cotton fiber, seaweed fiber, and viscose fiber;

[0095] The porous material is formed from one or more of seaweed and polyurethane.

[0096] When the antifouling component 7 of the stoma enema kit provided in this embodiment is a non-woven fabric, the fabric structure is relatively loose and can adapt to certain deformations; in addition, cotton, viscose fiber, and seaweed fiber have high water absorption, especially seaweed fiber, which can absorb up to 20g / g of liquid. This design can effectively fix the overflowing enema fluid and excrement.

[0097] See Figure 4 This is a schematic diagram of the stoma enema kit tubing assembly installation in this embodiment; see also Figure 5 This is another schematic diagram showing the installation of the stoma enema kit tubing assembly in this embodiment, wherein... Figures 4-5 The complete display tube assembly is not yet available. Figure 5 The second balloon 4 is inflated. In this state, the second balloon 4 can constrain the tubular assembly, ensuring that the tubular assembly cannot move. See also Figures 4-5 The tube assembly of the stoma enema kit includes a first tube 8 for enema and a second tube 9 connected to the fixation assembly;

[0098] The first conduit 8 is used to introduce enema fluid from the container into the intestine through the stoma. The first conduit 8 has at least one side hole 10 at one end that extends into the intestine.

[0099] The first pipe 8 passes through the inner cavity of the conical fixing member 1 and exits through the through hole 3 at the top of the conical fixing member; and the first pipe 8 passes through the middle of the second balloon 4; the second balloon 4 has a ring structure, and its inner ring is fixed to the first pipe 8.

[0100] See Figure 5 The second conduit 9 is used to introduce gas or liquid into the fixation assembly, ensuring a tight seal between the fixation assembly and the stoma, preventing the enema kit from loosening. The second conduit 9 connects to the first balloon 2 and the second balloon 4 of the fixation assembly. A one-way valve and a pressure relief valve can be installed on the second conduit of the tubing assembly to ensure unidirectional flow of liquid or gas. Figures 4-5 Not shown in the figure, this setup is a conventional design in the art for controlling liquids or gases.

[0101] It should be noted that there are various types of valves for inflating or filling the balloon, such as Y-type valves, which can be integrated into one unit, or set separately. These are all easily implemented by those skilled in the art and will not be elaborated here. Figure 5 The positions indicated by the dashed lines can be assembled and customized according to the actual pipe assembly parts.

[0102] See Figure 5 The second pipe 9 has two branches, which are connected to the first balloon 2 and the second balloon 4 respectively, and can independently control the filling or inflation of the two balloons.

[0103] Furthermore, the stoma enema kit tubing assembly provided in this embodiment of the invention also includes an enema solution bag; the enema solution bag is connected to the first conduit 8.

[0104] See Figure 6 This is a cross-sectional schematic diagram of the stoma enema kit device in this embodiment. Figure 5 The diagram shows the second balloon 4 filled with liquid or gas. When the second balloon 4 is filled with liquid or gas, the spiral support 5 is located between the conical fixing member 1 and the second balloon 4. Simultaneously, the spiral support 5 limits the position of the second balloon, preventing slippage. Figure 5 It can also be seen that there is a gap between the upper and lower spiral units of the spiral support 5. Due to the deformation of the spiral support 5, the second balloon 4 protrudes more between the upper and lower spiral units of the spiral support 5, squeezing the conical fixator 1 and better supporting it. In this state, because the conical fixator 1 is made of flexible material, the protruding part of the second balloon 4 between the upper and lower spiral units squeezes the conical fixator 1 more fully. The outer layer of the conical fixator 1 has a spiral-like structure (caused by the difference in force), which makes it easier to seal with the folds of the stoma, thereby achieving excellent fixation and preventing backflow of irrigation fluid.

[0105] The present application has been described in detail above. Specific examples have been used to illustrate the principles and implementation methods of the present application. The descriptions of the embodiments above are only for the purpose of helping to understand the present disclosure and its core ideas. It should be noted that those skilled in the art can make several improvements and modifications to the present application without departing from the principles of the present application, and these improvements and modifications also fall within the protection scope of the claims of the present application.

Claims

1. An ostomy irrigation kit device, comprising a fixing assembly, a tube assembly, an irrigation assembly, characterized in that: wherein the tube assembly comprises a first tube (8) for irrigation and a second tube (9) for communication with the fixing assembly; the first tube (8) is used to introduce irrigation liquid from a container into the intestinal tract through the stoma; the second tube (9) is used to introduce gas or liquid into the fixing assembly, so that the fixing assembly is closely combined with the stoma; the fixing assembly comprises at least two balloons and a conical fixing member (1) and a spiral support member (5); the first balloon (2) is arranged at the top side of the cone of the conical fixing member (1); the second balloon (4) is arranged in the inner cavity of the conical fixing member (1); the spiral support member (5) is arranged in the cavity of the conical fixing member (1); the spiral support member (5) is a conical spiral support member, and the shape of the spiral support member (5) is the same as that of the conical fixing member (1); the second balloon (4) is arranged inside the cavity space formed by the spiral support member (5); and at least a part of the second balloon (4) is connected with at least a part of the inner wall of the cavity of the conical fixing member (1); there is a gap between the upper spiral unit and the lower spiral unit of the spiral support member (5); when the second balloon (4) is filled with liquid or gas in use, the second balloon (4) is deformed due to the spiral support member (5), the second balloon (4) between the upper spiral unit and the lower spiral unit of the spiral support member (5) protrudes, and the second balloon (4) extrudes the conical fixing member (1).

2. The ostomy irrigation kit device according to claim 1, characterized in that: the capacity of the first balloon (2) is 50-60 mL; and the first balloon (2) forms a spherical outer periphery after being filled with liquid or gas.

3. The ostomy irrigation kit device according to claim 2, characterized in that: the first balloon (2) presents a circular ring structure after being filled with liquid or gas, and the inner side of the circular ring is fixed with the conical fixing member (1).

4. The ostomy irrigation kit device according to claim 3, characterized in that: the capacity of the second balloon (4) in the inner cavity of the conical fixing member (1) is 60-80 mL; the second balloon (4) can support the conical fixing member (1) after being filled with gas or liquid, the volume of the conical fixing member (1) is increased, and the conical fixing member (1) has a larger contact area with the stoma.

5. The ostomy irrigation kit device according to claim 4, characterized in that: the second balloon (4) arranged in the inner cavity of the conical fixing member (1) is at least partially connected with the inner wall of the cavity of the conical fixing member (1).

6. The ostomy irrigation kit device according to claim 4, characterized in that: at least a part of the spiral support member (5) is fixed with the inner wall of the cavity of the conical fixing member (1); the spiral support member (5) is a conical spiral support member, and the shape of the spiral support member (5) is the same as that of the conical fixing member (1).

7. The ostomy irrigation kit device according to any one of claims 1-6, characterized in that: the outer periphery of the bottom of the cone of the conical fixing member (1) is provided with an annular groove (6). The groove of the annular groove (6) is directed to the top of the conical fixing member (1).

8. The device according to claim 7, wherein: The ostomy enema kit further comprises an anti-fouling component (7); The anti-fouling component (7) is a high-hygroscopic fabric; The high-hygroscopic fabric is a non-woven fabric made of one or more of cotton fiber, seaweed fiber and viscose fiber; The anti-fouling component (7) is at least partially connected to the annular groove (6) at the outer periphery of the bottom of the cone of the conical fixing member (1).

9. The device according to claim 7, wherein: The first conduit (8) is used to introduce the enema liquid from the container into the intestinal tract through the stoma, and the first conduit (8) is provided with at least one side hole (10) at the end deep into the intestinal tract; The first conduit (8) passes through the inner cavity of the conical fixing member (1) and is led out of the through hole (3) at the top of the conical fixing member (1); The first conduit (8) passes through the second balloon (4) in the inner cavity of the conical fixing member (1); the second balloon (4) is a circular ring structure, and the inner ring of the circular ring plays a restraining role on the first conduit (8); The second conduit (9) is connected with the first balloon (2) and the second balloon (4) of the fixing component, and the second conduit (9) is provided with a one-way valve and a pressure relief valve.

Citation Information

Patent Citations

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