Mouth rinsing device for patient with limited opening degree of oral cavity
By designing mouthwashing devices for patients with limited oral opening, and using check valves and specific shapes to achieve passive mouthwashing, the difficulty of mouthwashing in patients with oral inflammation is solved, and efficiency is improved and the patient's pain and workload is reduced.
Patent Information
- Application Number
- CN202422201188.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-09
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-09-09
AI Technical Summary
Patients with oral inflammation have limited oral opening, and the current mouthwashing method is inefficient, the patient suffers a lot, and the environment is polluted, which increases the workload of medical workers and accompanying families.
A mouthwash for patients with limited oral opening is designed, including disinfection bottles, cleaning bottles and waste liquid bottles. The check valve design and specific shape of pipes are used to realize passive mouthwash and waste liquid recycling, avoiding reflux, and equipped with a water-absorbing cotton layer and sponge lining ring to prevent contamination and damage.
Passive mouth rinsing is achieved, reducing patient pain, improving rehabilitation efficiency, reducing the workload of medical workers and accompanying families, and avoiding environmental pollution.
Smart Images

Figure CN223111828U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of medical and nursing consumables, in particular to a mouth rinser for patients with limited mouth opening. Background Technique
[0002] Regular disinfection and cleaning of the oral cavity is an important task in the treatment of stomatitis. However, patients with oral inflammation have limited mouth opening amplitude and are not suitable for actively puffing cheeks to rinse their mouths, which causes inconvenience to the disinfection and cleaning work of the oral cavity. If the mouth cannot be rinsed effectively and in a timely manner and oral care is not carried out, the damage of oral mucositis will be aggravated. Severe oral mucositis can lead to secondary diseases such as septic shock.
[0003] At present, there is no targeted tool. The existing mouth rinsing methods are not only inefficient, resulting in a large workload for medical staff and family members, but also the patient needs to open their mouth multiple times during the mouth rinsing process to complete the complete process of drinking disinfection liquid, spitting out the disinfection liquid, drinking physiological saline and then spitting out the physiological saline, causing obvious pain to the patient, serious liquid overflow, and easily polluting the ward environment. Content of the Utility Model
[0004] The technical problem to be solved by the utility model is to provide a mouth rinser for patients with limited mouth opening, which provides convenience for cleaning the oral cavity of patients with limited mouth opening through a simple operation method. The disinfection, cleaning and waste liquid recovery pipelines are separated and backflow is avoided, reducing the pain of patients, improving the rehabilitation efficiency, and reducing the workload of medical workers and accompanying family members.
[0005] In order to achieve the above purpose, the technical solution adopted by the utility model is: a mouth rinser for patients with limited mouth opening, including an injection pipeline I with the tail end connected to a disinfection bottle, an injection pipeline II with the tail end connected to a cleaning bottle, and a suction pipeline with the tail end connected to a waste liquid bottle. Check valves with the passage direction towards the oral cavity end are arranged in the injection pipeline I and the injection pipeline II, and check valves with the passage direction away from the oral cavity end are arranged in the suction pipeline.
[0006] As a preferred technical solution of the utility model, the injection pipeline I, the injection pipeline II and the suction pipeline all adopt flat pipes with an elliptical cross-section. The oral cavity ends of the injection pipeline I, the injection pipeline II and the suction pipeline are fixed side by side to form a shape with a cross-section of a capsule, and a limit cover is arranged on the periphery.
[0007] As a preferred technical solution of the utility model, a water-absorbing cotton layer is arranged on the surface of the limit cover.
[0008] As a preferred technical solution of the utility model, the oral cavity ends of the injection pipeline I and the injection pipeline II are both smooth arcs and are provided with through holes, and a sponge gasket is arranged around the suction port at the oral cavity end of the suction pipeline.
[0009] As a preferred technical solution of the present utility model, an anti-fouling cover is snap-connected to the oral cavity ends of the injection pipeline I, the injection pipeline II and the suction pipeline.
[0010] As a preferred technical solution of the present utility model, the disinfection bottle and the cleaning bottle are non-elastic soft bottles, the waste liquid bottle is an elastic bottle that can automatically rebound, the suction pipeline is provided with air holes and a flap covering the air holes is arranged outside, and the air holes are located between the check valve and the waste liquid bottle.
[0011] As a preferred technical solution of the present utility model, arrows facing the oral cavity end are provided on the outer walls of the injection pipeline I and the injection pipeline II, and an arrow facing away from the oral cavity end is provided on the outer wall of the suction pipeline.
[0012] As a preferred technical solution of the present utility model, the disinfection bottle and the cleaning bottle are respectively filled with disinfection liquid medicine and physiological saline.
[0013] As a preferred technical solution of the present utility model, the bottoms of the disinfection bottle, the cleaning bottle and the waste liquid bottle are respectively an inwardly concave bottom, a flat bottom and an outwardly convex bottom.
[0014] The beneficial effects produced by adopting the above technical solutions are as follows: (1) The oral cavity end is smooth and flat, easy to enter the mouth. The patient does not need to open the mouth and actively puff out the cheeks to gargle. The disinfection bottle sprays and impregnates the oral mucosa with the disinfection liquid medicine and then cooperates with the gargling method to achieve the effect of passive gargling, avoiding the aggravation of oral inflammation;
[0015] (2) The operation is simple. According to the order of squeezing the disinfection bottle, squeezing and releasing the waste liquid bottle, squeezing the cleaning bottle and squeezing and releasing the waste liquid bottle again, the passive gargling work can be completed;
[0016] (3) The pipelines for disinfection, cleaning and waste liquid recovery are separated and can avoid backflow;
[0017] (4) The limit cover can calibrate the inlet length of the pipeline, improve the standardization of the operation, and the water-absorbing sponge on the surface can absorb the liquid that accidentally overflows from the oral cavity, avoiding polluting the ward environment;
[0018] (5) When sucking the waste liquid, the sponge gasket can prevent the suction port of the suction pipeline from sucking the oral mucosa or other tissues and causing damage;
[0019] (6) The bottom shapes of the disinfection bottle, the cleaning bottle and the waste liquid bottle are different, which is convenient for blind operation in the environment with weak light in a multi-person ward (such as when others need to turn off the lights at night and rest);
[0020] It provides convenience for cleaning the oral cavity of patients with limited oral opening through a simple operation method, reduces the pain of patients, improves the rehabilitation efficiency, and reduces the workload of medical staff and accompanying family members. Description of the Drawings
[0021] The present utility model will be further described in detail below in conjunction with the accompanying drawings and specific embodiments.
[0022] Figure 1 is a sectional view of the overall structure of the present utility model;
[0023] Figure 2 is Figure 1 a partial enlarged view of the oral cavity inlet end in
[0024] Figure 3 a top view of the inlet end of the present utility model.
[0025] In the figure: 1. Disinfection bottle, 2. Injection pipeline I, 3. Cleaning bottle, 4. Injection pipeline II, 5. Waste liquid bottle, 6. Suction pipeline, 7. Check valve, 8. Limiting cover, 9. Oral cavity inlet end, 10. Anti-pollution cover, 11. Air hole, 12. Flap door, 13. Through hole, 14. Sponge gasket. Specific embodiments
[0026] In the structure of a specific embodiment of the present utility model, it includes an injection pipeline I 2 with its head end communicating with the disinfection bottle 1, an injection pipeline II 4 with its tail end communicating with the cleaning bottle 3, and a suction pipeline 6 with its tail end communicating with the waste liquid bottle 5. Check valves 7 with the passage direction towards the oral cavity inlet end 9 are arranged in the injection pipeline I 2 and the injection pipeline II 4, and check valves 7 with the passage direction away from the oral cavity inlet end 9 are arranged in the suction pipeline 6.
[0027] The injection pipeline I 2, the injection pipeline II 4, and the suction pipeline 6 are all flat pipes with an elliptical cross-section. The oral cavity inlet ends 9 of the injection pipeline I 2, the injection pipeline II 4, and the suction pipeline 6 are fixed side by side to form a shape with a cross-section of a capsule, and a limiting cover 8 is arranged on the periphery. A water-absorbing cotton layer is arranged on the surface of the limiting cover 8. The limiting cover 8 can calibrate the inlet length of the pipeline, improve the standardization of operation, and the water-absorbing cotton layer can absorb the liquid that accidentally overflows from the oral cavity and avoid polluting the ward environment.
[0028] The oral cavity inlet ends 9 of the injection pipeline I 2 and the injection pipeline II 4 are both smooth arcs and are provided with through holes 13. A sponge gasket 14 is arranged around the suction port of the oral cavity inlet end 9 of the suction pipeline 6. When sucking waste liquid, the sponge gasket 14 can prevent the suction port of the suction pipeline 6 from sucking the oral mucosa or other tissues and causing damage.
[0029] An anti-pollution cover 10 is buckled and connected to the oral cavity inlet ends 9 of the injection pipeline I 2, the injection pipeline II 4, and the suction pipeline 6. It plays a role in preventing pollution of the oral cavity inlet end 9 when not in use.
[0030] The disinfection bottle 1 and the cleaning bottle 3 are non-elastic soft bottles, and the waste liquid bottle 5 is an elastic bottle that can automatically rebound. The suction pipeline is provided with an air hole 11 and is externally equipped with a check valve 12 covering the air hole 11. The air hole 11 is located between the check valve 7 and the waste liquid bottle 5. The disinfection bottle 1 and the cleaning bottle 3 do not rebound, so that the liquid can always be filled, avoiding squeezing air into the oral cavity. The waste liquid bottle 5 can automatically rebound, achieving a negative pressure suction effect.
[0031] Arrowheads are provided on the outer walls of the injection pipeline I 2 and the injection pipeline II 4, all facing the oral cavity end 9, and an arrowhead is provided on the outer wall of the suction pipeline 6, facing away from the oral cavity end 9. The arrowheads can indicate the liquid flow direction.
[0032] The disinfection bottle 1 and the cleaning bottle 3 are respectively filled with disinfection liquid medicine and physiological saline. The disinfection liquid medicine disinfects the oral mucosa and relieves inflammation, and the physiological saline is used to finally clean the oral cavity and rinse off the disinfection liquid medicine remaining in the oral cavity.
[0033] The bottoms of the disinfection bottle 1, the cleaning bottle 3 and the waste liquid bottle 5 are respectively an inwardly concave bottom, a flat bottom and an outwardly convex bottom. The different bottom shapes facilitate blind operation in the environment with weak light in a multi-person ward.
[0034] In other embodiments, a syringe can be used to replace the disinfection bottle 1, the cleaning bottle 3 and the waste liquid bottle 5.
[0035] The operation process of the present utility model is as follows: The oral cavity end 9 enters the patient's oral cavity, and the entry standard is that the limit cover 8 touches the patient's lips. First, squeeze the disinfection bottle 1 to squeeze the disinfection liquid medicine into the patient's oral cavity. After gargling and disinfecting, squeeze and release the waste liquid bottle 5. When squeezing the waste liquid bottle 5, the check valve 12 opens, squeezing out the air. When releasing the waste liquid bottle 5, it automatically rebounds, and at the same time the check valve 12 closes, and the disinfection liquid medicine in the oral cavity is sucked into the waste liquid bottle 5 by negative pressure; then squeeze the cleaning bottle 3 to squeeze the physiological saline into the patient's oral cavity. After gargling, squeeze and release the waste liquid bottle 5 again, and suck the physiological saline in the oral cavity into the waste liquid bottle 5.
[0036] The above description is only proposed as a technically feasible solution of the present utility model and does not serve as a single limiting condition for its technical solution itself.
Claims
1. Gargle device for patients with limited oral opening, characterized in that: It includes an injection pipeline Ⅰ with its tail end connected to a disinfection bottle, an injection pipeline Ⅱ with its tail end connected to a cleaning bottle, and a suction pipeline with its tail end connected to a waste liquid bottle. Check valves with a passage direction towards the oral cavity end are provided in the injection pipeline Ⅰ and the injection pipeline Ⅱ, and check valves with a passage direction away from the oral cavity end are provided in the suction pipeline.
2. The mouth rinser for patients with limited mouth opening according to claim 1, characterized in that: The injection pipeline Ⅰ, the injection pipeline Ⅱ, and the suction pipeline are all flat pipes with an elliptical cross-section. The oral cavity ends of the injection pipeline Ⅰ, the injection pipeline Ⅱ, and the suction pipeline are fixed side by side to form a shape with a capsule cross-section, and a limit cover is provided on the periphery.
3. The mouth rinser for patients with limited mouth opening according to claim 2, wherein: A water-absorbing cotton layer is provided on the surface of the limit cover.
4. The mouth rinser for patients with limited mouth opening according to claim 2, wherein: The oral cavity ends of the injection pipeline Ⅰ and the injection pipeline Ⅱ are both smooth arcs and are provided with through holes. A sponge gasket is provided around the suction port at the oral cavity end of the suction pipeline.
5. The oral cavity rinser for patients with limited oral cavity opening according to claim 2, wherein: A pollution-proof cover is buckled and connected to the oral cavity ends of the injection pipeline Ⅰ, the injection pipeline Ⅱ, and the suction pipeline.
6. The mouth rinse device for patients with limited mouth opening according to claim 1, characterized in that: The disinfection bottle and the cleaning bottle are non-elastic soft bottles, and the waste liquid bottle is an elastic bottle that can automatically rebound. The suction pipeline is provided with air holes, and a flap covering the air holes is arranged outside. The air holes are located between the check valve and the waste liquid bottle.
7. The mouth rinser for patients with limited mouth opening according to claim 1, wherein: Arrows towards the oral cavity end are provided on the outer walls of the injection pipeline Ⅰ and the injection pipeline Ⅱ, and arrows away from the oral cavity end are provided on the outer wall of the suction pipeline.
8. The mouth rinser for patients with restricted mouth opening according to claim 1, characterized in that: The disinfection bottle and the cleaning bottle are respectively filled with disinfection liquid medicine and physiological saline.
9. The mouth rinser for patients with limited mouth opening according to claim 1, characterized in that: The bottle bottoms of the disinfection bottle, the cleaning bottle, and the waste liquid bottle are respectively an inward concave bottom, a flat bottom, and an outward convex bottom.