Ring-pharynx muscle balloon dilatation stimulation training tube
By designing a cricopharyngeal muscle balloon dilation and stimulation training tube that includes a fixed balloon body and a ring-shaped balloon body, the problems of inaccurate positioning and pain caused by repeated pulling during catheter balloon training are solved, achieving precise dilation and enhanced cold stimulation therapeutic effects.
Patent Information
- Application Number
- CN202422955535.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-02
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2034-12-02
AI Technical Summary
Existing catheter balloons are difficult to position accurately during cricopharyngeal muscle dilation training, and repeated pulling causes patient pain and local damage, with poor treatment results.
A cricopharyngeal muscle balloon dilation stimulation training tube was designed, comprising a fixed balloon body, a dilating balloon body, and a ring-shaped balloon body. By using the fixed balloon body for limitation and combining it with ice-cold water flow stimulation, precise dilation and enhanced therapeutic effect can be achieved.
This approach improves the precision and therapeutic effect of cricopharyngeal muscle expansion training, reduces patient discomfort, and enhances the comfort and effectiveness of treatment.
Smart Images

Figure CN223716195U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to the design and application field of ring pharyngeal muscle training device, more particularly to a ring pharyngeal muscle balloon dilatation stimulation training tube. BACKGROUND
[0002] The swallowing movement of human body is the result of the relaxation and contraction coordination of the lower pharyngeal part, upper esophageal sphincter, esophageal body and lower esophageal sphincter, if the swallowing and its relaxation are not coordinated during the swallowing process, the bolus is difficult to enter the esophagus from the pharynx, causing dysphagia, i.e. ring pharyngeal muscle relaxation failure, also known as esophageal stenosis.
[0003] At present, the dysphagia caused by ring pharyngeal muscle relaxation failure is generally treated by dilatation training with a urinary catheter balloon, which is repeatedly inserted and pulled continuously to dilate and treat the ring pharyngeal muscle, so as to achieve the treatment effect. However, the existing urinary catheter balloon often has the following shortcomings during treatment:
[0004] Shortage one: repeated pulling and inserting is required, and the position of the airbag body cannot be accurately located at the ring pharyngeal muscle, affecting the training effect.
[0005] Shortage two: continuous back and forth pulling increases the pain of the patient, and is prone to local friction bleeding and swelling, which is not comfortable for the patient.
[0006] Shortage three: the effect of airbag dilatation stimulation is general, and the training and treatment effect is not ideal.
[0007] In order to solve the above technical problems of the urinary catheter balloon training tube, medical personnel in the field have designed many improved ring pharyngeal muscle balloon dilatation tube structures, such as a double-balloon ring pharyngeal muscle treatment tube with authorization publication number CN219558434U, which discloses the specific structure and use of the existing ring pharyngeal muscle balloon dilatation training tube. According to the above disclosed patent content, the fixed spherical balloon and the columnar structure balloon are set to fix and limit the position of the training tube body by the fixed spherical balloon, and then the training is carried out by the volume change of the columnar structure balloon, so as to improve the dilatation training effect of the ring pharyngeal muscle, reduce the repeated pulling and stimulation training method, and reduce the discomfort of training use.
[0008] The technical solution is a further improvement and perfection of the structure of the existing ring pharyngeal muscle dilatation treatment tube based on the structure of the existing technology. It not only can accurately dilate and train the ring pharyngeal muscle with the airbag body, but also can cold stimulate and train the ring pharyngeal muscle by injecting cold water flow into the ring-shaped airbag body, improve the stimulation training effect of the treatment tube, and is more conducive to the stimulation dilatation training use of the patient. UTILITY MODEL CONTENT
[0009] The utility model discloses a kind of cricopharyngeal muscle balloon dilatation stimulation training tubes, its main purpose is to overcome the above-mentioned deficiencies and shortcomings of prior art.
[0010] The technical scheme adopted by the utility model is as follows:
[0011] A cricopharyngeal muscle balloon dilatation stimulation training tube, including catheter body, three delivery tube cavities and three airbag bodies are arranged on the catheter body, the delivery tube cavities are respectively first delivery tube cavity, second delivery tube cavity, third delivery tube cavity, the airbag bodies are respectively fixed airbag body, dilatation airbag body and annular airbag body, the fixed airbag body is located in front of the dilatation airbag body, the annular airbag body is cooperatively arranged on the surface of the dilatation airbag body, the distal end of the first delivery tube cavity is communicated with the fixed airbag body, and the proximal end is connected with the air charging and discharging interface; the distal end of the second delivery tube cavity is communicated with the dilatation airbag body, and the proximal end is connected with a hand pressure airbag body; the distal end of the third delivery tube cavity is communicated with the annular airbag body, and the proximal end is connected with injection syringe, cold water lower than normal temperature is movably arranged in the injection syringe.
[0012] Further, the annular airbag body is a double-ring airbag body structure.
[0013] Further, the fixed airbag body, dilatation airbag body and annular airbag body are not communicated.
[0014] Further, the surface of the dilatation airbag body is provided with a convex ring body.
[0015] Further, the surface of the catheter body is provided with scale marks.
[0016] As known from the above description and explanation of the utility model, compared with prior art, the utility model has the advantages that:
[0017] Advantage one: the utility model discloses a fixed airbag body, dilatation airbag body and annular airbag body, which can limit and fix the catheter body, so that the dilatation airbag body can accurately perform dilatation training operation at cricopharyngeal muscle, and the cold water flow injected into the annular airbag body can increase the stimulation of cricopharyngeal muscle, thereby improving the training treatment effect.
[0018] Advantage two: the utility model discloses a convex ring body on the surface of the dilatation airbag body, and a double-ring airbag body in the annular airbag body, which can further improve the dilatation stimulation effect. DRAWINGS
[0019] Figure 1 It is the structure schematic diagram of the utility model.
[0020] Figure 2It is the structure schematic view when the utility model is used.
[0021] Among them, the catheter body 1, scale mark 11, delivery tube cavity 2, first delivery tube cavity 21, second delivery tube cavity 22, third delivery tube cavity 23, air bag body 3, fixed air bag body 31, expansion air bag body 32, convex ring body 321, annular air bag body 33, charge and exhaust interface 4, hand pressure air bag body 5, liquid injection needle cylinder 6. Specific embodiments
[0022] The specific embodiments of the utility model are further described and illustrated below with reference to the accompanying drawings.
[0023] As Figure 1 and Figure 2 Indicated, a ring pharyngeal muscle balloon dilatation stimulation training pipe, including catheter body 1, the surface of catheter body 1 is provided with scale mark 11, three delivery tube cavities 2 and three air bag bodies 3 are arranged on catheter body 1, the delivery tube cavity is first delivery tube cavity 21, second delivery tube cavity 22, third delivery tube cavity 23 respectively, the air bag body is fixed air bag body 31, expansion air bag body 32 and annular air bag body 33 respectively, the fixed air bag body 31 is located in the front of expansion air bag body 32, the annular air bag body 33 is cooperatively arranged on the surface of expansion air bag body 32, the annular air bag body 33 is double-ring air bag body structure, the fixed air bag body 31, expansion air bag body 32 and annular air bag body 33 are not communicated.
[0024] As Figure 1 and Figure 2 Indicated, the distal end of first delivery tube cavity 21 is communicated with fixed air bag body 31, and the proximal end is connected with charge and exhaust interface 4; the distal end of second delivery tube cavity 22 is communicated with expansion air bag body 32, and the proximal end is connected with hand pressure air bag body 5, and the surface of expansion air bag body 32 is provided with convex ring body 321.The distal end of third delivery tube cavity 23 is communicated with annular air bag body 33, and the proximal end is connected with liquid injection needle cylinder 6, and cold water lower than normal temperature is movably arranged in liquid injection needle cylinder 6.By being provided with convex ring body 321 on the surface of expansion air bag body 32 and being provided with annular air bag body 33 of double-ring air bag body, the dilatation stimulation effect can be further improved.
[0025] By being provided with fixed air bag body 31, expansion air bag body 32 and annular air bag body 33, the catheter body 1 can be fixedly limited by fixed air bag body 31, so that expansion air bag body 32 can accurately perform dilatation training operation at ring pharyngeal muscle, and the stimulation of ring pharyngeal muscle can be increased by injecting ice-cold water flow in annular air bag body 33, so that the training treatment effect is improved.
[0026] When using:
[0027] First, the catheter body 1 is inserted into the esophagus, and after determining that it enters the esophagus and completely passes through the cricopharyngeus muscle, the position of the catheter body 1 is kept, then gas is injected into the inflation-exhaust interface 4 at the proximal end of the first delivery lumen 21 through the injection syringe, so that the fixed balloon body 31 at the distal end of the first delivery lumen 21 is inflated and expanded, and is clamped at the lower edge of the cricopharyngeus muscle;
[0028] Then, the hand-pressed balloon body 5 is compressed, gas is filled into the expanded balloon body 32 through the second delivery lumen 22, the expanded balloon body 32 is inflated and expanded, and the cricopharyngeus muscle is expanded;
[0029] Then, the ice-cold water flow is extracted through the injection syringe 6, and then the injection syringe 6 is injected into the distal end of the third delivery lumen 23, so that the cold water flow is filled into the annular balloon body 33, the cold water flow cold stimulates the cricopharyngeus muscle, and the expansion training effect is improved;
[0030] At this time, the hand-pressed balloon body 5 is released, the expanded balloon body 32 is retracted, the cold water flow in the annular balloon body 33 is extracted through the injection syringe 6, then the hand-pressed balloon body 5 is compressed again, and the expansion stimulation operation is repeated, so that the expansion stimulation treatment training is completed.
[0031] The above is only a specific embodiment of the present application, but the design concept of the present application is not limited to this, and any non-substantial improvement of the present application by using this concept should belong to the act of infringing the protection scope of the present application.
Claims
1. A cricopharyngeal muscle balloon dilation stimulation training tube, characterized by: The catheter body is provided with three delivery lumen and three balloon bodies, the delivery lumen are respectively first delivery lumen, second delivery lumen and third delivery lumen, the balloon bodies are respectively fixed balloon body, expansion balloon body and annular balloon body, the fixed balloon body is located in front of the expansion balloon body, the annular balloon body is cooperatively arranged around the surface of the expansion balloon body, the distal end of the first delivery lumen is communicated with the fixed balloon body, and the proximal end is connected with a gas charging and discharging interface; the distal end of the second delivery lumen is communicated with the expansion balloon body, and the proximal end is connected with a hand-pressing balloon body; the distal end of the third delivery lumen is communicated with the annular balloon body, and the proximal end is connected with a liquid injection syringe, and the liquid injection syringe movably arranged with cold water below normal temperature.
2. A cricopharyngeal muscle balloon dilation stimulation training tube according to claim 1, wherein: The annular balloon body is a double-ring balloon body structure.
3. A cricopharyngeal muscle balloon dilation stimulation training tube according to claim 1, wherein: The fixed balloon body, the expansion balloon body and the annular balloon body are not communicated with each other.
4. The cricopharyngeal muscle balloon dilation stimulation training tube of claim 1, wherein: The surface of the expansion balloon body is provided with a convex ring body.
5. A cricopharyngeal muscle balloon dilation stimulation training tube according to claim 1, wherein: The surface of the catheter body is provided with a scale mark.
Citation Information
Patent Citations
Double-bag cyclopharyngeal muscle treatment tube
CN219558434U