CN210186203U - Non-mask type oral oxygen inhalation tube - Google Patents
Non-mask type oral oxygen inhalation tube Download PDFInfo
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- CN210186203U CN210186203U CN201920424391.8U CN201920424391U CN210186203U CN 210186203 U CN210186203 U CN 210186203U CN 201920424391 U CN201920424391 U CN 201920424391U CN 210186203 U CN210186203 U CN 210186203U
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- oxygen
- tube
- oral
- pipe
- inhalation
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Abstract
The utility model relates to the field of medical equipment, specifically relate to a non-mask type through mouth oxygen tube. The oxygen uptake device comprises an oxygen uptake main pipe and a branch pipe, wherein the oxygen uptake main pipe is communicated with the branch pipe, and a T-shaped oxygen outlet part which is placed in the oral cavity is arranged on the branch pipe. Replaces a nasal oxygen inhalation tube and an oxygen inhalation mask, and provides an oral oxygen inhalation tube for patients with chronic obstructive pulmonary disease. Can ensure the effective oxygen inhalation of the patients, simultaneously prevent carbon dioxide from being retained in blood, and reduce the complications and death risks.
Description
Technical Field
The utility model relates to the field of medical equipment, specifically relate to a non-mask type through mouth oxygen tube.
Background
In clinical practice, for patients who need oxygen inhalation therapy, an oxygen inhalation device is generally adopted: single nostril oxygen inhalation tube, double nostril oxygen inhalation tube, common oxygen inhalation mask, venturi mask and oxygen storage bag mask. Generally, the oxygen deficiency of the patient is not serious, only a single nostril oxygen inhaling pipe or a double nostril oxygen inhaling pipe is adopted, if the single nostril oxygen inhaling pipe or the double nostril oxygen inhaling pipe can not supply enough oxygen for the patient, a common oxygen inhaling mask, a venturi mask and an oxygen storage bag mask can be adopted.
In clinical practice, however, many patients have severe allergic rhinitis with enlarged nasal turbinates and even nasal polyps, causing significant nasal obstruction, resulting in mouth breathing, or other factors causing mouth breathing. Breathing through mouth results in ineffective oxygen uptake through nose. In the short term, clinicians may use a mask to inhale oxygen to correct a patient's hypoxia.
Patients suffering from diseases such as chronic obstructive pulmonary disease and the like which are easy to cause blood carbon dioxide retention can only breathe by opening mouth for various reasons, but the carbon dioxide is difficult to discharge due to oxygen inhalation of the mask, so that the carbon dioxide is retained in the blood, and even respiratory acidosis, pulmonary encephalopathy and even coma occur, thereby endangering life.
Disclosure of Invention
In order to solve the technical problem, the utility model provides a non-mask formula through mouth oxygen tube for the patient who suffers from chronic obstructive pulmonary disease can carry out the oxygen uptake through the oral cavity, can avoid carbon dioxide retention in blood simultaneously, guarantees patient's life safety.
In order to achieve the above purpose, the utility model adopts the following technical scheme:
a non-mask type oral oxygen inhalation tube comprises an oxygen inhalation main tube and a branch tube, wherein the oxygen inhalation main tube is communicated with the branch tube, and a T-shaped oxygen outlet part for being placed in an oral cavity is arranged on the branch tube.
Furthermore, the branch pipe is also provided with a face binding piece for fixing the orientation of the oral oxygen inhalation pipe.
In a using method aspect, the sections of the branch pipe, which are positioned on two sides of the T-shaped oxygen outlet part, are wound to form annular rings around two ears.
Further preferably, the oral oxygen tube further comprises a fastening portion, and both ends of the branch tube penetrate the fastening portion.
Furthermore, one end of the oxygen uptake main pipe is connected with a one-to-two conversion head, and the branch pipe is communicated with the oxygen uptake main pipe through the one-to-two conversion head.
Preferably, the face attaching piece is provided with air holes.
More preferably, the face-attaching sheet is perpendicular to the T-shaped oxygen outlet portion.
Further, the other end of the oxygen uptake main pipe is connected with an air source connector.
Preferably, the T-shaped oxygen outlet part is provided with an oxygen outlet, and the width of the oxygen outlet is 0.8 cm-1.1 cm.
The utility model has the advantages as follows:
(1) replaces a nasal oxygen inhalation tube and an oxygen inhalation mask, and provides an oral oxygen inhalation tube for patients with chronic obstructive pulmonary disease. Can ensure the effective oxygen inhalation of the patients, simultaneously prevent carbon dioxide from being retained in blood, and reduce the complications and death risks.
(2) The diameter of the oxygen outlet of the T-shaped oxygen outlet part is larger than that of the oxygen outlet of the nasal oxygen inhalation tube, so that the oxygen outlet is not easy to be blocked by secretion. The tube wall of the oxygen outlet is slightly thick and is an arc edge, so that the smoothness of the oxygen outlet is ensured, and the comfort degree of a patient in use is improved.
(3) The design of the face adhesive sheet can ensure that the oxygen outlet of the T-shaped oxygen outlet part faces the oral cavity, the plane of the face adhesive sheet is perpendicular to the T-shaped oxygen outlet part, and the oxygen outlet of the T-shaped oxygen outlet part can be further prevented from turning over and facing the outside of the oral cavity. The face laminating piece adopts the design of sieve mesh form, increases the gas permeability.
(4) The branch pipe is wound into annular rings, the two annular rings are hung on ears, the fastening part is moved upwards, the branch pipe is fixed on the face of a patient, and the oral oxygen inhalation pipe can be prevented from falling off.
Drawings
Fig. 1 is an overall structure diagram of the present invention.
The notations in the figures have the following meanings:
10-oxygen uptake main pipe 11-air source joint 12-one-to-two conversion head 20-branch pipe 21-fastening part
22-T-shaped oxygen outlet part 23-face attaching sheet
Detailed Description
The technical solution of the present invention will be clearly and completely described below with reference to the following embodiments and the accompanying drawings. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative work belong to the protection scope of the present invention.
Example 1
As shown in fig. 1, the non-mask type oral oxygen inhalation tube comprises an oxygen inhalation main tube 10 and a branch tube 20, wherein the oxygen inhalation main tube 10 is communicated with the branch tube 20, and the branch tube 20 is provided with a T-shaped oxygen outlet 22 for placing in the oral cavity. One end of the oxygen uptake main pipe 10 is connected with a one-to-two conversion head 12, and the branch pipe 20 is communicated with the oxygen uptake main pipe 10 through the one-to-two conversion head 12. An oxygen outlet is formed in the T-shaped oxygen outlet 22, and the width of the oxygen outlet is 0.8 cm-1.1 cm.
One end of the oxygen main pipe 10 is inserted into one insertion hole of the one-to-two conversion head 12, and two ends of the branch pipe 20 are inserted into the other two insertion holes of the one-to-two conversion head 12, so that the oxygen main pipe 10 and the branch pipe 20 are communicated. The oxygen main pipe 10 is communicated with an oxygen source through an air source connector 11 on the oxygen main pipe, and the oxygen source outputs oxygen which enters the body of a patient through the oxygen main pipe 10, the branch pipe 20 and the T-shaped oxygen outlet part 22. The T-shaped oxygen outlet part 22 is partially extended into the oral cavity of the patient, so that the oxygen outlet pipe can replace a nasal oxygen inhalation pipe and an oxygen inhalation mask, and an oral oxygen inhalation pipe is provided for the patient with chronic obstructive pulmonary disease. Can ensure the effective oxygen inhalation of the patients, simultaneously prevent carbon dioxide from being retained in blood, and reduce the complications and death risks.
In this embodiment, the oxygen outlet portion is not limited to be T-shaped, but may be an arc-shaped soft plate matching with the mouth of the human body, the middle portion of the arc-shaped soft plate is provided with an oxygen outlet, the oxygen outlet is communicated with the branch pipe 20, and the two sides of the oxygen outlet of the arc-shaped soft plate are provided with strip-shaped ports to prevent carbon dioxide from remaining in the body of the patient.
Example 2
In example 1, as shown in fig. 1, the branch tube 20 is further provided with a face attachment piece 23 for fixing the orientation of the oral oxygen inhalation tube, and the face attachment piece 23 is provided with ventilation holes. The T-shaped oxygen outlet 22 is directed into the oral cavity, and the oral oxygen tube is fixed by the face-attaching sheet 23. The face adhesive sheet 23 is designed to ensure that the oxygen outlet of the T-shaped oxygen outlet 22 faces the oral cavity, and the plane of the face adhesive sheet 23 is perpendicular to the T-shaped oxygen outlet 22, thereby further preventing the oxygen outlet of the T-shaped oxygen outlet 22 from turning in the direction to face the outside of the oral cavity. The face laminating sheet 23 adopts a mesh-shaped design, and air permeability is improved.
The high molecular polymer is made into a pipe and a face-attached sheet 23 by an extrusion molding method, and other parts are made by an injection molding method, and then a final product is formed by a heat seal and bonding method.
Example 3
On the basis of the embodiments 1 and 2, the sections of the branch pipe 20 positioned at two sides of the T-shaped oxygen outlet part 22 are wound to form annular rings. The oral oxygen inhalation tube further comprises a fastening portion 21, and both ends of the branch tube 20 penetrate the fastening portion 21.
The branch tubes 20 are wound to the rear, upper and front of the ears through the lower part of the ears, and the branch tubes 20 at the two sides are converged at the lower jaws. Because the lower edges of the ears of the human body and the upper edges of the oral cavity of the human body are basically in the same level, the fixing method that the pipelines are crossed and wound around the ears can ensure that the oxygen inhalation tubes of the oral cavity and the face are basically in the same level, reduce the dragging, increase the comfort and reduce the risk of the oxygen outlet being separated due to the dragging. The fastening part 21 is pushed up to a position with proper tightness, so that the branch pipe 20 is attached to the face of the patient, and the fixing of the oral oxygen inhalation pipe is completed.
Claims (9)
1. A non-mask type oral oxygen inhalation tube comprises an oxygen inhalation main tube (10) and branch tubes (20), wherein the oxygen inhalation main tube (10) is communicated with the branch tubes (20), and the non-mask type oral oxygen inhalation tube is characterized in that: the branch pipe (20) is provided with a T-shaped oxygen outlet part (22) which is used for being placed in the oral cavity.
2. The oral oxygen tube of claim 1, wherein: the branch pipe (20) is also provided with a face joint sheet (23) for fixing the orientation of the oral oxygen inhalation pipe.
3. The oral oxygen tube of claim 1 or 2, wherein: the sections of the branch pipe (20) positioned at two sides of the T-shaped oxygen outlet part (22) are wound to form annular rings.
4. The oral oxygen tube of claim 3, wherein: the oral oxygen inhalation tube further comprises a fastening part (21), and two ends of the branch tube (20) penetrate through the fastening part (21).
5. The oral oxygen tube of claim 4, wherein: one end of the oxygen uptake main pipe (10) is connected with a one-to-two conversion head (12), and the branch pipe (20) is communicated with the oxygen uptake main pipe (10) through the one-to-two conversion head (12).
6. The oral oxygen tube of claim 2, wherein: the face attaching piece (23) is provided with air holes.
7. The oral oxygen tube of claim 6, wherein: the face attaching sheet (23) is perpendicular to the T-shaped oxygen outlet part (22).
8. The oral oxygen tube of claim 7, wherein: the other end of the oxygen uptake main pipe (10) is connected with an air source joint (11).
9. The oral oxygen tube of claim 8, wherein: an oxygen outlet is formed in the T-shaped oxygen outlet (22), and the width of the oxygen outlet is 0.8 cm-1.1 cm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920424391.8U CN210186203U (en) | 2019-03-29 | 2019-03-29 | Non-mask type oral oxygen inhalation tube |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201920424391.8U CN210186203U (en) | 2019-03-29 | 2019-03-29 | Non-mask type oral oxygen inhalation tube |
Publications (1)
Publication Number | Publication Date |
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CN210186203U true CN210186203U (en) | 2020-03-27 |
Family
ID=69877834
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201920424391.8U Expired - Fee Related CN210186203U (en) | 2019-03-29 | 2019-03-29 | Non-mask type oral oxygen inhalation tube |
Country Status (1)
Country | Link |
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CN (1) | CN210186203U (en) |
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2019
- 2019-03-29 CN CN201920424391.8U patent/CN210186203U/en not_active Expired - Fee Related
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Legal Events
Date | Code | Title | Description |
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GR01 | Patent grant | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20200327 Termination date: 20210329 |