CN220046746U - Oxygen therapy humidifying device for airway of patient with tracheotomy and trachea cannula - Google Patents

Oxygen therapy humidifying device for airway of patient with tracheotomy and trachea cannula Download PDF

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Publication number
CN220046746U
CN220046746U CN202321404103.5U CN202321404103U CN220046746U CN 220046746 U CN220046746 U CN 220046746U CN 202321404103 U CN202321404103 U CN 202321404103U CN 220046746 U CN220046746 U CN 220046746U
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pipe
atomizing
humidifying
atomization
oxygen
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CN202321404103.5U
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曾娜
汪家钰
罗锡保
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Guangxi Zhuang Autonomous Region Jiangbin Hospital
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Guangxi Zhuang Autonomous Region Jiangbin Hospital
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Abstract

The utility model discloses an oxygen therapy humidifying device for an airway of a patient with tracheotomy and trachea cannula, which comprises a humidifying pipe, an atomizing device and a pipeline assembly; a fixed grid sheet and a homogenizing cylinder are arranged in the humidifying pipe; the homogenizing cylinder is hollow and is provided with air outlet holes in a distributed manner; the pipeline assembly comprises an oxygen pipe, an atomization branch pipe I and an atomization branch pipe II; the oxygen pipe penetrates into the humidifying pipe and is clamped on the fixed grid sheet; the atomizing branch pipe I and the atomizing branch pipe II respectively penetrate through the fixed grid sheets and are led into the homogenizing cylinder; the atomizing branch pipes I and the atomizing branch pipes II are connected with each other outside the humidifying pipe to form an atomizing main pipe; the atomization main pipe is connected with an outlet of the atomization device. The device can humidify oxygen in the oxygen therapy process, increase the water content of the oxygen entering the trachea, and protect the health of mucous membranes on the surface of the trachea.

Description

Oxygen therapy humidifying device for airway of patient with tracheotomy and trachea cannula
Technical Field
The utility model belongs to the technical field of medical auxiliary instruments, and particularly relates to an oxygen therapy humidifying device for airways of patients with tracheotomy and trachea cannula.
Background
Oxygen therapy is abbreviated as oxygen therapy, which is a treatment method for improving blood oxygen reduction and improving the activity of human body by inhaling oxygen to a patient, and belongs to the inhalation treatment category. Patients with laryngeal dyspnea, respiratory dysfunction, or lower airway secretion retention often need to be treated by tracheotomy by cutting the trachea at the throat site, inserting a metal tracheal tube and a silicone tube to help solve the respiratory problem. In addition, tracheal intubation is also a common treatment modality to address respiratory disorders in patients.
Patients with respiratory disorders often need oxygen therapy because of low blood oxygen levels due to a small amount of inhaled air. In the normal breathing process of a person, the air passes through the moist oral cavity or nasal cavity and forms moist gas when reaching the air pipe, so that the air pipe is kept moist, and the health of mucous membranes is protected; and when a tracheotomy and a tracheal intubation patient are subjected to oxygen therapy, dry and damaged mucosa on the surface of the trachea is caused because dry oxygen directly enters the trachea, and the patient is injured.
Disclosure of Invention
The utility model aims at solving the problems that in the prior art, when a patient with a tracheotomy and a trachea cannula is subjected to oxygen therapy, oxygen is directly introduced into the trachea of a throat, so that the trachea is dry and mucous membrane is damaged, and provides an airway oxygen therapy humidifying device for the patient with the tracheotomy and the trachea cannula. The device can humidify oxygen in the oxygen therapy process, increase the water content of the oxygen entering the trachea, and protect the health of mucous membranes on the surface of the trachea.
In order to achieve the above purpose, the present utility model adopts the following technical scheme:
an oxygen therapy humidifying device for an airway of a patient with tracheotomy and trachea cannula comprises a humidifying pipe, an atomizing device and a pipeline assembly; a fixed grid sheet and a homogenizing cylinder are arranged in the humidifying pipe; the homogenizing cylinder is hollow and is provided with air outlet holes in a distributed manner; the pipeline assembly comprises an oxygen pipe, an atomization branch pipe I and an atomization branch pipe II; the oxygen pipe penetrates into the humidifying pipe and is clamped on the fixed grid sheet; the atomizing branch pipe I and the atomizing branch pipe II respectively penetrate through the fixed grid sheets and are led into the homogenizing cylinder; the atomizing branch pipes I and the atomizing branch pipes II are connected with each other outside the humidifying pipe to form an atomizing main pipe; the atomization main pipe is connected with an outlet of the atomization device.
The humidifying pipe can be designed into different sizes so as to be matched and connected with a trachea cannula and a corresponding cannula inserted into the throat of a human body in a tracheotomy; the mesh holes on the fixed mesh sheet can be used for fixing the inserted trachea; the air outlet holes on the homogenizing cylinder are uniformly distributed on the homogenizing cylinder, so that atomized gas entering the humidifying pipe uniformly overflows, oxygen is humidified conveniently, and the atomized gas is brought into the throat of a human body by the oxygen; the oxygen pipe is connected with a medical oxygen supply source; the atomizing branch pipe I and the atomizing branch pipe II are converged into an atomizing main pipe and then connected with an atomizing device, so that water or liquid medicine atomized by the atomizing device can be introduced into the humidifying pipe.
As a further technical improvement, the outer side surface of the humidifying pipe is provided with a pipe clamp. The pipe clamp can fix the oxygen pipe, the atomizing branch pipe I and the atomizing branch pipe II, so that all the pipelines are not messy.
As a further technical improvement, the bottom of the humidifying pipe is movably sleeved with a sleeve. The sleeve can be telescopic in the humidifying pipe and is used for connecting the humidifying pipe with the tracheal cannula and the tracheal sleeve of a patient under different conditions.
As a further technical improvement, an electric heating wire is arranged in the atomizing device. The electric heating wire can warm atomized liquid drops after being opened, so that patients can inhale more comfortably.
As a further technical improvement, movable three-way connectors are arranged at the connection positions of the atomization main pipe, the atomization branch pipes I and the atomization branch pipes II. The movable three-way joint can enable the atomization main pipe, the atomization branch pipe I and the atomization branch pipe II to be connected and separated in a plugging mode.
As a further technical improvement, the fixed grid sheet is positioned in front of the homogenization cylinder. The design can make the oxygen pipe export be located the homogenization section of thick bamboo the place ahead, more does benefit to oxygen and brings the atomized liquid drop into the human body when oxygen flows.
As a further technical improvement, the humidifying pipe is made of transparent material. The design is favorable for medical staff to observe the internal condition of the humidifying pipe.
The application method of the airway oxygen therapy humidifying device for the patient with the tracheotomy and the trachea cannula comprises the following steps:
when in use, the oxygen pipe is inserted into the humidifying pipe and is fixed by the fixed grid sheet; an atomization main pipe, an atomization branch pipe I and an atomization branch pipe II are connected; sleeving the humidifying pipe body into a tracheal cannula or a tracheal cannula plastic port of a patient; at the moment, oxygen is injected into the humidifying pipe by the oxygen pipe, and atomized droplets are introduced into the homogenizing cylinder by the atomizing device sequentially through the atomizing main pipe, the atomizing branch pipe I and the atomizing branch pipe II; the atomized liquid drops uniformly overflow from the air outlet hole of the homogenizing cylinder; the atomized liquid drops are delivered into the throat of the patient by the oxygen flowing out of the oxygen pipe, so that the purpose of wetting the throat and the airway of the patient is achieved, and the health of the airway mucosa of the patient is protected.
The technical scheme of the utility model has the following beneficial effects:
1. the device can introduce atomized droplets through the humidifying pipe, so that the atomized droplets are brought into the throat and the airway of a patient by oxygen in the oxygen therapy process, and the problems of tracheotomy and dry and damaged airway mucosa of the patient with trachea cannula in oxygen therapy are avoided.
2. The device can lead atomized liquid drops introduced into the humidifying pipe to slowly and uniformly overflow through the homogenizing cylinder, is favorable for fully mixing with oxygen, ensures that the oxygen is more moist, and increases the protection of the airway mucosa of a patient.
3. The device can heat the liquid in the atomizing device through the electric heating wire, so that the generated atomized liquid drops are warm, and the patient can feel more comfortable after inhaling the atomized liquid drops.
4. The pipe clamp of the device can fix various pipelines, and the problem of messy pipelines is avoided.
5. The sleeve can be stretched in the humidifying pipe, and is beneficial to adjusting and matching the tracheal sleeve or tracheal cannula of a patient under different conditions.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present utility model, the drawings that are required to be used in the description of the embodiments will be briefly described below.
Fig. 1 is a schematic diagram of the overall structure of the device.
Fig. 2 is a schematic structural view of a humidifying pipe.
Reference numerals: the device comprises a 1-humidifying pipe, a 2-atomizing device, a 3-fixed grid sheet, a 4-homogenizing cylinder, a 5-oxygen pipe, a 6-atomizing main pipe, a 7-atomizing branch pipe I, an 8-atomizing branch pipe II, a 9-air outlet, a 10-pipe clamp, an 11-sleeve, a 12-electric heating wire and a 13-movable three-way joint.
Description of the embodiments
The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. It will be apparent that the described embodiments are only some, but not all, embodiments of the utility model. All other embodiments, which can be made by those skilled in the art based on the embodiments of the utility model without making any inventive effort, are intended to be within the scope of the utility model.
Embodiment one:
as shown in fig. 1-2, an oxygen therapy humidifying device for an airway of a patient with tracheotomy and trachea cannula comprises a humidifying pipe 1, an atomizing device 2 and a pipeline assembly; a fixed grid sheet 3 and a homogenizing cylinder 4 are arranged in the humidifying pipe 1; the inside of the homogenizing cylinder 4 is hollow, and air outlet holes 9 are distributed; the pipeline assembly comprises an oxygen pipe 5, an atomization branch pipe I7 and an atomization branch pipe II 8; the oxygen pipe 5 penetrates into the humidifying pipe 1 and is clamped on the fixed grid sheet 3; the atomizing branch pipe I7 and the atomizing branch pipe II 8 respectively penetrate through the fixed grid sheet 3 and are led into the homogenizing cylinder 4; the atomizing branch pipes I7 and II 8 are connected with each other outside the humidifying pipe 1 to form an atomizing main pipe 6; the atomization manifold 6 is connected with the outlet of the atomization device 2.
The outer side surface of the humidifying pipe 1 is provided with a pipe clamp 10.
The bottom of the humidifying pipe 1 is movably sleeved with a sleeve 11.
An electric heating wire 12 is arranged in the atomizing device 2.
The connection position of the atomization main pipe 6 and the atomization branch pipe I7 and the atomization branch pipe II 8 is provided with a movable three-way joint 13.
The application method of the utility model is as follows:
when in use, the oxygen pipe 5 is inserted into the humidifying pipe 1 and is fixed by the fixed grid sheet 3; an atomization main pipe 6, an atomization branch pipe I7 and an atomization branch pipe II 8 are connected; the tube body of the humidifying tube 1 is sleeved into a tracheal cannula or a tracheal cannula plastic port of a patient; at the moment, oxygen is injected into the humidifying pipe 1 by the oxygen pipe 5, and atomized droplets are introduced into the homogenizing cylinder 4 by the atomizing device 2 through the atomizing main pipe 6, the atomizing branch pipe I7 and the atomizing branch pipe II 8 in sequence; the atomized liquid drops uniformly overflow from the air outlet holes 9 of the homogenizing cylinder 4; the atomized liquid drops are delivered into the throat of the patient by the oxygen from the oxygen pipe 5, so that the purpose of wetting the throat and the airway of the patient is achieved, and the health of the airway mucosa of the patient is protected.
Embodiment two:
the difference between this embodiment and the first embodiment is that: the fixed mesh sheet 3 is located in front of the homogenization cylinder 4.
The method of use of this embodiment is the same as that of embodiment one.
Embodiment III:
the difference between this embodiment and the second embodiment is that: the humidifying pipe 1 is made of transparent materials.
The method of use of this embodiment is the same as that of embodiment one.
Embodiment four:
the difference between this embodiment and the third embodiment is that: the fixed mesh sheet 3 is located in front of the homogenization cylinder 4. The humidifying pipe 1 is made of transparent materials.
The method of use of this embodiment is the same as that of embodiment one.
The above embodiments are only exemplary embodiments of the present utility model and are not intended to limit the present utility model, the scope of which is defined by the claims. Various modifications and equivalent arrangements of parts may be made to the present utility model within the spirit and scope of the utility model, and such modifications and equivalents should be considered to fall within the scope of the utility model.
In the description of the present utility model, it should be noted that, directions or positional relationships indicated by terms such as "inner", "front", "rear", "left", "right", etc., are based on directions or positional relationships shown in the drawings, or directions or positional relationships in which the inventive product is conventionally put in use, are merely for convenience of describing the present utility model and simplifying the description, and are not indicative or implying that the apparatus or element to be referred to must have a specific direction, be configured and operated in a specific direction, and thus should not be construed as limiting the present utility model.
In the description of the present utility model, it should also be noted that, unless explicitly specified and limited otherwise, the terms "disposed", "connected" and "connected" are to be construed broadly, and may be, for example, fixedly connected, detachably connected or integrally connected; can be mechanically or electrically connected; can be directly connected or indirectly connected through an intermediate medium, and can be communication between two elements. The specific meaning of the above terms in the present utility model will be understood in specific cases by those of ordinary skill in the art.

Claims (7)

1. An oxygen therapy humidifying device for airways of a patient with tracheotomy and trachea cannula is characterized in that: comprises a humidifying pipe (1), an atomizing device (2) and a pipeline component; a fixed grid sheet (3) and a homogenizing cylinder (4) are arranged in the humidifying pipe (1); the inside of the homogenizing cylinder (4) is hollow, and air outlet holes (9) are distributed;
the pipeline assembly comprises an oxygen pipe (5), an atomization branch pipe I (7) and an atomization branch pipe II (8); the oxygen pipe (5) penetrates into the humidifying pipe (1) and is clamped on the fixed grid sheet (3); the atomizing branch pipe I (7) and the atomizing branch pipe II (8) respectively penetrate through the fixed grid sheet (3) and are led into the homogenizing cylinder (4); the atomizing branch pipe I (7) and the atomizing branch pipe II (8) are connected with each other outside the humidifying pipe (1) to form an atomizing main pipe (6); the atomization main pipe (6) is connected with an outlet of the atomization device (2).
2. The tracheotomy and endotracheal tube patient airway oxygen therapy humidification device of claim 1, wherein: the outer side surface of the humidifying pipe (1) is provided with a pipe clamp (10).
3. The tracheotomy and endotracheal tube patient airway oxygen therapy humidification device of claim 1, wherein: the bottom of the humidifying pipe (1) is movably sleeved with a sleeve (11).
4. The tracheotomy and endotracheal tube patient airway oxygen therapy humidification device of claim 1, wherein: an electric heating wire (12) is arranged in the atomizing device (2).
5. The tracheotomy and endotracheal tube patient airway oxygen therapy humidification device of claim 1, wherein: the connection position of the atomization main pipe (6), the atomization branch pipe I (7) and the atomization branch pipe II (8) is provided with a movable three-way joint (13).
6. The tracheotomy and endotracheal tube patient airway oxygen therapy humidification device of claim 1, wherein: the fixed grid sheet (3) is positioned in front of the homogenization cylinder (4).
7. The tracheotomy and endotracheal tube patient airway oxygen therapy humidification device of claim 1, wherein: the humidifying pipe (1) is made of transparent materials.
CN202321404103.5U 2023-06-05 2023-06-05 Oxygen therapy humidifying device for airway of patient with tracheotomy and trachea cannula Active CN220046746U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321404103.5U CN220046746U (en) 2023-06-05 2023-06-05 Oxygen therapy humidifying device for airway of patient with tracheotomy and trachea cannula

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321404103.5U CN220046746U (en) 2023-06-05 2023-06-05 Oxygen therapy humidifying device for airway of patient with tracheotomy and trachea cannula

Publications (1)

Publication Number Publication Date
CN220046746U true CN220046746U (en) 2023-11-21

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Family Applications (1)

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Country Status (1)

Country Link
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