CN211611200U - Trachea cannula device with gas purification function - Google Patents

Trachea cannula device with gas purification function Download PDF

Info

Publication number
CN211611200U
CN211611200U CN201922218128.6U CN201922218128U CN211611200U CN 211611200 U CN211611200 U CN 211611200U CN 201922218128 U CN201922218128 U CN 201922218128U CN 211611200 U CN211611200 U CN 211611200U
Authority
CN
China
Prior art keywords
tube
gas
wall
air
air duct
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN201922218128.6U
Other languages
Chinese (zh)
Inventor
李晓召
李峰
米贝贝
曹向波
宋峥
蒋磊
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Henan Linuo Medical Technology Co ltd
Original Assignee
Henan Linuo Medical Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Henan Linuo Medical Technology Co ltd filed Critical Henan Linuo Medical Technology Co ltd
Priority to CN201922218128.6U priority Critical patent/CN211611200U/en
Application granted granted Critical
Publication of CN211611200U publication Critical patent/CN211611200U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Landscapes

  • Respiratory Apparatuses And Protective Means (AREA)

Abstract

The utility model discloses a trachea cannula device with gas purifying function, which comprises an air duct inserted into the trachea of a patient, wherein the outer end of the air duct is provided with an air inlet nozzle used for connecting a breathing machine, the outer wall of the air duct adjacent to the inner end part of the body is provided with an air bag, the inner wall of the air duct is embedded with an inflation gas circuit communicated with the air bag, the inflation gas circuit is connected with an inflation tube, and the end part of the inflation tube is provided with an inflating valve; the joint of the inflation tube and the inflation gas circuit is positioned in the middle of the gas guide tube; the inner wall of the outer end part of the air guide pipe body is coated with a photocatalyst layer, and the inner wall of the middle part of the air guide pipe body is provided with a zinc oxide whisker coating. The utility model discloses be convenient for carry out the operation that the gasbag filled the gassing, can improve the gaseous quality of transport through increasing anion content and disinfecting, both reduced patient's painful degree when inserting the trachea, can sting again at patient and press the back fully to kick-back, avoid patient's danger of suffocating, reduce patient's the cost of changing trachea cannula device.

Description

Trachea cannula device with gas purification function
Technical Field
The utility model relates to the technical field of medical equipment, especially, relate to a trachea cannula device.
Background
For patients with impaired spontaneous breathing, mask ventilation or intubation ventilation is required. The mask ventilation method has the disadvantages that gas is pressed into the stomach, so that substances in the stomach flow back to be sucked into the trachea, and the danger is easily brought to patients. Intubation ventilation is the use of a ventilator and an endotracheal intubation device to insert tubing into the trachea of a patient to provide oxygen to the patient.
The existing pipeline for inserting the trachea of a patient has two types of relatively soft and relatively hard, the relatively soft trachea cannula device is made of soft plastics, the pipeline has the advantage that the pain degree caused to the patient is low when the trachea cannula device is inserted, the defect that the patient can unconsciously bite and press the pipeline of the trachea cannula device in the mouth by teeth sometimes is caused, the pipeline is difficult to rebound after being bitten and pressed, so that the patient is suffocated, in addition, the trachea cannula device is scrapped, a new trachea cannula device needs to be replaced, the medical cost is improved, and the burden of the patient is increased. The relatively hard pipeline is made of elastic plastic, and the pipeline has the advantages that after the pipeline is bitten by a patient, the pipeline can be rebounded as long as the patient does not bite the pipeline any more, so that the pipeline is ensured to be smooth, and the patient does not have suffocation danger. Such an endotracheal intubation device has the disadvantage of causing a high degree of pain to the patient when inserting the trachea.
The negative ions in the air not only promote the synthesis and storage of vitamins in the human body, but also strengthen and activate the physiological activities of the human body, so it is also called "air vitamins", which is considered to have a very important influence on the life activities of the human body and other organisms like the vitamins of food. Medical research shows that the negatively charged particles in the air increase the oxygen content in the blood, are beneficial to blood oxygen transportation, absorption and utilization, and have the effects of promoting human metabolism, improving human immunity, enhancing human body muscle energy and regulating the function balance of the human body. According to the examination, the negative ions have the effects of inhibiting, relieving and assisting treatment on 7 systems of the human body, nearly 30 diseases, and have certain assisting effect on treatment if the content of the negative ions in the gas delivered to the patient can be increased.
The patient is infirm and treatment of the patient is positively effected if the gas delivered to the patient can be further sterilised.
The existing trachea cannula device is provided with an air bag at the inner end part, an inflation air channel communicated with the air bag is arranged in a pipeline of the trachea cannula device, and the inflation air channel extends to the outer end of the pipeline and is connected with an inflating valve. Because the inflation nozzle is substantially directly connected to the conduit, the operation of inflating or deflating the bladder requires operation at a location very close to the conduit, which is inconvenient.
SUMMERY OF THE UTILITY MODEL
An object of the utility model is to provide a trachea cannula device with purify gaseous function, be convenient for carry out the operation that the gasbag filled the gassing, can improve the gaseous quality of transport through increasing anion content and disinfecting.
In order to achieve the purpose, the trachea cannula device with the gas purifying function of the utility model comprises a gas guide tube which is inserted into the trachea of a patient, the outer end of the gas guide tube is provided with an air inlet nozzle which is used for connecting a breathing machine, the outer wall of the gas guide tube which is adjacent to the inner end part of the body is provided with an air bag, the inner wall of the gas guide tube is embedded with an inflation gas circuit which is communicated with the air bag, the inflation gas circuit is connected with an inflation tube, and the end part of the inflation;
the joint of the inflation tube and the inflation gas circuit is positioned in the middle of the gas guide tube; the inner wall of the outer end part of the air guide pipe body is coated with a photocatalyst layer, and the inner wall of the middle part of the air guide pipe body is provided with a zinc oxide whisker coating.
The inner wall of the air duct at the air bag is provided with an antibiotic coating.
The air duct adjacent to the air bag is provided with a micro-pressure one-way valve, and the conduction direction of the micro-pressure one-way valve is from the outer wall of the air duct to the inner cavity of the air duct.
The air duct comprises an outer tube and an inner tube which are jointed, the outer tube is made of soft plastic, and the inner tube is made of elastic plastic.
Spring wires are embedded in the pipe wall of the inner pipe.
The utility model discloses have following advantage:
the utility model provides an use four needle-like zinc oxide whiskers in the zinc oxide whisker coating, utilize the spicule active center and the pointed end effect of zinc oxide whisker, thereby the activation produces the water and the oxygen in the gas of zinc oxide whisker coating, produces the activation effect and releases the anion. The anion has the effects of promoting metabolism, promoting blood circulation, activating cell, enhancing immunity, promoting health, and resisting bacteria.
The utility model provides a photocatalyst layer preferably adopts titanium dioxide photocatalyst, produces strong catalytic degradation function naturally under the effect of outside light, and harmful component in the catalytic degradation gas kills the bacterium, plays good air-purifying's effect.
The photocatalyst layer and the zinc oxide whisker coating layer together play a good role in purifying air, sterilizing and generating negative ions, and the effect of improving the air quality is obvious, so that the utility model has the functions of stabilizing the state of an illness and assisting rehabilitation.
Because the inflation tube is arranged and is longer (the inflation tube is not connected with the external end part of the air duct but connected with the middle part of the air duct), when the air bag is inflated and deflated through the inflation nozzle, the inflation nozzle can be far away from the inflation tube, so that the air bag inflation and deflation device has sufficient space for convenient operation and is convenient for the operation of inflating and deflating the air bag.
Different antibiotics may be used for the antibiotic coating for different conditions. When air is fed into the trachea of a patient, the air is further sterilized at the antibiotic coating, and the treatment effect is improved. When the hydrops is extracted, the hydrops can be removed more thoroughly and rapidly by extracting the hydrops from the openings at the inner ends of the body of the micro-pressure one-way valve and the air duct simultaneously, and the situation that more hydrops are not extracted to enter the lung of a patient is prevented.
The outer tube is softer, compares hard tube when the suction trachea can reduce patient's painful degree by a wide margin. After the patient unconsciously bites the airway tube, the airway tube is not ventilated, and the patient loses strength quickly due to suffocation, thereby relaxing the airway tube. Under the elastic force effect of inner tube, the air duct can kick-back to resume for patient's normal function of carrying out artificial respiration, avoid patient to suffocate and bring danger.
In a word, the utility model discloses be convenient for carry out the operation that the gasbag filled the gassing, can improve the gaseous quality of transport through increasing anion content and disinfecting.
Drawings
FIG. 1 is a schematic structural diagram of the present invention
Fig. 2 is a schematic sectional view a-a of fig. 1.
Detailed Description
As shown in fig. 1 and fig. 2, the trachea cannula device with gas purifying function of the present invention comprises a gas guiding tube 1 for inserting into the trachea of a patient, wherein the outer end of the gas guiding tube 1 is provided with a gas inlet nozzle 2 for connecting a breathing machine, and the inner end of the gas guiding tube 1 is provided with an opening 13. The outer wall of the air duct 1 adjacent to the inner end part of the body is connected with an air bag 3 in a surrounding manner, an inflation air path 4 communicated with the air bag 3 is embedded in the inner wall of the air duct 1, the inflation air path 4 is connected with an inflation tube 5 positioned outside the air duct 1, and the end part of the inflation tube 5 is provided with an inflating valve 6;
the joint of the inflation tube 5 and the inflation gas circuit 4 is positioned in the middle of the gas guide tube 1; the inner wall of the external end part of the gas-guide tube 1 is coated with a photocatalyst layer 7, and the inner wall of the middle part of the gas-guide tube 1 is provided with a zinc oxide whisker coating 8. The zinc oxide whisker coating 8 adopts the tetrapod-shaped zinc oxide whisker as the main component of the coating.
The inner wall of the air duct 1 at the air bag 3 is provided with an antibiotic coating 9.
The air duct 1 adjacent to the air bag 3 is provided with a micro-pressure one-way valve 10, and the conducting direction of the micro-pressure one-way valve 10 is from the outer wall of the air duct 1 to the inner cavity of the air duct 1. The opening pressure difference of the micro-pressure one-way valve 10 is larger than the maximum pressure difference inside and outside the micro-pressure one-way valve 10 during normal artificial respiration, so that the micro-pressure one-way valve 10 cannot be opened during normal artificial respiration.
The air duct 1 comprises an outer tube 11 and an inner tube 12 which are jointed and connected, wherein the outer tube 11 is made of soft plastics, and the inner tube 12 is made of elastic plastics. The inner tube 12 and the outer tube 11 may be connected by injection molding or may be bonded together by hot pressing. The spring wire is embedded in the wall of the inner tube 12, which can enhance the elasticity of the airway tube 1, so that the airway tube 1 can be more thoroughly restored after being bitten by a patient. The spring wire is of conventional construction and is not shown.
When in use, the utility model is connected with a respirator through the air inlet nozzle 2, and the air bag 3 is in an uninflated state; then the medical staff inserts the airway tube 1 into the trachea from the mouth of the patient, and in the process, the pain of the patient can be greatly reduced compared with the hard elastic plastic tube because the outer tube 11 is soft. After inserting the trachea, medical personnel aerify in to gasbag 3 through inflating mouth 6, gasbag 3 swells the back and is in the same place with patient's trachea wall laminating, then just can provide normal artificial respiration to patient through the breathing machine, provides sufficient oxygen for patient, prevents that patient from stifling. Because the inflation tube 5 is arranged, and the inflation tube 5 is long (the inflation tube 5 is not connected with the external end part of the air duct 1, but is connected with the middle part of the air duct 1), when the air bag 3 is inflated and deflated through the inflation nozzle 6, the inflation nozzle 6 can be far away from the inflation tube 5, so that the air bag inflation and deflation device has sufficient space for convenient operation, and is convenient for the operation of inflating and deflating the air bag 3.
After the patient unconsciously bites the airway tube 1, the airway tube 1 is not ventilated, and the patient loses strength quickly due to suffocation, thereby relaxing the airway tube 1. Under the elastic force of the inner tube 12, the air duct 1 can be rebounded, so that the function of artificial respiration of the patient is restored, and the danger caused by suffocation of the patient is avoided. The photocatalyst layer 7 is positioned at the external part of the air duct 1, and can catalyze and degrade harmful ingredients in the air under the action of ambient light when the air passes through, kill bacteria and play a good role in purifying air. When the gas passes through the zinc oxide whisker coating 8, the negative ions can be released by utilizing the active center and the tip effect of the needle-shaped body of the zinc oxide whisker. When the gas passes through the antibiotic coating 9, the specific type of antibiotic in the antibiotic coating 9 can kill the specific type of bacteria, and the auxiliary treatment effect is achieved. When the airway tube 1 is withdrawn from the patient's mouth, this accumulated fluid needs to be withdrawn in order to prevent the accumulated fluid in the trachea above the cuff 3 from entering the lungs. Air is pumped out of the air duct 1 through external equipment such as a respirator, the pressure difference between the inside and the outside of the micro-pressure one-way valve 10 is larger than the opening pressure difference of the micro-pressure one-way valve 10, the micro-pressure one-way valve 10 is opened, and the accumulated liquid is extracted. When the effusion is extracted, the air bag 3 is deflated, and the effusion which is not sucked in by the micro-pressure one-way valve 10 is pumped into the air duct 1 under the action of negative pressure at the opening at the inner end of the air duct 1 when flowing downwards. Adopt the utility model discloses a structure, when the extraction hydrops, the internal end opening through minute-pressure check valve 10 and air duct 1 extracts the hydrops simultaneously, can more thoroughly clear away the hydrops fast, prevents that more hydrops from not being taken out and getting into patient's lung.
The above embodiments are only used for illustrating but not limiting the technical solutions of the present invention, and although the present invention is described in detail with reference to the above embodiments, those of ordinary skill in the art should understand that: the present invention may be modified or substituted with equivalents without departing from the spirit and scope of the invention, which should be construed as being limited only by the claims.

Claims (5)

1. The trachea cannula device with the gas purifying function comprises a gas guide tube which is inserted into the trachea of a patient, wherein the outer end of the gas guide tube is provided with a gas inlet nozzle which is connected with a breathing machine, the outer wall of the gas guide tube, which is adjacent to the inner end of the body, is provided with a gas bag, the inner wall of the gas guide tube is embedded with an inflating gas circuit which is communicated with the gas bag, the inflating gas circuit is connected with an inflating tube, and the end part of the inflating tube is;
the method is characterized in that: the joint of the inflation tube and the inflation gas circuit is positioned in the middle of the gas guide tube; the inner wall of the outer end part of the air guide pipe body is coated with a photocatalyst layer, and the inner wall of the middle part of the air guide pipe body is provided with a zinc oxide whisker coating.
2. A tracheal intubation device with a gas purging function according to claim 1, wherein: the inner wall of the air duct at the air bag is provided with an antibiotic coating.
3. A tracheal intubation device with a gas purging function according to claim 1, wherein: the air duct adjacent to the air bag is provided with a micro-pressure one-way valve, and the conduction direction of the micro-pressure one-way valve is from the outer wall of the air duct to the inner cavity of the air duct.
4. A gas purifying functional endotracheal intubation device according to any one of claims 1 to 3, wherein: the air duct comprises an outer tube and an inner tube which are jointed, the outer tube is made of soft plastic, and the inner tube is made of elastic plastic.
5. A tracheal intubation device with a gas purging function according to claim 4, wherein: spring wires are embedded in the pipe wall of the inner pipe.
CN201922218128.6U 2019-12-12 2019-12-12 Trachea cannula device with gas purification function Active CN211611200U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201922218128.6U CN211611200U (en) 2019-12-12 2019-12-12 Trachea cannula device with gas purification function

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201922218128.6U CN211611200U (en) 2019-12-12 2019-12-12 Trachea cannula device with gas purification function

Publications (1)

Publication Number Publication Date
CN211611200U true CN211611200U (en) 2020-10-02

Family

ID=72628778

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201922218128.6U Active CN211611200U (en) 2019-12-12 2019-12-12 Trachea cannula device with gas purification function

Country Status (1)

Country Link
CN (1) CN211611200U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116236659A (en) * 2023-02-24 2023-06-09 上海市浦东新区公利医院(第二军医大学附属公利医院) An adjustable endotracheal tube

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN116236659A (en) * 2023-02-24 2023-06-09 上海市浦东新区公利医院(第二军医大学附属公利医院) An adjustable endotracheal tube

Similar Documents

Publication Publication Date Title
ES2248707T3 (en) LONG-TERM OXYGENOTHERAPY SYSTEM.
CN104958818A (en) Multifunctional double-bag trachea cannula
CN105056360B (en) With auxiliary sounding valve function it is flushable can the anti-error suction of suction sputum autogenous cutting intubation
CN201516218U (en) Synchronous separation-type breath and expectoration trachea cannula
CN204972608U (en) an endotracheal tube
CN204972590U (en) Disposable simple and easy assisted respiration ware
CN208809249U (en) A nasal oxygen tube with a support mechanism
CN106668997A (en) Oxygen supply device for respiratory medicine departments
CN211611200U (en) Trachea cannula device with gas purification function
CN204972589U (en) Multi -functional artificial respirator is used in nursing of intracardiac branch of academic or vocational study
CN111544851A (en) Vital capacity trainer for medical care
CN201001897Y (en) Throat cover
CN209092444U (en) A kind of Internal Medicine-Cardiovascular Dept. manually breathes device of air
CN208877635U (en) A kind of medical jet endotracheal device fallen after the avoidable root of the tongue
CN217339676U (en) Trachea cannula capable of automatically discharging phlegm by one-way airflow
CN106063966A (en) A kind of inhalation anesthesia system retaining autonomous respiration
CN206534968U (en) A kind of Respiratory Medicine oxygen supply device
CN206007741U (en) Oxygen uptake artificial respirator for cardiovascular internal medicine
CN212997837U (en) Oxygen inhalation mask for nursing
CN213220236U (en) Tracheal catheter for department of respiration
CN204890869U (en) Multi -functional couple of bag trachea cannula
CN212679792U (en) A drug inhalation aid
CN210078513U (en) Household hiccup suppression respirator
CN209347866U (en) One kind being used for Respiratory Medicine clinical disinfection filter device
Hopper et al. Mechanical ventilation

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant