Humidifying drug delivery device
Technical Field
The utility model belongs to a medicine feeder, in particular to a humidifying medicine feeder.
Background
The aerosol inhalation method uses high-speed oxygen flow to make the liquid medicine form mist, and then the liquid medicine is inhaled from respiratory tract. The purpose of painless, rapid and effective treatment is achieved through the administration of the respiratory system.
However, tracheotomy patients cannot breathe through the nose, and generally do not have a function of humidifying inhaled air by inserting a tracheal tube in the throat of the patient in order to maintain vital signs, but artificial airways do not have a function of humidifying inhaled air by a natural respiratory system. If the liquid medicine is directly atomized and enters from the artificial airway, sputum scabs can be formed on the upper respiratory tract of a patient, so that the bronchus can be blocked, dyspnea and even asphyxia can be caused, the infection rate of the lung can also rise, and therefore, the medicine fog needs to be humidified in the atomization administration process.
Therefore, it is necessary to design a humidification drug delivery device with a drug mist humidification function.
SUMMERY OF THE UTILITY MODEL
The utility model aims to solve the technical problem of providing a humidifying medicine feeder with medicine fog humidifying function.
In order to solve the technical problem, the utility model adopts the following technical scheme:
the utility model provides a humidifying ware of dosing, includes medicine storage bottle, water storage bottle, first ultrasonic atomization device, second ultrasonic atomization device, inlet tube and breather pipe, and the water inlet intercommunication of inlet tube and first ultrasonic atomization device is passed through to the medicine storage bottle, and the water storage bottle passes through the water inlet intercommunication of inlet tube and second ultrasonic atomization device, and tracheal cannula passes through the gas vent intercommunication of breather pipe and first ultrasonic atomization device, and tracheal cannula passes through the gas vent intercommunication of breather pipe and second ultrasonic atomization device.
As a further improvement of the above technical solution:
the medicine storage bottle and the water storage bottle are both provided with heaters.
Furthermore, the humidifying drug delivery device further comprises a shell, the drug storage bottle, the water storage bottle, the first ultrasonic atomization device, the second ultrasonic atomization device and the water inlet pipe are all arranged in the shell, the vent pipe is formed by mutually communicating a first pipe, a second pipe and a third pipe and is Y-shaped, the second pipe stretches into the shell to be connected with the first ultrasonic atomization device, the third pipe stretches into the shell to be connected with the second ultrasonic atomization device, and the first pipe stretches out of the shell to be connected with the tracheal casing. Utilize casing protection medicine storage bottle, water storage bottle, first ultrasonic atomization device and second ultrasonic atomization device, improve humidifying ware life of dosing, conveniently carry moreover.
Furthermore, the shell is provided with a first switch knob, a second switch knob, a third switch knob and a power switch, the first switch knob, the second switch knob and the third switch knob are all coupled with the power switch, the first switch knob is coupled with the first ultrasonic atomization device, the second switch knob is coupled with the second ultrasonic atomization device, and the third switch knob is coupled with the heater. The adjustment of the humidity and the temperature of the medicine fog is realized by adjusting the first switch knob, the second switch knob and the third switch knob.
The first pipe is provided with a sleeve, one end of the first pipe is sleeved with the sleeve and fixedly connected with the sleeve, an external thread is arranged on the outer wall of the sleeve, the shell is provided with a threaded hole, and the first pipe extends out of the shell from the threaded hole and then is in threaded connection with the shell. The first tube is a bellows. The first tube length and angle can be adjusted as desired without affecting the components within the housing.
The first pipe is provided with a connector, one end of the connector is inserted into the tracheal casing and communicated with the tracheal casing, the other end of the connector extends out of the tracheal casing and is sleeved on the first pipe, and through holes are formed in two sides of the extending part of the connector; the joint is in threaded connection with the first pipe. The joint is detachably connected to the first pipe and is convenient to replace.
Furthermore, the connector is detachably connected with a mouth suction pipe which is communicated with the first pipe through the connector; the outer wall of the mouth suction pipe is provided with a fixing piece, and the fixing piece is provided with a tooth socket. Can enter the human body through the oral cavity of a patient to realize atomization treatment.
Furthermore, the outer pipe wall of the joint is provided with a plurality of gear rings arranged at intervals, the inner wall of one end of the nozzle suction pipe is provided with a plurality of clamping grooves matched with the gear rings, and the gear rings are clamped into the clamping grooves after the joint is inserted into the nozzle suction pipe. The treatment mode can be conveniently selected according to the needs, the tracheal cannula can be selected for connection, and the oral cavity of the patient can also be inserted.
Compared with the prior art, the utility model has the advantages that:
utilize first ultrasonic atomization device to atomize to liquid medicine in the storage bottle, utilize second ultrasonic atomization device to carry out the atomizing back to the distilled water in the storage bottle and sneak into in the medicine fog, realize humidifying the medicine fog, avoid patient's upper respiratory tract to form the phlegm scab.
Drawings
Fig. 1 is a schematic structural view of a humidified administration device.
Fig. 2 is an internal connection view of the humidified applicator.
Description of reference numerals:
1. a medicine storage bottle; 2. a water storage bottle; 3. a second ultrasonic atomizing device; 4. a first ultrasonic atomizing device; 5. a water inlet pipe; 6. a breather pipe; 7. a housing; 8. a through hole; 60. a mouth suction pipe; 61. a third tube; 62. a second tube; 63. a first tube; 64. a sleeve; 65. a joint; 66. a ring gear; 67. a card slot; 68. a fixing member; 69. A tooth socket; 71. a first switch knob; 72. a third switch knob; 73. a second switch knob; 74. and a power switch.
Detailed Description
In order to make the aforementioned objects, features and advantages of the present invention more clearly understood, the following detailed description of the present invention, taken in conjunction with the accompanying drawings and the detailed description, is given in a non-limiting manner.
As shown in fig. 1 and fig. 2, the humidifying medicine feeder of this embodiment, including medicine storage bottle 1, water storage bottle 2, first ultrasonic atomization device 4, second ultrasonic atomization device 3, inlet tube 5 and breather pipe 6, medicine storage bottle 1 is through the inlet intercommunication of inlet tube 5 with first ultrasonic atomization device 4, water storage bottle 2 is through the inlet intercommunication of inlet tube 5 with second ultrasonic atomization device 3, the tracheal cannula passes through breather pipe 6 and the gas vent intercommunication of first ultrasonic atomization device 4, the tracheal cannula passes through the gas vent intercommunication of breather pipe 6 with second ultrasonic atomization device 3. The medicine storage bottle 1 and the water storage bottle 2 are both provided with heaters. The humidifying ware of dosing still includes casing 7, medicine storage bottle 1, water storage bottle 2, first ultrasonic atomization device 4, second ultrasonic atomization device 3 and inlet tube 5 all set up in casing 7, breather pipe 6 comprises first pipe 63, second pipe 62 and third pipe 61 intercommunication each other and is the Y style of calligraphy, second pipe 62 stretches into casing 7 and is connected with first ultrasonic atomization device 4, third pipe 61 stretches into casing 7 and is connected with second ultrasonic atomization device 3, first pipe 63 stretches out casing 7 outer with tracheal cannula connection. The housing 7 is provided with a first switch knob 71, a second switch knob 73, a third switch knob 72 and a power switch 74, the first switch knob 71, the second switch knob 73 and the third switch knob 72 are all coupled with the power switch 74, the first switch knob 71 is coupled with the first ultrasonic atomization device 4, the second switch knob 73 is coupled with the second ultrasonic atomization device 3, and the third switch knob 72 is coupled with the heater.
Wherein, first pipe 63 is equipped with sleeve 64, and sleeve 64 cover is located first pipe 63 one end and rather than fixed connection, and the sleeve 64 outer wall is equipped with the external screw thread, and casing 7 is equipped with the screw hole, and first pipe 63 stretches out casing 7 outer back sleeve 64 and casing 7 threaded connection by the screw hole. The first pipe 63 is a corrugated pipe. The first pipe 63 is provided with a joint 65, one end of the joint 65 is inserted into the tracheal casing and communicated with the tracheal casing, the other end of the joint 65 extends out of the tracheal casing and is sleeved on the first pipe 63, and through holes 8 are formed in two sides of the extending part of the joint 65; the joint 65 is screwed with the first pipe 63. The joint 65 is detachably connected with the mouth suction pipe 60, and the mouth suction pipe 60 is communicated with the first pipe 63 through the joint 65; the outer wall of the mouth suction pipe 60 is provided with a fixing member 68, and the fixing member 68 is provided with a tooth groove 69. The outer pipe wall of the joint 65 is provided with a plurality of gear rings 66 arranged at intervals, the inner wall of one end of the nozzle suction pipe 60 is provided with a plurality of clamping grooves 67 matched with the gear rings 66, and the gear rings 66 are clamped into the clamping grooves 67 after the joint 65 is inserted into the nozzle suction pipe 60.
For the use of this example, reference is made to the following steps:
first, a drug is added to the drug storage bottle 1, and distilled water is added to the water storage bottle 2. Then, the power is turned on, and the power switch 74 is turned on. The adjustment of the humidity and the temperature of the medicine fog is realized by adjusting the first switch knob 71, the second switch knob 73 and the third switch knob 72, and the formation of sputum scab on the upper respiratory tract of a patient is avoided. At the longest, one end of the connector 65 is inserted into the tracheal cannula and communicated with the tracheal cannula, and the patient is treated by atomization. The above-mentioned wet administration device can also be used for carrying out atomization treatment on the patient through the oral cavity by the mouth suction pipe 60.
The humidifying drug delivery device is simple in structure, and each structure has a corresponding specific function.