WO2021134371A1 - Évaporateur d'anesthésie, machine d'anesthésie et procédé de commande pour évaporateur d'anesthésie - Google Patents
Évaporateur d'anesthésie, machine d'anesthésie et procédé de commande pour évaporateur d'anesthésie Download PDFInfo
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- WO2021134371A1 WO2021134371A1 PCT/CN2019/130212 CN2019130212W WO2021134371A1 WO 2021134371 A1 WO2021134371 A1 WO 2021134371A1 CN 2019130212 W CN2019130212 W CN 2019130212W WO 2021134371 A1 WO2021134371 A1 WO 2021134371A1
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- pressure
- medicine
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- anesthesia
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61M—DEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
- A61M16/00—Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators; Tracheal tubes
- A61M16/01—Devices for influencing the respiratory system of patients by gas treatment, e.g. ventilators; Tracheal tubes specially adapted for anaesthetising
Definitions
- This application relates to the technical field of medical devices, and in particular to an anesthesia vaporizer, an anesthesia machine, and a control method of the anesthesia vaporizer.
- the driving pressure of the anesthetic in the dosing pool is required to be applied during operation.
- the doctor will add medicine to the vaporizer to prevent the patient from waking up during the operation.
- the anesthetic liquid may be ejected from the medicine port under the action of the driving force at the moment when the medicine injection port is opened, causing harm to the medical staff. Therefore, the inside of the medicine tank needs to be filled before the medicine is added. The pressure is released, and then the medicine bottle is inserted to do the medicine. If the pressure in the medicine tank cannot be discharged in time, there will be a risk of spraying the medicine at this time, which will bring the risk of the medicine operation.
- anesthesia vaporizer including a shell, a medicine storage tank, a cover, and a medicine addition port connecting the medicine storage tank between the covers, and further includes:
- An injection pipe one end is connected to the lower side of the medicine storage tank, and the other end is provided with an ejector;
- the medicine tank pressure control component is connected to the medicine storage tank, and the medicine tank pressure control component has a first state to maintain the pressure in the medicine storage tank at a working pressure, and a second state to discharge the pressure in the medicine storage tank ;
- a linkage mechanism which is driven by the user to start the dosing operation of the anesthesia vaporizer to drive the pool pressure control assembly to switch from the first state to the second state;
- the medicine pool pressure control assembly includes a vent pipe communicating with the medicine reservoir, a pressure sensor and a first switch valve are arranged on the vent pipe, and the first switch valve is arranged on the pressure sensor and the pressure sensor. Between the storage tanks;
- the medicine pool pressure control assembly When the medicine pool pressure control assembly is in the first state, the first on-off valve is opened, and the medicine pool pressure control assembly supplies air to the medicine pool through the vent pipe to maintain the pressure in the medicine pool For work pressure;
- the medicine tank pressure control assembly When the medicine tank pressure control assembly is switched from the first state to the second state, the first on-off valve is opened, and the medicine storage tank discharges pressure through the vent pipe.
- the present application provides an anesthesia machine, including: the aforementioned anesthesia vaporizer.
- the present application provides a method for controlling the aforementioned anesthesia vaporizer, the method including:
- the first switch valve is closed to block the gas in the medicine storage tank from venting through the vent pipe.
- the embodiment of the application provides an anesthesia vaporizer, an anesthesia machine, and an anesthesia vaporizer control method.
- the linkage mechanism is driven by the user to start the dosing operation of the anesthesia vaporizer to drive the pool pressure control assembly to switch from the first state to the second state.
- the first state can keep the pressure in the medicine storage tank of the anesthetic vaporizer at the working pressure, and the first on-off valve is open when switching to the second state, so that the pressure in the medicine storage tank can be discharged; thereby preventing the mixing of anesthetics
- the gas is released from the position of the cover, which affects the user's anesthesia operation.
- Fig. 1 is a schematic structural diagram of an anesthesia vaporizer according to an embodiment of the present application
- Figure 2 is a schematic diagram of the structure of the anesthesia vaporizer in Figure 1 when adding medicine;
- Figure 3 is a schematic structural view of another embodiment of an anesthesia vaporizer
- Fig. 4 is a schematic diagram of the structure of the anesthesia vaporizer in Fig. 3 when adding medicine;
- Fig. 5 is a schematic structural diagram of another embodiment of an anesthesia vaporizer
- Fig. 6 is a schematic diagram of the structure of the anesthesia vaporizer in Fig. 5 when adding medicine;
- Fig. 7 is a schematic flowchart of a method for controlling an anesthesia vaporizer according to an embodiment of the present application.
- Driving gas source b. Waste gas treatment system
- FIG. 1 and FIG. 2 are schematic diagrams of an anesthesia vaporizer 100 provided by an embodiment of the present application.
- the anesthesia vaporizer 100 can be applied to an anesthesia machine.
- the anesthesia vaporizer 100 can be fixedly connected to the host of the anesthesia machine, or can be detachably connected to the host of the anesthesia machine.
- the anesthesia vaporizer 100 includes a housing 10, a medicine storage tank 30, a cover body 20, and a medicine addition port 31 connecting the medicine storage tank 30 between the cover bodies 20.
- the cover 20 is movably connected to the housing 10, for example.
- the casing 10 is provided with an opening 11, and the cover body 20 is rotatably connected to the opening 11 of the casing 10.
- the top of the medicine storage tank 30 is provided with a medicine adding port 31, and the medicine adding port 31 is arranged opposite to the cover body 20.
- the medicine adding port 31 is exposed from the opening 11, which facilitates the user to add medicine to the medicine storage tank 30 through the medicine adding port 31.
- the medicine storage pool 30 can be filled with anesthetics. Specifically, the liquid level of the anesthetic agent is lower than the height of the connection between the medicine pool pressure control assembly 40 and the medicine storage pool 30, which can prevent the anesthetic agent from entering the medicine pool pressure control assembly 40 from the medicine pool 30.
- the anesthesia vaporizer 100 further includes a level gauge 33 for detecting the liquid level in the medicine storage tank 30.
- the liquid level gauge 33 can display the liquid level of the anesthetic. When the user finds that the liquid level is low and needs to be added, the anesthetic can be added to the drug storage tank 30 through the dosing port 31.
- the anesthesia vaporizer 100 further includes a closed valve 32 accommodated in the dosing port 31 to realize the sealing of the medicine storage tank 30.
- the closed valve 32 may be a one-way valve.
- the closed valve 32 is configured to allow the anesthetic agent to enter the medicine storage tank 30 from the medicine filling port 31, but not to allow the anesthetic agent to flow out of the medicine filling mouth 31 from the medicine tank 30.
- the anesthesia vaporizer 100 further includes a jet pipe 80, a medicine pool pressure control assembly 40 and a linkage mechanism 50.
- one end of the injection pipe 80 is connected to the lower side of the reservoir 30, and the other end is provided with an ejector 82.
- the ejector 82 is located in the evaporation chamber 90 of the anesthesia vaporizer 100, and the anesthetic in the medicine storage tank 30 can be formed by spraying the ejector 82 in the form of a mist under the action of the high-pressure driving gas.
- the anesthetic gas fills the evaporation chamber 90.
- the evaporation chamber 90 is provided with an air outlet 91 and an air inlet 92.
- the carrier gas enters the evaporation chamber 90 through the air inlet 92, and is mixed with the anesthetic gas and discharged from the air outlet 91.
- the medicine storage tank 30, the medicine tank pressure control assembly 40 and the linkage mechanism 50 are accommodated in the space enclosed by the housing 10 and the cover 20.
- the medicine tank pressure control assembly 40 is connected to the medicine storage tank 30.
- the medicine tank pressure control assembly 40 has a first state in which the pressure in the medicine tank 30 is maintained at a working pressure, and a second state in which the pressure in the medicine tank 30 is discharged.
- the medicine tank pressure control assembly 40 is respectively connected with an external driving gas source a and the medicine storage tank 30.
- the driving gas provided by the driving gas source a is continuously passed into the medicine storage tank 30 through the medicine tank pressure control assembly 40, so as to maintain the air pressure in the medicine storage tank 30 at a higher pressure required for work, so that the anesthetic is connected through
- the ejector 82 of the medicine storage tank 30 is sprayed in a mist shape.
- discharging the pressure in the medicine storage tank 30 refers to discharging the gas in the medicine storage tank 30 so that the pressure in the medicine storage tank 30 is reduced.
- the user's operation of starting the dosing of the anesthesia vaporizer 100 can drive the linkage mechanism 50 to drive the pool pressure control assembly 40 to switch from the first state to the second state.
- the medicine pool pressure control assembly 40 is connected to the linkage mechanism 50, and the operation action of the anesthesia vaporizer 100 during the dosing process can provide the driving force of the linkage mechanism 50, which can make the medicine pool pressure control assembly 40 change from the first state Switch to the second state.
- the medicine tank pressure control assembly 40 includes a vent pipe 43 communicating with the medicine storage tank 30.
- the medicine tank pressure control assembly 40 can make the vent pipe 43 communicate with the outside, so that the medicine storage tank 30 It can communicate with the outside through a vent pipe 43.
- a pressure sensor 60 and a first on-off valve 70 are provided on the ventilation pipe 43, and the first on-off valve 70 is provided between the pressure sensor 60 and the reservoir 30. Therefore, the pressure sensor 60 can detect the pressure in the air duct 43.
- the medicine pool pressure control assembly 40 When the medicine pool pressure control assembly 40 is in the first state, the first on-off valve 70 is opened, and the medicine pool pressure control assembly 40 supplies air to the medicine pool 30 through the vent pipe 43 to maintain the pressure in the medicine pool 30 at the working pressure.
- the medicine tank pressure control assembly 40 switches from the first state to the second state, the first on-off valve 70 remains open, and the medicine tank 30 releases pressure through the vent pipe 43.
- the medicine storage tank 30 may be connected to the outside through the vent pipe 43, and the gas in the medicine storage tank 30 may be discharged, so that the pressure in the medicine storage tank 30 is reduced.
- the drug addition operation causes the drug pool pressure control assembly 40 to switch from the first state to the second state, so that the drug storage pool 30 is switched from the first state to the second state.
- the air pressure inside is reduced, so that the gas mixed with anesthetic can be prevented from being released through the cover 20, which affects the user's anesthesia operation.
- This process does not need to send pressure relief instructions through sensors, and pressure relief is more direct, safer and more reliable.
- the medicine pool pressure control assembly 40 further includes a valve body 44, a first pipe 41, a second pipe 42 and a valve stem assembly 45.
- One end of the first pipe 41 is connected to the first port of the valve body 44, and the other end is connected to the driving gas source a; one end of the second pipe 42 is connected to the second port of the valve body 44, and the other end is connected to the exhaust gas treatment system b. ; The third port of the valve body 44 is connected to the vent pipe 43.
- valve stem assembly 45 can be driven by the linkage mechanism 50 to connect the first pipe 41 or the second pipe 42 with the ventilation pipe 43.
- valve stem assembly 45 is partially contained in the valve body 44, and one end of the valve stem assembly 45 is connected to the inner wall of the valve body 44, and the other end is connected to the linkage mechanism 50.
- the linkage mechanism 50 drives one end of the valve stem assembly 45 to move along the inner wall of the valve body 44 to connect the first pipe 41 or the second pipe 42 with the ventilation pipe 43.
- the medicine pool pressure control assembly 40 when the medicine pool pressure control assembly 40 is in the first state, the first pipe 41 is in communication with the vent pipe 43, so that the driving gas source a can pass through the first pipe 41 and the vent pipe 43 to the medicine storage pool 30 Into the gas.
- the air pressure in the medicine storage tank 30 is maintained at a relatively high air pressure required for work, so that the anesthetic is sprayed in a mist form through the ejector 82 connected to the medicine storage tank 30.
- the second duct 42 and the ventilation duct 43 are not connected.
- the operation of the user when starting to add medicine drives the linkage mechanism 50 to drive the medicine pool pressure control assembly 40 to switch from the first state to the second state.
- the second pipe 42 is in communication with the vent pipe 43, and the first switch valve 70 is opened, so that the gas in the reservoir 30 can be discharged to the exhaust gas treatment system b through the vent pipe 43 and the second pipe 42 for treatment .
- the air pressure in the medicine storage tank 30 can be reduced and the discharged gas mixed with anesthetic can be prevented from affecting the user.
- the first duct 41 and the ventilation duct 43 are not connected.
- the first on-off valve 70 is closed to block the vent pipe 43, and the reservoir pressure control assembly 40 is in the third state.
- the first on-off valve 70 may also be closed, and the reservoir pressure control component 40 is in the third state. Prevent long-term pressure relief, reduce the consumption of anesthetics, and prevent the increase in patient medical expenses.
- the medicine pool pressure control assembly 40 When the medicine pool pressure control assembly 40 is in the third state, the first on-off valve 70 of the vent pipe 43 is in a closed state, and the vent pipe 43 is blocked.
- the medicine storage tank 30 is neither connected to the driving gas source a nor to the exhaust gas treatment system b. It is understandable that neither driving gas is provided to the medicine storage tank 30 to maintain its working pressure, nor is it connected to the medicine storage tank 30 The gas is discharged to the exhaust gas treatment system b.
- the air pressure in the medicine storage tank 30 is also relatively low, which can prevent the gas from being released through the cover 20.
- the first on-off valve 70 is controlled to close, so that the gas in the reservoir 30 stops being discharged to the exhaust gas treatment system b through the vent pipe 43 and the second pipe 42, and closes in time Cut off the pressure relief path of the anesthetic, reduce the consumption of the anesthetic, and prevent the increase of the patient's medical expenses.
- the first pressure threshold is 1 to 1.5 times the atmospheric pressure. Specifically, it can be 1 to 1.2 times the atmospheric pressure. Since anesthetics are usually relatively volatile, the pressure in the medicine storage tank 30 will be greater than the atmospheric pressure when the medicine storage tank 30 is used. Moreover, by setting the first pressure threshold to a value slightly larger than the atmospheric pressure, the gas in the liquid storage tank can be prevented from leaking through the filling port and the opening 11, and the time for pressure relief in the second state can also be reduced, and the consumption of anesthetics can be reduced.
- a second switch valve 81 may be further provided between the chemical storage tank 30 and the ejector 82 to control the on-off of the chemical storage tank 30 and the evaporation chamber 90. If the pressure sensor 60 detects that the pressure of the vent pipe 43 has dropped to the first pressure threshold, the second on-off valve 81 and/or the injector 82 are closed. In this way, it can be prevented that the ejector 82 cannot be closed when the system is abnormal, causing a large amount of anesthetic to be ejected into the mixing chamber, resulting in an excessively high concentration of anesthetic at the patient's end.
- the anesthetic agent When the pressure in the medicine storage tank 30 drops to a lower pressure, the anesthetic agent cannot be sprayed as a mist through the ejector 82.
- the anesthetic agent By closing the second on-off valve 81 and/or the ejector 82, the anesthetic agent can be prevented from being sprayed. Consumption can also prevent the anesthetic in the form of droplets from entering the evaporation chamber 90 or passing through the air outlet 92 to the patient.
- the user can safely add anesthetic to the medicine reservoir 30.
- the user can perform an operation to end the addition, such as closing the cover 20.
- the user's operation to end the dosing of the anesthesia vaporizer 100 can drive the linkage mechanism 50 to drive the pool pressure control assembly 40 to switch from the third state to the fourth state.
- the medicine pool pressure control assembly 40 when the medicine pool pressure control assembly 40 is in the fourth state, the first pipe 41 is in communication with the vent pipe 43, so that the driving gas source a can supply air to the vent pipe 43 through the first pipe 41, and at this time, the first pipe 41 is in communication with the vent pipe 43.
- the on-off valve 70 is in the closed state.
- the driving air source a supplies air to the air duct 43
- the pressure in the air duct 43 rises.
- the pressure sensor 60 detects that the pressure in the vent pipe 43 rises to the second pressure threshold, the reservoir pressure control assembly 40 switches to the first state.
- switching the medicine pool pressure control component 40 from the fourth state to the first state includes: opening the first on-off valve 70.
- the air pressure in the medicine storage tank 30 can be prevented from being higher than the vent pipe
- the pressure inside 43 causes the gas mixed with anesthetic to enter the ventilation pipe 43 and even the medicine pool pressure control assembly 40.
- the second pressure threshold is not less than the first pressure threshold. It can be better prevented that the air pressure in the medicine storage tank 30 is higher than the pressure in the vent pipe 43 and the gas mixed with anesthetic agent enters the vent pipe 43 and even the medicine tank pressure control assembly 40.
- the second pressure threshold may be equal to the working pressure
- the second on-off valve 81 and the injector 82 may also be opened. At this time, the air pressure in the medicine storage tank 30 can make the anesthetic agent sprayed in a mist form through the ejector 82. In this way, the anesthesia vaporizer 100 automatically resumes work after the drug is added, without the user's additional operation, simplifies the operation process, is convenient to use, and improves the user experience.
- the anesthesia vaporizer 100 further includes a control circuit connected to the pressure sensor 60, the first on-off valve 70, the second on-off valve 81 and the ejector 82; the pressure sensor 60 transmits the detected pressure to the control The control circuit controls the second on-off valve 81, the first on-off valve 70, and the injector 82 to close or open.
- the user starts the dosing operation of the anesthesia vaporizer 100 by opening the lid 20.
- the opening of the lid 20 drives the linkage mechanism 50 to drive the medicine pool pressure control assembly 40 from the first The state switches to the second state.
- the user's operation to end the dosing of the anesthesia vaporizer 100 is to close the cover body 20, and the cover body 20 is closed to drive the linkage mechanism 50 to drive the medicine pool pressure control assembly 40 by the third The state switches to the fourth state.
- the valve stem assembly 45 includes a valve stem 452, one end of the valve stem 452 is connected to the linkage mechanism 50, and the other end is connected to the inner wall of the valve body 44, and can move along the inner wall of the valve body 44.
- valve stem assembly 45 may further include an elastic member 451.
- One end of the elastic member 451 is fixed to the valve stem 452, and the other end is fixed to the side wall of the valve body 44 to reset the relative relationship between the valve stem 452 and the valve body 44. position.
- the linkage mechanism 50 may be a cam 51 mechanism.
- One end of the cam 51 mechanism is slidably connected to the valve stem assembly 45 and the other end is fixedly connected to the cover 20.
- the cam 51 When an anesthetic needs to be added, during the opening process of the cover 20, the cam 51 is driven to rotate, and the valve stem assembly 45 is pushed to move, thereby causing the pool pressure control assembly 40 to switch from the first state to the second state. Since the cam 51 mechanism is connected to the cover body 20, the cam 51 mechanism is driven to move during the process of opening the cover body 20 to realize mechanical pressure relief, so that the safety and reliability of the anesthesia vaporizer 100 is higher.
- the cam 51 mechanism includes a cam 51 and a rotating shaft 52.
- the rotating shaft 52 is rotatably connected to the housing 10, and the cover 20 is fixedly provided with a connecting rod 21.
- the connecting rod 21 is fixedly connected to the rotating shaft 52.
- the cam 51 Fixed on the rotating shaft 52, the end of the valve stem assembly 45 is slidably connected to the edge of the cam 51.
- one end of the valve stem assembly 45 is slidably connected to the edge of the cam 51.
- the connecting rod 21 drives the cam 51 to rotate relative to the housing 10, thereby driving the valve stem assembly 45 to move.
- the action of opening the cover body 20 can trigger the cam 51 mechanism to push the valve stem assembly 45 to move, the valve stem assembly 45 moves from the first position to the second position, and the medicine pool pressure control assembly 40 Switching from the first state to the second state, the ventilation pipe 43 and the first pipe 41 stop communicating, and the driving gas stops entering the medicine storage tank 30.
- the ventilation pipe 43 and the second pipe 42 are connected, and the gas in the medicine storage tank 30 is discharged through the ventilation pipe 43 and the second pipe 42 to realize the pressure relief of the medicine storage tank 30.
- the dosing operation is completed.
- the action of the user closing the lid can trigger the cam 51 mechanism to push the valve stem assembly 45 to move, the valve stem assembly 45 moves from the second position to the first position, and the first passage is connected with the vent pipe 43.
- the driving gas can enter the ventilation duct 43 via the first passage.
- the linkage mechanism 50 may also be a link mechanism. One end of the link mechanism is rotatably connected to the valve stem assembly 45, and the other end is rotatably connected to the cover 20.
- the action of opening the cover body 20 can trigger the linkage mechanism to push the valve stem assembly 45 to move.
- the linkage mechanism is driven. Move, the linkage mechanism pushes the valve stem assembly 45 to move, the valve stem assembly 45 can move from the first position to the second position, the medicine pool pressure control assembly 40 switches from the first state to the second state, the second passage and the vent pipe 43 is connected, and the high-pressure driving gas in the medicine storage tank 30 is discharged to realize pressure relief.
- the operation to end the dosing such as the action of the user closing the lid triggers the linkage mechanism to push the valve stem assembly 45 to move, the valve stem assembly 45 moves from the second position to the first position, and the first channel communicates with the vent pipe 43 to drive The gas enters the ventilation duct 43 through the first passage.
- the user starts the dosing operation of the anesthesia vaporizer 100 by pushing the dosing container 200 into the dosing port 31.
- one end of the linkage mechanism 50 is connected to the medicine pool pressure control assembly 40, and the other end is located in the medicine filling port 31.
- the end of the linkage mechanism 50 is matched with the dosing container 200 and moves with the dosing container 200, thereby driving the pressure control of the medicine pool Part of the structure of the component 40 moves, thereby preventing the driving gas from continuing to enter the medicine storage tank 30, and at the same time, the high-pressure driving gas in the medicine storage tank 30 is discharged to realize pressure relief.
- a sliding groove 311 may be provided on the side wall of the medicine adding port 31, and the medicine adding container 200 can extend into the medicine adding port 31 through the sliding groove 311.
- One end of the linkage mechanism 50 away from the valve stem assembly 45 passes through the sliding groove 311 and is located in the medicine adding port 31.
- the matching portion 210 of the medicated container 200 abuts against the end of the linkage mechanism 50.
- the end of the linkage mechanism 50 abuts against the matching portion 210 on the medicated container 200.
- the linkage mechanism 50 can push the valve stem assembly 45 to move.
- the linkage mechanism 50 includes a connecting body 55 and a transmission body 54 that are rotatably connected.
- One end of the connecting body 55 away from the transmission body 54 is connected to the medicine pool pressure control assembly 40, and the end of the transmission body 54 is located in the medicine addition port 31.
- a fixed fulcrum 56 is provided in the middle of the transmission body 54.
- the end of the transmission body 54 abuts against the matching portion 210 of the dosing container 200.
- the transmission body 54 is pushed around and fixed.
- the fulcrum 56 rotates and drives the connecting body 55 to move, thereby pushing the valve stem assembly 45 to move.
- the action of pushing the dosing container 200 into the dosing port 31 triggers the linkage mechanism 50 to push the valve stem assembly 45 to move, and the valve stem assembly 45 moves from the first position to the second position ,
- the medicine tank pressure control assembly 40 switches from the first state to the second state, the driving gas stops entering the medicine storage tank 30, and the driving gas in the medicine storage tank 30 is discharged through the vent pipe 43 and the first channel to achieve pressure relief.
- the user's operation to end the dosing of the anesthesia vaporizer 100 is to take out the dosing container 200 from the dosing port 31.
- the dosing operation is completed.
- the action of the user taking out the dosing container 200 from the dosing port 31 triggers the linkage mechanism 50 to push the valve stem assembly 45 to move, and the valve stem assembly 45 moves from the second position to the first position.
- a passage communicates with the vent pipe 43, and the driving gas enters the vent pipe 43 through the first passage.
- the linkage mechanism is driven by the user to start the dosing operation of the anesthesia vaporizer to drive the pool pressure control assembly to switch from the first state to the second state, wherein the first state can maintain the anesthesia vaporizer
- the pressure in the medicine storage tank is the working pressure.
- the first on-off valve is open, so that the pressure in the medicine storage tank can be discharged; thereby preventing the gas mixed with anesthetics from being released from the position of the cover, which affects the user Anesthesia operation.
- Another embodiment of the present application also provides an anesthesia machine, which includes the aforementioned anesthesia vaporizer and a host.
- the anesthesia vaporizer may be fixedly connected to the host of the anesthesia machine, or detachably connected to the host of the anesthesia machine.
- Another embodiment of the present application also provides a method for controlling an anesthesia vaporizer. Refer to FIG. 7 in conjunction with the above embodiments.
- control method is applied to the aforementioned anesthesia vaporizer. As shown in Fig. 7, the control method includes step S110 to step S120.
- a pressure sensor and a first on-off valve are arranged on the ventilation pipe of the anesthesia evaporator, and the first on-off valve is arranged between the pressure sensor and the medicine storage tank. Therefore, the pressure sensor can detect the pressure in the air duct.
- the medicine pool pressure control assembly of the anesthesia vaporizer is connected with the linkage mechanism, and the operation action on the anesthesia vaporizer during the dosing process can provide the driving force of the linkage mechanism, so that the medicine pool pressure control assembly is switched from the first state to the second state.
- the medicine storage tank When the medicine tank pressure control component is in the second state, the medicine storage tank can be connected to the outside through the vent pipe, and the gas in the medicine storage tank can be discharged, so that the pressure in the medicine storage tank is reduced.
- the air pressure in the medicine storage tank is also relatively low, which can prevent the gas from being released from the position of the cover.
- the first switch valve is controlled to close, so that the gas in the storage tank stops being discharged to the exhaust gas treatment system through the ventilation pipe and the second pipe, reducing the consumption of anesthetics and preventing the increase in patient medical care cost.
- control method further includes: if the pressure sensor detects that the pressure in the vent pipe rises to a second pressure threshold, opening the first on-off valve to enable the reservoir pressure control assembly Air is supplied to the medicine storage tank through the vent pipe to maintain the pressure in the medicine storage tank.
- the user can perform the end operation of the dosing, such as closing the cover.
- the user's operation to end the dosing of the anesthesia vaporizer can drive the linkage mechanism to drive the pool pressure control assembly to switch from the third state to the fourth state.
- the first pipe is connected to the vent pipe, so that the driving gas source can supply air to the vent pipe via the first pipe, and the first on-off valve is in the closed state at this time.
- the pressure in the vent pipe rises.
- the pressure sensor detects that the pressure in the vent pipe has risen to the second pressure threshold, the tank pressure control component switches to the first state.
- switching the medicine pool pressure control component from the fourth state to the first state includes: opening the first on-off valve.
- the first on-off valve when the first on-off valve is opened to make the vent pipe and the medicine storage tank communicate, since the pressure in the vent pipe rises to the second pressure threshold, it can prevent the air pressure in the medicine storage tank from being higher than the pressure in the vent pipe and causing mixing The gas with anesthetic enters the ventilation pipe and even the pressure control component of the medicine pool.
- the second pressure threshold is not less than the first pressure threshold. It can better prevent the air pressure in the medicine storage tank from being higher than the pressure in the vent pipe, so that the gas mixed with anesthetic agent enters the vent pipe and even the pressure control component of the medicine tank.
- the second pressure threshold may be equal to the working pressure
- the second on-off valve and the injector may also be opened.
- the air pressure in the medicine storage tank can make the anesthetic spray mist through the ejector.
- the anesthesia vaporizer automatically resumes work after the drug is added, without the user's additional operation, simplifies the operation process, is convenient to use, and improves the user experience.
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- Health & Medical Sciences (AREA)
- Anesthesiology (AREA)
- Emergency Medicine (AREA)
- Pulmonology (AREA)
- Engineering & Computer Science (AREA)
- Biomedical Technology (AREA)
- Heart & Thoracic Surgery (AREA)
- Hematology (AREA)
- Life Sciences & Earth Sciences (AREA)
- Animal Behavior & Ethology (AREA)
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- Veterinary Medicine (AREA)
- Filling Or Discharging Of Gas Storage Vessels (AREA)
- Catching Or Destruction (AREA)
Abstract
Un évaporateur d'anesthésie (100), une machine d'anesthésie et un procédé de commande pour évaporateur d'anesthésie (100) sont divulgués. L'évaporateur (100) comprend un boîtier (10), un réservoir de stockage de médicament (30), un corps de couvercle (20) et un orifice de dosage (31). L'évaporateur comprend en outre : un ensemble de commande de pression de réservoir de médicament (40), l'ensemble de commande de pression de réservoir de médicament (40) ayant un premier état dans lequel la pression dans le réservoir de stockage de médicament (30) est maintenue, et un second état dans lequel la pression dans le réservoir de stockage de médicament (30) est libérée ; et un mécanisme de liaison (50), le mécanisme de liaison (50) étant entraîné lorsqu'un utilisateur commence une opération de dosage, de façon à amener l'ensemble de commande de pression de réservoir de médicament (40) à passer du premier état au second état. L'ensemble de commande de pression de réservoir de médicament (40) comprend un tuyau de ventilation (43) en communication avec le réservoir de stockage de médicament (30), un capteur de pression (60) et une première vanne de commutation (70) disposés sur le tuyau de ventilation (43). Lorsque l'ensemble de commande de pression de réservoir de médicament (40) est dans le premier état, la première vanne de commutation (70) est ouverte, et l'ensemble de commande de pression de réservoir de médicament (40) fournit du gaz au réservoir de stockage de médicament (30) à travers le tuyau de ventilation (43) ; et lorsque l'ensemble de commande de pression de réservoir de médicament (40) est commuté vers le second état, la première vanne de commutation (70) est ouverte, et la pression dans le réservoir de stockage de médicament (30) est libérée au moyen du tuyau de ventilation (43). La présente invention peut empêcher le gaz mélangé avec un anesthésique d'être libéré de la position du corps de couvercle (20) de telle sorte que celui-ci affecte une opération d'anesthésie de l'utilisateur.
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN201980098632.7A CN114206422A (zh) | 2019-12-30 | 2019-12-30 | 麻醉蒸发器、麻醉机和麻醉蒸发器的控制方法 |
| PCT/CN2019/130212 WO2021134371A1 (fr) | 2019-12-30 | 2019-12-30 | Évaporateur d'anesthésie, machine d'anesthésie et procédé de commande pour évaporateur d'anesthésie |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| PCT/CN2019/130212 WO2021134371A1 (fr) | 2019-12-30 | 2019-12-30 | Évaporateur d'anesthésie, machine d'anesthésie et procédé de commande pour évaporateur d'anesthésie |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| WO2021134371A1 true WO2021134371A1 (fr) | 2021-07-08 |
Family
ID=76687521
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/CN2019/130212 Ceased WO2021134371A1 (fr) | 2019-12-30 | 2019-12-30 | Évaporateur d'anesthésie, machine d'anesthésie et procédé de commande pour évaporateur d'anesthésie |
Country Status (2)
| Country | Link |
|---|---|
| CN (1) | CN114206422A (fr) |
| WO (1) | WO2021134371A1 (fr) |
Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2008151667A1 (fr) * | 2007-06-13 | 2008-12-18 | Maquet Critical Care Ab | Système de sécurité pour un appareil respiratoire d'administration d'agent anesthésique |
| CN102029000A (zh) * | 2009-09-30 | 2011-04-27 | 北京谊安医疗系统股份有限公司 | 麻醉蒸发器灌注装置 |
| CN204337469U (zh) * | 2014-12-23 | 2015-05-20 | 南方医科大学南方医院 | 一种麻醉蒸发器灌装装置 |
| CN206534970U (zh) * | 2016-10-10 | 2017-10-03 | 徐俊萍 | 一种自动给药的雾化麻醉器 |
| WO2019075753A1 (fr) * | 2017-10-20 | 2019-04-25 | 深圳迈瑞生物医疗电子股份有限公司 | Évaporateur d'anesthésique et machine d'anesthésie |
-
2019
- 2019-12-30 WO PCT/CN2019/130212 patent/WO2021134371A1/fr not_active Ceased
- 2019-12-30 CN CN201980098632.7A patent/CN114206422A/zh not_active Withdrawn
Patent Citations (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| WO2008151667A1 (fr) * | 2007-06-13 | 2008-12-18 | Maquet Critical Care Ab | Système de sécurité pour un appareil respiratoire d'administration d'agent anesthésique |
| CN102029000A (zh) * | 2009-09-30 | 2011-04-27 | 北京谊安医疗系统股份有限公司 | 麻醉蒸发器灌注装置 |
| CN204337469U (zh) * | 2014-12-23 | 2015-05-20 | 南方医科大学南方医院 | 一种麻醉蒸发器灌装装置 |
| CN206534970U (zh) * | 2016-10-10 | 2017-10-03 | 徐俊萍 | 一种自动给药的雾化麻醉器 |
| WO2019075753A1 (fr) * | 2017-10-20 | 2019-04-25 | 深圳迈瑞生物医疗电子股份有限公司 | Évaporateur d'anesthésique et machine d'anesthésie |
Also Published As
| Publication number | Publication date |
|---|---|
| CN114206422A (zh) | 2022-03-18 |
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