CN209464449U - A kind of aerating system and Heart-lung restoring instrument of Heart-lung restoring instrument - Google Patents

A kind of aerating system and Heart-lung restoring instrument of Heart-lung restoring instrument Download PDF

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Publication number
CN209464449U
CN209464449U CN201821831393.0U CN201821831393U CN209464449U CN 209464449 U CN209464449 U CN 209464449U CN 201821831393 U CN201821831393 U CN 201821831393U CN 209464449 U CN209464449 U CN 209464449U
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air
breather
heart
mask
gas
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CN201821831393.0U
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杨基春
孙秀美
李迎新
黄河
高宇
赵旭明
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Zhenlu Medical Technology (shanghai) Co Ltd
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Zhenlu Medical Technology (shanghai) Co Ltd
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Abstract

The utility model provides the aerating system and Heart-lung restoring instrument of a kind of Heart-lung restoring instrument.The aerating system of Heart-lung restoring instrument includes: control device, mask, air-breather and external air source device, and mask, air-breather and external air source device are sequentially connected;Control device controls the working condition that air-breather carries out aeration to mask, and control external air source device carries out the working condition of gas storage operation into air-breather.After compression number reaches preset frequency, the air-breather of control device control at this time starts to ventilate into mask, to complete a CPR circulation, and alternately and repeatedly carries out, until treatment process is completed.Further, the utility model also provides a kind of Heart-lung restoring instrument, has aerating system above-mentioned, so that using effect is more preferably.

Description

A kind of aerating system and Heart-lung restoring instrument of Heart-lung restoring instrument
Technical field
The utility model relates to CPR technical field more particularly to the aerating systems and cardiopulmonary of a kind of Heart-lung restoring instrument Recovery instrument.
Background technique
Heart-lung restoring instrument is that the instrument for carrying out CPR first aid needs in general when carrying out CPR External chest compression and artificial respiration are carried out, the effect of external chest compression is to carry out artificial circulatory support, and artificial respiration is to carry out manually Ventilation support.Currently, being no lack of the artificial instrument to carry out CPR of effectively replacement in the market.However the heart in the prior art Lung recovery instrument, is ventilated by relatively large ventilator, so that there are dangerous, inconvenient, treatment effects for CPR operation Fruit is bad.Further, though having occurred numerous Portable cardio-pulmonary resuscitation apparatus currently on the market, its feeder is without external air source Interface cannot achieve pure oxygen ventilation and cannot operate under toxic environment.
Utility model content
The main technical problems to be solved in the utility model is to provide a kind of aerating system of Heart-lung restoring instrument, solves existing There is the feeder of Portable cardio-pulmonary resuscitation apparatus in technology without external air source interface, cannot achieve pure oxygen ventilation and cannot be toxic The problem of being operated under environment and its bad problem for the treatment of.
In order to solve the above technical problems, the utility model provides a kind of aerating system of Heart-lung restoring instrument, including control dress It sets, mask, air-breather and external air source device;Wherein
Mask, air-breather and external air source device are sequentially connected;
Control device control air-breather to mask carry out aeration working condition, and control external air source device to The working condition of gas storage operation is carried out in air-breather.
Further, in a state of use, when patient, which is in, receives CPR pressing operation state, control device control External air source device processed is to air-breather memory storing gas;When patient is in CPR aeration state to be received, control Device processed controls air-breather and carries out aeration to mask.
Further, air-breather includes air storing cavity and ventilation control piece, and ventilation control piece is arranged in air storing cavity and mask Gas-guide tube between;Control device is connect with ventilation control piece.
Further, ventilation control piece includes breather valve.
Further, ventilation control piece further includes pressure regulator valve, and pressure regulator valve is arranged between air storing cavity and breather valve.
Further, the mask body of mask and gas-guide tube junction are additionally provided with check valve.
Further, external air source device includes gas compression part and external air source interface module, external air source interface group Part is connected to by gas compression part with air storing cavity;
Control device is connect with gas compression part.
Further, external air source interface module includes at least one set of gas source interface and interface control corresponding with gas source interface Product, Interface Controller part are arranged between gas source interface and gas compression part;
Control device is connect with Interface Controller part.
It further, further include fixed device, fixed device is used for immobilized patients;
Gas source interface includes air interface, and Interface Controller part includes air interface control piece;The corresponding position of air interface It is additionally provided with air processor;And/or
Gas source interface includes oxygen interface, and Interface Controller part includes oxygen Interface Controller part.
Further, the utility model also provides a kind of Heart-lung restoring instrument, further includes pressing system and master control system, master control System is connect with pressing system and aerating system, is controlled pressing system and aerating system and is carried out CPR operation to patient.
The beneficial effects of the utility model are:
The utility model provides a kind of aerating system of Heart-lung restoring instrument, including control device, mask, air-breather and outer Portion's compressed air source unit, mask, air-breather and external air source device are sequentially connected;Control device controls air-breather and carries out to mask The working condition of aeration, and control external air source device carry out the working condition of gas storage operation into air-breather. When carrying out CPR, control device controls the working condition that air-breather carries out aeration to mask, i.e. control device The electric signal that main system by receiving the aerating system of Heart-lung restoring instrument issues, or be also possible to control device and pass through reception The operational order of outworker, or be also possible to inside aerating system of the control device by receiving Heart-lung restoring instrument The signal that detection device detects carries out aeration or stopping aeration to control air-breather to mask;And control Air-breather carries out the draft speed and ventilatory frequency of aeration to mask.
Specifically, in actual operation, after the general cardiac compression for carrying out 30 times or 15 times, then ventilated twice, It alternately and repeatedly carries out, to complete the treatment operation of CPR.Specifically, (being pressed 30 times or 15 times when being pressed In the process), control device carries out gas storage into air-breather for controlling external air source interface, therefore, practical new at this In type, control device is used to control the above-mentioned working condition that air-breather carries out aeration to mask.And when compression number arrives Up to after 30 times or 15 times, the air-breather of control device control at this time starts to ventilate into mask, and controls the ventilation number It is 2 times;It to complete a CPR circulation, and alternately and repeatedly carries out, until treatment process is completed.
Further, the utility model also provides a kind of Heart-lung restoring instrument, further includes pressing system and master control system, master control System is connect with pressing system and aerating system, is controlled pressing system and aerating system and is carried out CPR operation to patient.I.e. Heart-lung restoring instrument provided in this embodiment includes the aerating system of embodiment one;When carrying out CPR first aid, system is pressed For controlling chest compression operation and entire compression number of the patient when carrying out CPR;And master control system, master control system It is uniformly controlled pressing system and aerating system alternate cycles carries out CPR operation, guarantee to carry out the 30 times or 15 times hearts It after dirty pressing, then is ventilated, is alternately and repeatedly carried out twice, to complete the treatment operation of CPR, so that using effect is more It is good.
Detailed description of the invention
It, below will be to required in embodiment in order to illustrate more clearly of the technical solution of the utility model embodiment The attached drawing used is briefly described, it should be understood that the following drawings illustrates only some embodiments of the utility model, therefore not It should be considered as the restriction to range, for those of ordinary skill in the art, without creative efforts, It can also be obtained according to these attached drawings other relevant attached drawings.
Fig. 1 is the schematic perspective view for the aerating system that the utility model embodiment one provides;
Fig. 2 is the structural upright signal for the Heart-lung restoring instrument including aerating system that the utility model embodiment two provides Figure;
Fig. 3 is the internal circuit connection schematic diagram of the control device for the aerating system that the utility model embodiment one provides.
Appended drawing reference:
1, control device;2, mask;3, air-breather;31, air storing cavity;32, ventilation control piece;33, gas-guide tube;34, single To valve;35, breather valve;36, pressure regulator valve;37, gas compression part;4, external air source device;41, external air source interface module; 410, gas source interface;411, Interface Controller part;4110, air interface;4111, oxygen interface;41101, air interface controls Part;41110, oxygen Interface Controller part;42, air processor;5, detection device;6, fixed device;71, system is pressed;72, Master control system;8, aerating system.
Specific embodiment
It is practical new below in conjunction with this to keep the objectives, technical solutions, and advantages of the embodiments of the present invention clearer Attached drawing in type embodiment, the technical scheme in the utility model embodiment is clearly and completely described, it is clear that is retouched The embodiment stated is the utility model a part of the embodiment, instead of all the embodiments.Usually here in attached drawing description and The component of the utility model embodiment shown can be arranged and be designed with a variety of different configurations.
Therefore, requirement is not intended to limit to the detailed description of the embodiments of the present invention provided in the accompanying drawings below The scope of the utility model of protection, but it is merely representative of the selected embodiment of the utility model.Based in the utility model Embodiment, every other embodiment obtained by those of ordinary skill in the art without making creative efforts, all Belong to the range of the utility model protection.
It should also be noted that similar label and letter indicate similar terms in following attached drawing, therefore, once a certain Xiang Yi It is defined in a attached drawing, does not then need that it is further defined and explained in subsequent attached drawing.
In the description of the present invention, it should be noted that the orientation or position of the instructions such as term " on ", "inner", "bottom" Set relationship be based on the orientation or positional relationship shown in the drawings or the utility model product using when the orientation usually put Or positional relationship, be merely for convenience of describing the present invention and simplifying the description, rather than the device of indication or suggestion meaning or Element must have a particular orientation, be constructed and operated in a specific orientation, therefore should not be understood as the limit to the utility model System in addition, term " first ", " second " etc. be only used for distinguish description, be not understood to indicate or imply relative importance.
In the description of the present invention, it should also be noted that, unless otherwise clearly defined and limited, term " is set Set ", " connected ", " connection " shall be understood in a broad sense, for example, it may be being fixedly connected, may be a detachable connection, or integrally Connection;It can be mechanical connection, be also possible to be electrically connected;Can be directly connected, can also indirectly connected through an intermediary, It can be the connection inside two elements.For the ordinary skill in the art, above-mentioned art can be understood with concrete condition The concrete meaning of language in the present invention.
The utility model is described in further detail below by specific embodiment combination attached drawing.
Embodiment one:
The present embodiment technical problem underlying to be solved is to provide a kind of aerating system of Heart-lung restoring instrument, solves existing The feeder of Portable cardio-pulmonary resuscitation apparatus cannot achieve pure oxygen ventilation and cannot have poison ring without external air source interface in technology The problem of being operated under border and its bad problem for the treatment of.
In order to solve the above technical problems, referring to Figure 1, the aerating system 8 of Heart-lung restoring instrument provided in this embodiment, including Control device 1, mask 2, air-breather 3 and external air source device 4, mask 2, air-breather 3 and external air source device 4 are successively Connection;Control device 1 controls the working condition that air-breather 3 carries out aeration to mask 2, and control external air source device 4 The working condition of gas storage operation is carried out into air-breather 3.Further, in a state of use, it is received when patient is in When CPR pressing operation state, control device 1 controls external air source device 4 to 3 memory storing gas of air-breather;Work as patient When in CPR aeration state to be received, control device 1 controls air-breather 4 and carries out aeration to mask 2.
Specifically, Fig. 3 gives the internal circuit configuration schematic diagram of control device 1, control device 1 in the present embodiment Internal structure mainly includes MSP430 single-chip microcontroller, MAX3405 serial port communication chip, the driving of PS2501-4 Phototube Coupling and pressure regulator valve The work shape for realizing control whole system is transmitted between 36, MSP430 single-chip microcontrollers and MAX3405 serial port communication chip by signal State;Specifically, MSP430 single-chip microcontroller controls the work that air-breather 3 carries out aeration to mask 2 when carrying out CPR State, i.e. MSP430 single-chip microcontroller receive the main system of the aerating system 8 of Heart-lung restoring instrument by MAX3405 serial port communication chip The electric signal of sending carries out aeration or stopping aeration to control air-breather 3 to mask 2;And control ventilation dress Set 3 draft speed and ventilatory frequency that aeration is carried out to mask 2.
Specifically, measure the air pressure of 3 memory storing gas of air-breather by pressure sensor, and by the air pressure after measurement Information sends MSP430 single-chip microcontroller to by MAX3405 serial port communication chip with signal form, and MSP430 single-chip microcontroller passes through again MAX3405 serial port communication chip transmits a signal to pressure regulator valve 36, specifically can be electronic pressure regulating valve as shown in Figure 3, into And it is driven by PS2501-4 Phototube Coupling and relay controls electronic pressure regulating valve, and then to control air-breather 3 to face Cover 2 carries out aeration or stops aeration;And control air-breather 3 carries out the draft speed of aeration to mask 2 And ventilatory frequency;
Or be also possible to control device 1 by receive outworker operational order, come control air-breather 3 to Mask 2 carries out aeration or stops aeration;And control air-breather 3 carries out the ventilation speed of aeration to mask 2 Degree and ventilatory frequency;
Or the detection device 5 being also possible to inside aerating system 8 of the control device 1 by receiving Heart-lung restoring instrument detects The signal arrived carries out aeration or stopping aeration to control air-breather 3 to mask 2;And control air-breather 3 The draft speed and ventilatory frequency of aeration are carried out to mask 2.
Detection device 5 inside following aerating systems 8 for only providing control device 1 by receiving Heart-lung restoring instrument detects Signal, control air-breather 3 to mask 2 carry out aeration working condition detailed working principle, referring to Figure 1, The aerating system 8 of Heart-lung restoring instrument may include detection device 5, and for detecting, patient chest is depressed to be pressed detection device 5 Press number;Control device 1 is used for when detection device 5 detects that compression number reaches preset compression number threshold value, and control is logical Device of air 3 is ventilated to mask 2.
In actual operation, it after the general cardiac compression for carrying out 30 times or 15 times, is ventilated twice, alternately and repeatedly It carries out, to complete the treatment operation of CPR, therefore, in practice, needs to control compression number and number of ventilating Frequency ratio, therefore the aerating system 8 of the Heart-lung restoring instrument of the present embodiment is provided with detection device 5 and control device 1, detection device 5 For detecting the depressed compression number of patient chest, control device 1 is used to detect that compression number reaches when detection device 5 When preset compression number threshold value, control air-breather 3 to mask 2 ventilate, i.e., detection device 5 first to patient receive heart by The number of pressure is detected, and after compression number reaches preset times threshold value, for example can be common when CPR operation After 30 times or 15 times, detection device 5 sends that information to control device 1, and control device 1 controls air-breather 3 and opens at this time Begin to ventilate into mask 2, and controlling the ventilation number is 2 times;To complete CPR circulation, and alternately and repeatedly into Row, until treatment process is completed.
It is to be appreciated that the compression number that the present embodiment is pointed out, which reaches preset compression number threshold value, is generally adult 30 Secondary, children 15 times, the preset threshold of the compression number is medically commonly used compression number threshold value, but the present embodiment provides The preset threshold of compression number is not limited only to the frequency threshold value being typically used for, can also with specific reference to being set instantly, The present embodiment is not especially limited this.In addition, ventilation number can also be not limited only to 2 times that the present embodiment provides, specifically Number can select according to actual needs, and the present embodiment is not especially limited this.It is to be appreciated that detection device 5 and control By circuit connection between device 1 processed, specific circuit connection diagram, the present embodiment, which is not done, to be described.
It is to be appreciated that referring to Figure 1, in the present embodiment, control device 1 is also used to detect trouble when detection device 5 When person's chest locations are depressed, external air source device 4 is controlled to 31 memory storing gas of air storing cavity.In actual operation, generally After carrying out 30 times or 15 times cardiac compressions, is ventilated twice, alternately and repeatedly carried out, to complete the treatment of CPR Operation, therefore, in practice, when carrying out cardiac compression to patient, control device 1 detects patient depressed When, and then control external air source port and be inflated into air storing cavity 31, after terminating for subsequent pressing into patient mask 2 Aeration.It is above-mentioned have been mentioned control device 1 and detection device 5 control pressing reach number and after, control air-breather 3 Number of ventilating into patient mask 2 is 2 times, a CPR operation is completed, details are not described herein again.
Further, referring to Figure 1, in the present embodiment, air-breather 3 includes air storing cavity 31 and ventilation control piece 32, is led to Gas control product 32 is arranged between air storing cavity 31 and the gas-guide tube 33 of mask 2;Control device 1 is connect with ventilation control piece 32.Into One step, 2 ontology of mask of mask 2 and 33 junction of gas-guide tube are additionally provided with check valve 34.Further, ventilation control piece 32 Including breather valve 35.Specifically, as shown in figure 3, breather valve 35 had both included for controlling oxygen electricity whether oxygen source supply Magnetism valve and air electromagnetic gas valve for controlling air;The air storing cavity 31 being arranged in air-breather 3 is used for when being pressed (during pressing 30 times or 15 times), control device 1 carries out gas into air storing cavity 31 for controlling external air source interface Storage, for used in subsequent ventilation therapy.
Further, in this embodiment further including ventilation control piece 32, ventilation control assembly is for controlling air-breather 3 Gas storage and ventilation working condition, i.e., when being pressed (pressing 30 times or 15 times during), control device 1 is used Gas storage is carried out into air storing cavity 31 in control external air source interface, for used in subsequent ventilation therapy;When compression number arrives Up to after 30 times or 15 times, control device 1 controls air storing cavity 31 and starts to ventilate into mask 2 at this time, and controls the ventilation time Number is 2 times;It to complete a CPR circulation, and alternately and repeatedly carries out, until treatment process is completed.
In addition, control device 1 is connect with ventilation control piece 32 in the present embodiment, control piece 32 of ventilating is in control device 1 Control under complete working condition switching.It is to be appreciated that ventilation control piece 32 specifically includes control circuit and ventilation Valve 35, when control piece 32 of ventilating receives the gas storage signal of the sending of control device 1 by control circuit, ventilation control piece 32 is controlled It sets up the breather valve 35 set between air storing cavity 31 and external air source interface to open, completes the inflation into air storing cavity 31, at this time The breather valve 35 being arranged between air storing cavity 31 and the gas-guide tube 33 of mask 2 is in close state;Ventilation control piece 32 passes through control When circuit receives the ventilation signal of the sending of control device 1, ventilation control piece 32, which controls, is arranged in leading for air storing cavity 31 and mask 2 Breather valve 35 between tracheae 33 is opened, and the breather valve 35 between air storing cavity 31 and external air source interface, which is in, at this time closes shape State completes the ventilation into mask 2.
It is to be appreciated that ventilation therapy is influenced to prevent the gas source in mask 2 from flowing back, it can also be in mask 2 2 ontology of mask and 33 junction of gas-guide tube are additionally provided with check valve 34, and the effect to guarantee ventilation therapy operation is unaffected.
Further, referring to Figure 1 and shown in Fig. 3, in the present embodiment, ventilation control piece 32 further includes pressure regulator valve 36, is adjusted Pressure valve 36 is arranged between air storing cavity 31 and breather valve 35.To guarantee the pressure of the compressed gas in air storing cavity 31 without departing from most Pressure regulator valve 36 can be arranged in big pressure-bearing amount outside air storing cavity 31, and pressure regulator valve 36 is arranged between air storing cavity 31 and breather valve 35, To stablize the bleed pressure value in air storing cavity 31;In addition, pressure regulator valve 36 can also be used to control to adjust air storing cavity 31 into mask 2 Draft speed and ventilation tolerance, meet actual needs when aeration.It is to be appreciated that pressure regulator valve 36 passes through air accumulator Pressure sensor measures the air pressure inside air storing cavity 31, guarantees that the pressure of compressed gas in air storing cavity 31 is held without departing from maximum Pressure amount.
Further, referring to Figure 1, in the present embodiment, external air source device 4 includes gas compression part 37 and external air source Interface module 41, external air source interface module 41 are connected to by gas compression part 37 with air storing cavity 31;Control device 1 and gas pressure Contracting part 37 connects.Further, external air source interface module 41 include at least one set of gas source interface 410 and with gas source interface 410 Corresponding Interface Controller part 411, Interface Controller part 411 are arranged between gas source interface 410 and gas compression part 37;Further Ground, control device 1 are connect with Interface Controller part 411.Further, Interface Controller part 411 includes air interface control piece 41101;The corresponding position of air interface 4110 is additionally provided with air processor 42;And/or gas source interface 410 connects including oxygen Mouth 4111, Interface Controller part 411 include oxygen Interface Controller part 41110.
For solve in the prior art gas source be single gas source, be unable to satisfy in normal external environment and toxic environment in The problem of can be carried out CPR operation, the aerating system 8 that the present embodiment proposes pass through setting external air source interface module 41 come realize in normal external environment and toxic environment in can be carried out CPR operation.Further, this implementation In example, which includes at least a gas source interface 410, for example can be single air interface 4110 Or oxygen interface 4111, it is also possible to that there is air interface 4110 and oxygen interface 4111 simultaneously;In addition, at gas source interface 410 It is provided with Interface Controller component 411, which is arranged between gas source interface 410 and gas source compression piece, for controlling The closing of system selection gas source interface 410, i.e., the air interface control piece when needing air as gas source, at air interface 4110 41101 is in the open state for controlling the air gas source interface 4110, and the oxygen Interface Controller part at oxygen interface 4111 41110 are in close state for controlling the oxygen interface 4111.
Alternatively, the oxygen Interface Controller part 41110 at oxygen interface 4111 is for controlling when needing oxygen as gas source The oxygen interface 4111 is in the open state, and the air interface control piece 41101 at air interface 4110 is for controlling the sky Gas interface 4110 is in close state, and realizes that the aerating system 8 that the present embodiment proposes both can be in normal external environment with this Middle progress CPR operation, CPR operation can also be carried out in toxic environment, arbitrarily switches different gas source interfaces 410 carry out the switching selection of gas source.Gas source compression piece is stored in its compression for compressing the gas source that extraneous gas port is passed through In air storing cavity 31, gas source needed for guaranteeing ventilation, which meets, to be used, and the volume of entire air storing cavity 31 is not too big.In addition, control Device 1 is connect with Interface Controller part 411, and Interface Controller part 411 completes the switching of gas source under the control of control device 1, above Gas source selection handoff procedure is described in detail, it will not go into details herein.
Further, in the present embodiment, the aerating system 8 for the Heart-lung restoring instrument that the present embodiment provides both can be used for In normal external environment, uses air as gas source and carry out CPR operation, it can also be in the air matter of external environment When measuring bad, CPR operation is carried out as gas source by oxygen, therefore, the pneumatic system of the Heart-lung restoring instrument of the present embodiment System 8, is provided with gas source interface 410, gas source interface 410 had both included for using air as gas source in normal external environment Air interface 4110, oxygen interface 4111 using oxygen as gas source when also the air quality including external environment is bad makes Obtaining gas source can arbitrarily be selected according to outside air quality, so that the therapeutic effect of CPR operation is more preferable.
Further, miscellaneous excessive due to that can contain in air when using air as gas source progress CPR operation Vapor, volatile organic compounds, dust etc., the therapeutic effect to influence CPR operation, therefore can be connect in air Air processor 42 is set on mouth 4110, which specifically may include air filtration purification function, than It is provided with filter screen in such as air processor 42, for the volatile organic compounds in filtration, purification air gas source, powder Dirt.
It is to be appreciated that the material and density of the filter screen select, should be enough to filter out volatile organic compounds, powder Dirt, specific material, density, is optionally specifically selected, and the present embodiment is not especially limited this, can also be in filter screen Cleaned screening is arranged in surface layer, is further effectively filtered to volatile organic compounds, dust;It can also include air Functions/drying, for example it is provided with dry adsorption layer, for absorbing the vapor in air gas source, so that CPR therapeutic effect More preferably.
Further, referring to Figure 1, the aerating system 8 of Heart-lung restoring instrument provided in this embodiment further includes fixed device 6, fixed device 6 is used for immobilized patients.Fixed device 6 is used for the specific can be that fixed bandage so that carrying out CPR When operation, the head of patient or other positions of body can be fixed on the certain bits of the aerating system 8 of entire Heart-lung restoring instrument It sets, facilitates and carry out CPR operation, prevent patient from causing CPR processing operation to be obstructed due to shaking.It is understood that It is that fixed bandage specifically can be rubber material, is also possible to nylon material, can also be other materials;Fixed bandage is consolidated Determine mode and specifically can be to be adhesively fixed, be also possible to it is magnetic-type fixed with buckle type, all can be with specific reference to actual needs Selection, the present embodiment are not especially limited this.
The aerating system of Heart-lung restoring instrument provided in this embodiment, including control device, mask, air-breather and external gas Source device, mask, air-breather and external air source device are sequentially connected;Control device control air-breather is ventilated to mask The working condition of operation, and control external air source device carry out the working condition of gas storage operation into air-breather.Into When row CPR, control device controls the working condition that air-breather carries out aeration to mask, i.e. control device passes through The electric signal that the main system of the aerating system of Heart-lung restoring instrument issues is received, or is also possible to control device by receiving outside The operational order of staff, or it is also possible to the detection inside aerating system of the control device by receiving Heart-lung restoring instrument The signal that device detects carries out aeration or stopping aeration to control air-breather to mask;And control ventilation Device carries out the draft speed and ventilatory frequency of aeration to mask.
Specifically, in actual operation, after the general cardiac compression for carrying out 30 times or 15 times, then ventilated twice, It alternately and repeatedly carries out, to complete the treatment operation of CPR.Specifically, (being pressed 30 times or 15 times when being pressed In the process), control device carries out gas storage into air-breather for controlling external air source interface, therefore, in the present embodiment In, control device is used to control the above-mentioned working condition that air-breather carries out aeration to mask.And when compression number reaches After 30 times or 15 times, the air-breather of control device control at this time starts to ventilate into mask, and controlling the ventilation number is 2 It is secondary;It to complete a CPR circulation, and alternately and repeatedly carries out, until treatment process is completed.
Embodiment two:
Fig. 2 is referred to, the present embodiment also provides a kind of Heart-lung restoring instrument, the ventilation of the Heart-lung restoring instrument including embodiment one System 8 further includes pressing system 71 and master control system 72, and master control system 72 is connect with pressing system 71 and aerating system 8, is controlled Pressing system 71 and aerating system 8 carry out CPR operation to patient.
When carrying out CPR first aid, pressing system 71 is for controlling chest compression of the patient when carrying out CPR Operation;And master control system 72 is uniformly controlled pressing system 71 and 8 alternate cycles of aerating system and carries out CPR operation, guarantee into It after the cardiac compression that row is 30 times or 15 times, then is ventilated, is alternately and repeatedly carried out twice, to complete the treatment behaviour of CPR Make, so that using effect is more preferably.It is to be appreciated that logical between the pressing system 71 and master control system 72 and control device 1 Oversampling circuit is connected with each other.
The above content is combine specific embodiment further detailed description of the utility model, and it cannot be said that The specific implementation of the utility model is only limited to these instructions.For the utility model person of an ordinary skill in the technical field For, without departing from the concept of the premise utility, a number of simple deductions or replacements can also be made, all should be considered as belonging to In the protection scope of the utility model.

Claims (9)

1. a kind of aerating system of Heart-lung restoring instrument, which is characterized in that including control device, mask, air-breather and external gas Source device;Wherein
The mask, the air-breather and the external air source device are sequentially connected;Wherein
The air-breather includes air storing cavity and ventilation control piece, and the ventilation control piece is arranged in the air storing cavity and the face Between the gas-guide tube of cover;The control device is connect with the ventilation control piece;And
The control device controls the working condition that the air-breather carries out aeration to the mask, and controls described outer The air storing cavity of portion's compressed air source unit into the air-breather carries out the working condition of gas storage operation.
2. the aerating system of Heart-lung restoring instrument as described in claim 1, which is characterized in that in a state of use,
When patient, which is in, receives CPR pressing operation state, the control device controls the external air source device to institute State air-breather memory storing gas;
When patient is in CPR aeration state to be received, the control device controls the air-breather to described Mask carries out aeration.
3. the aerating system of Heart-lung restoring instrument as described in claim 1, which is characterized in that the ventilation control piece includes ventilation Valve.
4. the aerating system of Heart-lung restoring instrument as claimed in claim 3, which is characterized in that the ventilation control piece further includes adjusting Pressure valve, the pressure regulator valve are arranged between the air storing cavity and the breather valve.
5. the aerating system of Heart-lung restoring instrument as claimed in claim 4, which is characterized in that the mask body of the mask and institute It states gas-guide tube junction and is additionally provided with check valve.
6. the aerating system of Heart-lung restoring instrument as described in any one in claim 1-5, which is characterized in that the external air source dress It sets including gas compression part and external air source interface module, the external air source interface module passes through the gas compression part and institute State air storing cavity connection;
The control device is connect with the gas compression part.
7. the aerating system of Heart-lung restoring instrument as claimed in claim 6, which is characterized in that the external air source interface module packet At least one set of gas source interface and Interface Controller part corresponding with the gas source interface are included, the Interface Controller part is arranged in the gas Between source interface and the gas compression part;
The control device is connect with the Interface Controller part.
8. the aerating system of Heart-lung restoring instrument as claimed in claim 7, which is characterized in that it further include fixed device, it is described solid Device is determined for immobilized patients;
The gas source interface includes air interface, and the Interface Controller part includes air interface control piece;The air interface pair The position answered is additionally provided with air processor;And/or
The gas source interface includes oxygen interface, and the Interface Controller part includes oxygen Interface Controller part.
9. a kind of Heart-lung restoring instrument, which is characterized in that including the described in any item aerating systems of claim 1-8, further include by Pressure system and master control system, the master control system are connect with the pressing system and the aerating system, control the pressing system System carries out CPR operation to patient with the aerating system.
CN201821831393.0U 2018-11-06 2018-11-06 A kind of aerating system and Heart-lung restoring instrument of Heart-lung restoring instrument Active CN209464449U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109224227A (en) * 2018-11-06 2019-01-18 振鹭医疗科技(上海)有限公司 A kind of aerating system and Heart-lung restoring instrument of Heart-lung restoring instrument

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109224227A (en) * 2018-11-06 2019-01-18 振鹭医疗科技(上海)有限公司 A kind of aerating system and Heart-lung restoring instrument of Heart-lung restoring instrument

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