CN112245732B - 3D shows intelligent breathing machine - Google Patents

3D shows intelligent breathing machine Download PDF

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Publication number
CN112245732B
CN112245732B CN202011128958.0A CN202011128958A CN112245732B CN 112245732 B CN112245732 B CN 112245732B CN 202011128958 A CN202011128958 A CN 202011128958A CN 112245732 B CN112245732 B CN 112245732B
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air
breathing
plate
assembly
screw
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CN112245732A (en
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杜春玲
周磊
吴超民
郑其昌
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Hunan Ventmed Medical Technology Co Ltd
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Hunan Ventmed Medical Technology Co Ltd
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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES 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
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/0003Accessories therefor, e.g. sensors, vibrators, negative pressure
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES 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
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/0051Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes with alarm devices
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES 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
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/021Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes operated by electrical means
    • A61M16/022Control means therefor
    • A61M16/024Control means therefor including calculation means, e.g. using a processor
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES 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
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/06Respiratory or anaesthetic masks
    • A61M16/0683Holding devices therefor
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES 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
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/10Preparation of respiratory gases or vapours
    • A61M16/14Preparation of respiratory gases or vapours by mixing different fluids, one of them being in a liquid phase
    • A61M16/16Devices to humidify the respiration air
    • GPHYSICS
    • G09EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
    • G09FDISPLAYING; ADVERTISING; SIGNS; LABELS OR NAME-PLATES; SEALS
    • G09F9/00Indicating arrangements for variable information in which the information is built-up on a support by selection or combination of individual elements
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES 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
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/0003Accessories therefor, e.g. sensors, vibrators, negative pressure
    • A61M2016/0027Accessories therefor, e.g. sensors, vibrators, negative pressure pressure meter
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES 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
    • A61M2202/00Special media to be introduced, removed or treated
    • A61M2202/02Gases
    • A61M2202/0208Oxygen
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES 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
    • A61M2205/00General characteristics of the apparatus
    • A61M2205/18General characteristics of the apparatus with alarm

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  • Health & Medical Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • Anesthesiology (AREA)
  • Biomedical Technology (AREA)
  • Heart & Thoracic Surgery (AREA)
  • Hematology (AREA)
  • Emergency Medicine (AREA)
  • Pulmonology (AREA)
  • General Health & Medical Sciences (AREA)
  • Public Health (AREA)
  • Veterinary Medicine (AREA)
  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Theoretical Computer Science (AREA)
  • Respiratory Apparatuses And Protective Means (AREA)

Abstract

The invention provides a 3D display intelligent breathing machine which comprises a supporting base, a moving wheel, a supporting upright post, a mask assembly capable of measuring breathing pressure, a breathing pipeline restraining frame assembly, an automatic control board assembly, a humidifying bottle adjusting cover assembly, an adjusting slide rail, a supporting plate, a humidifying device, a slide block plate, a first air guide pipe, a second air guide pipe, an air-oxygen mixer, an air source connecting pipe, an operation display and a power switch. The brake block is fixed on the moving wheel, so that the stability of operation is ensured, and the brake block is simple in structure and convenient to use; the humidifying monitoring sensor and the air pressure sensor are arranged, so that the breathing air pressure and the humidity of the mouth and the nose are monitored, the breathing air pressure and the humidity are displayed on the control display through the processing of the central processing unit, the working states of the air-oxygen mixer, the humidifier and the electromagnetic valve are controlled according to the different conditions of the patient after the disease occurs, the purpose of intelligent control is achieved, and the automatic adjustment function is achieved through further work.

Description

3D shows intelligent breathing machine
Technical Field
The invention belongs to the technical field of medical equipment and devices, and particularly relates to a 3D display intelligent breathing machine.
Background
In modern clinical medicine, a ventilator has been widely used in respiratory failure due to various reasons, anesthesia and breathing management during major surgery, respiratory support therapy and emergency resuscitation as an effective means for manually replacing the function of spontaneous ventilation, and has a very important position in the modern medical field. The breathing machine is a vital medical device which can prevent and treat respiratory failure, reduce complications and save and prolong the life of a patient.
When a user breathes, the breathing machine can distinguish the inspiration action or the expiration action of the user according to a certain method, if the inspiration action is the inspiration action, the breathing machine provides a higher IPAP pressure to flow gas into the body of the user, and if the expiration action is the expiration action, the breathing machine reduces the pressure from the IPAP to the EPAP, so that the user can breathe the gas smoothly. But present breathing machine still has and can not carry out intelligent automatically regulated to the pressure change condition that the patient breathed out the gas and breathed in, and the fixed hanging mode of air inlet pipeline restraint of being connected with the patient mouth leads to using inconveniently comparatively singly, simultaneously can not be to getting into the humidity change condition core monitoring of patient's internal gas.
The invention with patent publication number CN105833403A provides a breathing machine capable of automatically adjusting breathing frequency, which comprises a main body, a chassis arranged below the main body, an air purification mechanism arranged on one side of the main body and a breathing mechanism arranged on the other side of the main body, wherein a display screen, a switch and an operation panel are arranged on the main body; although the improvement of automatic adjustment is performed, the adjustment is only limited to the adjustment of the breathing frequency, and the function of automatic adjustment according to the change situation of the air pressure is lacked. The invention with patent publication number CN204709574U provides a breathing machine support, which is characterized in that: the breathing machine fixing device comprises a fixing seat and a pipe clamp, wherein the fixing seat is used for fixing the whole support on the breathing machine in an inserting manner, the pipe clamp is connected with the fixing seat through a rotary fixing device, the rotary fixing device comprises a supporting arm and a rotary fixing joint, and one end of the supporting arm is rotatably connected to the fixing seat through the rotary fixing joint; although a bracket for suspending the pipeline is provided, only one end is suspended, which results in instability of the outlet pipeline and inconvenient adjustment.
Disclosure of Invention
In order to solve the technical problems, the invention provides a 3D display intelligent breathing machine which can intelligently adjust the air outlet pressure and frequency according to the breathing condition of a patient and monitor and adjust the air humidity entering the patient body, so that the patient has good comfort; and then, the supporting structure is combined to solve the problems in the background technology.
A3D display intelligent breathing machine comprises a supporting base, a moving wheel, a supporting upright post, a measurable breathing pressure mask assembly, a breathing pipeline restraint frame assembly, an automatic control plate assembly, a humidifying bottle adjusting cover assembly, an adjusting slide rail, a supporting plate, a humidifier, a slide plate, a first air guide pipe, a second air guide pipe, an air-oxygen mixer, an air source connecting pipe, an operation display and a power switch; the automatic control board assembly comprises a control circuit shell, a central processing unit, a wireless transmitter and an alarm; the central processing unit is welded in the middle of the circuit mainboard in the control circuit shell; the wireless transmitter is welded on the right upper side of the circuit main board in the control circuit shell; the alarm is riveted at the left lower side of the circuit main board in the control circuit shell, and the control display is embedded in the middle of the front part of the control circuit shell; the power switch is embedded in the right lower side of the front surface of the control circuit shell, and an information processing module, a humidity monitoring module, an expiration frequency and air pressure monitoring module, an early warning reminding module, an adjusting processing module, an air outlet valve module and a mixed air processing module are arranged in the central processing unit; the humidity monitoring module, the expiration frequency and air pressure monitoring module, the early warning reminding module, the adjusting and processing module, the air outlet valve module and the air mixing processing module are respectively in communication connection with the information processing module.
As a further improvement of the technical scheme:
the movable wheels are respectively bolted at the four corners of the lower part of the support base; one end of the support upright post is bolted at the middle position of the upper part of the support base, and the other end of the support upright post is bolted at the middle position of the lower part of the air-oxygen mixer; the mask assembly capable of measuring the breathing pressure is in threaded connection with the top end of the first air duct; the breathing pipeline restraint frame component is connected to the left side of the air-oxygen mixer through bolts.
The automatic control plate assembly is connected to the upper part of the air-oxygen mixer through screws; the humidifying bottle adjusting cover component is buckled on the upper part of the humidifying bottle; the humidifier is clamped on the upper part of the supporting plate; the adjusting slide rail is connected to the middle position of the front part of the supporting upright post through a screw; the sliding block plate is slidably clamped in the adjusting slide rail and is connected to the left side of the lower part of the supporting plate through bolts.
The mask assembly capable of measuring the respiratory pressure comprises a respiratory mask, a skin-sticking rubber pad, a connecting hole, a connecting ring, an air pressure sensor and a restraint strap; the skin-sticking rubber pad is integrally glued at the front part of the breathing mask; the connecting hole is formed in the middle of the rear part of the breathing mask; the air pressure sensor is arranged at the lower part of the connecting hole and is connected with the breathing mask through a screw; the connecting rings are respectively glued at the middle positions of the left side and the right side of the breathing mask; two ends of the restraint strap are respectively sleeved with the connecting ring.
The respiratory pipeline restraint frame component comprises a connecting lug plate, a first screw, a connecting plate, a second screw and a boom plate; the connecting plate is connected to the left side of the rear part of the connecting lug plate through a first screw; the suspension arm plate is connected to the left side of the rear part of the connecting plate through a second screw.
The humidifying bottle adjusting cover component comprises a protective cover, an air inlet pipe, a humidifying monitoring sensor, an air outlet connecting pipe and an electromagnetic valve; the air inlet pipe is embedded in the middle position of the right side inside the protective cover; the humidifying monitoring sensor is connected to the middle position of the lower side in the protective cover through a screw; the air outlet connecting pipe is embedded in the middle position of the left side inside the protective cover; the electromagnetic valve is connected with the lower side of the inside of the air outlet connecting pipe through a screw.
The first gas guide pipe is sleeved at the upper end of the gas outlet connecting pipe; one end of the second air duct is sleeved at the air outlet end of the air-oxygen mixer, and the other end of the second air duct is sleeved at the upper part of the air inlet pipe.
A first sliding hole is formed in the middle of the inner part of the connecting plate; a hanging rod is connected in the first sliding hole in a sliding and clamping manner; the lower end of the suspender is coupled with a restraining slot sheet; the restraint slot sheet is made of a PVC plastic plate with a semicircular cross section; the first air duct is clamped in the constraint clamping groove sheet.
Control the display and include first display screen, second display screen, first pinhole polaroid and second pinhole polaroid, first display screen with the laminating of first pinhole polaroid, the second display screen with the laminating of second pinhole polaroid, wherein, first display screen is used for showing the first micro image array that has first pinhole array, the second display screen is used for showing the second micro image array that has second pinhole array.
The number of image elements in the first micro-image array is the same as the number of pinholes in the second pinhole array, and the number of image elements in the second micro-image array is the same as the number of pinholes in the first pinhole array.
Compared with the prior art, the invention has the beneficial effects that:
the 3D display intelligent breathing machine disclosed by the invention is used for controlling the breathing machine in real time through the information processing module, the humidity monitoring module, the expiration frequency and air pressure monitoring module, the early warning reminding module, the adjusting processing module, the air outlet valve module and the air mixing processing module which are arranged in the central processing unit, and the wireless transmitter can be in data transmission connection with the remote terminal, so that the change condition of the illness state of a patient can be conveniently collected, the alarm and early warning are carried out on the condition which exceeds the set standard under the action of the alarm, the danger of the patient is avoided, and the safety of a user in use is ensured.
When the respirator is used, the respirator is pushed to move to a using position under the action of the moving wheel, the brake pad on the moving wheel is fixed, the operation stability is ensured, the air source pipeline is connected to the air source connecting pipe, and the external power supply is connected, so that the respirator is simple in structure and convenient to use; adjusting the inclination angles of the connecting plate and the suspension arm plate, fixing a first screw and a second screw for qualitative determination, adjusting the position of the suspension rod in the first slide hole and the second slide hole, clamping the first air duct in the constraint clamping groove sheet, hanging the first air duct on the constraint hook, and constraining the first air duct to keep stable and ensure the efficiency and quality of air transmission; the breathing mask is buckled on the mouth and the nose and is restrained by the restraining belt, so that the air pressure sensor is positioned at the upper part of the upper lip, the breathing air pressure of the mouth and the nose is monitored and displayed on the control display through the processing of the central processing unit, and the working states of the air-oxygen mixer and the electromagnetic valve are controlled according to the different illness states after illness, thereby achieving the purpose of intelligent control; in the process, the humidity condition of the gas entering the first gas guide pipe is monitored by the humidity monitoring sensor, so that the purpose of automatic adjustment is achieved by controlling the humidifier.
The control display device has small volume, two micro image arrays are adopted to reconstruct a three-dimensional image independently, and the two three-dimensional images are combined in a viewing area, so that the information capacity of integrated imaging 3D display is improved, the resolution or the viewing angle is increased on the premise of not reducing other viewing parameters, and the viewing is easier; the medical staff can observe the physical characteristics of the patient clearly and clearly.
Drawings
Fig. 1 is a schematic structural view of the present invention.
Fig. 2 is a schematic diagram of the construction of a measurable respiratory pressure mask assembly of the present invention.
Fig. 3 is a schematic structural view of a breathing circuit restraint frame assembly of the present invention.
Fig. 4 is a schematic structural view of an automatic control board assembly of the present invention.
Fig. 5 is a schematic view of the structure of the humidifying bottle regulating cap assembly of the present invention.
FIG. 6 is a schematic diagram of the autoregulation control state framework of the present invention.
Fig. 7 is a schematic diagram of a 3D display structure of the manipulation display according to the present invention.
FIG. 8 is a schematic view of a first microimage array of the present invention.
FIG. 9 is a schematic view of a second microimage array according to the present invention.
Reference numerals: 1. a support base; 2. a moving wheel; 3. supporting the upright post; 4. a mask assembly capable of measuring respiratory pressure; 41. a respiratory mask; 42. sticking a skin rubber pad; 43. connecting holes; 44. a connecting ring; 45. an air pressure sensor; 46. a restraint band; 5. a breathing circuit restraint frame assembly; 51. connecting the ear plates; 52. a first screw; 53. a connecting plate; 531. a first slide hole; 532. a boom; 533. restraining the slot clamping sheet; 54. a second screw; 55. a boom plate; 551. a second slide hole; 552. a pendant board; 553. a restraining hook; 6. an automatic control panel assembly; 61. a control circuit housing; 62. a central processing unit; 63. a wireless transmitter; 64. an alarm; 7. a humidifying bottle adjusting cover component; 71. a protective cover; 72. an air inlet pipe; 73. a humidification monitoring sensor; 74. an air outlet connecting pipe; 75. an electromagnetic valve; 8. adjusting the slide rail; 9. a support pallet; 10. a humidifier; 11. a slider plate; 12. a first air duct; 13. a second air duct; 14. an air-oxygen mixer; 15. a gas source connecting pipe; 16. controlling a display; 17. a power switch; 161. a first display screen; 162. a first pinhole polarizer; 163. a second display screen; 164. a second pinhole polarizer; 165. a first array of pin holes; 166. a first micro-image array; 167. a second pinhole array; 168. a second micro-image array.
Detailed Description
The invention is further described below with reference to the accompanying drawings:
example (b):
as shown in the attached figure 1, the invention provides a 3D display intelligent breathing machine, which comprises a supporting base 1, a moving wheel 2, a supporting upright post 3, a measurable breathing pressure mask component 4, a breathing pipeline restraining frame component 5, an automatic control panel component 6, a humidifying bottle adjusting cover component 7, an adjusting slide rail 8, a supporting plate 9, a humidifying device 10, a slide block plate 11, a first air duct 12, a second air duct 13, an air-oxygen mixer 14, an air source connecting pipe 15, an operation display 16 and a power switch 17; the moving wheels 2 are respectively bolted at the four corners of the lower part of the supporting base 1; one end of the support upright post 3 is bolted at the middle position of the upper part of the support base 1, and the other end is bolted at the middle position of the lower part of the air-oxygen mixer 14; the mask assembly 4 capable of measuring the breathing pressure is in threaded connection with the top end of the first air duct 12; the respiratory pipeline restraint frame component 5 is connected to the left side of the air-oxygen mixer 14 through bolts; the automatic control plate assembly 6 is in screw connection with the upper part of the air-oxygen mixer 14; the humidifying bottle adjusting cover assembly 7 is buckled at the upper part of the humidifying device 10; the humidifier 10 is clamped at the upper part of the supporting plate 9; the adjusting slide rail 8 is connected with the middle position of the front part of the supporting upright post 3 through a screw; the slide block plate 11 is slidably clamped in the adjusting slide rail 8 and is connected to the left side of the lower part of the supporting plate 9 through a bolt; the air source connecting pipe 15 is in threaded connection with the right side position of the rear part of the air-oxygen mixer 14.
In the above embodiment, as shown in fig. 2, specifically, the measurable respiratory pressure mask assembly 4 includes a respiratory mask 41, a skin-contacting rubber pad 42, a connecting hole 43, a connecting ring 44, a pressure sensor 45 and a restraint band 46; the skin-sticking rubber pad 42 is integrally glued on the front part of the breathing mask 41; the connecting hole 43 is arranged at the middle position of the rear part of the breathing mask 41; the air pressure sensor 45 is arranged at the lower part of the connecting hole 43 and is in screw connection with the breathing mask 41; the connecting rings 44 are respectively glued at the middle positions of the left side and the right side of the breathing mask 41; the two ends of the restraining belt 46 are respectively sleeved with the connecting ring 44.
In the above embodiment, as shown in fig. 3, in particular, the breathing circuit restraining frame assembly 5 includes a connecting ear plate 51, a first screw 52, a connecting plate 53, a second screw 54 and a boom plate 55; the connecting plate 53 is connected to the left position of the rear part of the connecting lug plate 51 through a first screw 52; the suspension arm plate 55 is connected to the left position of the rear part of the connecting plate 53 through a second screw 54; a first sliding hole 531 is formed in the middle of the inner part of the connecting plate 53; a hanging rod 532 is clamped in the first sliding hole 531 in a sliding manner; the lower end of the suspender 532 is coupled with a restriction card slot sheet 533; a second slide hole 551 is arranged in the middle of the interior of the suspension arm plate 55; the top end of the suspension arm plate 55 is coupled with a pendant plate 552; the lower end of the pendant plate 552 is in threaded connection with a constraint hook 553; the constraining slot 533 is made of a PVC plastic plate with a semicircular cross section; the first air duct 12 is clamped in the constraint clamping groove sheet 533.
As shown in fig. 4, in the above embodiment, in particular, the automatic control board assembly 6 includes a control circuit casing 61, a central processing unit 62, a wireless transmitter 63 and an alarm 64; the central processor 62 is welded in the middle of the circuit main board inside the control circuit shell 61; the wireless transmitter 63 is welded at the upper right side of the circuit main board in the control circuit shell 61; the alarm 64 is riveted to the left lower side of the circuit board inside the control circuit case 61.
As shown in fig. 5, in the above embodiment, specifically, the humidification bottle adjusting cover assembly 7 includes a protective cover 71, an air inlet pipe 72, a humidification monitoring sensor 73, an air outlet connecting pipe 74 and a solenoid valve 75; the air inlet pipe 72 is embedded in the middle position of the right side inside the protective cover 71; the humidification monitoring sensor 73 is connected to the middle position of the lower side in the protective cover 71 through a screw; the air outlet connecting pipe 74 is embedded in the middle position of the left side inside the protective cover 71; the solenoid valve 75 is screwed to the inner lower side of the air outlet connection pipe 74.
In the above embodiment, specifically, the first airway tube 12 is sleeved on the upper end of the air outlet connection tube 74; one end of the second air duct 13 is sleeved at the air outlet end of the air-oxygen mixer 14, and the other end is sleeved at the upper part of the air inlet pipe 72.
In the above embodiment, specifically, the operation display 16 is embedded in the middle position of the front of the control circuit casing 61; the power switch 17 is embedded in the right lower side of the front surface of the control circuit shell 61.
In the above embodiment, specifically, the moving wheel 2 is a silent rubber universal wheel with a brake pad.
As shown in fig. 6, in the above embodiment, specifically, an information processing module, a humidity monitoring module, an expiratory frequency and air pressure monitoring module, an early warning reminding module, an adjusting processing module, an air outlet valve module and a gas mixing processing module are arranged in the central processing unit 62; the humidity monitoring module, the expiration frequency and air pressure monitoring module, the early warning reminding module, the adjusting and processing module, the air outlet valve module and the air mixing processing module are respectively in communication connection with the information processing module.
In the above embodiment, specifically, the humidity monitoring module is electrically connected to the humidification monitoring sensor 73; the expiration frequency and air pressure monitoring module is electrically connected with the air pressure sensor 45; the gas mixing treatment module is respectively and electrically connected with the air-oxygen mixer 14 and the humidifier 10; the early warning reminding module is electrically connected with the alarm 64; the adjusting and processing modules are respectively and electrically connected with the control display 16; the air outlet valve module is electrically connected with the electromagnetic valve 75.
In the above embodiment, specifically, the wireless transmitter 63 is connected to a remote terminal device (a computer or a mobile phone) through WIFI or wireless communication.
In the above embodiment, specifically, the central processing unit 62, the wireless transmitter 63, the alarm 64, the control display 16, the power switch 17, the air pressure sensor 45, the humidification monitoring sensor 73, the humidifier 10 and the air-oxygen mixer 14 adopt common technical means in the mechanical medical treatment and communication technical field; the air pressure sensor 45 is a sensor with the type of Merrill E5; the humidification monitoring sensor 73 is specifically an SHT20 sensor; the operation display 16, the power switch 17, the air pressure sensor 45, the humidification monitoring sensor 73, the humidifier 10 and the air-oxygen mixer 14 adopt the common method in the prior art.
As shown in fig. 7 to 9, the control display 16 includes a first display screen 161, a second display screen 163, a first pinhole polarizer 162 and a second pinhole polarizer 164, the first display screen 161 is attached to the first pinhole polarizer 162, and the second display screen 163 is attached to the second pinhole polarizer 164, wherein the first display screen 161 is used for displaying a first micro-image array 166 with a first pinhole array 165, and the second display screen 163 is used for displaying a second micro-image array 168 with a second pinhole array 167.
The number of image elements in the first micro-image array 166 is the same as the number of pinholes in the second pinhole array 167, and the number of image elements in the second micro-image array 168 is the same as the number of pinholes in the first pinhole array 165.
The control display 16 is upgraded to 3D display by common plane display, so that the display data is more stereoscopic and clearer, and medical staff can know the conditions of patients timely and accurately.
Principle of operation
When the respirator is used, the respirator is pushed to move to a using position under the action of the moving wheel 2, the brake pad on the moving wheel 2 is fixed, the operation stability is ensured, the air source pipeline is connected to the air source connecting pipe 15, and an external power supply is connected, so that the respirator is simple in structure and convenient to use; the inclination angles of the connecting plate 53 and the suspension arm plate 55 are adjusted, the first screw 52 and the second screw 54 are fixed for qualitative determination, the position of the suspension rod 532 is adjusted in the first sliding hole 531 and the second sliding hole 551, the first air duct 12 is clamped in the constraint clamping groove sheet 533 and hung on the constraint hook 553, the first air duct 12 is constrained, and the stability is kept so as to ensure the efficiency and the quality of air transmission; the breathing mask 41 is buckled on the mouth and the nose and is restrained by the restraining belt 46, so that the air pressure sensor 45 is positioned at the upper part of the upper lip, the breathing air pressure of the mouth and the nose is monitored and is displayed on the control display 16 after being processed by the central processing unit 62, and the working states of the air-oxygen mixer 14 and the electromagnetic valve 75 are controlled according to different illness states after illness, so that the purpose of intelligent control is achieved; in the process, the humidity monitoring sensor 73 monitors the humidity of the gas entering the first gas-guide tube 12, so that the control of the humidifier 10 is controlled to achieve the purpose of automatic adjustment; wireless transmitter 63 can carry out the transmission connection of data with remote terminal to be convenient for collect patient's state of an illness change condition, carry out the alarm early warning to the condition that takes place under exceeding the settlement standard under the effect of siren 64, avoid patient to produce dangerously.
In the description of the present invention, it is to be understood that the terms "center", "longitudinal", "lateral", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", and the like, indicate orientations and positional relationships based on those shown in the drawings, and are used only for convenience of description and simplicity of description, and do not indicate or imply that the equipment or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and thus, should not be considered as limiting the present invention.
Finally, it should be noted that: although the present invention has been described in detail with reference to the foregoing embodiments, it will be apparent to those skilled in the art that changes may be made in the embodiments and/or equivalents thereof without departing from the spirit and scope of the invention. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (1)

1. The utility model provides a 3D shows intelligent breathing machine which characterized in that: the breathing mask device comprises a supporting base (1), a moving wheel (2), a supporting upright post (3), a measurable breathing pressure mask assembly (4), a breathing pipeline restraint frame assembly (5), an automatic control panel assembly (6), a humidifying bottle adjusting cover assembly (7), an adjusting slide rail (8), a supporting plate (9), a humidifying device (10), a slide block plate (11), a first air duct (12), a second air duct (13), an air-oxygen mixer (14), an air source connecting pipe (15), an operation display (16) and a power switch (17); the automatic control board assembly (6) comprises a control circuit shell (61), a central processor (62), a wireless transmitter (63) and an alarm (64); the central processor (62) is welded in the middle of the circuit main board in the control circuit shell (61); the wireless transmitter (63) is welded at the right upper side of the circuit main board in the control circuit shell (61); the alarm (64) is riveted at the left lower side of the circuit main board in the control circuit shell (61), and the control display (16) is embedded in the middle position of the front part of the control circuit shell (61); the power switch (17) is embedded in the right lower side of the front surface of the control circuit shell (61), and an information processing module, a humidity monitoring module, an expiration frequency and air pressure monitoring module, an early warning reminding module, an adjusting processing module, an air outlet valve module and a gas mixing processing module are arranged in the central processing unit (62); the humidity monitoring module, the expiratory frequency and air pressure monitoring module, the early warning reminding module, the adjusting and processing module, the air outlet valve module and the air mixing processing module are respectively in communication connection with the information processing module;
the movable wheels (2) are respectively connected to the four corners of the lower part of the supporting base (1) through bolts; one end of the support upright post (3) is bolted at the middle position of the upper part of the support base (1), and the other end of the support upright post is bolted at the middle position of the lower part of the air-oxygen mixer (14); the mask assembly (4) capable of measuring the breathing pressure is in threaded connection with the top end of the first air duct (12); the respiratory pipeline restraint frame component (5) is connected to the left side of the air-oxygen mixer (14) through bolts;
the automatic control plate assembly (6) is in screw connection with the upper part of the air-oxygen mixer (14); the humidifying bottle adjusting cover assembly (7) is buckled at the upper part of the humidifying device (10); the humidifier (10) is clamped at the upper part of the supporting plate (9); the adjusting slide rail (8) is connected to the middle position of the front part of the supporting upright post (3) through a screw; the sliding block plate (11) is slidably clamped in the adjusting slide rail (8) and is connected to the left side position of the lower part of the supporting plate (9) through a bolt;
the mask assembly (4) capable of measuring the breathing pressure comprises a breathing mask (41), a skin-contacting rubber pad (42), a connecting hole (43), a connecting ring (44), an air pressure sensor (45) and a restraint strap (46); the skin-sticking rubber cushion (42) is integrally glued on the front part of the breathing mask (41); the connecting hole (43) is formed in the middle of the rear part of the breathing mask (41); the air pressure sensor (45) is arranged at the lower part of the connecting hole (43) and is in screw connection with the breathing mask (41); the connecting rings (44) are respectively glued at the middle positions of the left side and the right side of the breathing mask (41); two ends of the restraint strap (46) are respectively sleeved with the connecting ring (44);
the respiratory tract restraint frame assembly (5) comprises a connecting lug plate (51), a first screw (52), a connecting plate (53), a second screw (54) and a suspension arm plate (55); the connecting plate (53) is connected to the left side of the rear part of the connecting lug plate (51) through a first screw (52); the suspension arm plate (55) is connected to the left side position of the rear part of the connecting plate (53) through a second screw (54);
the humidification bottle adjusting cover assembly (7) comprises a protective cover (71), an air inlet pipe (72), a humidification monitoring sensor (73), an air outlet connecting pipe (74) and an electromagnetic valve (75); the air inlet pipe (72) is embedded in the middle position of the right side in the protective cover (71); the humidifying monitoring sensor (73) is connected to the middle position of the lower side in the protective cover (71) through a screw; the air outlet connecting pipe (74) is embedded in the middle position of the left side inside the protective cover (71); the electromagnetic valve (75) is in screw connection with the inner lower side position of the air outlet connecting pipe (74);
the first air duct (12) is sleeved at the upper end of the air outlet connecting pipe (74); one end of the second air duct (13) is sleeved at the air outlet end of the air-oxygen mixer (14), and the other end is sleeved at the upper part of the air inlet pipe (72);
a first sliding hole (531) is formed in the middle of the inner part of the connecting plate (53); a hanging rod (532) is connected to the inner part of the first sliding hole (531) in a sliding and clamping manner; the lower end of the suspender (532) is coupled with a restraining clamping groove sheet (533); the constraint slot clamping sheet (533) is a PVC plastic plate with a semicircular cross section; the first air duct (12) is clamped in the constraint clamping groove sheet (533);
the control display (16) comprises a first display screen (161), a second display screen (163), a first pinhole polarizer (162) and a second pinhole polarizer (164), wherein the first display screen (161) is attached to the first pinhole polarizer (162), and the second display screen (163) is attached to the second pinhole polarizer (164), wherein the first display screen (161) is used for displaying a first micro-image array (166) with a first pinhole array (165), and the second display screen (163) is used for displaying a second micro-image array (168) with a second pinhole array (167);
the number of image elements in the first micro-image array (166) is the same as the number of pinholes in the second pinhole array (167), and the number of image elements in the second micro-image array (168) is the same as the number of pinholes in the first pinhole array (165).
CN202011128958.0A 2020-10-21 2020-10-21 3D shows intelligent breathing machine Active CN112245732B (en)

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CN112245732B true CN112245732B (en) 2023-03-07

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Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105833403A (en) * 2016-06-02 2016-08-10 蒙泽喜 Breathing machine capable of regulating breathing frequency automatically
CN111529855A (en) * 2020-05-19 2020-08-14 南京舒普医疗科技有限公司 Trigger type high-frequency jet breathing machine for cardio-pulmonary resuscitation
CN211327642U (en) * 2019-11-25 2020-08-25 白智晶 Medical treatment double-purpose breathing machine
CN111603641A (en) * 2020-03-31 2020-09-01 湖南万脉医疗科技有限公司 Noninvasive ventilator-based alveolar ventilation monitoring system and control method
CN111658933A (en) * 2020-07-28 2020-09-15 东莞市史雷帝三维数控科技有限公司 Epidemic prevention breathing machine with oxygen concentration self-regulation function

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105833403A (en) * 2016-06-02 2016-08-10 蒙泽喜 Breathing machine capable of regulating breathing frequency automatically
CN211327642U (en) * 2019-11-25 2020-08-25 白智晶 Medical treatment double-purpose breathing machine
CN111603641A (en) * 2020-03-31 2020-09-01 湖南万脉医疗科技有限公司 Noninvasive ventilator-based alveolar ventilation monitoring system and control method
CN111529855A (en) * 2020-05-19 2020-08-14 南京舒普医疗科技有限公司 Trigger type high-frequency jet breathing machine for cardio-pulmonary resuscitation
CN111658933A (en) * 2020-07-28 2020-09-15 东莞市史雷帝三维数控科技有限公司 Epidemic prevention breathing machine with oxygen concentration self-regulation function

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Denomination of invention: A 3D display intelligent ventilator

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