WO2018086346A1 - Machine de contrôle de santé tout-en-un ayant une fonction de mesure de taille corporelle basée sur des ultrasons - Google Patents

Machine de contrôle de santé tout-en-un ayant une fonction de mesure de taille corporelle basée sur des ultrasons Download PDF

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Publication number
WO2018086346A1
WO2018086346A1 PCT/CN2017/087844 CN2017087844W WO2018086346A1 WO 2018086346 A1 WO2018086346 A1 WO 2018086346A1 CN 2017087844 W CN2017087844 W CN 2017087844W WO 2018086346 A1 WO2018086346 A1 WO 2018086346A1
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WO
WIPO (PCT)
Prior art keywords
machine
ultrasonic
health check
base
user
Prior art date
Application number
PCT/CN2017/087844
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English (en)
Chinese (zh)
Inventor
张贯京
葛新科
王海荣
刘志凡
Original Assignee
深圳市易特科信息技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by 深圳市易特科信息技术有限公司 filed Critical 深圳市易特科信息技术有限公司
Publication of WO2018086346A1 publication Critical patent/WO2018086346A1/fr

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Classifications

    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/02Detecting, measuring or recording pulse, heart rate, blood pressure or blood flow; Combined pulse/heart-rate/blood pressure determination; Evaluating a cardiovascular condition not otherwise provided for, e.g. using combinations of techniques provided for in this group with electrocardiography or electroauscultation; Heart catheters for measuring blood pressure
    • A61B5/0205Simultaneously evaluating both cardiovascular conditions and different types of body conditions, e.g. heart and respiratory condition
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/145Measuring characteristics of blood in vivo, e.g. gas concentration, pH value; Measuring characteristics of body fluids or tissues, e.g. interstitial fluid, cerebral tissue
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • A61B5/24Detecting, measuring or recording bioelectric or biomagnetic signals of the body or parts thereof
    • A61B5/316Modalities, i.e. specific diagnostic methods
    • A61B5/318Heart-related electrical modalities, e.g. electrocardiography [ECG]
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B8/00Diagnosis using ultrasonic, sonic or infrasonic waves

Definitions

  • the present invention relates to the field of medical devices, and in particular to a health check-up machine based on ultrasonic height measurement.
  • the purpose of the present invention is to provide a health inspection integrated machine based on ultrasonic height measurement, which aims to solve the problem that the existing health detecting equipment does not use the ultrasonic to measure the height, and the integration degree is not high and the degree of automation is not high. .
  • the present invention provides a health check-in machine based on ultrasonic height measurement
  • the health check-in machine based on ultrasonic height measurement includes a first function machine, a second function machine, and a third
  • the function machine, the first function machine is connected to the second function machine
  • the third function machine is connected to the second function machine
  • the second function machine comprises a base, an iron plate, a cover plate, a pedal, a front cover of the base, a rear cover of the base, a base stand, a load cell and a microprocessor
  • the front shell of the base and the rear shell of the base are sleeved on the base bracket, and the microprocessor is disposed in a cavity enclosed by the front shell of the base and the rear shell of the base and installed in the machine.
  • Seat bracket
  • the front fuselage shell and the rear shell of the fuselage are sleeved on the fuselage bracket, the display fixing frame is fixed on the fuselage bracket and exposed to the front shell of the fuselage, and the display screen is embedded in the display Fixed in the frame;
  • the load cell is mounted between the base and the iron plate, and the cover is disposed on the upper surface of the iron plate
  • the pedal is attached to the cover, and the weight sensor is connected to the microprocessor for measuring user's weight data and transmitting to the microprocessor;
  • the ultrasonic probe box is fixed on an upper portion of the front casing of the fuselage, the ultrasonic probe is installed in the ultrasonic probe box, and the ultrasonic probe is electrically connected to the microprocessor for passing Transmitting ultrasonic waves to detect the user's height data and sending it to the microprocessor;
  • the microprocessor is electrically connected to the display screen for displaying the height data and the weight of the user on the display screen.
  • the second function machine further includes a fat measuring handle, the fat measuring handle is installed at a middle position of the front shell of the base and connected to the microprocessor through a wire, and the fat measuring handle comprises stainless steel.
  • the coil and the blocking coil are used to measure the fat content of the user when the user holds the fat measuring handle with both hands, and the microprocessor displays the fat content of the user on the display screen.
  • a top cover of the fuselage rear case is disposed on the top end of the fuselage rear case, and a rear door of the fuselage rear case is disposed on the back side of the body, and a light transmission ring is disposed at a top end of the front cover of the fuselage, LED bulbs with illuminating decoration.
  • the bottom of the fuselage bracket is fixed with two latches for connecting the two insertion holes of the base bracket to integrally connect the third function machine and the second function machine.
  • the right side of the base bracket is provided with two screw holes for connecting two screws of the first function machine to integrally integrate the first function machine and the second function machine.
  • the outer surface of the display screen is provided with a transparent protective film.
  • the first function machine comprises a printer side panel, a printer front door, a printer bottom plate and a printer, wherein the printer side plate is fixed at a middle position of the front table of the machine table, and the printer side plate and the printer front door are disposed at On the printer backplane, the printer is installed on the printer side panel, printer front door, and printer The printer is used to print a user's health check report in a cavity enclosed by the bottom plate.
  • a lower portion of the back of the rear case of the table is provided with a cable holder, and the cable holder is provided with a network cable interface, a power switch and a power socket, wherein the network cable interface is used for accessing the network cable
  • the health check-in machine based on the ultrasonic height measurement is connected to an external network, and the power source is used to control the opening or closing of the health check-in machine based on the ultrasonic height measurement, and the power socket is used for plugging the external
  • the power supply provides working power for the health check-in machine based on the ultrasonic height measurement.
  • a cavity of the machine front case and the back of the machine table is provided with a power supply fixing seat, wherein the power supply fixing seat is provided with an internal power supply and a voltage-stabilizing fuse, and the voltage-regulating fuse Connected to the internal power supply.
  • the inner wall of the back of the rear case of the table is provided with a speaker
  • the outer wall of the rear of the rear case of the table is equipped with a tuning knob, and the tuning knob is electrically connected to the speaker for adjusting the speaker.
  • the health check-in machine based on ultrasonic height measurement adopts the above technical solution, and achieves the following technical effects: capable of automatically measuring user height data, body weight data and body fat content It has the advantages of multi-functional integration, high integration and high degree of automation.
  • the detachable structure is easy to disassemble and transport, and it is convenient for maintenance. It can also be used for self-printing to form the user's health inspection report.
  • FIG. 1 is based on ultrasonic waves of the present invention?
  • FIG. 3 is based on ultrasound of the present invention?
  • FIG. 4 is based on ultrasound of the present invention?
  • the first function machine of the height health check-up machine is preferably implemented Schematic diagram of the side structure of the example;
  • FIG. 5 is a schematic view showing the back structure of a preferred embodiment of the first function machine of the health check-integrator based on ultrasonic height measurement
  • FIG. 6 is a schematic view showing the internal structure of a preferred embodiment of the first function machine of the health check-integrator based on the ultrasonic height measuring body according to the present invention
  • FIG. 7 is a front view of a preferred embodiment of a second function machine of a health check-integrator based on ultrasonic height measurement
  • FIG. 8 is a schematic view showing the internal structure of a second functional machine of a health check-integrator based on ultrasonic height measurement
  • FIG. 9 is a schematic view showing the back structure of a preferred embodiment of the second function machine of the health check-up machine based on the ultrasonic height measuring body according to the present invention.
  • FIG. 10 is a front view showing a preferred embodiment of a third function machine of a health check-integrator based on ultrasonic height measurement;
  • FIG. 11 is a schematic view showing the back structure of a preferred embodiment of the third function machine of the health check-integrator based on the ultrasonic height measurement of the present invention.
  • FIG. 1 is a schematic perspective view of a preferred embodiment of a health check-integrator based on ultrasonic height measurement.
  • the health check-integrator based on the ultrasonic height measurement includes a first function machine 01, a second function machine 02, and a third function machine 03.
  • the first function machine 01 is connected to the second function machine 02 by a first detachable mechanical structure (for example, the screw 38 shown in FIG. 2 and the screw hole 55 shown in FIG. 7), the third function machine 03 Through the second detachable mechanical structure (such as shown in Figure 10
  • the screw pin 67 and the jack 56) shown in Fig. 7 are connected to the second function machine 02. Since the first detachable mechanical structure and the second detachable mechanical structure are adopted, the first functional machine 01, the second functional machine 02, and the third functional machine 03 can be detached and separated for easy handling and transportation.
  • FIG. 2 is a front view of a preferred embodiment of a first functional machine of a health check-integrator based on ultrasonic height measurement
  • FIG. 3 is a schematic diagram of the present invention based on ultrasonic waves.
  • FIG. 4 is a side view showing a preferred embodiment of a first function machine of a health check-integrator based on ultrasonic height measurement;
  • FIG. 5 is a schematic view showing the back structure of a preferred embodiment of the first function machine of the health check-up machine based on ultrasonic height measurement;
  • FIG. 6 is a first function of the health check-up machine based on ultrasonic height measurement of the utility model;
  • the first function machine 01 includes, but is not limited to, a display 1, a medical consumable box 2, a printer side panel 3, a printer front door 4, a printer bottom plate 5, a table caster 6, and a machine table.
  • the display 1 is mounted in a cavity between the display front case 14 and the display rear case 15 and is fixed to the display fixing plate 25.
  • the display fixing plate 25 is mounted on the table stand 8, and the display front case 14 and the display rear case 15 are fixed to the display fixing plate 25.
  • the display 1 is electrically connected to the main controller 32 for displaying a health check operation interface and health check information of the user, including information such as a blood pressure value, a blood sugar level, a blood oxygen level, and an electrocardiogram of the user.
  • the machine front case 7 and the table back case 16 are coupled to the machine table bracket 8 by screws embedded in the front door shell 7 of the machine table and the built-in nut of the machine table back shell 16, and the machine table back shell 16 Forming the back side, the side surface and the work surface of the first function machine 01, the machine front case 7 constitutes the front side of the first function machine 01, so that the machine front case 7 and the table back case 16 can surround the machine table support 8 Form a conjoined structure.
  • the medical consumable box 2 is disposed at a lower portion of the sphygmomanometer bottom plate 10, and the medical consumables required by the user (for example, medical Use cotton swabs, medical gauze, etc.) can be placed in the medical consumable box 2, avoiding the use of medical consumables everywhere.
  • the table top of the machine table rear case 16 is provided with a sphygmomanometer base plate 10, which is mounted on the sphygmomanometer base plate 10 and electrically connected to the main controller 32, which is a prior art blood pressure measurement.
  • the device is configured to measure a blood pressure value of the user, including diastolic blood pressure and systolic blood pressure, and send the blood pressure value of the user to the main controller 32.
  • the printer side panel 3 is fixed at a middle portion of the machine front case 7, and the printer side panel 3 and the printer front door 4 are both disposed on the printer bottom plate 5, thereby causing the printer side panel 3, the printer front door 4, and
  • the printer chassis 5 encloses a cavity for the printer 36.
  • the printer 36 is mounted on the printer backplane 5 and electrically connected to the main controller 32 for the user to print a health check report.
  • the table casters 6 are mounted on the bottom of the table stand 8 for supporting the first function machine 01.
  • the number of the table casters 6 may be plural, for example two or four, and the table stand 8 may be a steel frame or a support frame made of other hard materials.
  • the blood oxygen supporting plate 11 is mounted on the working surface of the rear case 16 of the table, and the blood oxygen supporting plate 11 is provided with two concave cavities for respectively placing the blood glucose meter 12 and the oximeter 13 .
  • the blood glucose meter 12 and the oximeter 13 are electrically connected to the main controller 32, respectively.
  • the blood glucose meter 12 is a prior art blood glucose measuring device for measuring a blood sugar level of a user and transmitting the blood sugar value of the user to the main
  • the oximeter 13 is a prior art oximetry device for measuring a blood oxygen level of a user and transmitting a blood oxygen value of the user to the main controller 32.
  • the body side door 18 is disposed on a side surface of the machine table rear case 16, and a hinge 26 is mounted between the machine table bracket 8 and the inner side of the body side door 18, and the hinge 26 is used to implement the body side door 18 and the machine.
  • the rotational connection between the back shells 16 allows the user to smash the side door 18 of the body for rotation.
  • the upper right corner of the side door 18 of the body is provided with a side door notch 17, and the user can insert a finger into the side door notch 17 to smash the side door 18 of the body to take out the measuring electrode of the electrocardiograph 27 for ECG measurement.
  • the electrocardiograph 27 is mounted in a cavity formed by the table back case 16 and the table front case 7 and is electrically connected to the main controller 32 for measuring the user's electrocardiographic signal and generating the user's electrocardiogram signal. Send to the main controller 32.
  • the electrocardiograph 27 is a 12-lead ECG monitor.
  • the twelve-lead ECG monitor includes an electrode interface, twelve cardiac electrodes, and a lead wire.
  • the twelve cardiac electrodes include three limb lead electrodes, three pressurized lead electrodes and six chest lead electrodes for acquiring a user's ECG signal. Twelve cardiac electrodes are connected together by lead wires and connected to the electrode interface.
  • Twelve cardiac electrodes can be placed close to the user's desired detection site, including the chest, armpit, neck, abdomen and other parts of the body.
  • the twelve core electrodes and the lead wires of the electrocardiograph 27 are placed behind the machine table.
  • An upper table back door 20 is disposed on an upper portion of the rear surface of the rear case 16 of the machine table, and a plurality of ventilation holes for dissipating heat are disposed on the rear door 20 of the machine table, and the back door 20 of the machine can be smashed, thereby facilitating the first The function machine 01 performs maintenance.
  • a tuning knob 19 is mounted on the rear outer wall of the rear case 16 of the table, and the tuning knob 19 is electrically connected to the speaker 29 for manually adjusting the volume of the speaker 29.
  • the speaker 29 is mounted on the inner wall of the back of the rear case 16 of the table and is electrically connected to the main controller 32 for playing the sound of the first function machine 01 to prompt the user's various health status information.
  • the lower portion of the back of the machine case rear case 16 is provided with a cable holder 21, and the cable holder 21 is provided with a network cable interface 22, a power switch 23, a power socket 24 and a USB interface 33, and the cable interface 22
  • the first function machine 01 is connected to the external network
  • the power switch 23 is used for controlling the opening or closing of the health check-in machine based on the ultrasonic height measurement
  • the power socket 24 is used for The external power source is plugged in, and the working power supply is provided for the health check-in machine based on the ultrasonic height measurement.
  • the USB interface 33 is electrically connected to the main controller 32, and the user can insert an external memory (for example, a USB flash drive) through the USB interface 33 to upload data to the health check-in machine based on the ultrasonic height measurement.
  • the data of the health check-in machine based on the ultrasonic height measurement is stored in a part memory (for example, a USB flash drive), thereby facilitating data transmission and storage.
  • the internal power source 28, the VGA card 30, the main controller 32, the card reader 34, and the power supply holder 35 are mounted in a cavity formed by the table back case 16 and the table front case 7.
  • the internal power source 28, the VGA card 30, and the card reader 34 are all electrically coupled to the main controller 32.
  • the internal power source 28 is mounted on a power supply holder 35.
  • the internal power source 28 is a regulated power supply for providing a stable operating power to the main controller 32.
  • the VGA card 30 is also connected to the display 1 via a signal line for processing the display signal and transmitting it to the display 1 for display.
  • the card reader 34 is also electrically connected to the card reading panel 39.
  • the card reader 34 is configured to read the information of the user ID card placed on the card reading panel 39, and send the information of the user ID card to the main control.
  • the user 32 identifies the user.
  • the card reading panel 39 is a photoelectric sensing panel, and the information of the user ID card on the card reading panel 39 can be placed through the photo-inductor.
  • the speaker 29 and the heat dissipation fan 31 are mounted on the inner wall of the machine table rear door 20, and the speaker 29 is electrically connected to the main controller 32, and the heat dissipation fan 31 is electrically connected to the internal power source 28.
  • the power supply holder 35 An internal power source 28 and a Zener fuse 39 are mounted thereon.
  • the Zener fuse 39 is electrically connected to the internal power source 28 for accessing an external power source, and current protection is applied to the internal power source 28 to prevent excessive current.
  • the internal power supply 28 is burned.
  • the main controller 32 is used to measure the blood pressure value measured by the sphygmomanometer 9, the blood sugar level measured by the blood glucose meter 12, the blood oxygen level measured by the oximeter 13, and the electrocardiogram signal (electrocardiogram) measured by the electrocardiograph 27. Displayed on the display 1.
  • the print button ⁇ When the user presses the print button ⁇ to send to the printer 36 to print to form the user's health check report, it can also be sent to the health management platform through the external network connected by the network cable interface 22 for the doctor to manage the user's health.
  • FIG. 7 is a front view of a second functional machine of a health inspection integrated machine based on ultrasonic height measurement
  • FIG. 8 is a schematic diagram of the present invention based on ultrasonic waves
  • FIG. 9 is a schematic view showing the internal structure of a second functional machine of a health check-in machine based on ultrasonic height measurement; FIG. schematic diagram.
  • the second function machine 02 includes, but is not limited to, the base caster 41, the base 42, the iron plate 43, the cover 44, the pedal 45, the base front case 46, and the fixing portion 47.
  • the fat handle 48, the rear housing 49, the base bracket 50, the load cell 51, the microprocessor 52, the base rear door 53, the LED strip 54, the screw hole 55, and the jack 56 are measured.
  • the base casters 41 are mounted on the bottom of the base 42 for supporting the second functional machine 02, and the number of the casters 41 may be plural, for example, two or four or the like.
  • the base bracket 50 can be a steel frame or other support frame made of a hard material.
  • the front cover 46 of the base and the rear cover 49 of the base are coupled and sleeved on the base bracket 50.
  • the rear cover of the rear cover 49 of the base is provided with a rear door 53 of the base.
  • the repairer manually smashes the machine.
  • the microprocessor 52 can be serviced after the rear door 53 is mounted.
  • the microprocessor 52 is mounted on the base bracket 50 and is located in a cavity surrounded by the base front casing 46 and the base rear casing 49.
  • the load cell 51 is mounted between the iron plate 43 and the base 42.
  • the upper surface of the iron plate 43 is covered with a cover 44, and the pedal 45 is attached to the cover 44.
  • the pedal 45 is provided with an indication.
  • the load cell 51 is coupled to the microprocessor 52 for measuring user weight data and transmitting the user's weight data to the microprocessor 52.
  • the fixing portion 47 is mounted on the base front case 46, and the fixing portion 47 is used for placing a thermometer, which is an existing temperature measuring instrument and is connected to the microprocessor 52 through a wire. It is used to measure the user's body temperature data and send the user's body temperature data to the microprocessor 52.
  • the fat measuring handle 48 is installed in the middle position of the front shell 46 of the base, and is connected to the microprocessor 52 through a wire.
  • the fat handle 48 includes a stainless steel coil and a blocking coil, and is used for sensing the fat handle 48 of the human body.
  • the resistance value of the human body is sent to the microprocessor 52, and the microprocessor 52 calculates the fat content based on the body resistance value.
  • the LED strip 54 is disposed on the peripheral edge of the cover 44 for use in illuminating decoration.
  • the right side of the base bracket 50 is provided with two screw holes 55 for inserting two screws 38 (shown in FIG. 2) on the table bracket 8 of the first function machine 01, thereby The first function machine 01 and the second function machine 02 are coupled together.
  • the upper portion of the base bracket 50 is provided with two insertion holes 56 for inserting two latches 67 (shown in FIG. 10) of the third function machine 03, so that the second function machine 02 and the third function machine are enabled. 03 is connected as one.
  • FIG. 10 is a front view of a preferred embodiment of a third function machine of a health check-integrator based on ultrasonic height measurement
  • FIG. 11 is a schematic view of the present invention based on ultrasonic waves.
  • the third function machine 03 includes, but is not limited to, a fuselage upper cover 61, a fuselage rear case 62, a fuselage front case 63, a display screen 64, a display fixing frame 65, and a body bracket 66.
  • the fuselage upper cover 61 is disposed at the top end of the fuselage rear case 62 by a hinge, and the repairer hits the fuselage upper cover 61 to perform maintenance on the ultrasonic probe 71.
  • the fuselage front shell 63 and the fuselage rear shell 64 are sleeved on the fuselage bracket 66, and the fuselage front shell 63 and the fuselage rear shell 64 are integrally coupled by screws.
  • the display fixing frame 65 is fixed on the body bracket 66 and exposed to the front casing 63.
  • the display screen 64 is embedded in the display fixing frame 65.
  • the display screen 64 is electrically connected to the second function machine 02.
  • the microprocessor 52 of the second function machine 02 is connected to the main controller 32 of the first function machine 01 via built-in wires.
  • the outer surface of the display screen 64 is provided with a transparent protective film (not shown in Fig. 10) for protecting the display screen 64 from damage.
  • the display screen 64 is further configured to display advertisement information, and the advertisement information may be preset in a memory chip built in the microprocessor 52 of the second function machine 02, or may receive the external network through the network cable interface 22 of the first function machine. Advertising information.
  • the body bracket 66 supports and fixes the fuselage rear case 62, the fuselage front case 63, and the display fixing frame 65.
  • the two latches 67 are welded to the body bracket 66.
  • the ultrasonic probe case 8 is fixed to an upper portion of the front case 63 of the body for mounting the ultrasonic probe 71.
  • the ultrasonic probe 71 is a prior art ultrasonic measuring instrument for measuring the height, and the height data of the human body is measured by the propagation speed of the ultrasonic wave in the air and the difference between the emission and the reflection of the ultrasonic wave.
  • the ultrasonic probe 71 is electrically connected to the microprocessor 52 of the second function machine 02 for detecting the height data of the user and transmitting the height data to the microprocessor 52.
  • the microprocessor 52 is configured to display the user's height data, weight data, and fat content on the display screen 64.
  • the light transmission ring 69 is mounted on the top end of the front fuselage 63 of the fuselage, and the LED bulb 70 is mounted in the light transmission ring 69 for use in lighting decoration.
  • the rear side of the fuselage rear case 62 is provided with a fuselage rear door 72 for facilitating maintenance of the internal circuit of the third function machine 03.
  • the microprocessor 52 sets the user's body temperature data, body weight data, fat content, and height data to the main controller 32, and the main controller 32 sets the user's blood pressure value
  • Health check information such as blood glucose level, blood oxygen value, electrocardiogram, body temperature data, weight data, fat content and height data are sent to the printer 36 for printing to form a user's health check report
  • the main controller sets the user's health check information
  • the user's health check information can be sent to the health management platform through the external network connected to the network cable interface 22 of the first function machine, so that the doctor can manage the health status of the user.
  • the health check-in machine based on the ultrasonic height measuring body of the present invention can measure the blood pressure value, the blood sugar level, the blood oxygen value, the electrocardiogram condition, the height data, the body weight data, and the body fat content of the user, etc.
  • the health monitoring integrated machine of the utility model not only enables the user to self-print to form a health check report of the user, but also sends the physical condition information of the user to the health management platform through the external network, so as to provide the doctor with the health status of the user.
  • the health check-up machine based on the ultrasonic height measurement adopts the above technical solution, and achieves the following technical effects:
  • the body information such as the height data, the body weight data and the body fat content of the user can be automatically measured. It has the advantages of multi-functional integration, high integration and high degree of automation.
  • the detachable structure is easy to disassemble and transport, and it is convenient for maintenance. It can also be used for self-printing to form the user's health inspection report.

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Abstract

L'invention concerne une machine de contrôle de santé tout-en-un ayant une fonction de mesure de taille corporelle basée sur des ultrasons, comprenant une première machine fonctionnelle (01), une deuxième machine fonctionnelle (02), et une troisième machine fonctionnelle (03). La première machine fonctionnelle (01) est reliée à la deuxième machine fonctionnelle (02). La troisième machine fonctionnelle (03) est reliée à la deuxième machine fonctionnelle (02). La deuxième machine fonctionnelle (02) comprend une base (42), une plaque de fer (43), une plaque de recouvrement (44), un repose-pieds (45), un logement de siège de machine avant (46), un logement de siège de machine arrière (49), un cadre de support de siège de machine (50), un capteur de poids (51), et un microprocesseur (52). La troisième machine fonctionnelle (03) comprend un écran d'affichage (64). La troisième machine fonctionnelle (03) comprend un logement de corps de machine arrière (62), un logement de corps de machine avant (63), l'écran d'affichage (64), un cadre de fixation d'affichage (65), un cadre de support de corps de machine (66), une boîte de sonde ultrasonore (68), et une sonde ultrasonore (71). Le capteur de poids (51) est utilisé pour mesurer les données de poids corporel d'un utilisateur. La sonde ultrasonore (71) est utilisée pour mesurer les données de taille corporelle de l'utilisateur en transmettant des ondes ultrasonores. Le microprocesseur (52) est utilisé pour afficher les données de taille corporelle et les données de poids corporel de l'utilisateur sur l'écran d'affichage (64). La machine de contrôle de santé tout-en-un peut mesurer automatiquement les données de taille corporelle et les données de poids corporel d'un utilisateur, intègre une pluralité de fonctions, et présente une intégration élevée et un degré d'automatisation élevé.
PCT/CN2017/087844 2016-11-12 2017-06-10 Machine de contrôle de santé tout-en-un ayant une fonction de mesure de taille corporelle basée sur des ultrasons WO2018086346A1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201621217849.5U CN206434346U (zh) 2016-11-12 2016-11-12 基于超声波测身高的健康检查一体机
CN201621217849.5 2016-11-12

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Publication Number Publication Date
WO2018086346A1 true WO2018086346A1 (fr) 2018-05-17

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