Health management system and health management method

The health management system addresses the challenge of proving an individual's health status by using a connected health data measurement device to issue non-onset certificates, reducing concerns about infectious diseases and eliminating the need for personnel to conduct temperature measurements.

JP7690829B2Active Publication Date: 2025-06-11RICOH CO LTD
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Patent Information

Application Number
JP2021152012
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-09-17
Publication Date
2025-06-11
Estimated Expiration
2041-09-17

AI Technical Summary

Technical Problem

Existing health management systems lack a reliable method to prove an individual's health status to others, leading to concerns about infectious diseases and unnecessary personnel costs for temperature measurements.

Method used

A health management system that includes a health data measurement device connected to medical health devices, capable of reading a unique ID from an identification card, collecting health data, generating health management data, and issuing a non-onset certificate when it determines the individual has not developed an infectious disease.

Benefits of technology

Enables the reliable issuance of non-onset certificates, reducing concerns about infectious diseases and eliminating the need for personnel to conduct temperature measurements, thus enhancing health management efficiency and safety.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide a health management system and a health management method that issue a predisease certificate indicating that the person subject to inspection is not affected by an infectious disease yet.SOLUTION: In a health management system 1 comprising a health data measurement device and a health management server 16, a health data measurement device 100 comprises: a generation unit 52 for generating health management data; an onset determination unit 54 for determining whether or not the person subject to inspection has an infectious disease, on the basis of the health management data generated by the generation unit 52 and the past health management data corresponding to the inspection subject person ID acquired from the health management server; an issuance control unit 56 for issuing image data that pertains to a predisease certificate indicating that the inspection subject person is not affected by an infectious disease, when it is determined that the inspection subject person does not have an infectious disease; and a print control unit 64 for exercising control so that the image data pertaining to the predisease certificate is output to a printer unit 132 and the image data is printed to a recording medium.SELECTED DRAWING: Figure 4
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Description

Technical Field

[0001] The present invention relates to a health management system and a health management method.

Background Art

[0002] Conventionally, when a person meets another person during an epidemic of an infectious disease, there is a case where they worry whether the other person has contracted the infectious disease and is in a fever state, inducing a sense of uneasiness in each other. Therefore, in recent years, in scenes such as entering an office or entering a meeting room, for example, temperature measurement is carried out by a person in charge. In such cases, companies had to spend personnel costs and time arranging a person in charge. At this time, when the person entering the room self-declares the temperature measurement result to the person in charge, since no third party is involved during the temperature measurement, the reliability of the self-declaration was low. In addition, since there is no established means to disclose an individual's health status to the meeting partner, it has induced a sense of uneasiness. On the other hand, although there is already an invention regarding a system for managing personal health information, since it aims at personal health management, it did not have a function to prove the health status of an individual (oneself) to people around. That is, since personal health data is treated as personal information, only people such as the individual himself / herself, the supervisor of the company, and the person in charge of health management of the company were restricted to obtaining the health status of the individual.

[0003] <Scene of going out from the office> Conventionally, when an employee of a company goes out of the office, even if the employee himself / herself is in a normal temperature state, there is nothing to prove it. For this reason, there is a risk of infection from the other party for the person meeting at the destination, inducing a sense of uneasiness.

[0004] <Scene of receiving guests> Conventionally, in offices, exhibitions, theme parks, etc., in the scenes of entering the building or room, temperature measurement by a person in charge is carried out, or self-declaration by the guest is performed. Therefore, when measuring body temperature by the person in charge, it was necessary to spend personnel costs and time. In addition, there was no means to prove whether or not a guest had his / her body temperature measured, and there was a fear of infection from the other party among the visitors. In addition, in the case of self-reporting by guests, there was no proof of having been examined, and there was a fear of infection from the other party among the visitors, which induced a sense of uneasiness.

[0005] <Inside the office> Conventionally, within a company's office, the health status was reported to the supervisor by self-reporting of employees. Therefore, there was no means to prove whether or not an employee had his / her body temperature measured, and there was a fear of infection among employees, which induced a sense of uneasiness. Particularly, in a meeting that spans different departments of a company, there are cases where meetings are held with people who have no direct contact on a daily basis and know nothing about the health status of the meeting participants, and uneasiness about infection is induced among the visitors.

[0006] Patent Document 1 discloses that, for the purpose of providing a highly convenient health management system to users, an authentication device that executes an authentication process with an image forming apparatus requested for use by the user based on the user's identification information, a health data providing device that provides health data regarding the user when the authentication is successful, and an image forming apparatus that collects the health data and generates health management data indicating the health status of the user based on the collected health data, and the image forming apparatus supports health management by providing the health management data. However, in Patent Document 1, the purpose is personal health management, and it was not possible to disclose one's own health management information to others. Therefore, in Patent Document 1, there was a problem that one could not prove one's own health to the people around.

Summary of the Invention

Problems to be Solved by the Invention

[0007] One embodiment of the present invention has been made in view of the above, and its object is to issue a non-onset certificate indicating that the person to be examined has not developed an infectious disease.

Means for Solving the Problems

[0008] In order to solve the above problems, the invention according to claim 1 is a health management system including a health data measurement device to which a medical health device capable of measuring health data related to a person to be examined is connected, and a storage unit that stores the health data received from the health data measurement device. The health data measurement device includes a card reader that reads a unique person-to-be-examined ID from an identity card held by the person to be examined, a collection unit that collects health data specified by the person-to-be-examined ID of each person to be examined measured by the medical health device, a generation unit that generates health management data representing the health status of the person to be examined based on the health data collected by the collection unit, health management items, and the person-to-be-examined ID, an onset determination unit that determines whether or not the person to be examined has developed an infectious disease based on the health management data generated by the generation unit and past health management data corresponding to the person-to-be-examined ID obtained from the health management server, an issuance control unit that controls to issue image data and / or text data related to a non-onset certificate indicating that the person to be examined has not developed an infectious disease when it is determined by the onset determination unit that the person to be examined has not developed an infectious disease, a printer unit, and a printing control unit that outputs the image data and / or text data related to the non-onset certificate to the printer unit and controls to print the image data and / or text data on a recording medium.

Effects of the Invention

[0009] According to the present invention, it is possible to issue a non-onset certificate indicating that the person to be examined has not developed an infectious disease.

Brief Description of the Drawings

[0010]

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Embodiments for Carrying Out the Invention

[0011] Hereinafter, the present invention will be described in detail with reference to the embodiments shown in the drawings. The present invention has the following configuration in order to issue a non-onset certificate indicating that the person to be examined does not have an infectious disease. That is, the health management system of the present invention includes a health data measurement device to which a medical health device capable of measuring health data related to the person to be examined is connected, and a health management server having a storage unit that stores the health data received from the health data measurement device. The health management system is characterized in that the health data measurement device includes a card reader that reads a unique person-to-be-examined ID from the identification card held by the person to be examined, a collection unit that collects health data specified by the person-to-be-examined ID of each person to be examined measured by the medical health device, a generation unit that generates health management data representing the health status of the person to be examined based on the health data collected by the collection unit, the health management items, and the person-to-be-examined ID, an onset determination unit that determines whether or not the person to be examined has developed an infectious disease based on the health management data generated by the generation unit and the past health management data corresponding to the person-to-be-examined ID obtained from the health management server, an issuance control unit that controls to issue image data and / or text data related to a non-onset certificate indicating that the person to be examined has not developed an infectious disease when it is determined by the onset determination unit that the person to be examined has not developed an infectious disease, a printer unit, and a printing control unit that outputs the image data and / or text data related to the non-onset certificate to the printer unit and controls to print the image data and / or text data on a recording medium. By having the above configuration, it is possible to issue a non-onset certificate indicating that the person to be examined does not have an infectious disease. The features of the present invention described above will be explained in detail with reference to the following drawings. However, the components, types, combinations, shapes, relative arrangements, etc. described in this embodiment are merely illustrative examples and do not limit the scope of the present invention only to them without specific description. Regarding the features of the present invention described above, a detailed explanation will be given below with reference to the drawings.

[0012] <Configuration of Health Management System> FIG. 1 is a diagram showing the configuration of a health management system according to an embodiment of the present invention. As shown in FIG. 1, the health management system 1 includes a card reader 2a, a medical and health device 4, an attendance management server 6, an in-company system 8, a smartwatch 12, a health manager terminal 14, a health management server 16, an examinee terminal 21, and a health data measurement device 100. The card reader 2a reads a unique examinee ID from the identification card 22 held by the examinee 20 and outputs the examinee ID to the health data measurement device 100. When the health data measurement device 100 receives the examinee ID from the card reader 2a, it transmits the examinee ID and an authentication request to the attendance management server 6 and receives an authentication result from the attendance management server 6. Medical and health devices 4 such as a sphygmomanometer 4a, a body composition monitor 4b, a blood glucose meter 4c, and a thermometer 4d are connected thereto, and the health data measurement device 100 processes the health data obtained from these medical and health devices 4. The attendance management server 6 manages the working hours data related to each examinee 20. The in-company system 8 manages the job content of each employee (examinee). The examinee terminal 21 is a personal computer connected to the health data measurement device 100 via an external network N1, or a smartphone that can be carried by the examinee even when moving, and is operated by the examinee 20.

[0013] <Smartwatch> The smartwatch 12 is equipped with an optical sensor, a contact pressure sensor, an acceleration sensor, and a GPS sensor, and calculates health data based on the sensor data obtained from the human arm. The optical sensor irradiates the arm of the examinee 20 with LED light, receives the light reflected from the arm, and calculates blood pressure and pulse based on the received level of the reflected light. The contact pressure sensor is a sensor that detects the pressure of the human body part in contact, and enables the CPU to calculate blood pressure and pulse based on the sensor value. The acceleration sensor detects accelerations in, for example, three axial directions. The GPS sensor calculates the location information at the reception point based on the radio wave signals received from multiple GPS satellites.

[0014] The smartwatch 12 calculates blood pressure and pulse using an optical sensor, a contact pressure sensor, etc. Also, the smartwatch 12 calculates the activity amount from the acceleration sensor and the location information of the person being examined. From the statistical results using these multiple sensors, the sleep time and depth are measured. The smartwatch 12 displays the health data (blood pressure, pulse trend, activity amount, sleep time and depth, etc.) of the person being examined stored in the smartwatch 12 as a two-dimensional code on the smartwatch 12. Specifically, the smartwatch 12 calculates blood pressure by combining the measurement of the heart rate by an electrical signal and the measurement result of blood flow using an optical sensor. The smartwatch 12 has a light emitting part and a light receiving part. The light from the light emitting part hits the arm, and the light reflected from the blood vessels is detected by the light receiving part, and the blood pressure can be measured by optical calculation. Also, the smartwatch 12 can detect sleep based on the pulse and body movement, and calculate the sleep time and its depth. Since the smartwatch 12 can detect movement, it is also possible to calculate the activity amount.

[0015] Regarding the smartwatch 12, the configurations of the following patent documents can be applied. (1) Japanese Patent Application Laid-Open No. 2018-191785 The information display device includes a measurement data acquisition unit that acquires the measurement result of the blood pressure value during the sleep of the person being measured, a wake-up determination unit that determines that the person being measured has woken up, and a display control unit that causes the display unit to display the information indicating the measurement result acquired by the measurement data acquisition unit when the wake-up determination unit determines that the person being measured has woken up.

[0016] (2) Japanese Patent Application Laid-Open No. 2018-191787 A blood pressure sensor that continuously measures the blood pressure of a subject, a confirmation unit that checks whether the subject is wearing a treatment device used during the continuous blood pressure measurement when the start of the continuous blood pressure measurement is instructed, a measurement control unit that executes continuous blood pressure measurement by the blood pressure sensor when the wearing of the treatment device is confirmed by the confirmation unit, and a display unit that displays a guidance prompting the wearing of the treatment device when the wearing of the treatment device cannot be confirmed by the confirmation unit.

[0017] (3) Japanese Patent Application Laid-Open No. 2019-141405 A blood pressure measuring device includes a blood pressure measuring unit that measures the blood pressure of a subject, a precursor estimating unit that monitors the fluctuation of the blood pressure measured by the blood pressure measuring unit and estimates that the fluctuation of the blood pressure is a precursor of a blood pressure increase related to the onset of sleep apnea syndrome when the blood pressure continuously drops below a preset threshold value for a predetermined time or more, and a signal output unit that outputs a precursor notification signal to the outside of the device when the precursor is estimated by the precursor estimating unit.

[0018] (4) Japanese Patent Application Laid-Open No. 2014-223098 Acceleration measurement means for measuring acceleration associated with body movement

[0019] The health manager terminal 14 is a personal computer connected to the in-company network N3 and is operated by a health manager involved in the health management of the inspection target (employee). The health management server 16 is a computer server connected to the in-company network N3, acquires the health data of employees (inspection targets), and manages it in association with the inspection target ID. The health data measuring device 100 is a multifunction peripheral device, and for example, has functions such as a printer, a scanner, a copier, and a FAX in one unit.

[0020] The health data measurement device 100 is linked with the attendance management server 6 within the company, and can also obtain individual work details from work records. Therefore, in addition to the medical devices and health devices attached to the health data measurement device 100, past health examination information, and the daily health status measured by the smart watch 12, it is possible to establish the correlation between work status and health status from work load and working hours, and provide appropriate health support to the examinees. For example, if it is found that lack of sleep time is correlated with the length of working hours, it is possible to notify the examinees and their supervisors to shorten the working hours. Conventionally, multifunction devices and printers have been connected via a network, and usage rates of toner and supply units, notifications of replacement timing of these supplies, usage patterns of examinees (print volume, image area, color / monochrome information, use of staples, etc.) and environmental information are sent to servers installed in call centers or the like, and accumulated as big data. These big data are widely used in activities of the printer design department, failure prediction department, and other departments within the company. In this embodiment, it is characterized by using the server connected to these multifunction devices and printers via a network to accumulate the measured information in the server (health management server).

[0021] These pieces of information are accumulated in the health data measurement device 100 and the in-company health management server 16, and the health status of the examinees can be observed over time. Also, when the health management server 16 discovers an item that seems abnormal through continuous observation, it forces the measurement of the corresponding item when the examinee uses the health data measurement device 100. Moreover, not only the data from the health data measurement device 100 used by the examinees, but also the data received from each health data measurement device 100 connected to the network are accumulated in the health management server 16, enabling analysis using big data. Medical staff can check the big data accumulated in the health management server 16 to confirm individual sudden abnormalities, departmental characteristics of the company, regional disease epidemics, etc. Based on this information, medical staff can add items to prompt the measurement of the health data measurement device 100, or directly give instructions to the individual being examined or the person in charge of health management in the department where the health data measurement device 100 is installed. For example, the health management server 16 can take statistics on body temperature to confirm the distribution of fever patients whose body temperature is above a predetermined value, and by comparing them with work management information, it can identify areas where, for example, influenza is prevalent. The health data measurement device 100 can also print the measurement results on a recording medium and output them to the display unit 140a, which can be determined arbitrarily by the person being examined.

[0022] <Health data measurement device> FIG. 2 is a block diagram showing the hardware configuration of a health data measurement device according to an embodiment of the present invention. FIG. 2 is a hardware configuration diagram of an image forming apparatus (MFP) which is an example of the health data measurement device. As shown in FIG. 2, the health data measurement device 100 is constituted by an MFP, and includes a controller 110, a short-range communication circuit 120, an engine control unit 130, an operation panel 140, a network I / F 150, and a connection I / F unit 160. Among these, the controller 110 has a CPU 101 which is the main part of a computer, a system memory (MEM-P) 102, a north bridge (NB) 103, a south bridge (SB) 104, an ASIC (Application Specific Integrated Circuit) 106, a local memory (MEM-C) 107 which is a storage unit, an HDD controller 108, and an HD 109 which is a storage unit, and is configured to connect between the NB 103 and the ASIC 106 by an AGP (Accelerated Graphics Port) bus 121. Among these, the CPU 101 is a control unit that performs overall control of the health data measurement device 100. The NB 103 is a bridge for connecting the CPU 101 to the MEM-P 102, SB 104, and the AGP bus 121, and has a memory controller that controls reading and writing to the MEM-P 102, and a PCI (Peripheral Component Interconnect) master and an AGP target.

[0023] The MEM-P 102 consists of a ROM 102a which is a memory for storing programs and data for realizing each function of the controller 110, and a RAM 102b which is used as a memory for expanding programs and data and for drawing during memory printing. Note that the programs stored in the RAM 102b may be provided by recording them in an installable or executable file format on a computer-readable recording medium such as a CD-ROM, CD-R, or DVD. The SB 104 is a bridge for connecting the NB 103 to PCI devices and peripheral devices. The ASIC 106 is an IC (Integrated Circuit) for image processing applications that has hardware elements for image processing, and serves as a bridge for connecting the AGP bus 121, PCI bus 122, HDD controller 108, and MEM-C 107 respectively. This ASIC 106 consists of a PCI target and an AGP master, an arbiter (ARB) that forms the core of the ASIC 106, a memory controller that controls the MEM-C 107, a plurality of DMACs (Direct Memory Access Controllers) that perform operations such as rotation of image data by means of hardware logic, etc., and a PCI unit that performs data transfer via the PCI bus 122 between the scanner unit 131 and the printer unit 132. Note that a USB (Universal Serial Bus) interface and an IEEE 1394 (Institute of Electrical and Electronics Engineers 1394) interface may be connected to the ASIC 106.

[0024] MEM-C107 is local memory used as an image buffer for copying and a code buffer. HD109 is storage for accumulating image data, font data used during printing, and forms. HD109 controls the reading or writing of data to HD109 according to the control of CPU101. The AGP bus 121 is a bus interface for a graphics accelerator card proposed to speed up graphic processing. By directly accessing MEM-P102 with high throughput, the graphics accelerator card can be made faster. Also, the short-range communication circuit 120 is equipped with a short-range communication circuit 120a. The short-range communication circuit 120 is a communication circuit such as NFC or Bluetooth.

[0025] Furthermore, the engine control unit 130 is composed of a scanner unit 131 and a printer unit 132. Also, the operation panel 140 is composed of a display unit 140a such as a touch panel that displays current setting values, selection screens, etc. and receives inputs from the operator, and an operation unit 140b consisting of a numeric keypad that receives setting values of conditions related to image formation such as density setting conditions and a start key that receives a copy start instruction. The controller 110 controls the entire health data measurement device 100, for example, controls drawing, communication, inputs from the operation panel 140, etc. The scanner unit 131 or the printer unit 132 includes an image processing part such as error diffusion or gamma conversion.

[0026] Note that the health data measurement device 100 can sequentially switch and select the document box function, copy function, printer function, and facsimile function by using the application switching key on the operation panel 140. When the document box function is selected, it becomes the document box mode, when the copy function is selected, it becomes the copy mode, when the printer function is selected, it becomes the printer mode, and when the facsimile mode is selected, it becomes the facsimile mode. The network I / F 150 is an interface for data communication using the external network N1. The short-range communication circuit 120 and the network I / F 150 are electrically connected to the ASIC 106 via the PCI bus 122. The connection I / F unit 160 is an interface for performing USB communication with a USB device connected via a USB port. The controller 110 receives commands issued through the operation panel 140 or commands issued by an external device, and executes the processing of the job instructed by the commands.

[0027] The printer unit 132 includes an image forming unit 132a. The image forming unit 132a includes a photoreceptor (latent image carrier), an optical writing unit that forms an electrostatic latent image on the photoreceptor, a developing unit that supplies toner to the electrostatic latent image on the photoreceptor for visualization, a transfer unit that transfers the toner image on the photoreceptor to a conveyed recording medium, a cleaning unit that removes the toner remaining on the photoreceptor after transfer, a fixing unit that fixes the toner on the recording medium, and the like. In the developing unit of the color image forming apparatus, a yellow (Y) developing device, a cyan (C) developing device, a magenta (M) developing device, and a black (K) developing device are provided for each toner used, and a toner bottle is used as a means for replenishing each developing device with toner of each color.

[0028] <Hardware Configuration of Health Management Server> FIG. 3 is a hardware configuration diagram of a health management server provided in a health management system according to an embodiment of the present invention. Here, the hardware configuration of a PC that is a health management server will be described. As shown in FIG. 3, the health management server 16 is constructed by a computer and, as shown in FIG. 3, includes a CPU 201, a ROM 202, a RAM 203, an HD 204, an HDD (Hard Disk Drive) controller 205, a display 206, an external device connection I / F (Interface) 208, a network I / F 209, a bus line 210, a keyboard 211, a pointing device 212, a DVD-RW (Digital Versatile Disk Rewritable) drive 214, and a media I / F 216. Among these, the CPU 201 controls the operations of the entire PCs 80 and 90. The ROM 202 stores programs used for driving the CPU 201 such as the IPL. The RAM 203 is used as a work area for the CPU 201. The HD 204 stores various data such as programs. The HDD controller 205 controls the reading or writing of various data to and from the HD 204 according to the control of the CPU 201.

[0029] The display 206 displays various information such as a cursor, a menu, a window, characters, or an image. The external device connection I / F 208 is an interface for connecting various external devices. Examples of the external devices in this case include a USB (Universal Serial Bus) memory and a printer. The network I / F 209 is an interface for performing data communication using the communication network N. The bus line 210 is an address bus, a data bus, etc. for electrically connecting the components such as the CPU 201 shown in FIG. 3. In addition, the keyboard 211 is a type of input means having a plurality of keys for inputting characters, numerical values, various instructions, and the like. The pointing device 212 is a type of input means for selecting and executing various instructions, selecting a processing target, moving a cursor, and the like. The DVD-RW drive 214 controls reading or writing of various data with respect to the DVD-RW 213 as an example of a removable recording medium. Note that it is not limited to DVD-RW, and it may be DVD-R or the like. The media I / F 216 controls reading or writing (storage) of data with respect to the recording medium 215 such as a flash memory.

[0030] <Functional Configuration of Health Management System> FIG. 4 is a block diagram showing a functional configuration of a health management system according to an embodiment of the present invention. The health management system 1 includes a medical health device 4, a health data measurement device 100, a smart watch 12, a health management server 16, a health manager terminal 14, an attendance management server 6, an examinee terminal 21, an identification card 22, a network N1, and a network N3. The health management system 1 includes a health data measurement device 100 and a health management server 16. The health data measurement device 100 has a medical health device 4 capable of measuring health data related to the body of an examinee. The health management server 16 has a storage unit 16a for storing health data received from the health data measurement device 100.

[0031] <Medical Health Device> The medical health device 4 measures health data related to the body of an examinee. The medical health device 4 has a sphygmomanometer 4a, a body composition monitor 4b, a blood glucose meter 4c, a thermometer 4d, etc. connected thereto, and the health data measurement device 100 processes the health data obtained from these medical health devices 4.

[0032] <Health Data Measurement Device> The health data measurement device 100 includes a storage unit 58, a scanner unit 131, a display unit 140a, and a printer unit 132. The collection unit 50 collects the health data of the subject to be examined and the items representing the attributes of the health data from the medical and health device 4. When the display screen of the smartwatch 12 is placed on the reading surface of the scanner unit 131, the scanner unit 131 reads the two-dimensional code displayed on the smartwatch 12. In addition, the scanner unit 131 reads face image data from the face image included on the surface of the identity card. The conversion unit 50a converts the two-dimensional code read by the scanner unit 131 from the smartwatch 12 into health data. The display unit 140a displays a message prompting the subject to be examined to perform measurements for specific items. The storage unit 58 stores the operation manual related to the medical and health device 4. The printer unit 132 prints and outputs the image data and / or text data related to the non-disease certificate on a recording medium.

[0033] Furthermore, the health data measurement device 100 includes a card reader 2a, a collection unit 50, a generation unit 52, an onset determination unit 54, an issuance control unit 56, a storage unit 58, an email issuance unit 60, a timer unit 62, a print control unit 64, a scanner unit 131, and a printer unit 132. The card reader 2a reads the unique subject ID to be examined from the identity card held by the subject to be examined. The collection unit 50 collects the health data specified by the subject ID of each subject to be examined measured by the medical and health device 4. The generation unit 52 generates health management data representing the health status of the subject to be examined based on the health data collected by the collection unit 50, the health management items, and the subject ID to be examined. The onset determination unit 54 determines whether the subject to be examined has developed an infectious disease based on the health management data generated by the generation unit 52 and the past health management data corresponding to the subject ID to be examined obtained from the health management server 16. When the onset determination unit 54 determines that the subject under examination has not developed an infectious disease, the issuance control unit 56 controls to issue image data and / or text data related to a non-onset certificate indicating that the subject under examination has not developed an infectious disease. The print control unit 64 outputs the image data and / or text data related to the non-onset certificate to the printer unit 132 and controls to print the image data on a recording medium.

[0034] The storage unit 58 stores, in association with the subject ID, the email address related to the subject terminal 21 held by the subject under examination and the email address related to the terminal of the supervisor of the subject under examination. The email issuance unit 60 acquires the email address corresponding to the subject ID from the storage unit 58 and transmits an email including the image data and / or text data related to the non-onset certificate to the email address.

[0035] Based on the body temperature measurement data included in the health management data generated by the generation unit 52 and the past body temperature measurement data corresponding to the subject ID acquired from the health management server 16, when the body temperature measurement data is lower than the reference body temperature T th °C, and when M pieces of data out of the past N days are not in the health management server 16, the onset determination unit 54 determines that the subject under examination has not developed an infectious disease.

[0036] Based on the body temperature measurement data included in the health management data generated by the generation unit 52 and the past body temperature measurement data corresponding to the subject ID acquired from the health management server 16, when the body temperature measurement data is lower than the reference body temperature T th °C, the differential body temperature ΔT is calculated by subtracting the average body temperature from the body temperature measurement data T, and when the differential body temperature ΔT is smaller than the reference differential body temperature ΔT th °C, the onset determination unit 54 determines that the subject under examination has not developed an infectious disease.

[0037] The issuance control unit 56 controls to read face image data from the face image included on the surface of the identification card by the scanner unit 131, and add the face image data to the image data and / or text data related to the non-disease certificate.

[0038] The timer unit 62 measures the current date, month, year, and time, and outputs date and time data. The issuance control unit 56 uses the current date and time data acquired from the timer unit 62 as a timestamp, calculates an expiration date obtained by adding a predetermined period to the timestamp, and controls to add the timestamp and the expiration date to the image data and / or text data related to the non-disease certificate.

[0039] The card writer 2b records data on the IC chip provided on the identification card. The issuance control unit 56 controls the card writer 2b to record the image data and / or text data related to the non-disease certificate on the IC chip provided on the identification card.

[0040] The issuance control unit 56 uses the current date and time data acquired from the timer unit 62 as a timestamp, calculates an expiration date obtained by adding a predetermined period to the timestamp, and controls to add the timestamp and the expiration date to the image data and / or text data related to the non-disease certificate.

[0041] The health data measurement device 100 is characterized in that it is a multifunction device equipped with a function of printing the non-disease certificate on a recording medium.

[0042] <Health management server> The health management server 16 includes a storage unit 16a and a control unit 16e. The storage unit 16a stores the health data received from the health data measurement device 100. When the control unit 16e receives the body temperature measurement data corresponding to the test subject ID from the health data measurement device 100, the control unit 16e controls to record the body temperature measurement data corresponding to the test subject ID in the storage unit 16a. When the control unit 16e is requested by the health data measurement device 100 to record the body temperature measurement data corresponding to the ID of the person to be examined, the control unit 16e acquires the body temperature measurement data corresponding to the ID of the person to be examined from the storage unit 16a, and controls to transmit the body temperature measurement data corresponding to the ID of the person to be examined to the health data measurement device 100. When the control unit 16e receives the issuance date and time data of the certificate of no disease corresponding to the ID of the person to be examined from the health data measurement device 100, the control unit 16e controls to record the issuance date and time data of the certificate of no disease corresponding to the ID of the person to be examined in the storage unit 16a.

[0043] <Attendance management server> The attendance management server 6 manages the working hours of the person to be examined.

[0044] The health management system 1 includes a collection unit 50 including a smartwatch 12, a scanner unit 131, and a conversion unit 50a. The smartwatch 12 stores the health data of the person to be examined and displays the health data as a two-dimensional code. The smartwatch 12 has a function of reading, with a scanner, the health data (such as blood pressure, pulse trend, activity level, sleep time / depth, etc.) of the person to be examined stored in the smartwatch 12 and displayed as a two-dimensional code on the smartwatch 12. Note that the smartwatch 12 calculates blood pressure and pulse using an optical sensor, a contact pressure sensor, etc. Also, the activity level is calculated from an acceleration sensor and the position information of the person to be examined. The sleep time and depth are measured from the statistical results using these multiple sensors. The thermometer 4d measures the body temperature of the person to be examined non - contact. In recent years, devices that can measure body temperature non - contact, such as infrared thermography, have become common. For example, fever checks are also carried out at airports. By equipping the health data measurement device 100 with a non - contact thermometer 4d, the body temperature information of the person to be examined who has logged in to the health data measurement device 100 can be automatically obtained. Of course, a commonly used contact - type thermometer may also be equipped in the health data measurement device 100. As a method for measuring the body surface temperature of the human body in real time, for example, infrared thermography is described at the following URL. http: / / www.avio.co.jp / products / infrared / pandemic-solution /

[0045] <Health manager terminal> The health manager terminal 14 is a personal computer operated by the health manager.

[0046] The health management server 16 acquires the health data of the person to be examined and manages the health data in association with the examinee ID.

[0047] The health manager takes measures against the notification and urges those who have not taken the measurement to do so. In addition, the health manager has the right to view their own health data, can always monitor the health status of employees, and promote health maintenance.

[0048] Each function of the embodiment described above can be realized by one or more processing circuits. Here, the "processing circuit" in this specification refers to a processor programmed to execute each function by software like a processor implemented by an electronic circuit, an ASIC (Application Specific Integrated Circuit) designed to execute each function described above, a DSP (digital signal processor), an FPGA (field programmable gate array), and devices such as conventional circuit modules.

[0049] <Basic operation of the health management system> The health management system 1 includes a health data measurement device 100 to which a medical health device 4 capable of measuring health data related to the person to be examined is connected, and a health management server 16 having a storage unit 16a for storing the health data received from the health data measurement device 100. Note that the health data measurement device 100 may be a multifunction device equipped with a function of printing an unconfirmed illness certificate on a recording medium. The health management server 16 includes a control unit 16e and controls to record the body temperature measurement data corresponding to the examinee ID in the storage unit 16a when receiving the body temperature measurement data corresponding to the examinee ID from the health data measurement device 100. In addition, when the control unit 16e is requested to record the body temperature measurement data corresponding to the examinee ID from the health data measurement device 100, the control unit 16e acquires the body temperature measurement data corresponding to the examinee ID from the storage unit 16a and controls to transmit the body temperature measurement data corresponding to the examinee ID to the health data measurement device 100. When the control unit 16e receives the issuance date and time data of the unconfirmed illness certificate corresponding to the examinee ID from the health data measurement device 100, the control unit 16e controls to record the issuance date and time data of the unconfirmed illness certificate corresponding to the examinee ID in the storage unit 16a.

[0050] In the health data measurement device 100, the card reader 2a reads a unique examinee ID from the identification card 22 held by the examinee. The collection unit 50 collects the health data specified by the examinee ID of each examinee measured by the medical and health device 4. The generation unit 52 generates health management data representing the health status of the examinee based on the health data collected by the collection unit 50, the health management items, and the examinee ID. The health management data may be configured as follows.

[0051]

Table 1

[0052] As shown in Table 1, the health management data is described with health management items, measurement date, numerical value, standard value, and evaluation level in the horizontal direction, and blood pressure, weight, body fat percentage, blood glucose level, pulse, amount of exercise, amount of sleep, and body temperature in the vertical direction.

[0053] The onset determination unit 54 determines whether the person to be examined has developed an infectious disease based on the health management data generated by the generation unit 52 and the past health management data corresponding to the ID of the person to be examined obtained from the health management server 16. When the onset determination unit 54 determines that the person to be examined has not developed an infectious disease, the issuance control unit 56 controls to issue image data and / or text data related to a non-onset certificate indicating that the person to be examined has not developed an infectious disease. The printing control unit outputs the image data and / or text data related to the non-onset certificate to the printer unit 132 and controls to print the image data on a recording medium. Thereby, a non-onset certificate indicating that the person to be examined has not developed an infectious disease can be issued, so that other persons who have visually confirmed can safely meet with the person to be examined, and the spread of infection can be prevented in advance.

[0054] <Detailed operation of the health management system> FIG. 5 is a flowchart showing the detailed operation of the health management system according to an embodiment of the present invention. In step S10, the health data measurement device 100 performs authentication of the person to be examined. First, the person to be examined performs an operation of holding his / her identification card 22 in front of the card reader 2a. The card reader 2a transmits the ID of the person to be examined read from the identification card 22 to the health management server 16 via the health data measurement device 100 and receives the authentication of the person to be examined by the health management server 16. Here, the control unit 16e of the health management server 16 performs an authentication process by confirming whether the ID of the person to be examined is registered in the storage unit 16a, and permits login if the person is a legitimate employee. Note that prior to the authentication process, a password may be input from the operation unit 140b, and this password may be further transmitted to the health management server 16 to confirm whether the combination of the ID of the person to be examined and the password is registered in the storage unit 16a. When the authentication process is completed, the communication between the health data measurement device 100 and the health management server 16 becomes a connected state.

[0055] In step S15, the health data measurement device 100 accesses the health management server 16 arranged on the network and checks whether there is a past body temperature measurement record corresponding to the examinee ID. Here, if the health data measurement device 100 can confirm that there is a past body temperature measurement record corresponding to the examinee ID in the health management server 16, it proceeds to step S17. On the other hand, if the health data measurement device 100 can confirm that there is no past body temperature measurement record corresponding to the examinee ID in the health management server 16, it proceeds to step S25. In step S17, the health data measurement device 100 accesses the health management server 16, requests the health data of the past body temperature measurement record corresponding to the examinee ID and the issue date data of the non-onset certificate, and acquires these data from the health management server 16.

[0056] In step S20, the health data measurement device 100 determines whether it is within t 1 hours (assuming approximately 5 to 6 hours, for example) from the previous body temperature measurement based on the body temperature measurement data and the body temperature measurement date and time included in the health data acquired from the health management server 16 in step S17. Here, if the health data measurement device 100 is within t 1 hours (Yes), if the certificate has been issued, it stops the body temperature measurement and proceeds to step S50a. On the other hand, if it has been more than t 1 hours (No), since a body temperature measurement is necessary, it proceeds to step S23.

[0057] In step S23, the health data measurement device 100 displays, on the display unit 140a, a screen 310 including text data "It has been ○○ hours since the temperature check. Measure your body temperature." (Fig. 6) as a message prompting the body temperature measurement. In step S25, the health data measurement device 100 starts the body temperature measurement. At this time, using the thermometer 4d, the body temperature of the examinee is measured non - contact, and the collection unit 50 acquires the body temperature measurement data which is the result of the body temperature measurement.

[0058] In step S30, the onset determination unit 54 of the health data measurement device 100 determines whether the body temperature measurement result is higher than the reference body temperature T1 °C. The onset determination unit 54 determines that when the body temperature measurement result is higher than the reference body temperature T th °C (for example, T th is 37.5 °C), it is regarded as fever and it is determined that there is a possibility of developing an infectious disease, and the process proceeds to step S65. On the other hand, when the body temperature measurement result is lower than the reference body temperature T th °C (No), the process proceeds to step S35.

[0059] Even if it is not regarded as fever, if it is higher than the normal body temperature, the development of an infectious disease can also be considered. Therefore, in step S35, the onset determination unit 54 checks whether data for M times (for example, M = 3 to 4) out of the past N days (for example, N = 7) is in the health management server 16 (assuming 3 or 4 times in the past week). When the onset determination unit 54 determines that data for M times out of the past N days is not in the health management server 16 (No), the process proceeds to step S60. On the other hand, when data for M times out of the past N days is in the health management server 16 (Yes), the process proceeds to step S40. In step S40, the onset determination unit 54 calculates the average body temperature Ta and the differential body temperature ΔT. First, for the average body temperature Ta, the onset determination unit 54 calculates the average body temperature Ta according to Equation (1) based on the body temperatures (T 1 ~T M ) for M times out of the past N days. Ta = (T 1 + T 2 + ··· + T M ) / M (1) Furthermore, for the differential body temperature ΔT, the onset determination unit 54 calculates the differential body temperature ΔT by subtracting the average body temperature Ta (normal body temperature) from the body temperature measurement result T according to Equation (2). T - Ta = ΔT (2)

[0060] In step S45, the onset determination unit 54 determines whether the differential body temperature ΔT is the reference differential body temperature ΔTth Determine whether it is higher than Here, the onset determination unit 54 determines that when the differential body temperature ΔT is higher than the reference differential body temperature ΔT th ℃ (Yes), it is determined that there is a possibility of onset of an infectious disease, and the process proceeds to step S65. On the other hand, when the differential body temperature ΔT is lower than the reference differential body temperature ΔT th ℃ (No), the onset determination unit 54 determines that there is no possibility of onset of an infectious disease, and the process proceeds to step S55.

[0061] <Certificate Issuance> In step S50a, the issuance control unit 56 displays, on the display unit 140a, a screen 320 (FIG. 7) including buttons for selecting a transition to printing, copying, and faxing as a screen including selection buttons. In step S50b, since the non-onset certificate has already been issued several hours ago, the issuance control unit 56 does not issue the non-onset certificate this time.

[0062] In step S55, the issuance control unit 56 issues a non-onset certificate (FIG. 11). The print control unit 64 outputs image data and / or text data related to the non-onset certificate to the printer unit 132 and controls to print the image data on a recording medium. As a result, the image data including the non-onset certificate data can be printed on the recording medium. Thereby, a non-onset certificate indicating that the person to be examined has not developed an infectious disease can be issued, so that other persons who have visually confirmed can safely meet with the person to be examined, and the spread of infection can be prevented in advance.

[0063] The email issuance unit 60 acquires the email address corresponding to the examinee ID from the storage unit 58 and transmits an email including the image data (FIG. 11) and / or text data related to the non-onset certificate to the email address. As a result, the examinee terminal 21 held by the examinee can receive an email including the image data and / or text data related to the non-onset certificate.

[0064] As a result, image data and / or text data related to a non-onset certificate indicating that the person to be examined does not have an infectious disease can be presented on the screen of the terminal 21 of the person to be examined. Therefore, other persons who have visually confirmed can safely meet with the person to be examined, and the spread of infection can be prevented in advance. At this time, the issuance control unit 56 acquires current year, month, and day data from the timer unit 62, adds the person-to-be-examined ID to the year, month, and day data of the issued non-onset certificate, and transmits it to the health management server 16. In response to this, the health management server 16 records the year, month, and day data of the issued non-onset certificate corresponding to the person-to-be-examined ID in the storage unit 16a.

[0065] In step S60a, the issuance control unit 56 displays a message prompting regular body temperature measurement on the display unit 140a. In step S60b, the issuance control unit 56 issues a non-onset certificate. The print control unit 64 outputs image data and / or text data related to the non-onset certificate to the printer unit 132, and controls to print the image data on a recording medium. The email issuance unit 60 acquires the email address corresponding to the person-to-be-examined ID from the storage unit 58, and transmits an email including the image data (Fig. 11) and / or text data related to the non-onset certificate to the email address. At this time, the person-to-be-examined ID is added to the year, month, and day data of the issued non-onset certificate, and it is transmitted to the health management server 16. In response to this, the health management server 16 records the year, month, and day data of the issued non-onset certificate corresponding to the person-to-be-examined ID in the storage unit 16a. However, since there is no comparison with past body temperature measurement results and the reliability is lower compared to step S55, it is also possible to prompt the person to be examined to confirm the body temperature trend in the future, such as by prompting regular body temperature measurement.

[0066] The issuance control unit 56 controls to read face image data from the face image included on the surface of the identification card 22 by the scanner unit 131 and add the face image data to the image data and / or text data related to the non-disease certificate. As a result, it is possible to issue the image data and / or text data related to the non-disease certificate to which the face image data of the person to be examined is added. The issuance control unit 56 uses the current date and time data acquired from the timer unit 62 as a timestamp, calculates an expiration date obtained by adding a predetermined period to the timestamp, and controls to add the timestamp and the expiration date to the image data and / or text data related to the non-disease certificate. As a result, it is possible to issue the image data and / or text data related to the non-disease certificate to which the expiration date is added. The issuance control unit 56 uses the current date and time data acquired from the timer unit 62 as a timestamp, calculates an expiration date obtained by adding a predetermined period to the timestamp, and controls to add the timestamp and the expiration date to the image data and / or text data related to the non-disease certificate. As a result, it is possible to add the timestamp and the expiration date to the image data and / or text data related to the non-disease certificate. The issuance control unit 56 controls the card writer 2b to record the image data and / or text data related to the non-disease certificate on the IC chip provided in the identification card. As a result, it is possible to record the image data and / or text data related to the non-disease certificate on the IC chip provided in the identification card.

[0067] In step S65a, the email issuance unit 60 issues an email (Fig. 9) indicating that fever has been confirmed. In step S65a, the email issuance unit 60 transmits an email 340 addressed to the email addresses of the supervisor of the person to be examined and the person in charge of health management by the health management device automatic transmission function. As specific content of the e-mail 340, it is preferable that it includes "Title: Fever Confirmation", "Body: ", "Employee No. ○○○", "Name: ~~", and further "Fever has been confirmed. Please go home and see a doctor." In step S65b, the issuance control unit 56 determines that there is a possibility of developing an infectious disease, and prompts the person to be examined to go home and visit a medical facility. Also, if it is an office, it contacts the supervisor and the person in charge of health management. At this time, the date and time data determined to have a possibility of developing an infectious disease is added with the examinee ID and transmitted to the health management server 16. The health management server 16 records the date and time data determined to have a possibility of developing an infectious disease corresponding to the examinee ID in the storage unit 16a.

[0068] <Message prompting temperature measurement> FIG. 6 is a screen used in a scene of the operation of the health management system according to an embodiment of the present invention, and is an explanatory diagram showing a message prompting temperature measurement. The health data measurement device 100 displays, on the display unit 140a, a screen 310 including text data "It has been ○○ hours since the temperature was measured. Measure your body temperature." as a message prompting temperature measurement.

[0069] <Screen including selection buttons> FIG. 7 is a screen used in a scene of the operation of the health management system according to an embodiment of the present invention, and is an explanatory diagram showing buttons for selecting transfer to printing, copying, and FAX. FIG. 7 is a screen 320 including buttons for selecting transfer to printing, copying, and FAX, which is displayed on the display unit 140a in step S50a and includes selection buttons.

[0070] <Message prompting regular temperature measurement> FIG. 8 is a screen used in a scene of the operation of the health management system according to an embodiment of the present invention, and is an explanatory diagram showing a message prompting regular temperature measurement. FIG. 8 is a message prompting regular body temperature measurement and displayed on the display unit 140a in step S60a, and is a screen 330 including text data of "Please measure your body temperature every ○○ hours."

[0071] <Email for fever confirmation> FIG. 9 shows the content of an email used in a scene of the operation of the health management system according to an embodiment of the present invention, and is an explanatory diagram showing fever confirmation. FIG. 9 is an email 340 sent in step S65a to the email addresses of the supervisor of the person to be examined and the person in charge of health management by the automatic email sending function of the health management device. Specific contents of the email 340 preferably include "Title: Fever Confirmation", "Body: ", "Employee No. ○○○", "Name: ~~", and further "Fever has been confirmed. Please go home and see a doctor."

[0072] <Message prompting going home and seeing a doctor> FIG. 10 is a screen used in a scene of the operation of the health management system according to an embodiment of the present invention, and is an explanatory diagram showing a message prompting regular body temperature measurement. FIG. 10 is a screen 350 including text data of "You have a fever. Please go home and see a doctor." as a message prompting going home and seeing a doctor and displayed on the display unit 140a in step S65b.

[0073] <Certificate of no onset> FIG. 11 shows an example of a certificate of no onset issued by the health management system according to an embodiment of the present invention. FIG. 11 shows a certificate of no onset 360, which describes "Employee No. ○○○", "Name ", "Physical condition confirmed", the date and time related to the measurement as "○○ year △ month ◇ day 9:30", and "Expiration date ××". Note that an email including the certificate of no onset containing the above content may be sent to the email address of the terminal 21 of the person to be examined.

[0074] <Summary of the Operations and Effects of the Example Modes of the Present Embodiment> <First Aspect> The health management system 1 of this aspect includes a health data measurement device 100 to which a medical and health device 4 capable of measuring health data related to an examinee is connected, and a health management server 16 having a storage unit 16a for storing the health data received from the health data measurement device 100. The health management system 1 is characterized in that the health data measurement device 100 includes a card reader 2a for reading a unique examinee ID from an identification card 22 held by the examinee, a collection unit 50 for collecting health data specified by the examinee ID of each examinee measured by the medical and health device 4, a generation unit 52 for generating health management data representing the health status of the examinee based on the health data collected by the collection unit 50, the health management items, and the examinee ID, an onset determination unit 54 for determining whether the examinee has developed an infectious disease based on the health management data generated by the generation unit 52 and the past health management data corresponding to the examinee ID obtained from the health management server 16, an issuance control unit 56 for controlling to issue image data and / or text data related to a non-onset certificate indicating that the examinee has not developed an infectious disease when it is determined by the onset determination unit 54 that the examinee has not developed an infectious disease, a printer unit 132, and a printing control unit for outputting the image data and / or text data related to the non-onset certificate to the printer unit 132 and controlling to print the image data and / or text data on a recording medium. According to this aspect, when it is determined based on the health management data collected from the examinee and the past health management data that the examinee has not developed an infectious disease, the issuance control unit 56 can issue image data and / or text data related to a non-onset certificate indicating that the examinee has not developed an infectious disease. Furthermore, since the printing control unit 64 outputs the image data and / or text data related to the non-onset certificate to the printer unit 132 and controls to print the image data and / or text data on a recording medium, the image data and / or text data related to the non-onset certificate can be printed on the recording medium. As a result, a non-onset certificate indicating that the person to be examined does not have an infectious disease can be issued, so that other persons who have visually confirmed can meet the person to be examined with confidence, and the spread of infection can be prevented in advance. In addition, in a meeting at a place outside, the meeting can be advanced without inducing a sense of uneasiness in the other party who has visually confirmed the non-onset certificate.

[0075] <Second Aspect> The health data measurement device 100 of this aspect is characterized by including a storage unit 58 that stores the email address related to the examinee terminal 21 held by the person to be examined in association with the examinee ID, and an email issuing unit 60 that acquires the email address corresponding to the examinee ID from the storage unit 58 and transmits an email including image data and / or text data related to the non-onset certificate to the email address. According to this aspect, since the email issuing unit 60 acquires the email address corresponding to the examinee ID from the storage unit 58 and transmits an email including image data and / or text data related to the non-onset certificate to the email address, the examinee terminal 21 held by the person to be examined can receive an email including image data and / or text data related to the non-onset certificate. As a result, the image data and / or text data related to the non-onset certificate indicating that the person to be examined does not have an infectious disease can be presented on the screen of the examinee terminal 21, so that other persons who have visually confirmed can meet the person to be examined with confidence, and the spread of infection can be prevented in advance.

[0076] <Third Aspect> The onset determination unit 54 of this aspect is based on the body temperature measurement data included in the health management data generated by the generation unit 52 and the past body temperature measurement data corresponding to the examinee ID acquired from the health management server 16. When the body temperature measurement data is lower than the reference body temperature T th ℃, when M times of data out of the past N days are not available in the health management server 16, it is determined that the person to be examined does not have an infectious disease. According to this aspect, the onset determination unit 54 is based on the body temperature measurement data included in the health management data generated by the generation unit 52 and the past body temperature measurement data corresponding to the test subject ID acquired from the health management server 16. When the body temperature measurement data is lower than the reference body temperature T th ℃, when M data out of the past N days are not available in the health management server 16, it can be determined that the test subject has not developed an infectious disease.

[0077] <Fourth Aspect> The onset determination unit 54 of this aspect is based on the body temperature measurement data included in the health management data generated by the generation unit 52 and the past body temperature measurement data corresponding to the test subject ID acquired from the health management server 16. When the body temperature measurement data is lower than the reference body temperature T th ℃, the average body temperature is subtracted from the body temperature measurement data T to calculate the differential body temperature ΔT. When the differential body temperature ΔT is smaller than the reference differential body temperature ΔT th ℃, it is characterized in that it is determined that the test subject has not developed an infectious disease. According to this aspect, the onset determination unit 54 is based on the body temperature measurement data included in the health management data generated by the generation unit 52 and the past body temperature measurement data corresponding to the test subject ID acquired from the health management server 16. When the body temperature measurement data is lower than the reference body temperature T th ℃, the average body temperature is subtracted from the body temperature measurement data T to calculate the differential body temperature ΔT. When the differential body temperature ΔT is smaller than the reference differential body temperature ΔT th ℃, it can be determined that the test subject has not developed an infectious disease.

[0078] <Fifth Aspect> The health data measurement device 100 of this aspect includes a scanner unit 131, and the issuance control unit 56 controls to read face image data from the face image included on the surface of the identification card by the scanner unit 131 and add the face image data to the image data and / or text data related to the non-onset certificate. According to this aspect, the issuance control unit 56 reads face image data from the face image included on the surface of the identification card 22 by the scanner unit 131, and controls to add the face image data to the image data and / or text data related to the non-onset certificate, so that the image data and / or text data related to the non-onset certificate with the face image data of the person to be examined added thereto can be issued. Thereby, since the image data and / or text data related to the non-onset certificate with the face image data of the person to be examined added thereto can be presented, other persons who visually confirm the face image of the person to be examined can safely meet with the person to be examined, and the spread of infection can be prevented in advance.

[0079] <Aspect 6> The health data measurement device 100 of this aspect includes a timer unit 62. The issuance control unit 56 uses the current date and time data acquired from the timer unit 62 as a time stamp, calculates an expiration date obtained by adding a predetermined period to the time stamp, and controls to add the time stamp and the expiration date to the image data and / or text data related to the non-onset certificate, which is characterized in that. According to this aspect, the issuance control unit 56 uses the current date and time data acquired from the timer unit 62 as a time stamp, calculates an expiration date obtained by adding a predetermined period to the time stamp, and controls to add the time stamp and the expiration date to the image data and / or text data related to the non-onset certificate, so that the image data and / or text data related to the non-onset certificate with the expiration date added thereto can be issued. Thereby, since a non-onset certificate with an added expiration date indicating that the person to be examined has not developed an infectious disease can be presented, other persons who visually confirm it can safely meet with the person to be examined, and the spread of infection can be prevented in advance.

[0080] <Aspect 7> The health data measurement device 100 of this aspect includes a timer unit 62, and the issuance control unit 56 uses the current date and time data acquired from the timer unit 62 as a timestamp, calculates an expiration date obtained by adding a predetermined period to the timestamp, and controls to add the timestamp and the expiration date to the image data and / or text data related to the non-onset certificate. According to this aspect, the issuance control unit 56 uses the current date and time data acquired from the timer unit 62 as a timestamp, calculates an expiration date obtained by adding a predetermined period to the timestamp, and by controlling to add the timestamp and the expiration date to the image data and / or text data related to the non-onset certificate, the timestamp and the expiration date can be added to the image data and / or text data related to the non-onset certificate. Thereby, it is possible to present a non-onset certificate with a timestamp and an expiration date added, indicating that the person to be examined has not developed an infectious disease, so that other persons who have visually confirmed can safely meet with the person to be examined, and the spread of infection can be prevented in advance.

[0081] <Eighth Aspect> The health data measurement device 100 of this aspect includes a card writer 2b for recording data on an IC chip provided in an identification card, and the issuance control unit 56 controls the card writer 2b to record the image data and / or text data related to the non-onset certificate on the IC chip provided in the identification card. According to this aspect, the issuance control unit 56 controls the card writer 2b to record the image data and / or text data related to the non-onset certificate on the IC chip provided in the identification card, so that the image data and / or text data related to the non-onset certificate can be recorded on the IC chip provided in the identification card. As a result, when the image data and / or text data related to the non-onset certificate are read from the IC chip provided in the identity card, for example, when entering a room, the image data and / or text data related to the non-onset certificate can be presented. Thus, other persons who have visually confirmed can safely meet with the person to be examined, and the spread of infection can be prevented in advance.

[0082] <Aspect 9> The health data measurement device 100 of this aspect is characterized in that it is a multifunction device equipped with a function of printing a non-onset certificate on a recording medium. According to this aspect, since the health data measurement device 100 is a multifunction device equipped with a function of printing a non-onset certificate on a recording medium, the multifunction device that is routinely used in a company's office can be utilized as a health data measurement device.

[0083] <Aspect 10> The health management server 16 of this aspect is characterized by including a control unit 16e that controls to record the body temperature measurement data corresponding to the examinee ID in the storage unit 16a when receiving the body temperature measurement data corresponding to the examinee ID from the health data measurement device 100. According to this aspect, when the control unit 16e provided in the health management server 16 receives the body temperature measurement data corresponding to the examinee ID from the health data measurement device 100, it controls to record the body temperature measurement data corresponding to the examinee ID in the storage unit 16a, so that the body temperature measurement data corresponding to the examinee ID can be recorded in the storage unit 16a.

[0084] <Aspect 11> The health management server 16 of this aspect is characterized by including a control unit 16e that, when requested to record the body temperature measurement data corresponding to the examinee ID from the health data measurement device 100, acquires the body temperature measurement data corresponding to the examinee ID from the storage unit 16a and controls to transmit the body temperature measurement data corresponding to the examinee ID to the health data measurement device 100. According to this aspect, when the control unit 16e provided in the health management server 16 is requested to record the body temperature measurement data corresponding to the examinee ID from the health data measurement device 100, the control unit 16e acquires the body temperature measurement data corresponding to the examinee ID from the storage unit 16a and controls to transmit the body temperature measurement data corresponding to the examinee ID to the health data measurement device 100. Thus, the health data measurement device 100 can acquire the record of the body temperature measurement data corresponding to the examinee ID.

[0085] <Aspect 12> The health management server 16 of this aspect is characterized by including a control unit 16e that controls to record the issuance date and time data of the non-onset certificate corresponding to the examinee ID in the storage unit 16a when receiving the issuance date and time data of the non-onset certificate corresponding to the examinee ID from the health data measurement device 100. According to this aspect, when the control unit 16e provided in the health management server 16 receives the issuance date and time data of the non-onset certificate corresponding to the examinee ID from the health data measurement device 100, the control unit 16e controls to record the issuance date and time data of the non-onset certificate corresponding to the examinee ID in the storage unit 16a. Thus, the issuance date and time data of the non-onset certificate corresponding to the examinee ID can be recorded.

[0086] <Aspect 13> The health management method of this aspect is a health management method by a health management system 1 including a health data measurement device 100 to which a medical health device 4 capable of measuring health data related to the body of an examinee is connected, and a health management server 16 having a storage unit 16a for storing the health data received from the health data measurement device 100. The health data measurement device 100 A reading step of reading a unique subject ID to be examined from the identification card possessed by the subject to be examined via a card reader, a collecting step of collecting health data specified by the subject ID of each subject to be examined measured by the medical and health device 4, a generating step of generating health management data representing the health status of the subject to be examined based on the health data collected in the collecting step, the health management items, and the subject ID, and based on the health management data generated in the generating step and the past health management data corresponding to the subject ID obtained from the health management server 16, a morbidity determination step of determining whether the subject to be examined has developed an infectious disease, and when it is determined in the morbidity determination step that the subject to be examined has not developed an infectious disease, an issuing control step of controlling to issue image data and / or text data related to a non-morbidity certificate indicating that the subject to be examined has not developed an infectious disease, and a printing control step of outputting the image data and / or text data related to the non-morbidity certificate to a printer unit and controlling to print the image data and / or text data on a recording medium. Since the operations and effects of the 13th aspect are the same as those of the 1st aspect, the description thereof is omitted.

Explanation of Signs

[0087] 1…Health management system, 2a…Card reader, 2b…Card writer, 4…Medical and health device, 4a…Blood pressure monitor, 4b…Body composition monitor, 4c…Blood glucose meter, 4d…Thermometer, 12…Smartwatch, 14…Health manager terminal, 16…Health management server, 16a…Storage unit, 16e…Control unit, 21…Subject terminal, 20…Subject to be examined, 22…Identification card, 50…Collection unit, 52…Generation unit, 54…Morbidity determination unit, 56…Issuing control unit, 58…Memory unit, 60…Mail issuing unit, 62…Timer unit, 64…Printing control unit, 100…Health data measuring device, 131…Scanner unit, 132…Printer unit, 140a…Display unit

Prior Art Documents

Patent Documents

[0088]

Patent Document 1

Claims

1. A health management system comprising: a health data measurement device to which a medical health device capable of measuring health data related to a subject to be examined is connected; and a health management server having a storage unit for storing the health data received from the health data measurement device, wherein the health data measurement device, comprises: a card reader for reading a unique subject ID from an identification card held by the subject to be examined; a collection unit for collecting health data identified by the subject ID of each subject to be examined measured by the medical health device; a generation unit for generating health management data representing the health status of the subject to be examined based on the health data collected by the collection unit, health management items, and the subject ID; an onset determination unit for determining whether the subject to be examined has developed an infectious disease based on the health management data generated by the generation unit and past health management data corresponding to the subject ID obtained from the health management server; an issuance control unit for controlling to issue image data and / or text data related to a non-onset certificate indicating that the subject to be examined has not developed an infectious disease when the onset determination unit determines that the subject to be examined has not developed an infectious disease; a printer unit; and a print control unit for outputting the image data and / or text data related to the non-onset certificate to the printer unit and controlling to print the image data and / or text data on a recording medium.

2. The health data measurement device according to claim 1, further comprising: a storage unit for storing, in association with the subject ID, an email address related to a subject terminal held by the subject to be examined; an email issuance unit for obtaining the email address corresponding to the subject ID from the storage unit and sending an email including the image data and / or text data related to the non-onset certificate to the email address.

3. The onset determination unit determines that the subject has not developed an infectious disease when, based on the body temperature measurement data included in the health management data generated by the generation unit and the past body temperature measurement data corresponding to the subject ID acquired from the health management server, if the body temperature measurement data is lower than the reference body temperature and M out of the past N days of data are not available in the health management server. The health management system according to claim 1, characterized in that.

4. The onset determination unit, based on the body temperature measurement data included in the health management data generated by the generation unit and the past body temperature measurement data corresponding to the subject ID acquired from the health management server, when the body temperature measurement data is lower than the reference body temperature, calculates a differential body temperature by subtracting the average body temperature from the body temperature measurement data T, and determines that the subject has not developed an infectious disease when the differential body temperature is smaller than the reference differential body temperature. The health management system according to claim 1, characterized in that.

5. The health data measurement device is provided with a scanner unit, The issuance control unit controls to read face image data from the face image included on the surface of the identification card by the scanner unit and add the face image data to the image data and / or text data related to the non-onset certificate. The health management system according to claim 1, characterized in that.

6. The health data measurement device is provided with a timer unit, The issuance control unit uses the current date and time data acquired from the timer unit as a timestamp, calculates an expiration date by adding a predetermined period to the timestamp, and controls to add the timestamp and the expiration date to the image data and / or text data related to the non-onset certificate. The health management system according to claim 1, characterized in that.

7. The health data measurement device is provided with a timer unit, The issuance control unit uses the current date and time data acquired from the timer unit as a timestamp, calculates an expiration date by adding a predetermined period to the timestamp, and controls to add the timestamp and the expiration date to the image data and / or text data related to the non-onset certificate. The health management system according to claim 6, characterized in that.

8. The health data measurement device is provided with a card writer for recording data on the IC chip provided on the identification card. The health management system according to claim 1, wherein the issuance control unit controls the card writer to record the image data and / or text data related to the non-disease certificate on the IC chip provided in the identity card.

9. The health management system according to any one of claims 1 to 8, wherein the health data measuring device is a multifunction device equipped with a function of printing the non-disease certificate on a recording medium.

10. The health management server The health management system according to claim 1, further comprising a control unit that controls to record the body temperature measurement data corresponding to the test subject ID in the storage unit when receiving the body temperature measurement data corresponding to the test subject ID from the health data measuring device.

11. The health management server The health management system according to claim 1, further comprising a control unit that, when requested to record the body temperature measurement data corresponding to the test subject ID from the health data measuring device, acquires the body temperature measurement data corresponding to the test subject ID from the storage unit and controls to transmit the body temperature measurement data corresponding to the test subject ID to the health data measuring device.

12. The health management server The health management system according to claim 1, further comprising a control unit that controls to record the issuance date and time data of the non-disease certificate corresponding to the test subject ID in the storage unit when receiving the issuance date and time data of the non-disease certificate corresponding to the test subject ID from the health data measuring device.

13. A health management method by a health management system including a health data measuring device connected to a medical health device capable of measuring health data related to a test subject, and a health management server having a storage unit for storing the health data received from the health data measuring device, the method comprising: a reading step of reading a unique test subject ID from an identity card held by the test subject via a card reader by the health data measuring device; a collecting step of collecting health data specified by the test subject ID of each test subject measured by the medical health device; a generating step of generating health management data representing the health status of the test subject based on the health data collected in the collecting step, health management items, and the test subject ID. ​ ​ An onset determination step of determining whether or not the subject has developed an infectious disease based on the health management data generated in the generation step and the past health management data corresponding to the subject ID acquired from the health management server; An issuance control step of controlling to issue image data and / or text data related to a non-onset certificate indicating that the subject has not developed an infectious disease when it is determined in the onset determination step that the subject has not developed an infectious disease; A printing control step of outputting the image data and / or text data related to the non-onset certificate to a printer unit and controlling to print the image data and / or text data on a recording medium, the health management method being characterized by including the steps.

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