Information Processing Apparatus, Information Processing Method, and Information Processing Program

The information processing apparatus addresses the issue of inappropriate timing in wearable device measurements by analyzing user input for conditions like physical symptoms to trigger biometric measurements, ensuring timely and efficient data capture.

JP7701205B2Active Publication Date: 2025-07-01FUJIFILM CORP
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Patent Information

Application Number
JP2021124690
Authority / Receiving Office
JP · JP
Patent Type
Patents
Current Assignee / Owner
Filing Date
2021-07-29
Publication Date
2025-07-01
Estimated Expiration
2041-07-29

AI Technical Summary

Technical Problem

Wearable devices often fail to measure biological information at appropriate timings, such as when a user's physical condition changes, due to battery conservation measures that do not always perform measurements.

Method used

An information processing apparatus that acquires input information, analyzes it for conditions related to the user's physical condition, symptoms, health, mood, or emotion, and issues instructions to a measuring device to start, transmit, or change the measurement of biometric information accordingly.

Benefits of technology

Enables measurement or presentation of biometric information at appropriate timings, without constant user intervention, by analyzing input information to trigger measurements or changes in measurement conditions.

✦ Generated by Eureka AI based on patent content.

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Abstract

To provide an information processing device, an information processing method, and an information processing program capable of measuring or presenting biological information at appropriate timing.SOLUTION: An information processing device includes at least one processor. The processor acquires input information including text, pictograms, emoji, images input to the information processing device, or selection items selected using the information processing device, and when contents of the input information satisfy predetermined conditions, gives a command regarding measurement or presentation of biological information to a measuring device that measures the user's biological information.SELECTED DRAWING: Figure 5
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Description

Technical Field

[0001] The disclosed technology relates to an information processing apparatus, an information processing method, and an information processing program.

Background Art

[0002] As a technology for collecting information on user behavior and processing it into useful information for user use, the following technologies are known. For example, Patent Document 1 describes an information terminal including a behavior specifying unit that collects behavior information of a user, a first detection unit that detects a change in the collected behavior information, and an information providing unit that provides information related to the behavior based on the frequency of the behavior corresponding to the detected change.

Prior Art Documents

Patent Documents

[0003]

Patent Document 1

Summary of the Invention

Problems to be Solved by the Invention

[0004] In recent years, wearable devices such as smartwatches have made it possible to measure biological information such as a user's heartbeat, blood pressure, and electrocardiogram. In such devices, in order to suppress battery consumption, the measurement of biological information is not always performed, and is often performed based on a user's instruction or a predetermined schedule. Although it is considered preferable that biological information be measured at an appropriate timing, for example, when a change occurs in the user's physical condition, when the measurement of biological information is not always performed, it may not be possible to perform the measurement or presentation at an appropriate timing.

[0005] The disclosed technology has been made in view of the above points, and an object thereof is to perform the measurement or presentation of biological information at an appropriate timing.

Means for Solving the Problems

[0006] The information processing apparatus according to the disclosed technology includes at least one processor. The processor acquires input information including text, emojis, emoticons, images, or selection items selected using the information processing apparatus, which is input to the information processing apparatus, and when the content of the input information satisfies a predetermined condition, issues an instruction regarding the measurement or presentation of biometric information to a measuring device that measures the user's biometric information.

[0007] The input information that satisfies the condition may be information including content related to the user's physical condition, symptoms, health, mood, or emotion, or disease name.

[0008] The instruction may be an instruction to start measuring biometric information. The instruction may be an instruction to transmit biometric information. The instruction may be an instruction to transmit biometric information at a time corresponding to the time when the input information that satisfies the condition is input. The instruction may be an instruction to change the measurement conditions of biometric information.

[0009] The input information may be information input on an application installed in the information processing apparatus. The input information may include a search keyword input to a search engine for searching for information on the network. The input information may include content transmitted or sent to a specific or unspecified recipient. The input information may include information on a product or service purchased or to be purchased through information communication via the network.

[0010] When the content of the input information satisfies the condition, the processor may further issue an instruction regarding the measurement or presentation of the biometric information of a third party to a pre-registered or authenticated measuring device that measures the biometric information of a third party other than the user.

[0011] The information processing method according to the disclosed technology is an information processing method executed by at least one processor included in an information processing device. The processor acquires input information including text, emoji, emoticons, images, or selection items selected using the information processing device, which is input to the information processing device, and when the content of the input information satisfies a predetermined condition, issues an instruction regarding the measurement or presentation of biometric information to a measuring device that measures the biometric information of the user.

[0012] The information processing program according to the disclosed technology is an information processing program for causing at least one processor included in an information processing device to execute. The program causes the processor to acquire input information including text, emoji, emoticons, images, or selection items selected using the information processing device, which is input to the information processing device, and when the content of the input information satisfies a predetermined condition, execute a process of issuing an instruction regarding the measurement or presentation of biometric information to a measuring device that measures the biometric information of the user.

Advantages of the Invention

[0013] According to the disclosed technology, it becomes possible to perform the measurement or presentation of biometric information at an appropriate timing.

Brief Description of the Drawings

[0014]

Figure 1

Figure 2

Figure 3

Figure 4

Figure 5

Figure 6

Figure 7

Embodiments for Carrying Out the Invention

[0015] Hereinafter, an example of an embodiment of the disclosed technology will be described with reference to the drawings. In each drawing, the same or equivalent components and parts are given the same reference numerals, and duplicate explanations are omitted.

[0016] [First Embodiment] FIG. 1 is a diagram showing an example of the configuration of a biological information management system 1 according to an embodiment of the disclosed technology. The biological information management system 1 includes an information processing apparatus 10 and a biological information measuring apparatus 20.

[0017] The information processing apparatus 10 is a communication terminal device used by a person (hereinafter referred to as a user) whose biological information is to be managed. The information processing apparatus 10 may be, for example, a desktop computer, a notebook computer, a tablet computer, or a smartphone.

[0018] The biological information measuring apparatus 20 measures the biological information of the user. The biological information may be, for example, information indicating at least one of body temperature, heart rate, electrocardiogram, electromyogram, blood pressure, arterial oxygen saturation (SpO2), blood glucose level, and lipid level. The biological information measuring apparatus 20 may be a wearable device such as a smartwatch equipped with sensors for measuring these biological information. The biological information measuring apparatus 20 measures the biological information of the user based on an operation input for measurement or a command from the information processing apparatus 10. Also, the biological information measuring apparatus 20 can measure the biological information according to a preset schedule. The biological information measuring apparatus 20 is communicably connected to the information processing apparatus 10 and transmits the measured biological information to the information processing apparatus 10. Note that the biological information management system 1 may include two or more biological information measuring apparatuses that measure different types of biological information.

[0019] FIG. 2 is a diagram showing an example of the hardware configuration of the information processing apparatus 10. The information processing apparatus 10 includes a CPU (Central Processing Unit) 101, a RAM (Random Access Memory) 102, a nonvolatile memory 103, a display 105, an input device 104 including a keyboard and a mouse, etc., and a communication interface 106. These hardware components are connected to a bus 107.

[0020] The communication interface 106 is an interface for the information processing apparatus 10 to communicate with the biological information measuring apparatus 20. The communication method may be either wired or wireless. For wireless communication, for example, a method compliant with existing wireless communication standards such as Wi-Fi (registered trademark) and Bluetooth (registered trademark) can be applied. The nonvolatile memory 103 is a storage medium such as a hard disk and a flash memory, and stores a control program 110 described later. The RAM 102 is a work memory for the CPU 101 to execute processing. The CPU 101 loads the control program 110 stored in the nonvolatile memory 103 into the RAM 102 and executes processing according to the control program 110. The CPU 101 is an example of the "processor" in the disclosed technology.

[0021] FIG. 3 is a functional block diagram showing an example of the functional configuration of the information processing apparatus 10. The information processing apparatus 10 includes an input information acquisition unit 11, an input information analysis unit 12, and a command issuance unit 13. By executing the control program 110, the CPU 101 functions as the input information acquisition unit 11, the input information analysis unit 12, and the command issuance unit 13.

[0022] The input information acquisition unit 11 acquires input information input to the information processing apparatus 10. The input information may include text, emoji, kaomoji, an image, or a selected item selected using the information processing apparatus 10 that is input to the information processing apparatus 10. The input information may be information input on various applications installed in the information processing apparatus 10.

[0023] The text as input information may be, for example, a search keyword input to a search engine for searching information on a network. Also, the text as input information may be, for example, text transmitted or sent to a specific or unspecified recipient such as a sent email, a message on a messenger application, a post on an SNS (Social Networking Service), a description in a weblog, or a conversation in a chat. The selection item as input information may be, for example, an item selected using a GUI (Graphical User Interface) for making a selection from a plurality of options such as a pull-down menu or radio buttons. Further, the input information may be information regarding a product or service purchased or to be purchased from an EC (electronic commerce) site or the like (for example, product / service category, product name, service name, etc.) through information communication via a network using a web browser installed in the information processing apparatus 10. Note that the input information acquisition unit 11 may acquire, as input information, information regarding products or services that have been browsed for the purpose of purchasing a product or service at an EC site or the like as the product or service to be purchased. The input information acquisition unit 11 may acquire, as input information, any combination of two or more of those exemplified above.

[0024]

[0025] The input information acquisition unit 11 acquires input information by cooperating with various applications such as a web browser, an email application, a messenger application, and an SNS application installed in the information processing apparatus 10. The input information acquisition unit 11 assigns input date and time information indicating the date and time when the input information was input to the information processing apparatus 10 to the input information and stores it in the non-volatile memory 103.The input information analysis unit 12 analyzes the input information acquired by the input information acquisition unit 11 and determines whether the input information satisfies a predetermined condition. Specifically, when the acquired input information includes content related to the user's physical condition, symptoms, health, mood, emotion, or disease name, the input information analysis unit 12 determines that the input information satisfies the predetermined condition.

[0026] The input information analysis unit 12 may determine that the input information satisfies a predetermined condition when a word, emoji, emoticon, or image registered in advance as being related to the user's physical condition, symptoms, health, mood, emotion, or disease name is included in the text, emoji, emoticon, image, or selection item as the input information. For example, when the input information is a search keyword input into a search engine and the search keyword includes a word registered in advance such as "fever", "cough", "headache", "stomachache", "dizziness", "cold", "insomnia", "anxiety", "depression", "tired", "irritable", "influenza", "novel coronavirus", "COVID-19", etc., the input information analysis unit 12 may determine that the search keyword is input information that satisfies the predetermined condition. Also, for example, when the input information is a message input on a messenger application and the message includes a registered word as exemplified above or an emoji, emoticon, image (stamp) expressing the same meaning as these, the input information analysis unit 12 may determine that the message is input information that satisfies the predetermined condition. The words related to the user's physical condition, symptoms, health, mood, emotion, or disease name may include onomatopoeia such as "sniffle", "rumble", "flutter".

[0027] In addition, when the input information analysis unit 12 determines that the input information is information regarding a product purchased or intended to be purchased through information communication via a network, and the product is a medical supply such as a pharmaceutical product, the input information analysis unit 12 may identify information regarding the product as input information that satisfies predetermined conditions. Further, when the input information is information regarding a service purchased or intended to be purchased through information communication via a network, and the service is related to a health service or a medical service aimed at maintaining, promoting, restoring, or eliminating, improving, or alleviating symptoms, etc. of health, the input information analysis unit 12 may identify the input information including information on the service as input information that satisfies predetermined conditions.

[0028] When the input information acquired by the input information acquisition unit 11 is determined by the input information analysis unit 12 to satisfy predetermined conditions, the instruction issuing unit 13 issues an instruction to the biological information measurement device 20 to start measuring the user's biological information. The biological information measurement device 20 starts measuring the user's biological information in response to the instruction issued by the instruction issuing unit 13. The biological information measurement device 20 may transmit the biological information (measurement value) of the user measured in response to the instruction to the information processing device 10. In this case, the information processing device 10 may perform control to display the biological information (measurement value) transmitted from the biological information measurement device 20 on the display 105.

[0029] FIG. 4 is a flowchart showing an example of the flow of processing performed by the CPU 101 by executing the control program 110. The control program 110 is executed, for example, when the user instructs the start of processing by operating the input device 104.

[0030] In step S1, the CPU 101 functions as an input information acquisition unit 11 and acquires input information, which is the information input to the information processing apparatus 10. The input information acquisition unit 11 attaches input date and time information to the acquired input information and stores it in the non-volatile memory 103. FIG. 5 illustrates a case where a search keyword "headache" is input in a search engine implemented on a web browser installed in the information processing apparatus 10. The input information acquisition unit 11 acquires the search keyword "headache" as input information.

[0031] In step S2, the CPU 101 functions as an input information analysis unit 12 and determines whether the input information acquired in step S1 satisfies a predetermined condition. Specifically, the input information analysis unit 12 determines whether the input information acquired in step S1 includes content related to the user's physical condition, symptoms, health, mood, emotion, or disease name. If it is determined that the input information satisfies the predetermined condition, the process proceeds to step S3. If it is determined that the input information does not satisfy the predetermined condition, the process returns to step S1. The search keyword "headache" as the input information illustrated in FIG. 5 includes content indicating the user's physical condition or symptoms, so the input information analysis unit 12 determines that this search keyword is input information that satisfies the predetermined condition.

[0032] In step S3, the CPU 101 functions as a command issuance unit 13 and issues a command to start measuring the user's biological information to the biological information measurement apparatus 20. FIG. 5 illustrates a case where a command to start measuring the user's biological information is issued to the biological information measurement apparatus 20 in response to the search keyword "headache" as the input information.

[0033] The biological information measurement apparatus 20 starts measuring the user's biological information in response to the command issued from the command issuance unit 13. The biological information measurement apparatus 20 may transmit the biological information of the user measured in response to the command to the information processing apparatus 10. In this case, the information processing apparatus 10 may acquire the biological information transmitted from the biological information measurement apparatus 20 and perform control to display it on the display 105.

[0034] As described above, the information processing apparatus 10 according to the embodiment of the disclosed technology acquires input information including text, emojis, kaomojis, images, or selection items selected using the information processing apparatus that is input to the information processing apparatus, and when the content of the input information satisfies a predetermined condition, issues an instruction to start measuring the user's biological information to a measuring apparatus that measures the biological information. The input information that satisfies the predetermined condition is information including content related to the user's physical condition, symptoms, health, mood, or emotion, or the name of a disease. The input information may include information input on an application installed in the information processing apparatus 10.

[0035] For example, when the user is aware of an abnormal change in their physical condition, it is assumed that the user performs a web search using a word indicating the self-perceived symptom as a search keyword, complains about the self-perceived symptom to a specific or unspecified person via a messenger application and SNS, or purchases a medicine according to the self-perceived symptom. According to the information processing apparatus 10 according to the present embodiment, since an instruction to start measuring biological information is issued to the biological information measuring apparatus 20 according to the input information input according to the user's self-perceived symptom, even when the biological information is not constantly measured, it is possible to obtain biological information at an appropriate timing such as when an abnormal change occurs in the user's physical condition. Further, according to the information processing apparatus according to the present embodiment, since the measurement of biological information is started according to the input information, it is possible to start the measurement of biological information without the user performing a specific operation for starting the measurement of biological information. That is, the user can be unconscious regarding the timing of measuring biological information.

[0036] [Second Embodiment] In the information processing apparatus 10 according to the first embodiment, the instruction issuing unit 13 issues an instruction to start measuring biological information to the biological information measuring apparatus 20. On the other hand, in the information processing apparatus 10 according to the second embodiment of the disclosed technology, the instruction issuing unit 13 issues an instruction to cause the biological information measuring apparatus 20 to transmit biological information.

[0037] In the following, a mode in which the information processing apparatus 10 issues an instruction to transmit biological information will be described with specific examples, but the disclosed technology is not limited to this mode. Here, the biological information measuring apparatus 20 measures body temperature as biological information according to a preset time schedule, and stores the measured value in an internal memory (not shown) provided in the biological information measuring apparatus 20. For example, the biological information measuring apparatus 20 measures the user's body temperature at 8:00, 12:00, 16:00, and 20:00, and stores the measured values in the internal memory.

[0038] When the input information acquired by the input information acquisition unit 11 is determined by the input information analysis unit 12 to satisfy a predetermined condition, the instruction issuing unit 13 issues an instruction to transmit the measured value of the body temperature to the biological information measuring apparatus 20. In response to the instruction issued from the instruction issuing unit 13, the biological information measuring apparatus 20 transmits the most recent measured value of the body temperature stored in the internal memory to the information processing apparatus 10. Note that the biological information measuring apparatus 20 may perform measurement of biological information in response to the transmission instruction issued from the instruction issuing unit 13, and transmit the biological information obtained by the measurement to the information processing apparatus 10.

[0039] Also, when the time difference (i.e., time lag) between the time when the input information satisfying the predetermined condition is input to the information processing apparatus 10 and the time when an instruction corresponding to the input information is issued is greater than a predetermined value, the instruction issuing unit 13 may issue an instruction to transmit the biological information at the time corresponding to the time when the input information satisfying the predetermined condition is input. The input date and time information indicating the input date and time of the input information is attached to this instruction. According to this mode, even when the above time lag occurs, it is possible to obtain the biological information at the time when the user becomes aware of the symptom.

[0040] The information processing apparatus 10 may acquire biometric information (measurement values) transmitted from the biometric information measurement apparatus 20 and perform control to display the same on the display 105. Note that the transmission destination of the biometric information is not limited to the information processing apparatus 10, and may be, for example, an external server (not shown) for storing the biometric information. This external server is connected to the information processing apparatus 10 via a network (not shown). The information processing apparatus 10 can access this external server and acquire the biometric information transmitted from the biometric information measurement apparatus 20. Further, the number of transmission destinations of the biometric information may be two or more. In this case, the biometric information measurement apparatus 20 may include information specifying one or two or more transmission destinations in the transmission command of the biometric information.

[0041] According to the information processing apparatus 10 according to the present embodiment, for example, it is possible to take in the biometric information measured by the biometric information measurement apparatus 20 into the information processing apparatus 10 at an appropriate timing such as when an abnormality occurs in the user's physical condition.

[0042] [Third Embodiment] In the information processing apparatus 10 according to the first embodiment, the command issuing unit 13 issues a command to start measurement of biometric information to the biometric information measurement apparatus 20. On the other hand, in the information processing apparatus 10 according to the third embodiment of the disclosed technology, the command issuing unit 13 issues a command to change the measurement conditions when measuring biometric information to the biometric information measurement apparatus 20. The measurement conditions may be, for example, conditions regarding the measurement frequency of biometric information, the time at which measurement is performed, and the type of biometric information to be measured. Further, when the biometric information measurement apparatus 20 has a function of performing an abnormality determination using a threshold value for the measurement result of the biometric information and issuing a warning when an abnormality is determined, the measurement conditions may include those regarding the above threshold value.

[0043] In the following, a mode in which the information processing apparatus 10 issues an instruction to change the measurement conditions of biological information will be described with specific examples, but the disclosed technology is not limited to this mode. Here, the biological information measurement apparatus 20 is assumed to measure body temperature as the biological information of the user. Also, in the biological information measurement apparatus 20, it is assumed that a standard measurement condition regarding the measurement frequency, "three times a day", is set.

[0044] When the input information acquired by the input information acquisition unit 11 is determined by the input information analysis unit 12 to satisfy a predetermined condition, the instruction issuing unit 13 issues an instruction to change the measurement condition regarding the measurement frequency of body temperature to "six times a day" to the biological information measurement apparatus 20. The biological information measurement apparatus 20 changes the measurement conditions of the biological information in accordance with the instruction issued from the instruction issuing unit 13, and measures the biological information in accordance with the changed conditions. The biological information measurement apparatus 20 may transmit the biological information (measurement value) of the user measured in accordance with the changed conditions to the information processing apparatus 10. In this case, the information processing apparatus 10 may perform control to display the biological information (measurement value) transmitted from the biological information measurement apparatus 20 on the display 105.

[0045] According to the information processing apparatus 10 according to the present embodiment, for example, when a change occurs in the user's physical condition, it is possible to take measures such as strengthening the monitoring of the user's biological information.

[0046] [Fourth Embodiment] FIG. 6 is a diagram showing an example of the configuration of a biological information management system 1A according to a fourth embodiment of the disclosed technology. The biological information management system 1A includes an information processing apparatus 10 and biological information measuring apparatuses 20A and 20B. The biological information measuring apparatus 20A measures the biological information of a user. The biological information measuring apparatus 20B is an apparatus that measures the biological information of a third party (guest) other than the user, and is registered or authenticated in the information processing apparatus 10 as a controlled apparatus by the information processing apparatus 10. The biological information measuring apparatus 20B may be, for example, a wearable device worn by a young child or an elderly person, and the biological information measuring apparatus 20A may be, for example, a wearable device worn by a user who is a caregiver or a caregiver of the user.

[0047] In the information processing apparatus 10 according to the present embodiment, when the input information acquired by the input information acquisition unit 11 is determined by the input information analysis unit 12 to satisfy a predetermined condition, the command issuance unit 13 issues a command to start measuring biological information to both the biological information measuring apparatuses 20A and 20B. The biological information measuring apparatuses 20A and 20B each start measuring the biological information of the user or the third party in response to the command issued from the command issuance unit 13. The biological information measuring apparatuses 20A and 20B may each transmit the biological information (measurement value) of the user or the third party measured in response to the command to the information processing apparatus 10. In this case, the information processing apparatus 10 may perform control to display the biological information (measurement value) transmitted from the biological information measuring apparatuses 20A and 20B on the display 105.

[0048] FIG. 7 illustrates a case where the text "contracted influenza" is input on the messenger application installed in the information processing apparatus 10. The input information acquisition unit 11 acquires the above text as input information. Since the above text includes content indicating the disease name of the user, the input information analysis unit 12 determines that this text is input information that satisfies a predetermined condition. In response to this determination, the command issuance unit 13 issues a command to start measuring biological information to both the biological information measuring apparatuses 20A and 20B.

[0049] According to the information processing apparatus 10 according to the present embodiment, it is possible to start measuring biological information not only for the user but also for a third party according to the input information input to the information processing apparatus 10. For example, when the user develops an infectious disease, there is a possibility that close contacts such as cohabiting family members are also infected. According to the information processing apparatus 10 according to the present embodiment, by setting a third party who may be a close contact as a measurement target by the biological information measurement apparatus 20B, when there is an abnormality in the physical condition of the user, it is possible to quickly start measuring biological information not only for the user but also for the third party.

[0050] Note that the instruction issuing unit 13 may issue an instruction to transmit biological information to both the biological information measurement apparatuses 20A and 20B. Further, an instruction to change the measurement conditions when measuring biological information may be issued to both the biological information measurement apparatuses 20A and 20B.

[0051] In the above embodiment, for example, as the hardware structure of a processing unit that executes various processes such as the input information acquisition unit 11, the input information analysis unit 12, and the instruction issuing unit 13, the following various processors can be used. As described above, the above various processors include, in addition to the CPU and GPU, which are general-purpose processors that execute software (program) and function as various processing units, a programmable logic device (PLD), which is a processor whose circuit configuration can be changed after manufacturing, such as an FPGA, and a dedicated electric circuit, which is a processor having a circuit configuration designed specifically to execute specific processing, such as an ASIC (Application Specific Integrated Circuit).

[0052] One processing unit may be configured by one of these various processors, or may be configured by a combination of two or more processors of the same type or different types (for example, a combination of a plurality of FPGAs, or a combination of a CPU and an FPGA). Further, a plurality of processing units may be configured by one processor.

[0053] As an example of configuring a plurality of processing units with one processor, first, as represented by computers such as clients and servers, one processor is configured by a combination of one or more CPUs and software, and this processor functions as a plurality of processing units. Second, as represented by a System on Chip (SoC), etc., there is a form in which a processor that realizes the functions of the entire system including a plurality of processing units with one IC (Integrated Circuit) chip is used. Thus, various processing units are configured using one or more of the above various processors as a hardware structure.

[0054] Furthermore, as a hardware structure of these various processors, more specifically, circuitry combining circuit elements such as semiconductor elements can be used.

[0055] In the above embodiment, the mode in which the control program 110 is pre-stored (installed) in the non-volatile memory 103 has been described, but it is not limited to this. The control program 110 may be provided in a form recorded on a recording medium such as a CD-ROM (Compact Disc Read Only Memory), a DVD-ROM (Digital Versatile Disc Read Only Memory), and a USB (Universal Serial Bus) memory. Also, the above control program 110 may be in a form downloaded from an external device via a network.

Explanation of Signs

[0056] 1 Biological information management system 10 Information processing device 11 Input information acquisition unit 12 Input information analysis unit 13 Command issuance unit 20, 20A, 20B Biological information measurement device 101 CPU 102 RAM 103 Non-volatile memory 104 Input device 105 Display 106 Communication interface 107 Bus 110 Control program

Claims

1. An information processing apparatus including at least one processor, wherein the processor, acquires input information including text, emoji, emoticon, or image input to the information processing apparatus using an application installed in the information processing apparatus, by cooperating with the application, and issues an instruction regarding measurement or presentation of biometric information to a measuring device that measures biometric information of a user when the content of the input information satisfies a predetermined condition. The information processing apparatus.

2. The input information that satisfies the condition is information including content related to the physical condition, symptoms, health, mood, or emotion of the user or a disease name. The information processing apparatus according to claim 1.

3. The instruction is an instruction to start measurement of the biometric information. The information processing apparatus according to claim 1 or claim 2.

4. The instruction is an instruction to transmit the biometric information. The information processing apparatus according to claim 1 or claim 2.

5. The instruction is an instruction to transmit biometric information at a time corresponding to the time when the input information that satisfies the condition is input. The information processing apparatus according to claim 4.

6. The instruction is an instruction to change the measurement condition of the biometric information. The information processing apparatus according to claim 1 or claim 2.

7. When the content of the input information satisfies the condition, the processor further issues an instruction regarding measurement or presentation of biometric information of a third party other than the user to a pre-registered or authenticated measuring device that measures biometric information of the third party. The information processing apparatus according to any one of claims 1 to 6.

8. An information processing method executed by at least one processor included in an information processing apparatus, wherein the processor, acquires input information including text, emoji, emoticon, or image input to the information processing apparatus using an application installed in the information processing apparatus, by cooperating with the application, and issues an instruction regarding measurement or presentation of biometric information to a measuring device that measures biometric information of a user when the content of the input information satisfies a predetermined condition. The information processing method.

9. An information processing program for causing at least one processor included in an information processing apparatus to execute, Input information including text, emojis, emoticons, or images input to the information processing device using an application installed on the information processing device is obtained by cooperating with the application. When the content of the input information satisfies a predetermined condition, an instruction regarding measurement or presentation of the biometric information is given to a measurement device that measures the biometric information of the user. An information processing program for causing the processor to execute the process.

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