Information processing apparatus, method for controlling information processing apparatus, and computer program

JP2025075075A5Active Publication Date: 2025-10-28ONLINEDOCTOR COM CO LTD
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Patent Information

Application Number
JP2025026205
Authority / Receiving Office
JP · JP
Patent Type
Applications
Current Assignee / Owner
Priority Date
2022-03-30
Filing Date
2025-02-20
Publication Date
2025-10-28
Estimated Expiration
2042-10-21

AI Technical Summary

Technical Problem

In online medical consultation, it is difficult for doctors to obtain the patient's biological information accurately, resulting in possible diagnosis errors and need to rely on face-to-face consultation to obtain accurate biological information.

Method used

By installing sensors on the patient's wearable device, biological information is collected in real time and the collected information is transmitted to the doctor's terminal through the server, real-time display and control of biological information is achieved.

Benefits of technology

It is realized that doctors can accurately obtain patients' biological information in online medical consultation, improve diagnosis accuracy, reduce dependence on face-to-face consultation, and improve the reliability of telemedicine.

✦ Generated by Eureka AI based on patent content.

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Abstract

To allow medical personnel to accurately acquire biological information of patients and the like in online medical examinations and the like.SOLUTION: An information processing apparatus comprises: acquisition means that acquires subject's biological information acquired by a sensor provided in a first terminal worn by the subject, and terminal information including the type of the first terminal; storage means that stores the acquired biological information and terminal information: display control means that displays the biological information and the terminal information on display means of a second terminal different from the first terminal; acceptance means that accepts control information with respect to the first terminal from the second terminal; instruction means that instructs the first terminal to control the first terminal on the basis of the accepted control information. The display control means displays, on the display means, an image indicating the first terminal, an image indicating a position of the sensor of the first terminal, and the biological information acquired by the sensor, on the basis of the biological information and the terminal information.SELECTED DRAWING: Figure 4
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Description

[Technical field]

[0001] The present invention relates to an information processing device, a control method for an information processing device, and a computer program. [Background technology]

[0002] Conventionally, there is a technology for online medical care for patients living in remote locations, in which a doctor's computer collects patient health information via an intermediary server (for example, Patent Document 1). [Prior art documents] [Patent documents]

[0003] [Patent Document 1] Patent Publication No. 2022-16085 Summary of the Invention [Problem to be solved by the invention]

[0004] In face-to-face medical consultations, a doctor can accurately obtain a patient's biometric information by appropriately operating various medical equipment. However, in online medical consultations, the doctor and patient are separated, making it difficult for the doctor to accurately obtain a patient's biometric information.

[0005] The present invention has been made in consideration of the above circumstances, and aims to provide a technique that enables medical professionals and the like to accurately obtain biological information of patients and the like during online medical consultations and the like. [Means for solving the problem]

[0006] In order to achieve the above object, one aspect of the present invention is An acquisition means for acquiring biometric information of a subject acquired by a sensor provided in a first terminal worn by the subject, and terminal information including a type of the first terminal; A storage means for storing the acquired biometric information and the acquired terminal information; a display control means for displaying the biometric information and the terminal information on a display means of a second terminal different from the first terminal; A receiving means for receiving control information for the first terminal from the second terminal; an instruction means for instructing the first terminal to control the first terminal based on the received control information; The information processing device has the following features. Effect of the Invention

[0007] According to the present invention, medical staff and the like can accurately obtain biological information of patients and the like during online medical care and the like. [Brief description of the drawings]

[0008] [Figure 1] FIG. 1 is a diagram showing an overview of the present embodiment. [Diagram 2] FIG. 1 is a diagram illustrating an outline of the configuration of a biometric information acquisition system. [Diagram 3] FIG. 2 is a block diagram showing a hardware configuration of a server. [Figure 4] FIG. 2 is a functional block diagram illustrating an example of a functional configuration of a server. [Diagram 5] 13 is a flowchart illustrating an example of a biological information acquisition process. [Figure 6] FIG. 1 is a diagram showing an example of application (1) in online medical consultation in internal medicine. [Figure 7] FIG. 13 is a diagram showing an example of application (2) in online medical consultation in internal medicine. [Figure 8] FIG. 13 is a diagram showing an example of application (3) in online medical consultation in internal medicine. [Figure 9] FIG. 13 is a diagram showing an application example in online ophthalmology consultation. [Figure 10] FIG. 13 is a diagram showing an application example in online otolaryngological consultation. [Figure 11] FIG. 13 is a diagram showing an application example in online medical consultation in dermatology. DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS

[0009] (Embodiment) <Summary> Currently, when performing online medical treatment, patients acquire biometric information using various devices such as a blood pressure monitor, and communicate the acquired results (for example, blood pressure measurement values ​​displayed on the blood pressure monitor) to a doctor via a web conference system. Some of these devices automatically transmit the patient's biometric information to the doctor's terminal via a network, but the specifications vary depending on the purpose and manufacturer. Therefore, in order for a doctor to automatically acquire the patient's biometric information, the patient needs to use a device specified by the doctor. In this embodiment, an example is described in which a patient's biometric information is acquired without depending on a device by using an information protocol, API, and SDK that can be installed on any device.

[0010] In addition, currently, the biometric information (patient information) that can be obtained in online medical consultations is limited, and for example, it is not possible to listen to heart sounds, respiratory sounds, or abdominal sounds as the doctor wishes. This creates the risk of misdiagnosis in online medical consultations, and ultimately poses the problem that in order to accurately obtain the patient's biometric information, face-to-face consultations are necessary.

[0011] In contrast, the biometric information acquisition system according to this embodiment acquires the patient's biometric information in real time during online medical care. The doctor can select the type of biometric information he or she wishes to acquire (e.g., blood pressure, heart sounds, etc.) or select a sensor for acquiring the biometric information. The doctor also instructs the patient's wearable device to acquire the selected biometric information. In this way, by exchanging data in both directions, it is possible to acquire (accurate) biometric information in online medical care to the same extent as in face-to-face medical care. Hereinafter, this embodiment will be described with reference to the drawings.

[0012] 1 is a diagram showing an overview of a biometric information acquisition system to which a server 1 (information processing device) according to this embodiment is applied. In this embodiment, an example will be described in which biometric information of a patient is acquired according to the doctor's will when a patient and a doctor (medical facility) conduct online medical treatment using a specific web conference system. FIG. 1 shows an example of exchange of various data among a server 1, a wearable device 2, a patient terminal 3, and a medical facility terminal 4 of the biological information acquisition system of this embodiment.

[0013] As indicated by the symbol G1, the patient's biological information is acquired by a predetermined sensor provided in a wearable device 2 worn by the patient. The acquired biological information is transmitted to the patient terminal 3 via short-range communication. The communication method for the short-range communication is not particularly limited, but for example, a communication method such as Bluetooth (registered trademark) or Wi-Fi (registered trademark) can be used. As indicated by the reference symbol G2, the patient terminal 3 transmits the biological information acquired by the wearable device 2 to the server 1. As indicated by the reference symbol G3, the server 1 displays the biological information on a display unit (display means) of the medical facility terminal 4 (dashboard) operated by the doctor. This allows the doctor to obtain accurate biological information of the patient in a timely manner by referring to the biological information of the patient displayed on the medical facility terminal 4. In addition to grasping the biological information of the patient, the doctor can also select a sensor in the wearable device 2 to use for obtaining the biological information. As indicated by the reference symbol G4, when an instruction to select a sensor is received, the medical facility terminal 4 transmits operation information corresponding to the instruction to the server 1. Note that the patient's biological information is not only displayed on the medical facility terminal 4 but is also accumulated in the storage unit of the server 1. As indicated by the reference symbol G5, when the server 1 receives the operation information from the medical facility terminal 4, it transmits the operation information to the patient terminal 3. As indicated by the reference symbol G6, the patient terminal 3 controls the wearable device 2 in accordance with the above-mentioned operation information.

[0014] Biometric information is information related to a living body (patient) that is used in medical treatment, examination, etc., and is a concept that includes various data such as sounds emitted by the living body (abdomen, embryo, heart, etc.), pulse waves, body temperature, heart rate, electrocardiogram, blood pressure, respiratory rate, hearing, brain waves, information on the surface (e.g., skin) or inside (e.g., oral cavity) of the living body (visual information, etc.), fundus, cornea, intraocular pressure, eyesight, weight, height, muscle mass, BMI, basal metabolism, blood glucose level, blood oxygen amount (concentration), etc. Biometric information also includes the results of various analyses of the above data. In order to acquire the above-mentioned bio-information, the wearable device 2 (device) is provided with at least one or more of various sensors, such as a sound sensor, a temperature sensor, a pressure sensor, a light sensor, an ultrasonic sensor, a brain wave sensor, a pulse wave sensor, an electrocardiogram sensor, a pressure sensor, an imaging sensor, etc.

[0015] Devices 2a to 2e are examples of the wearable device 2. Each of devices 2a to 2e is provided with a module for transmitting biometric information acquired by each device. It is assumed that devices 2a to 2e are purchased by patients for online medical treatment, or loaned or leased from a designated institution.

[0016] The device 2a is a clothing-type device provided with various sensors. It may be a device (including sensors) that can be attached (for example, pasted) to normal clothing. The device 2a is intended to be used mainly in online medical examinations in internal medicine, and is a device that plays the role of a stethoscope, blood pressure measuring device, electrocardiogram measuring device, etc. in face-to-face medical examinations. The device 2a uses various sensors to obtain at least a part of biological information such as lung, abdominal, and heart sounds, body temperature, blood pressure, electrocardiogram, heart rate, and respiratory rate. The device 2a is not limited to a short-sleeved T-shirt type as shown in FIG. 1, but may be a long-sleeved shirt type, and may be in various forms such as a head, lower body, or whole body type.

[0017] The device 2b is a goggle-type device. The device 2b is intended to be used mainly in online medical examinations in ophthalmology, and is a device that plays the role of an ophthalmic examination machine (e.g., an auto refractor) in face-to-face medical examinations, for example. The device 2b uses various sensors to acquire at least a part of biological information, such as the fundus, cornea, and intraocular pressure. The device 2b includes a light source unit and can also control the ON / OFF of lighting. The device 2b may also include a display unit and can control the image displayed on the display unit.

[0018] The device 2c is a headphone-type device. The device 2c is intended to be used mainly in online medical examinations in otolaryngology, and is a device that plays the role of an otoscope in face-to-face medical examinations, for example. The device 2c uses various sensors to acquire at least a portion of biological information indicating the state of the eardrum, the outer ear, tympanometry, and hearing. The device 2c is not limited to a headphone-type device, and may be capable of acquiring biological information of the nasal cavity, the oral cavity, the laryngopharynx, and the like in the nose and oral cavity in addition to the ear. The device 2c is equipped with a light source unit and can control the ON / OFF of lighting. The device 2c can also be fitted with a disposable cover, and can acquire the state of the eardrum, etc. in more detail.

[0019] The device 2d is a wristwatch type device. The device 2d is intended to be used mainly in online medical examinations in internal medicine, and serves the role of, for example, a blood pressure monitor, a pulse oximeter, a blood glucose meter, etc. in face-to-face medical examinations. The device 2d uses various sensors to acquire at least a part of biological information such as blood pressure, blood glucose level, heart rate, blood oxygen amount (concentration), pulse, physical load, number of steps, number of falls, location information, calorie consumption information, sleep information, voice information, respiratory sounds, and heartbeat sounds.

[0020] The device 2e is a body composition meter. The device 2e is mainly intended to be used in online medical examinations in internal medicine, and is a device that plays the role of a body composition meter in face-to-face medical examinations, for example. The device 2e uses various sensors to acquire at least a part of biological information such as blood glucose level, skeletal muscle percentage, bone mass, BMI, body fat percentage, weight (ideal weight and fat-free weight), water content, basal metabolic rate, protein amount, skeletal muscle percentage, muscle weight, fat weight, visceral fat grade, subcutaneous fat grade, body age, fat burning heart rate, nutritional level, and body type. The device 2e may acquire and accumulate biological information by combining with a wristwatch-type device shown in the device 2d (by transmitting data to the device 2d), for example. As a result, the combination of the device 2d and the device 2e can also be considered as a wearable device.

[0021] <System configuration> 2 is a diagram showing an outline of the system configuration of the biometric information acquisition system according to this embodiment. The biometric information acquisition system according to this embodiment is configured by connecting a server 1 that performs processing, a patient terminal 3 operated by a patient, and a medical facility terminal 4 that displays biometric information to each other via a predetermined network N such as the Internet. In addition, a wearable device 2 that acquires biometric information and the patient terminal 3 are connected to each other using a predetermined short-range communication.

[0022] The server 1 executes various processes in cooperation with the wearable device 2, the patient terminal 3, and the medical facility terminal 4. The wearable device 2 may transmit the acquired biological information to the server 1 without going through the patient terminal 3.

[0023] <Hardware configuration> 3 is a block diagram showing a hardware configuration of the server 1 according to this embodiment. The server 1 includes a CPU (Central Processing Unit) 11, a ROM (Read Only Memory) 12, a RAM (Random Access Memory) 13, a bus 14, an input / output interface 15, an output unit 16, an input unit 17, a storage unit 18, a communication unit 19, and a drive 20.

[0024] The CPU 11 executes various processes according to a program recorded in the ROM 12 or a program loaded from the storage unit 18 to the RAM 13. The RAM 13 also stores data and the like required for the CPU 11 to execute various processes. The CPU 11, the ROM 12, and the RAM 13 are interconnected via a bus 14. An input / output interface 15 is also connected to this bus 14.

[0025] An output unit 16, an input unit 17, a memory unit 18, a communication unit 19, and a drive 20 are connected to the input / output interface 15. The output unit 16 is composed of a display, a speaker, etc., and outputs various information as images and sounds. The input unit 17 is composed of a keyboard, a mouse, etc., and inputs various information. The memory unit 18 is composed of a hard disk, a DRAM (Dynamic Random Access Memory), etc., and stores various data. The communication unit 19 communicates with other devices via a network N including the Internet.

[0026] Removable media 21, which may be a magnetic disk, an optical disk, a magneto-optical disk, or a semiconductor memory, is appropriately attached to the drive 20. Programs read from the removable media 21 by the drive 20 are installed in the storage unit 18 as necessary. The removable media 21 can also store various data stored in the storage unit 18 in the same manner as the storage unit 18.

[0027] Although not shown, the wearable device 2, the patient terminal 3, and the medical facility terminal 4 have the hardware configuration shown in Fig. 3. Although not shown, the medical facility terminal 4 has the hardware configuration shown in Fig. 3 and further includes a display monitor (dashboard) that displays the patient's biological information. The wearable device 2 also includes a transmitter that transmits the acquired biological information to the server 1 or the patient terminal 3, a receiver that receives control information from the medical facility terminal 4, and a controller that controls various sensors based on the control information.

[0028] <Functional configuration> FIG. 4 is a functional block diagram showing an example of a functional configuration of the server 1 according to the present embodiment.

[0029] In the CPU 11 of the server 1, an acquisition unit 31, an association unit 32, an alert unit 33, a display control unit 34, a control information receiving unit 35, and a control information transmitting unit 36 ​​function when the server 1 operates.

[0030] The acquisition unit 31 acquires biological information of the patient (subject) acquired by a sensor provided in a wearable device 2 (first terminal) worn by the patient, and terminal information including the type of the wearable device 2. As described above, biological information is information about a living body (patient) that is used for medical treatment, examination, and the like. The terminal information is information indicating the type of the wearable device 2 (for example, which of the above-mentioned devices 2a to 2e it is, or information indicating the manufacturer, product number, etc.) and at least one of the number, type, position, etc. of sensors in the wearable device 2. Note that information indicating whether or not a camera, light, etc. are provided may also be included in the terminal information. The acquired biometric information is stored in the biometric information DB 41. The acquired terminal information is stored in the terminal information DB . In this embodiment, an example in which a plurality of biosensors are provided in the wearable device 2 will be described, but the number of sensors provided in the wearable device 2 is not particularly limited and may be one. In addition, in this embodiment, an example in which bioinformation is acquired using the wearable device 2 worn by a patient will be described, but this is not limited thereto, and for example, a device provided with sensors may be attached to the patient's clothing or the like to acquire the patient's bioinformation.

[0031] The association unit 32 associates the above-mentioned biometric information with the position of the sensor at which the biometric information was acquired in the above-mentioned wearable device 2. This enables the display control unit 34, which will be described later, to display, on the medical facility terminal 4, an image showing the wearable device 2 and an image showing the position of the sensor at the wearable device 2 that acquired the biometric information.

[0032] The alert unit 33 presents an alert to the medical facility terminal 4 (second terminal). For example, the alert unit 33 issues an alert when the biological information is outside a predetermined range. The predetermined range is, for example, a range considered normal for blood pressure (which may differ depending on age, etc.). The predetermined range is stored in the above-mentioned storage unit 18. The alert unit 33 may also use a classifier generated by machine learning to determine whether or not the predetermined range is met. For example, in the case of lung sounds, the alert unit 33 may determine whether or not the breathing sounds are normal (whether or not noise is being generated), and if the sounds are not normal (if they are not within the predetermined range), an alert may be issued. Also, for example, the alert unit 33 may present an alert based on the past biological information of the patient. Since it is expected that normal values ​​of biological information differ for each patient, for example, the alert unit 33 may record biological information of the same patient in the storage unit 18, and present an alert when a difference of a predetermined value or more occurs from the average value (or a statistical value such as the median or the mode) of the past biological information. The method of presenting the alert is not particularly limited. For example, the alert unit 33 may cause the output unit of the medical facility terminal 4 to display the contents of the alert, output an alert sound, or the like. Furthermore, for example, the alert unit 33 may cause the output unit of the patient terminal 3 to display the contents of the alert, display advice based on the contents of the alert, output an alert sound, and the like. Furthermore, for example, the alert unit 33 may output an alert to a terminal of an administrator of the biometric information acquisition system according to this embodiment or a terminal of an affiliated institution other than the medical facility, in addition to the medical facility terminal. Then, for example, when an error (alert) is received, the administrator, etc. may take action based on the error. For example, when a bedridden elderly person or a user of a care facility wears the wearable device 2 and a predetermined error occurs, the administrator (service staff) or a staff member of the affiliated institution (for example, a caregiver or a nurse) may escalate the situation based on the error content received (for example, contacting a guarantor or guardian, contacting a doctor for emergency response).

[0033] The display control unit 34 controls the display (display means) of the medical facility terminal 4 to display the biological information and the terminal information. In this embodiment, the display control unit 34 displays, on the above-mentioned display, an image showing the wearable device 2, an image (item) showing the position of the sensor of the wearable device 2, and the bioinformation acquired by the sensor, based on the bioinformation and the terminal information. For example, in the case of a clothing-type wearable device 2, the image showing the wearable device 2 is an item showing the shape of the clothing. Furthermore, the display control unit 34 controls the display unit to display operation units (such as touch buttons) corresponding to operations that can be controlled by the medical facility terminal 4 (for example, turning lights on / off) based on the terminal information. The display control unit 34 may display the biological information and the terminal information not only on the doctor's side but also on the patient's terminal 3. This allows the doctor and the patient to talk while looking at the same data (e.g., biological information), allowing the patient to understand their own symptoms more deeply. In addition, there may be multiple patient terminals 3 on the patient side and multiple medical facility terminals 4 on the doctor side. This allows, for example, a patient to receive online medical treatment on a tablet PC while viewing data on another PC or mobile terminal.

[0034] The control information receiving unit 35 receives control information for the wearable device 2 from the medical facility terminal 4. For example, the control information receiving unit 35 receives, from the medical facility terminal 4, a designation of one or more sensors among the multiple sensors in the wearable device 2. Furthermore, for example, the control information receiving unit 35 receives information related to various controls in the wearable device 2 from the medical facility terminal 4. Examples of the information related to various controls include turning on / off the lights, the imaging position and zooming in / out, and the selection of the type of biometric information to be acquired. There may be a plurality of medical facility terminals 4. For example, when an internist examines a patient in cooperation with a specialist, the specialist may perform operations (e.g., designate a sensor, etc.) and the internist may view biological information, etc. It is also possible for a trainee doctor to view the status of operations being performed by a specialist doctor. Specific operating procedures and timing can be recorded or the procedures can be logged, so that similar procedures can be followed next time based on the optimal procedure records and information registered as case studies, or machine learning can be used to create procedures for more accurately understanding the patient's condition.

[0035] The control information transmitter 36 instructs the wearable device 2 to control the wearable device 2 based on the control information received by the control information receiver 35 described above (transmits instruction information). For example, the control information transmitter 36 instructs the wearable device 2 to acquire biological information corresponding to a designated sensor. In addition, the wearable device 2 that has received the control information controls various sensors, etc., based on the control information. In addition, the control information of the wearable device 2 may be transmitted to the wearable device 2 via the patient terminal 3.

[0036] In addition, in the storage unit 18 of the server 1 shown in FIG. The biological information DB 41 and the terminal information DB 42 may store information not only in-house but also acquired by, for example, connecting to an external DB unique to the testing device via API. For example, when MRI or X-ray data is viewed using the dashboard function according to the present embodiment, information from a database not stored in the company's server may be read.

[0037] The biometric information DB 41 is a database in which the biometric information acquired by the acquisition unit 31 is stored. The stored biometric information is managed, for example, for each patient (identification ID) in association with the type of sensor, the value of the biometric information (blood pressure, etc.), the acquisition date and time, etc. These pieces of information may be stored in an encrypted state. In this case, the information is decrypted based on information of a specific decryption key.

[0038] The terminal information DB 42 is a database in which the terminal information acquired by the acquisition unit 31 is stored. The stored terminal information is managed, for example, for each terminal (wearable device 2) by linking it with the product number, the type and position of the sensor, the installed functions (for example, light, camera, etc.). This information may be stored in an encrypted state. In this case, it is decrypted based on the information of a specific decryption key.

[0039] <Processing content> Fig. 5 is a diagram showing an example of a biological information acquisition process according to the present embodiment. Fig. 5 shows the process in the server 1, but the wearable device 2, the patient terminal 3, the medical facility terminal 4, etc. are assumed to perform processes in conjunction with the process of the server 1 as appropriate.

[0040] In step S1, the acquisition unit 31 acquires biological information of the patient (subject) acquired by a sensor provided in a wearable device 2 (first terminal) worn by the patient, and terminal information including the type of the wearable device 2.

[0041] In step S2, the association unit 32 associates the above-mentioned biological information with the position of the sensor in the wearable device 2 at which the biological information was acquired (the position corresponding to the part of the patient's body).

[0042] In step S3, the alert unit 33 judges whether the above-mentioned biological information is normal or not. For example, the alert unit 33 judges the biological information to be "normal" when it is within a predetermined range, and judges the biological information to be "abnormal (not normal)" when it is outside the predetermined range. Also, for example, based on the patient's past biometric information, the alert unit 33 determines that the biometric information is "normal" if a difference of less than a predetermined value occurs from the average value of the past biometric information, and determines that the biometric information is "abnormal" if a difference of more than a predetermined value occurs from the average value of the past biometric information.

[0043] In step S4, the alert unit 33 judges whether the judgment in step S3 is "abnormal". If it is "abnormal", the process proceeds to step S5, and if not (if it is "normal"), the process proceeds to step S6.

[0044] In step S5, the alert unit 33 presents an alert to the medical facility terminal 4. The alert unit 33 may display the above-mentioned alert on the display units of both the medical facility terminal 4 and the patient terminal 3, or on multiple medical facility terminals 4 and multiple patient terminals 3 as necessary. The contents of the alert are recorded in the biological information DB.

[0045] In step S6, the display control unit 34 displays the biological information and the terminal information on the display of the medical facility terminal 4.

[0046] In step S7, the control information receiving unit 35 receives control information for the wearable device 2 from the medical facility terminal 4.

[0047] In step S8, the control information transmitter 36 transmits instruction information to the wearable device 2 to control the wearable device 2 based on the control information accepted by the control information accepting unit 35 described above. It is assumed that the wearable device 2 that has received the instruction information acquires biological information of the patient in accordance with the instruction information and transmits the biological information to the server 1. The subsequent processing is the same as steps S1 to S8 described above.

[0048] <Application Examples> 6 to 11 are diagrams showing application examples of the biometric information acquisition system according to this embodiment. A doctor can check the biological information acquired by the wearable device 2 shown in Figures 6 to 11 on the medical facility terminal 4 (vital information dashboard). In addition, by specifying various sensors, the doctor can check the biological information (numerical information, sound information, etc.) acquired by the specified sensor.

[0049] <Function for Internal Medicine 1> FIG. 6 is a diagram showing an application example (1) in online medical consultation for internal medicine. As shown in FIG. 6, by having a patient wear a clothing-type wearable device 2 equipped with various sensors, the functionality of a stethoscope used in face-to-face medical treatment can be provided in real time in online medical treatment. That is, by using the wearable device 2 shown in FIG. 6, the following effects can be obtained. - You can hear the sound of the location you selected on the screen of the Medical Facility Terminal 4. - Ability to grasp the patient's ventral and dorsal vital signs - Information that can be obtained with a stethoscope in face-to-face medical treatment can also be obtained through online medical treatment.

[0050] Examples of biological information acquired by the wearable device 2 shown in FIG. 6 include lung sounds, abdominal sounds, back sounds, heart sounds, body temperature, and electrocardiograms. In the example of FIG. 6, sound sensors, temperature sensors, electrocardiogram sensors, etc. are provided at positions indicated by symbols V1 to V9. In addition, items indicated by symbols D1 to D9 are displayed on the medical facility terminal 4 at positions corresponding to symbols V1 to V9. A doctor can grasp (check) the biological information acquired by a desired sensor by selecting (for example, touching a display unit equipped with a touch panel). In addition, a doctor can switch between the ventral side and the dorsal side of the clothing-side wearable device 2 by selecting (for example, touching) a ventral button B1 or a dorsal button B2 displayed on the display unit of the medical facility terminal 4. (It is assumed that various sensors are provided on the dorsal side as well as the ventral side of the wearable device 2). A doctor can check the patient's vital signs in the area indicated by the symbol D10. The type and number of sensors provided in wearable device 2 are not particularly limited, and a plurality of sensors of each type may be provided.

[0051] In the example of Figure 6, the following specifications are used, taking into consideration the items necessary for a doctor to make an accurate diagnosis. The chest is divided into right and left -Sensors are installed to listen to the sounds of the upper, middle, and lower lung fields (12 locations in the front, back, left, and right) Regarding the heart, sensors are installed to listen to the base (right and left), apex, and center of the heart.

[0052] The doctor can listen to the sound of the selected part by clicking on the part he / she wants to hear on the medical facility terminal 4 (tablet, PC, etc.). It is assumed that the images of the wearable device 2 and the sensor displayed on the medical facility terminal 4 match the positions of the actual wearable device 2 and the sensor. In addition, actual stethoscopes come in bell and diaphragm types, and some are designed to listen primarily to low tones and others to listen primarily to high tones, so it may be useful to have a function for switching between these as needed. Also, an auto mode may be provided so that sounds are acquired in a pre-set order. Furthermore, when the above-mentioned alert unit 33 judges that there is an abnormality, it may suggest, "Would you like to listen again to the sound of the area where there is suspected to be an abnormality?" In addition, if past biometric information (e.g., respiratory sounds) of the target patient is available, the previous sound and the current sound may be output alternately for comparison with the past (e.g., previous) sound, thereby indicating whether or not there is improvement. The doctor may be allowed to choose whether or not to permit audio recording. Furthermore, wearable device 2 may be made of stretchy fabric so that the position of the sensor can be adjusted to some extent even when worn by an overweight person. The positions of the patient's heart and lungs may be identified based on biological information acquired by a plurality of sensors.

[0053] <Function for Internal Medicine 2> FIG. 7 is a diagram showing an application example (2) in online medical consultation for internal medicine. As shown in FIG. 7, by having a patient wear a clothing-type wearable device 2 equipped with various sensors, the functions of a blood pressure monitor used in face-to-face medical treatment can be provided in real time even in online medical treatment. That is, by using the wearable device 2 shown in FIG. 7, the following effects can be obtained. - Patient's blood pressure and heart rate can be monitored in real time - Blood pressure can be measured at any desired location, such as the arm or wrist. - Biometric information (blood pressure) can be checked on the medical facility terminal 4

[0054] Examples of biological information acquired by the wearable device 2 shown in FIG. 7 include blood pressure at various positions. 7, pressure sensors for measuring blood pressure are provided at positions indicated by symbols V11 to V14. Furthermore, on the medical facility terminal 4, items indicated by symbols D11 to D14 are displayed at positions corresponding to symbols V11 to V14.

[0055] The position of the blood pressure sensor may be remotely operated (controlled) by a doctor. There may also be a feature that allows a doctor to remotely change the electromagnetic field if the sensor electrodes are weak. Also, a function may be provided that allows a doctor to adjust the sensitivity remotely, since the sensor may not react to an obese person at normal sensitivity. In addition, since there may be a difference in blood pressure between the right and left sides, it is preferable that the blood pressure sensor is attached to both sides. If the difference in blood pressure between the left and right sides exceeds a specified value, an alert may be presented.

[0056] <Function for Internal Medicine 3> FIG. 8 is a diagram showing an application example (3) in online medical consultation for internal medicine. As shown in FIG. 8, by having a patient wear a clothing-type wearable device 2 equipped with various sensors, the functions of an electrocardiogram measuring device used in face-to-face medical treatment can be provided in real time even in online medical treatment. That is, by using the wearable device 2 shown in FIG. 8, the following effects can be obtained. - ECG can be monitored in real time For example, it is possible to obtain an electrocardiogram in a 12-lead electrocardiogram test (it is also possible to obtain an electrocardiogram at three points: the right shoulder, left shoulder, and abdomen) - Biometric information (electrocardiogram) can be checked on the medical facility terminal 4

[0057] An example of biological information acquired by the wearable device 2 shown in FIG. 8 is an electrocardiogram. In the example of Fig. 8, electrocardiogram sensors are provided at positions indicated by symbols V21 to V29 (including some). Items indicating electrocardiograms indicated by symbols D21 to D22 are also displayed on the medical facility terminal 4. Note that, although nine sensors are displayed as an example in the example of Fig. 8, for example, twenty sensors may be provided and the doctor may decide which sensor to use. This allows the sensor provided at the position corresponding to the doctor's desired part (part of the patient's body) to be used, regardless of the body shape of the patient wearing the wearable device 2. In addition, the medical facility terminal 4 may display items for the doctor to specify at positions corresponding to symbols V21 to V29.

[0058] As above, there may be a feature that allows the physician to remotely change the electromagnetic field if the sensor electrodes are weak. As described above, a function may be provided for a doctor to remotely adjust the sensitivity. In addition, a function may be provided for a doctor to remotely change the electromagnetic field if the sensor electrodes are weak. In addition, the application on the patient terminal 3 may provide guidance on how to wear the wearable device 2 (for example, "please wear the left side closer together"), in which case an alert may be displayed to the patient to let them know whether the device is being worn correctly. In addition, when a malfunction of the equipment (for example, a voltage drop, etc.) occurs, the malfunction may be automatically detected and an alert may be issued. In addition, by attaching a pad equipped with an electrocardiogram sensor to the patient's own clothing, the patient's clothing may be used as the wearable device 2. In this case, biological information is transmitted from the pad to the patient terminal 3.

[0059] <Functions for ophthalmology> FIG. 9 is a diagram showing an application example in online ophthalmology consultation. As shown in Figure 9, by having a patient wear a goggle-type wearable device 2 equipped with various sensors, the functions of an ophthalmic examination machine used in face-to-face consultations can be provided in real time even in online consultations. That is, by using the wearable device 2 shown in FIG. 9, the following effects can be obtained. - Real-time information specific to ophthalmology can be obtained -Perform detailed operations and light control

[0060] Examples of biological information acquired by the wearable device 2 shown in FIG. 9 include information on the fundus, slit lamp, corneal wound, eyesight, intraocular pressure, and corneal condition. 9, an image of the eye indicated by reference symbol D31, the intraocular pressure (not shown), etc. are displayed on the medical facility terminal 4. Examples of the image of the eye that may be displayed include the sclera, iris, cornea, anterior chamber, crystalline lens, and vitreous body (including a part thereof). Moreover, the doctor can change the type of image shown in reference symbol D31 by selecting one of the buttons shown in reference symbols B31 to B33. Furthermore, the doctor can control the ON / OFF of the illumination (light) in the wearable device 2 by pressing (or touching) the button indicated by the reference symbol B34. Furthermore, the doctor can change the range and position included in the image shown by the symbol D31 by pressing (or touching) the button shown by the symbol B35. Note that, for example, the doctor can also control the display of the wearable device 2 to display an image for a visual acuity test or the like.

[0061] In addition, the position of the patient's eyelashes, etc. may be recognized to check whether the patient is wearing the wearable device 2 correctly, and an alert may be output if the patient is not wearing the wearable device correctly.

[0062] <Functions for Internal Medicine and Otolaryngology> FIG. 10 is a diagram showing an application example in online otolaryngological consultation. As shown in FIG. 10, by having a patient wear a headphone-type wearable device 2 equipped with various sensors, the functions of an otoscope used in face-to-face medical examinations can be provided in real time even in online medical examinations. That is, by using the wearable device 2 shown in FIG. 10, the following effects can be obtained. - Visual information specific to ENT can be grasped in real time -Perform detailed operations and light control -Can zoom in or out

[0063] Examples of biological information acquired by the wearable device 2 shown in FIG. 10 include visual images (tympanic membrane, outer ear, nasal cavity, etc.), tympanometry (pressure), hearing, the state of the oral cavity, the larynx, and the like. In the example of Fig. 10, a disposable cover indicated by reference symbol V41 can be attached. The disposable cover is provided with, for example, a camera (imaging unit), a light, etc. Also, an image indicating tympanometry indicated by reference symbol D41 is displayed on the medical facility terminal 4. Furthermore, the doctor can change the type of image (visual image, hearing, tympanometry, etc.) shown in D41 by selecting buttons B41 to B43. When displaying a visual image, a button for controlling ON / OFF of lighting in the wearable device 2 may be displayed. For hearing, for example, a button for controlling the wearable device 2 to emit a predetermined sound for testing hearing may be displayed. Moreover, the doctor can change the range and position included in the image shown by reference symbol D41 by pressing (or touching) the button shown by reference symbol B44.

[0064] It is also possible to recognize and display whether the biological information is from the left or right ear. In this case, when putting on the wearable device 2, the patient should wear the wearable device 2 while distinguishing between the left and right ears. Also, an auto mode may be provided, for example, to diagnose the left and right in turn. Also, an alert may be presented when the surrounding noise is loud (for example, above a certain decibel). For example, if the volume of the television is loud, an alert such as "Please turn it off" may be presented.

[0065] <Functions for Dermatology> FIG. 11 is a diagram showing an application example in online medical consultation in dermatology. As shown in Fig. 11, by having a patient wear (operate) a wearable device 2 equipped with various sensors, the dermoscopy function used in face-to-face medical treatment can be provided in real time in online medical treatment. The wearable device 2 shown in Fig. 11 is equipped with, for example, a camera (imaging unit), a light, etc. That is, by using the wearable device 2 shown in FIG. 11, the following effects can be obtained. - Visual information specific to dermatology can be grasped in real time -Perform detailed operations and light control -Can zoom in or out

[0066] Examples of biological information acquired by the wearable device 2 shown in FIG. 11 include information related to a visual image (such as an image of the surface of the skin). In the example of FIG. 11, the medical facility terminal 4 displays a visual image of the skin indicated by reference symbol D51. Furthermore, the doctor can change the type of image shown in D41 by selecting a button shown in B51. When displaying a visual image, a button for controlling ON / OFF of the illumination (light) in the wearable device 2 may be displayed. Moreover, by the doctor pressing (or touching) the buttons indicated by the symbols B52 to B54, the range or position included in the image indicated by the symbol D41 can be changed or enlarged / reduced.

[0067] Other features In addition to the functions shown in FIGS. 6 to 11, for example, biological information acquired by the following devices (having a communication function) can be grasped in real time. Fetal heart rate, fetal movement, and uterine contraction pressure in online obstetrics consultations (Wearable device 2 is an NST measurement device equipped with an ultrasonic transducer.) Biometric information obtained by combining a body composition scale and a wristwatch-type device (e.g., weight, body fat, basal metabolism, muscle mass, BMI, blood sugar level, etc.) Biometric information acquired by a wristwatch-type device (e.g., systolic blood pressure, diastolic blood pressure, heart rate, etc.) Biometric information obtained by a pulse oximeter (e.g., oxygen saturation, heart rate, etc.) Biological information obtained by blood glucose measuring devices (e.g., random blood glucose, continuous blood glucose, etc.) Biometric information acquired by electroencephalography devices (e.g., brainwaves, etc.) Biometric information collected by other designated contactless devices

[0068] <Advantageous Effects of the Present Embodiment> According to the above-described embodiment, in online medical care, a doctor can obtain a patient's biological information in real time. It is also possible to compare the biological information with the patient's past biological information. By using a wearable device, the burden on the patient (user) can be reduced, and biological information can be obtained for a long time without interfering with the measurement operation. Furthermore, by obtaining a patient's biological information in real time during online medical care, the patient can receive a diagnosis from a specialist regardless of the area where he or she lives. This makes it possible to flexibly detect symptoms early and prevent recurrence, which leads to reduced medical costs and improved quality of life for citizens.

[0069] Furthermore, according to the above-described embodiment, the doctor can remotely control the wearable device 2 to obtain the biological information that the doctor intends, in the same way as in face-to-face medical treatment.

[0070] According to the above-mentioned embodiment, the patient's biological information can be acquired without depending on the device by using the protocol, API, and SDK of information that can be installed on any device (wearable device 2; hardware communication device). The information stored in the storage area of ​​the device body may be read by a reading terminal connected to a computer, thereby enabling indirect remote acquisition of medical information. For example, a recording medium such as FeliCa (registered trademark) may be inserted in the blood pressure monitor, and the patient's condition may be grasped by reading the recording medium. Furthermore, the steps instructed by the doctor through remote control may be stored in the recording medium in advance, and the contents of the recording medium may be read into a specific hardware to read the patient's biological information at the steps specified in advance by the doctor. The recording medium may be of a non-contact type or a contact type.

[0071] Furthermore, according to the above-described embodiment, abnormalities in biological information detected by the alert unit (eg, AI) are presented to a doctor, so that the abnormalities are not overlooked and an accurate diagnosis can be made.

[0072] According to the above-described embodiment, the acquired biological information can be stored in the storage unit and accumulated as an electronic medical record. The accumulated data can be checked by the patient himself / herself using a patient terminal or the like. The accumulated data can also be used as various research data.

[0073] Furthermore, according to the above-described embodiment, the wearable device 2 can be lent or leased for online medical care, thereby making accurate online medical care more widely available.

[0074] Although one embodiment of the present invention has been described above, the present invention is not limited to the above-described embodiment, and modifications, improvements, etc. within the scope that can achieve the object of the present invention are included in the present invention.

[0075] (Modification) In the above embodiment, the alert unit detects abnormalities in biometric information and presents them on the medical facility terminal, but the alert unit (AI) may learn the patterns of tests in online medical care and issue an alert when a test is missed from the next time onwards. Also, the patient may obtain biometric information every day at home, and the alert unit may present suggestions for improving lifestyle habits based on the biometric information.

[0076] In addition, in the above-described embodiment, no particular mention is made of the size of the wearable device, but the wearable device may be used in a size that matches the patient's body shape, such as S, M, L, etc. Also, various sensors may be made detachable and attached to existing clothing (for example, they may be attached to the clothing).

[0077] In the above embodiment, an example has been described in which a doctor in a medical facility and a patient conduct online medical examinations, but the present invention is not limited to this and may also be applied to, for example, regular medical examinations (e.g., eye examinations) in a nursing care facility. In this case, it is preferable that a caregiver or nurse is present on-site to support the operation of the wearable device 2.

[0078] In the above embodiment, an example was described in which biological information and the like is transmitted when an instruction from a user, a doctor, or the like is received, but even if no instruction is received, the biological information acquired is automatically stored in a memory area set in the wearable device by wearing the wearable device and turning on the power, and the information stored in the memory area of ​​the wearable device at the time of connecting to a patient terminal via a network may be stored in a server via the patient terminal (such as a mobile phone). This is in consideration of dealing with wearable device terminals that require 24-hour monitoring due to a communication environment being cut off, for example.

[0079] In the above-described embodiment, the wearable device may include a non-stress test (NST) measurement device equipped with an ultrasonic transducer used in online obstetrics medical care.

[0080] In the above-described embodiments, the wearable device may include at least one of a measuring device that measures biological information including body shape information by being worn, and a measuring device that measures facial color. Here, an example of a measuring device that is worn to measure biological information including body shape information is a full-body suit type device. Furthermore, an example of a measuring device for measuring facial color is a device that measures facial color based on image information captured when a user wears eyeglasses having a frame showing a plurality of colors.

[0081] In the above-described embodiment, the control information receiving unit 35 (receiving means) may receive diagnosis information relating to a specific diagnosis (for example, asthma). At this time, the display control unit 34 (display control means) may highlight and display information corresponding to the diagnosis information from at least one of the biological information, drug information, and medical records on the display (display means) of the medical facility terminal 4 (second terminal). For example, when the diagnosis information "asthma" is received from a doctor, the medical facility terminal 4 may display information such as "breath sounds" which is biological information corresponding to "asthma" and "steroids" which is drug information.

[0082] In addition, in the above-mentioned embodiment, the display control unit 34 (display control means) may display information corresponding to the above-mentioned diagnosis information on the display (display means) of the medical facility terminal 4 (second terminal) in the case of an initial online medical consultation. Specifically, it is advisable to group by medical department, pick out those related to blood pressure, for example, and display them as information corresponding to the diagnosis information.

[0083] (others) Also, for example, the above-mentioned series of processes can be executed by hardware or software. In other words, the above-mentioned functional configuration is merely an example and is not particularly limited. That is, it is sufficient that the information processing system is provided with a function capable of executing the above-mentioned series of processes as a whole, and the type of functional block used to realize this function is not particularly limited to the above example. In addition, the location of the functional block is not particularly limited to that shown in FIG. 4 and may be arbitrary. For example, the functional block of the server may be transferred to another terminal, device, etc. Conversely, the functional block of the other terminal or device may be transferred to the server, etc. In addition, one functional block may be configured as a single piece of hardware, may be configured as a single piece of software, or may be configured as a combination of them.

[0084] When a series of processes is executed by software, a program constituting the software is installed in a computer or the like from a network or a recording medium. The computer may be a computer built into dedicated hardware. The computer may also be a computer capable of executing various functions by installing various programs, such as a server, a general-purpose smartphone, or a personal computer.

[0085] The recording medium containing such a program may be configured not only as a removable medium (not shown) distributed separately from the device main body in order to provide the program to the user, etc., but also as a recording medium etc. provided to the user in a state in which the medium is pre-installed in the device main body. Since the program can be distributed via a network, the recording medium may be mounted on or accessible to a computer connected or connectable to the network.

[0086] In this specification, the steps describing the program recorded on the recording medium include not only processes performed in chronological order, but also processes that are not necessarily performed in chronological order but are performed in parallel or individually. In addition, in this specification, the term "system" refers to an overall device composed of multiple devices, multiple means, etc.

[0087] In other words, the information processing device to which the present invention is applied can take various forms having the following configurations. That is, (1) it is an information processing device having an acquisition means (e.g., acquisition unit 31) that acquires biometric information of a subject acquired by a sensor (including an imaging sensor) provided on a first terminal worn by the subject and terminal information including a type of the first terminal, a storage means (e.g., storage unit 18) that stores the acquired biometric information and the terminal information, a display control means (e.g., display control unit 34) that displays the biometric information and the terminal information on a display means of a second terminal different from the first terminal, a reception means (e.g., control information reception unit 35) that receives control information for the first terminal from the second terminal, and an instruction means (e.g., control information transmission unit) that instructs the first terminal to control the first terminal based on the received control information. This enables medical professionals to accurately obtain biometric information of patients during online medical consultations, etc.

[0088] Also, (2) the display control means may display, on the display means, an image showing the first terminal, an image showing the position of the sensor of the first terminal, and the biometric information acquired by the sensor based on the biometric information and the terminal information. This allows a doctor or the like to accurately know, for example, which wearable device acquired biological information and from which position (site).

[0089] Also, (3) the first terminal is provided with a plurality of the sensors, the receiving means receives designation of one or more of the plurality of sensors from the second terminal, and the instruction means instructs the first terminal to acquire biometric information corresponding to the designated sensor. This allows a doctor or other medical professional to instruct the sensor at a desired position to acquire biometric information corresponding to the sensor, thereby enabling biometric information to be acquired according to the doctor or other medical professional's wishes, just as in face-to-face medical treatment.

[0090] Also, (4) the terminal information includes information regarding the position of the sensor in the first terminal, and the device may further have a matching means (e.g., a matching unit 32) that matches the biometric information with the position of the sensor in the first terminal from which the biometric information was acquired. This allows a doctor or other medical professional to check the medical facility terminal and determine which sensor in the wearable device is corresponding to the biological information that is being acquired.

[0091] Also, (5) it is preferable that the device further includes a first alert means (for example, an alert unit 33) that presents an alert to the second terminal when the biological information is outside a predetermined range. As a result, if an abnormality occurs in the biological information, the abnormality will not be overlooked and appropriate medical treatment can be received.

[0092] In addition, (6) it is preferable that the device further includes a second alert means for presenting an alert to the second terminal based on past biological information of the subject. This allows a comparison with the patient's past information, and if an abnormality is found in the biological information, the abnormality will not be overlooked and the patient can receive appropriate medical treatment.

[0093] Also, (7) the first terminal may include an NST (Non-Stress Test) measuring device equipped with an ultrasonic transducer used in online obstetrics consultations. This will enable non-stress test information to be sent, stored, viewed, etc. in online obstetric consultations.

[0094] Also, (8) it is preferable that the first terminal includes at least one of a measuring device that measures the biometric information including body shape information by being worn, and a measuring device that measures facial color. This makes it possible to obtain information such as body shape and complexion that could not be obtained with conventional biometric information acquisition devices.

[0095] Also, (9) the receiving means receives diagnostic information relating to a specific diagnosis, and the display control means displays, in an highlighted manner on the display means of the second terminal, information corresponding to the diagnostic information from at least one of the biological information, drug information, and medical records. This allows diagnostic information regarding the diagnosis to be automatically displayed.

[0096] Also, (10) in the case of an initial online medical consultation, the display control means may display information corresponding to the diagnosis information on the display means of the second terminal. This allows patient information to be displayed to a doctor or other person in advance, like a medical questionnaire.

[0097] In addition, (11) this can also be considered as a control method for an information processing device having an acquisition step of acquiring biometric information of a subject acquired by a sensor (including an imaging sensor) provided on a first terminal worn by the subject and terminal information including a type of the first terminal, a display control step of displaying the biometric information and the terminal information on a display means of a second terminal different from the first terminal, a receiving means of receiving control information for the first terminal from the second terminal, and an instruction step of instructing the first terminal to control the first terminal based on the received control information.

[0098] (12) an acquisition step of acquiring biometric information of the subject acquired by a sensor (including an image sensor) provided in a first terminal worn by the subject, and terminal information including a type of the first terminal; a display control step of displaying the biometric information and the terminal information on a display means of a second terminal different from the first terminal; A receiving means for receiving control information for the first terminal from the second terminal; an instruction step of instructing the first terminal to control the first terminal based on the received control information; It can also be considered as a computer program for causing a computer to execute the above. [Explanation of symbols]

[0099] 1: Server 2: Wearable device 3: Patient terminal 4: Medical facility terminal 11: CPU 18: Memory unit 19: Communication unit 31: Acquisition unit 32: Correspondence unit 33: Alert section 34: Display control section 35: Control information receiving section 36: Control information transmission unit

Claims

1. an acquisition means for acquiring biometric information of the subject acquired by a sensor provided in a first terminal worn by the subject, and terminal information including a type of the first terminal; a storage means for storing the acquired biometric information and the acquired terminal information; a display control means for controlling the display of information based on the biometric information and the terminal information on a display means of a second terminal different from the first terminal; a receiving means for receiving control information for the first terminal from the second terminal; an instruction means for instructing the first terminal to control the first terminal based on the received control information; and the terminal information includes a product number and a position of a sensor in the first terminal; The display control means controls the information processing device to display, on the display means, an image showing the first terminal, an image showing the position of the sensor of the first terminal, and the biometric information acquired by the sensor based on the biometric information, the product number, and the position of the sensor.

2. The first terminal is provided with a plurality of the sensors, the accepting means accepts designation of one or more sensors from the second terminal; the instruction means instructs the first terminal to acquire biometric information corresponding to a designated sensor; The information processing device according to claim 1 .

3. the terminal information includes information about a position of the sensor in the first terminal; The device further includes an association unit that associates the biometric information with a position of the sensor in the first terminal identified based on the terminal information. The information processing device according to claim 1 .

4. The device further includes a first alert means for presenting an alert to the second terminal when the biological information is outside a predetermined range. The information processing device according to claim 1 .

5. The method further includes a second alert means for presenting an alert to the second terminal based on past biological information of the subject. The information processing device according to claim 1 .

6. The first terminal includes an NST (Non-Stress Test) measuring device equipped with an ultrasound transducer used in online obstetric consultations. The information processing device according to claim 1 .

7. the first terminal includes at least one of a measurement device that measures the biometric information including body shape information when worn, and a measurement device that measures facial color; The information processing device according to claim 1 .

8. the receiving means receives diagnostic information relating to a specific diagnosis; the display control means controls the display means of the second terminal to highlight and display information corresponding to the diagnostic information among at least one of the biological information, the drug information, and the medical record. The information processing device according to claim 1 .

9. The display control means controls the display means of the second terminal to display information corresponding to the diagnosis information in the case of an initial online medical consultation. The information processing device according to claim 8 .

10. an acquisition step of acquiring biometric information of the subject acquired by a sensor provided in a first terminal worn by the subject and terminal information including a type of the first terminal; a display control step of controlling the display of information based on the biometric information and the terminal information on a display means of a second terminal different from the first terminal; a receiving step of receiving control information for the first terminal from the second terminal; an instruction step of instructing the first terminal to control the first terminal based on the received control information; and the terminal information includes a product number and a position of a sensor in the first terminal; A control method for an information processing device that, in the display control step, controls the display means to display an image showing the first terminal, an image showing the position of the sensor of the first terminal, and the biometric information acquired by the sensor based on the biometric information, the product number, and the position of the sensor.

11. an acquisition step of acquiring biometric information of the subject acquired by a sensor provided in a first terminal worn by the subject and terminal information including a type of the first terminal; a display control step of controlling the display of information based on the biometric information and the terminal information on a display means of a second terminal different from the first terminal; a receiving step of receiving control information for the first terminal from the second terminal; an instruction step of instructing the first terminal to control the first terminal based on the received control information; A computer program for causing a computer to execute the terminal information includes a product number and a position of a sensor in the first terminal; In the display control step, based on the biometric information, the product number, and the position of the sensor, an image showing the first terminal, an image showing the position of the sensor of the first terminal, and the biometric information acquired by the sensor are controlled to be displayed on the display means. Computer program.