Eye-related information processing program, eye-related information processing method, and eye-related information processing system
The eye-related information processing system addresses the challenge of presenting user-specific eye health information by generating and prioritizing relevant content based on type and time, ensuring timely and effective information delivery.
Patent Information
- Application Number
- JP2024071903
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-04-25
- Publication Date
- 2025-11-07
AI Technical Summary
Existing technologies fail to appropriately present eye health information to users, requiring them to independently select relevant information, which is not user-friendly.
An eye-related information processing system that generates and displays priority eye health information based on type and time of occurrence, enhancing display levels such as amount, size, and emphasis for timely and relevant information presentation.
Facilitates easy and appropriate presentation of eye health information to users, allowing them to grasp critical information quickly and take appropriate actions.
Smart Images

Figure 2025167364000001_ABST
Abstract
Description
[Technical Field]
[0001] The present disclosure relates to an eye-related information processing program, an eye-related information processing method, and an eye-related information processing system for providing a user with eye health-related services. [Background technology]
[0002] Conventionally, technologies for providing users with health-related services have been proposed. For example, a system described in Patent Document 1 creates advice for a good night's sleep based on the user's sleep state and living environment data, and provides the created advice to the user. [Prior art documents] [Patent documents]
[0003] [Patent Document 1] Patent Publication No. 2021-135000 Summary of the Invention [Problem to be solved by the invention]
[0004] Various factors affect a user's health. For example, when considering a user's eye health, looking at a display for long periods of time increases the risk of developing symptoms such as dry eyes and eye strain. Furthermore, at least one of sleep deprivation, nutritional status, and blink frequency can adversely affect eye health. Therefore, in order to appropriately provide users with eye health services, it is desirable to process and present multiple pieces of information that may affect eye health. However, simply presenting multiple pieces of information requires users to independently select the information they need at that time from the presented pieces of information. Therefore, a technology capable of more appropriately presenting eye health information to users is desirable.
[0005] A typical object of the present disclosure is to provide an eye-related information processing program, an eye-related information processing method, and an eye-related information processing system that can more appropriately present information about eye health to a user. [Means for solving the problem]
[0006] An eye-related information processing program provided by a typical embodiment of the present disclosure is an eye-related information processing program executed in an eye-related information processing system that processes eye-related information related to the eye health of a user to provide the user with an eye health-related service, the eye-related information processing system including a user device used by the user, and the eye-related information processing program executed by a control unit of the eye-related information processing system to perform an information acquisition step of acquiring eye-related information of the user using the user device, an output information generation step of processing the acquired eye-related information to generate output information to be output by the user device, and a trigger for executing the service being input. The eye-related information processing system is caused to execute a home screen display step in which, upon receipt of the request, a home screen of the service is displayed on a display unit whose display is controlled by the user device. In the output information generation step, multiple types of output information are generated based on each of multiple types of eye-related information that differ from each other in at least one of the type of information and the time of occurrence. In the home screen display step, output information corresponding to the current time among the multiple types of output information is determined as priority output information, and the display level of at least one of the display amount, size of the display area, and degree of display emphasis of the determined priority output information is increased above the display levels of the other output information, and the priority output information is displayed on the home screen.
[0007] An eye-related information processing method provided by a typical embodiment of the present disclosure is an eye-related information processing method executed in an eye-related information processing system that provides a user with eye health-related services by processing eye-related information related to the user's eye health, the eye-related information processing system including a user device used by the user, and including an information acquisition step of acquiring eye-related information of the user using the user device, an output information generation step of processing the acquired eye-related information to generate output information to be output by the user device, and a home screen display step of displaying a home screen of the service on a display unit display-controlled by the user device in response to input of a trigger to execute the service, wherein the output information generation step generates multiple types of output information based on each of multiple types of eye-related information that differ from each other in at least one of information type and occurrence time, and the home screen display step determines, from the multiple types of output information, output information that corresponds to the current time as priority output information, and displays the determined priority output information on the home screen with a display level of at least one of the display amount, size of the display area, and display emphasis degree increased above the display levels of the other output information.
[0008] An eye-related information processing system provided by a typical embodiment of the present disclosure is an eye-related information processing system that provides a user with eye health-related services by processing eye-related information related to the user's eye health, and includes a user device used by the user. A control unit of the eye-related information processing system executes an information acquisition step of acquiring the eye-related information of the user who uses the user device, an output information generation step of processing the acquired eye-related information to generate output information to be output by the user device, and a home screen display step of displaying a home screen of the service on a display unit whose display is controlled by the user device when a trigger for executing the service is input. In the output information generation step, multiple types of output information are generated based on each of multiple types of eye-related information that differ from each other in at least one of information type and occurrence time, and in the home screen display step, output information corresponding to the current time among the multiple types of output information is determined as priority output information, and the display level of at least one of the display amount, size of the display area, and display emphasis degree of the determined priority output information is increased above the display levels of the other output information, and the priority output information is displayed on the home screen.
[0009] According to the eye-related information processing program, eye-related information processing method, and eye-related information processing system of the present disclosure, information on eye health is presented to the user more appropriately. [Brief explanation of the drawings]
[0010] [Figure 1] 1 is a block diagram showing a schematic configuration of an eye-related information processing system 100. FIG. [Figure 2] 10 is a flowchart of an eye-related information acquisition process executed by the eye-related information processing system 100. [Figure 3] 1 is a flowchart of a main process executed by the eye-related information processing system 100. [Figure 4] FIG. 10 is a diagram showing an example of a home screen 30 when sleep information is displayed as high-level display information. [Figure 5]FIG. 10 is a diagram showing an example of a home screen 30 in which rest information is displayed as high-level display information. [Figure 6] FIG. 10 is an explanatory diagram illustrating an example of a method for changing priority output information according to time. [Figure 7] FIG. 10 is a diagram showing an example of a summary information display screen 40 in which summary information for this week is displayed. [Figure 8] FIG. 10 is a diagram showing an example of a weekly report display screen 50 in which a weekly report is displayed. DETAILED DESCRIPTION OF THE INVENTION
[0011] <Summary> The eye-related information processing system exemplified in the present disclosure processes eye-related information related to the eye health of a user, thereby providing the user with eye health-related services. The eye-related information processing program and eye-related information processing method of the present disclosure are executed by the eye-related information processing system. The eye-related information processing system includes at least a user device used by the user. A control unit of the eye-related information processing system executes an information acquisition step, an output information generation step, and a home screen display step. In the information acquisition step, the control unit acquires eye-related information of a user using the user device. In the output information generation step, the control unit processes the acquired eye-related information to generate output information to be output by the user device. In the home screen display step, the control unit displays a home screen of the service on a display unit whose display is controlled by the user device, in response to input of a trigger to execute the service. Here, in the output information generation step, the control unit generates multiple types of output information based on multiple types of eye-related information that differ from each other in at least one of information type and generation time. In the home screen display step, the control unit determines, from among the multiple types of output information, output information corresponding to the current time as priority output information, and displays the determined priority output information on the home screen with at least one display level of the display amount, size of the display area, and degree of display emphasis increased above the display levels of other output information.
[0012] According to the technology disclosed herein, multiple types of output information are generated based on multiple types of eye-related information. Of the multiple types of output information, the output information corresponding to the current time is determined as priority output information. On the home screen displayed in response to the input of a trigger to execute a service, the display level of the priority output information is increased compared to the display levels of other output information. Therefore, by checking the home screen at the start of service execution, the user can easily grasp the appropriate output information (priority output information) corresponding to the current time. Therefore, information regarding eye health is appropriately presented to the user.
[0013] Note that "displaying the priority output information at a higher display level than the other output information" means performing at least one of the following processes: increasing the display amount of the priority output information compared to the display amount of the other output information; increasing the size of the display area of the priority output information compared to the size of the display area of the other output information; and increasing the degree of emphasis of the display of the priority output information compared to the degree of emphasis of the display of the other output information.
[0014] The trigger for executing the service (i.e., the trigger for displaying the home screen) can be selected as appropriate. For example, the trigger for executing the service may be an instruction input by the user (e.g., an instruction to start an application that executes the service). Alternatively, the arrival of a predetermined time may be the trigger for executing the service.
[0015] Furthermore, each of the steps exemplified in the present disclosure may be executed by a control unit of at least one of the devices included in the eye-related information processing system. For example, the control unit of the information processing system may execute at least one of the steps. The control unit of the user device may execute at least one of the steps. Furthermore, the control units of the multiple devices (e.g., the control unit of the information processing system and the control unit of the user device) may cooperate to execute at least one of the steps.
[0016] The control unit may further execute a priority display switching step of switching information (hereinafter sometimes referred to as "high level display information"), among the multiple types of output information, that is to be displayed on the home screen at a higher display level than other output information, in accordance with instructions input by the user while the home screen is displayed.
[0017] In this case, the user can grasp the priority output information displayed at a high display level by default (for example, when the home screen is first displayed), and then easily display other output information that was displayed at a low display level by default at a high display level, thereby making it easier for information about eye health to be presented to the user more appropriately.
[0018] The control unit may receive a selection instruction for output information to be displayed at a higher display level (high-level display information) through a single user operation. In this case, the user can more easily input a selection instruction for output information to be displayed at a higher display level. However, the control unit may also receive a user instruction for selecting high-level display information through two or more user operations.
[0019] In the home screen display step, the control unit may, in response to input of the trigger, selectably display on the home screen a plurality of tabs corresponding to each of the plurality of types of output information, and, when the tab of the priority output information is selected, display the priority output information at a higher display level than the other output information. In the priority display switching step, the control unit may switch the output information of a tab selected by the user from the plurality of tabs displayed on the home screen to information that is displayed at a higher display level than the other output information.
[0020] In this case, the user can grasp the priority output information displayed at a high display level by default (for example, when the home screen is first displayed), and then easily display other output information that was displayed at a low display level by default at a high display level by simply selecting the desired tab. This makes it easier for information about eye health to be presented to the user more appropriately.
[0021] However, the specific method for switching and displaying the display levels of multiple types of output information may be changed. For example, the control unit may display only the high-level display information selected by the user on the home screen, and may switch the high-level display information displayed on the home screen in response to various operations on the touch panel (e.g., sliding a finger left or right, sliding a finger up or down, etc.). Furthermore, when high-level display information is selected, the control unit may switch the high-level display information by enlarging the display area of the selected high-level display information more than the display areas of the other output information. Furthermore, when high-level display information is selected, the control unit may switch the high-level display information by increasing the degree of emphasis (e.g., the degree of emphasis in at least one of the font size, font thickness, font color, icon size, icon color, background color, etc.) of the selected high-level display information more than the degree of emphasis of the other output information.
[0022] The eye-related information acquired in the information acquiring step may include information about the user's sleep. In the output information generating step, the control unit may process the information about sleep to generate, as output information, sleep information including at least one of information about the length and quality of the most recent sleep. In the home screen displaying step, the control unit may determine the sleep information as priority output information if the current time (e.g., the time when the home screen is displayed) is after the user's wake-up time and at least before the user's work start time.
[0023] In this case, the user can easily and appropriately understand at least one of the length and quality of their sleep by checking the sleep information displayed preferentially on the home screen at least before the start of work. Therefore, by understanding at least one of the length and quality of sleep that affects eye health, the user can take appropriate action.
[0024] The method for setting the user's wake-up time can be selected as appropriate. For example, the time at which the user is expected to wake up may be set in advance as the wake-up time. The control unit may also set the wake-up time for each day based on various information acquired by the user device (e.g., information on the time when the user device was first operated that day, or information on the time when the user device was determined to have traveled a predetermined distance or more that day using GPS or the like).
[0025] The method for setting the user's work start time can also be selected as appropriate. For example, the work start time may be set in advance. The control unit may also set the work start time for each day based on various information acquired by a user device (e.g., at least one of a plurality of user devices) (e.g., information on the time when the user device used for work by the user was started, or information entered by the user on a time card when the user started work).
[0026] When acquiring the length of a user's sleep (sleep time), the method for acquiring the sleep time can be selected as appropriate. For example, the sleep time may be acquired based on the bedtime and wake-up time input by the user to the user device. If the user uses a device (e.g., a smart watch) equipped with an optical heart rate monitor, the sleep time acquired by the heart rate monitor may be acquired. Alternatively, at least a portion of the nighttime hours when the user device is not in use may be determined as the user's sleep time according to a predetermined algorithm, and the determined sleep time may be acquired.
[0027] Furthermore, when acquiring the user's sleep quality, the method for acquiring the sleep quality can also be selected as appropriate. For example, the control unit may acquire the sleep quality by analyzing information such as the frequency with which the user device was operated while sleeping using a predetermined algorithm. Furthermore, if the user is using a device (e.g., a smartwatch) equipped with an optical heart rate monitor, the sleep quality may be acquired based on information obtained by the heart rate monitor. Furthermore, the sleep quality may be acquired based on information acquired by at least one of a temperature sensor and a microphone installed in the user's sleeping area (or nearby).
[0028] The end time of the time period for which sleep information is determined as the priority output information can also be set as appropriate. For example, the aforementioned work start time may be set as the end time of the time period for which sleep information is determined as the priority output information. Furthermore, the time at which output information other than sleep information (e.g., rest information, etc., as described below) can be generated may be set as the end time of the time period for which sleep information is determined as the priority output information.
[0029] The eye-related information acquired in the information acquisition step may include information about the user's eye rest. In the output information generation step, the control unit may process the information about the eye rest to generate, as output information, rest information indicating at least the user's most recent eye rest state. In the home screen display step, the control unit may determine the rest information as priority output information if the current time (e.g., the time when the home screen is displayed) is the user's work start time or after a predetermined time has elapsed since the work start time and is at least before the user's work end time.
[0030] In this case, the user can easily and appropriately grasp the state of their eye rest by checking the rest information displayed preferentially on the home screen during working hours, which allows the user to take appropriate actions during working hours, such as increasing the number of eye rests.
[0031] As described above, the work start time may be set in advance, or may be set for each day based on various information. Furthermore, if the start time of the time period in which break information is determined as priority output information is set a predetermined time after the work start time, the method for setting the predetermined time can be selected appropriately. For example, if the average value of events related to eye breaks per unit time is output as one piece of break information, the unit time for calculating the average value may be set as the predetermined time. The predetermined time may be set in advance.
[0032] The workday end time may be set in advance. The control unit may also set the workday end time for each day based on various information acquired by a user device (e.g., at least one of a plurality of user devices) (e.g., information on the start-up end time of a user device used by a user for work, or information entered by a user on a time card that the workday is finished).
[0033] The information about eye breaks can also be selected as appropriate. For example, when it is determined by GPS or the like that the user device has moved, the time spent moving may be defined as the "eye break duration," the number of moves may be defined as the "eye break count," and the interval between one move and the next may be defined as the "eye break interval." At least one of these pieces of information may be acquired and used as information about eye breaks to generate the break information. The control unit may also acquire information about eye breaks based on images captured by a camera capturing the user during working hours. For example, the time spent away from the user's desk may be defined as the "eye break duration," the number of times the user leaves the desk may be defined as the "eye break count," and the interval between moves may be defined as the "eye break interval." At least one of these pieces of information may be acquired and used as information about eye breaks to generate the break information. The control unit may also acquire at least one of the information about the user's blinking, the time spent gazing at the screen, the distance between the user and the screen, etc., as information about eye breaks. Here, the specific method for generating the break information can also be selected as appropriate. For example, the control unit may generate information on the number of times the user blinks as the rest information, or may generate information generated by processing the number of times the user blinks (for example, information on the average number of times blinks per unit time, etc.) as the rest information. Furthermore, the control unit may associate the distance between the user and the screen with time and generate it as the rest information, or may generate information generated by processing the distance between the user and the screen (for example, the average value of the distance per unit time, etc.) as the rest information.
[0034] The control unit may separately generate and display a plurality of pieces of output information (for example, two or more pieces of output information of "eye break time," "number of eye breaks," and "eye break interval") as the rest information, or may collectively display a plurality of pieces of rest information. When a plurality of pieces of rest information are separately displayed on the home screen, the control unit may, for example, set the most recently acquired information as the priority output information, or may set rest information different from the previously set priority output information as the next priority output information.
[0035] In the home screen display step, the control unit may switch the information determined as the priority output information from among the multiple types of output information according to a time period. At least one of the times at which the information determined as the priority output information is switched may be shifted from the start time or end time of acquisition of the output information. If the information determined as the priority output information is switched at the start time or end time of acquisition of the multiple types of output information, for example, there may be a case where insufficient output information is generated and displayed as the priority output information on the home screen even though there is not enough time to generate useful priority output information. In contrast, by shifting at least one of the times at which the information determined as the priority output information is switched from the start time or end time of acquisition of the output information, the possibility of insufficient output information being displayed as the priority output information is appropriately reduced.
[0036] For example, the time at which the priority output information is switched from other output information (e.g., sleep information, etc.) to rest information may be shifted to a time later than the workday start time, which is the start time for obtaining rest information (e.g., after a predetermined time has passed). Because few people take a break immediately after the workday start time, it is not very useful to set rest information as priority output information immediately after the workday start time. Also, rest information may be generated based on information about eye breaks taken within a certain period of time after the workday start time. In this case, the rest information generated immediately after the workday start time is likely to be insufficient. Therefore, by shifting the time at which the priority output information is switched to rest information to a time later than the workday start time, which is the start time for obtaining rest information, the rest information is more likely to be displayed on the home screen as priority output information more appropriately.
[0037] The control unit may generate other output information separately from the sleep information and rest information, or together with the sleep information and rest information, and display the other output information on the home screen. For example, the control unit may acquire information about meals input by the user as eye-related information and generate output information (meal information). The control unit may determine the meal information as priority output information for times after working hours, break times, etc. The control unit may also acquire information about the implementation of eye massages input by the user as eye-related information and generate output information (massage information). The control unit may determine the massage information as priority output information for times after working hours, break times, etc.
[0038] The configuration exemplified in the present disclosure may be modified and applied. For example, sleep and rest are particularly effective user actions for reducing eye fatigue. Rest information and sleep information can be easily collected via a terminal such as a user device, compared to collecting various types of information, such as eye drops or the use of a hot eye mask. Easier information collection reduces the burden on the user, making it easier for the user to continue using the eye information processing system. Furthermore, if the priority of sleep information or rest information can be switched on the home screen, the user can be effectively encouraged to take actions to reduce eye fatigue, even when using a small display screen such as a smartphone. Therefore, the configuration for preferentially displaying priority output information on the home screen may be excluded, and sleep information and rest information may be switched on the home screen. This configuration can be expressed as follows:
[0039] An eye-related information processing program executed in an eye-related information processing system that processes eye-related information related to the eye health of a user to provide the user with an eye health-related service, the eye-related information processing system including a user device used by the user, and the eye-related information processing program executed by a control unit of the eye-related information processing system causes the eye-related information processing system to execute an information acquisition step of acquiring eye-related information of a user using the user device, an output information generation step of processing the acquired eye-related information to generate output information to be output by the user device, and a home screen display step of displaying a home screen of the service on a display unit display-controlled by the user device when a trigger for executing the service is input, and generating, as the output information, sleep information including at least one of information on the length and quality of a most recent sleep by processing the eye-related information relating to the user's eye rest, rest information indicating at least the most recent state of the user's eye rest, wherein in the home screen display step, any of the plurality of types of output information including the sleep information and the rest information is displayed on the home screen at a higher display level than that of other output information, the display amount of information, the size of the display area, and the degree of display emphasis, and information of the plurality of types of output information that is to be displayed on the home screen at a higher display level than that of other output information is switched in accordance with an instruction input by the user while the home screen is being displayed.
[0040] <Embodiment> (System Configuration) A typical embodiment of the present disclosure will be described below with reference to the drawings. First, an example of the system configuration of an eye-related information processing system 100 in this embodiment will be outlined with reference to FIG. 1. The eye-related information processing system provides services related to the health of a user's eyes (for example, a service that analyzes the health status of the user's eyes and provides the results to the user). The eye-related information processing system 100 of this embodiment includes an information processing device 1 and user devices 20 (20A, 20B).
[0041] The information processing device 1 processes various types of information. As an example, a server is used as the information processing device 1 of this embodiment. More specifically, in this embodiment, a server of a manufacturer that provides cloud services (a so-called cloud server) is used as the information processing device 1. However, a server other than a cloud server may also be used as the information processing device 1. A device other than a server (for example, a personal computer (hereinafter referred to as a "PC")) may also be used as the information processing device 1. Furthermore, the number of devices that make up the information processing device 1 may be one or more. For example, a server and a database may work together to function as the information processing device 1, or multiple servers and PCs may work together to function as the information processing device 1.
[0042] The information processing device 1 includes a control unit 11 that controls various processes and a communication I / F 14. The control unit 11 includes a CPU 12 that is a controller responsible for control, and a storage device 13 that can store programs, data, and the like. The storage device 13 may store at least a portion of an eye-related information processing program for executing an eye-related information acquisition process (see FIG. 2) and a main process (see FIG. 3), which will be described later. The communication I / F 14 connects the information processing device 1 to external devices (e.g., multiple user devices 20, etc.) via a network 5 (e.g., the Internet, etc.).
[0043] The user device 20 (20A, 20B) is used by a user who uses the services provided by the eye-related information processing system 100. The user device 20 illustrated in this embodiment is a smartphone that can be carried by a user. However, a mobile terminal other than a smartphone (e.g., a tablet terminal) may also be used as the user device 20. Furthermore, a PC (e.g., a notebook PC) may also be used as the user device 20.
[0044] The user device 20 includes a control unit 21 (21A, 21B) that performs various control processes and a communication I / F 24 (24A, 24B). The control unit 21 includes a CPU 22 (22A, 22B) that is a controller responsible for control, and a storage device 23 (23A, 23B) that can store programs, data, and the like. The storage device 23 may store at least a portion of an eye-related information processing program for executing the eye-related information acquisition process (see FIG. 2) and main process (see FIG. 3), which will be described later. The communication I / F 24 connects the user device 20 to an external device (e.g., the information processing device 1) via the network 5. The user device 20 also includes an operation unit 25 (25A, 25B) and a display unit 26 (26A, 26B). The operation unit 25 is operated by a user to input various instructions to the user device 20. The operation unit 25 may be, for example, at least one of a touch panel, various buttons, a keyboard, a mouse, and the like. A microphone or the like for inputting various instructions may be used together with or instead of operation unit 25. Display unit 26 displays various images. Instead of operation unit 25 and display unit 26 included in user device 20, an operation unit and display unit externally connected to user device 20 may be used.
[0045] The user device 20 of this embodiment includes a step counting unit and a travel distance measuring unit. The step counting unit measures (estimates) the number of steps taken by a user carrying the user device 20. For example, the step counting unit may measure the number of steps taken by the user using an acceleration sensor, a three-axis gyro, or the like. The travel distance measuring unit measures (estimates) the travel distance (which may be walking distance) of the user carrying the user device 20. For example, the travel distance measuring unit may measure the travel distance of the user based on location information of the user device 20 acquired by a location information acquiring unit (e.g., GPS, etc.).
[0046] In this embodiment, a dedicated application for providing the user with services realized by the eye-related information processing system 100 is installed in the user device 20. By starting the application, the user device 20 displays various service provision screens (e.g., a home screen, etc.) described below on the display unit 26. However, it is also possible to change the method for displaying the service provision screens on the display unit 26 of the user device 20. For example, the information processing device 1 may display the service provision screens on a web browser of the user device 20.
[0047] (Eye-related information acquisition process) 2, the eye-related information acquisition process executed by the eye-related information processing system 100 of this embodiment will be described. The eye-related information is information related to the eye health of the user who uses the user device 20. In this embodiment, a plurality of pieces of information including sleep-related information related to the sleep of the user and rest-related information related to the rest of the user's eyes are acquired as the eye-related information.
[0048] As an example, the eye-related information acquisition process of this embodiment is executed by the CPU 22 of the user device 20. However, at least a part of the eye-related information acquisition process (e.g., the processes of storing information in S2, S4, and S6) may be executed by a device other than the user device 20 in the eye-related information system 100 (the information processing device 1 in this embodiment). Furthermore, the eye-related information acquisition process of this embodiment is executed in the background not only while the above-mentioned application installed in the user device 20 is running, but also while the application is not running. Therefore, the eye-related information of the user while the application is not running is also appropriately acquired by the eye-related information processing system 100. The control unit of the eye-related information processing system 100 (mainly the CPU 22 of the user device 20 in this embodiment) executes an eye-related information processing program stored in a storage device to perform the eye-related information acquisition process shown in FIG. 2 .
[0049] As shown in FIG. 2, the control unit determines whether sleep-related information on the user's sleep has been acquired (S1). The sleep-related information in this embodiment includes at least one of information on the user's sleep duration and information on the user's sleep quality. The information on sleep duration may be, for example, information on the bedtime and wake-up time input by the user to the user device 20. If the user uses a device equipped with an optical heart rate monitor or the like (e.g., a smart watch), the control unit may acquire the sleep duration obtained by the heart rate monitor. Alternatively, the control unit may determine at least a portion of a nighttime period when the user device 20 is not in use as the user's sleep duration according to a predetermined algorithm and acquire the determined sleep duration. The control unit may acquire information such as the frequency with which the user device 20 is operated while sleeping as information on sleep quality. Alternatively, the control unit may acquire information obtained by the heart rate monitor or the like as information on sleep quality. Alternatively, the control unit may acquire information on sleep quality based on information acquired by at least one of a temperature sensor, a microphone, and the like installed in the user's sleeping location (or nearby). When the control unit acquires the sleep-related information (S1: YES), the control unit stores the acquired sleep-related information in a storage device (S2), and the process proceeds to S3. The sleep-related information may be stored in the storage device 23 of the user device 20, or in the storage device 13 of the information processing device 1. If the sleep-related information has not been acquired (S1: NO), the process proceeds directly to S3.
[0050] The control unit determines whether or not break-related information related to the user's eye break has been acquired (S3). The method for acquiring the break-related information can be selected as appropriate. For example, when at least one of the step counting unit and the location information acquiring unit (e.g., GPS) determines that the user device 20 has moved (the user has walked), at least one of information on the duration of the movement, the number of times the user has moved within a predetermined time, and the interval between previous and next movements may be acquired as the break-related information. The control unit may also acquire the break-related information based on images captured by a camera capturing the user during working hours. For example, at least one of information on the duration of the user's absence from their desk, the number of times the user has left their desk within a predetermined time, and the interval between each absence may be acquired as the break-related information. The control unit may also acquire at least one of information on the number of times the user blinks, the duration and number of times the user looks away from the screen, the distance between the user and the screen, and the like as the break-related information. When the control unit acquires the break-related information (S3: YES), it stores the acquired break-related information in a storage device (S4), and the process proceeds to S5. The break-related information may be stored in the storage device 23 of the user device 20, or in the storage device 13 of the information processing device 1. If the break-related information has not been acquired (S3: NO), the process proceeds directly to S5.
[0051] The control unit determines whether or not eye-related information other than sleep-related information and rest-related information has been acquired (S5). For example, the control unit may acquire information about meals input by the user as eye-related information. The control unit may also acquire information about eye massage implementation input by the user as eye-related information. When the control unit acquires eye-related information other than sleep-related information and rest-related information (S5: YES), it stores the acquired eye-related information in the storage device (S6), and the process returns to S1. If eye-related information has not been acquired (S5: NO), the process returns to S1 as is. Thereafter, the processes of S1 to S6 are repeated.
[0052] (Main processing) 3 to 8, a main process executed by the eye-related information processing system 100 of this embodiment will be described. In the main process, output information generated by processing the eye-related information is displayed on the display unit 26 of the user device 20, thereby providing the user with eye health-related services. As an example, in this embodiment, the CPU 22 of the user device 20 and the CPU 12 of the information processing device 1 cooperate to execute the main process. For example, the CPU 22 of the user device 20 may execute the process of displaying various screens on the display unit 26 (e.g., S18, S19, S22, etc.), and the CPU 12 of the information processing device 1 may execute the process of generating the output information to be displayed on the display unit 26. However, it is also possible for either the CPU 22 of the user device 20 or the CPU 12 of the information processing device 1 to execute the main process independently.
[0053] Furthermore, when a trigger for starting execution of a service related to eye health is input, the control unit of the eye-related information processing system 100 starts the main processing illustrated in FIG. 3 and displays a home screen 30 (see FIGS. 4 and 5), which will be described later, on the display unit 26 of the user device 20. The trigger for starting execution of the service can be selected as appropriate. For example, the trigger for starting execution of the service may be an instruction input by the user (in this embodiment, an instruction to start an application that executes the service). Alternatively, the arrival of a predetermined time may be used as the trigger for starting execution of the service. The control unit of the eye-related information processing system 100 (mainly the CPU 22 of the user device 20 in this embodiment) executes an eye-related information processing program stored in a storage device in response to input of a trigger, thereby performing the main processing illustrated in FIG. 3.
[0054] As shown in Fig. 3, the control unit determines whether or not sleep information can be generated at that time (S11). The sleep information is output information generated by processing the sleep-related information acquired in S1 and S2 of the eye-related information acquisition process (see Fig. 2). The sleep information in this embodiment includes at least information on the length of the user's most recent sleep (sleep duration). However, the sleep information may also include information on the quality of the user's most recent sleep, along with or instead of the sleep duration information.
[0055] To generate sleep information, the user's most recent sleep-related information (from the previous night to the current morning in this embodiment) must be acquired in steps S1 and S2 of the eye-related information acquisition process (see FIG. 2). Therefore, if the user's most recent sleep-related information has not been acquired and sleep information cannot be generated (S11: NO), the process proceeds directly to S14. In this embodiment, steps S11 and S12 are also omitted even if the sleep information for the current day has already been generated.
[0056] If the user's most recent sleep-related information has been acquired and the sleep information can be generated (S11: YES), the control unit processes the sleep-related information acquired in S1 and S2 to generate the sleep information as output information (S12). As shown in FIG. 4, in this embodiment, the sleep information generated includes a graph showing the user's most recent sleep time and an icon indicating the quality of the most recent sleep time. The graph showing the sleep time is generated based on the sleep-related information about the sleep time. The icon is generated (selected) depending on the length of the sleep time. Note that when generating information about sleep quality, the control unit may generate the sleep quality information by processing at least one of the frequency of operation of the user device 20 during sleep and information obtained by a heart rate monitor.
[0057] Next, the control unit determines whether or not rest information can be generated at that time (S14). The rest information is output information generated by processing the rest-related information acquired in S3 and S4 of the eye-related information acquisition process (see FIG. 2). The rest information indicates at least the most recent eye rest state of the user.
[0058] In this embodiment, in order to generate break information, the user's most recent break-related information (during working hours on the current day in this embodiment) must be acquired in S3 and S4 of the eye-related information acquisition process (see FIG. 2). As an example, in this embodiment, the average number of eye breaks per unit time (60 minutes in this embodiment) during working hours is generated and displayed as break information. Therefore, in this embodiment, in order to generate break information, a unit time or more must have passed since the work start time. In S14, the control unit may determine whether break information can be generated by determining whether a unit time or more has passed since the work start time. The work start time may be set in advance. The control unit may also set the work start time for each day based on various information acquired by the user device 20 or the like (e.g., information on the time when the device used by the user for work was started, or information entered by the user on a time card when work started). If break information cannot be generated (S14: NO), the process proceeds directly to S17.
[0059] If the user's most recent break-related information has been acquired and break information can be generated (S14: YES), the control unit processes the break-related information acquired in S3 and S4 to generate the break information as output information (S15). As shown in FIG. 5, in this embodiment, a graph showing the average number of eye breaks per 60 minutes during working hours on that day and an icon indicating the quality of the average number of eye breaks on that day are generated as the break information. As described above, in S3 and S4 of this embodiment, information on the number of times the user device 20 has moved or information on the number of times the user has left their desk based on images captured by a camera is acquired as the break-related information. The control unit calculates the average number of breaks using the number of moves or the number of times the user has left their desk as the number of eye breaks. In addition, the icon is generated (selected) based on the average number of breaks. However, the method for generating the break information can also be changed. For example, the control unit may generate break information by using information on the time the user device 20 is moving or information on the time the user has left their desk based on images captured by a camera as the "eye break time." The control unit may also generate rest information by using information on the interval between the last movement of user device 20 and the next movement, or information on the interval between the user's leaving the seat based on images captured by a camera as the "eye rest interval." The control unit may generate the rest information as output information based on at least any of rest-related information such as the number of times the user blinks, the time and number of times the user looks away from the screen, and the distance between the user and the screen.
[0060] Next, the control unit executes a process of displaying a home screen 30 (see FIGS. 4 and 5) of the service on the display unit 26 of the user device 20 (S17 to S19). In this embodiment, the control unit determines, from among the multiple types of output information generated in S12 and S15, output information corresponding to the current time as priority output information (high-level display information). The control unit increases the display level of at least one of the display amount, size of the display area, and display emphasis level of the priority output information to be higher than the display levels of other output information (output information not determined as priority output information), and displays the priority output information on the home screen 30. In other words, on the default home screen 30 that is displayed in response to the input of a trigger to start execution of the service, the display level of the priority output information is increased to be higher than the display levels of other output information. Therefore, by checking the home screen 30 at the start of service execution, the user can easily determine the appropriate output information (priority output information) corresponding to the current time. Therefore, information regarding eye health is appropriately presented to the user. In this embodiment, "high-level display information" refers to information that is displayed on the home screen 30 with at least one of the display levels, namely, the amount of display, the size of the display area, and the degree of display emphasis, set higher than other output information.
[0061] In this embodiment, the control unit determines whether the current time is within the sleep information priority time (S17). The sleep information priority time is a time period during which sleep information is determined as priority output information. In this embodiment, the sleep information priority time is set to a time period after the wake-up time of the user using the user device 20 and at least before the user's work start time. If the current time is within the sleep information priority time (S17: YES), the control unit determines the sleep information generated in S12 as priority output information, raises the display level of the sleep information above that of other output information (in this embodiment, rest information), and displays at least the sleep information on the home screen 30. FIG. 4 is a diagram illustrating an example of the home screen 30 when sleep information is set as high-level display information. In the example shown in FIG. 4, the control unit displays a graph showing the user's most recent sleep time and an icon indicating the quality of the most recent sleep time on the home screen 30 without displaying details of the rest information. Therefore, after the wake-up time and at least before the start of work, the user can easily and appropriately grasp at least one of the length and quality of their sleep (the most recent sleep time in this embodiment) by checking the sleep information that is preferentially displayed on the home screen 30. Therefore, by understanding at least one of the length and quality of sleep that affect eye health, the user can take appropriate action.
[0062] The sleep information priority time in this embodiment will be described with reference to FIG. 6. As an example, the user's wake-up time in this embodiment is set in advance to a time (e.g., 4:00 AM) before the time the user is expected to wake up. However, the method for setting the wake-up time can be changed. For example, the control unit may set the wake-up time for each day based on various information acquired by the user device 20 (e.g., information about the time when the user device 20 was first operated on that day, or information about the time when the location information acquisition unit or the like determines that the user device 20 has moved a predetermined distance or more on that day).
[0063] In this embodiment, the user's work start time is also set in advance. However, the method for setting the work start time can be changed. For example, the control unit may set the work start time for each day based on various information acquired by the user device 20 (which may be a device separate from the user device 20) (for example, information on the time when the device (such as a PC) used by the user for work was started, or information entered by the user on a time card when the user started work).
[0064] Furthermore, in this embodiment, the end time of the sleep information priority time is set to the time when output information other than sleep information (in this embodiment, the rest information generated in S15) can be generated. Therefore, until output information other than the sleep information for the day can be generated, sleep information is set as high-level display information, appropriately preventing insufficient output information from being displayed by default as high-level display information on the home screen 30. As described above, in this embodiment, the average number of eye breaks per unit time (60 minutes in this embodiment) during working hours is generated and displayed as rest information. Therefore, in this embodiment, in order to generate rest information, a unit time must have elapsed since the work start time. Therefore, in this embodiment, the end time of the sleep information priority time is set to after the unit time has elapsed since the work start time.
[0065] In other words, in this embodiment, the end time of the sleep information priority time (i.e., the time when the priority output information switches from sleep information to rest information) is set after the workday start time, which is the start time for obtaining rest-related information. Since few people take a break immediately after the workday start time, regardless of the method for obtaining the rest information, it is not very useful to set the rest information as the priority output information immediately after the workday start time. Therefore, by shifting the time when the priority output information switches to rest information to a time later than the workday start time, which is the start time for obtaining rest-related information, the rest information is more likely to be displayed appropriately as the priority output information on the home screen 30.
[0066] In this embodiment, if the current time is the user's workday start time or after a predetermined time has elapsed since the workday start time and is at least before the user's workday end time (S17: NO), the control unit determines the break information generated in S15 as priority output information, raises the display level of the break information above that of other output information (sleep information in this embodiment), and displays at least the break information on the home screen 30. FIG. 5 is a diagram illustrating an example of a home screen 30 in which the break information is set as high-level display information. In the example shown in FIG. 5, the control unit displays the break information as high-level display information on the home screen 30 without displaying details of the sleep information, by displaying a graph showing the average number of eye breaks per unit time (60 minutes in this embodiment) during work hours on the day and an icon indicating the quality of the average number of eye breaks on the day. Therefore, the user can easily and appropriately grasp the state of their eye breaks by checking the break information displayed preferentially on the home screen 30 during work hours, etc. Therefore, the user can take appropriate actions during work hours, such as increasing eye breaks.
[0067] With reference to FIG. 6, the time period in which break information is determined as the priority output information in this embodiment will be described. As an example, in this embodiment, if the current time is not within the sleep information priority time (S17: NO), the control unit determines the break information generated in S15 as the priority output information. As described above, in this embodiment, the end time of the sleep information priority time is set after the elapse of a unit time (60 minutes in this embodiment) from the work start time. Therefore, the start time of the time period in which break information is determined as the priority output information is set after the elapse of a unit time from the work start time. However, the length of the unit time can be changed.
[0068] It is also possible to change the end time of the time period in which break information is determined as the priority output information. In this case, if the end time of the time period in which break information is determined as the priority output information is set to be after the user's work end time, the user can easily and appropriately grasp the eye break information during work hours on the home screen 30. The work end time may be set in advance. The control unit may also set the work end time for each day based on various information acquired by the user device 20 (or another device used by the user for work) (for example, information on the startup end time of a PC or the like used by the user for work, or information entered by the user that the work is finished on a time card).
[0069] Next, the control unit determines whether an instruction to switch the output information displayed as high-level display information on the home screen 30 has been input (S21). If no instruction has been input (S21: NO), the process proceeds directly to S24. If an instruction to switch the high-level display information is input by the user to the user device 20 (S21: YES), the control unit switches the output information displayed as high-level display information on the home screen 30 to the output information instructed by the user (S22). Therefore, the user can grasp the priority output information displayed at a high display level by default (e.g., when the home screen 30 starts to be displayed), and then easily display other output information that was displayed at a low display level by default at a high display level. This makes it easier to present information related to eye health to the user more appropriately.
[0070] In this embodiment, the control unit receives an instruction to switch the high-level display information through a single user operation of the operation unit 25. Therefore, the user can more easily input an instruction to switch the high-level display information to the user device 20.
[0071] As shown in FIGS. 4 and 5 , in this embodiment, the control unit, upon input of a trigger to start the service, displays multiple (two in this embodiment) tabs 31A, 31B corresponding to multiple types of output information (sleep information and rest information in this embodiment) on the home screen 30 in a selectable state. The home screen 30 shown in FIGS. 4 and 5 displays a rest information tab 31A corresponding to the rest information and a sleep information tab 31B corresponding to the sleep information in a selectable state. In the example shown in FIG. 4 , the sleep information tab 31B, which is set as the priority output information, is selected, and the display level of the sleep information is raised higher than that of the rest information. On the other hand, in the example shown in FIG. 5 , the rest information tab 31A, which is set as the priority output information, is selected, and the display level of the rest information is raised higher than that of the sleep information. In S21 and S22, the output information of the tab selected by the user from the multiple tabs 31A, 31B displayed on the home screen 30 is switched to high-level display information. Therefore, the user can grasp the priority output information displayed at a high display level by default (when the home screen 30 starts displaying), and then easily display other output information that was displayed at a low display level by default at a high display level by simply selecting the desired tab. This makes it easier for information about eye health to be presented to the user more appropriately.
[0072] Next, the control unit determines whether the user has input an instruction to display this week's aggregated information (S24). As shown in FIGS. 4 and 5, the home screen 30 of this embodiment displays an aggregated information display button 33 for the user to input an instruction to display this week's aggregated information. If the aggregated information display button 33 has not been operated (S24: NO), the process proceeds directly to S28. If the aggregated information display button 33 is operated and an instruction to display this week's aggregated information is input to the user device 20 (S24: YES), the control unit processes the user's data (at least one of the eye-related information and the output information) for the past week stored in the storage device (at least one of the storage device 13 of the information processing device 1 and the storage device 23 of the user device 20) to generate an aggregated information display screen 40 including this week's aggregated information, and displays the generated screen on the display unit 26 of the user device 20 (S25). This allows the user to properly understand information about their eye health for this week. Thereafter, the screen remains on standby with the aggregated information display screen 40 displayed until an instruction to return to the home screen 30 is input (S26: NO). When an instruction to return to the home screen 30 is input (S26: YES), the display screen of the display unit 26 is returned to the home screen 30, and the process proceeds to S28.
[0073] Fig. 7 shows an example of the aggregated information display screen 40 in a state where the aggregated information for this week is displayed. In the example shown in Fig. 7, first, a table showing the average number of eye breaks (number of breaks per unit time of 60 minutes) over the most recent week and the number of breaks for each day of the week and each time slot is displayed on the aggregated information display screen 40. When the screen is scrolled, a table showing the user's average sleeping hours over the most recent week and the sleeping hours for each day of the week and each time slot is displayed on the aggregated information display screen 40.
[0074] Next, the control unit determines whether an instruction to display a weekly report has been input by the user (S28). A weekly report is information obtained by processing and comparing information from one week prior to the most recent week and information from two weeks prior to the most recent week. As shown in FIGS. 4 and 5, the home screen 30 of this embodiment displays a weekly report display button 34 for the user to input an instruction to display a weekly report. If the weekly report display button 34 has not been operated (S28: NO), the process proceeds directly to S31. If the weekly report display button 34 is operated and an instruction to display a weekly report is input to the user device 20 (S28: YES), the control unit processes and compares data (e.g., eye-related information) from one week prior to the most recent week stored in the storage device (at least one of the storage device 13 of the information processing device 1 and the storage device 23 of the user device 20) with data from two weeks prior to the most recent week, thereby generating a weekly report display screen 50 including the weekly report and displaying it on the display unit 26 of the user device 20 (S29). Therefore, the user can properly understand the progress of the state of his / her eye health. Thereafter, the weekly report display screen 50 remains displayed until an instruction to return to the home screen 30 is input (S30: NO). When an instruction to return to the home screen 30 is input (S30: YES), the display screen of the display unit 26 is returned to the home screen 30, and the process proceeds to S31.
[0075] Fig. 8 shows an example of the weekly report display screen 50 when a weekly report is displayed. In the example shown in Fig. 8, first, a table showing the average number of eye breaks and the number of breaks by day of the week and by time period is displayed on the weekly report display screen 50, comparing the number of breaks from one week ago and two weeks ago. When the screen is scrolled, a table showing the user's average sleeping time and sleeping time by day of the week and by time period is displayed on the weekly report display screen 50, comparing the sleeping time from one week ago with the sleeping time from two weeks ago.
[0076] Next, the control unit determines whether or not an instruction to end the service has been input (S31). If an instruction to end the service has not been input (S31: NO), the process returns to S21, and the processes of S21 to S31 are repeated. If an instruction to end the service has been input (S31: YES), the main process ends.
[0077] The technology disclosed in the above embodiment is merely an example. Therefore, the technology exemplified in the above embodiment can be modified. For example, in the above embodiment, two pieces of output information related to eye health, sleep information and rest information, are generated and displayed on the display unit 26. However, the output information is not limited to two pieces of sleep information and rest information. For example, the control unit may generate other output information separately from the sleep information and rest information, or together with the sleep information and rest information, and display it on the home screen. For example, the control unit may acquire information about meals input by the user as eye-related information and generate output information (meal information). The control unit may determine the meal information as priority output information after work hours, during breaks, etc. Furthermore, the control unit may acquire information about the implementation of eye massages input by the user as eye-related information and generate output information (massage information). The control unit may determine the massage information as priority output information after work hours, during breaks, etc. Needless to say, the number of pieces of output information generated and displayed may be three or more.
[0078] The control unit may separately generate and display a plurality of pieces of output information (for example, two or more pieces of output information of "eye break time," "number of eye breaks," and "eye break interval") as the rest information, or may collectively display the plurality of pieces of rest information. When the plurality of pieces of rest information are separately displayed on the home screen 30, the control unit may, for example, set the most recently acquired information as the priority output information, or may set rest information different from the previously set priority output information as the next priority output information. Of the plurality of pieces of output information including the plurality of pieces of rest information, the output information to be displayed at a higher display level may be switched in response to an instruction input by the user.
[0079] The eye-related information acquisition process shown in Fig. 2 is an example of an "information acquisition step." The process of generating output information in S12 and S15 in Fig. 3 is an example of an "output information generation step." The process of displaying the home screen 30 on the display unit 26 in S17 to S19 in Fig. 3 is an example of a "home screen display step." The process of switching high-level display information in S21 and S22 in Fig. 3 is an example of a "priority display switching step." [Explanation of symbols]
[0080] 1. Information processing equipment 12 CPU 13 Storage device 20(20A, 20B) User device 22(22A,22B) CPU 23(23A,23B) Storage device 26(26A,26B) Display section 30 Home Screen 31A Break Information Tab 31B Sleep Information Tab 100 Eye-related information processing system
Claims
1. An eye-related information processing program executed in an eye-related information processing system that processes eye-related information related to the eye health of a user to provide a user with an eye health-related service, The eye-related information processing system includes: a user device for use by a user, When the eye-related information processing program is executed by a control unit of the eye-related information processing system, an information acquisition step of acquiring eye-related information of a user who uses the user device; an output information generating step of generating output information to be output by the user device by processing the acquired eye-related information; a home screen display step of displaying a home screen of the service on a display unit whose display is controlled by the user device when a trigger for executing the service is input; executes the above-mentioned eye-related information processing system; In the output information generating step, generating a plurality of types of the output information based on each of a plurality of types of the eye-related information that differ from each other in at least one of the type of information and the time of occurrence; In the home screen display step, an eye-related information processing program that determines, from among the plurality of types of output information, output information corresponding to the current time as priority output information, and displays the determined priority output information on the home screen with a display level of at least one of the display amount, size of the display area, and degree of display emphasis higher than the display levels of the other output information.
2. 2. The eye-related information processing program according to claim 1, a priority display switching step of switching information, among the plurality of types of output information, that is to be displayed on the home screen at a higher display level than other output information, in accordance with an instruction input by a user while the home screen is being displayed; The eye-related information processing program further causes the eye-related information processing system to execute the above steps.
3. 3. The eye-related information processing program according to claim 2, In the home screen display step, When the trigger is input, a plurality of tabs corresponding to the plurality of types of output information are selectably displayed on the home screen, and when the tab for the priority output information is selected, the display level of the priority output information is increased to be higher than the display levels of the other output information, In the priority display switching step, An eye-related information processing program characterized by switching the output information of a tab selected by a user from among the plurality of tabs displayed on the home screen to information that is displayed at a higher display level than other output information.
4. 4. The eye-related information processing program according to claim 1, the eye-related information acquired in the information acquiring step includes information about the user's sleep, In the output information generating step, the sleep-related information is processed to generate, as the output information, sleep information including information on at least one of a length and a quality of a most recent sleep; In the home screen display step, if the current time is after the user's wake-up time and at least before the user's start time at work, the eye-related information processing program determines the sleep information as the priority output information.
5. 5. The eye-related information processing program according to claim 1, the eye-related information acquired in the information acquiring step includes information about an eye rest of the user, In the output information generation step, rest information indicating at least a most recent eye rest state of the user is generated as the output information by processing the information regarding the eye rest; In the home screen display step, if the current time is the user's work start time or a predetermined time has elapsed since the work start time, and is at least before the user's work end time, the eye-related information processing program determines the rest information as the priority output information.
6. 6. The eye-related information processing program according to claim 1, In the home screen display step, Among the plurality of types of output information, information determined as the priority output information is switched according to a time period; 10. The eye-related information processing program, wherein at least one of the times at which the information determined as the priority output information is switched is shifted from the acquisition start time or acquisition end time of the output information.
7. 1. An eye-related information processing method executed in an eye-related information processing system that processes eye-related information related to a user's eye health to provide a user with an eye health-related service, comprising: The eye-related information processing system includes: a user device for use by a user, an information acquisition step of acquiring eye-related information of a user who uses the user device; an output information generating step of generating output information to be output by the user device by processing the acquired eye-related information; a home screen display step of displaying a home screen of the service on a display unit whose display is controlled by the user device when a trigger for executing the service is input; Including, In the output information generating step, generating a plurality of types of the output information based on each of a plurality of types of the eye-related information that differ from each other in at least one of the type of information and the time of occurrence; In the home screen display step, a display level of at least one of the display amount, the size of the display area, and the degree of display emphasis of the determined priority output information is increased above the display levels of the other output information, and the priority output information is displayed on the home screen.
8. An eye-related information processing system that processes eye-related information related to the eye health of a user to provide a user with an eye health-related service, comprising: a user device for use by a user, The control unit of the eye-related information processing system an information acquisition step of acquiring eye-related information of a user who uses the user device; an output information generating step of generating output information to be output by the user device by processing the acquired eye-related information; a home screen display step of displaying a home screen of the service on a display unit whose display is controlled by the user device when a trigger for executing the service is input; Run In the output information generating step, generating a plurality of types of the output information based on each of a plurality of types of the eye-related information that differ from each other in at least one of the type of information and the time of occurrence; In the home screen display step, an eye-related information processing system that determines, from among the plurality of types of output information, output information corresponding to the current time as priority output information, and displays the determined priority output information on the home screen with at least one display level of the display amount, size of the display area, and degree of display emphasis higher than the display levels of the other output information.
Citation Information
Patent Citations
Pleasant sleep dwelling environment support system
JP2021135000A