Information processing device, information processing system, and information processing program
The information processing system addresses the challenge of care staff overlooking input items by displaying them based on job titles, enhancing data accuracy and efficiency in care recordkeeping.
Patent Information
- Authority / Receiving Office
- JP · JP
- Patent Type
- Patents
- Current Assignee / Owner
- Filing Date
- 2022-01-06
- Publication Date
- 2026-04-14
AI Technical Summary
Care staff in facilities such as hospitals and elderly welfare facilities face challenges in recognizing and entering the correct input items in the LIFE input fields due to the large number of fields and varying types of care provided across different facilities, leading to potential oversight.
An information processing system that includes an acquisition unit to identify the job title responsible for input and a display control unit to show the specific input items assigned to each job title, along with the update date and time, and a memory unit to store and update job assignments, ensuring care staff know which items to enter.
Prevents care staff from overlooking or failing to recognize the necessary input items by clearly displaying them based on their job title, thereby improving data accuracy and efficiency in care recordkeeping.
Smart Images

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Abstract
Description
Technical Field
[0001] The present invention relates to an information processing apparatus, an information processing system, and an information processing program.
Background Art
[0002] In Japan, due to the improvement of living standards, the improvement of sanitary environment, and the improvement of medical standards accompanying the high economic growth after the war, the aging of the population has become remarkable. Therefore, combined with the decline in the birth rate, it has become an aging society with a high aging rate. In such an aging society, an increase in the number of care recipients and nursing recipients (hereinafter referred to as "care target persons") who require care, nursing, etc. due to illness, injury, aging, etc. is assumed. In facilities such as hospitals and elderly welfare facilities (hereinafter simply referred to as "facilities"), care for care target persons is provided by nurses and caregivers.
[0003] On the other hand, with the increase in the number of care target persons, the burden on nurses and caregivers has increased, and technological development for reducing this burden has been promoted. For example, Patent Document 1 below discloses a technique for centrally managing information on care services for a plurality of care recipients on a single screen for the purpose of effectively utilizing the recorded information for creating care records.
[0004] In addition, technological development for reducing the labor involved in the operations of medical staff such as doctors has also been promoted. For example, medical examinations and treatments in hospitals are carried out in each medical department divided by their specialized fields, and since the content of the medical information described varies depending on the medical department, the medical record formats used also differ. Since the medical record formats are different for each medical department, doctors etc. need to select the format images prepared for each medical record format from a list, which is time-consuming. In relation to this, Patent Document 2 below discloses a medical information input support device that identifies the position information of its own device within a hospital (such as the location of the orthopedics department, the internal medicine department, etc.) and displays the medical record of the medical department associated with the position information (Figs. 7, Fig. 8).
[0005] As the demand for long-term care services expands due to the aging population, maintaining the quality of care services requires scientifically supported care (scientific care) that promotes the independence of those receiving care and prevents the worsening of their condition. To realize scientific care, it is necessary to accumulate evidence and information based on objective facts and analyze that evidence to present the rationale for the care services provided to those receiving care. As a scientific care information system for collecting and accumulating evidence, for example, LIFE (Long term care Information For Evidence) has been put into operation. LIFE is a system in which each facility inputs data on prescribed input items regarding the content and plan of care for those receiving care, the condition of those receiving care, etc., on the official website of the Ministry of Health, Labour and Welfare (https: / / life.mhlw.go.jp / login), and the Ministry of Health, Labour and Welfare analyzes the data entered by each facility and feeds back the analysis results to each facility. [Prior art documents] [Patent Documents]
[0006] [Patent Document 1] Japanese Patent Publication No. 2020-135734 [Patent Document 2] Japanese Patent Publication No. 2014-199530 [Overview of the project] [Problems that the invention aims to solve]
[0007] For example, in large medical facilities, care staff from various professions, such as caregivers, care managers, doctors, nurses, public health nurses, physical therapists, and occupational therapists, have opportunities to input assessments of the care recipients' conditions into the LIFE input fields. However, the LIFE input fields are numerous, making it difficult to immediately determine which care staff member from which profession should input the assessment for each field. Furthermore, the types of care provided by care staff may differ from facility to facility, and in such cases, the LIFE input fields that care staff should input may also differ from facility to facility. Therefore, there is a possibility that care staff may not recognize or may overlook the input fields they should be entering.
[0008] The present invention has been made in view of the above-mentioned problems. Accordingly, the object of the present invention is to provide an information processing device, an information processing system, and an information processing program that can prevent or suppress care staff from being unable to recognize or overlooking input items that should be entered in LIFE. [Means for solving the problem]
[0009] The above-mentioned problems of the present invention are solved by the following means.
[0010] (1) The scientific care information system includes an acquisition unit that acquires the input items of the job title responsible for input or the input items to which a sensor has been assigned, and a display control unit that displays the input items that care staff of a specific job title should input on the display unit. The display control unit controls the display unit to display a list of the multiple input items and the job titles and sensors assigned to each input item. Information processing device.
[0013] ( 2 ) The display control unit causes the update date and time and the updater to be displayed on the display unit for each of the input items, (1 ) The information processing device described.
[0014] ( 3The display control unit records the update date and time and the person who updated each of the input items, and displays the update history on the display unit, as described in (1) above. or (2) The information processing device described above.
[0015] ( 4 ) A memory unit that stores information about the occupation assigned to each input item of the scientific care information system, and the above (1)~( 3 An information processing system comprising an information processing device described in any one of the above, and a change receiving unit that accepts changes to the assignment of the job type to the input item.
[0016] ( 5 ) The scientific care information system includes the steps of (a) acquiring the input items to which the job title responsible for input or the sensor is assigned, and (b) displaying the input items that care staff of a specific job title should input or the input items that the sensor inputs on the display unit. The process is such that, in step (b), the system controls the display unit to display a list of the multiple input items and the job titles and sensors assigned to each of the input items. An information processing program that causes a computer to perform a task.
[0019] ( 6 )The above further includes step (d) accepting a change in the assignment of the job type to the input item. 5 Information processing program described in ). [Effects of the Invention]
[0020] According to the present invention, the input items for LIFE that care staff of a specific job type should enter are displayed on the display unit, thereby preventing or suppressing care staff from not recognizing or overlooking the input items they should enter. [Brief explanation of the drawing]
[0021] [Figure 1] This diagram illustrates the overall configuration of the information processing system according to the first embodiment. [Figure 2] Figure 1 is a block diagram illustrating the schematic configuration of the management server. [Figure 3]It is a block diagram showing the schematic configuration of the information manager terminal shown in FIG. 1. [Figure 4] It is a block diagram showing the schematic configuration of the care staff terminal shown in FIG. 1. [Figure 5] It is a functional block diagram exemplifying some functions of the control unit shown in FIG. 4. [Figure 6] It is a flowchart exemplifying the outline of the processing procedure of the information processing method according to the first embodiment. [Figure 7] It is a schematic diagram showing an example of the input items of LIFE. [Figure 8] It is a schematic diagram showing another example of the input items of LIFE. [Figure 9] It is a diagram exemplifying the overall configuration of the information processing system according to the second embodiment. [Figure 10] It is a block diagram showing the schematic configuration of the detection unit shown in FIG. 9. [Figure 11] It is a flowchart exemplifying the outline of the processing procedure of the information processing method according to the second embodiment. [Figure 12] It is a diagram exemplifying a list display of input items, job types assigned to the input items, and sensors. [Embodiments for Carrying Out the Invention]
[0022] Hereinafter, embodiments of the present invention will be described with reference to the drawings. In the drawings, the same elements are denoted by the same reference numerals, and redundant descriptions are omitted. Also, the dimensional ratios in the drawings are exaggerated for convenience of explanation and may be different from the actual ratios.
[0023] (First Embodiment) <Information Processing System 1> Figure 1 is a diagram illustrating the overall configuration of an information processing system 1 according to one embodiment. The information processing system 1 comprises a management server 10, an information administrator terminal 20, and one or more care staff terminals 30. These are connected to each other via a network 40, such as a LAN (Local Area Network), telephone network, or data communication network, by wire or wireless means, enabling communication between them. The network 40 may include relay devices such as repeaters, bridges, routers, or cross-connects that relay communication signals. In the example shown in Figure 1, the management server 10, the information administrator terminal 20, and the care staff terminals 30 are connected to each other via a network 40, such as a wireless LAN (for example, a LAN conforming to the IEEE 802.11 standard), which includes an access point 41.
[0024] Information processing system 1 is suitably installed in buildings such as hospitals, elderly care facilities, and residential units. Information processing system 1 can be installed in facilities that have multiple rooms (living rooms) where multiple care recipients reside, or multiple rooms including a care station. Care recipients include, for example, patients who require nursing care due to illness or injury, elderly persons who require care due to declining physical abilities, or elderly persons living alone. In particular, from the perspective of enabling early detection and early intervention, care recipients may be persons who require detection when a predetermined undesirable event, such as an abnormal condition, occurs to them.
[0025] Each of the 50 care staff members who provide nursing or care services to the care recipients carries a care staff terminal 30, which is a portable device.
[0026] The location and number of each component in the information processing system 1 are not limited to the example shown in Figure 1. Furthermore, "care" broadly includes the care provided by the care staff 50 to the person receiving care, including, for example, assistance with daily living activities such as meals, fluid intake, excretion, bathing, and cleaning, as well as vital sign checks (measurement of body temperature, blood pressure, pulse, etc.). The care staff 50 are individuals who provide various forms of support (care) to the person receiving care according to their duties.
[0027] <Management Server 10> Figure 2 is a block diagram showing the schematic configuration of the management server 10 shown in Figure 1. The management server 10 comprises a control unit 11, a communication unit 12, and a database 13. This management server 10 may be located in the same building as the living quarters of the care recipients, or it may be located in a remote location and accessible via a network. For example, the management server 10 may be a cloud server virtually constructed by multiple servers located on a network such as the Internet. Each component is connected to the others via a bus, enabling them to communicate with each other.
[0028] The control unit 11 consists of a CPU (Central Processing Unit) and memory such as RAM (Random Access Memory) and ROM (Read Only Memory), and performs control and calculation processing of each part of the management server 10 according to the program. The control unit 11 may also be equipped with an HDD (Hard Disk Drive) or SSD (Solid State Drive) as memory.
[0029] In this embodiment, information regarding the occupation assigned to each input item of the Scientific Care Information System (LIFE) is stored in memory. The input items may be, for example, items related to Activities of Daily Living (ADL), cognitive function, motivation, etc. Cognitive function can be evaluated using indicators such as the Dementia Behavior Scale (DBD)13. Motivation can be evaluated using indicators such as the Vitality Index.
[0030] The job titles assigned to input fields include, for example, caregivers, care managers, doctors, nurses, public health nurses, physical therapists, and occupational therapists. Considering the expertise and authority of each job title, the most suitable job title is pre-assigned to each input field.
[0031] The communication unit 12 is an interface circuit (e.g., a LAN card) for communicating with other devices via the network 40, such as the management server 10, the information administrator terminal 20, or the care staff terminal 30. The control unit 11, in response to a request from the care staff terminal 30, transmits the input items stored in memory and information about the job titles assigned to the input items to the care staff terminal 30 via the communication unit 12.
[0032] Database 13 stores information about the care recipients, information about the care staff 50, and care records, etc.
[0033] Information about the care recipient includes, for example, the care recipient's name, date of birth, ID number, room number, usual food intake, fluid intake other than food, medical history, level of care required, and current medical visit status. Information about the care staff 50 includes, for example, the care staff 50's name, staff ID, job title, and date of birth.
[0034] Care records are documents that record information about the care provided to residents of a facility. For example, care staff 50 provide various forms of assistance to residents based on the care plan prepared for each resident, including assistance with meals, fluid intake, excretion, bathing, cleaning, and vital sign checks (measurement of temperature, blood pressure, pulse, etc.). The assistance and vital sign checks performed by care staff 50, as well as the resident's behavior and condition, are recorded in the care record. Care records are updated when care staff 50 input information about the care provided to the resident. Input into care records is done, for example, through the input unit 34 of the care staff terminal 30.
[0035] <Information Administrator Terminal 20> Figure 3 is a block diagram illustrating the schematic configuration of the information manager terminal 20 shown in Figure 1. The information manager terminal 20 is used as a terminal for the information manager 60, displaying various information within the facility to the information manager 60 and receiving instructions. Here, the information manager 60 is a manager who oversees multiple care staff 50. The information manager 60 may manage care staff 50 working in multiple facilities, not just one.
[0036] The information administrator terminal 20 is a so-called PC (Personal Computer) and is equipped with a control unit 21, a communication unit 22, a display unit 23, an input unit 24, and an audio input / output unit 25, which are interconnected by a bus. The control unit 21 has the same configuration as the control unit 11 of the management server 10 and is equipped with a CPU, RAM, ROM, SSD, etc.
[0037] The communication unit 22 is an interface for various local connections, such as a wired communication network interface based on standards like Ethernet (registered trademark), and a wireless communication interface based on standards like Bluetooth (registered trademark) and IEEE 802.11, and communicates with each terminal connected to the network 40.
[0038] The display unit 23 is, for example, a liquid crystal display and displays various information. The input unit 24 is equipped with a keyboard, numeric keypad, mouse, etc., and is used for inputting various information. The audio input / output unit 25 is, for example, a headset equipped with a speaker and microphone.
[0039] In this embodiment, the control unit 21 receives data entered for LIFE's input items from each care staff terminal 30, organizes and integrates this information, and generates a file in a predetermined format (e.g., a CSV file) to be submitted to LIFE's official website. The data entered for LIFE's input items can be displayed in a list by the display unit 23. The information manager 60 operates the information manager terminal 20 to periodically submit the CSV file generated based on the entered data to LIFE's official website using dedicated software.
[0040] Furthermore, the control unit 21 functions as a change reception unit and can accept changes to the assignment of job titles to input items. When the change reception unit receives a change in the assignment of job titles to input items, it requests the management server 10 to change the assignment of job titles to input items stored in memory. The management server 10 updates the job titles assigned to input items in accordance with the request from the change reception unit. This allows each facility to build a system for care staff 50 who input LIFE input items to match the facility's care policy. For example, in facility A, rehabilitation therapists (e.g., physical therapists, occupational therapists, etc.) can input functional training input items, while in facility B, caregivers can be customized to input functional training input items.
[0041] <Care Staff Terminal 30> Figure 4 is a block diagram showing the schematic configuration of the care staff terminal 30 shown in Figure 1, and Figure 5 is a functional block diagram illustrating some of the functions of the control unit shown in Figure 4. The care staff terminal 30 is a device that functions as the user interface of the information processing system 1, and can be composed of a portable communication terminal device such as a tablet computer, smartphone, or mobile phone.
[0042] The care staff terminal 30 comprises a control unit 31, a wireless communication unit 32, a display unit 33, an input unit 34, and an audio input / output unit 35, which are interconnected by a bus. The care staff terminal 30 functions as an information processing device. The control unit 31 has the same configuration as the control unit 11 of the management server 10, and includes a CPU and memory such as RAM, ROM, and flash memory.
[0043] As shown in Figure 5, in this embodiment, the control unit 31 functions as an acquisition unit 311, a display control unit 312, and a job identification unit 313. The acquisition unit 311 acquires input items of LIFE to which the job responsible for input is assigned. The display control unit 312 displays the input items that a care staff member 50 of a specific job should input on the display unit 33. The job identification unit 313 identifies the job of the care staff member 50. Details of the functions of the acquisition unit 311, the display control unit 312, and the job identification unit 313 will be described later.
[0044] The wireless communication unit 32 enables wireless communication using standards such as Wi-Fi and Bluetooth (registered trademark), and communicates wirelessly with each device either via the access point 41 or directly.
[0045] The display unit 33 and the input unit 34 are touch panels, with a touch sensor for the input unit 34 superimposed on the display surface of the display unit 33, which is made of liquid crystal or the like. The display unit 33 functions as a display device. The display unit 33 displays the input items for LIFE and the job titles assigned to the input items to the care staff 50. The care staff 50 also input assessments of the care recipients regarding the input items through the input unit 34, and when they provide care to the care recipients, they input information about the care provided to the care recipients into the care record.
[0046] As an example, in this embodiment, the control unit 31 runs the awareness input application on the care staff terminal 30, and as a function of the awareness input application, it displays the input items for LIFE and the job titles assigned to the input items. The awareness input application is a web application software that assists care staff 50 in inputting an assessment of the care recipient's condition when they notice a change in the care recipient's condition while providing care. When care staff 50 notices a change in the care recipient's condition, they can immediately input an assessment of the care recipient's condition for the input items.
[0047] The audio input / output unit 35 is, for example, a speaker and a microphone, and enables voice communication by the care staff 50 with other care staff terminals 30 via the wireless communication unit 32.
[0048] When starting work, the care staff 50 performs login authentication through their assigned care staff terminal 30. The care staff 50 enters their staff ID and password through the touch panel (display unit 33, input unit 34) of the care staff terminal 30 and sends this information to the management server 10. The management server 10 compares the authentication information stored in its memory and sends the authentication result corresponding to the care staff 50's authority to the care staff terminal 30, thereby completing the login authentication.
[0049] Furthermore, the management server 10, the information administrator terminal 20, and the care staff terminal 30 may include components other than those listed above, or may not include some of the components listed above.
[0050] <Information Processing Methods> Next, an overview of the processing procedure of the information processing method of this embodiment will be described with reference to Figures 6 to 8. Figure 6 is a flowchart illustrating an overview of the processing procedure of the control method of this embodiment. The processing in the flowchart is realized by the CPU of the control unit 31 executing an information processing program. Figure 7 is a schematic diagram showing an example of an input item for LIFE, and Figure 8 is a schematic diagram showing another example of an input item for LIFE.
[0051] As shown in Figure 6, first, it is determined whether or not an instruction to run the awareness input application has been received (step S101). If the control unit 31 has not received an instruction to run the awareness input application (step S101: NO), it waits until an instruction is received. On the other hand, if the control unit 31 has received an instruction to run the awareness input application (step S101: YES), it runs the awareness input application (step S102).
[0052] Next, the job titles of the care staff 50 are identified (step S103). Based on the staff ID of the logged-in authenticated care staff 50, the job title identification unit 313 queries the management server 10 for the job titles of the care staff 50 stored in memory, and identifies the job titles of the care staff 50 based on the results.
[0053] Next, the input items are retrieved (step S104). Each input item is assigned a job title of the care staff 50, and the retrieval unit 311 retrieves the input items that the care staff 50 should input from the memory of the management server 10, according to the job title of the identified care staff 50. The job title of the care staff 50 is, for example, a caregiver.
[0054] Next, the system displays the input items that the care staff member 50 of the specified job type should enter (step S105). For example, if the care staff member 50 is to provide meal care for the person receiving care, the care staff member 50 enters into the care staff terminal 30 that they will provide meal care. As shown in Figure 7, when the display control unit 312 enters that meal care will be provided, it displays the LIFE input items for "meal care" on the screen 200 of the display unit 33. In the example shown in the figure, "meal care" includes two input items: "meal" 201 and "willingness to eat" 202. This allows the care staff member 50 to quickly find the input items they need to enter. They can also quickly check whether they have missed any input items that they are responsible for.
[0055] The care staff member 50 touches the "Resident Selection" button 203 to select a care recipient from the facility's residents to whom they will input assessment information for the input fields. The care staff member 50 also inputs assessment information into the input fields 204 for "Meals" and 205 for "Eating Appetite." For example, the assessment for "Meals" may be configured to allow the care staff member to select and input from "Independent," "Partial Assistance," and "Total Assistance."
[0056] Furthermore, the update information section 206 displays the date and time the "Meals" assessment was updated, as well as the care staff member 50 who made the update. This makes it easy to find out the date and time the assessment was updated, and which care staff member 50 made the update, even if you are not the care staff member 50 who made the last update to the assessment.
[0057] Furthermore, the display control unit 312 can record the update date and time, and the person who updated each input item in the RAM of the control unit 31, and display the update history on the display unit 33. This makes it possible for anyone to track who entered the assessment and when, at any time.
[0058] Furthermore, as shown in Figure 8, the display control unit 312 may be configured to display the assigned occupation in parentheses following the input item. In the example shown in the figure, if a caregiver is assigned to the input item "meal care," it may be displayed as "meal care (caregiver)" 207. Similarly, if a physical therapist is assigned to the input item "functional training," it may be displayed as "functional training (physical therapist)" 208.
[0059] As described above, in the flowchart shown in Figure 6, the control unit 31 executes the awareness input application, identifies the occupation of the care staff 50, and obtains the LIFE input items that the identified occupation should input. The control unit 31 then displays the input items that the identified care staff 50 should input on the display unit 33.
[0060] The information processing device 30, information processing system 1, and information processing program of this embodiment described above have the following effects.
[0061] The LIFE input items that care staff 50 of a specific job type should enter are displayed on the display unit 33, thereby preventing or suppressing the care staff 50 from not recognizing or overlooking the input items they should enter.
[0062] (Second embodiment) In the second embodiment, a case in which input items, the job titles assigned to each input item, and sensors are displayed in a list will be described. Figure 9 is a diagram illustrating the overall configuration of the information processing system according to the second embodiment, and Figure 10 is a block diagram showing the schematic configuration of the detection unit shown in Figure 9. In order to avoid repetition of explanation, detailed explanations of configurations identical to those in the first embodiment will be omitted.
[0063] As shown in Figure 9, in this embodiment, the information processing system 2 has a detection unit (sensor) 70 in addition to the configuration of the first embodiment. The detection unit 70 is placed in each of the rooms that are the observation area of the care recipients 80. In the example shown in Figure 9, four detection units 70 are placed in the rooms of care recipients 80, namely A, B, C, and D.
[0064] As shown in Figure 10, the detection unit 70 comprises a control unit 71, a communication unit 72, and a camera 73, which are interconnected by a bus. The control unit 71 consists of a CPU and memory such as RAM and ROM, and performs control and calculation processing of each part of the detection unit 70 according to the program. The control unit 71 may also be equipped with an SSD or the like as additional memory.
[0065] The communication unit 72 is an interface circuit (e.g., a LAN card) for communicating with other devices via the network 40, such as the management server 10, the information administrator terminal 20, or the care staff terminal 30.
[0066] Camera 73 is positioned, for example, on the ceiling or upper part of the wall of a living room, and photographs the bed of the care recipient 80 directly below it as the observation area, outputting captured images (image data). These captured images include still images and videos. Camera 73 is a near-infrared camera, but a visible light camera may be used instead, or both may be used in combination.
[0067] The control unit 71 recognizes the actions of the person receiving care 80 from the images captured by the camera 73. These recognized actions include getting up from bed ("getting up"), leaving bed ("getting out of bed"), and falling onto the floor or other surface ("falling").
[0068] The control unit 71 detects silhouettes (hereinafter referred to as "human silhouettes") from multiple captured images (moving images). Human silhouettes can be detected, for example, by extracting a range of pixels with a relatively large difference using time difference, which is obtained by subtracting images taken at different times. Human silhouettes may also be detected by background subtraction, which is obtained by subtracting a background image from a captured image. Recognition of getting up, getting out of bed, and falling is performed by recognizing the posture of the person being cared for 80 (e.g., standing, sitting, lying down, etc.) and the relative position of the person being cared for in the room, such as a bed, from the detected human silhouette to determine whether it is getting up, getting out of bed, or falling (dropping). These recognitions may be performed by a program processed by the CPU of the control unit 71, or by an embedded processing circuit.
[0069] Figure 11 is a flowchart illustrating an overview of the processing procedure of the information processing method according to the second embodiment, and Figure 12 is a diagram showing an example of a list display of input items, the job titles assigned to the input items, and sensors. The processing in the flowchart of Figure 11 is realized by the CPU of the control unit 31 executing an information processing program.
[0070] In this embodiment, the control unit 31 determines whether or not it has received an instruction to execute the awareness input application (step S201), executes the awareness input application if it has received the instruction (step S202), acquires the input items (step S203), and displays a list of the input items, the job titles assigned to each input item, and the sensors (step S204). The processes in steps S201 and S202 are the same as the processes in steps S101 and S102 in the flowchart shown in Figure 6, so their explanation is omitted.
[0071] In step S203, the acquisition unit 311 acquires input items from the management server 10. For each input item, the job title of the care staff 50 responsible for input or a sensor is assigned. For example, caregivers are assigned to input items A, B, and C, and rehabilitation therapists are assigned to input items D and E. In addition, a sensor (detection unit 70) is assigned to input item F.
[0072] In step S204, as shown in Figure 12, the display control unit 312 controls the display unit 33 to display a list of input items A, B, C, D, E, F, ..., the occupation assigned to each input item (caregiver, rehabilitation therapist, ...), and sensors in a table format. In the figure, input items that a specific occupation or sensor should input are indicated by "〇". Note that other components of the display unit 33 screen are not shown in the figure.
[0073] Care staff member 50 enters assessments for the displayed input items. For example, if care staff member 50 is a caregiver, input items A to C are the input items to be entered. When care staff member 50 enters an assessment for input item A, they touch the "○" next to input item A with their fingers, etc. 51. This operation displays an input field (not shown) for input item A, and care staff member 50 can enter an assessment for input item A. Similarly, if care staff member 50 is a rehabilitation therapist, they enter assessments for input items D and E.
[0074] Furthermore, the display control unit 312 is configured to automatically input an assessment of input item F based on the sensor's detection results. Input item F could be, for example, an input item related to the care recipient 80's waking up. For example, when evaluating whether the care recipient 80 always wakes up at a fixed time, the waking time can vary depending on the care recipient 80's health and sleep status, making it difficult for care staff 50 to be in the care recipient 80's room every morning to confirm the time the care recipient 80 wakes up. Therefore, for example, the display control unit 312 is configured to acquire the waking time and store it in the memory of the control unit 71 when the sensor detects the care recipient 80's "waking up". The display control unit 312 may be configured to automatically input an assessment of input item F based on the fluctuations in waking times within a predetermined period stored in the memory. The display control unit 312 determines, for example, that if the variation in wake-up time is below a predetermined threshold, the care recipient 80 always wakes up at a fixed time, and if the variation in wake-up time is above a predetermined threshold, the care recipient 80 does not wake up at a fixed time.
[0075] The information processing device 30, information processing system 2, and information processing program of this embodiment described above have the following effects in addition to the effects of the first embodiment.
[0076] For each of the 80 care recipients, the 50 care staff members (those responsible for input) or sensors that should input data into LIFE are displayed in a list, preventing omissions during the data entry process. This also makes it easier to manage the data entry workload.
[0077] The present invention is not limited to the embodiments described above, and can be modified in various ways within the scope of the claims.
[0078] For example, the above embodiment described a case in which the LIFE input items and job titles are displayed on the display unit 33 of the care staff terminal 30, but the system is not limited to this case. For example, the LIFE input items and job titles may be configured to be displayed on the display unit 23 of the information administrator terminal 20.
[0079] Furthermore, the information processing program may be provided on computer-readable recording media such as USB memory, flexible disks, or CD-ROMs, or it may be provided online via a network such as the Internet. In this case, the program recorded on the computer-readable recording media is usually transferred to memory or storage and stored therein. This information processing program may also be provided, for example, as a standalone application software, or it may be incorporated into the software of each device as a function of a server.
[0080] Furthermore, in the embodiment, some or all of the processing performed by the program may be replaced and executed by hardware such as circuits. [Explanation of symbols]
[0081] 1. Information processing system, 10 Management Servers, 11 Control unit, 12 Communications Department, 13 databases, 20 Information administrator terminals, 21 Control unit, 22 Communications Department, 23 Display section, 24 Input section, 25 Audio input / output section, 30 care staff terminals, 31 Control unit, 311 Acquisition Department; 312 Display control unit, 313 Job-Specific Department, 32 Wireless Communication Section, 33 Display section, 34 Input section, 35 Audio input / output section, 40 networks, 41 access points, 50 care staff, 60 Information Manager; 70 Detection unit, 80 people receiving care.
Claims
1. An acquisition unit that acquires the input items of a scientific care information system, which are assigned to a job or sensor responsible for inputting the input items. A display control unit that displays input items that care staff of a specific job type should enter on the display unit, It has, The display control unit controls the display unit to display a list of the multiple input items and the job titles and sensors assigned to each input item.
2. The information processing apparatus according to claim 1, wherein the display control unit causes the display unit to display the update date and time and the updater for each of the input items.
3. The information processing apparatus according to claim 1 or 2, wherein the display control unit records the update date and time and the updater for each of the input items, and displays the update history on the display unit.
4. A memory unit that stores information about the occupation assigned to each input item of the scientific care information system, An information processing device according to any one of claims 1 to 3, An information processing system comprising: a change acceptance unit that accepts changes to the assignment of the job type to the input item.
5. Step (a) of acquiring the input items of the scientific care information system, which are assigned to a job or sensor responsible for inputting the items, A process including the step (b) of displaying on a display unit the input items that care staff of a specific job type should input, or the input items that sensors input, In step (b) above, an information processing program is provided to cause a computer to perform a process that controls the display unit to display a list of the multiple input items and the job titles and sensors assigned to each of the input items.
6. The information processing program according to claim 5, further comprising the step (d) of accepting a change in the assignment of the job type to the input item.
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