WO2017061282A1 - Système et procédé d'ajustement de plan de soins - Google Patents

Système et procédé d'ajustement de plan de soins Download PDF

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Publication number
WO2017061282A1
WO2017061282A1 PCT/JP2016/077945 JP2016077945W WO2017061282A1 WO 2017061282 A1 WO2017061282 A1 WO 2017061282A1 JP 2016077945 W JP2016077945 W JP 2016077945W WO 2017061282 A1 WO2017061282 A1 WO 2017061282A1
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WIPO (PCT)
Prior art keywords
care
plan
terminal
data
recipient
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PCT/JP2016/077945
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English (en)
Japanese (ja)
Inventor
上坂 武史
岸本 卓也
新 勇一
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コニカミノルタ株式会社
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Priority to JP2017544448A priority Critical patent/JP6874685B2/ja
Publication of WO2017061282A1 publication Critical patent/WO2017061282A1/fr

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    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/60ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices
    • G16H40/63ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for local operation
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H20/00ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance
    • G16H20/60ICT specially adapted for therapies or health-improving plans, e.g. for handling prescriptions, for steering therapy or for monitoring patient compliance relating to nutrition control, e.g. diets

Definitions

  • the present invention relates to a care plan adjustment system and a care plan adjustment method for adjusting a suitable care plan when used in a medical institution or a nursing facility.
  • care plans such as water intake, medication timing, and excretion timing are determined in advance according to each care recipient, and care is often performed according to such care plans.
  • care plans such as water intake, medication timing, and excretion timing are determined in advance according to each care recipient, and care is often performed according to such care plans.
  • there are many care facilities where the absolute number of caregivers, etc. is insufficient for the number of caregivers, and one caregiver may have to care for many caregivers. .
  • the amount of water intake, excretion timing, etc. will change according to the physical condition, so caregivers should follow the decided care plan. It is not always possible to carry out care according to the schedule. Therefore, if water intake or excretion cannot be performed at the specified nursing care timing, caregivers need to remember the fact, and care must be taken to complete the lack of each person at the next nursing timing.
  • Patent Document 1 is in charge of storage means for storing medical worker identification information for identifying a medical worker and a plan regarding the medical practice of the medical worker, and a server that manages the plan regarding the medical practice.
  • a medical support device having means for acquiring information on a patient to be performed and information on a drug to be administered to the patient and thereby updating a plan on medical practice is disclosed.
  • a server for a care management system stores content related to care management and a patient care plan associated with a corresponding patient. Including at least one schedule for presenting selected content sessions, wherein the server automatically controls communication of the patient's content sessions according to the care plan and automatically schedules the patient care plan to vacate the selected time period. Techniques configured to adjust are disclosed.
  • Patent Document 1 is such that the nursing plan can be updated by downloading the latest nursing plan from the nursing support server to the handy terminal, and how the nursing plan is changed is concrete. There is no description. Therefore, the burden on a caregiver or the like cannot be reduced using the technique of Patent Document 1.
  • Patent Document 2 automatically adjusts a long-term care plan schedule for patients with chronic diseases. Specifically, for example, when a patient goes on a vacation or goes on a business trip, automatic adjustment is performed so that the scheduled session can be missed and the session can be restarted smoothly after the business trip. Is to be done. Therefore, the burden on a caregiver or the like cannot be reduced using the technique of Patent Document 2.
  • the present invention has been made in view of the above circumstances. For example, while reducing the burden on a nurse or a caregiver, the cared person is appropriately selected based on a care plan adjusted according to the condition of the cared person.
  • An object is to provide a care plan adjustment system and a care plan adjustment method capable of providing care.
  • a care plan adjustment system reflecting one aspect of the present invention is: The number and timing of autonomous actions performed by the care recipient himself, the amount and intake timing of the intake that should be taken by the care recipient, the timing of collecting values related to the body of the care recipient, and the caregiver to the care recipient A care plan adjustment system for adjusting a care plan of a care recipient that defines at least one of the number and timing of care activities to be performed as a target amount or target timing, A central control device storing the care plan of the care recipient; In response to the content of the care plan of the care recipient, the content and execution time of the autonomous action performed by the care recipient himself, the amount and intake time of the intake taken by the care recipient, At least one of the value and collection time collected from the cared person's body and the content and execution time of the care action performed by the caregiver for the cared person is input as care data to the central control device.
  • An input device Having a terminal communicably connected to the central control unit, When the care data input from the input device deviates from a target amount or target timing determined in the care plan of the care recipient by a threshold or more, the central control device approaches the total target amount or target timing. For this purpose, a care data supplement plan to be collected by the care recipient is created, and the care data supplement plan is transmitted to the terminal. The terminal presents the care data supplement plan. To do.
  • a care plan adjustment method reflecting one aspect of the present invention is: The number and timing of autonomous actions performed by the care recipient himself, the amount and intake timing of the intake that should be taken by the care recipient, the timing of collecting values related to the body of the care recipient, and the caregiver to the care recipient
  • a care plan adjustment method for adjusting a care plan of a cared person in which at least one of the number and timing of care actions to be performed is set as a target amount or a target timing, and includes the contents of the care plan of the cared person
  • the input care data is shifted from the target amount or target timing determined by the care plan of the care recipient by a threshold value or more
  • the care plan adjustment system and care which can care for a cared person appropriately based on the care plan adjusted according to the condition of the cared person, for example, reducing the burden of a nurse or a caregiver, for example
  • a plan adjustment method can be provided.
  • FIG. 1 is a diagram illustrating an overall configuration of a care support system including a care plan adjustment system according to the present embodiment.
  • FIG. 2 is a diagram illustrating a configuration of a sensor box in the care support system of the present embodiment.
  • FIG. 3 is a diagram showing the configuration of the management server in the care support system of the present embodiment.
  • FIG. 4 is a diagram illustrating a configuration of the mobile terminal in the care support system of the present embodiment.
  • FIG. 5 is a diagram illustrating a configuration of a transmission destination information table in the care support system of the present embodiment.
  • care is a concept including “nursing”.
  • the care support system in the present embodiment supports care by watching the target person Ob by detecting the state of a care receiver (hereinafter referred to as a target person) Ob that is a care target by using the corresponding sensor box SB.
  • a target person a care receiver
  • it has a function to optimally adjust a care plan determined for each subject Ob.
  • Such a care support system MS includes, for example, as shown in FIG. 1, a sensor box SB (SB-1 to SB-4), a management server SV, and a fixed terminal device SP respectively provided in the subject person's room.
  • mobile terminals TA (TA-1, TA-2) each managed by a caregiver as a caregiver, and these are wired or wireless, LAN (Local Area Network), telephone network and data communication network Or the like (network, communication line) NW is communicably connected.
  • the network NW may be provided with relays such as repeaters, bridges, routers, and cross-connects that relay communication signals.
  • relays such as repeaters, bridges, routers, and cross-connects that relay communication signals.
  • the plurality of sensor boxes SB-1 to SB-4, the management server SV, the fixed terminal device SP, and the plurality of portable terminals TA-1 and TA-2 are connected to a wireless LAN (including an access point AP (for example, a LAN conforming to the IEEE 802.11 standard) is connected to be communicable with each other via an NW.
  • the sensor box SB corresponds to an example of an input device in combination with a sensor SS described later
  • each of the fixed terminal device SP and the portable terminal TA corresponds to an example of a terminal that also serves as an input device.
  • the target person Ob is, for example, a person who needs nursing due to illness or injury, a person who needs care due to a decrease in physical ability, or a single person living alone.
  • the subject Ob is a person who needs the detection when a predetermined inconvenient event such as an abnormal state occurs in the person.
  • the care support system MS is suitably arranged in a building such as a hospital, a welfare facility for the elderly, and a dwelling unit according to the type of the subject Ob.
  • the care support system MS is disposed in a building of a care facility including a plurality of rooms RM in which a plurality of target persons Ob move, and a plurality of rooms such as a nurse station ST.
  • the sensor box SB is disposed on the ceiling or wall of the living room RM of the subject Ob, and has a communication function for communicating with the management server SV or the like via the network NW. More specifically, as shown in FIG. 2, the sensor box SB includes a sensor unit 11, an SB sound input / output unit 12, a nurse call input unit 13, an SB control processing unit 14, and an SB communication IF unit 15. SB storage unit 16.
  • the sensor unit 11 is a device that is connected to the SB control processing unit 14, detects the state of the subject Ob under the control of the SB control processing unit 14, and outputs corresponding state data.
  • the state of the subject Ob is the wake-up, getting out of bed, falling, falling, and abnormal movement of the subject Ob, and in order to detect these, the sensor unit 11 is, for example, a Doppler sensor 111 And a camera 112.
  • the Doppler sensor 111 is a body motion sensor that transmits a transmission wave, receives a reflection wave of the transmission wave reflected by an object, and outputs a Doppler frequency component Doppler signal based on the transmission wave and the reflection wave. .
  • the Doppler sensor 111 generates a signal of the Doppler frequency component as a Doppler signal and outputs it to the SB control processing unit 14.
  • the transmission wave may be an ultrasonic wave, a microwave, or the like, but is a microwave in the present embodiment. Since the microwave can be transmitted through the clothing and reflected from the body surface of the subject Ob, it is preferable because the motion of the body surface can be detected even if the subject Ob is wearing clothes.
  • the camera 112 is an apparatus that is connected to the SB control processing unit 14 and generates an image (image data) under the control of the SB control processing unit 14.
  • the camera 112 is arranged so as to be able to monitor a space where the subject Ob to be monitored is located (in the example shown in FIG. 1, a space in the room RM), and images the space as an imaging target from above, An image (image data) overlooking the imaging target is generated, and the image of the imaging target is output to the SB control processing unit 14.
  • the camera 112 is set in advance so that the head of the subject Ob is located in the bedding on which the subject Ob is lying (for example, a bed).
  • the sensor box SB uses the camera 112 of the sensor unit 11 to acquire an image of the subject Ob taken from above the subject Ob, preferably an image taken from directly above the planned head position.
  • Such a camera 112 may be a device that generates an image of visible light, but has a function of generating an infrared image in this embodiment so that the subject Ob can be monitored even in a relatively dark place.
  • a camera 112 is, for example, in this embodiment, an imaging optical system that forms an infrared optical image of an imaging target on a predetermined imaging surface, and a light receiving surface that is aligned with the imaging surface.
  • An image sensor that converts an infrared optical image in the imaging target into an electrical signal, and image data that is data representing an infrared image in the imaging target by performing image processing on the output of the image sensor.
  • a digital infrared camera including an image processing unit to be generated.
  • the imaging optical system of the camera 112 is preferably a wide-angle optical system (so-called wide-angle lens (including a fisheye lens)) having an angle of view that can capture the entire room RM of the subject Ob.
  • a wide-angle optical system so-called wide-angle lens (including a fisheye lens)
  • an infrared illumination device that illuminates the space with infrared light may be further provided.
  • the SB sound input / output unit 12 is a circuit that is connected to the SB control processing unit 14 to acquire an external sound and input it to the sensor box SB, and represents an electric signal representing the sound according to the control of the SB control processing unit 14 This generates and outputs sound according to the sound.
  • the SB sound input / output unit 12 includes, for example, a microphone that converts sound acoustic vibrations into electrical signals, and a speaker that converts sound electrical signals into sound acoustic vibrations.
  • the SB sound input / output unit 12 outputs an electric signal representing an external sound to the SB control processing unit 14, and converts the electric signal input from the SB control processing unit 14 into an acoustic vibration of sound and outputs the sound.
  • the SB sound input / output unit 12 can be separated from the sensor box SB main body, and is preferably connected to the SB control processing unit 14 wirelessly or by wire and placed in an arbitrary place in the living room. Furthermore, when the SB sound input / output unit 12 is connected to the SB control processing unit 14 wirelessly, it is preferable to provide a device that monitors the remaining battery capacity in the SB sound input / output unit 12 and notifies the operator or the like. When the SB sound input / output unit 12 is connected to the SB control processing unit 14 by wire, it is preferable to provide a device for notifying an operator or the like whether or not an appropriate connection has been made.
  • the nurse call input unit 13 is a push button switch or the like connected to the SB control processing unit 14.
  • an electrical signal indicating that the nurse call has been accepted is output from the nurse call input unit 13 to the SB control processing unit 14, thereby A signal is transmitted to the portable terminal TA such as a craftsman.
  • a signal is being transmitted, for example, by lighting a lamp associated with the nurse call input unit 13.
  • the SB communication IF unit 15 is a communication circuit that is connected to the SB control processing unit 14 and performs communication according to the control of the SB control processing unit 14.
  • the SB communication IF unit 15 generates a communication signal containing the data to be transferred input from the SB control processing unit 14 according to the communication protocol used in the network NW of the care support system MS, and generates the generated communication signal. It is transmitted to the management server SV etc. via the network NW.
  • the SB communication IF unit 15 receives a communication signal from the management server SV or the like via the network NW, extracts data from the received communication signal, and can process the extracted data by the SB control processing unit 14. And output to the SB control processing unit 14.
  • the SB communication IF unit 15 further uses a standard such as a mobile phone communication network, WiFi standard, Bluetooth (registered trademark) standard, IrDA (Infrared Data Association) standard, USB (Universal Serial Bus) standard, etc.
  • a standard such as a mobile phone communication network, WiFi standard, Bluetooth (registered trademark) standard, IrDA (Infrared Data Association) standard, USB (Universal Serial Bus) standard, etc.
  • An interface circuit for inputting / outputting data to / from the device may be provided.
  • the SB storage unit 16 is a circuit that is connected to the SB control processing unit 14 and stores various programs and various data according to the control of the SB control processing unit 14.
  • the various programs include, for example, a control processing program such as a monitoring processing program that executes information processing related to monitoring of the subject Ob.
  • the monitoring processing program includes a notification processing program for notifying the outside when a predetermined event (event) occurs, an image (moving image) captured by the camera 112, and the fixed terminal device SP or mobile terminal TA that requested the image.
  • a nurse call processing program for making a voice call with the fixed terminal device SP and the portable terminal TA by using the SB sound input / output unit 12 and the like.
  • the various types of data include data necessary for executing each program, target data Ob, in addition to moving image data captured by the camera 112, state data such as micromotion data acquired by the Doppler sensor 111, and the like. Data necessary for monitoring is included.
  • the SB storage unit 16 includes, for example, a ROM (Read Only Memory) that is a nonvolatile storage element, an EEPROM (Electrically Erasable Programmable Read Only Memory) that is a rewritable nonvolatile storage element, and the like.
  • the SB storage unit 16 includes a RAM (Random Access Memory) that serves as a working memory of the so-called SB control processing unit 14 that stores data generated during execution of the program.
  • the SB control processing unit 14 is a circuit for receiving a nurse call, generating a moving image, and detecting a predetermined action set in advance in the target person Ob.
  • the SB control processing unit 14 includes, for example, a CPU (Central Processing Unit) and its peripheral circuits.
  • the SB control processing unit 14 causes the sensor control unit (SB control unit) 141, the behavior detection processing unit 142, the notification processing unit 143, the streaming processing unit 144, and the nurse call processing unit 145 to be executed by executing the control processing program. Functionally prepared.
  • the SB control unit 141 is responsible for overall control of the sensor box SB.
  • the behavior detection processing unit 142 detects a predetermined event set in advance in the target person Ob based on the output of the sensor unit 11.
  • the predetermined events are the wake-up, getting-off, falling, falling, and abnormal movement of the subject Ob
  • the behavior detection processing unit 142 is based on the output of the sensor unit 11. Awakening, getting out of bed, falling, falling, and abnormal movement of the subject person Ob are detected as events and notified to the notification processing unit 143.
  • the behavior detection processing unit 142 can detect and detect awakening, getting out of bed, falling, falling, and abnormal movement of the subject Ob.
  • the behavior detection processing unit 142 extracts a moving body region as the human body region of the subject person Ob from the image acquired by the camera 112 of the sensor unit 11, and the posture (for example, standing) of the subject person Ob from the aspect ratio of the extracted moving body region. Position, sitting position, lying position, etc.), and detecting the position of the detected moving body region, and determining whether to wake up, get out of bed, fall, and fall based on these determinations and the detected posture and position of the subject Ob. . Further, the behavior detection processing unit 142 determines that a wake-up event (wake-up event) has occurred when a transition from a lying posture to a sitting posture is detected in the bed area.
  • a wake-up event wake-up event
  • the behavior detection processing unit 142 determines that the person has left the bed and determines that a bed leaving event (a bed leaving event) has occurred. In addition, when the behavior detection processing unit 142 detects a lying posture outside the bed region from the bed region to the outside of the bed region, the behavior detection processing unit 142 determines that the vehicle has fallen, and a fall event (fall event) has occurred. to decide.
  • the behavior detection processing unit 142 determines that a fall has occurred and determines that a fall event (fall event) has occurred. Further, the behavior detection processing unit 142 detects body movement of the chest (vertical movement of the chest) accompanying the breathing motion of the subject Ob by the Doppler sensor 111 of the sensor unit 11, and a period disturbance in the body movement of the chest or a pre- When the amplitude in the body movement of the chest that is equal to or less than a set threshold is detected, it is determined that the minute movement abnormality is present, and it is determined that a minute movement abnormality event (fine movement abnormality event) has occurred.
  • the behavior detection processing unit 142 has a function of making a determination based on the stored daily behavior of the subject, and when taking a behavior different from the stored normal behavior or taking a behavior due to the stored dementia, etc. For example, it may be determined that an abnormal event has occurred, and the mobile terminal TA may be notified as will be described later.
  • the judgment standard (judgment algorithm) of the action detection processing unit 142 is unified for all sensor boxes SB. Thereby, even if a resident changes, it becomes unnecessary to change a judgment standard, and it does not take time and effort.
  • the determination criterion of the behavior detection processing unit 142 may be customized for each sensor box SB.
  • the nurse call processing unit 145 When the nurse call input unit 13 receives an input operation, the nurse call processing unit 145 notifies the notification processing unit 143 of an event, more specifically, a nurse call operation (nurse call event).
  • the nurse call processing unit 145 enables voice communication with the fixed terminal device SP or the portable terminal TA via the SB communication IF unit 15 and the network NW.
  • the sensor box SB is connected to a sensor SS as an input device that detects various values related to the body of the subject Ob so as to be able to perform wireless communication, and manages the values detected by the sensor SS via the SB communication IF unit 15. It has a function to transmit to the server SV.
  • the various values related to the body of the subject Ob are, for example, the body temperature, blood concentration, heart rate, blood pressure, room temperature / humidity, etc. of the subject Ob, and are transmitted to the sensor box SB together with the detection time.
  • the sensor SS may be always worn by the subject Ob, or may be worn by a caregiver only at the time of detection. Furthermore, for example, by installing a human sensor at the entrance of a toilet and detecting the entry / exit time of the subject Ob, the type and time of excretion can be detected and transmitted to the sensor box SB.
  • the notification processing unit 143 includes a nurse call event by the nurse call input unit 13 and a predetermined event in which a predetermined action in the target person Ob is detected by the sensor unit 11 (in this embodiment, each event of getting up, getting out of bed, falling, falling) ) Is notified to the outside when it occurs in the sensor box SB. More specifically, the notification processing unit 143 identifies information indicating the type of event that has occurred (in this embodiment, a nurse call event, or a predetermined detection event (wake-up, getting out of bed, falling, falling, falling and abnormal movement of the minute body).
  • a notification signal including information, that is, information indicating a type of a predetermined state and the type), and identifier information for identifying and identifying the sensor box SB detecting the subject Ob, and generating SB communication It is transmitted from the IF unit 15 to the management server SV via the network NW. If there is a request (transmission of a status data request signal) from the outside, the notification processing unit 143 communicates a status signal such as image data. Is transmitted from the SB communication IF unit 15 to the management server SV via the network NW.
  • the streaming processing unit 144 is provided when a streaming video distribution request is received from the fixed terminal device SP or the portable terminal TA via the network NW and the SB communication IF unit 15. Distributing a moving image (for example, a live moving image) generated by the camera 112 of the sensor unit 11 to the requesting fixed terminal device SP or portable terminal TA via the SB communication IF unit 15 and the network NW by streaming reproduction It is.
  • a moving image for example, a live moving image
  • FIG. 1 shows four first to fourth sensor boxes SB-1 to SB-4 as an example, and the first sensor box SB-1 is one of the subjects Ob, Mr. Ob.
  • the second sensor box SB-2 is arranged in the room RM-2 of Mr. B Ob-2 who is one of the subjects Ob, and the third sensor box SB-3. Is arranged in the room RM-3 of Mr. C Ob-3 who is one of the subject Ob, and the fourth sensor box SB-4 is the room RM of Mr. D Ob-4 who is one of the subject Ob. -4.
  • the sensor unit 11 when the operation is started, the sensor unit 11 outputs an image generated by imaging the location space from above at a predetermined frame rate and a Doppler signal to the SB control processing unit 14.
  • the behavior detection processing unit 142 of the SB control processing unit 14 detects the presence / absence of a predetermined behavior in the subject Ob based on these images and Doppler signals at predetermined time intervals, and detects the predetermined behavior as a detection event.
  • the detection event is notified to the notification processing unit 143 including the type of the detection event.
  • the notification processing unit 143 transmits a notification signal from the SB communication IF unit 15 to the management server SV.
  • the nurse call processing unit 145 when the nurse call processing unit 145 receives an input operation by the nurse call input unit 13, the nurse call processing unit 145 notifies the notification processing unit 143 of a nurse call reception event. Upon receiving the notification of the reception event, the notification processing unit 143 transmits a notification signal from the SB communication IF unit 15 to the management server SV. The management server SV notifies the mobile terminal TA of the caregiver in charge of the room where the nurse call has occurred that the nurse call has occurred.
  • the management server SV as a central control device will be described.
  • the management server SV has a communication function for communicating independently with another sensor box SB, a fixed terminal SP, and a mobile terminal TA via a network NW.
  • the management server SV receives a notification from the sensor box SB, stores a function for providing information to the mobile terminal TA and / or the fixed terminal device SP of the caregiver in charge of the room where the event has occurred, and further stores the care plan. It has a function of receiving care data input from the portable terminal TA and correcting the care plan based on the care data.
  • Such a management server SV includes, for example, an SV control processing unit 21, an SV storage unit 22, and an SV communication IF unit 23 as shown in FIG.
  • the SV communication IF unit 23 is a communication device that is connected to the SV control processing unit 21 and performs communication according to the control of the SV control processing unit 21.
  • the SV communication IF unit 23 generates a communication signal containing the data to be transferred input from the SV control processing unit 21 according to the communication protocol used in the network NW of the care support system MS, and generates the generated communication signal. It transmits to the sensor box SB etc. via the network NW.
  • the SV communication IF unit 23 receives a communication signal from the sensor box SB or the like via the network NW, extracts data from the received communication signal, and has a format in which the SV control processing unit 21 can process the extracted data. And output to the SV control processing unit 21.
  • the SV storage unit 22 is a circuit that is connected to the SV control processing unit 21 and stores various programs, various data, and care plans in accordance with the control of the SV control processing unit 21.
  • the various programs include, for example, a control processing program such as a server program that provides data to the client in response to a request from a client (in this embodiment, the fixed terminal device SP and the portable terminal TA).
  • the various types of data include data necessary for executing each program described above, such as monitoring information related to monitoring of the target person Ob and notification destination information related to the event notification destination, and necessary for monitoring the target person Ob. Data.
  • the SV storage unit 22 includes, for example, a ROM, an EEPROM, and the like.
  • the SV storage unit 22 includes a RAM serving as a working memory for the so-called SV control processing unit 21 that stores data generated during execution of the predetermined program.
  • the SV storage unit 22 includes a notification destination information storage unit 221 that stores notification destination information.
  • the notification destination information storage unit 221 stores notification destination information related to an event notification destination.
  • the notification destination information is information representing a notification destination that notifies the event accommodated in the received notification signal.
  • the notification destination information is information indicating a correspondence relationship between the sensor box SB that has transmitted the notification signal and the mobile terminal TA that transmits the notification signal received from the sensor box SB.
  • it is stored in the notification destination information storage unit 221 in a table format.
  • notification source address field 411 for registering the communication address of the sensor box SB that is the transmission source of the notification signal, and notification event information when the target person enters this state.
  • a notification event field 412 to be notified and an event contained in the notification signal received from the sensor box SB having the communication address associated with the communication address of the sensor box SB registered in the notification source address field 411 are notified.
  • the communication address of the sensor box SB may be the sensor ID, and the notification source address field 411 is not necessarily provided, but in the case of providing, the room number in which the sensor box SB is provided is registered. Also good.
  • the communication address of the mobile terminal TA may be a terminal identifier (terminal ID) for identifying and identifying the mobile terminal TA
  • the notification destination address field 413 includes, for example, the name of a caregiver having the mobile terminal TA
  • the name of a monitor such as may be registered.
  • a notification event item (notification event information) in the notification event field 412 can be set from the management server SV side according to the target person OB in the room where the sensor box SB is installed.
  • notification event item (notification event information) in the notification event field 412 can be set from the management server SV side according to the target person OB in the room where the sensor box SB is installed.
  • notification should be made when a fall / fall event occurs
  • notification should be given if a fall / fall / wake-up event occurs.
  • Mr. A and Mr. B notification should be made when a fall / fall event occurs
  • C notification should be given if a fall / fall / wake-up event occurs.
  • the condition of the target person (there is almost no problem after getting up, there are people who can be judged to be unnecessary, there is a person who is not), past correspondence information (having the habit of repeating getting out and getting up several times in the past) Therefore, it is desirable to divide the notification event according to the target person for reasons such as that there is a person who can determine that it is not necessary to take a single bed.
  • the SV control processing unit 21 is a circuit that receives a notification from the sensor box SB and transfers the received notification to the fixed terminal device SP and the corresponding mobile terminal TA.
  • the SV control processing unit 21 includes a CPU (Central Processing Unit) and its peripheral circuits.
  • the SV control unit 211 of the SV control processing unit 21 is responsible for overall control of the management server SV.
  • the management server SV is connected to the SV control processing unit 21 as necessary, as indicated by a broken line in FIG. 3, for example, a server input unit (SV input unit) 24 for inputting various commands, various data, and the like.
  • An interface unit (SVIF unit) 26 and the like may be provided.
  • Such a management server SV can be configured by a computer with a communication function, for example.
  • the fixed terminal device SP is installed in the nurse station ST and has a communication function for communicating with the management server SV and the like via the network NW, a display function for displaying predetermined information, and an input for inputting predetermined instructions and data.
  • the user interface of the care support system MS is provided with functions and the like, by inputting predetermined instructions and data to be given to the management server SV and the portable terminal TA, and displaying detection results and images obtained by the sensor box SB. It is a device that functions as (UI).
  • Such a fixed terminal device SP can be configured by, for example, a computer with a communication function. It is preferable that the fixed terminal device SP can grasp the state of the room through the function of the sensor box SB in all the rooms in which the sensor box SB is installed.
  • the portable terminal TA receives care data including a communication function for communicating with the management server SV and the like via the network NW, a display function for displaying predetermined information, predetermined instructions, and various data related to the subject Ob (details will be described later).
  • An input function for inputting, a call function for performing a voice call, and the like are provided.
  • a predetermined instruction or data to be given to the management server SV or the sensor box SB is input, and the predetermined event is generated when the predetermined event occurs in the sensor box SB.
  • a call is made with the sensor box SB, a video generated by the sensor box SB is displayed, information on the care plan transmitted from the management server SV, a necessary recommendation signal or an alert signal, It is a device for presenting to a caregiver through vision or hearing.
  • such a portable terminal TA includes a TA control processing unit 31, a TA storage unit 32, a TA communication IF unit 33, a TA sound input / output unit 34, A TA input unit 35, a TA display unit 36, and a TAIF unit 37 are provided.
  • the TA sound input / output unit 34 is a device connected to the TA control processing unit 31 for acquiring external sound and inputting it to the mobile terminal TA.
  • the TA sound input / output unit 34 represents an electric signal representing the sound according to the control of the TA control processing unit 31. This generates and outputs sound according to the sound.
  • the TA sound input / output unit 34 includes, for example, a microphone or the like that converts acoustic vibration into an electric signal, and a speaker or the like that converts an electric signal of sound into an acoustic vibration of sound. Composed.
  • the TA sound input / output unit 34 outputs an electrical signal representing an external sound to the TA control processing unit 31, and converts the electrical signal input from the TA control processing unit 31 into sound acoustic vibration and outputs the sound.
  • the TA input unit 35 is connected to the TA control processing unit 31 and is, for example, a device that receives a predetermined operation and inputs it to the mobile terminal TA, and includes a plurality of input switches assigned a predetermined function.
  • the predetermined operation include an ID input operation for logging in, a response operation corresponding to the notified nurse call, a request operation for a moving image, and a life-saving, nursing, and care for the notified subject Ob, for example.
  • various operations necessary for monitoring such as an input operation indicating that there is an intention to execute a response such as assistance (restoration).
  • the TA input unit 35 allows the caregiver to input various data regarding the subject Ob according to the care plan.
  • the various data include, for example, apparent physical condition, food intake and intake time, water intake and intake time, medication type and medication time, excretion type and excretion time, and the like.
  • the TA display unit 36 that is an information presentation unit is connected to the TA control processing unit 31, and according to the control of the TA control processing unit 31, the predetermined operation content input from the TA input unit 35 and the care support system MS.
  • the monitoring information related to the monitoring of the subject Ob being monitored (for example, an event that occurred in the sensor box SB, an image of the subject Ob, etc.), information on the care plan transmitted from the management server SV, and necessary recommendation signals Alternatively, it is a device that visualizes an alert signal, for example, a display device such as an LCD or an organic EL display.
  • the TA input unit 35 and the TA display unit 36 are configured from a touch panel.
  • the TA input unit 35 is a position input device that detects and inputs an operation position such as a resistance film method or a capacitance method.
  • a position input device is provided on the display surface of the TA display unit 36, and one or more input content candidates that can be input are displayed on the TA display unit 36.
  • a user such as a caregiver (monitorer)
  • the display position where the input content to be input is displayed is touched, the position is detected by the position input device, and the display content displayed at the detected position is input to the portable terminal TA as the operation input content of the user.
  • the TAIF unit 37 is a device that is connected to the TA control processing unit 31 and performs data input / output with an external device under the control of the TA control processing unit 31.
  • the TAIF unit 37 is a mobile phone communication network, WiFi standard, Bluetooth, and the like.
  • the TA communication IF unit 33 is a communication device that is connected to the TA control processing unit 31 and performs communication according to the control of the TA control processing unit 31, similarly to the SB communication IF unit 15.
  • the TA communication IF unit 33 generates a communication signal containing the data to be transferred input from the TA control processing unit 31 according to the communication protocol used in the network NW of the care support system MS, and generates the generated communication signal. It is transmitted to the management server SV etc. via the network NW.
  • the TA communication IF unit 33 receives a communication signal from the management server SV or the like via the network NW, extracts data from the received communication signal, and has a format in which the TA control processing unit 31 can process the extracted data. And output to the TA control processing unit 31.
  • the TA storage unit 32 is a circuit that is connected to the TA control processing unit 31 and stores various programs and various data according to the control of the TA control processing unit 31, similarly to the SB storage unit 16.
  • the various programs include a display processing program for processing operations related to display.
  • the various data includes data such as screen information displayed on the TA display unit 36.
  • the TA storage unit 32 includes, for example, a ROM and an EEPROM.
  • the TA storage unit 32 includes a RAM that serves as a working memory of a so-called TA control processing unit 31 that stores data generated during execution of the predetermined program.
  • the TA storage unit 32 functionally includes a display screen storage unit 321 in order to store the above-described information.
  • the display screen storage unit 321 stores screen information to be displayed on the TA display unit 36 in accordance with the control of the display processing unit 3121 described later in the TA control processing unit 31.
  • the TA control processing unit 31 is a circuit for processing information. Similar to the SB control processing unit 14, the TA control processing unit 31 includes, for example, a CPU and its peripheral circuits.
  • the TA control processing unit 31 functionally includes a TA control unit 311 and a TA processing unit 312 by executing a control processing program, and the TA processing unit 312 functionally includes a display processing unit 3121.
  • the TA control unit 311 is responsible for overall control of the mobile terminal TA.
  • the display processing unit 3121 processes an operation related to the display of the TA display unit 36. More specifically, the display processing unit 3121 displays a moving image on the TA display unit 36 as necessary.
  • Such a portable terminal TA can be constituted by a portable communication terminal device such as a so-called tablet computer, a smartphone, or a mobile phone.
  • FIG. 6 is a ladder chart showing an event detection operation in the care support system of this embodiment.
  • FIG. 7 is a diagram illustrating an example of a display screen of the mobile terminal according to the present embodiment.
  • the SB control processing unit 14 when activated, in the sensor box SB, by executing the control processing program, the SB control processing unit 14 includes the SB control unit 141, the behavior detection processing unit 142, and the notification process. Unit 143, streaming processing unit 144 and nurse call processing unit 145 are functionally configured.
  • the SV control processing unit 211 is functionally configured by executing the control processing program.
  • a TA processing unit 312 functionally including a TA control unit 311 and a display processing unit 3121 is functionally configured in the TA control processing unit 31 by executing the control processing program. .
  • the portable terminal TA When the portable terminal TA accepts a login operation such as a caregiver, for example, the portable terminal TA causes the TA processing unit 312 to display a standby screen waiting for a communication signal addressed to itself on the TA display unit 36.
  • the standby screen includes a menu bar area 611 for displaying a menu bar, a message indicating that the standby is in progress (for example, “no unsupported notification”), date and current A standby main area 612 for displaying a time, a user name (caregiver) who logs in the portable terminal TA, and the like.
  • the portable terminal TA waits for the TA communication IF unit 33 to receive a communication signal by the TA control unit 311.
  • step S101 of FIG. 6 the sensor box SB samples output data of the Doppler sensor 111 of the sensor unit 11 at a sampling period corresponding to a predetermined frame rate by the SB control unit 141 and acquires image data by the camera 112.
  • the behavior detection processing unit 142 analyzes the sampled and acquired output data of the Doppler sensor 111 and the image data of the camera 112 while being stored in a ring buffer (not shown). As a result of this analysis, if the SB control unit 141 does not detect a predetermined event (wake-up, getting-off, falling, falling, or abnormal micromotion) in step S102, the flow returns to step S101. Continue the detection operation.
  • the SB control unit 141 detects a predetermined event
  • the sensor box SB cuts out image data and / or micromotion data before and after the event from the ring buffer and stores them in the SB storage unit 16.
  • the detection operation of the sensor box SB can be interrupted only during the time period set via the fixed terminal SP.
  • the program in the sensor box SB can be changed via the fixed terminal SP.
  • the sensor box SB transmits event information indicating which type of notification event has occurred and a notification signal including a communication address to the management server SV via the network NW by the notification processing unit 143 (C11). Since the notification signal does not include the image data of the subject person, the amount of information is small.
  • the management server SV sends the information included in the notification signal to the notification destination information table 41 stored in the notification destination information storage unit 221 in step S104.
  • the management server SV determines who is the resident (here, Mr. B) from the communication address of the transmission destination corresponding to the communication address of the transmission source, and further to the resident (Mr. B) from the event information of the notification signal. It is determined whether it corresponds to the type of the corresponding notification event (here, falling or falling). If the event information of the received notification signal indicates a notification event, the management server SV determines to notify the terminal. On the other hand, when the event information of the received notification signal does not indicate the notification event (in the case of Mr. B, wake up or leave), the management server SV decides not to notify the terminal and waits for the next notification signal .
  • the management server SV compares the notification destination information table 41 stored in the notification destination information storage unit 221 with the communication address of the transmission destination corresponding to the communication address of the transmission source. A destination mobile terminal TA is selected. More specifically, the management server SV registers the communication address of the transmission source of the received notification signal in the notification source address field 411 in the notification destination information table 41 stored in the notification destination information storage unit 221. The communication address of the notification destination registered in the notification destination address field 413 in the existing record is extracted.
  • the communication address “192.168.10.25” is a communication address assigned to the portable terminal TA-1 owned by the caregiver NA, and the communication address “192.168.10.26”. Is the communication address assigned to the mobile terminal TA-2 owned by the caregiver NB, and the communication address "192.168.10.27" is the mobile terminal TA- 3 is a communication address assigned to the network.
  • the management server SV transmits a notification signal (event signal) including information that the fall or fall has occurred in the RM-2 room to the selected portable terminals TA-1 to TA-3 and the fixed terminal SP (C12). .
  • the portable terminal TA When such a notification signal is transmitted from the management server SV, the portable terminal TA switches the screen display of the TA display unit 36 to, for example, the one shown in FIG. At this time, the TA sound input / output unit 34 serving as a presentation unit is used to output sounds and voices (for example, a voice message such as “falling in RM-2”) or to the caregiver by vibration or the like. The reception of the notification signal may be notified.
  • buttons B1 corresponding), B2 (speak), B3 (view stored video), and B4 (view live video) are displayed in the main area 612.
  • the TA control unit 311 determines that an image request has been made, and the TA communication IF unit
  • a request signal (status data request signal) is transmitted to the management server SV via the network NW (C13).
  • the request signal includes a request type (stored video or live video).
  • the management server SV relays the request signal and transmits it to the target sensor box SB.
  • the request signal may be transmitted directly to the sensor box SB.
  • the sensor box SB that has received the request signal determines the request type in the request signal in step S107.
  • a request signal for requesting a stored image is output from the portable terminal TA. Therefore, the sensor box SB that has received the request via the management server SV requests a stored image.
  • the image data is read from the SB storage unit 16 and transmitted from the SB communication IF unit 15 to the management server SV via the network NW (C14).
  • NW NW
  • the caregiver touches the button B4 a request signal for requesting a live image is output from the portable terminal TA, and the sensor box SB that has received the request via the management server SV is requested for the live image.
  • step S108 the live video imaged by the camera 112 is encoded and transmitted from the SB communication IF unit 15 to the management server SV via the network NW (C14).
  • the live video may be cut out from the ring buffer.
  • the management server SV transmits the image data to the portable terminal TA that has transmitted the request signal. Note that the image data may be transmitted directly to the portable terminal TA.
  • the mobile terminal TA that has received the image data switches the screen display of the TA display unit 36 to the one shown in FIG.
  • the image (video) IMG of Mr. B before and after falling down in the RM-2 room is displayed in the main area 612.
  • the person can immediately determine whether or not the state should be dealt with.
  • the caregiver can touch the button B2 so that Mr. B and the caregiver can directly talk via the SB sound input / output unit 12 of the sensor box SB.
  • the situation can be judged accurately.
  • the image displayed on the portable terminal TA is the current streaming image.
  • the notification signal is transmitted to the portable terminal TA, and / or the notification signal may be transmitted to the fixed terminal SP.
  • the image request can be arbitrarily made regardless of the notification signal.
  • step S105 when the caregiver who sees the icon IC1 displayed in step S105 is near the RM-2 room where the event occurred, the caregiver can rush immediately without looking at the image. Therefore, in such a case, when the caregiver touches the button B1, information indicating that the caregiver directly responds to the fixed terminal SP. By touching the button B1, the display corresponding to the notification signal is canceled in the other portable terminal TA and / or the fixed terminal SP to which the notification signal is transmitted, and the display returns to the display of FIG. It is preferable that the “caregiver in charge, handling” indication is made.
  • FIG. 8 is a ladder chart for realizing the care plan adjustment method.
  • FIG. 9 is a diagram showing a data analysis and care plan correction routine performed in the management server SV.
  • the operation shown in FIG. 8 is preferably executed in parallel with the operation shown in FIG.
  • the care plan means the number and timing of autonomous actions performed by the subject being cared for himself, the amount and timing of intake that the subject should ingest, the timing of collecting values related to the subject's body, and care It defines at least one of the number of times of nursing care and the timing of the caregiver performs on the subject. Examples of autonomous actions performed by the subject themselves include waking up, going to bed, taking a walk, rehabilitation, excretion, bathing, etc.
  • Examples of intakes that the subject should consume include meals, snacks, drugs, and water
  • values related to the subject's body include body temperature, blood oxygen concentration, heart rate, blood pressure, respiratory rate (detectable with a Doppler sensor), etc. As such, there are a change of position when bedridden, meal assistance, excretion assistance, walking assistance and the like.
  • the content and measurement value of the action and the execution time thereof are transmitted as care data to the management server SV from the terminal TA or the measured sensor manually input by a caregiver.
  • step S201 in FIG. 8 the caregiver inputs various data of the subject person in charge via the terminal TA.
  • the various data of the input subject is transmitted from the terminal TA to the management server SV via the network NW (C21).
  • the input values related to the subject's body are transmitted from the sensor box SB to the management server SV via the network NW. (C22).
  • the management server SV that has received the care data including the subject's data and values relating to the subject's body executes a data analysis and care plan correction routine in step S203, and alerts as indicated by dotted lines as necessary.
  • a signal (described later) is transmitted to the terminal TA, and a correction plan for the care plan is created. Details of the data analysis and care plan correction routine will be described later.
  • the management server SV transmits information including a correction plan of a care plan created according to the input care data to a terminal TA (or a fixed terminal) managed by a caregiver in charge of the subject (C23), In parallel with this, in step S204, various data on the subject and various values related to the subject's body are made into a database. On the other hand, the terminal TA that has received the information including the care plan correction plan displays the care plan correction plan in step S205.
  • step S206 if an update to the care plan is not permitted based on the correction plan of the care plan by an input to the terminal TA by a caregiver or the like having the authority to permit the correction plan, the terminal TA receives a new one from the management server SV. Wait for transmission. On the other hand, if the update of the care plan is permitted in step S206, the permission signal is transmitted from the terminal TA to the management server SV. Therefore, in step S207, the management server SV sets the care plan correction plan as a new care plan. The information including the updated care plan is transmitted to the terminal TA.
  • the contents shown in FIG. 9 include the operations in steps S204 and S207 in FIG. If it is determined in step S301 in FIG. 9 that the final confirmation information is not input from the terminal TA today, the management server SV in the state identified according to the target person as care data from the terminal TA or the like in step S302. Analyzes the input data of the subject and various values related to the subject's body. In the analysis, the accumulated amount is also taken into consideration. Specifically, a daily intermediate target such as an intake amount, an overall target, an expected target based on a cumulative pace, a target per unit time, and the like are analyzed.
  • the total target amount or target timing refers to an intermediate target within a day, an overall target, an expected target based on a cumulative pace, and the like.
  • step S303 the management server SV compares the analysis result with the current care plan according to each target person. If the management server SV determines that there is no deviation from the content of the care plan, the management server SV returns the flow to step S301. .
  • step S303 determines whether the analysis result matches a predetermined condition, that is, the target. It is determined whether the deviation amount is within a threshold with respect to the amount or the target timing. As a result, if it is determined that the amount of deviation is within the threshold, the management server SV returns the flow to step S301.
  • the management server SV sends any data or value to the terminal TA of the caregiver in charge of the analyzed person in the subsequent step S305.
  • a supplementary plan for care data that should be collected by the subject afterwards (with the determined care plan and The recommended amount for suppressing the deviation is calculated and transmitted, and an alert signal is transmitted together with a supplement to the care data.
  • the caregiver's attention is alerted by displaying an alert signal, and how to cope with the deviation from the care plan based on the proposed supplement of care data Knowing what to do and reducing the burden on caregivers.
  • step S301 the management server SV sends the analysis result to the caregiver terminal TA in charge of the next day as a report item. And send.
  • step S307 the management server SV creates a database of the subject person's data and the subject's body values together with the analysis results. Such a database can be accessed from the terminal TA as required.
  • the management server SV can transmit information such as advice for prompting the subject's health checkup to the terminal TA.
  • step S308 the management server SV creates a correction plan for the care plan more suitable for the subject based on the analysis of the care data, and transmits information including the correction plan to the terminal TA.
  • step S309 A permission signal is received from the terminal TA and the care plan is updated. Thereby, the next caregiver who takes over can care for an object person appropriately according to the updated care plan. However, the management server SV does not change the current care plan unless it receives the permission signal.
  • FIGS. 10 to 12 are diagrams showing the facility schedule, a care plan example for each target person, input data from the terminal, and alert to the terminal in time series.
  • FIG. 13 shows a display example of the terminal TA, but the description of the same function as that shown in FIG. 7 is omitted.
  • care plan renewal will be described. It is assumed that the management server SV stores in advance the facility schedule and the contents of the care plan for each target person as shown in FIGS.
  • the temperature of Mr. Y is measured from a thermometer worn by a caregiver NA, and the measured value (36 ° C) is transmitted from the sensor box SB to the management server SV along with the temperature measurement time.
  • the amount of water replenished by Mr. Y is 150 cc at the time of hydration by the care plan
  • the actual amount of hydration from the terminal TA-1 to the management server SV is manually input by the caregiver NA.
  • 150 cc of data is transmitted along with the input time.
  • the management server SV has a total hydration amount of 400 cc at 12 o'clock, and the hydration target amount at this point is 600 cc, which is below 90% of the target as an intermediate threshold. Therefore, an alert signal “Warning of insufficient moisture!” Is transmitted to the terminal TA-1.
  • the management server SV currently calculates that 100 cc replenishment has not been achieved with respect to the hydration replenishment amount of 600 cc, which is an intermediate target, and creates a supplementary plan for care data to compensate for the shortage.
  • the replenishment target amount can be changed to “250 cc” and transmitted to the terminal TA-1.
  • the terminal TA-1 Upon receiving the alert signal and the supplementary care data, the terminal TA-1 displays in the main area 612 a warning indication (alarm presentation) of “Warning deficiency!” As shown in FIG.
  • the hydration target 250 cc at 18:00 is displayed. Caregiver NA who sees this display knows that Mr. Y's hydration amount is insufficient, and can urge hydration to compensate for this.
  • the supplementary plan for care data are transmitted from the management server SV to all the caregivers' terminals, and all the caregivers pay attention to Mr. Y's hydration. Also good.
  • the actual hydration amount is transferred from the terminal TA-1 to the management server SV by manual input of the caregiver NA.
  • 350 cc of data is transmitted along with the input time.
  • Mr. Y's total hydration amount is 750 cc
  • the hydration target amount at this point is 800 cc
  • the terminal TA-1 erases the displayed warning display.
  • the management server SV can restore the care data supplement plan. Accordingly, the display on terminal TA-1 is erased.
  • the amount of water supplied by Mr. Y is 170 cc at the time of hydration by the care plan
  • the actual amount of water supply from the terminal TA-1 to the management server SV is manually input by the caregiver NA. 170 cc of data is transmitted along with the input time.
  • the caregiver NA who confirmed that Mr. Y had taken medicine B was manually input from the terminal TA-1 to the management server SV, along with the input time. Is done. Thereafter, the caregiver NA who has finally confirmed the care of Mr. Y transmits a signal indicating that the final confirmation has been performed from the terminal TA-1 to the management server SV by operating the terminal TA-1.
  • the management server SV that has received the final confirmation signal has Y's total hydration amount of 920 cc today, and the daily hydration target amount is 1000 cc.
  • a correction plan is generated by increasing the hydration target amount to 240 cc each time, and information including the correction plan is transmitted to the terminal TA-1.
  • the caregiver NA or manager or group leader who sees the display on the terminal TA-1 based on the information determines whether or not the amendment can be permitted, and if so, the permission signal is sent from the terminal TA-1. Send.
  • a signal indicating permission is output from the terminal TA-1, and the management server SV that has received the signal transmits the changed care plan to the terminal TA-2 of the caregiver NB in charge of Mr. Y on the next day.
  • information indicating that “Mr. Y tends to lack moisture” is transmitted to the terminal TA-2 as a message to be sent.
  • the management server SV does not change the current care plan unless it receives a signal to permit. All data input to the management server SV, the presence or absence of alerts, and a new care plan are made into a database and stored as an official care record after approval by an administrator or group leader who manages the caregiver in charge.
  • the caregiver NB (and / or facility manager or group leader, etc.) who takes over Y's care from caregiver NA logs into the system from terminal TA-2, so that FIG. As shown in the above, such a message to be sent is displayed on the screen, and it is understood that Mr. Y tends to be deficient in moisture for the caregiver NB without taking over from the caregiver NA in writing. Moreover, if a notification item is displayed on a terminal of a caregiver or the like belonging to the same group as the caregiver NB, it can be shared by all the groups.
  • the actual calorie input screen is displayed based on the care plan stored in the terminal TA-1, so if the calorie consumed by Mr. X was 300 Kcal, the caregiver NA entered manually. As a result, data of actual calorie intake 300 Kcal is transmitted together with the input time from the terminal TA-1 to the management server SV.
  • the temperature of Mr. X is measured from a thermometer worn by a caregiver NA, and the measured value (36 ° C) is sent from the sensor box SB to the management server SV along with the temperature measurement time.
  • the management server SV sends an alert signal indicating an increase in body temperature to the terminal TA-1, and displays a warning display (not shown) on the terminal TA-1. , You may make it alert the caregiver NA.
  • the input screen for the actual calorie intake is displayed based on the care plan stored in the terminal TA-1, so when the calorie ingested by Mr. X was 400 Kcal, the caregiver NA entered manually As a result, the data of actual calorie intake 400 Kcal is transmitted together with the input time from the terminal TA-1 to the management server SV.
  • the management server SV since the total calorie intake (700 Kcal) of Mr. X is within 110%, which is an intermediate threshold value with respect to the target calorie intake (650 Kcal), the management server SV does not issue an alert signal.
  • the management server SV determines that Mr. X's total calorie intake is 50 Kcal higher than the target calorie intake, and creates a supplementary plan for care data to reduce the calorie for dinner by 50 cal, so that the terminal TA- 1 can also be transmitted.
  • the management server SV It is determined that forgetting to take C, and an alert signal “Mr. X forgets to take medicine C” is transmitted. At this time, a voice announcement “Mr. X, let's take medicine C” may be automatically performed via the sensor box SB by a signal from the management server SV.
  • the terminal TA-1 that has received such an alert signal displays a warning message “Mr. X has forgotten to take medicine C”, so that caregiver A is urged to take if Mr. X has forgotten to take medicine C. it can.
  • the caregiver NA who has confirmed the fact that the medicine C has been entered is transmitted together with the input time from the terminal TA-1 to the management server SV that Mr. X has taken the medicine C.
  • the management server SV determines that it is no longer forgotten, and transmits an alert release signal to the terminal TA-1. Receiving this, the terminal TA-1 erases the displayed warning display.
  • the actual calorie input screen is displayed based on the care plan stored in the terminal TA-1, so when Mr. X ingested 400 Kcal, the caregiver NA entered manually As a result, the data of actual calorie intake 400 Kcal is transmitted together with the input time from the terminal TA-1 to the management server SV.
  • caregiver NA transmits information that Mr. X vomits to management server SV. Thereafter, the caregiver NA who finally confirmed the care of Mr. X transmits a signal indicating that the final confirmation has been performed from the terminal TA-1 to the management server SV by operating the terminal TA-1.
  • the management server SV that has received the final confirmation signal determines that the daily target calorie intake is 1000 Kcal, whereas the total calorie intake of Mr. X is excessive at 1100 Kcal, resulting in vomiting.
  • an amendment plan in which the target calorie intake is reduced to 900 Kcal is created, and information including it is transmitted to the terminal TA-1.
  • the caregiver NA or manager or group leader
  • the caregiver NA who sees the display on the terminal TA-1 based on the information determines whether or not the amendment can be permitted, and if so, the permission signal is sent from the terminal TA-1. Send.
  • a signal indicating permission is output from the terminal TA-1, and the management server SV that has received the signal transmits the changed care plan to the terminal TA-2 of the caregiver NB in charge of Mr. X on the next day.
  • information indicating that “Mr. X has excessive calorie intake and vomited” is transmitted to terminal TA-2 as a message to be sent.
  • the management server SV does not change the current care plan unless it receives a signal to permit. All data input to the management server SV, the presence or absence of alerts, and a new care plan are made into a database and stored as an official care record after approval by an administrator or group leader who manages the caregiver in charge.
  • the notification items are displayed on the screen, and the caregiver NA takes over in writing. Even without the caregiver, NB knows that Mr. X has an excess of calories. Moreover, if a notification item is displayed on a terminal of a caregiver or the like belonging to the same group as the caregiver NB, it can be shared by all the groups.
  • Mr. Z's body temperature is measured from a thermometer worn by the caregiver NA, for example, and the measured value (36 ° C) is transmitted from the sensor box SB to the management server SV along with the temperature measurement time. Mr. Z does not forget to take medicines A and B. Therefore, no alert signal is transmitted from the management server SV that has received these input data.
  • the management server SV can transmit an alert signal of “Mr. Z's attention to the number of excretion!” Because the excretion frequency is too high. Similarly, an alert signal can be transmitted when the number of excretion is small.
  • the terminal TA-1 that has received the alert signal displays a warning message “Mr. Z's attention to the number of excretion!”. Caregiver NA who saw this went to look at Mr.
  • the management server SV exceeds the number of daily excretion set in the care plan, but judges that it is a state-of-the-art, and does not create a correction plan for the care plan today, and takes charge of Mr. Z on the next day.
  • Information indicating that “Mr. Z is slightly excreted” is transmitted to the terminal TA-2 as a report item to the terminal TA-2 of the caregiver NB. All data input to the management server SV, the presence or absence of alerts, and a new care plan are made into a database and stored as an official care record after approval by an administrator or group leader who manages the caregiver in charge.
  • the management server SV measures the number of excretion of Mr. Z for 3 days (10 times, 12 times, 11 times) and takes the average, it will be 11 times. Then, the amendment plan in which the number of excretion is changed to 11 times is created and information including the amendment is transmitted to the terminal.
  • the caregiver NA or manager or group leader who sees the display on the terminal TA-1 based on the information determines whether or not the amendment can be permitted, and if so, the permission signal is sent from the terminal TA-1. Send.
  • the management server SV that has received a signal indicating permission from the terminal receives the change, and the caregiver (and / or facility manager, group leader, etc.) in charge of Mr. Z on the next day with the changed care plan To the terminal.
  • the management server SV does not change the current care plan unless it receives a signal to permit.
  • the sensor box SB determines this, and the caretaker who is in charge via the management server SV, the receptionist of the facility or the terminal TA such as a security guard An alarm signal may be issued.
  • a sensor is attached to the refrigerator door or electric pot switch, and the subject opens the refrigerator door to replenish water or the electric pot.
  • the average intake amount in such a case may be transmitted to the management server.
  • the terminal TA that has received the alert signal may change the ring tone for an emergency case and a non-urgent case.
  • the management server SV may be automatically transmitted by e-mail to a family doctor, nurse, family or the like.
  • the care data may be input by voice input.
  • the administration server SV takes the medication or measurement time (target timing). ), Or by dividing the dose into multiple doses to reduce the dose (target amount) at one time, it is possible to propose a revised plan for the care plan.
  • the management server SV analyzes that there is a problem that the subject person who is taking a nap often wakes up by input from the terminal TA It is also possible to propose a correction plan for the care plan so as to shift the position change time (target timing) in the morning when the target person is often awake.
  • the management server SV analyzes based on the image data transmitted from the sensor box SB and determines that the subject's habit, dangerous behavior, disturbing behavior, etc. have occurred, this is recorded in the database and frequently If this happens, you may create a revised plan for the care plan to increase the number of caregivers' patrols, and by sending an alert signal to the terminal managed by the facility staff or guards, the target person can You can prevent going out alone.

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  • Business, Economics & Management (AREA)
  • General Business, Economics & Management (AREA)
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Abstract

L'invention concerne un système et un procédé d'ajustement de plan de soins, permettant de soigner de manière appropriée une personne soignée, sur la base d'un plan de soins ajusté conformément à l'état de la personne soignée, tout en réduisant, par exemple, la charge pour une infirmière ou un soignant. Le système d'ajustement de plan de soins comprend : un dispositif central de commande qui mémorise un plan de soins d'une personne soignée ; un dispositif d'entrée qui introduit, dans le dispositif central de commande, des données de soins comprenant une heure et un contenu d'exécution d'un acte autonome effectué personnellement par une personne soignée conformément aux contenus du plan de soins de la personne soignée, et/ou une quantité de substance ingérée, ingérée par la personne soignée, et l'heure d'ingestion, et/ou une valeur collectée à partir du corps de la personne soignée et l'heure de collecte, et/ou une heure et un contenu d'exécution d'un acte de soins effectué par un soignant par rapport à la personne soignée ; et un terminal connecté en communication avec le dispositif central de commande. Si une quantité cible ou une ponctualité cible prescrites par le plan de soins de la personne soignée manquent, d'une valeur seuil ou plus, aux données de soins introduites à partir du dispositif d'entrée, le dispositif central de commande crée un plan de supplément de données de soins à collecter par une exécution ultérieure par la personne soignée, de manière à approcher une quantité cible totale ou une ponctualité cible, et transmet le plan de supplément de données de soins au terminal, et le terminal présente le plan de supplément de données de soins.
PCT/JP2016/077945 2015-10-05 2016-09-23 Système et procédé d'ajustement de plan de soins WO2017061282A1 (fr)

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JP2020129213A (ja) * 2019-02-07 2020-08-27 コニカミノルタ株式会社 情報管理装置、見守りシステム、および制御プログラム
JP2020191039A (ja) * 2019-05-24 2020-11-26 パラマウントベッド株式会社 医療介護支援システム
JP2023018148A (ja) * 2018-04-26 2023-02-07 株式会社クラスシード 管理システム

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JP2000003391A (ja) * 1998-06-12 2000-01-07 Ntt Data Corp ケアマネジメント支援システム
JP2003304341A (ja) * 2002-04-12 2003-10-24 Hitachi Hybrid Network Co Ltd 介護システム
JP2008134713A (ja) * 2006-11-27 2008-06-12 Tateyama System Laboratory Ltd 訪問介護装置及び訪問介護支援システム
JP2008204319A (ja) * 2007-02-22 2008-09-04 Matsushita Electric Ind Co Ltd 食事管理装置およびそのプログラム
JP2013025761A (ja) * 2011-07-26 2013-02-04 Blue Ocean System Co Ltd プランニングシステム、サーバ、プランニング方法、コンピュータプログラム
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2023018148A (ja) * 2018-04-26 2023-02-07 株式会社クラスシード 管理システム
JP2020129213A (ja) * 2019-02-07 2020-08-27 コニカミノルタ株式会社 情報管理装置、見守りシステム、および制御プログラム
JP7251186B2 (ja) 2019-02-07 2023-04-04 コニカミノルタ株式会社 情報管理装置、見守りシステム、および制御プログラム
JP2020191039A (ja) * 2019-05-24 2020-11-26 パラマウントベッド株式会社 医療介護支援システム
JP7234035B2 (ja) 2019-05-24 2023-03-07 パラマウントベッド株式会社 医療介護支援システム

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