WO2016190257A1 - Élément d'entrée, système de gestion d'informations biologiques, dispositif d'entrée de données de soins médicaux/infirmiers, et procédé d'utilisation associé - Google Patents

Élément d'entrée, système de gestion d'informations biologiques, dispositif d'entrée de données de soins médicaux/infirmiers, et procédé d'utilisation associé Download PDF

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Publication number
WO2016190257A1
WO2016190257A1 PCT/JP2016/065079 JP2016065079W WO2016190257A1 WO 2016190257 A1 WO2016190257 A1 WO 2016190257A1 JP 2016065079 W JP2016065079 W JP 2016065079W WO 2016190257 A1 WO2016190257 A1 WO 2016190257A1
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WIPO (PCT)
Prior art keywords
information
data
communication unit
unit
input member
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PCT/JP2016/065079
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English (en)
Japanese (ja)
Inventor
佳宜 石橋
Original Assignee
パラマウントベッド株式会社
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
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Application filed by パラマウントベッド株式会社 filed Critical パラマウントベッド株式会社
Priority to CN201680029812.6A priority Critical patent/CN107615393A/zh
Priority claimed from JP2016101431A external-priority patent/JP6581942B2/ja
Publication of WO2016190257A1 publication Critical patent/WO2016190257A1/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
    • G16H40/67ICT 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 remote operation
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61BDIAGNOSIS; SURGERY; IDENTIFICATION
    • A61B5/00Measuring for diagnostic purposes; Identification of persons
    • 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
    • G16H10/00ICT specially adapted for the handling or processing of patient-related medical or healthcare data
    • G16H10/60ICT specially adapted for the handling or processing of patient-related medical or healthcare data for patient-specific data, e.g. for electronic patient records

Definitions

  • the present invention is a data input device in medical and nursing care which inputs body information data such as body temperature and blood pressure of a patient and a cared person etc. (hereinafter referred to as a patient etc.) in hospitals and nursing facilities etc. (hereinafter referred to as hospital etc.) -It relates to an input member etc.
  • the work which detects and acquires living body information data such as a patient's etc. body temperature, blood pressure, and a heart rate, and records it on a chart is performed.
  • the medical chart is digitized, and the electronic medical chart is stored in a storage device of a server installed in a hospital or the like, and the medical chart information can be easily used by a doctor, a nurse, and the like. Therefore, if biological information data is acquired and then transferred as electronic data to the hospital server so that it can be stored as it is in the storage server of the hospital server, artificial data input work becomes unnecessary. And more convenient.
  • a biological information measuring device for transmitting acquired biological information, a relay server for relaying communication data from the biological information device, a patient ID (identification number) for identifying a patient, and a living body of the patient
  • a biological information measurement system provided with a hospital information server that records information as electronic medical record information in association with each other (Patent Document 1).
  • the living body information measurement device transmits living body information as communication data to a relay server, and acquires and authenticates a patient ID and an admission information input unit for entering admission information.
  • Patient ID authentication unit, a medical worker ID authentication unit that takes in and authenticates a medical worker ID for specifying a medical worker, and a transmission control unit that controls transmission of admission information to a relay server doing.
  • the biological information measurement device is an apparatus for transmitting biological information such as body temperature to a hospital server, and is a large-sized apparatus that is stationary. And such a large-sized apparatus of a stationary type is required for every hospital room, and when a hospital room is wide, it is necessary to install for every patient. For this reason, in each patient's room, this device may block the flow of the nurse or doctor. Also, the device may be in the way of medical or nursing work. When such a device is shared by a plurality of hospital rooms, the task of carrying is complicated because the device is large. Furthermore, this apparatus has a drawback that it is expensive because it includes a patient ID authentication unit and a medical worker ID authentication unit, and an input unit and a control unit for inputting bed entry information.
  • the present invention has been made in view of such problems, and an object thereof is to provide an input member or the like capable of reading out information by a simple method and transmitting it to a server.
  • the input member of the present invention is It is an input member that can be connected to a management server that manages the user's biometric information acquired from the biometric information device in association with the first identification information in association with the user, A first communication unit that performs near field communication with the biological information acquisition apparatus and receives the biological information; A second communication unit connected to the relay device using the second identification information and communicating with the management server via the relay device; Equipped with The second communication unit is characterized in that living body related information including the living body information is transmitted to the management server.
  • the biological information management system of the present invention is A biometric information acquisition apparatus for acquiring biometric information of a user; A management server that associates and manages the biometric information of the user and the first identification information in association with the user; An input member that communicates with the management server via a connectable relay device based on the second identification information; A biometric information management system including The input member is A first communication unit that performs near field communication with the biometric information acquisition apparatus and receives the biometric information; A second communication unit connected to the relay device using the second identification information, and transmitting the biological related information including the biological information and the second identification information to the management server via the relay device; Equipped with The management server is A receiver configured to receive the living body related information and the second identification information from the input member; A storage unit that stores, in association with the user, the biometric information included in the biometric related information when the received second identification information matches the first identification information; And the like.
  • the data input device for medical care of the present invention is In the input device of the biological information data in a hospital or a care facility where a server for storing biological information data of a patient or a cared person in a storage unit is installed,
  • a portable input member comprising a near field communication unit for performing near field communication with the living body information detection apparatus to receive living body information data, and a first wireless communication unit for wirelessly transmitting data;
  • a second wireless communication unit for performing wireless communication with the first wireless communication unit of the input member to receive data, and storing input data in a storage unit of the server connected by wire; It is characterized by having.
  • the data input device for medical care of the present invention is In the input device of the biological information data in a hospital or a care facility where a server for storing biological information data of a patient or a cared person in a storage unit is installed, An input member provided in a unit installed in a living room in which a patient or a cared person resides, connected to a biological information detection apparatus by wire or wireless, and into which biological information data is input; A transmitting / receiving unit which is provided in the unit, receives biological information data from the input member, is connected to the server by wire or wireless, and transmits the biological information data to the server; A fifth wireless communication unit which is provided in the unit and wirelessly transmits and receives data to and from the outside of the unit, and acquires data from the server via the transmitting and receiving unit; A portable information terminal that wirelessly transmits and receives data to and from the fifth wireless communication unit, and acquires information stored in the server; It is characterized by having.
  • the usage method of the data input device is Using the data input device described above, the short distance communication unit reads the ID information of the patient or the cared person and the biological information data of the biological information detection device, and the ID information data and the biological information data Transmitting to the second wireless communication unit by the first wireless communication unit, transmitting to the server from the second wireless communication unit, and storing the ID information data and the biological information data in the server It features.
  • the patient's biological information can be stored in the server simply by the nurse or carer carrying the input member and holding the input member over the biological information detector such as the thermometer and the sphygmomanometer.
  • the biological information detector such as the thermometer and the sphygmomanometer.
  • the short distance wireless communication with the biometric information acquisition device is performed, the biometric information of the user is received, the second identification information is used to connect to the relay device, and the biometric information is received via the relay device. Is sent to the management server.
  • the management server it is possible to receive biological information using NFC as near field communication, for example, and transmit the received biological information to the management server via, for example, a wireless LAN.
  • FIG. 1 is a block diagram showing a data input device in medical care / care according to the first embodiment (first example), and FIG. 2 is a schematic view showing an appearance of the input member 1.
  • the input member 1 is a reader having a near field communication unit 2 having an NFC (Near Field Communication: near field communication) function and having a near field communication function.
  • NFC Near Field Communication: near field communication
  • a device for detecting biological information of a patient for example, a biological information detecting device such as a thermometer and a sphygmomanometer also has an NFC function.
  • the ID (identification information) of the patient is stored in a card or the like having an NFC function, and the patient is allowed to carry the card or the like.
  • the input member 1 is also in the form of a card as shown in FIG. 2.
  • the housing 10 is in the shape of a rectangular parallelepiped, and the reading completion display section 11 and the storage completion display section 12 are installed on the front of the housing 10 It is done.
  • the short distance communication unit 2 reads the patient's ID and the biological information data to the input member 1.
  • the reading completion display unit 11 has a function of displaying that the input data has been read normally by the input member 1 by lighting or blinking.
  • the storage completion display unit 12 displays that the data transmitted from the input member 1 to the hospital server 5 is normally stored in the storage unit of the hospital server 5 by lighting or blinking or the like.
  • the reading completion display unit 11 and the storage completion display unit 12 can be turned on when the data reading and the data storage end normally, and can blink when the reading end and the storage end do not end normally. In this manner, the reading status of the data can be recognized by the lighting or blinking lights of the reading completion display unit 11 and the storage completion display unit 12.
  • the input member 1 has a wireless communication unit 3, and the wireless communication unit 3 reads the patient ID read by the input member 1 by wireless communication such as Wi-Fi (registered trademark), wireless LAN, Bluetooth (registered trademark), etc. And the biometric information data is transmitted together with the ID (identification information) of the holder of the input member 1 carrying the input member 1.
  • the wireless communication unit 4 and the terminal device 6 are connected to the hospital server 5. Then, wireless communication is performed between the wireless communication unit 3 and the wireless communication unit 4, and data input to the input member 1 is input from the wireless communication unit 3 to the hospital server 5 via the wireless communication unit 4. It has become.
  • the terminal device 6 is various input devices (such as a keyboard) and output devices (such as a printer).
  • the hospital server 5 is provided with a storage unit such as a control unit and a memory, and biological information data input from the input member 1 is stored in the storage unit together with the patient ID and the ID of the owner of the input member 1. Ru.
  • the wireless communication units 3 and 4 wirelessly connect the respective sick rooms of the hospital and the installation place of the hospital server 5, the communication distance is taken into consideration as a wireless system of the wireless communication units 3 and 4.
  • Wi-Fi or wireless LAN
  • a relay device for wireless communication may be installed in a corridor or the like of a hospital.
  • the nurse or carer carries the input member 1 and travels around each room to hold the input member 1 over a living body detection measure such as the patient's body temperature or blood pressure, and via the short distance communication unit 2 these patients
  • the biometric information data is read by the input member 1 and the input member 1 is held over the patient's ID card to read the patient's ID data by the input member 1.
  • the reading completion of the data is recognized by the lighting of the reading completion display unit 11, the user manually operates the switch or the data automatically with the user's ID information data via the wireless communication unit 3 via the wireless communication unit 3.
  • Send to 4 Send to 4 Then, these data are transmitted from the wireless communication unit 4 to the hospital server 5 and stored in the memory.
  • the completion of the storage of the data can be recognized by the lighting of the storage completion display unit 12.
  • the nurse or the care worker carries the card-shaped input member 1 and holds the patient's biological information in the hospital server 5 only by holding it over the biological information detector such as the thermometer and the sphygmomanometer.
  • the biological information detector such as the thermometer and the sphygmomanometer.
  • FIG. 3A is a view showing a second embodiment of the present invention.
  • the input member 22 wirelessly transmits data to and from the wall unit 21 as a relay unit, and the wall unit 21 further transmits and receives the hospital of the hospital system by its transmitting and receiving unit. Data is transmitted / received to / from the server 20 in a wired or wireless manner.
  • the input member 22 reads the ID card carried by the patient and the biological information of the biological information detector, but these data are transmitted to the hospital server 5 via the wireless communication unit 4. Rather than transmitting, it transmits to the wall unit 21.
  • the wall unit 21 is installed on a wall or the like where the bed of the patient's room or the like is installed, and stores data of the room number and the patient ID information. Data may be transmitted and received between the wall unit 21 and the hospital server 20 by wireless communication, or data may be transmitted and received by a wired connection. Patient ID information is transmitted from the hospital server 20 to the wall unit 21, and biological information data is transmitted from the wall unit 21 to the hospital server 20.
  • the hospital server 20 also stores data necessary for medical accounting.
  • the patient ID and the biometric information data read by the input member 22 are transmitted to the wall unit 21.
  • the wall unit 21 matches the patient ID information input from the hospital server 20 among the patient ID information input from the input member 22.
  • the biometric information data linked to the ID to be transmitted is transmitted to the hospital server 20.
  • the hospital server 20 associates this biometric information data with patient ID information and stores it in the storage device.
  • the wall unit 21 can also transmit the room number to the hospital server 20 together with the biometric information data and store it.
  • the hospital server 20 stores the patient ID, the room number, and the biometric information data in association with each other in the memory.
  • the biological information data obtained by the input member 22 is stored in the hospital server 20 via the wall unit 21. Therefore, a place where a patient's room etc. and an in-hospital system are installed like a large hospital etc. It is useful when the distance between and is large.
  • the input member 24 has a third wireless communication unit, and transmits and receives data to and from the fourth wireless communication unit installed in the wall unit 23. Then, in the present embodiment, the input member 24 reads the patient's ID information data and the biological information data of the biological information detection device by the short distance communication unit, as in the input member 1. When patient ID information data is input through the wireless communication unit, the input member 24 transmits the biometric information data corresponding to the patient ID information data to the fourth unit of the wall unit 23 through the third wireless communication unit. Transmit to the wireless communication unit.
  • the wall unit 23 transmits, to the hospital server 20 via the transmitting / receiving unit, biometric information data related to patient ID information data that matches the patient ID information data input from the hospital server 20.
  • the hospital server 20 stores the biometric information data corresponding to the patient ID information data transmitted to the wall unit 23 in the memory in association with the patient ID information data.
  • the communication function of the short distance communication unit is not limited to NFC, and short distance communication means such as RF (high frequency communication), infrared communication, specific power saving wireless communication, and human body communication can be used.
  • the wall unit 30 including both the input member and the relay unit (the fifth wireless communication unit and the transmitting and receiving unit) is installed on the wall of each patient's room.
  • an input member 31 is accommodated in the wall unit 30, an input member 31, a transmission / reception unit 32, and a fifth wireless communication unit 33 are accommodated.
  • the input member 31 is connected by wire or wireless to the living body information detection apparatus 100 installed in the patient's room, and a keyboard or a mouse for a nurse or a carer to input living body information of a patient or a care recipient. Etc. are connected.
  • the transmission / reception unit 32 of the wall unit 30 is connected to the hospital server 5 by wire or wirelessly.
  • a terminal device 6 is connected to the hospital server 5. Then, the biological information input from the input member 31 is input to the transmission / reception unit 32, and transmitted from the transmission / reception unit 32 to the hospital server 5 by wire or wirelessly.
  • the nurse always carries the portable information terminal 35, and connects the portable information terminal 35 and the fifth wireless communication unit 33 of the wall unit 30 by wireless communication via the transmission / reception unit 32.
  • the portable information terminal 35 can be connected to the hospital server 5.
  • biometric information and nursing information can be downloaded from the hospital server 5 to the portable information terminal 35.
  • detection data of the biological information detection apparatus 100 is input to the hospital server 5 from the input member 31 installed on the wall of each hospital room through the transmission / reception unit 32. , Stored in the storage device. Information on other patients or carers is manually input from the input device 34 by the nurse or carer and similarly stored in the hospital server 5. Then, when the nurse or carer needs information about the patient or the care recipient, he / she wirelessly connects the portable information terminal 35 carried by himself to the wireless communication unit 33 of the wall unit 30, The portable information terminal 35 and the hospital server 5 are connected. Then, the mobile information terminal 35 is operated to download the information of the patient or the care recipient stored in the hospital server to the mobile information terminal 35. In this way, a nurse or carer can quickly obtain patient or care recipient's biological information or other information as needed.
  • FIG. 5 is a diagram for explaining the entire system of the second embodiment.
  • a management server 4000 for managing users who are patients and assisted persons and a wireless relay station 3000 are connected to the network NW.
  • the input member 1000 can be connected to the network NW via the wireless relay station 3000.
  • the wireless relay station 3000 is provided, for example, for each room. Although various devices can be considered as the wireless relay station, for example, in the present embodiment, the configuration is an access point of a wireless LAN used in the standards such as IEEE 802.11a / b / g / n.
  • the SSID Service Set Identifier
  • the input member 1000 and other terminal devices can be connected to the wireless relay station 3000 using the SSID. It becomes.
  • the management server 4000 is a server that manages information related to users who are patients and assisted persons. For example, it manages at least information on users such as biometric information for each user, electronic medical chart data including treatment information, and medical treatment fee.
  • the management server 4000 stores the SSID of the wireless relay station and the room number in association with each other.
  • the SSID for example, “hsp 501”
  • the room number for example, “501”
  • an apparatus present in this room for example, an acquisition apparatus ID of the biological information acquisition apparatus 2000 is also stored in association with the apparatus.
  • a biological information acquisition apparatus 2000A is installed in a room where the wireless relay station 3000A is provided.
  • a biometric information acquisition apparatus 2000B is installed in the room where the wireless relay station 3000B is provided.
  • the room number can be specified by using the SSID of the wireless relay station 3000 to which the input member 1000 is connected by the input member 1000 being in the area of the wireless LAN. .
  • the SSID and the room number correspond to each other will be described in this embodiment, only the SSID may be managed.
  • the present invention can be applied to a user such as a person living in another facility such as a care facility. That is, the user is not particularly limited as long as the configuration is as shown in FIG.
  • FIG. 7A shows a functional configuration of the input member 1000.
  • the input member 1000 includes a control unit 1100, a short distance wireless communication unit 1200, and a wireless communication unit 1300.
  • the control unit 1100 is a functional unit for controlling the entire input member 1000.
  • the control unit 1100 is configured of, for example, a central processing unit (CPU).
  • the short distance wireless communication unit 1200 is a functional unit for communicating with a device (for example, a biological information acquisition device) or the like including another short distance wireless communication unit.
  • a device for example, a biological information acquisition device
  • communication is performed using NFC, Bluetooth (registered trademark), ZigBee (registered trademark), wireless USB, infrared rays, and the like.
  • the wireless communication unit 1300 is a functional unit that connects to a network and communicates with the management server 4000. In the case of this embodiment, it is connected to the wireless relay station 3000 and connected to the network NW via the wireless relay station 3000.
  • connection is performed using a wireless LAN such as IEEE 802.11a / b / g / n, for example.
  • connection may be made using IEEE 802.15 (Bluetooth) or the like.
  • FIG. 7B shows a functional configuration of the biological information acquisition apparatus 2000, which includes a control unit 2100, a biological information acquisition unit 2200, a storage unit 2300, and a short distance wireless communication unit 2400. There is.
  • the control unit 2100 is a functional unit for controlling the entire biological information acquisition apparatus 2000.
  • the control unit 2100 is configured of, for example, a CPU (Central Processing Unit) or the like.
  • the biometric information acquisition unit 2200 is a functional unit for acquiring and detecting biometric information of a user such as a patient or a supportee.
  • the biological information may be acquired information such as the patient's body temperature, body weight, blood pressure, blood sugar level or the like, or may be measured information such as sleeping time or bed leaving time. Further, the information may be information calculated based on a heart rate or a plurality of pieces of information acquired from a patient. Also, the information may be information input by a doctor or a care staff, and the above-described body temperature may be a manual input value. Further, the information to be input may be information related to medication etc. other than those described above.
  • the storage unit 2300 is a functional unit in which various programs necessary for the operation of the biological information acquisition apparatus 2000 and various data are stored.
  • the storage unit 2300 is configured of, for example, a semiconductor memory, an HDD (Hard Disk Drive), or the like. Further, in the present embodiment, the biological information acquired by the biological information acquisition unit 2200 is stored.
  • information currently measured may be stored, or a past history may be stored.
  • the short distance wireless communication unit 2400 is a functional unit for performing short distance wireless communication with the input member 1000. It may be configured to be communicable with the short distance wireless communication unit 1200 described above.
  • FIG. 7C shows a functional configuration of the wireless relay station 3000, which includes a control unit 3100, a communication unit 3200, a wireless communication unit 3300, and a storage unit 3400.
  • the control unit 3100 is a functional unit for controlling the entire radio relay station 3000.
  • the control unit 3100 is configured of, for example, a CPU (Central Processing Unit) or the like.
  • the communication unit 3200 is a functional unit for connecting to the network NW in the facility and performing communication. For example, communication with the management server 4000 is performed via a wired / wireless LAN.
  • the wireless communication unit 3300 is a functional unit to which a terminal device having a wireless function and a communication device can be connected.
  • the communication devices to be connected are connected using the SSID of the wireless communication unit 3300.
  • a storage unit 3400 is a functional unit in which various programs necessary for the operation of the wireless relay station 3000 and various data are stored.
  • the storage unit 3400 is configured of, for example, a semiconductor memory, a hard disk drive (HDD), or the like. Further, in the present embodiment, necessary information (for example, SSID, WEP key, gateway address, device address, and the like) for the wireless relay station 3000 to operate is stored.
  • FIG. 7D shows a functional configuration of the management server 4000, which includes a control unit 4100, a communication unit 4200, a biological information management unit 4300, and a storage unit 4400.
  • the control unit 4100 is a functional unit for controlling the entire management server 4000.
  • the control unit 4100 is configured of, for example, a CPU (Central Processing Unit) or the like.
  • the communication unit 4200 is a functional unit for connecting to the network NW in the facility and performing communication. For example, communication with the input member 1000 or another terminal device can be performed via a wired LAN.
  • the biometric information management unit 4300 is a functional unit for managing the received biometric information.
  • biological information is stored and managed for each patient.
  • the biological information is managed in association with the patient and the room number.
  • the patient may be identified and managed from the terminal device ID of the biological information acquisition device 2000.
  • the storage unit 4400 is a functional unit in which various programs necessary for the operation of the management server 4000 and various data are stored.
  • the storage unit 4400 is configured of, for example, a semiconductor memory, an HDD (Hard Disk Drive), or the like.
  • a biological information request is transmitted to the biological information acquisition apparatus 2000 (S1006).
  • NFC near-field wireless communication
  • the user touches the near-field wireless communication unit 1200 of the input member 1000 with the near-field wireless communication unit 2400 of the biological information acquisition apparatus 2000 to communicate Is established.
  • a biometric information request is transmitted from the input member 1000 (S1006), and a biometric information response is transmitted from the biometric information acquisition apparatus 2000 (S1008).
  • the biometric information response includes at least the biometric information acquired by the biometric information acquisition device 2000, and patient identification information using the biometric information acquisition device 2000 and the biometric information acquisition device.
  • the identification information of 2000 may be included.
  • biological information is transmitted from the input member 1000 to the wireless relay station 3000 as biological related information (S1010).
  • biological related information S1010
  • the SSID of the wireless relay station 3000 is also included and transmitted.
  • the living body related information includes at least the living body information included in the living body information response.
  • identifying biological information such as patient identification information acquired from the biological information acquisition apparatus 2000, apparatus identification information of the biological information acquisition apparatus 2000, and patient identification information input and stored by the input member 1000. Information may be included.
  • the transmitted biometric related information and the SSID are transmitted to the management server 4000 (S1012).
  • the management server 4000 can identify the room number of the patient from the SSID.
  • the management server 4000 may perform authentication using the SSID. For example, if the SSID corresponding to the patient to which the biological information is currently transmitted matches the SSID transmitted in S1012, the biological information is stored and managed (S1014; Yes ⁇ S1016). Here, if the SSIDs do not match, the biometric information is not stored, and error processing is performed.
  • the SSID corresponding to the room number is stored. Then, the SSID of the room number in which the patient is present is read out, and it is determined whether or not it matches the transmitted SSID. Also, conversely, the table stored in the management server 4000 may be referred to, the room number may be obtained from the SSID, and it may be determined whether it matches the room number where the patient is.
  • biometric information is automatically transmitted to the management server 4000 thereafter.
  • the management server can appropriately manage the received biometric information. That is, biological information is stored in an appropriate patient chart (patient information) by patient identification information or device identification information. Further, by using the SSID together, it becomes possible to manage in cooperation with the corresponding room number. Therefore, the user can transmit biological information from each device to the management server 4000 without much awareness of communication and management.
  • the SSID is transmitted and the room number can be specified together, for example, when the staff moves the biometric information acquisition apparatus 2000 to another room, it is prevented that data is erroneously recorded. Is possible. That is, even if the setting of the previous patient remains, it is possible to prevent another person's biological information from being stored in the patient's chart because the room numbers do not match.
  • the wireless relay station 3000 which is a relay apparatus, may not be for each room.
  • it may be provided for each bed apparatus, or a relay apparatus may be provided on a wall near the bed apparatus.
  • the bed apparatus may have the function of a wireless relay station.
  • a Bluetooth (registered trademark) reception unit is provided at the bedside of the bed apparatus, and the management server 4000 manages the Bluetooth identification information (for example, BD address) in association with patient information.
  • the management server 4000 manages the Bluetooth identification information (for example, BD address) in association with patient information.
  • the input member 1000 communicates from a BD address different from the one being managed, it is possible to perform processing such as an error and not recording.
  • step S104 when the input member 1000 detects near field communication (step 102; Yes), near field communication is established (step S104).
  • step S106 it is determined whether the input member 1000 is connected to the wireless LAN (step S106). If it is not connected to the wireless LAN (step S106; No), the wireless LAN connection process is executed (step S108).
  • step S110 when the connection to the wireless LAN can not be made (step S110; No), the connection error processing is executed, and the present processing is ended (step S116).
  • step S106 when connected to a wireless LAN (step S106; Yes) or when connected to a wireless LAN (step S110; Yes), biological information is received (step S112).
  • the biometric information is received, the received biometric information is transmitted to the management server 4000 (step S114; Yes ⁇ step S118).
  • the user can read the biological information from the biological information acquisition apparatus 2000 using the short distance wireless communication, and can transmit the biological information to the management server 4000 casually.
  • the biometric information is not read out. That is, by performing authentication using a wireless LAN, it is possible to prevent a third party from reading out biometric information without permission.
  • the flow of FIG. 9 is described as transmitting the biological information when the wireless LAN is connected, the biological information may be received first and may be transmitted when the wireless LAN is connected. .
  • step S204 when the input member 1000 detects near field communication (step 202; Yes), near field communication is established (step S204).
  • the input member 1000 receives biological information from the biological information acquisition apparatus 2000 connected by near field communication (step S206).
  • the reception of the biological information is completed, it is confirmed whether or not the wireless LAN is connected (step S208; Yes ⁇ step S210).
  • step S212 when not connected to the wireless LAN, the connection process of the wireless LAN is executed (step S212).
  • step S214; Yes the connection to the wireless LAN is possible (step S214; Yes) or if the connection to the wireless LAN has already been made (step S210; Yes)
  • step S216 the management server 4000 acquires biological information (step S216).
  • connection to the wireless LAN can not be made, error processing is performed and the processing is ended (step 214; No ⁇ step S218).
  • connection may be performed a predetermined number of times in step S214, and transition to error processing may be performed when connection can not be performed a predetermined number of times or for a predetermined time.
  • step S228 the biological information once received may be deleted. Further, in the error processing, an error may be displayed or notified on the input member 1000.
  • the biological information may be transmitted to the management server 4000 when the wireless LAN is connected without performing the error processing.
  • the biological information may be erased once.
  • authentication can be performed only by registering wireless LAN information (for example, SSID, WEP key, etc.) in the input member 1000.
  • wireless LAN information for example, SSID, WEP key, etc.
  • the user ID / password need not be registered, and usability can be improved.
  • identification information of the input member 1000 may be transmitted to the management server 4000 in combination with the input member 1000.
  • the identification information may be information identifying the input member 1000 in advance, such as a MAC address, or may be information stored by the administrator, such as patient information.
  • biometric identification information such as a fingerprint may be used.
  • the above-described input member 1000 for example, in a hospital or the like, medical personnel can easily transmit patient's biological information. Further, for example, by using a card-shaped input member as shown in FIG. 11, for example, the patient transmits his / her biological information (eg, blood pressure value and weight value measured daily) to the management server 4000. It is also possible to perform processing such as In addition, in a situation such as a medical checkup, there is also conceivable a usage method in which the patient touches the device for each examination to easily collect biological information in the management server.
  • a usage method in which the patient touches the device for each examination to easily collect biological information in the management server.
  • the input member of this embodiment is configured only with NFC, which is a short distance wireless communication, and a wireless LAN (IEEE 802.11) as a different communication means. Can be expected to be able to be used casually.
  • the third embodiment is an embodiment in which biometric information of a plurality of users is received from a plurality of biometric information acquisition devices 2000 and transmitted to the management server 4000.
  • the biological information of a plurality of users is stored in the input member 1000 by repeating the process of step S206 ⁇ step S208; No ⁇ step S206 in FIG. 10.
  • step S216 After receiving a plurality of pieces of biometric information, it is connected to the wireless LAN, and the biometric information is transmitted to the management server 4000 (step S216).
  • the biometric information acquisition apparatus 2000 is placed in a case where biometric information can not be transmitted each time in some places, or in a facility (for example, a shelter etc.) provided temporarily.
  • a facility for example, a shelter etc.
  • FIG. 12 is a diagram for explaining the entire system in the present embodiment.
  • FIG. 12 differs from FIG. 5 in that the treatment apparatus 2500 is installed at the location of the wireless relay station 3000B.
  • treatment information and the like are transmitted from the treatment apparatus 2500 to the input member 1000.
  • the medical care score is calculated, and can be used by the management server 4000 as accounting information.
  • the treatment information is correctly transmitted by communicating with the device.
  • the nebulizer device side can also output a warning when, for example, a patient selects a different medicine by transmitting and receiving treatment information from the input member 1000.
  • the treatment information can be received from each device and transmitted to the management server 4000, for example, the progress of treatment can be grasped It becomes possible to calculate medical treatment fees properly.
  • the information of the biological information acquisition device 2000 is received in advance before medical treatment, and then the patient moves to perform medical treatment and uses the treatment device 2500.
  • the patient holds the input member 1000 and performs near field communication with each device, whereby the appropriate biological information is managed by the management server 4000, and the treatment information is also managed.
  • the input member 1000 mentioned above demonstrated wireless LAN to the example as a communication system of a wireless communication part
  • structures other than wireless LAN may be sufficient.
  • the mobile communication network may be used to connect to the management server 4000.
  • the short distance wireless communication unit may be capable of reading a patient ID, an ID of a nurse or a caregiver, and an ID of a medicine (assigned to a medicine bag or a package) in addition to biological information.
  • Input member 2 Short distance communication unit 3
  • Wireless communication unit 5 Hospital server 6: Terminal device 10: Case 11: Reading completion display unit 12: Storage completion display unit 20: Hospital server 21, 23: Wall Unit 22, 24: input member 30: wall unit 31: input member 32: transceiver 33: wireless communication unit 34: input device 35: portable information terminal 1000: input member 2000: biological information acquisition device 2500: treatment device 3000: wireless Relay station 4000: Management server

Abstract

L'invention concerne un dispositif d'entrée de données de soins médicaux/infirmiers qui stocke des données d'informations biologiques sur des patients ou des bénéficiaires de soins dans une unité de stockage d'un serveur hospitalier (5). Un élément d'entrée portable (1) comprend : une unité de communication à courte portée (2) permettant de recevoir des données par le biais d'une communication sans fil à courte portée avec un dispositif de détection d'informations biologiques; et une première unité de communication sans fil (3) permettant de transmettre les données sans fil. Une seconde unité de communication sans fil (4) reçoit les données par le biais d'une communication sans fil avec la première unité de communication sans fil (3) et stocke les données d'entrée dans l'unité de stockage du serveur hospitalier (5) qui est connecté à celle-ci par un câble. Cela permet d'obtenir un dispositif d'entrée de données de soins médicaux/infirmiers qui est compact et de faible coût et qui peut être transporté par chaque membre du personnel de soins médicaux/infirmiers, par exemple une infirmière ou un soignant, sans devoir être installé pour chaque patient ou personne similaire.
PCT/JP2016/065079 2015-05-22 2016-05-20 Élément d'entrée, système de gestion d'informations biologiques, dispositif d'entrée de données de soins médicaux/infirmiers, et procédé d'utilisation associé WO2016190257A1 (fr)

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CN201680029812.6A CN107615393A (zh) 2015-05-22 2016-05-20 输入构件、生物体信息管理系统、医疗和护理中的数据输入装置及其使用方法

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JP2015-104937 2015-05-22
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JP2016101431A JP6581942B2 (ja) 2015-05-22 2016-05-20 入力部材、生体情報管理システム、中継装置及び入力部材の送信方法

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