WO2013065113A1 - Système de prise en charge d'urgence - Google Patents

Système de prise en charge d'urgence Download PDF

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Publication number
WO2013065113A1
WO2013065113A1 PCT/JP2011/075106 JP2011075106W WO2013065113A1 WO 2013065113 A1 WO2013065113 A1 WO 2013065113A1 JP 2011075106 W JP2011075106 W JP 2011075106W WO 2013065113 A1 WO2013065113 A1 WO 2013065113A1
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Prior art keywords
data
emergency
hospital
patient
support system
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PCT/JP2011/075106
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English (en)
Japanese (ja)
Inventor
松田啓二
村田憲隆
古閑睦朗
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ピーエフシー株式会社
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Priority to PCT/JP2011/075106 priority Critical patent/WO2013065113A1/fr
Publication of WO2013065113A1 publication Critical patent/WO2013065113A1/fr

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q10/00Administration; Management
    • G06Q10/10Office automation; Time management
    • 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
    • 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
    • G16H40/20ICT 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 management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms

Definitions

  • the present invention relates to an emergency support system for supporting lifesaving activities of emergency personnel, and in particular, to improve the efficiency and speed of various lifesaving activities by emergency personnel, to speed up the acquisition of patient data at the hospital side that accepts the patient, and thus to the patient. It relates to an emergency support system that contributes to ensuring the safety of the body and life.
  • Japanese Patent Application Laid-Open No. 2011-103521 discloses a technology related to a rescue support system that supports emergency activities when an elderly person or sick person is in an accident when going out or when symptoms worsen, and it is possible to realize a quick rescue. Sex has been suggested.
  • Japanese Patent Laid-Open No. 2010-15443 discloses a technique relating to a system for grasping the working status and working status of hospital personnel and notifying an ambulance etc. of information on whether or not an emergency patient can be accepted. There has been suggested the possibility of providing an emergency medical support system that can avoid the so-called whirling in which the time elapses without the hospital being decided easily.
  • Japanese Patent Application Laid-Open No. 2007-128245 discloses a technique for shortening the time required for transporting a patient by making it possible to accurately specify a transport destination hospital in a short time.
  • hospital reception information is simply displayed through the terminal for notification to hospital emergency personnel, and hospital selection / determination is entrusted to the personnel. It could not be said that selecting the optimal hospital to transport the patient could be realized sufficiently.
  • the emergency support system using the above-described technology is not sufficient as a means for centrally managing all information related to the current status of the emergency team and the condition of the patient, which is information related to emergency transport. That is, it has been difficult to perform efficient transportation activities by sharing various information related to emergency transportation between the headquarters and the ambulance team or between the ambulance teams.
  • the present invention is an emergency support system for supporting the lifesaving activities of emergency personnel, and in particular, in order to improve the efficiency and speed of various lifesaving activities by the emergency personnel, at the hospital side that accepts patients.
  • the emergency support system is configured so that the emergency support system accumulates and manages patient data, hospital data, emergency team data, and emergency team activity time lapse data, and performs calculation processing.
  • a terminal computer 30 that receives, calculates, and outputs data distributed from the main server 10 and a local fire station computer that is disposed in each local fire station and receives, calculates, and outputs data distributed from the main server 10 40, terminal data input means 50 for inputting / accumulating patient data in the terminal computer 30, emergency team data, emergency team activity time From the terminal data transmitting means 60 for transmitting the excess data and the patient data input by the terminal data input means 50 to the main server 10, the ambulance team data, the patient data and the local government server 20 transmitted from the terminal computer 30
  • Patient-acquired hospital determination means 70 for receiving and a patient data, hospital data,
  • the transport destination hospital is determined by calculation processing.
  • the terminal data input means 50 in the emergency support system includes a Bluetooth chipset, a first microphone that collects sound, and a second microphone that collects environmental noise, and is a headset worn by an emergency crew.
  • a terminal computer 30 possessed by an ambulance crew, and voice recognition software installed in the terminal computer 30, and the headset part collects sound collected from the first microphone in order to optimize voice recognition accuracy.
  • analog / digital conversion means incorporated in the Bluetooth chipset for converting environmental noise collected from the second microphone into digital data, noise processing means for removing noise, voice extraction means, and noise is removed.
  • Transmission means for transmitting the received audio data to the terminal computer
  • the voice recognition software provided with the receiving means for receiving the voice data transmitted by the transmitting means and implemented in the terminal computer 30 removes the noise by the stationary noise processing means and then extracts the features of the voice by the feature extracting means and recognizes them.
  • the processing means includes a terminal data input means 50 that recognizes speech from acoustic model data, vocabulary data, and grammar data, and generates and outputs character data.
  • the terminal data input means 50 outputs numerical values / words uttered by emergency personnel in response to an inquiry about the vital sign item name / lifesaving treatment item name of the patient issued from the terminal computer 30.
  • each item is converted into character data and recorded by voice recognition software.
  • the terminal data input means 50 is configured to switch the vocabulary data and grammatical data used for speech recognition every time the vital sign item / treatment item of the patient changes, in order to optimize the accuracy of speech recognition. But there is.
  • the emergency support system avoids a patient waiting state at the rescue point or the first transport destination hospital, so that the main server 10 has the hospital computers 100 of all emergency designated hospitals in the local government and / or the mobile phone of the doctor on duty.
  • the system includes an alert information transmitting unit 110 that automatically transmits alert (attention) information to 160 and also automatically transmits alert information to the local firefighting headquarter computer 40.
  • the main server 10 automatically transmits the emergency team activity status data to the local fire brigade headquarter computer 40 to which the emergency squad belongs.
  • the ambulance activity status data transmission means 120 is provided.
  • the local government firefighting headquarters computer 40 automatically acquires the emergency team activity status data from the main server 10 and uses the emergency team activity status data generation means 90 to check the activity status of all the controlled emergency teams.
  • the local fire department headquarters computer 40 and the terminal computer 30 allow browsing.
  • the emergency support system allows patient data selected by the main server 10 to be viewed on the hospital computer 100 of the transport destination hospital, the mobile phone 160 of the doctor on duty of the hospital, and / or the web browser of the terminal computer 30.
  • the configuration includes the means 130.
  • the emergency support system uses the patient data for which the main server 10 has set an alert flag, the local government firefighting headquarters computer 40, the hospital computers 100 of all emergency designated hospitals in the local government, and the mobile phones of the duty doctors of all emergency designated hospitals. 160 and / or patient data transmission means 130 that can be viewed on the terminal computer 30.
  • the emergency support system is configured to read patient data stored by electromagnetic means into the terminal computer 30 and transmit it to the main server 10. Further, the emergency support system has a configuration in which the local fire department headquarter computer 40 includes an ambulance service work report generation unit 140 that generates work report data from patient data received from the main server 10.
  • the emergency support system includes an acceptance statistical data generation means 150 in which the main server 10 automatically acquires and accumulates patient acceptance / rejection information of the destination hospital and generates acceptance statistical data.
  • the patient transport hospital determining means 70 calculates the total number of points processed by multiplying the ratios given according to the attributes of the patient data, the ambulance crew data, and the hospital data accumulated by the terminal computer 30. It is the structure which determines a destination hospital by a process.
  • the present invention is configured as described in detail above, the following effects are obtained. 1. Since the decision of the transport hospital of the emergency support system is reasonably determined by counting the points by referring to, analyzing, and transmitting the emergency team information and patient data as appropriate by the processing by the main server 10, various types of emergency team members The efficiency and speed of lifesaving activities can be improved. 2. As emergency personnel can record patient data in hands-free and eyes-free manner (without using hands or looking at the screen of the terminal) by voice recognition means during patient treatment or observation, more detailed patient data can be distributed, Improve patient survival rate.
  • the main server 10 automatically transmits alert (warning) information to the hospital computers 100 of all emergency designated hospitals in the local government, the mobile phones 160 of all doctors on duty and / or the local government firefighting headquarters computer 40, so that the related organization As a whole, the decision of the hospital to accept the patient is promoted, so that the waiting state of the patient and the patient's traversing can be avoided. 6). Since the main server 10 automatically transmits the ambulance activity status data to the local firefighting headquarter computer 40 of the local firefighting headquarters to which the ambulance team belongs, it is possible to manage the activity status of all subordinate emergency services in the firefighting headquarters. Become.
  • the local fire department headquarters computer 40 of each local government fire department headquarters computer 40 automatically acquires the activity status data of all subordinate ambulance teams in the case of wide-area disasters, etc. Can be applied. 8).
  • the patient data selected by the main server 10 is browsed by the hospital computer 100 of the destination hospital, the mobile phone 160 of the doctor on duty at the hospital, and / or the web browser of the terminal computer 30, so The patient data can be confirmed from both the terminal computer 30 and the terminal computer 30, and information about the patient can be shared.
  • the local fire department headquarters computer 40, the terminal computer 30, and the hospital computer 100 can browse the patient data selected by the main server 10, it is possible to realize rapid patient transportation by sharing information, and at the same time, toxic gas, pathogen, radioactivity It becomes possible to protect members and nearby residents from dangerous situations such as pollution. 10. Since the terminal computer 30 reads the patient data stored in the electromagnetic means using the electromagnetic means, the patient's personal information is unknown, such as the patient's consciousness being unknown or no other identification means being carried. In this case, it is possible to quickly determine the transport destination and the like, and to improve patient treatment.
  • the main server 10 automatically acquires and accumulates patient acceptance / rejection information of the destination hospital and generates acceptance statistics data, it accumulates and analyzes the information, so that problems that occur during emergency transportation (especially Analyzing and mitigating patient traversing problems).
  • the determination of the transport hospital of the emergency support system is reasonably determined by counting the points by referring to, analyzing, and transmitting the member information and patient information as appropriate by the processing by the terminal computer 30, the terminal computer during the emergency transport Even when it is not possible to connect to the main server 10, it is possible to improve the efficiency and speed of various lifesaving activities by emergency personnel.
  • FIG. 1 is a schematic diagram of an emergency support system
  • FIG. 2 is a configuration diagram of the emergency support system
  • FIG. 3 is an operation flowchart of the patient transport hospital determining means
  • FIG. 4 is an operation flowchart of the voice recognition system
  • FIG. 5 is a flowchart of the voice input process.
  • the emergency support system includes a main server 10, a local government server 20, a terminal computer 30, a local government firefighting headquarter computer 40, a hospital computer 100, and a doctor's mobile phone 160. It is configured to be connected so as to be able to communicate with each other via a network.
  • the main server 10 is a core device of the emergency support system according to the present invention, accumulates and manages patient data, hospital data, emergency crew data, and emergency team activity time lapse data, and performs various calculation processes. It is a server.
  • the main server 10 can be configured as a single unit, but considering that the main server 10 requires a large number of processes and high performance, distributed processing or the like by a plurality of server computers as in this embodiment. It is desirable to have a configuration that can perform the above. It is also possible to place a server or server group in the user's data center, etc., but data management using so-called cloud computing technology from the viewpoint of safety of data management and simplification of system operation and maintenance A method (an operation method for converting a server into a cloud) may be used.
  • the main server 10 stores and manages patient data, hospital data, ambulance crew data, and ambulance team activity time lapse data.
  • the patient data is a data group transmitted from the terminal computer 30 to be described later (paragraph [0045]) by the terminal data transmitting means 60, and includes personal information (name, address, date of birth, sex, history) of the patient as attributes. Etc.), the type of injury and illness, the degree of injury and illness, the condition, the treatment content, and the patient data table having the accommodation position.
  • the hospital data is stored in the local government server 20 installed in each local government and is data related to an emergency designated hospital in the local government that is posted on the Internet emergency medical information site of the local government. It is a data group acquired from.
  • the hospital data is constituted by a hospital data table having, as attributes, the facility name, address, contact telephone number, specialized subject, position information, vacant bed information, availability of the doctor in charge, and the name of the doctor in charge of the emergency designated hospital. Since the hospital data is updated at regular intervals, it is desirable from the viewpoint of using the latest information that the read time of the hospital data by the main server is immediately after the update time of the hospital data.
  • the ambulance team data is a data group stored in the terminal computer 30 and transmitted to the main server 10 by the terminal data transmission means 60 described later (paragraph [0049]).
  • the present location, activity status It consists of an ambulance team data table having on-site arrival, patient contact, patient accommodation, patient transport, hospital arrival, hospital waiting, hospital departure, fire department return).
  • the current location of all ambulance crews is acquired from position information data using a GPS sensor. That is, by using the GPS sensor built in the terminal computer 30 or the like, the latitude / longitude information (position information) of the patient rescue point is sent to the main server 10 so that the main server 10 has the current location of the ambulance (in many cases, the rescue location). It is also possible to determine the most appropriate receiving hospital (one or more) by automatically calculating from the transport point), patient symptoms / conditions, hospital acceptance system data, and distance / distance to the candidate hospital. Become.
  • the ambulance team activity time lapse data is a data group which is accumulated in the terminal computer 30 and transmitted to the main server 10 by the terminal data transmitting means 60 described later (paragraph [0049]).
  • Time of entry, Time of arrival on site, Time of patient contact, Time of patient's accommodation in ambulance, Time of departure, Time of arrival at hospital, Time of patient's accommodation by hospital, Time of raising emergency hospital, Return It is composed of an ambulance team activity time lapse data table having hours and minutes.
  • the terminal computer 30 automatically distributes this data to the main server 10 by the terminal data transmission means 60, and the main server 10 automatically calculates and processes the current position and activity status of each ambulance, which will be described later (paragraph [0071].
  • the main server 10 includes a patient transfer hospital determination unit 70 and a transfer destination hospital data transmission unit 80.
  • the patient transport hospital determination means 70 quantifies and integrates data such as the location information of the terminal computer 30, the location information of all emergency designated hospitals in the local government, the specialized subjects of the emergency hospital, the availability of doctors, the bed availability information, etc. Using this, the main server 10 is a means for calculating the optimum delivery destination hospital and determining the delivery destination.
  • patient data type of injury / condition / contents of treatment / rescue point / (if known, past disease / current disease name / treatment history / medicine history)
  • hospital data main server 10 received and accumulated from terminal computer 30
  • each attribute of the emergency designated hospital address specialized subjects, information about available beds, availability of doctors in charge, contact telephone number), and ambulance team data (positional data by ambulance team GPS, status of crew members)
  • ambulance team data positional data by ambulance team GPS, status of crew members
  • the site and type of disease, as well as the evaluation of urgency can be changed with certain standards, taking into account the evaluation by physicians as well as the evaluation by emergency personnel.
  • the ratio of general illnesses to each hospital is the same, only a specific hospital may be set to a high ratio for a specific illness.
  • the ratio of doctors will be changed depending on the field of expertise.
  • the ratio for each hospital is always changed according to the position information by the GPS of the ambulance team. Thereby, it becomes possible to support the transport of the emergency patient by the ambulance crew.
  • the patient transport hospital determining means 70 is processed according to the flow shown in FIG. That is, the main server 10 calculates patient data, hospital data, and emergency crew data. If the specialized subject of the hospital matches the patient's injury and illness, the doctor can cope with it, and the result that there is an empty bed is obtained, the nearest hospital is selected from the emergency crew data and the location information of the hospital data. If the shortest hospital is unable to accept the patient due to the availability of a doctor or an empty bed, the hospital with the shortest distance from the rescue site is selected and determined.
  • an alert signal is sent to all emergency designated hospitals in the local government, mobile phones 160 of all duty doctors, and the local firefighting headquarters by alert information transmitting means 110 described later (paragraph [0066]). (So-called escalation is performed).
  • the current selection criteria for the optimal hospital is that if the patient is moderate to severe, the emergency personnel will judge from the patient's symptoms and be the doctor in charge of the emergency designated hospital that seems to be optimal (distance from the specialized subject / site) Calls are requested for acceptance, and in the case of mild cases, patients often call their hospital to request acceptance. For this reason, there is a problem that the selection of the destination hospital takes time because the selection of the destination hospital largely depends on the experience of the emergency personnel, and in some cases it is not performed smoothly. According to the present invention, it is possible to determine a delivery destination hospital by calculation processing, and it is possible to realize quick and reliable patient transportation by combining functions of an alert information transmission unit 110 described later.
  • the transfer destination hospital data transmission means 80 is means for transmitting the hospital data determined by the patient transfer hospital determination means 70 to the terminal computer 30.
  • the data transmission means it is possible to use a high-speed wireless data line such as an Internet network or a dedicated line. From the viewpoint of preventing information leakage, it is desirable to enhance security by using a technology such as SSL-VPN.
  • the ambulance team activity status data generation means 90 is means for generating emergency team activity status data from the emergency team data and the ambulance team activity time lapse data.
  • Activity status of all emergency services in the jurisdiction for example, waiting, rushing to the scene, patient contact, patient accommodation, departure from the hospital, arrival at the hospital, waiting at the hospital, departure from the hospital, returning to the hospital, return, etc.
  • the present location information is generated, and the generated data is sent from the main server 10 to the local government fire department headquarters computer 40 by the ambulance team activity status data transmission means 120 described later (paragraph [0071]).
  • the local fire department headquarters computer 40 can list the activities of all ambulance teams. As a result, it is possible to manage the activity status of all members in the jurisdiction, making it easier for the firefighting headquarters to grasp the status of the members, and to give accurate instructions to the members.
  • the local government server 20 is a server used for storing and providing the hospital data.
  • One or a plurality of local government servers are installed in each local government, and the emergency medical information of each local government (mainly a prefecture unit) belongs to the residents and the local government.
  • This is a server that allows an emergency team to browse through a web browser or the like.
  • the hospital data stored in the server is usually updated on a daily basis. That is, the facility name, specialized subject name, telephone number, (name of doctor in charge, availability of doctors, availability of beds, etc.) of emergency designated hospitals in the local government are periodically edited and updated.
  • the terminal computer 30 is a computer possessed by emergency personnel, transmits the accumulated patient data, emergency personnel data, and ambulance activity time lapse data to the main server, and data distributed from the main server 10 Is a device used to receive, calculate and output
  • the terminal computer 30 can select an arbitrary one such as a laptop computer or an electronic tablet, but it is necessary to transmit the latitude and longitude information (position information) of the patient rescue point to the emergency crew data transmitted to the main server 10. Therefore, it is desirable to incorporate a GPS sensor. Further, since it is necessary to cope with voice input by the terminal data input means 50 described later, it is desirable that a voice input microphone or the like is provided or can be connected.
  • the local government firefighting headquarters computer 40 is a computer that is arranged in each local government firefighting headquarters and receives, calculates, and outputs data distributed from the main server 10. Further, the hospital computer 100 allows the patient data transmitted by the main server 10 or displayed on the Web browser to be viewed on the computer in the emergency medical department of the hospital, and the doctor in charge fills in the findings and electronically signs them. Equipment.
  • the terminal computer 30 includes terminal data input means 50 and terminal data transmission means 60 as shown in FIG.
  • Terminal data input means 50 is means for inputting and storing patient data and emergency activity time records in the terminal computer 30.
  • the patient data stored by electromagnetic means such as noise-resistant voice recognition software 540 or a card or IC chip (patient's first and last name, address, contact phone number, date of birth, history, Data such as current disease name, medication history, hospital name during outpatient), but is not limited to these.
  • voice recognition software 540 or a card or IC chip
  • a card or IC chip patient's first and last name, address, contact phone number, date of birth, history, Data such as current disease name, medication history, hospital name during outpatient
  • handwritten character recognition software a touch panel (including a pull-down list), a soft keyboard, and the like can be given.
  • the terminal data transmitting means 60 is means for transmitting the ambulance crew data, the ambulance team activity time elapsed data, and the patient data input by the terminal data input means 50 from the terminal computer 30 to the main server 10.
  • a high-speed wireless data line such as an Internet network or a dedicated line.
  • W-CDMA Wideband Code Division Multiple Access
  • LTE Long Term Evolution
  • Wi-Fi Wireless Fidelity
  • the terminal data input means 50 includes a Bluetooth chipset 510, a first microphone 520a that picks up sound, and a second microphone 520b that picks up environmental noise. It is composed of a headset unit 530 to be worn, a terminal computer 30 possessed by emergency personnel, and voice recognition software 540 installed in the terminal computer 30.
  • the Bluetooth chip set 510 is a chip set for short-range wireless data communication technology, and has a capability of performing advanced voice processing.
  • the terminal data input means 50 of the present invention applies this Bluetooth chipset to an emergency support system.
  • the first microphone 520a is a headset unit 530 of the terminal data input means 50 equipped by the emergency crew, and is installed at a position that becomes the mouth of the wearer when the headset is worn. As a result, the voices of the members are collected. Further, the second microphone 520 b is installed in the headset unit 530 of the terminal data input unit 50. The second microphone 520b is preferably installed at a position slightly away from the first microphone 520a so as not to pick up the sound emitted by the wearer, and is preferably at least 3 cm away from the first microphone.
  • the headset unit 530 is an instrument to be mounted on the head of an emergency crew, and includes a Bluetooth chipset 510, a first microphone 520a and a second microphone 520b for collecting sound and the like, and a rechargeable battery. is there.
  • the terminal computer 30 is a computer possessed by emergency personnel.
  • Voice recognition software 540 is installed in the terminal computer 30.
  • the headset unit 530 includes a PCM conversion unit (analog / digital conversion unit) 531 that converts sound collected from the first microphone 520a and environmental noise collected from the second microphone 520b into digital data. , A situation recognition unit 532, a noise processing unit 533 for removing noise, and a voice extraction unit 534. As these function in order as described later, the accuracy of voice recognition can be optimized and accurate patient data can be input even in noisy environments such as the back of an ambulance running with sirens. It becomes.
  • PCM conversion unit analog / digital conversion unit
  • the headset unit 530 is equipped with a transmission unit 535 that transmits the audio data from which noise has been removed to the terminal computer
  • the terminal computer 30 is equipped with a reception unit 541 that receives the audio data transmitted by the transmission unit. ing.
  • a hardware option for the terminal computer 30 is obtained by physically separating a device that inputs sound and attenuates environmental noise and a device that performs speech recognition that receives clean speech from which noise has been removed and converts it into text data. Can be expanded.
  • the headset unit 530 and the terminal computer 30 can be realized by a wired system, but it is desirable to use a wireless transmission system from the viewpoint of expanding the action range of emergency personnel.
  • this wireless transmission method it may be possible to adopt Bluetooth, Wi-Fi, Wireless USB, or the like.
  • the voice recognition system is executed according to the flow shown in FIG.
  • the voice mixed with the speaker's noise is recorded by the first microphone 520 a attached to the mouth of the headset unit, and the analog signal is sampled and quantized with high sound quality (PCM conversion) by the PCM conversion unit 531.
  • PCM conversion high sound quality
  • environmental noise is recorded by the second microphone 520b built in another part of the headset unit 530, and similarly, the PCM conversion unit 531 performs PCM conversion with high sound quality.
  • a clear voice is extracted from the environmental noise by the noise processing unit 533 and the voice extraction unit 534.
  • the voice data is transmitted to the terminal computer 30 by the transmission means 535.
  • the noise processing unit 533 and the voice extraction unit 534 use SS (Spectral Subtraction) type noise canceling software that is standardly mounted on the DSP of the Bluetooth chipset, but the present invention is not limited to this. is not.
  • the receiving unit 541 receives the audio data transmitted from the headset unit 530.
  • the terminal computer 30 sends the received voice data to the voice recognition software 540 installed in the terminal computer 30 for processing.
  • the stationary noise processing unit 542 removes noise.
  • a feature of the speech is extracted by the feature extraction unit 543, and the acoustic model data unit 548 is added to the lexical data selected by the vocabulary processing unit 546 and the grammar data determined to be applied by the grammar processing unit 547 in the recognition processing unit 544. Applying the acoustic model data distributed from, perform speech recognition processing.
  • character data is generated by the post-recognition processing unit 545 and the text data is output.
  • the voice recognition software 540 installed in the terminal computer 30 increases the voice as if it is a relatively quiet noise environment of 60 dB even if the environmental noise level is as high as 80 dB. It became possible to recognize with accuracy.
  • Voice input by the members is performed as shown in FIG.
  • the input process is started by the utterance such as “voice start” of the emergency personnel.
  • the input contents are classified into large items and small items.
  • the contents of the lifesaving treatments performed are stored as patient data.
  • treatments such as defibrillation (AED), airway securing, vein securing, and drug administration can be input by voice.
  • AED defibrillation
  • the progress of observation / treatment is spoken, a process of saving the patient's condition before and after the treatment as patient data is performed.
  • the patient's consciousness, breathing, pulse, ECG, blood pressure, trend, SpO2, body temperature, body position, etc. can be input by voice.
  • the major item name speaks either “lifesaving treatment etc.” or “the progress of observation / treatment” in the present embodiment, it is not limited to these.
  • the voice recognition software 540 For each utterance, the voice recognition software 540 performs a voice data character data conversion process. When inputting a small item, if it is within the same large item, it is possible to move to another small item and perform input processing by speaking the small item name. As described above, patient data can be input accurately and promptly.
  • the terminal data input means 50 reads and records numerical values and words uttered by emergency personnel in response to inquiries about the vital sign item name and lifesaving item name of the patient issued from the terminal computer 30 as character data for each item. To do. Furthermore, the character data is read out by the speech synthesis software installed in the terminal computer 30 and sent to the earphones of the emergency crew's headset, so that the crew can confirm the input result by ear. This makes it possible to prevent errors in input items when inputting patient data, to reduce the burden on emergency personnel, and to realize quick recording of patient data. .
  • the vocabulary data used for speech recognition is switched by the speech recognition software 540 every time the vital sign item / treatment item of the patient changes in the vocabulary processing unit 546 of the speech recognition software 540 of FIG.
  • voice recognition processing can be performed.
  • the vocabulary data group is changed and the frequently used vocabulary is preferentially used to optimize speech recognition accuracy. And the processing speed can be increased.
  • the alert information transmission means 110 is configured so that the main server 10 has the hospital computers 100 of all emergency designated hospitals in the local government and / or all the doctors on duty to avoid waiting for the patient at the rescue point or the first destination hospital. This is means for automatically transmitting alert (attention) information to the mobile phone 160 and automatically transmitting the alert information to the local fire department headquarters computer 40.
  • the main server 10 is the hospital computer 100 of all emergency designated hospitals in the local government and / or mobile phones of all duty doctors.
  • Alert information (situation, condition, etc. of the patient) is automatically transmitted to 160, prompts the patient information to be browsed and responded, and alert information is automatically sent from the main server 10 to the local firefighting headquarter computer 40.
  • the transmission means 110 is equipped.
  • Alert information can be transmitted using a network such as the Internet, but can also be transmitted using a dedicated line.
  • a network such as the Internet
  • the ambulance team activity status data transmission means 120 is a means for the main server 10 to automatically transmit the emergency team activity status data to the local fire department headquarter computer 40 of the local fire department headquarters to which the emergency team belongs.
  • the emergency support system includes a local government firefighting headquarter computer 40.
  • the local firefighting headquarters computer 40 automatically acquires the ambulance team activity status data from the main server 10 and uses the subordinate rescue team activity status data generation means 90 to obtain the activity status data of all the emergency teams under its jurisdiction. 40 and the terminal computer 30 can be browsed. This makes it easier for the firefighting headquarters to grasp the situation of the members and to give accurate instructions to the members.
  • the patient data transmitting means 130 is means for transmitting the patient data selected by the main server 10 to the hospital computer 100 of the destination hospital, the mobile phone 160 of the doctor on duty of the hospital, the local government fire department headquarters computer 40, and the terminal computer 30. is there.
  • patient data can be browsed by the hospital computer 100 of the transfer destination hospital, the mobile phone 160 of the doctor on duty, the Web browser of the terminal computer 30, and the like.
  • the hospital computer 100, the doctor's mobile phone 160 and the terminal computer 30 access the main server 10 via a network such as the Internet, and the main server 10 accesses the HTML file generated for browsing.
  • a method of browsing with a Web browser or the like can be considered.
  • the patient data generated for browsing by the main server 10 may be automatically distributed to the hospital computer 100, the mobile phone 160 of the doctor on duty, and the terminal computer 30 via a network such as the Internet.
  • the terminal computer 30, the hospital computer 100, and the cellular phone 160 of the doctor on duty can check the patient data, thereby realizing rapid patient conveyance by information sharing.
  • the data is recorded in the main server 10 and is updated in the terminal computer 30 and the local government firefighting headquarter computer 40. It is configured so that it can be viewed on.
  • the patient data transmission means 130 also sends the patient data for which the main server 10 has set an alert flag to the local government firefighting headquarters computer 40, the hospital computers 100 of all emergency designated hospitals in the local government, the mobile phones 160 of all duty doctors, and It is a means for transmitting to the terminal computer 30 or making it viewable on the local government firefighting headquarters computer 40, the hospital computers 100 of all emergency designated hospitals in the local government, the mobile phones 160 of all the doctors on duty and the terminal computer 30.
  • the local government firefighting headquarter computer 40, the hospital computer 100, the doctor's mobile phone 160 and the terminal computer 30 access the main server 10 via a network such as the Internet, and the main server 10 generates the data for browsing.
  • a method of accessing the HTML file and browsing it with a Web browser or the like is conceivable.
  • the patient data generated for viewing by the main server 10 via a network such as the Internet, the local government firefighting headquarter computer 40, the hospital computers 100 of all emergency designated hospitals in the local government, the mobile phone 160 of the doctor on duty, and the terminal A method of automatically distributing to the computer 30 may be used.
  • the local government firefighting headquarters computer 40, the terminal computer 30, the hospital computer 100, and the mobile phone 160 of the doctor on duty can confirm patient data, and can realize rapid patient transportation by information sharing, It will be possible to protect nearby residents and members from dangerous situations such as pathogens and radioactive contamination.
  • the terminal data input means 50 is a method of inputting patient data / emergency activity time records to the terminal computer 30.
  • Patient data stored by electromagnetic means such as a card or IC chip (patient's first name, address, contact telephone number) ⁇ Data such as date of birth, past medical history, current disease name, medication history, hospital name during outpatient treatment, etc.) can be used. Cards equipped with electromagnetic means are carried by an individual in advance.
  • the terminal computer 30 reads the patient data stored in the electromagnetic means and transmits it to the main server 10. This makes it possible to quickly determine the transport destination when the patient's personal information is unknown, such as when the patient's consciousness is unknown, and to improve the efficiency of emergency transport. .
  • the ambulance team work report generation means 140 is means for the local fire department headquarter computer 40 to generate work report data from the patient data received from the main server 10.
  • the local government firefighting headquarters computer 40 automatically transcribes the latest patient data obtained by the patient data transmission means 130 to the existing backbone system of the firefighting headquarters.
  • ambulance crew members can fill out the findings, digitally sign them, and print them out as a business report (conveyance confirmation), which can reduce the burden of the emergency crew's work on document creation and improve work efficiency. It became possible to plan.
  • the acceptance statistical data generating means 150 is means for the main server 10 to automatically acquire / accumulate patient acceptance / rejection information of the destination hospital and generate acceptance statistical data.
  • the patient acceptance / rejection status of the emergency designated hospital is automatically totaled by the main server 10 and the statistical data is periodically distributed to each local government firefighting headquarter computer 40.
  • related parties will examine and improve issues regarding the patient acceptance system of emergency designated hospitals (the number of times they refused to be accepted, and there are problems as emergency designated hospitals) and problems where patient acceptance is concentrated in specific emergency designated hospitals. It became possible to plan. Distribution may be through a network such as the Internet, but a dedicated line may also be used. In order to prevent information leakage and the like, it is desirable to transmit data in a manner in which security measures are taken.
  • the patient transport hospital determining means 70 performs calculation processing by summing up the points processed by multiplying the ratios given according to the attributes of the patient data, ambulance crew data, and hospital data accumulated by the terminal computer 30. It is possible to determine the destination hospital. That is, it is possible to configure the patient transport hospital decision support means so that it can also be performed by a terminal computer. This makes it possible to quickly determine the transport destination even when the terminal computer cannot connect to the main server during emergency transport, such as when it is necessary to perform emergency activities in a place where it cannot be connected to the network. It has become possible to improve the efficiency of emergency transport.

Abstract

La présente invention concerne la fourniture d'un système de prise en charge d'urgence qui prend en charge une activité de sauvetage effectuée par un secouriste. En particulier, l'invention concerne la fourniture d'un système de prise en charge d'urgence plus efficace et plus rapide pour diverses activités de sauvetage effectuées par le secouriste, qui accélère l'acquisition de données de patient du côté de l'hôpital dans lequel un patient est admis, et qui garantit également la sécurité de la vie et du corps du patient. Le système de prise en charge d'urgence comprend un serveur principal, un serveur de gouvernement local, un terminal d'ordinateur, un moyen d'entrée de données de terminal, un moyen de transmission de données de terminal, un moyen de détermination d'hôpital de destination de patient, un moyen de transmission de données d'hôpital de destination et un moyen de génération de données d'état d'activité de secouriste. Le moyen de détermination d'hôpital de destination de patient est configuré pour déterminer l'hôpital de destination conformément à un processus de calcul, en additionnant les points qui ont été traités en étant multipliés par des rapports donnés conformément à chacun des attributs suivants, qui sont reçus et mémorisés par le serveur principal : le type de blessure/maladie, l'état du patient, le traitement et le site de sauvetage, qui sont inclus dans les données de patient ; le lieu, la spécialité, les informations de disponibilité de lit et l'état d'attente de médecin traitant pour un hôpital d'urgence désigné, qui sont inclus dans les données d'hôpital ; et les données d'informations de position (GPS) du secouriste et l'état d'activité du secouriste, qui sont inclus dans les données de secouriste.
PCT/JP2011/075106 2011-10-31 2011-10-31 Système de prise en charge d'urgence WO2013065113A1 (fr)

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JP2019021179A (ja) * 2017-07-20 2019-02-07 国立大学法人千葉大学 救急出動支援システム
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KR101687701B1 (ko) * 2015-09-25 2016-12-20 (주)아이넷테크 소방 차량 단말기 및 그 방법
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JP2019021179A (ja) * 2017-07-20 2019-02-07 国立大学法人千葉大学 救急出動支援システム
CN108392190A (zh) * 2018-05-08 2018-08-14 黎弋凡 一种用于室内定位导航的跟踪手环
JP2019204151A (ja) * 2018-05-21 2019-11-28 Necプラットフォームズ株式会社 情報処理装置、システム、方法及びプログラム
JP2020149215A (ja) * 2019-03-12 2020-09-17 キヤノンメディカルシステムズ株式会社 搬送計画生成装置、搬送計画生成システム及び搬送計画生成方法
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JP7122279B2 (ja) 2019-03-15 2022-08-19 株式会社日立製作所 医療機関選定サーバ及び医療機関選定方法
JP2022547027A (ja) * 2019-09-04 2022-11-10 オンタクト ヘルス カンパニー リミテッド 最適な移送病院決定方法及びサーバ
JP2021082087A (ja) * 2019-11-20 2021-05-27 富士フイルム株式会社 情報処理装置、情報処理システム、情報処理方法、及び情報処理プログラム

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