CN216083434U - Intelligent accurate triage platform - Google Patents

Intelligent accurate triage platform Download PDF

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Publication number
CN216083434U
CN216083434U CN202121862957.9U CN202121862957U CN216083434U CN 216083434 U CN216083434 U CN 216083434U CN 202121862957 U CN202121862957 U CN 202121862957U CN 216083434 U CN216083434 U CN 216083434U
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processor
triage
disease
server
intelligent
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王天宝
康盛伟
梁路
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Sichuan Cancer Hospital
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Sichuan Cancer Hospital
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Abstract

The utility model discloses an intelligent accurate triage platform which comprises a server end and a triage terminal in signal connection with the server end through the Internet, wherein the server end comprises a disease diagnosis data server and a registration distribution server; the triage terminal comprises object identification equipment, disease data acquisition equipment, an operation platform and a processor, wherein the object identification equipment comprises a personal information acquisition device and a card reading device, the disease data acquisition equipment comprises an image acquisition device, a voice acquisition and output device and a medical record card information identification device, and the processor is in signal connection with the object identification equipment, the disease data acquisition equipment, the operation platform and a server side. The intelligent accurate triage platform has the advantages of being fast, intelligent and accurate.

Description

Intelligent accurate triage platform
Technical Field
The utility model relates to a triage terminal, in particular to an intelligent accurate triage platform.
Background
In the mobile internet era, appointment registration, self-service order opening, network medical treatment and the like have become or are about to become mainstream medical treatment modes, but problems that registered departments are not matched with requirements, registration is repeated and the like often occur due to the development and the use of various intelligent software, so that the effective medical treatment time of a patient is prolonged, diagnosis and treatment are delayed, resources are wasted, and meanwhile, the medical treatment of a lot of old patients and low-cognition and low-behavior-capability crowds is limited. At present, a certain number of people still need to register on the site of a hospital, and most of the hospital has limited number of diagnosis guide and triage personnel and uneven professional levels, so that the triage in the hospital is also wrong, the waste of manpower and financial resources is easily caused, and the social cost is increased. Particularly in a comprehensive hospital, the disease departments become thinner and thinner, and the doctor visit information becomes more and more complex, so that the accuracy of manually judging the departments to be registered is obviously reduced, and the difficulty is increased.
SUMMERY OF THE UTILITY MODEL
Aiming at the problems, the utility model provides an intelligent accurate triage platform which has the advantages of rapidness, intelligence and accurate triage.
The technical scheme of the utility model is as follows:
an intelligent accurate triage platform comprises a server side and a triage terminal in signal connection with the server side through the Internet, wherein the server side comprises a disease diagnosis data server and a registration distribution server; the triage terminal comprises object identification equipment, disease data acquisition equipment, an operation platform and a processor, wherein the object identification equipment comprises a personal information acquisition device and a card reading device, the disease data acquisition equipment comprises an image acquisition device, a voice acquisition and output device and a medical record card information identification device, and the processor is in signal connection with the object identification equipment, the disease data acquisition equipment, the operation platform and a server side.
The working principle of the utility model is as follows: for the patients who can not judge the department of the disease according to the own ability, the operation platform is used for inputting instructions and identifying or collecting personal information through the object identification equipment; the former medical record and the existing symptoms of the patient are recorded through an image acquisition device, a voice acquisition and output device and a medical record card information identification device in the disease data acquisition equipment; the personal information and the disease data of the patient are transmitted to the processor, the processor compares the disease data with the content in the disease diagnosis data server to judge the department of the disease of the patient, and the processor distributes the patient to related doctors according to the doctors in the registration distribution server and the professional field data thereof.
Compared with the prior art, the medical record management system has the advantages that the disease data of the patient is collected through the disease data collecting equipment, man-machine conversation is realized through the voice collecting and outputting device, the paper medical record is read through the image collecting device, the medical record card information identifying device is used for inputting the medical record, the processor is used for comparing and analyzing with the disease diagnosis data server at the server end, the disease diagnosis data server stores a large amount of disease diagnosis and differential diagnosis data, accordingly, departments to which the disease of the patient belongs are judged, and the processor is used for reading doctors and professional field data in the registration and distribution server to distribute the patient to related doctors.
In a further technical scheme, the registration distribution server comprises a doctor registration data acquisition processor.
The doctor registration data acquisition processor is arranged in the registration distribution server, so that the registration data of doctors are acquired, and the processor preferentially distributes the data to the doctors with a small number of registered people after reading the data, and the diagnosis efficiency is improved.
In a further technical scheme, the registration distribution server comprises a diagnosis information input device and a medical record storage data storage medium, and the medical record storage data storage medium is respectively connected with the diagnosis information input device and the disease data acquisition device.
The medical record data storage medium is arranged in the registration distribution server, so that after relevant examination and diagnosis are carried out on a patient in the hospital, examination and diagnosis data can be acquired through the diagnosis information input device and are integrated with the previous medical record acquired by the disease data acquisition device and input into the medical record data storage medium together for subsequent inquiry.
In a further technical scheme, the triage terminal further comprises payment equipment and printing equipment which are both connected with the processor.
Through setting up equipment and the printing apparatus of paying fees, effectively promote patient's efficiency of seeking medical advice.
In a further technical scheme, the server further comprises a hospital map data storage medium, and the triage terminal further comprises a navigation processor connected with the hospital map data storage medium.
By arranging the hospital map data storage medium and the navigation processor connected with the hospital map data storage medium, the patient can navigate through the navigation processor and accurately arrive at a registered department or doctor, and the medical efficiency of the patient is improved.
In a further technical scheme, the navigation processor is an AR navigation processor, and a docking port connected with the mobile terminal is arranged in the AR navigation processor.
The navigation processor is set as the AR navigation processor and is provided with the butt joint port in signal connection with the mobile terminal, so that the mobile terminal of a patient can be synchronized, and the navigation of the path is more convenient.
In a further technical scheme, the disease data acquisition equipment is also provided with a translation processor for translation, and the disease data acquisition equipment is in signal connection with the processor through the translation processor.
By arranging the translation processor, the medical history of foreign languages and foreign language voice can be translated and then transmitted to the processor for processing, so that the functional comprehensiveness of the utility model is improved.
In a further technical solution, the disease diagnosis data server includes an intelligent learning sub-server.
By arranging the intelligent learning sub-server, diagnosis of common diseases and multiple diseases is recorded according to departments, disease diagnosis and differential diagnosis are carried out, and diagnosis accuracy and disease coverage of the disease diagnosis data server are continuously improved.
The utility model has the beneficial effects that:
1. compared with the prior art, the medical record management system has the advantages that the disease data of a patient are collected through the disease data collecting equipment, man-machine conversation is realized through the voice collecting and outputting device, the reading of a paper medical record is realized through the image collecting device, the input of the medical record is realized through the medical record information identifying device, the processor is compared and analyzed with the disease diagnosis data server at the server end, the disease diagnosis data server stores a large amount of disease diagnosis and differential diagnosis data, so that departments to which the disease of the patient belongs are judged, and the doctor and the professional field data in the registration and distribution server are read through the processor to distribute the patient to related doctors;
2. the doctor registration data acquisition processor is arranged in the registration distribution server to acquire the registration data of the doctors, and the processor reads the data and preferentially distributes the data to the doctors with a small number of registered people, so that the diagnosis efficiency is improved;
3. by arranging the diagnosis information input equipment and the medical record storage data storage medium in the registration distribution server, after a patient performs related examination and diagnosis in the hospital, examination and diagnosis data can be acquired through the diagnosis information input equipment, and are integrated with the previous medical record acquired by the disease data acquisition equipment and input into the medical record data storage medium for subsequent query;
4. the medical efficiency of the patient is effectively improved by arranging the payment equipment and the printing equipment;
5. by arranging the hospital map data storage medium and the navigation processor connected with the hospital map data storage medium, the patient can navigate through the navigation processor and accurately arrive at a registered department or doctor, so that the medical efficiency of the patient is improved;
6. the navigation processor is set as the AR navigation processor and is provided with the butt joint port in signal connection with the mobile terminal, so that the mobile terminal of the patient can be synchronized, and the path navigation is more convenient;
7. by arranging the translation processor, the medical history and foreign language voice of foreign language can be translated and then transmitted to the processor for processing, so that the functional comprehensiveness of the utility model is improved;
8. by arranging the intelligent learning sub-server, diagnosis of common diseases and multiple diseases is recorded according to departments, disease diagnosis and differential diagnosis are carried out, and diagnosis accuracy and disease coverage of the disease diagnosis data server are continuously improved.
Drawings
Fig. 1 is a schematic structural diagram of an intelligent precise triage platform according to an embodiment of the present invention.
Detailed Description
The embodiments of the present invention will be further described with reference to the accompanying drawings.
Example (b):
as shown in fig. 1, the intelligent accurate triage platform comprises a server side and a triage terminal in signal connection with the server side through the internet, wherein the server side comprises a disease diagnosis data server and a registration distribution server. For example, the disease diagnosis data server includes a common disease diagnosis database, a differential diagnosis related database, and the like, and the present invention is not limited thereto. For example, the registration distribution server includes physician-specialized or skilled conditions, visit information, and office visits. The triage terminal comprises an object identification device, a disease data acquisition device, an operation platform and a processor. For example, the operation platform may be a key device, or may be a touch screen or a voice device, but the present invention is not limited thereto. The object recognition apparatus includes a personal information acquisition device and a card reading device. For example, the personal information collection device may be a face recognition device, or may be input through a keyboard or a touch screen. For example, the card reading device may read personal information of the patient through an identification card or a visit card of the patient, or the like. The disease data acquisition equipment comprises an image acquisition device, a voice acquisition and output device and a medical record card information identification device. For example, the image capture device captures medical record information by capturing past medical record pictures of the patient. For example, the voice collecting and outputting device can input medical record information by outputting inquiry voice and collecting reply voice of the patient. The processor is in signal connection with the object identification device, the disease data acquisition device, the operation platform and the server. For example, the processor includes integrated modules for image recognition, text recognition, voice recognition and conversion, foreign language translation, data storage, and the like. For example, the processor transmits data information collected by the disease data collection device and the object identification device to the registration distribution server to enable a referring physician to obtain medical record information for the patient. For example, the signal connection may be an electrical connection, a wireless communication connection, or a data transmission connection of the internet, but the utility model is not limited thereto.
The working principle of the utility model is as follows: for the patients who can not judge the department of the disease according to the own ability, the operation platform is used for inputting instructions and identifying or collecting personal information through the object identification equipment; the former medical record and the existing symptoms of the patient are recorded through an image acquisition device, a voice acquisition and output device and a medical record card information identification device in the disease data acquisition equipment; the personal information and the disease data of the patient are transmitted to the processor, the processor compares the disease data with the content in the disease diagnosis data server to judge the department of the disease of the patient, and the processor distributes the patient to related doctors according to the doctors in the registration distribution server and the professional field data thereof.
Compared with the prior art, the medical record management system has the advantages that the disease data of the patient is collected through the disease data collecting equipment, man-machine conversation is realized through the voice collecting and outputting device, the paper medical record is read through the image collecting device, the medical record card information identifying device is used for inputting the medical record, the processor is used for comparing and analyzing with the disease diagnosis data server at the server end, the disease diagnosis data server stores a large amount of disease diagnosis and differential diagnosis data, accordingly, departments to which the disease of the patient belongs are judged, and the processor is used for reading doctors and professional field data in the registration and distribution server to distribute the patient to related doctors.
In a further embodiment, the registration distribution server comprises a doctor registration data acquisition processor. The doctor registration data acquisition processor is arranged in the registration distribution server, so that the registration data of doctors are acquired, and the processor preferentially distributes the data to the doctors with a small number of registered people after reading the data, and the diagnosis efficiency is improved.
In another embodiment, the registration distribution server includes a diagnostic information entry device and a medical record storage data storage medium, and the medical record storage data storage medium is connected to the diagnostic information entry device and the disease data acquisition device, respectively. The medical record data storage medium is arranged in the registration distribution server, so that after relevant examination and diagnosis are carried out on a patient in the hospital, examination and diagnosis data can be acquired through the diagnosis information input device and are integrated with the previous medical record acquired by the disease data acquisition device and input into the medical record data storage medium together for subsequent inquiry. For example, the diagnostic information entry apparatus is a scanner, a character recognition device, an image recognition device, or the like.
In another embodiment, the triage terminal further comprises a payment device and a printing device which are both connected with the processor. Through setting up equipment and the printing apparatus of paying fees, effectively promote patient's efficiency of seeking medical advice. For example, the payment device may be a two-dimensional code scanning device, or may be a payment computer terminal, but the present invention is not limited thereto. For example, the printing device may be a pay and register slip printing device.
In another embodiment, the server further comprises a hospital map data storage medium, and the triage terminal further comprises a navigation processor connected with the hospital map data storage medium. By arranging the hospital map data storage medium and the navigation processor connected with the hospital map data storage medium, the patient can navigate through the navigation processor and accurately arrive at a registered department or doctor, and the medical efficiency of the patient is improved.
In another embodiment, the navigation processor is an AR navigation processor, and a docking port connected to the mobile terminal is disposed in the AR navigation processor. The navigation processor is set as the AR navigation processor and is provided with the butt joint port in signal connection with the mobile terminal, so that the mobile terminal of a patient can be synchronized, and the navigation of the path is more convenient. For example, the mobile terminal may be a mobile phone or an earphone, and may be in signal connection with the docking port of the AR navigation processor through bluetooth.
In another embodiment, a translation processor for translation is further provided, and the disease data acquisition device is in signal connection with the processor through the translation processor. By arranging the translation processor, the medical history of foreign languages and foreign language voice can be translated and then transmitted to the processor for processing, so that the functional comprehensiveness of the utility model is improved.
In further embodiments, the disease diagnostic data server comprises a smart learning sub-server. By arranging the intelligent learning sub-server, diagnosis of common diseases and multiple diseases is recorded according to departments, disease diagnosis and differential diagnosis are carried out, and diagnosis accuracy and disease coverage of the disease diagnosis data server are continuously improved. For example, the intelligent learning sub-server can also simulate a doctor inquiry procedure and transmit the inquiry procedure to the voice acquisition and output device, so that accurate inquiry of patients is realized and relevant disease symptoms and medical record information are acquired.
The software programs referred to in the present invention can be implemented by those skilled in the art according to the same principle of similar software, and this is not the innovation of the present invention.
The above-mentioned embodiments only express the specific embodiments of the present invention, and the description thereof is more specific and detailed, but not construed as limiting the scope of the present invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the inventive concept, which falls within the scope of the present invention.

Claims (8)

1. An intelligent accurate triage platform is characterized by comprising a server side and a triage terminal in signal connection with the server side through the Internet, wherein the server side comprises a disease diagnosis data server and a registration distribution server; the triage terminal comprises object identification equipment, disease data acquisition equipment, an operation platform and a processor, wherein the object identification equipment comprises a personal information acquisition device and a card reading device, the disease data acquisition equipment comprises an image acquisition device, a voice acquisition and output device and a medical record card information identification device, and the processor is in signal connection with the object identification equipment, the disease data acquisition equipment, the operation platform and a server side.
2. The intelligent precision triage platform of claim 1, wherein the registration distribution server comprises a doctor registration data acquisition processor.
3. The intelligent accurate triage platform according to claim 1, wherein the registration distribution server comprises a diagnosis information entry device and a medical record storage data storage medium, and the medical record storage data storage medium is connected with the diagnosis information entry device and the disease data acquisition device respectively.
4. The intelligent accurate triage platform according to claim 1, wherein the triage terminal further comprises a payment device and a printing device both connected with the processor.
5. The intelligent accurate triage platform according to claim 1, wherein the server further comprises a hospital map data storage medium, and the triage terminal further comprises a navigation processor connected with the hospital map data storage medium.
6. The intelligent precise triage platform according to claim 5, wherein the navigation processor is an AR navigation processor, and a docking port in signal connection with a mobile terminal is arranged in the AR navigation processor.
7. The intelligent accurate triage platform according to claim 1, further comprising a translation processor for translation, wherein the disease data acquisition device is in signal connection with the processor through the translation processor.
8. The intelligent precision triage platform of claim 1, wherein the disease diagnosis data server comprises an intelligent learning sub-server.
CN202121862957.9U 2021-08-10 2021-08-10 Intelligent accurate triage platform Active CN216083434U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121862957.9U CN216083434U (en) 2021-08-10 2021-08-10 Intelligent accurate triage platform

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121862957.9U CN216083434U (en) 2021-08-10 2021-08-10 Intelligent accurate triage platform

Publications (1)

Publication Number Publication Date
CN216083434U true CN216083434U (en) 2022-03-18

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Application Number Title Priority Date Filing Date
CN202121862957.9U Active CN216083434U (en) 2021-08-10 2021-08-10 Intelligent accurate triage platform

Country Status (1)

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CN (1) CN216083434U (en)

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