CN111128370A - Guide auxiliary system for seeing doctor of ophthalmologic patient - Google Patents

Guide auxiliary system for seeing doctor of ophthalmologic patient Download PDF

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CN111128370A
CN111128370A CN201911163362.1A CN201911163362A CN111128370A CN 111128370 A CN111128370 A CN 111128370A CN 201911163362 A CN201911163362 A CN 201911163362A CN 111128370 A CN111128370 A CN 111128370A
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patient
ophthalmic
module
electronic file
ophthalmologist
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路丽芬
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First Peoples Hospital of Changzhou
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First Peoples Hospital of Changzhou
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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
    • G16H50/00ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics
    • G16H50/20ICT specially adapted for medical diagnosis, medical simulation or medical data mining; ICT specially adapted for detecting, monitoring or modelling epidemics or pandemics for computer-aided diagnosis, e.g. based on medical expert systems
    • 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

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  • Health & Medical Sciences (AREA)
  • Medical Informatics (AREA)
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  • General Health & Medical Sciences (AREA)
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Abstract

The invention relates to the technical field of medical treatment, in particular to a guide auxiliary system for seeing a doctor of an ophthalmic patient. The invention can ensure that the patient can quickly and accurately make an appointment with the ophthalmologist who is skilled in treating the own ophthalmologist, thereby ensuring that the effect of treating the own ophthalmologist of the patient is better, being beneficial to the early recovery of the patient, particularly avoiding aggravating the state of illness of the patient, being convenient for the patient to quickly find the matched ophthalmologist, avoiding delaying the treatment of the patient, avoiding generating the serious result which can not be imagined, leading the patient to be capable of pertinently and automatically completing the matching and the appointment of the own ophthalmologist without consulting the working personnel of the medical guide table, avoiding the phenomenon that the patient has communication obstacle with the working personnel of the medical guide table, and further avoiding the problem that the patient mistakenly sees the doctor.

Description

Guide auxiliary system for seeing doctor of ophthalmologic patient
Technical Field
The invention relates to the technical field of medical treatment, in particular to a guide auxiliary system for seeing a doctor of an ophthalmic patient.
Background
The general term of ophthalmology is "ophthalmology specialty", which is the discipline for studying diseases occurring in the visual system, including the eyeball and its associated tissues. In ophthalmology, various ophthalmic diseases such as vitreous body, retinal diseases, ocular optics, glaucoma, optic neuropathy, cataract and the like are generally researched.
Common ophthalmic diseases are: central serous retinopathy, dry eye, sympathetic ophthalmia, nyctalopia, blindness, amblyopia, astigmatism, trachoma, cataract, diabetic retinopathy, conjunctivitis, presbyopia, achromatopsia, iridochromism, retinitis pigmentosa, central retinal artery occlusion, retinal detachment, myopia, hyperopia, pinprick, snow blindness, aragonima, glaucoma, muscae volitantes and the like.
General examination of the eye, including eye appendage and anterior segment examination. The eye appendage examination includes: examination of the eyelids, conjunctiva, lacrimal apparatus, eyeball position and orbit. Examination of eyeball forepart: including examination of the cornea, anterior segment of sclera, anterior chamber, iris, pupil, and lens.
The problems are often encountered when seeing a doctor in ophthalmology:
1) the doctor who specializes in treating the own ophthalmological disorder cannot be specially reserved according to the own ophthalmological disorder, so that the blindness of seeing a doctor is high, once the reserved ophthalmological doctor is not adept in treating the own ophthalmological disorder, the effect of treating the own ophthalmological disorder is not good, the rehabilitation of a patient is seriously influenced, and the condition of the patient can be aggravated more seriously;
2) the specific position of the sitting office where the reserved ophthalmologist is located cannot be accurately and quickly found, so that the treatment of the patient can be delayed, and serious results which are not supposed can be generated;
3) although hospitals all have medical guide tables, the difference of accents and the strong dialect accent cause communication obstacles between patients and staff of the medical guide tables, so that the symptoms stated by the patients do not accord with the guidance opinions given by the staff of the medical guide tables, and the patients may miss doctors.
To this end, a guiding assistance system for the treatment of an ophthalmic patient is proposed.
Disclosure of Invention
In view of the disadvantages of the prior art, the present invention is directed to a guiding assistance system for the treatment of an ophthalmic patient, which can ensure that a patient can quickly and accurately reserve an ophthalmologist who is skilled in treating the own ophthalmology illness, thereby ensuring better effect of treating the self ophthalmological diseases of the patient, being beneficial to the early rehabilitation of the patient, particularly avoiding aggravating the state of the patient, being convenient for the patient to quickly find a matched ophthalmologist, thereby avoiding delaying the treatment of the patient, avoiding the serious consequences which can not be imagined, leading the patient to pertinently and self-help finish the matching and the appointment of the disease and the ophthalmologist without consulting the staff of the medical guide table, avoiding the phenomenon of communication barrier between the patient and the staff of the medical guide table, thereby avoiding the problem that the patient mistakenly sees the doctor, and solving the problems in the background technology.
In order to achieve the purpose, the invention provides the following technical scheme:
a guide auxiliary system for seeing a doctor of an ophthalmic patient comprises a work center, a communication server, a storage server, a big data server and a printing module, wherein the work center is respectively connected with the communication server, the storage server, the big data server and the printing module;
the work center is used for providing a human-computer interaction platform for the patient before the patient sees a doctor, and the human-computer interaction platform can be intelligently matched with the ophthalmologist who accords with the self ophthalmologic disorder of the patient by operating the human-computer interaction platform, so that the patient can quickly and accurately make an appointment with the ophthalmologist who is skilled in treating the self ophthalmologic disorder;
the communication server is used for networking the work center;
the storage server is used for storing data generated in the working process of the working center and supporting a software program operated by the working center;
the big data server is used for storing an ophthalmologic disease species database and an ophthalmologist information database;
the printing module is used for printing the information of the ophthalmologist intelligently matched with the patient by the work center to provide a reservation certificate for the patient and guide the patient to quickly find the position of the sitting office where the matched ophthalmologist is located, so that the patient can quickly find the matched ophthalmologist conveniently.
Further, the work center comprises an identity registration module, an ophthalmologic patient disease input module, an ophthalmologic disease database, an intelligent processing module, a display module, a voice prompt module and a near field communication module;
the identity registration module is used for reading the identity information of the registered patient through an identity card, a visit card, a medical insurance card or face recognition;
the ophthalmic patient condition input module is used for a patient to input own ophthalmic condition;
the ophthalmic condition database is used to provide all ophthalmic condition data available;
the intelligent processing module is used for calling the ophthalmic disease data in the ophthalmic disease database as a basis and combining the ophthalmic disease intelligence input by a patient to match corresponding ophthalmic doctor data for the patient, and automatically generating an electronic file by the matched ophthalmic doctor data, wherein the electronic file records the detailed information of the matched ophthalmic doctor and the position information of a sitting office where the ophthalmic doctor is located;
the display module is used for displaying data of the ophthalmic diseases of the patient and displaying the information recorded on the electronic file;
the voice prompt module is used for reminding a patient to open Bluetooth of a portable mobile phone device to connect with the near field communication module, and simultaneously reminding the patient that the electronic file is generated and reminding the patient to select to print the electronic file or send the electronic file to the mobile phone device;
the near field communication module is used for establishing near field communication connection with the mobile phone device.
Further, the ophthalmologic patient disease input module comprises a camera scanning acquisition module, a manual input module and a manual selection module;
the camera scanning and collecting module is used for directly scanning and collecting medical record and disease data recorded on a test sheet of a patient;
the manual input module is used for the patient to input the data of the self ophthalmic diseases through a virtual keyboard or a mechanical keyboard;
the manual selection module is used for selecting the ophthalmic disease data which is consistent with the manual selection module according to the selection menu of the ophthalmic disease displayed on the human-computer interaction platform.
Further, the communication server comprises a remote server and a local server.
Further, the storage server comprises a local storage server and a cloud storage server.
Furthermore, an ophthalmologic disease species database and an ophthalmologic doctor information database are recorded in the big data server.
Further, the work center, the communication server, the storage server and the big data server all comprise security modules, and the security modules comprise software firewalls and hardware firewalls.
Further, the printing module includes a real printer and a virtual printer.
Furthermore, the real printer comprises a local printer and a network printer, and both the local printer and the network printer are used for printing the electronic file into a paper file.
Further, the virtual printer includes a pdf format virtual printer configured to generate an electronic file into a pdf format electronic file, a jpg format virtual printer configured to generate an electronic file into a jpg format electronic file, a png format virtual printer configured to generate an electronic file into a png format electronic file, and a bmp format virtual printer configured to generate an electronic file into a bmp format electronic file.
In summary, the invention mainly has the following beneficial effects:
1. according to the invention, the working center is used for providing a human-computer interaction platform for the patient before the patient sees a doctor, the human-computer interaction platform can be intelligently matched with the ophthalmologist who accords with the self-eye disease of the patient by operating the human-computer interaction platform, and the patient can be ensured to quickly and accurately reserve the ophthalmologist who is skilled in treating the self-eye disease, so that the effect of treating the self-eye disease of the patient is better, the early recovery of the patient is facilitated, and more importantly, the condition of the patient can be prevented from being aggravated;
2. according to the invention, the printing module is used for printing the information of the ophthalmologist intelligently matched with the patient by the work center to provide the appointment voucher for the patient and guiding the patient to quickly find the position of the sitting office where the matched ophthalmologist is located, so that the patient can conveniently and quickly find the matched ophthalmologist, the treatment of the patient is prevented from being delayed, and the serious result which is beyond the assumption is avoided;
3. according to the invention, the patient can pertinently and self-help complete matching and appointment between the disease and the ophthalmologist without consulting the staff of the medical guide table, and the phenomenon of communication obstacle between the patient and the staff of the medical guide table can be avoided, so that the problem that the patient mistakenly sees the doctor is avoided.
4. The hospital medical guide table has high working efficiency, runs safely and stably under the protection action of the safety module, not only can effectively reduce the working strength of workers of the hospital medical guide table, but also can effectively improve the patient seeing efficiency and improve the treatment effect of the patient.
Drawings
FIG. 1 is a system diagram of one embodiment of a guidance assistance system for an ophthalmic patient visit;
fig. 2 is a schematic structural diagram of a security module according to an embodiment.
Detailed Description
The present invention is described in further detail below with reference to FIGS. 1-2.
Examples
A guidance assistance system for seeing a doctor of an ophthalmic patient, as shown in fig. 1, comprises a work center, a communication server, a storage server, a big data server and a printing module, wherein the work center is respectively connected with the communication server, the storage server, the big data server and the printing module;
the work center is used for providing a human-computer interaction platform for the patient before the patient sees a doctor, and the human-computer interaction platform can be intelligently matched with the ophthalmologist who accords with the self ophthalmologic disorder of the patient by operating the human-computer interaction platform, so that the patient can quickly and accurately make an appointment with the ophthalmologist who is skilled in treating the self ophthalmologic disorder;
the communication server is used for networking the work center;
the storage server is used for storing data generated in the working process of the working center and supporting a software program operated by the working center;
the big data server is used for storing an ophthalmologic disease species database and an ophthalmologist information database;
the printing module is used for printing the information of the ophthalmologist intelligently matched with the patient by the work center to provide a reservation certificate for the patient and guide the patient to quickly find the position of the sitting office where the matched ophthalmologist is located, so that the patient can quickly find the matched ophthalmologist conveniently.
By adopting the technical scheme, the working center is used for providing a human-computer interaction platform for the patient before the patient visits, the human-computer interaction platform can be intelligently matched with an ophthalmologist who accords with the self-eye disease of the patient by operating the human-computer interaction platform, and the patient can be ensured to quickly and accurately reserve the ophthalmologist who is good at treating the self-eye disease of the patient, so that the effect of treating the self-eye disease of the patient is better, the early recovery of the patient is facilitated, and more importantly, the condition of the patient can be prevented from being aggravated; the printing module is used for printing the information of the ophthalmologist intelligently matched with the patient by the work center to provide an appointment voucher for the patient and guide the patient to quickly find the position of a sitting office where the matched ophthalmologist is located, so that the patient can conveniently and quickly find the matched ophthalmologist, treatment delay of the patient is avoided, and serious consequences which are not imagined are avoided.
Preferably, as shown in fig. 1, the work center comprises an identity registration module, an ophthalmic patient disease input module, an ophthalmic disease database, an intelligent processing module, a display module, a voice prompt module and a near field communication module;
the identity registration module is used for reading the identity information of the registered patient through an identity card, a visit card, a medical insurance card or face recognition;
the ophthalmic patient condition input module is used for a patient to input own ophthalmic condition;
the ophthalmic condition database is used to provide all ophthalmic condition data available;
the intelligent processing module is used for calling the ophthalmic disease data in the ophthalmic disease database as a basis and combining the ophthalmic disease intelligence input by a patient to match corresponding ophthalmic doctor data for the patient, and automatically generating an electronic file by the matched ophthalmic doctor data, wherein the electronic file records the detailed information of the matched ophthalmic doctor and the position information of a sitting office where the ophthalmic doctor is located;
the display module is used for displaying data of the ophthalmic diseases of the patient and displaying the information recorded on the electronic file;
the voice prompt module is used for reminding a patient to open Bluetooth of a portable mobile phone device to connect with the near field communication module, and simultaneously reminding the patient that the electronic file is generated and reminding the patient to select to print the electronic file or send the electronic file to the mobile phone device;
the near field communication module is used for establishing near field communication connection with the mobile phone device.
By adopting the technical scheme, the system can read the identity information of the registered and confirmed patient through the identity card, the treatment card, the medical insurance card or the face recognition, and simultaneously upload the identity information of the registered and confirmed patient to the storage server for storage, thereby facilitating later-stage reference;
the intelligent processing module is used for calling the ophthalmic disease data in the ophthalmic disease database as a basis, combining with the ophthalmic disease intelligence input by the patient to match corresponding ophthalmic doctor data for the patient, automatically generating an electronic file by the matched ophthalmic doctor data, and recording the detailed information of the matched ophthalmic doctor and the position information of a sitting office where the ophthalmic doctor is located on the electronic file, so that the patient can quickly and accurately reserve doctors who are skilled in treating the ophthalmic disease of the patient and can quickly find the reserved doctors;
the voice prompt module is used for reminding a patient to open Bluetooth of the mobile phone device carried with the patient to be connected with the near field communication module, and meanwhile, is used for reminding the patient that an electronic file is generated and reminding the patient to select to print the electronic file or send the electronic file to the mobile phone device.
Preferably, as shown in fig. 1, the ophthalmic patient condition input module comprises a camera scanning acquisition module, a manual input module, and a manual selection module;
the camera scanning and collecting module is used for directly scanning and collecting medical record and disease data recorded on a test sheet of a patient;
the manual input module is used for the patient to input the data of the self ophthalmic diseases through a virtual keyboard or a mechanical keyboard;
the manual selection module is used for selecting the ophthalmic disease data which is consistent with the manual selection module according to the selection menu of the ophthalmic disease displayed on the human-computer interaction platform.
By adopting the technical scheme, the system has complete means for acquiring the symptoms of the patient, and the patient can conveniently and quickly input the self ophthalmic symptoms.
Preferably, as shown in fig. 1, the communication server includes a remote server and a local server.
By adopting the technical scheme, the remote server enables the system to carry out remote communication, and the local server enables the system to carry out area network communication, so that the system forms remote and local seamless communication connection, and the system has better applicability.
Preferably, as shown in fig. 1, the storage server includes a local storage server and a cloud storage server.
By adopting the technical scheme, under the cooperative work of the local storage server and the cloud storage server, data generated in the working process of the system cannot be lost.
Preferably, as shown in fig. 1, the ophthalmic disease species database and the ophthalmologist information database are entered into the big data server.
By adopting the technical scheme, the ophthalmic disease database and the ophthalmic doctor information database are used by the intelligent processing module, so that matched doctors capable of treating the diseases of patients can be accurately screened out conveniently through intelligent comparison and screening.
Preferably, as shown in fig. 1 and 2, the work center, the communication server, the storage server, and the big data server each include a security module, and the security module includes a software firewall and a hardware firewall.
By adopting the technical scheme, under the cooperative work of the software firewall and the hardware firewall, the system is safe and stable in operation and not easy to be attacked by malicious networks, and all data in the system is effectively protected.
Preferably, as shown in fig. 1, the printing module includes a real printer and a virtual printer.
By adopting the technical scheme, the real printer and the virtual printer are matched to work, more selection spaces can be provided for patients, and the patients can select paper files or electronic files according to the needs of the patients.
Preferably, as shown in fig. 1, the real printer includes a local printer and a network printer, both of which are used to print an electronic file into a paper file.
By adopting the technical scheme, the local printer and the network printer work cooperatively, the system can be guaranteed to be capable of printing the electronic file into the paper file at any time to the maximum extent, and even if one of the local printer and the network printer is damaged, the printing module of the system can also work normally.
Preferably, as shown in fig. 1, the virtual printers include a pdf format virtual printer for generating an electronic file into a pdf format electronic file, a jpg format virtual printer for generating an electronic file into a jpg format electronic file, a png format virtual printer for generating an electronic file into a png format electronic file, and a bmp format virtual printer for generating an electronic file into a bmp format electronic file.
By adopting the technical scheme, the virtual printer can print out electronic files in pdf format, jpg format, png format and bmp format, so that the mobile phone device used by a patient can be ensured to smoothly open the generated electronic files.
In summary, the guidance assistance system for the treatment of the ophthalmologic patient has the advantages that the working center is used for providing the human-computer interaction platform for the patient before treatment, the human-computer interaction platform can be intelligently matched with the ophthalmologic doctor who accords with the ophthalmologic disease of the patient by operating the human-computer interaction platform, and the patient can be ensured to quickly and accurately reserve the ophthalmologic doctor who is skilled in treating the ophthalmologic disease of the patient, so that the effect of treating the ophthalmologic disease of the patient is better, the early rehabilitation of the patient is facilitated, and more importantly, the condition of the patient can be prevented from being aggravated;
the printing module is used for printing the information of the ophthalmologist intelligently matched with the patient by the work center to provide an appointment voucher for the patient and guiding the patient to quickly find the position of a sitting office where the matched ophthalmologist is located, so that the patient can conveniently and quickly find the matched ophthalmologist, the treatment of the patient is prevented from being delayed, and the serious result which is beyond the assumption is avoided;
the patient can pertinently and self-help complete matching and reservation of self diseases and an ophthalmologist without consulting the staff of the medical guide table, and the phenomenon that the patient and the staff of the medical guide table are in communication obstacle can be avoided, so that the problem that the patient mistakenly sees the doctor is avoided.
Its work is high-efficient, under safety module's safeguard action, moves safety and stability, not only can effectively reduce hospital and lead the working strength of the staff of doctor's platform, can also effectively improve patient's efficiency of seeing a doctor and promote patient's treatment.
The parts not involved in the present invention are the same as or can be implemented by the prior art. The present embodiment is only for explaining the present invention, and it is not limited to the present invention, and those skilled in the art can make modifications of the present embodiment without inventive contribution as needed after reading the present specification, but all of them are protected by patent law within the scope of the claims of the present invention.

Claims (10)

1. A guidance assistance system for an ophthalmic patient visit, comprising: the system comprises a work center, a communication server, a storage server, a big data server and a printing module, wherein the work center is respectively connected with the communication server, the storage server, the big data server and the printing module;
the work center is used for providing a human-computer interaction platform for the patient before the patient sees a doctor, and the human-computer interaction platform can be intelligently matched with the ophthalmologist who accords with the self ophthalmologic disorder of the patient by operating the human-computer interaction platform, so that the patient can quickly and accurately make an appointment with the ophthalmologist who is skilled in treating the self ophthalmologic disorder;
the communication server is used for networking the work center;
the storage server is used for storing data generated in the working process of the working center and supporting a software program operated by the working center;
the big data server is used for storing an ophthalmologic disease species database and an ophthalmologist information database;
the printing module is used for printing the information of the ophthalmologist intelligently matched with the patient by the work center to provide a reservation certificate for the patient and guide the patient to quickly find the position of the sitting office where the matched ophthalmologist is located, so that the patient can quickly find the matched ophthalmologist conveniently.
2. A guidance assistance system for an ophthalmic patient visit according to claim 1, characterized in that: the work center comprises an identity registration module, an ophthalmologic patient disease input module, an ophthalmologic disease database, an intelligent processing module, a display module, a voice prompt module and a near field communication module;
the identity registration module is used for reading the identity information of the registered patient through an identity card, a visit card, a medical insurance card or face recognition;
the ophthalmic patient condition input module is used for a patient to input own ophthalmic condition;
the ophthalmic condition database is used to provide all ophthalmic condition data available;
the intelligent processing module is used for calling the ophthalmic disease data in the ophthalmic disease database as a basis and combining the ophthalmic disease intelligence input by a patient to match corresponding ophthalmic doctor data for the patient, and automatically generating an electronic file by the matched ophthalmic doctor data, wherein the electronic file records the detailed information of the matched ophthalmic doctor and the position information of a sitting office where the ophthalmic doctor is located;
the display module is used for displaying data of the ophthalmic diseases of the patient and displaying the information recorded on the electronic file;
the voice prompt module is used for reminding a patient to open Bluetooth of a portable mobile phone device to connect with the near field communication module, and simultaneously reminding the patient that the electronic file is generated and reminding the patient to select to print the electronic file or send the electronic file to the mobile phone device;
the near field communication module is used for establishing near field communication connection with the mobile phone device.
3. A guidance assistance system for an ophthalmic patient visit according to claim 2, characterized in that: the ophthalmologic patient disease input module comprises a camera scanning acquisition module, a manual input module and a manual selection module;
the camera scanning and collecting module is used for directly scanning and collecting medical record and disease data recorded on a test sheet of a patient;
the manual input module is used for the patient to input the data of the self ophthalmic diseases through a virtual keyboard or a mechanical keyboard;
the manual selection module is used for selecting the ophthalmic disease data which is consistent with the manual selection module according to the selection menu of the ophthalmic disease displayed on the human-computer interaction platform.
4. A guidance assistance system for an ophthalmic patient visit according to claim 1, characterized in that: the communication server includes a remote server and a local server.
5. A guidance assistance system for an ophthalmic patient visit according to claim 1, characterized in that: the storage server comprises a local storage server and a cloud storage server.
6. A guidance assistance system for an ophthalmic patient visit according to claim 1, characterized in that: an ophthalmologic disease species database and an ophthalmologic doctor information database are recorded in the big data server.
7. A guidance assistance system for an ophthalmic patient visit according to claim 6, characterized in that: the work center, the communication server, the storage server and the big data server all comprise safety modules, and the safety modules comprise software firewalls and hardware firewalls.
8. A guidance assistance system for an ophthalmic patient visit according to claim 1, characterized in that: the print module includes a real printer and a virtual printer.
9. A guidance assistance system for an ophthalmic patient visit according to claim 8, characterized in that: the real printer comprises a local printer and a network printer, and the local printer and the network printer are used for printing the electronic file into a paper file.
10. A guidance assistance system for an ophthalmic patient visit according to claim 8, characterized in that: the virtual printer includes a pdf format virtual printer configured to generate an electronic file into a pdf format electronic file, a jpg format virtual printer configured to generate an electronic file into an electronic file in a jpg format, a png format virtual printer configured to generate an electronic file into an electronic file in a jpg format, and a bmp format virtual printer configured to generate an electronic file into an electronic file in a png format.
CN201911163362.1A 2019-11-25 2019-11-25 Guide auxiliary system for seeing doctor of ophthalmologic patient Pending CN111128370A (en)

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Citations (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103942463A (en) * 2014-05-15 2014-07-23 成都睿感科技有限公司 Medical guide system based on patient physical symptoms

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103942463A (en) * 2014-05-15 2014-07-23 成都睿感科技有限公司 Medical guide system based on patient physical symptoms
CN104537275A (en) * 2014-05-15 2015-04-22 成都睿感科技有限公司 Medical guiding system based on body disease of patient

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