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WO2017012179A1 - O2o模式下的电子诊疗单生成方法和网络医院平台 - Google Patents

O2o模式下的电子诊疗单生成方法和网络医院平台 Download PDF

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Publication number
WO2017012179A1
WO2017012179A1 PCT/CN2015/088561 CN2015088561W WO2017012179A1 WO 2017012179 A1 WO2017012179 A1 WO 2017012179A1 CN 2015088561 W CN2015088561 W CN 2015088561W WO 2017012179 A1 WO2017012179 A1 WO 2017012179A1
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WIPO (PCT)
Prior art keywords
information
electronic medical
patient
physician
medical record
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/CN2015/088561
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English (en)
French (fr)
Inventor
张贯京
陈兴明
葛新科
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Shenzhen Qianhaiyilao Science And Technology Co Ltd
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Shenzhen Qianhaiyilao Science And Technology Co Ltd
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Publication of WO2017012179A1 publication Critical patent/WO2017012179A1/zh
Anticipated expiration legal-status Critical
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    • GPHYSICS
    • G06COMPUTING OR CALCULATING; COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F17/00Digital computing or data processing equipment or methods, specially adapted for specific functions
    • 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
    • G16H70/00ICT specially adapted for the handling or processing of medical references
    • G16H70/20ICT specially adapted for the handling or processing of medical references relating to practices or guidelines

Definitions

  • the invention relates to the field of life health technology, in particular to an electronic medical treatment list generation method and a network hospital platform in an O2O mode.
  • the network hospital is a technology platform that integrates medical resources such as hospitals, doctors, medicines, and inspection institutions to provide medical services for patients.
  • the prior art does not solve the electronic medical treatment forms generated in the medical service process based on network hospitals.
  • the problem of low credibility cannot guarantee the legitimacy and authority of electronic medical treatment orders, thus affecting the service efficiency and service quality of medical services based on network hospitals.
  • the main object of the present invention is to provide an electronic medical treatment list generation method and a network hospital platform in an O2O mode, aiming at solving the technical problem of low reliability of an electronic medical treatment form generated in a medical service process based on a network hospital.
  • the present invention provides a method for generating an electronic medical treatment form in an O2O mode.
  • the method for generating an electronic diagnosis form in the O2O mode includes:
  • S10 Acquire condition information of the patient to generate medical diagnosis information of the physician, where the medical condition information includes electronic medical record and symptom information;
  • S20 Obtaining the medical treatment information of the physician, the medical treatment information including at least one of prescription information, examination information, and referral information;
  • S30 digitally sign the medical treatment information according to a doctor's digital certificate to generate an electronic medical treatment form.
  • the method for generating an electronic medical treatment form in the O2O mode further comprises:
  • S40 Generate a digital certificate of the physician according to the name of the doctor and the doctor's certificate number, and store it in the physician certification database.
  • the method for generating an electronic medical treatment form in the O2O mode further comprises:
  • S50 Obtain a digital certificate of the physician, and authenticate the identity of the physician according to the digital certificate;
  • S51 determining whether the digital certificate is stored in the physician authentication database; if yes, executing S10; otherwise, executing S52;
  • the step S10 includes:
  • S101 Matching the electronic medical record of the patient from the electronic medical record database according to the patient's medical information
  • S102 Obtain symptom information of the patient by using at least one of text, voice, and video;
  • S103 Send the electronic medical record and the symptom information to generate medical information of the physician.
  • the method for generating an electronic medical treatment form in the O2O mode further comprises:
  • S60 Update the electronic medical record of the patient according to the electronic medical treatment list.
  • the present invention also provides a network hospital platform.
  • the network hospital platform includes:
  • condition information obtaining module configured to acquire condition information of the patient to generate medical diagnosis information of the physician, wherein the condition information includes electronic medical record and symptom information;
  • a medical treatment information obtaining module configured to acquire medical diagnosis information of the physician, the medical treatment information including at least one of prescription information, examination information, and referral information;
  • the electronic medical record generating module is configured to digitally sign the medical treatment information according to the digital certificate of the physician to generate an electronic medical treatment form.
  • the network hospital platform further includes:
  • the digital certificate generating module is configured to generate a digital certificate of the physician according to the name of the doctor and the medical certificate number of the medical practitioner, and store the digital certificate in the physician authentication database.
  • the network hospital platform further includes:
  • a digital certificate verification module configured to obtain a digital certificate of the physician, and authenticate the identity of the physician according to the digital certificate
  • the digital certificate processing module is configured to: when the digital certificate exists in the physician authentication database, acquire the patient's condition information for the physician to form the medical treatment information; otherwise, output the prompt information of the authentication failure, and end.
  • condition information obtaining module comprises:
  • An electronic medical record acquisition sub-module for matching an electronic medical record of the patient from the electronic medical record database according to the patient's medical information
  • a symptom information obtaining submodule configured to acquire symptom information of the patient by using at least one of text, voice, and video;
  • the condition information sending submodule is configured to send the electronic medical record and the symptom information to generate medical information of the physician.
  • the network hospital platform further includes:
  • the electronic medical record update module is configured to update the electronic medical record of the patient according to the electronic medical treatment list.
  • the electronic medical record generating method and the network hospital platform in the O2O mode of the present invention can bind the digital certificate and the medical information formed by the corresponding physician to form an electronic medical treatment form, and generate the electronic medical treatment form.
  • Digitally sign. Therefore, the present invention can uniquely determine the identity and level of the physician in the network hospital-based medical service process, and proves the legitimacy and authority of the electronic medical treatment list.
  • Other institutions can trace back to the corresponding after receiving the electronic medical treatment list. Physicians, and rest assured that the next step of treatment or adjuvant treatment, in order to improve the credibility of online hospital-based medical services, while improving service quality and service efficiency.
  • FIG. 1 is an application environment diagram of a method for generating an electronic medical treatment form in the O2O mode according to the present invention
  • FIG. 2 is a flow chart of a first embodiment of a method for generating an electronic medical treatment form in an O2O mode according to the present invention
  • FIG. 3 is a flow chart of a second embodiment of a method for generating an electronic medical treatment form in an O2O mode according to the present invention
  • FIG. 4 is a flow chart of a third embodiment of a method for generating an electronic medical treatment form in an O2O mode according to the present invention.
  • FIG. 5 is a refinement sub-flow chart of step S10 in Figure 1 of the present invention.
  • FIG. 6 is a flow chart of a fourth embodiment of a method for generating an electronic medical treatment form in an O2O mode according to the present invention.
  • FIG. 7 is a functional block diagram of a first embodiment of a network hospital platform according to the present invention.
  • FIG. 8 is a functional block diagram of a second embodiment of the network hospital platform of the present invention.
  • FIG. 9 is a functional block diagram of a third embodiment of the network hospital platform of the present invention.
  • FIG. 11 is a functional block diagram of a fourth embodiment of the network hospital platform of the present invention.
  • the invention provides a method for generating an electronic medical treatment form in an O2O mode.
  • FIG. 1 is an application environment diagram of a method for generating an electronic medical treatment form in the O2O mode according to the present invention.
  • one or more of the doctor terminal 02 and the patient terminal 03 are connected to the server 01 for running the network hospital platform through the network, and both the doctor terminal 02 and the patient terminal 03 can access the server 01 through the network. Both the doctor terminal 02 and the patient terminal 03 can perform information interaction with the network hospital platform through the application software running on the terminal device, or log in to the network hospital platform through the browser, and directly perform information interaction in the network hospital platform.
  • the doctor terminal 02 and the patient terminal 03 are a personal computer, a notebook computer, a PDA device, a mobile phone or other computing communication device. The number of the doctor terminal 02 and the patient terminal 03 is not limited.
  • FIG. 2 is a flowchart of a first embodiment of a method for generating an electronic medical treatment form in an O2O mode according to the present invention.
  • the method for generating an electronic medical treatment form in the O2O mode includes:
  • S10 Acquire condition information of the patient to generate medical diagnosis information of the doctor, where the medical condition information includes electronic medical record and symptom information;
  • the network hospital platform can obtain the patient's condition information by reading the electronic health record of the corresponding patient stored in the server 01, and can also collect the patient's condition information from the patient terminal 03 through the network.
  • the condition information includes electronic medical record and condition information, the electronic medical record including basic information of the patient and a personal medical history, the condition information including current vital information of the patient and other pain information.
  • the network hospital platform obtains the patient's condition information and sends it to the doctor terminal, and the doctor terminal generates the doctor's medical treatment information and sends it to the network hospital platform.
  • S20 Obtaining the medical treatment information of the physician, the medical treatment information including at least one of prescription information, examination information, and referral information;
  • the network hospital platform acquires medical diagnosis information of the physician from the doctor terminal, and the medical treatment information includes at least one of prescription information, examination information, and referral information that the physician issues according to the patient's condition.
  • the prescription information includes information such as a dose, a treatment course, and the like of a medicine, an injection, a physiotherapy, and the like generated by the doctor terminal 02;
  • the inspection information includes inspection information of a certain part of the body generated by the doctor terminal 02 for the condition information, and attention
  • the referral information includes the higher-level referral, the same-level referral, and the lower-level referral information or the department referral information generated by the doctor terminal 02 for the condition information, and the situation is mainly caused by the patient not knowing about the patient's condition and is registered. Inaccurate conditions and referrals due to deterioration or relief of the condition.
  • S30 digitally sign the medical treatment information according to a doctor's digital certificate to generate an electronic medical treatment form.
  • the network hospital platform obtains the medical treatment information generated by the doctor terminal 02 according to the patient's condition, and digitally signs the medical treatment information according to the doctor's digital certificate to generate an electronic medical treatment form. Since the electronic medical treatment list should be distributed as a doctor's prescription on the network hospital platform for the lower-level medical institutions to carry out medicine dispensing, physical examination and referral, it must be credible.
  • the medical diagnosis information is digitally signed by the doctor's digital certificate, and the electronic medical treatment form is formed.
  • the digital certificate records the name of the doctor, the doctor qualification certificate number, and the medical institution registered by the doctor, and can uniquely determine the identity and level of the doctor.
  • Binding the digital certificate with the medical information formed by the corresponding physician and forming an electronic medical treatment form proves the legitimacy and authority of the electronic medical treatment form, and other institutions can trace back to the corresponding physician after receiving the electronic medical treatment form, and Reliable use of the next step of treatment or adjuvant therapy to improve the credibility of medical services while improving service quality and efficiency.
  • FIG. 3 is a flowchart of a second embodiment of a method for generating an electronic medical treatment form in an O2O mode according to the present invention.
  • the method for generating an electronic medical record in the O2O mode further includes:
  • S40 Generate a digital certificate of the physician according to the name of the doctor and the doctor's certificate number, and store it in the physician certification database.
  • the network hospital platform first establishes a physician authentication database, which is stored in the server 01, and stores the digital certificate of the doctor registered in the network hospital platform.
  • the digital certificate is generated according to the doctor's name and the medical practitioner certificate number, and may also be generated by other information capable of uniquely determining the identity of the physician.
  • the digital certificate determines that the corresponding physician is qualified to issue prescription information, examination information, and referral information.
  • the digital certificate is generated by using an encryption algorithm in the prior art (for example, MD5, RSA, DES and other encryption algorithms), in order to prevent illegal criminals from practicing digital certificates on the network hospital platform.
  • an encryption algorithm for example, MD5, RSA, DES and other encryption algorithms
  • FIG. 4 is a flowchart of a third embodiment of a method for generating an electronic medical treatment form in an O2O mode according to the present invention.
  • the method for generating an electronic medical record in the O2O mode further includes:
  • S50 Obtain a digital certificate of the physician, and authenticate the identity of the physician according to the digital certificate;
  • the embodiment of the present invention adds a step S50 of the digital certificate identity authentication to the physician.
  • the step S50 is performed before the step S10, before obtaining the patient's condition information, obtaining the doctor's digital certificate, and then determining whether the digital certificate exists in the physician authentication database, if present in the physician authentication database, the network hospital
  • the platform begins to perform step S10, which allows the patient's condition information to be obtained from the database or patient terminal.
  • the step S50 is performed before the step S30, that is, before the electronic medical record is generated, the digital certificate of the doctor is first authenticated to ensure that it already exists in the physician authentication database, and then step S30 is performed.
  • the embodiment of the invention ensures the legality and authority of the electronic medical treatment list by authenticating the digital certificate of the doctor, so as to avoid unnecessary loss and trouble to the lower medical institution or the patient.
  • FIG. 5 is a detailed sub-flow chart of step S10 in FIG. 2 of the present invention.
  • the step S10 includes:
  • S101 Matching the electronic medical record of the patient from the electronic medical record database according to the patient's medical information
  • S102 Obtain symptom information of the patient by using at least one of text, voice, and video;
  • S103 Send the electronic medical record and the symptom information to generate medical information of the physician.
  • an embodiment of the present invention provides a preferred embodiment for acquiring patient condition information.
  • the network hospital platform matches the electronic medical record of the patient from the electronic medical record database according to the patient's medical information, and sends the electronic medical record to the doctor terminal 02.
  • the medical treatment information includes at least one of a patient's ID number, medical insurance number, or medical appointment number.
  • the electronic medical record database pre-stores the basic information of the patient and the personal medical history, and the method of obtaining the electronic medical record through the medical information can save the time of the medical treatment, and the doctor can know the patient's past condition without re-inquiring the patient's condition.
  • the patient terminal and the doctor terminal 02 simultaneously log into the network hospital platform to establish instant communication, and the doctor terminal 02 performs information interaction with the patient terminal by using at least one of text, voice and video in the instant communication, thereby collecting the current symptom of the patient. information.
  • the doctor terminal 02 generates the doctor's medical treatment information after acquiring the patient's electronic medical record and symptom information.
  • the patient does not need to face-to-face communication with the doctor to realize the diagnosis and treatment process when the network is connected anytime and anywhere.
  • the help provided by the doctor terminal 02 can be obtained anytime and anywhere, and the quality and efficiency of the medical service are improved.
  • FIG. 6 is a flowchart of a fourth embodiment of a method for generating an electronic medical treatment form in an O2O mode according to the present invention.
  • the method for generating an electronic medical record in the O2O mode further includes:
  • S60 Update the electronic medical record of the patient according to the electronic medical treatment list.
  • the network hospital platform updates the electronic medical record of the patient according to the electronic medical treatment list.
  • the specific process may be: the network hospital platform firstly matches the corresponding electronic medical record from the electronic medical record database according to the patient's medical consultation information, and then newly creates an electronic medical record page corresponding to the medical treatment process by the date, and the content in the electronic medical treatment list is The medical information and the corresponding physician information are updated in the electronic medical record page to complete the update of the patient's electronic medical record.
  • the electronic medical treatment form generated after each visit is updated in the electronic medical record, which can provide a basis for subsequent diagnosis and treatment, and improve the quality and efficiency of the medical service.
  • the present invention also provides a network hospital platform.
  • FIG. 7 is a functional block diagram of a first embodiment of a network hospital platform according to the present invention.
  • the network hospital platform provided by the present invention is a software system and runs in the server 01 of FIG.
  • the network hospital platform includes:
  • the condition information obtaining module 10 is configured to acquire condition information of the patient to generate medical diagnosis information of the physician, where the medical condition information includes electronic medical record and symptom information;
  • the condition information obtaining module 10 can obtain the patient's condition information by reading the electronic health record of the corresponding patient stored in the server 01, and can also collect the patient's condition information from the patient terminal 03 through the network.
  • the condition information includes electronic medical record and condition information, the electronic medical record including basic information of the patient and a personal medical history, the condition information including current vital information of the patient and other pain information.
  • the doctor terminal 02 automatically generates the doctor's medical treatment information according to the patient's condition information and sends it to the network hospital platform.
  • the medical treatment information obtaining module 20 is configured to acquire medical diagnosis information of the physician, and the medical treatment information includes at least one of prescription information, examination information, and referral information;
  • the medical treatment information acquisition module 20 acquires medical treatment information of the physician from the doctor terminal 02, and the medical treatment information includes at least one of prescription information, examination information, and referral information that the physician issues according to the patient's condition.
  • the prescription information includes information such as a dose, a treatment course, and the like of a medicine, an injection, a physiotherapy, and the like generated by the doctor terminal 02;
  • the inspection information includes inspection information of a certain part of the body generated by the doctor terminal 02 for the condition information, and attention
  • the referral information includes the higher-level referral, the same-level referral, and the lower-level referral information or the department referral information generated by the doctor terminal 02 for the condition information, and the situation is mainly caused by the patient not knowing about the patient's condition and is registered. Inaccurate conditions and referrals due to deterioration or relief of the condition.
  • the electronic medical record generating module 30 is configured to digitally sign the medical treatment information according to the digital certificate of the physician to generate an electronic medical treatment form.
  • the electronic medical record generating module 30 obtains the medical treatment information generated by the medical terminal 02 according to the patient's condition, and digitally signs the medical treatment information according to the doctor's digital certificate to generate an electronic medical treatment form. Since the electronic medical treatment list should be distributed as a doctor's prescription on the network hospital platform for the lower-level medical institutions to carry out medicine dispensing, physical examination and referral, it must be credible.
  • the medical diagnosis information is digitally signed by the doctor's digital certificate, and the electronic medical treatment form is formed.
  • the digital certificate records the name of the doctor, the doctor qualification certificate number, and the medical institution registered by the doctor, and can uniquely determine the identity and level of the doctor.
  • Binding the digital certificate with the medical information formed by the corresponding physician and forming an electronic medical treatment form proves the legitimacy and authority of the electronic medical treatment form, and other institutions can trace back to the corresponding physician after receiving the electronic medical treatment form, and Reliable use of the next step of treatment or adjuvant therapy to improve the credibility of medical services while improving service quality and efficiency.
  • FIG. 8 is a functional block diagram of a second embodiment of the network hospital platform of the present invention.
  • the network hospital platform further includes:
  • the digital certificate generating module 40 is configured to generate a digital certificate of the physician according to the name of the physician and the medical certificate number of the medical practitioner, and store the digital certificate in the physician authentication database.
  • the physician certification database is established by the digital certificate generation module 40, and the physician authentication database is stored in the server 01, and the digital certificate of the physician registered in the network hospital platform is stored.
  • the digital certificate is generated according to the doctor's name and the medical practitioner certificate number, and may also be generated by other information capable of uniquely determining the identity of the physician.
  • the digital certificate determines that the corresponding physician is qualified to issue prescription information, examination information, and referral information.
  • the digital certificate is generated by using an encryption algorithm in the prior art (for example, MD5, RSA, DES and other encryption algorithms), in order to prevent illegal criminals from practicing digital certificates on the network hospital platform. After the digital certificate is generated, it is distributed to the corresponding doctor terminal 02 by the network hospital platform, so that the corresponding doctor terminal 02 performs digital signature when generating the electronic medical treatment form, thereby ensuring the legality and authority of the electronic medical treatment form.
  • FIG. 9 is a functional block diagram of a third embodiment of the network hospital platform of the present invention.
  • the network hospital platform further includes:
  • the digital certificate verification module 50 is configured to obtain a digital certificate of the physician, and authenticate the identity of the physician according to the digital certificate;
  • the digital certificate processing module 60 is configured to: when the digital certificate exists in the physician authentication database, acquire the patient's condition information for the physician to form the medical treatment information; otherwise, output the prompt information of the authentication failure, and end.
  • the embodiment of the present invention adds a digital certificate verification module 50 for the digital certificate identity authentication of the physician.
  • the digital certificate verification module 50 obtains the digital certificate of the doctor before obtaining the patient's condition information, and then determines whether the digital certificate exists in the physician authentication database. If it exists in the physician authentication database, the disease information acquiring module 10 acquires the patient. The condition information, that is, the permitted medical information acquisition module 20, acquires the patient's condition information from a database or a patient terminal. Or the digital certificate verification module 50 first authenticates the digital certificate of the physician to ensure that it already exists in the physician authentication database, and then generates an electronic clinic list by the electronic clinic list generating module 30. If it does not exist in the physician certification database, it indicates that the doctor's digital certificate has not been registered in the physician authentication database or the digital certificate is an illegal digital certificate. At this time, the prompt information is output, prompting the physician to perform identity registration and authentication first.
  • the embodiment of the invention ensures the legality and authority of the electronic medical treatment list by authenticating the digital certificate of the doctor, so as to avoid unnecessary loss and trouble to the lower medical institution or the patient.
  • FIG. 9 is a sub-function block diagram of the condition information acquisition module of the present invention.
  • the disease information obtaining module 10 specifically includes:
  • the electronic medical record acquisition sub-module 101 is configured to match the electronic medical record of the patient from the electronic medical record database according to the patient's medical consultation information;
  • the symptom information obtaining sub-module 102 is configured to acquire symptom information of the patient by using at least one of text, voice, and video;
  • the condition information transmitting sub-module 103 is configured to send the electronic medical record and the symptom information to generate medical diagnosis information of the doctor.
  • an embodiment of the present invention provides a preferred embodiment for acquiring patient condition information.
  • the electronic medical record acquisition sub-module 101 matches the electronic medical record of the patient from the electronic medical record database according to the patient's medical consultation information, and transmits the electronic medical record to the doctor terminal 02.
  • the medical treatment information includes at least one of a patient's ID number, medical insurance number, or medical appointment number.
  • the electronic medical record database pre-stores the basic information of the patient and the personal medical history, and the method of obtaining the electronic medical record through the medical information can save the time of the medical treatment, and the doctor can know the patient's past condition without re-inquiring the patient's condition.
  • the patient terminal and the doctor terminal 02 simultaneously log into the network hospital platform to establish instant communication, and the doctor terminal 02 performs information interaction with the patient terminal by using at least one of text, voice and video in the instant communication, thereby collecting the current symptom of the patient. information.
  • the doctor terminal 02 generates the doctor's medical treatment information after acquiring the patient's electronic medical record and symptom information.
  • the patient does not need to face-to-face communication with the doctor to realize the diagnosis and treatment process when the network is connected anytime and anywhere.
  • the help provided by the doctor terminal 02 can be obtained anytime and anywhere, and the quality and efficiency of the medical service are improved.
  • FIG. 11 is a functional block diagram of a fourth embodiment of a network hospital platform according to the present invention.
  • the network hospital platform further includes:
  • the electronic medical record update module 70 is configured to update the electronic medical record of the patient according to the electronic medical treatment list.
  • the electronic medical record updating module 70 updates the electronic medical record of the patient according to the electronic medical treatment list.
  • the specific process may be: the electronic medical record update module 70 firstly matches the corresponding electronic medical record from the electronic medical record database according to the patient's medical consultation information, and then newly creates an electronic medical record page corresponding to the current medical treatment process by using the date, and the electronic medical treatment list is The content, including the medical information and the corresponding physician information, is updated in the electronic medical record page to complete the update of the patient's electronic medical record.
  • the electronic medical treatment form generated after each visit is updated in the electronic medical record, which can provide a basis for subsequent diagnosis and treatment, and improve the quality and efficiency of the medical service.

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Abstract

本发明公开了一种O2O模式下的电子诊疗单生成方法。本发明通过获取患者的病情信息来生成医师的诊疗信息,获取所述医师的诊疗信息,并根据医师的数字证书对所述诊疗信息进行数字签名,生成电子诊疗单。本发明还公开了一种网络医院平台。本发明提供的O2O模式下的电子诊疗单生成方法和网络医院平台能够将数字证书与对应医师形成的诊疗信息绑定并形成电子诊疗单,并对生成的电子诊疗单进行数字签名,在基于网络医院的医疗服务过程中能够唯一确定医师的身份和级别,在提高医疗服务的可信度同时,提高服务质量和效率。

Description

O2O模式下的电子诊疗单生成方法和网络医院平台
技术领域
本发明涉及生命健康技术领域,尤其涉及一种O2O模式下的电子诊疗单生成方法和网络医院平台。
背景技术
在实体医院中,患者通常根据医师的诊疗单进行缴费、取药、做身体检查、复诊等,整个过程占用时间长,且过程麻烦,需要患者在不同的部门间来回切换,不方便患者就诊。网络医院是将医院、医生、药品、检查机构等医疗资源进行整合,为患者方便提供医疗服务的技术平台,但是,现有技术中没有解决基于网络医院的医疗服务过程中产生的电子诊疗单的可信度低的问题,无法保证电子诊疗单的合法性以及权威性,从而影响到基于网络医院的医疗服务的服务效率和服务质量。
发明内容
本发明的主要目的在于提供一种O2O模式下的电子诊疗单生成方法和网络医院平台,旨在解决基于网络医院的医疗服务过程中产生的电子诊疗单的可信度低下的技术问题。
为实现上述目的,本发明提供了一种O2O模式下的电子诊疗单生成方法。
所述O2O模式下的电子诊疗单生成方法包括:
S10:获取患者的病情信息来生成医师的诊疗信息,所述病情信息包括电子病历和症状信息;
S20:获取所述医师的诊疗信息,所述诊疗信息包括处方信息、检查信息和转诊信息中的至少一种;
S30:根据医师的数字证书对所述诊疗信息进行数字签名,生成电子诊疗单。
优选地,所述O2O模式下的电子诊疗单生成方法还包括:
S40:根据医师的姓名和执业医师证书编号生成医师的数字证书,并存储于医师认证数据库中。
优选地,所述O2O模式下的电子诊疗单生成方法还包括:
S50:获取医师的数字证书,并根据所述数字证书对医师的身份进行认证;
S51:判断所述数字证书存是否在于医师认证数据库中;若是,则执行S10;否则,执行S52;
S52:输出认证失败的提示信息,并结束。
优选地,所述步骤S10包括:
S101:根据患者的就诊信息从电子病历数据库中匹配患者的电子病历;
S102:通过文字、语音和视频中的至少一种方式获取患者的症状信息;
S103:发送所述电子病历和所述症状信息来生成医师的诊疗信息。
优选地,所述O2O模式下的电子诊疗单生成方法还包括:
S60:根据所述电子诊疗单更新患者的电子病历。
此外,本发明还提供了一种网络医院平台。
所述网络医院平台包括:
病情信息获取模块,用于获取患者的病情信息来生成医师的诊疗信息,所述病情信息包括电子病历和症状信息;
诊疗信息获取模块,用于获取所述医师的诊疗信息,所述诊疗信息包括处方信息、检查信息和转诊信息中的至少一种;
电子诊疗单生成模块,用于根据医师的数字证书对所述诊疗信息进行数字签名,生成电子诊疗单。
优选地,所述网络医院平台还包括:
数字证书生成模块,用于根据医师的姓名和执业医师证书编号生成医师的数字证书,并存储于医师认证数据库中。
优选地,所述网络医院平台还包括:
数字证书验证模块,用于获取医师的数字证书,并根据所述数字证书对医师的身份进行认证;
数字证书处理模块:用于当所述数字证书存在于医师认证数据库中时,获取患者的病情信息供医师形成诊疗信息;否则,输出认证失败的提示信息,并结束。
优选地,所述病情信息获取模块包括:
电子病历获取子模块,用于根据患者的就诊信息从电子病历数据库中匹配患者的电子病历;
症状信息获取子模块,用于通过文字、语音和视频中的至少一种方式获取患者的症状信息;
病情信息发送子模块,用于发送所述电子病历和所述症状信息来生成医师的诊疗信息。
优选地,所述网络医院平台还包括:
电子病历更新模块,用于根据所述电子诊疗单更新患者的电子病历。
相较与现有技术,本发明所述O2O模式下的电子诊疗单生成方法和网络医院平台能够将数字证书与对应医师形成的诊疗信息绑定并形成电子诊疗单,并对生成的电子诊疗单进行数字签名。因此本发明在基于网络医院的医疗服务过程中能够唯一确定医师的身份和级别,证明了该电子诊疗单的合法性以及权威性,其他机构在接收到该电子诊疗单后,能够追溯到对应的医师,且放心的采用下一步治疗或辅助治疗,从而在提高基于网络医院的医疗服务的可信度同时,提高服务质量和服务效率。
附图说明
图1为本发明所述O2O模式下的电子诊疗单生成方法的应用环境图;
图2为本发明O2O模式下的电子诊疗单生成方法第一实施例的流程图;
图3为本发明O2O模式下的电子诊疗单生成方法第二实施例的流程图;
图4为本发明O2O模式下的电子诊疗单生成方法第三实施例的流程图;
图5为本发明图1中步骤S10的细化子流程图;
图6为本发明O2O模式下的电子诊疗单生成方法第四实施例的流程图;
图7为本发明网络医院平台第一实施例的功能模块图;
图8为本发明网络医院平台第二实施例的功能模块图;
图9为本发明网络医院平台第三实施例的功能模块图;
图10为本发明病情信息获取模块的子功能模块图;
图11为本发明网络医院平台第四实施例的功能模块图。
本发明目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。
具体实施方式
应当理解,此处所描述的具体实施例仅仅用以解释本发明,并不用于限定本发明。
本发明提供了一种O2O模式下的电子诊疗单生成方法。
参照图1,图1为本发明所述O2O模式下的电子诊疗单生成方法的应用环境图。
在本实施例中,一个或多个医生终端02、患者终端03通过网路连接至用来运行网络医院平台的服务器01,医生终端02和患者终端03均可通过网络访问服务器01。所述医生终端02和患者终端03均可以通过运行于该终端设备的应用软件与网络医院平台进行信息交互,也可通过浏览器登录到网络医院平台中,在网络医院平台中直接进行信息交互。所述医生终端02和患者终端03为一种个人计算机、笔记本电脑、PDA设备、手机或者其它计算通讯设备。所述医生终端02和患者终端03的个数不做限定。
参照图2,图2为本发明O2O模式下的电子诊疗单生成方法第一实施例的流程图。
结合图1,在本发明实施例中,所述O2O模式下的电子诊疗单生成方法包括:
S10:获取患者的病情信息来生成医生的诊疗信息,所述病情信息包括电子病历和症状信息;
网络医院平台可以通过读取存储于服务器01中对应患者的电子健康档案,来获取患者病情信息,还可以通过网络从患者终端03采集患者的病情信息。所述病情信息包括电子病历和病症信息,所述电子病历包括患者的基本信息以及个人病史,所述病症信息包括患者当前的体征信息以及其他病痛信息。网络医院平台获取到患者的病情信息后发送至医生终端,医生终端生成医师的诊疗信息后发送至网络医院平台。
S20:获取所述医师的诊疗信息,所述诊疗信息包括处方信息、检查信息和转诊信息中的至少一种;
具体地,网络医院平台从医生终端获取医师的诊疗信息,所述诊疗信息包括医师根据患者的病情开具的处方信息、检查信息和转诊信息中的至少一种。所述处方信息包括医生终端02针对病情信息生成的药物、针剂、理疗等治疗方式的剂量、疗程等信息;所述检查信息包括医生终端02针对病情信息生成的身体某个部位的检查信息以及注意事项;所述转诊信息包括医生终端02针对病情信息生成的上级转诊、同级转诊以及下级转诊信息或者科室转诊信息,该种情况主要针对患者对于自身病情不了解的而导致挂号不准确的情况以及由于病情的恶化或缓解需要转诊的情况。
S30:根据医师的数字证书对所述诊疗信息进行数字签名,生成电子诊疗单。
网络医院平台获取医生终端02根据患者病情生成的诊疗信息后,根据医师的数字证书对所述诊疗信息进行数字签名,生成电子诊疗单。由于电子诊疗单要作为医生的处方在网络医院平台上流通,以供下级医疗机构进行配药送药、身体检查以及接受转诊,因此,必须具备可信度。本发明实施例通过医师的数字证书对诊疗信息进行数字签名后形成电子诊疗单,数字证书中记载了医师的姓名、医师资格证书编号以及医师注册的医疗机构,能够唯一确定医师的身份和级别,将数字证书与对应医师形成的诊疗信息绑定并形成电子诊疗单,证明了该电子诊疗单的合法性以及权威性,其他机构在接收到该电子诊疗单后,能够追溯到对应的医师,且放心的采用下一步治疗或辅助治疗,提高医疗服务可信度的同时,提高服务质量和效率。
参照图3,图3为本发明O2O模式下的电子诊疗单生成方法第二实施例的流程图。
结合图1,基于上述方法的第一实施例,在本实施例中,所述O2O模式下的电子诊疗单生成方法还包括:
S40:根据医师的姓名和执业医师证书编号生成医师的数字证书,并存储于医师认证数据库中。
优选地,在执行步骤S10之前,网络医院平台首先建立医师认证数据库,所述医师认证数据库中存储于服务器01中,存储了在该网络医院平台中注册的医师的数字证书。所述数字证书根据医生的姓名和执业医师证书编号生成,也可以由其他能够唯一确定医师身份的信息生成,该数字证书确定了对应的医师具备开具包括处方信息、检查信息以及转诊信息的资格,数字证书的生成方式采用现有技术中的加密算法(例如 MD5、RSA、DES等加密算法),以防不法分子假冒医师的数字证书在网络医院平台上虚假行医。数字证书生成后,由网络医院平台分发给对应的医生终端02,以供对应的医生终端02在生成电子诊疗单时进行数字签名,确保了电子诊疗单的合法性和权威性。
参照图4,图4为本发明O2O模式下的电子诊疗单生成方法第三实施例的流程图。
基于上述方法的第一实施例,在本实施例中,所述O2O模式下的电子诊疗单生成方法还包括:
S50:获取医师的数字证书,并根据所述数字证书对医师的身份进行认证;
S51:判断所述数字证书是否存在于医师认证数据库中;若是,则执行S10;否则,执行S52;
S52:输出认证失败的提示信息,并结束。
具体地,为了确保在生成电子诊疗单时数字证书的合法性,本发明实施例增加了对医师的数字证书身份认证的步骤S50。优先地,该步骤S50在步骤S10之前执行,在获取患者病情信息之前,先获取医生的数字证书,然后判断所述数字证书是否存在于医师认证数据库中,若存在于医师认证数据库中,网络医院平台才开始执行步骤S10,即准许从数据库或者患者终端获取患者的病情信息。或者该步骤S50在步骤S30之前执行,即在电子诊疗单生成之前,首先对医师的数字证书进行认证,确保其已经存在于医师认证数据库中,再执行步骤S30。若不存在于医师认证数据库中,说明该医生的数字证书还未登记于医师认证数据库中或者该数字证书为非法的数字证书,此时,则结束该方法的执行,或者输出提示信息,提示医师先进行身份登记和认证。
本发明实施例通过对医师的数字证书进行认证,确保了电子诊疗单的合法性和权威性,以免对下级医疗机构或者患者造成不必要的损失和麻烦。
参照图5,图5为本发明图2中步骤S10的细化子流程图。
结合图1,所述步骤S10包括:
S101:根据患者的就诊信息从电子病历数据库中匹配患者的电子病历;
S102:通过文字、语音和视频中的至少一种方式获取患者的症状信息;
S103:发送所述电子病历和所述症状信息来生成医师的诊疗信息。
具体地,本发明实施例提供了一种获取患者病情信息的较佳实施例。首先网络医院平台根据患者的就诊信息从电子病历数据库中匹配患者的电子病历,并发送所述电子病历至医生终端02。所述就诊信息包括患者的身份证号、医保号或者就诊号中的至少一种。电子病历数据库中预先存储了患者的基本信息以及个人病史,通过就诊信息获取电子病历的方式,能够节约就诊时间,医师无需重新询问患者情况即可获知患者的既往病情。此外,患者终端和医生终端02同时登陆网络医院平台,建立即时通讯,医生终端02采用即时通讯中的文字、语音和视频中的至少一种方式与患者终端进行信息交互,从而采集患者的当前症状信息。医生终端02在获取到患者的电子病历和症状信息后生成医师的诊疗信息。患者无需与医生面对面交流随时随地在网络连接的情况下即可实现诊疗过程,也可随时随地获得医生终端02提供的帮助,提高了医疗服务的质量和效率。
参照图6,图6为本发明O2O模式下的电子诊疗单生成方法第四实施例的流程图。
基于上述方法的第一实施例,在本实施例中,所述O2O模式下的电子诊疗单生成方法还包括:
S60:根据所述电子诊疗单更新患者的电子病历。
具体地,本发明实施例在生成电子诊疗单之后,即在步骤S30之后,网络医院平台根据所述电子诊疗单更新患者的电子病历。具体过程可以是:网络医院平台首先根据患者的就诊信息从电子病历数据库中匹配对应的电子病历,再以日期为单位新建本次诊疗过程对应的电子病历页,将所述电子诊疗单中的内容,包括诊疗信息以及对应的医师信息更新于该电子病历页中,以完成该患者电子病历的更新。
本发明实施例将每次就诊后生成的电子诊疗单更新于电子病历中,能够以为后续的诊疗提供依据,提高医疗服务的质量和效率。
此外,本发明还提供了一种网络医院平台。
参照图7,图7为本发明网络医院平台第一实施例的功能模块图。
结合图1,本发明提供的网络医院平台为软件系统,运行于图1的服务器01中。在本发明实施例中,所述网络医院平台包括:
病情信息获取模块10,用于获取患者的病情信息来生成医师的诊疗信息,所述病情信息包括电子病历和症状信息;
具体地,病情信息获取模块10可以通过读取存储于服务器01中对应患者的电子健康档案,来获取患者病情信息,还可以通过网络从患者终端03采集患者的病情信息。所述病情信息包括电子病历和病症信息,所述电子病历包括患者的基本信息以及个人病史,所述病症信息包括患者当前的体征信息以及其他病痛信息。所述病情信息获取模块10获取到患者的病情信息后发送至医生终端02后,医生终端02根据患者的病情信息自动生成医师的诊疗信息并将其发送至网络医院平台。
诊疗信息获取模块20,用于获取所述医师的诊疗信息,所述诊疗信息包括处方信息、检查信息和转诊信息中的至少一种;
具体地,诊疗信息获取模块20从医生终端02获取医师的诊疗信息,所述诊疗信息包括医师根据患者的病情开具的处方信息、检查信息和转诊信息中的至少一种。所述处方信息包括医生终端02针对病情信息生成的药物、针剂、理疗等治疗方式的剂量、疗程等信息;所述检查信息包括医生终端02针对病情信息生成的身体某个部位的检查信息以及注意事项;所述转诊信息包括医生终端02针对病情信息生成的上级转诊、同级转诊以及下级转诊信息或者科室转诊信息,该种情况主要针对患者对于自身病情不了解的而导致挂号不准确的情况以及由于病情的恶化或缓解需要转诊的情况。
电子诊疗单生成模块30,用于根据医师的数字证书对所述诊疗信息进行数字签名,生成电子诊疗单。
电子诊疗单生成模块30获取医生终端02根据患者病情生成的诊疗信息后,根据医师的数字证书对所述诊疗信息进行数字签名,生成电子诊疗单。由于电子诊疗单要作为医生的处方在网络医院平台上流通,以供下级医疗机构进行配药送药、身体检查以及接受转诊,因此,必须具备可信度。本发明实施例通过医师的数字证书对诊疗信息进行数字签名后形成电子诊疗单,数字证书中记载了医师的姓名、医师资格证书编号以及医师注册的医疗机构,能够唯一确定医师的身份和级别,将数字证书与对应医师形成的诊疗信息绑定并形成电子诊疗单,证明了该电子诊疗单的合法性以及权威性,其他机构在接收到该电子诊疗单后,能够追溯到对应的医师,且放心的采用下一步治疗或辅助治疗,提高医疗服务可信度的同时,提高服务质量和效率。
参照图8,图8为本发明网络医院平台第二实施例的功能模块图。
结合图1,基于上述网络医院平台第一实施例,在本实施例中,所述网络医院平台还包括:
数字证书生成模块40,用于根据医师的姓名和执业医师证书编号生成医师的数字证书,并存储于医师认证数据库中。
具体地,由数字证书生成模块40建立医师认证数据库,所述医师认证数据库中存储于服务器01中,存储了在该网络医院平台中注册的医师的数字证书。所述数字证书根据医生的姓名和执业医师证书编号生成,也可以由其他能够唯一确定医师身份的信息生成,该数字证书确定了对应的医师具备开具包括处方信息、检查信息以及转诊信息的资格,数字证书的生成方式采用现有技术中的加密算法(例如 MD5、RSA、DES等加密算法),以防不法分子假冒医师的数字证书在网络医院平台上虚假行医。数字证书生成后,由网络医院平台分发给对应的医生终端02,以供对应的医生终端02在生成电子诊疗单时进行数字签名,确保了电子诊疗单的合法性和权威性。
参照图9,图9为本发明网络医院平台第三实施例的功能模块图。
基于上述网络医院平台第一实施例,在本实施例中,所述网络医院平台还包括:
数字证书验证模块50,用于获取医师的数字证书,并根据所述数字证书对医师的身份进行认证;
数字证书处理模块60:用于当所述数字证书存在于医师认证数据库中时,获取患者的病情信息供医师形成诊疗信息;否则,输出认证失败的提示信息,并结束。
具体地,为了确保在生成电子诊疗单时数字证书的合法性,本发明实施例增加了对医师的数字证书身份认证的数字证书验证模块50。该数字证书验证模块50在获取患者病情信息之前,先获取医生的数字证书,然后判断所述数字证书是否存在于医师认证数据库中,若存在于医师认证数据库中,病情信息获取模块10才获取患者的病情信息,即准许诊疗信息获取模块20从数据库或者患者终端获取患者的病情信息。或者数字证书验证模块50首先对医师的数字证书进行认证,确保其已经存在于医师认证数据库中,再由电子诊疗单生成模块30生成电子诊疗单。若不存在于医师认证数据库中,说明该医生的数字证书还未登记于医师认证数据库中或者该数字证书为非法的数字证书,此时,输出提示信息,提示医师先进行身份登记和认证。
本发明实施例通过对医师的数字证书进行认证,确保了电子诊疗单的合法性和权威性,以免对下级医疗机构或者患者造成不必要的损失和麻烦。
参照图9,图9为本发明病情信息获取模块的子功能模块图。
上述病情信息获取模块10具体包括:
电子病历获取子模块101,用于根据患者的就诊信息从电子病历数据库中匹配患者的电子病历;
症状信息获取子模块102,用于通过文字、语音和视频中的至少一种方式获取患者的症状信息;
病情信息发送子模块103,用于发送所述电子病历和所述症状信息来生成医师的诊疗信息。
具体地,结合图1,本发明实施例提供了一种获取患者病情信息的较佳实施例。首先电子病历获取子模块101根据患者的就诊信息从电子病历数据库中匹配患者的电子病历,并发送所述电子病历至医生终端02。所述就诊信息包括患者的身份证号、医保号或者就诊号中的至少一种。电子病历数据库中预先存储了患者的基本信息以及个人病史,通过就诊信息获取电子病历的方式,能够节约就诊时间,医师无需重新询问患者情况即可获知患者的既往病情。此外,患者终端和医生终端02同时登陆网络医院平台,建立即时通讯,医生终端02采用即时通讯中的文字、语音和视频中的至少一种方式与患者终端进行信息交互,从而采集患者的当前症状信息。医生终端02在获取到患者的电子病历和症状信息后生成医师的诊疗信息。患者无需与医生面对面交流随时随地在网络连接的情况下即可实现诊疗过程,也可随时随地获得医生终端02提供的帮助,提高了医疗服务的质量和效率。
参照图11,图11为本发明网络医院平台第四实施例的功能模块图。
基于上述网络医院平台第一实施例,在本实施例中,所述网络医院平台还包括:
电子病历更新模块70,用于根据所述电子诊疗单更新患者的电子病历。
具体地,本发明实施例由电子诊疗单生成模块30生成电子诊疗单之后,电子病历更新模块70根据所述电子诊疗单更新患者的电子病历。具体过程可以是:电子病历更新模块70首先根据患者的就诊信息从电子病历数据库中匹配对应的电子病历,再以日期为单位新建本次诊疗过程对应的电子病历页,将所述电子诊疗单中的内容,包括诊疗信息以及对应的医师信息更新于该电子病历页中,以完成该患者电子病历的更新。
本发明实施例将每次就诊后生成的电子诊疗单更新于电子病历中,能够以为后续的诊疗提供依据,提高医疗服务的质量和效率。
以上仅为本发明的优选实施例,并非因此限制本发明的专利范围,凡是利用本发明说明书及附图内容所作的等效结构或等效流程变换,或直接或间接运用在其他相关的技术领域,均同理包括在本发明的专利保护范围内。

Claims (14)

  1. 一种O2O模式下的电子诊疗单生成方法,其特征在于,该方法包括步骤:
    S10:获取患者的病情信息来生成医师的诊疗信息,所述病情信息包括电子病历和症状信息;
    S20:获取所述医师的诊疗信息,所述诊疗信息包括处方信息、检查信息和转诊信息中的至少一种;
    S30:根据医师的数字证书对所述诊疗信息进行数字签名,生成电子诊疗单。
  2. 如权利要求1所述的O2O模式下的电子诊疗单生成方法,其特征在于,所述步骤S10包括:
    S101:根据患者的就诊信息从电子病历数据库中匹配患者的电子病历;
    S102:通过文字、语音和视频中的至少一种方式获取患者的症状信息;
    S103:发送所述电子病历和所述症状信息来生成医师的诊疗信息。
  3. 如权利要求1所述的O2O模式下的电子诊疗单生成方法,其特征在于,该方法还包括步骤:
    S40:根据医师的姓名和执业医师证书编号生成医师的数字证书,并存储于医师认证数据库中。
  4. 如权利要求3所述的O2O模式下的电子诊疗单生成方法,其特征在于,所述步骤S10包括:
    S101:根据患者的就诊信息从电子病历数据库中匹配患者的电子病历;
    S102:通过文字、语音和视频中的至少一种方式获取患者的症状信息;
    S103:发送所述电子病历和所述症状信息来生成医师的诊疗信息。
  5. 如权利要求3所述的O2O模式下的电子诊疗单生成方法,其特征在于,该方法还包括步骤:
    S50:获取医师的数字证书,并根据所述数字证书对医师的身份进行认证;
    S51:判断所述数字证书存是否在于医师认证数据库中;若是,则执行S10;否则,执行S52;
    S52:输出认证失败的提示信息,并结束。
  6. 如权利要求5所述的O2O模式下的电子诊疗单生成方法,其特征在于,所述步骤S10包括:
    S101:根据患者的就诊信息从电子病历数据库中匹配患者的电子病历;
    S102:通过文字、语音和视频中的至少一种方式获取患者的症状信息;
    S103:发送所述电子病历和所述症状信息来生成医师的诊疗信息。
  7. 如权利要求6所述的O2O模式下的电子诊疗单生成方法,其特征在于,所述O2O模式下的电子诊疗单生成方法还包括:
    S60:根据所述电子诊疗单更新患者的电子病历。
  8. 一种网络医院平台,其特征在于,所述网络医院平台包括:
    病情信息获取模块,用于获取患者的病情信息来生成医师的诊疗信息,所述病情信息包括电子病历和症状信息;
    诊疗信息获取模块,用于获取所述医师的诊疗信息,所述诊疗信息包括处方信息、检查信息和转诊信息中的至少一种;
    电子诊疗单生成模块,用于根据医师的数字证书对所述诊疗信息进行数字签名,生成电子诊疗单。
  9. 如权利要求8所述的网络医院平台,其特征在于,所述病情信息获取模块包括:
    电子病历获取子模块,用于根据患者的就诊信息从电子病历数据库中匹配患者的电子病历;
    症状信息获取子模块,用于通过文字、语音和视频中的至少一种方式获取患者的症状信息;
    病情信息发送子模块,用于发送所述电子病历和所述症状信息来生成医师的诊疗信息。
  10. 如权利要求8所述的网络医院平台,其特征在于,所述网络医院平台还包括:
    数字证书生成模块,用于根据医师的姓名和执业医师证书编号生成医师的数字证书,并存储于医师认证数据库中。
  11. 如权利要求10所述的网络医院平台,其特征在于,所述病情信息获取模块包括:
    电子病历获取子模块,用于根据患者的就诊信息从电子病历数据库中匹配患者的电子病历;
    症状信息获取子模块,用于通过文字、语音和视频中的至少一种方式获取患者的症状信息;
    病情信息发送子模块,用于发送所述电子病历和所述症状信息来生成医师的诊疗信息。
  12. 如权利要求10所述的网络医院平台,其特征在于,所述网络医院平台还包括:
    数字证书验证模块,用于获取医师的数字证书,并根据所述数字证书对医师的身份进行认证;
    数字证书处理模块:用于当所述数字证书存在于医师认证数据库中时,获取患者的病情信息供医师形成诊疗信息;否则,输出认证失败的提示信息,并结束。
  13. 如权利要求12所述的网络医院平台,其特征在于,所述病情信息获取模块包括:
    电子病历获取子模块,用于根据患者的就诊信息从电子病历数据库中匹配患者的电子病历;
    症状信息获取子模块,用于通过文字、语音和视频中的至少一种方式获取患者的症状信息;
    病情信息发送子模块,用于发送所述电子病历和所述症状信息来生成医师的诊疗信息。
  14. 如权利要求13所述的网络医院平台,其特征在于,所述网络医院平台还包括:
    电子病历更新模块,用于根据所述电子诊疗单更新患者的电子病历。
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