WO2017148162A1 - 应用于互联网医院的电子处方处理系统及方法 - Google Patents

应用于互联网医院的电子处方处理系统及方法 Download PDF

Info

Publication number
WO2017148162A1
WO2017148162A1 PCT/CN2016/103045 CN2016103045W WO2017148162A1 WO 2017148162 A1 WO2017148162 A1 WO 2017148162A1 CN 2016103045 W CN2016103045 W CN 2016103045W WO 2017148162 A1 WO2017148162 A1 WO 2017148162A1
Authority
WO
WIPO (PCT)
Prior art keywords
patient
electronic prescription
electronic
treatment
dynamic password
Prior art date
Application number
PCT/CN2016/103045
Other languages
English (en)
French (fr)
Inventor
张贯京
Original Assignee
深圳市前海安测信息技术有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 深圳市前海安测信息技术有限公司 filed Critical 深圳市前海安测信息技术有限公司
Publication of WO2017148162A1 publication Critical patent/WO2017148162A1/zh

Links

Classifications

    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16ZINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS, NOT OTHERWISE PROVIDED FOR
    • G16Z99/00Subject matter not provided for in other main groups of this subclass
    • G06F19/3418
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F21/00Security arrangements for protecting computers, components thereof, programs or data against unauthorised activity
    • G06F21/60Protecting data
    • G06F21/62Protecting access to data via a platform, e.g. using keys or access control rules
    • G06F21/6218Protecting access to data via a platform, e.g. using keys or access control rules to a system of files or objects, e.g. local or distributed file system or database
    • G06F21/6245Protecting personal data, e.g. for financial or medical purposes

Definitions

  • the present invention relates to the field of life health technologies, and in particular, to an electronic prescription processing system and method applied to an internet hospital.
  • the electronic prescription includes basic information of the patient, prescription information and medical information of the doctor.
  • the basic information of the patient includes the name, sex, age, home address and contact information of the patient, and the prescription information includes medicines, injections, physiotherapy, etc. for the information of the sickness information.
  • Information such as the dosage, course of treatment, etc., the physician's identity information includes the doctor's name and the doctor's certificate number, and may also include other information that uniquely identifies the physician.
  • the main object of the present invention is to provide an electronic prescription processing system and method applied to an Internet hospital, which aims to solve the problem that doctors are inconvenient to diagnose and treat patients in a network hospital and cannot guarantee the power of the network hospital.
  • Technical issues regarding sub-prescription information security are to provide.
  • the present invention provides an electronic prescription processing method applied to an internet hospital, the method comprising the steps of: receiving a digital certificate input by a patient from a terminal device, and determining a doctor level from the medical database according to the digital certificate. Receiving a patient's past medical history and current disease information input by the patient from the terminal device, and screening the treatment means for the patient according to the patient's past medical history, current disease information, and doctor's level; generating an electronic prescription of the patient according to the treatment means; The prescription is electronically signed to form signature data of the electronic prescription; the signature data of the electronic prescription is sent to an intermediate institution for patient treatment.
  • the step of electronically signing the electronic prescription to form signature data of the electronic prescription comprises: performing the one-way hash function operation on the electronic prescription to generate a message corresponding to the electronic prescription Generating a dynamic password private key corresponding to the personal information according to the personal information input by the patient; generating a dynamic password corresponding to the dynamic password private key according to the dynamic password private key according to the dynamic password private key; based on the dynamic password And generating an electronic signature with the message digest, and integrating the electronic signature with the electronic prescription to generate signature data of the electronic prescription.
  • the electronic prescription processing method applied to an internet hospital further comprises the steps of: determining an intermediate mechanism of the treatment according to a location of the patient and transmitting to the terminal device of the patient.
  • the treatment means includes drug treatment, injection treatment and condition examination.
  • the intermediate mechanism includes a pharmacy terminal, a physical hospital terminal, and an inspection institution terminal.
  • the present invention provides an electronic prescription processing system applied to an Internet hospital, the system comprising: a doctor selection module, configured to receive a digital certificate input by a patient from a terminal device, and determine a doctor level from the medical database according to the digital certificate. a treatment determination module, configured to receive a patient's past medical history and current illness information input by the patient from the terminal device, and screen the treatment method for the patient according to the patient's past medical history, current disease information, and doctor level; a prescription processing module, configured to The treatment means generates an electronic prescription of the patient, and electronically signs the electronic prescription to form signature data of the electronic prescription; and a prescription sending module, configured to send the signature data of the electronic prescription to an intermediate institution for patient treatment.
  • a doctor selection module configured to receive a digital certificate input by a patient from a terminal device, and determine a doctor level from the medical database according to the digital certificate.
  • a treatment determination module configured to receive a patient's past medical history and current illness information input by the patient from the terminal device, and screen the treatment method for
  • the prescription processing module is further configured to perform the one-way hash function operation on the electronic prescription to generate Forming a message digest corresponding to the electronic prescription, generating a dynamic password private key corresponding to the personal information according to the personal information input by the patient, and generating, according to the dynamic password private key, a dynamic password private key according to the dynamic password private key algorithm a dynamic password, generating an electronic signature based on the dynamic password and the message digest, and integrating the electronic signature with the electronic prescription to generate signature data for an electronic prescription.
  • the prescription sending module is further configured to determine the intermediate mechanism of the treatment according to the location of the patient and send the device to the terminal device of the patient.
  • the treatment means includes drug treatment, injection treatment and condition examination.
  • the intermediate mechanism comprises a pharmacy terminal, a physical hospital terminal and an inspection institution terminal.
  • the electronic prescription processing system and method applied to an Internet hospital adopts the above technical solution, and the technical effects brought by: setting a treatment method for a patient according to a doctor level, according to a patient
  • the patient's condition information and treatment means generate the patient's electronic prescription, which is convenient for the doctor to treat the patient as an independent individual in the network hospital; use the dynamic password to electronically sign the electronic prescription information, even if the electronic prescription information is intercepted during the transmission process, the interceptor It is also impossible to decipher the electronic prescription information, thereby increasing the security of the electronic prescription information.
  • FIG. 1 is a schematic diagram of an application environment of an electronic prescription processing system applied to an internet hospital according to the present invention
  • FIG. 2 is a functional block diagram of a preferred embodiment of the Internet hospital platform of FIG. 1;
  • FIG. 3 is a flow chart of a preferred embodiment of an electronic prescription processing method applied to an Internet hospital according to the present invention
  • step S24 in FIG. 3 is a detailed flowchart of step S24 in FIG. 3.
  • the present invention provides an electronic prescription processing system applied to an internet hospital, which is applied in an internet hospital, can set a treatment method for a patient according to a doctor level, generates an electronic prescription of the patient according to the treatment method, and adopts a dynamic password. After the electronic signature is electronically signed, it is sent to the intermediate institution selected by the patient for further treatment, which not only facilitates the doctor to treat the patient as an independent individual in the network hospital, but also increases the safety of the electronic prescription information.
  • FIG. 1 is a schematic diagram of an application environment of an electronic prescription processing system applied to an Internet hospital according to the present invention.
  • the electronic prescription processing system 10 is installed and operated in the Internet hospital platform 1, and the Internet hospital platform 1 is connected to the terminal device 2 through the first network 21, through the second network 22 and the intermediate mechanism. 40 is connected, and connected to the medical database 3 via the database link 23.
  • the Internet hospital platform 1 is a network server, a file server, and other computer devices with large data processing capabilities.
  • the terminal device 2 can be a personal computer, a notebook computer, a PDA device, a mobile phone or other computing device.
  • the intermediate mechanism 40 includes, but is not limited to, a pharmacy terminal 41, a physical hospital terminal 42, and an inspection institution terminal 43, and the terminal of each intermediate mechanism 40 may be a personal computer, a notebook computer, a PDA device, a mobile phone, or other computing device.
  • the first network 21 and the second network 22 may each be a wireless network (such as a mobile communication network such as GPRS) or an internet network (such as a network such as the Internet).
  • the database link 23 can be a linked database link such as JDBC or ODBC.
  • the terminal device 2 performs information interaction with the Internet hospital platform 1 through the first network 21.
  • the pharmacy terminal 41, the physical hospital terminal 42, and the inspection institution terminal 43 can all exchange information with the Internet hospital platform 1 through the second network 22.
  • the terminal device 2, the pharmacy terminal 41, the physical hospital terminal 42, and the inspection institution terminal 43 can perform information interaction with the Internet hospital platform 1 through application software running on the terminal, or can log in to the Internet through a browser.
  • information interaction is directly performed in the Internet hospital platform 1.
  • the number of the terminal device 2, the pharmacy terminal 41, the physical hospital terminal 4 2, and the inspection institution terminal 43 is not limited.
  • the terminal device 2 is configured to input personal information of the patient, input a past medical history and current disease information, and send the past medical history input by the patient and the current disease information to the Internet hospital through the first network 21.
  • Platform 1 The medical database 3 stores a large amount of medical data including digital certificates of all doctors who are qualified to practice, and the doctor's digital certificate includes the identity information and level information of the doctor.
  • the internet hospital platform 1 can obtain medical data in the medical database 3 through the database connection 23, and determine the doctor level according to the doctor's digital certificate.
  • the internet hospital platform 1 also generates an electronic prescription of the patient according to the treatment according to the past medical history input by the patient, the current disease information, and the doctor's level screening method, and sends the electronic prescription to the second network. 22 is sent to the intermediate mechanism 40 selected by the patient, such as the pharmacy terminal 41, the physical hospital terminal 42, or the examination facility terminal 43, to facilitate the patient's next treatment.
  • the Internet hospital platform 1 includes, but is not limited to, an electronic prescription processing system 10, a memory 11 and a processor 12.
  • the processor 11 may be a microprocessor, a data processing chip, or an information processing unit having a data processing function for executing the electronic prescription processing system 10 to perform a processing function on an electronic prescription.
  • the memory 12 may be a read only memory ROM, an electrically erasable memory EEPROM, or a flash memory FLASH or the like for storing program instruction codes constituting the electronic prescription processing system 10.
  • the electronic prescription processing system 10 includes, but is not limited to, a doctor selection module 101, a treatment determination module 102, a prescription processing module 103, and a prescription sending module 104.
  • the module referred to in the embodiment of the present invention refers to a series of computer program instruction segments that can be executed by the processor 11 of the Internet hospital platform 1 and can perform a fixed function, which is stored in the memory of the Internet hospital platform 1. 12 in.
  • the doctor selection module 101 is configured to receive a digital certificate input by the patient from the terminal device 2, and determine doctor level information from the medical database 3 according to the digital certificate.
  • the physician accessing the Internet Hospital Platform 1 has a unique digital certificate that uniquely identifies the physician's identity information and level information.
  • the patient logs in to the Internet hospital platform 1 through the terminal device 2, and can select a corresponding doctor according to his or her own needs. Since each doctor has a unique digital certificate, when the patient selects a doctor from the terminal device 2, Enter the digital certificate corresponding to the doctor.
  • the treatment determination module 102 is configured to receive a patient's past medical history input by the patient from the terminal device 2 and current Disease information, and screening treatments for patients based on the patient's past medical history, current condition information, and physician level.
  • the treatment means includes drug treatment, injection treatment, and condition examination.
  • the prescription processing module 103 is configured to generate an electronic prescription of the patient according to the treatment means, and perform electronic signature on the electronic prescription to form signature data of the electronic prescription.
  • the prescription processing module 103 is further configured to perform a one-way hash function operation on the electronic prescription to generate a message digest corresponding to the electronic prescription, and generate a dynamic password private corresponding to the personal information according to the personal information input by the patient. Key, generating, according to the dynamic password private key, a dynamic password corresponding to the dynamic password private key based on the dynamic password private key algorithm, generating an electronic signature based on the dynamic password and the message digest, and the electronic signature and the The electronic prescription is integrated to generate the signature data of the electronic prescription.
  • the electronic signature information is electronically signed by the dynamic password, even if the electronic prescription information is intercepted during the delivery process, the interceptor cannot decipher the information, thereby ensuring the security of the electronic prescription information.
  • the prescription sending module 104 determines the intermediate mechanism 40 of the treatment according to the position of the patient and transmits it to the terminal device 2 of the patient, and transmits the signature data of the electronic prescription to the intermediate mechanism 40 of the treatment, such as the pharmacy terminal 41.
  • the physical hospital terminal 42 or the inspection institution terminal 43 allows the patient to perform the next medical treatment, for example, the patient can take the medicine at the pharmacy, go to the physical hospital for further treatment, or go to a professional medical examination institution for further physical examination.
  • the location of the patient is acquired by the positioning device in the terminal device 2 and sent to the Internet hospital platform 1 through the first network.
  • the present invention also provides an electronic prescription processing method applied to an internet hospital, which is applied in a network hospital, and can set a treatment method for a patient according to a doctor level, generate an electronic prescription of the patient according to the treatment method, and adopt a dynamic
  • the password is sent to the intermediate institution selected by the patient for electronic treatment, and the next step is not only convenient for the doctor to treat the patient as a separate individual in the network hospital, but also increases the safety of the electronic prescription information.
  • FIG. 3 is a flow chart of a preferred embodiment of an electronic prescription processing method applied to an Internet hospital of the present invention.
  • the electronic prescription processing method is applied to the Internet Hospital Platform 1 of FIG. 1, in conjunction with FIGS. 1 and 2, the method includes, but is not limited to, steps S21 to S26.
  • step S21 receiving a digital certificate input by the patient from the terminal device, and receiving the medical certificate according to the digital certificate.
  • the doctor level information is determined in the library; specifically, the doctor selection module 101 receives the digital certificate input by the patient from the terminal device 2, and determines the doctor level information from the medical database 3 based on the digital certificate.
  • the doctor accessing the Internet hospital platform 1 has a unique digital certificate, which can uniquely determine the doctor's identity information and level information.
  • Step S22 receiving the patient's past medical history and current disease information input by the patient from the terminal device, and screening the treatment means for the patient according to the patient's past medical history, current disease information, and doctor level; specifically, the treatment determination module 102 receives the patient from The patient's past medical history and current disease information input by the terminal device 2, and screening treatment methods for the patient according to the patient's past medical history, current disease information, and doctor level.
  • the treatment means includes drug treatment, injection treatment, and condition examination
  • Step S23 generating an electronic prescription of the patient according to the treatment means; specifically, the prescription processing module 103 generates an electronic prescription of the patient according to the treatment means.
  • Step S24 electronically signing the electronic prescription to form the signature data of the electronic prescription; specifically, the prescription processing module 103 electronically signs the electronic prescription to form the signature data of the electronic prescription.
  • This step S2 electronically signs the electronic prescription to form the signature data of the electronic prescription.
  • Step S25 determining the intermediate mechanism of the treatment according to the position of the patient and transmitting to the terminal device of the patient; Specifically, the prescription sending module 104 determines the intermediate mechanism 40 of the treatment according to the position of the patient and sends it to the terminal device 2 of the patient.
  • the position of the patient is acquired by the positioning device in the terminal device 2, and transmitted to the Internet hospital platform 1 through the first network 21.
  • Step S26 sending the signature data of the electronic prescription to the intermediate institution of the treatment; specifically, the prescription sending module 104 sends the signature data of the electronic prescription to the intermediate institution 40 of the treatment, such as the pharmacy terminal 41.
  • the physical hospital terminal 42 or the inspection institution terminal 43 allows the patient to perform the next treatment, for example, the patient can take the medicine at the pharmacy, go to the physical hospital for further treatment, or go to a professional medical examination institution for further physical examination.
  • step S24 includes steps S241 to S245.
  • step S241 performing an one-way hash function operation on the electronic prescription to generate a cancellation corresponding to the electronic prescription
  • the prescription processing module 103 performs a one-way hash function operation on the electronic prescription to generate a message digest corresponding to the electronic prescription.
  • Step S242 generating a dynamic password private key corresponding to the personal information according to the personal information input by the patient; specifically, the prescription processing module 103 generates a dynamic password private key corresponding to the personal information according to the personal information input by the patient.
  • Step S243 generating a dynamic password corresponding to the dynamic password private key according to the dynamic password private key algorithm according to the dynamic password private key; specifically, the prescription processing module 103 generates and generates the dynamic password private key based on the dynamic password private key algorithm.
  • the dynamic password corresponding to the dynamic password private key is
  • Step S244 generating an electronic signature based on the dynamic password and the message digest; specifically, the prescription processing module 10
  • Step S245 integrating the electronic signature and the electronic prescription to generate signature data of the electronic prescription; specifically, the processing module 103 integrates the electronic signature and the electronic prescription to generate signature data of the electronic prescription.
  • the electronic prescription processing system and method applied to an Internet hospital set a treatment method for a patient according to a doctor level, and generates an electronic prescription of the patient according to the patient's condition information and a treatment means, thereby facilitating the doctor as an independent Individuals are treated in a network hospital for patients.
  • the use of dynamic passwords for electronic signature of electronic prescribing information because of the convenient use of the dynamic password and platform-independent, is widely used in the field of information security such as medical, financial, etc., its advantage lies in the rapid and seamless interoperability with various business systems.
  • the electronic prescription processing system with dynamic password authentication can be stable, efficient, and supports multiple authentication modes. Even if the electronic prescription information is intercepted during the delivery process, the interceptor cannot decipher the information, thereby ensuring the security of the electronic prescription information. .
  • the electronic prescription processing system and method applied to an Internet hospital adopts the above technical solution, and the technical effects brought by the following are: setting a treatment method for a patient according to a doctor level According to the patient's condition information and treatment means to generate the patient's electronic prescription, it is convenient for the doctor to treat the patient as a separate individual in the network hospital; use the dynamic password to electronically sign the electronic prescription information, even if the electronic prescription information is intercepted during the delivery process The interceptor is also unable to decipher the electronic prescription information, thereby increasing the security of the electronic prescription information.

Landscapes

  • Engineering & Computer Science (AREA)
  • Health & Medical Sciences (AREA)
  • Medical Informatics (AREA)
  • Bioethics (AREA)
  • General Health & Medical Sciences (AREA)
  • Theoretical Computer Science (AREA)
  • Computer Hardware Design (AREA)
  • Computer Security & Cryptography (AREA)
  • Software Systems (AREA)
  • Physics & Mathematics (AREA)
  • General Engineering & Computer Science (AREA)
  • General Physics & Mathematics (AREA)
  • Databases & Information Systems (AREA)
  • Medical Treatment And Welfare Office Work (AREA)

Abstract

一种应用于互联网医院的电子处方处理系统及方法。该方法包括步骤:接收患者从终端设备输入的数字证书,并根据数字证书从医疗数据库中确定医生级别信息(S21);接收患者从终端设备输入的患者既往病史以及当前病症信息,并根据患者既往病史、当前病症信息以及医生级别筛选针对患者的治疗手段(S22);根据治疗手段生成患者的电子处方(S23);将电子处方进行电子签章形成电子处方的签章数据(S24);根据患者的位置确定治疗的中间机构并发送至患者的终端设备(S25);将电子处方的签章数据发送至治疗的中间机构(S26)。该方法根据医生级别设定针对患者的治疗手段,根据患者的病情信息及治疗手段生成患者的电子处方,方便医生在网络医院对患者进行诊疗;采用动态口令对电子处方信息进行电子签章,保证了电子处方信息的安全性。

Description

说明书 发明名称:应用于互联网医院的电子处方处理系统及方法 技术领域
[0001] 本发明涉及生命健康技术领域, 尤其涉及一种应用于互联网医院的电子处方处 理系统及方法。
背景技术
[0002] 随着计算机技术及医院信息化、 网络化的发展, 电子处方逐渐代替手写处方, 通过电子管理系统直接传输至收费室、 药房、 药店、 护士站等业务相关的科室 , 既保证了处方的完整性和准确性, 又提高了手工处方的书写质量和工作效率 。 电子处方包括患者基本信息、 处方信息和医师身份信息, 患者的基本信息包 括患者的姓名、 性别、 年齢、 家庭住址以及联系方式等, 处方信息包括针对病 情信息幵具的药物、 针剂、 理疗等治疗方式的剂量、 疗程等信息, 医师身份信 息包括带有医生姓名和执业医师证书编号, 也可以包括其他能够唯一确定医师 身份的信息。
[0003] 然而, 电子处方也有自身的一些局限性, 虽然在管理系统中严格控制幵具电子 处方的权限及登陆密码, 但是电子处方还不具备很强的防伪性, 易被他人篡改 , 为了保证电子处方的安全性, 需要对电子处方进行加密处理。 传统的对称加 密技术中, 使用专有密钥对信息进行加密, 通讯双方共享一个秘密密钥, 发送 方在发送信息吋, 用密钥将信息明文加密成密文进行传输, 接收方接收到密文 后, 用密钥进行解密, 还原成明文。 这种加密算法实现速度虽然快, 但是存在 很多安全隐患, 从而不能满足电子处方较高的完整性和准确性的需求。 因此, 电子处方应用在网络医院中急需一种电子处方的安全生成方法, 即使电子处方 信息在传递过程中被拦截, 拦截者也无法对信息进行破译, 保证了电子处方信 息的安全性。
技术问题
[0004] 本发明的主要目的在于提供一种应用于互联网医院的电子处方处理系统及方法 , 旨在解决医生不方便在网络医院中对患者进行诊疗且无法保证网络医院中电 子处方信息安全的技术问题。
问题的解决方案
技术解决方案
[0005] 为实现上述目的, 本发明提供了一种应用于互联网医院的电子处方处理方法, 该方法包括步骤: 接收患者从终端设备输入的数字证书, 并根据数字证书从医 疗数据库中确定医生级别; 接收患者从终端设备输入的患者既往病史以及当前 病症信息, 并根据患者既往病史、 当前病症信息以及医生级别筛选针对患者的 治疗手段; 根据所述治疗手段生成患者的电子处方; 将所述电子处方进行电子 签章形成电子处方的签章数据; 将所述电子处方的签章数据发送至患者治疗的 中间机构。
[0006] 优选的, 所述将所述电子处方进行电子签章形成电子处方的签章数据的步骤包 括: 将所述电子处方进行单向散列函数运算以生成与所述电子处方对应的消息 摘要; 根据患者输入的个人信息生成与所述个人信息对应的动态口令私钥; 根 据所述动态口令私钥基于动态口令私钥算法生成与动态口令私钥对应的动态口 令; 基于所述动态口令和所述消息摘要生成电子签章, 并将所述电子签章和所 述电子处方整合生成电子处方的签章数据。
[0007] 优选的, 所述应用于互联网医院的电子处方处理方法还包括步骤: 根据患者的 位置确定所述治疗的中间机构并发送至患者的终端设备。
[0008] 优选的, 所述治疗手段包括药物治疗、 针剂治疗和病情检査。
[0009] 优选的, 所述中间机构包括药店终端、 实体医院终端和检査机构终端。
[0010] 本发明提供了一种应用于互联网医院的电子处方处理系统, 该系统包括: 医生 选择模块, 用于接收患者从终端设备输入的数字证书, 并根据数字证书从医疗 数据库中确定医生级别; 治疗确定模块, 用于接收患者从终端设备输入的患者 既往病史以及当前病症信息, 并根据患者既往病史、 当前病症信息以及医生级 别筛选针对患者的治疗手段; 处方处理模块, 用于根据所述治疗手段生成患者 的电子处方, 并将所述电子处方进行电子签章形成电子处方的签章数据; 处方 发送模块, 用于将所述电子处方的签章数据发送至患者治疗的中间机构。
[0011] 优选的, 所述处方处理模块还用于将所述电子处方进行单向散列函数运算以生 成与所述电子处方对应的消息摘要, 根据患者输入的个人信息生成与所述个人 信息对应的动态口令私钥, 根据所述动态口令私钥基于动态口令私钥算法生成 与动态口令私钥对应的动态口令, 基于所述动态口令和所述消息摘要生成电子 签章, 以及将所述电子签章和所述电子处方整合生成电子处方的签章数据。
[0012] 优选的, 所述处方发送模块还用于根据患者的位置确定所述治疗的中间机构并 发送至患者的终端设备。
[0013] 优选的, 所述治疗手段包括药物治疗、 针剂治疗和病情检査。
[0014] 优选的, 所述中间机构包括药店终端、 实体医院终端和检査机构终端。
发明的有益效果
有益效果
[0015] 相较于现有技术, 本发明所述应用于互联网医院的电子处方处理系统及方法采 用上述技术方案, 带来的技术效果为: 根据医生级别设定针对患者的治疗手段 , 根据患者的病情信息以及治疗手段生成患者的电子处方, 方便医生作为独立 个体在网络医院对患者进行诊疗; 采用动态口令对电子处方信息进行电子签章 , 即使电子处方信息在传递过程中被拦截, 拦截者也无法对电子处方信息进行 破译, 从而增加了电子处方信息的安全性。
对附图的简要说明
附图说明
[0016] 图 1为本发明应用于互联网医院的电子处方处理系统的应用环境示意图;
[0017] 图 2为图 1中的互联网医院平台较佳实施例的功能模块图;
[0018] 图 3为本发明应用于互联网医院的电子处方处理方法较佳实施例的流程图;
[0019] 图 4为图 3中的步骤 S24的细化流程图。
[0020]
[0021] 本发明目的实现、 功能特点及优点将结合实施例, 参照附图做进一步说明。
实施该发明的最佳实施例
本发明的最佳实施方式
[0022] 为更进一步阐述本发明为达成上述目的所采取的技术手段及功效, 以下结合附 图及较佳实施例, 对本发明的具体实施方式、 结构、 特征及其功效进行详细说 明。 应当理解, 本发明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。
[0023] 本发明提供了一种应用于互联网医院的电子处方处理系统, 应用在互联网医院 中, 能够根据医生级别设定针对患者的治疗手段, 根据治疗手段生成患者的电 子处方, 并采用动态口令对电子处方进行电子签章后发送至患者选择的中间机 构进行下一步治疗, 不仅方便医生作为独立个体在网络医院对患者进行诊疗, 而且还增加了电子处方信息的安全性。
[0024] 参照图 1所示, 图 1是本发明应用于互联网医院的电子处方处理系统的应用环境 示意图。 在本实施例中, 所述电子处方处理系统 10安装并运行于互联网医院平 台 1中, 所述互联网医院平台 1通过第一网路 21与终端设备 2连接, 通过第二网路 22与中间机构 40连接, 以及通过数据库链接 23与医疗数据库 3连接。 所述互联网 医院平台 1为网络服务器、 文件服务器以及其它具有大数据处理能力的计算机设 备。 所述终端设备 2可以为个人计算机、 笔记本电脑、 PDA设备、 手机或者其它 计算设备。 所述中间机构 40包括, 但不仅限于, 药店终端 41、 实体医院终端 42 和检査机构终端 43, 每一中间机构 40的终端可以为个人计算机、 笔记本电脑、 P DA设备、 手机或者其它计算设备。 所述第一网路 21与第二网路 22均可以为无线 网路 (例如 GPRS等移动通信网路) 或互联网际网络 (例如 Internet等网络) 。 所 述数据库链接 23可以为 JDBC或 ODBC等幵放式数据库链接。
[0025] 在本实施例中, 所述终端设备 2通过第一网路 21与互联网医院平台 1进行信息交 互。 所述药店终端 41、 实体医院终端 42和检査机构终端 43均可通过第二网路 22 与互联网医院平台 1进行信息交互。 具体地, 所述终端设备 2、 药店终端 41、 实 体医院终端 42和检査机构终端 43均可通过运行于该终端的应用软件与互联网医 院平台 1进行信息交互, 也可通过浏览器登录到互联网医院平台 1中, 在互联网 医院平台 1中直接进行信息交互。 所述终端设备 2、 药店终端 41、 实体医院终端 4 2和检査机构终端 43的个数不做限定。
[0026] 所述终端设备 2用于输入患者的个人信息、 输入既往病史以及当前病症信息, 并将患者输入的既往病史以及当前病症信息通过第一网路 21发送至互联网医院 平台 1。 所述医疗数据库 3存储有海量的医疗数据, 该医疗数据包括所有具有执 业资格的医生的数字证书, 医生的数字证书包括医生的身份信息和级别信息。 所述互联网医院平台 1通过数据库连接 23可以获取所述医疗数据库 3中的医疗数 据, 并根据所述医生的数字证书确定医生级别。 该互联网医院平台 1还用根据患 者输入的既往病史、 当前病症信息以及医生级别筛选医生的治疗手段, 根据所 述治疗手段生成患者的电子处方, 并将所述电子处方通过发送至第二网路 22发 送至患者选择的中间机构 40, 例如药店终端 41、 实体医院终端 42或检査机构终 端 43, 以方便患者进行下一步治疗。
[0027]
[0028] 如图 2所示, 图 2是图 1中的互联网医院平台 1较佳实施例的功能模块图。 在本实 施例中, 所述的互联网医院平台 1包括, 但不仅限于, 电子处方处理系统 10、 存 储器 11和处理器 12。 所述的处理器 11可以为一种微处理器器、 数据处理芯片、 或者具有数据处理功能的信息处理单元, 用于执行所述电子处方处理系统 10完 成对电子处方的处理功能。 所述存储器 12可以为一种只读存储器 ROM、 电可擦 写存储器 EEPROM、 或者快闪存储器 FLASH等, 用于存储构成所述电子处方处 理系统 10的程序指令代码。
[0029] 本实施例中, 所述电子处方处理系统 10包括, 但不仅限于, 医生选择模块 101 、 治疗确定模块 102、 处方处理模块 103以及处方发送模块 104。 本发明实施例所 称的模块是指一种能够被所述互联网医院平台 1的处理器 11所执行并且能够完成 固定功能的一系列计算机程序指令段, 其存储在所述互联网医院平台 1的存储器 12中。
[0030] 所述医生选择模块 101用于接收患者从终端设备 2输入的数字证书, 并根据数字 证书从医疗数据库 3中确定医生级别信息。 在本实例中, 接入互联网医院平台 1 的医生均有唯一的数字证书, 该数字证书可以唯一确定的医生身份信息及级别 信息。 具体地, 患者在通过终端设备 2登录互联网医院平台 1吋, 可以根据自己 的需求选择对应的医生, 由于每个医生均有唯一的数字证书, 因此, 当患者从 终端设备 2选择医生后, 相当于输入了该医生对应的数字证书。
[0031] 所述治疗确定模块 102用于接收患者从终端设备 2输入的患者既往病史以及当前 病症信息, 并根据所述患者既往病史、 当前病症信息以及医生级别筛选针对患 者的治疗手段。 在本实施例中, 所述治疗手段包括药物治疗、 针剂治疗和病情 检査。
[0032] 所述处方处理模块 103用于根据所述治疗手段生成患者的电子处方, 以及将所 述电子处方进行电子签章形成电子处方的签章数据。 所述处方处理模块 103还用 于将所述电子处方进行单向散列函数运算以生成与所述电子处方对应的消息摘 要, 根据患者输入的个人信息生成与所述个人信息对应的动态口令私钥, 根据 所述动态口令私钥基于动态口令私钥算法生成与动态口令私钥对应的动态口令 , 基于所述动态口令和所述消息摘要生成电子签章, 以及将所述电子签章和所 述电子处方整合生成电子处方的签章数据。 在本实施例中, 由于采用了动态口 令对电子处方信息进行电子签章, 即使电子处方信息在传递过程中被拦截, 拦 截者也无法对信息进行破译, 从而保证了电子处方信息的安全性。
[0033] 所述处方发送模块 104根据患者的位置确定治疗的中间机构 40并发送至患者的 终端设备 2, 以及将所述电子处方的签章数据发送至治疗的中间机构 40, 例如药 店终端 41、 实体医院终端 42或检査机构终端 43, 以便患者进行下一步病情治疗 , 例如患者可以到药店取药、 到实体医院进行进一步治疗、 或者到专业的医疗 检査机构进行进一步的身体检査。 在本实施例中, 所述患者的位置由终端设备 2 中的定位装置获取, 并通过第一网络发送至所述互联网医院平台 1。
[0034]
[0035] 本发明还提供了一种应用于互联网医院的电子处方处理方法, 应用在网络医院 中, 能够根据医生级别设定针对患者的治疗手段, 根据治疗手段生成患者的电 子处方, 并采用动态口令对将电子处方进行电子签章后发送至患者选择的中间 机构进行下一步治疗, 不仅方便医生作为独立个体在网络医院对患者进行诊疗 , 而且还增加了电子处方信息的安全性。
[0036] 如图 3所示, 图 3是本发明应用于互联网医院的电子处方处理方法较佳实施例的 流程图。 在较佳实施例中, 所述电子处方处理方法应用于图 1中的互联网医院平 台 1中, 结合图 1和图 2, 该方法包括, 但不仅限于, 步骤 S21至步骤 S26。
[0037] 步骤 S21, 接收患者从终端设备输入的数字证书, 并根据数字证书从医疗数据 库中确定医生级别信息; 具体地, 医生选择模块 101接收患者从终端设备 2输入 的数字证书, 并根据数字证书从医疗数据库 3中确定医生级别信息。 在本实例中 , 接入互联网医院平台 1的医生均有唯一的数字证书, 该数字证书可以唯一确定 的医生身份信息及级别信息。
[0038] 步骤 S22, 接收患者从终端设备输入的患者既往病史以及当前病症信息, 并根 据患者既往病史、 当前病症信息以及医生级别筛选针对患者的治疗手段; 具体 地, 治疗确定模块 102接收患者从终端设备 2输入的患者既往病史以及当前病症 信息, 并根据所述患者既往病史、 当前病症信息以及医生级别筛选针对患者的 治疗手段。 在本实施例中, 所述治疗手段包括药物治疗、 针剂治疗和病情检査
[0039] 步骤 S23, 根据治疗手段生成患者的电子处方; 具体地, 处方处理模块 103根据 所述治疗手段生成患者的电子处方。
[0040] 步骤 S24, 将电子处方进行电子签章形成电子处方的签章数据; 具体地, 处方 处理模块 103将所述电子处方进行电子签章形成电子处方的签章数据。 该步骤 S2
4的细化步骤如图 4进行详细描述。
[0041] 步骤 S25, 根据患者的位置确定治疗的中间机构并发送至患者的终端设备; 具 体地, 处方发送模块 104根据患者的位置确定治疗的中间机构 40并发送至患者的 终端设备 2。 在本实施例中, 所述患者的位置由终端设备 2中的定位装置获取, 并通过第一网络 21发送至所述互联网医院平台 1。
[0042] 步骤 S26, 将电子处方的签章数据发送至治疗的中间机构; 具体地, 处方发送 模块 104将所述电子处方的签章数据发送至治疗的中间机构 40, 例如药店终端 41
、 实体医院终端 42或检査机构终端 43, 以便患者进行下一步治疗, 例如患者可 以到药店取药、 到实体医院进行进一步治疗、 或者到专业的医疗检査机构进行 进一步的身体检査。
[0043]
[0044] 如图 4所示, 图 4是图 3中的步骤 S24的细化流程图。 在本实施例中, 步骤 S24包 括步骤 S241至 S245。
[0045] 步骤 S241, 将电子处方进行单向散列函数运算以生成与所述电子处方对应的消 息摘要; 具体地, 处方处理模块 103将所述电子处方进行单向散列函数运算以生 成与所述电子处方对应的消息摘要。
[0046] 步骤 S242, 根据患者输入的个人信息生成与个人信息对应的动态口令私钥; 具 体地, 处方处理模块 103根据患者输入的个人信息生成与所述个人信息对应的动 态口令私钥。
[0047] 步骤 S243, 根据动态口令私钥基于动态口令私钥算法生成与动态口令私钥对应 的动态口令; 具体地, 处方处理模块 103根据所述动态口令私钥基于动态口令私 钥算法生成与动态口令私钥对应的动态口令。
[0048] 步骤 S244, 基于动态口令和消息摘要生成电子签章; 具体地, 处方处理模块 10
3基于所述动态口令和所述消息摘要生成电子签章。
[0049] 步骤 S245 , 将电子签章和电子处方整合生成电子处方的签章数据; 具体地, 处 方处理模块 103将所述电子签章和所述电子处方整合生成电子处方的签章数据。
[0050]
[0051] 在本实施例中所述应用于互联网医院的电子处方处理系统及方法根据医生级别 设定针对患者的治疗手段, 根据患者的病情信息以及治疗手段生成患者的电子 处方, 方便医生作为独立个体在网络医院对患者进行诊疗。 此外, 采用动态口 令对电子处方信息进行电子签章, 由于动态口令使用便捷且与平台无关性, 被 广泛应用于医疗、 金融等信息安全领域, 其优势在于与各种业务系统快速无缝 互操作, 具有动态口令认证的电子处方处理系统能够稳定、 高效、 支持多种认 证模式, 即使电子处方信息在传递过程中被拦截, 拦截者也无法对信息进行破 译, 从而保证了电子处方信息的安全性。
[0052]
[0053] 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。
工业实用性
[0054] 相较于现有技术, 本发明所述应用于互联网医院的电子处方处理系统及方法采 用上述技术方案, 带来的技术效果为: 根据医生级别设定针对患者的治疗手段 , 根据患者的病情信息以及治疗手段生成患者的电子处方, 方便医生作为独立 个体在网络医院对患者进行诊疗; 采用动态口令对电子处方信息进行电子签章 , 即使电子处方信息在传递过程中被拦截, 拦截者也无法对电子处方信息进行 破译, 从而增加了电子处方信息的安全性。

Claims

权利要求书
一种应用于互联网医院的电子处方处理方法, 其特征在于, 该电子处 方处理方法包括步骤: 接收患者从终端设备输入的数字证书, 并根据 数字证书从医疗数据库中确定医生级别; 接收患者从终端设备输入的 患者既往病史以及当前病症信息, 并根据患者既往病史、 当前病症信 息以及医生级别筛选针对患者的治疗手段; 根据所述治疗手段生成患 者的电子处方; 将所述电子处方进行电子签章形成电子处方的签章数 据; 将所述电子处方的签章数据发送至患者治疗的中间机构。
如权利要求 1所述的应用于互联网医院的电子处方处理方法, 其特征 在于, 所述将所述电子处方进行电子签章形成电子处方的签章数据的 步骤包括: 将所述电子处方进行单向散列函数运算以生成与所述电子 处方对应的消息摘要; 根据患者输入的个人信息生成与所述个人信息 对应的动态口令私钥; 根据所述动态口令私钥基于动态口令私钥算法 生成与动态口令私钥对应的动态口令; 基于所述动态口令和所述消息 摘要生成电子签章, 并将所述电子签章和所述电子处方整合生成电子 处方的签章数据。
如权利要求 1所述的应用于互联网医院的电子处方处理方法, 其特征 在于, 该方法还包括步骤: 根据患者的位置确定所述治疗的中间机构 并发送至患者的终端设备。
如权利要求 1至 3任一项所述的应用于互联网医院的电子处方处理方法 , 其特征在于, 所述治疗手段包括药物治疗、 针剂治疗和病情检査。 如权利要求 4所述的应用于互联网医院的电子处方处理方法, 其特征 在于, 所述中间机构包括药店终端、 实体医院终端和检査机构终端。 一种应用于互联网医院的电子处方处理系统, 其特征在于, 所述电子 处方处理系统包括: 医生选择模块, 用于接收患者从终端设备输入的 数字证书, 并根据数字证书从医疗数据库中确定医生级别; 治疗确定 模块, 用于接收患者从终端设备输入的患者既往病史以及当前病症信 息, 并根据患者既往病史、 当前病症信息以及医生级别筛选针对患者 的治疗手段; 处方处理模块, 用于根据所述治疗手段生成患者的电子 处方, 并将所述电子处方进行电子签章形成电子处方的签章数据; 处 方发送模块, 用于将所述电子处方的签章数据发送至患者治疗的中间 机构。
如权利要求 6所述的应用于互联网医院的电子处方处理系统, 其特征 在于, 所述处方处理模块还用于: 将所述电子处方进行单向散列函数 运算以生成与所述电子处方对应的消息摘要; 根据患者输入的个人信 息生成与所述个人信息对应的动态口令私钥; 根据所述动态口令私钥 基于动态口令私钥算法生成与动态口令私钥对应的动态口令; 基于所 述动态口令和所述消息摘要生成电子签章; 以及将所述电子签章和所 述电子处方整合生成电子处方的签章数据。
如权利要求 6所述的应用于互联网医院的电子处方处理系统, 其特征 在于, 所述处方发送模块还用于根据患者的位置确定所述治疗的中间 机构并发送至患者的终端设备。
如权利要求 6至 8任一项所述的应用于互联网医院的电子处方处理系统 , 其特征在于, 所述治疗手段包括药物治疗、 针剂治疗和病情检査。 如权利要求 9所述的应用于互联网医院的电子处方处理系统, 其特征 在于, 所述中间机构包括药店终端、 实体医院终端和检査机构终端。
PCT/CN2016/103045 2016-03-04 2016-10-24 应用于互联网医院的电子处方处理系统及方法 WO2017148162A1 (zh)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201610125537.XA CN105808943A (zh) 2016-03-04 2016-03-04 应用于互联网医院的电子处方处理系统及方法
CN201610125537.X 2016-03-04

Publications (1)

Publication Number Publication Date
WO2017148162A1 true WO2017148162A1 (zh) 2017-09-08

Family

ID=56467715

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/CN2016/103045 WO2017148162A1 (zh) 2016-03-04 2016-10-24 应用于互联网医院的电子处方处理系统及方法

Country Status (2)

Country Link
CN (1) CN105808943A (zh)
WO (1) WO2017148162A1 (zh)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105808943A (zh) * 2016-03-04 2016-07-27 深圳市前海安测信息技术有限公司 应用于互联网医院的电子处方处理系统及方法
CN106254383A (zh) * 2016-09-13 2016-12-21 上海市徐汇区中心医院 医院远程诊疗方法
CN107038341B (zh) * 2017-04-10 2019-07-12 杭州银江医联网技术股份有限公司 家庭健康数据管理方法及系统
CN107330255A (zh) * 2017-06-19 2017-11-07 江苏叶雨智能科技有限公司 电子处方图片方式交互方法
CN107958694A (zh) * 2017-11-30 2018-04-24 广东易健通信息科技有限公司 一种电子处方流转方法、服务器及系统
CN109065115B (zh) * 2018-07-21 2021-05-18 长沙瀚云信息科技有限公司 基于区块链技术的处方外配方法
CN109346147A (zh) * 2018-10-12 2019-02-15 广州宝荣科技应用有限公司 一种基于互联网的处方分发方法及系统

Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104103029A (zh) * 2014-07-10 2014-10-15 首都医科大学附属北京佑安医院 一种诊断证明的防伪方法及系统
CN104992393A (zh) * 2015-07-18 2015-10-21 深圳市前海安测信息技术有限公司 O2o模式下的电子诊疗单生成方法和网络医院平台
CN105046078A (zh) * 2015-07-18 2015-11-11 深圳市前海安测信息技术有限公司 基于电子诊疗单的诊疗机构识别方法和网络医院平台
CN105118004A (zh) * 2015-08-04 2015-12-02 上海象形通讯科技有限公司 一种电子处方的安全使用方法
CN105184714A (zh) * 2015-07-18 2015-12-23 深圳市前海安测信息技术有限公司 基于电子诊疗单的科室识别方法和网络医院平台
CN105808943A (zh) * 2016-03-04 2016-07-27 深圳市前海安测信息技术有限公司 应用于互联网医院的电子处方处理系统及方法

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104103029A (zh) * 2014-07-10 2014-10-15 首都医科大学附属北京佑安医院 一种诊断证明的防伪方法及系统
CN104992393A (zh) * 2015-07-18 2015-10-21 深圳市前海安测信息技术有限公司 O2o模式下的电子诊疗单生成方法和网络医院平台
CN105046078A (zh) * 2015-07-18 2015-11-11 深圳市前海安测信息技术有限公司 基于电子诊疗单的诊疗机构识别方法和网络医院平台
CN105184714A (zh) * 2015-07-18 2015-12-23 深圳市前海安测信息技术有限公司 基于电子诊疗单的科室识别方法和网络医院平台
CN105118004A (zh) * 2015-08-04 2015-12-02 上海象形通讯科技有限公司 一种电子处方的安全使用方法
CN105808943A (zh) * 2016-03-04 2016-07-27 深圳市前海安测信息技术有限公司 应用于互联网医院的电子处方处理系统及方法

Also Published As

Publication number Publication date
CN105808943A (zh) 2016-07-27

Similar Documents

Publication Publication Date Title
US11907397B2 (en) Records access and management
WO2017148162A1 (zh) 应用于互联网医院的电子处方处理系统及方法
CN110462654B (zh) 记录存取和管理
Gonçalves et al. Security architecture for mobile e-health applications in medication control
US10164950B2 (en) Controlling access to clinical data analyzed by remote computing resources
US20180340466A1 (en) Method and apparatus for securing communications using multiple encryption keys
US10893027B2 (en) Secure access to individual information
US20210319862A1 (en) User Medical Record Transport Using Mobile Identification Credential
CN107004048B (zh) 记录访问和管理
CN107579980A (zh) 医疗物联网中的轻量级双重访问控制系统
Naresh et al. Secure lightweight IoT integrated RFID mobile healthcare system
JP2015201098A (ja) Web情報アクセスシステムとそのアクセス権限譲渡方法
Liu et al. A reliable authentication scheme of personal health records in cloud computing
Liu et al. Design of secure access control scheme for personal health record‐based cloud healthcare service
Boumezbeur et al. Blockchain-based electronic health records sharing scheme with data privacy verifiable.
CN106415557B (zh) 在基于云的临床决策支持系统(cdss)的去识别的患者数据上执行的控制动作
KR20210135405A (ko) 원격 상담을 통한 의료 기록 관리 방법
Suganthi et al. Secure and privacy in healthcare data using quaternion based neural network and encoder-elliptic curve deep neural network with blockchain on the cloud environment
Sadikin et al. Implementing digital signature for the secure electronic prescription using QR-code based on android smartphone
Nagamani et al. A mobile cloud-based approach for secure m-health prediction application
Yesmin Mobile Application for Secure Healthcare System
Martínez et al. A Comprehensive Model for Securing Sensitive Patient Data in a Clinical Scenario
Kim et al. The Framework of 3P-Based Secure eHealth-Information System
Malhotra et al. A novel implementation of signature, encryption and authentication (SEA) protocol on mobile patient monitoring devices
US20240184915A1 (en) Secure global health information exchange

Legal Events

Date Code Title Description
NENP Non-entry into the national phase

Ref country code: DE

121 Ep: the epo has been informed by wipo that ep was designated in this application

Ref document number: 16892343

Country of ref document: EP

Kind code of ref document: A1

32PN Ep: public notification in the ep bulletin as address of the adressee cannot be established

Free format text: NOTING OF LOSS OF RIGHTS PURSUANT TO RULE 112(1) EPC (EPO FORM 1205A DATED 14.03.2019)

122 Ep: pct application non-entry in european phase

Ref document number: 16892343

Country of ref document: EP

Kind code of ref document: A1