WO2016183897A1 - 网络医院中基于人体部位的导诊方法和系统 - Google Patents

网络医院中基于人体部位的导诊方法和系统 Download PDF

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Publication number
WO2016183897A1
WO2016183897A1 PCT/CN2015/081906 CN2015081906W WO2016183897A1 WO 2016183897 A1 WO2016183897 A1 WO 2016183897A1 CN 2015081906 W CN2015081906 W CN 2015081906W WO 2016183897 A1 WO2016183897 A1 WO 2016183897A1
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WIPO (PCT)
Prior art keywords
human body
body part
user
doctor
disease
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PCT/CN2015/081906
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English (en)
French (fr)
Inventor
张贯京
陈兴明
葛新科
张少鹏
方静芳
普拉纽克⋅克里斯基捏
古列莎⋅艾琳娜
波达别特⋅伊万
高伟明
梁昊原
梁艳妮
周荣
李慧玲
邢立立
Original Assignee
深圳市共创百业科技开发有限公司
深圳市易特科信息技术有限公司
深圳市前海安测信息技术有限公司
深圳市贝沃德克生物技术研究院有限公司
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Publication of WO2016183897A1 publication Critical patent/WO2016183897A1/zh

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    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06QINFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES; SYSTEMS OR METHODS SPECIALLY ADAPTED FOR ADMINISTRATIVE, COMMERCIAL, FINANCIAL, MANAGERIAL OR SUPERVISORY PURPOSES, NOT OTHERWISE PROVIDED FOR
    • G06Q30/00Commerce
    • G06Q30/06Buying, selling or leasing transactions
    • 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
    • G16H70/60ICT specially adapted for the handling or processing of medical references relating to pathologies
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/20ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms

Definitions

  • the invention relates to the field of life health technology, and in particular to a method and system for guiding a human body based on a network hospital.
  • the main object of the present invention is to provide a method and system for guiding a human body based on a human body in a network hospital, which solves the defects in the prior art that the guiding efficiency is not high, and the user cannot quickly find a medical resource suitable for oneself.
  • the present invention provides a method for guiding a human body based on a network hospital.
  • the human body part-based guiding method includes:
  • first-level human body part input by a user, wherein the first-level human body part is a human body part divided according to a preset manner;
  • the second-level human body part corresponding to the first-level human body part input by the user is matched from the database for the user to select;
  • doctor resources corresponding to the disease type selected by the user are matched from the database according to the type of disease selected by the user for selection by the user.
  • the database stores a relationship between the first human body part and a corresponding secondary human body part, a relationship between the second human body part and a corresponding disease type, and the disease type and corresponding doctor resources.
  • the relationship between the doctor's resources includes the doctor's hospital, the department, and the type of disease the doctor is good at.
  • the human body part-based guiding method further comprises:
  • the department resources corresponding to the disease type are matched from the database according to the type of disease selected by the user for the user to select.
  • the database stores a relationship between the first human body part and a corresponding secondary human body part, a relationship between the second human body part and a corresponding disease type, and the disease type and corresponding doctor resources.
  • the relationship between the doctor's resources includes the doctor's hospital, the department, and the type of disease the doctor is good at.
  • the human body part-based guiding method further comprises:
  • the second human body part corresponding to the first-level human body part is matched from the database according to the first-level human body part and the gender input by the user for the user to select.
  • the database stores a relationship between the first human body part and a corresponding secondary human body part, a relationship between the second human body part and a corresponding disease type, and the disease type and corresponding doctor resources.
  • the relationship between the doctor's resources includes the doctor's hospital, the department, and the type of disease the doctor is good at.
  • the physician resource further includes address information of the hospital where the doctor is located.
  • the present invention also provides a human body part-based guidance system in a network hospital.
  • the body part based guidance system includes:
  • a first-level human body part obtaining module configured to acquire a first-level human body part input by a user, wherein the first-level human body part is a human body part divided according to a preset manner;
  • the second-level human body part obtaining module selects a second-level human body part corresponding to the first-level human body part input by the user from the database according to the first-level human body part input by the user for the user to select;
  • a disease type matching module configured to select, according to a user selected second-level human body part, a disease type corresponding to the second-level human body part selected by the user for selection by the user;
  • the doctor resource matching module is configured to match the doctor resource corresponding to the disease type selected by the user from the database according to the type of the disease selected by the user for the user to select.
  • the body part based guidance system further comprises:
  • a gender acquisition module for obtaining the gender input by the user
  • the secondary human body part acquiring module is further configured to match the second-level human body parts corresponding to the first-level human body parts from the database according to the first-level human body parts and the gender input by the user, for the user to select.
  • the database stores a relationship between the first human body part and a corresponding secondary human body part, a relationship between the second human body part and a corresponding disease type, and the disease type and corresponding doctor resources.
  • the relationship between the doctor's resources includes the doctor's hospital, the department, and the type of disease the doctor is good at.
  • the body part based guidance system further comprises:
  • the department resource matching module is configured to match the department resources corresponding to the disease type from the database according to the disease type selected by the user for the user to select.
  • the body part based guidance system further comprises:
  • a gender acquisition module for obtaining the gender input by the user
  • the secondary human body part acquiring module is further configured to match the second-level human body parts corresponding to the first-level human body parts from the database according to the first-level human body parts and the gender input by the user, for the user to select.
  • the database stores a relationship between the first human body part and a corresponding secondary human body part, a relationship between the second human body part and a corresponding disease type, and the disease type and corresponding doctor resources.
  • the relationship between the doctor's resources includes the doctor's hospital, the department, and the type of disease the doctor is good at.
  • the physician resource further includes address information of the hospital where the doctor is located.
  • the embodiment of the present invention obtains a first-level human body part input by a user, and matches a second-level human body part corresponding to the first-level human body part input by the user from a database for the user to select.
  • the corresponding disease type is matched from the database for the user to select
  • the corresponding doctor resources are matched from the database for the user to select according to the disease type selected by the user.
  • the embodiment of the invention is based on the secondary human body parts directly related to the condition, and after multiple interactions with the user, the information closest to the user's needs is matched, the doctor resources of the user demand are accurately obtained, and the efficiency of the consultation is improved.
  • FIG. 1 is a schematic flow chart of a first preferred embodiment of a method for guiding a human body based on a human body in a network hospital according to the present invention
  • FIG. 2 is a schematic flow chart of a second preferred embodiment of a human body part-based guiding method in a network hospital according to the present invention
  • FIG. 3 is a schematic flow chart of a third preferred embodiment of a human body part-based guiding method in a network hospital according to the present invention.
  • FIG. 4 is a schematic structural view of a first preferred embodiment of a human body part-based guidance system in a network hospital according to the present invention
  • FIG. 5 is a schematic structural view of a second preferred embodiment of a human body part-based guidance system in a network hospital according to the present invention.
  • FIG. 6 is a schematic structural view of a third preferred embodiment of a human body part-based guidance system in a network hospital according to the present invention.
  • the main object of the present invention is to solve the defects in the prior art that the guiding efficiency is not high, and the user cannot quickly find a medical resource suitable for oneself.
  • the innovation of the present invention is to provide a human body part-based guiding method and system in a network hospital. Based on the secondary human body parts directly related to the disease, after multiple interactions with the user, the information closest to the user's needs is matched, and the doctor's resources required by the user are accurately obtained, thereby improving the efficiency of the consultation.
  • the present invention provides a method for guiding a human body based on a network hospital.
  • the human body part-based guiding method includes:
  • S10 Acquire a first-level human body part input by a user, where the first-level human body part is a human body part divided according to a preset manner;
  • the first human body part is a human body part divided according to a preset manner.
  • the human body composition it is divided into the head, the neck, the upper limb, the chest, the waist, the pelvis, the genitals, the buttocks, the abdomen, the lower limbs, the bones or the whole body.
  • the whole body is summarized as a whole body.
  • the input box can be used for the user to input the human body part of the disease to obtain the first-level human body part input by the user, or the user can select the first-level human body part of the disease to obtain the first-level human body input by the user by providing the selection item.
  • the part, the selection item is an option of a first-level body part divided according to a preset manner.
  • S20 The second-level human body part corresponding to the first-level human body part input by the user is matched from the database according to the first-level human body part input by the user for the user to select;
  • the second-level human body part corresponding to the first-level human body part input by the user is matched from the database for the user to select.
  • the database stores a correspondence between a first-level human body part and a second-level human body part, and each of the first-level human body parts corresponds to a plurality of second-level human body parts.
  • Each of the first-level human body parts is expanded and refined to form a second-level human body part corresponding to the first-level human body part, for example, the head part of the first-level human body part is further expanded and refined into two-level human body parts such as eyes, mouth, ears, nose and brain;
  • the neck of the first-level part is further expanded into a secondary human body part such as the throat and the thyroid;
  • the abdominal part of the first-level human body is further expanded and refined into a secondary human body part such as the pancreas, liver, gallbladder, spleen, stomach, appendix, intestine and peritoneum. Not listed here.
  • the embodiment of the present invention is applied to a user who has a relatively good understanding of his or her own disease, and at least has a clear understanding of the body part of the self-discipline, and is suitable for further consultation on the basis of the diagnosis, and is not suitable for the initial diagnosis.
  • Guidance is not suitable for the initial diagnosis.
  • S30 selecting, according to the second-level human body part selected by the user, a type of disease corresponding to the second-level human body part selected by the user in the database for the user to select;
  • the user selects a disease type corresponding to the second-level human body part selected by the user according to the second-level human body part selected by the user.
  • the relationship between the secondary human body parts and the corresponding disease type is stored in the database.
  • There is a one-to-many relationship between the secondary human body part and the disease type that is, a certain human body part may suffer from a variety of different diseases.
  • the type of disease matched from the database according to the user's selected secondary body part can be displayed in the form of a list for the user to select.
  • the user selects the type of disease most relevant to his or her condition based on the type of disease displayed by the client.
  • the user has obtained the disease site and the disease type that he or she is suffering from by other means before applying the method provided by the embodiment of the present invention.
  • S40 Match the doctor resource corresponding to the disease type selected by the user from the database according to the type of the disease selected by the user for the user to select.
  • the doctor resource corresponding to the disease type selected by the user is matched from the database according to the type of the disease selected by the user for the user to select.
  • the database stores the correspondence between the disease type and the doctor's resources, and the disease type has a one-to-many relationship with the doctor resources, that is, the same disease type has multiple doctor resources for the user to select.
  • the doctor resources include the hospital where the doctor is located, the department in which the doctor is located, and the type of disease that the doctor is good at.
  • the doctor resources also include the doctor's name, the doctor's title, the doctor's scheduling information, and the number of daily registrations, such as the number of doctors who are expected to be registered each day, the number of reserved registrations, and the number of remaining reservations.
  • the doctor resource further includes address information of a hospital where the doctor is located. Users can choose the doctor resources that suit their needs according to their needs.
  • the first-level human body part input by the user is obtained, and the second-level human body part corresponding to the first-level human body part input by the user is matched from the database for the user to select, and the second-level human body part selected by the user is matched from the database.
  • the type of disease is selected by the user, and the corresponding doctor resources are matched from the database for the user to select according to the type of disease selected by the user.
  • the embodiment of the invention is based on the secondary human body parts directly related to the condition, and after multiple interactions with the user, the information closest to the user's needs is matched, the doctor resources of the user demand are accurately obtained, and the efficiency of the consultation is improved.
  • FIG. 2 is a schematic flow chart showing a second preferred embodiment of a human body-based guiding method in a network hospital according to the present invention.
  • the human body part-based guiding method further includes:
  • S50 Match the department resources corresponding to the disease type from the database according to the type of the disease selected by the user for the user to select.
  • the department resources corresponding to the disease type are matched from the database according to the type of disease selected by the user for the user to select.
  • the database stores the relationship between the disease type and the corresponding department information.
  • the disease type has a one-to-many relationship with the department information, that is, a disease corresponds to a type of department, which represents different hospitals capable of treating The department of the disease type. Since the department information represents a department in which different hospitals can treat the disease type, the user can select the department information that suits their needs. For example, according to the needs of the hospital, the department of the hospital close to the place of residence is selected, or the department with the top three qualified hospitals is selected, which facilitates the user to consult according to the needs of the department.
  • step S50 is performed before or after step S40.
  • Step S50 shown in Fig. 2 is executed after step S40.
  • FIG. 3 is a schematic flow chart showing a third preferred embodiment of a human body part-based guiding method in a network hospital according to the present invention.
  • the human body part-based guiding method further includes:
  • S70 Match the second-level human body parts corresponding to the first-level human body parts from the database according to the first-level human body parts and the gender input by the user for the user to select.
  • the user in the embodiment of the present invention, is provided with a first-level human body part and gender for the user. Input.
  • the embodiment of the present invention takes into consideration the difference between the male and the female in the first human body part-genital part, and when the first human body part input by the user is taken as the genital part, The user is prompted to input the gender, and the corresponding secondary body parts are matched according to the genitals and genders input by the user, and the corresponding second body parts are returned for the user to select.
  • step S60 is performed after step S10, and step S70 is performed instead of step S20.
  • the embodiment of the invention fully considers the difference of the second-level human body parts corresponding to the genitals of different genders, and the consultation is more accurate and flexible.
  • the invention also provides a human body part based guidance system in a network hospital.
  • FIG. 4 is a schematic structural view showing a first preferred embodiment of a human body part-based guidance system in a network hospital according to the present invention.
  • the human body part-based guidance system includes:
  • a first-level human body part obtaining module 10 configured to acquire a first-level human body part input by a user, wherein the first-level human body part is a human body part divided according to a preset manner;
  • the first human body part is a human body part divided according to a preset manner.
  • the human body composition it is divided into the head, the neck, the upper limb, the chest, the waist, the pelvis, the genitals, the buttocks, the abdomen, the lower limbs, the bones or the whole body.
  • the whole body is summarized as a whole body.
  • the first-level human body part obtaining module 10 can input the human body part of the disease to obtain the first-level human body part input by the user through the input box, or can provide the user with the first-level human body part of the disease by providing the selection item.
  • Obtaining a first-level human body part input by the user, and the selection item is an option of a first-level human body part divided according to a preset manner.
  • the second-level human body part obtaining module 20 selects a second-level human body part corresponding to the first-level human body part input by the user from the database according to the first-level human body part input by the user for the user to select;
  • the secondary human body part acquiring module 20 selects a secondary human body part corresponding to the first-level human body part input by the user from the database according to the first-level human body part input by the user for the user to select.
  • the database stores a correspondence between a first-level human body part and a second-level human body part, and each of the first-level human body parts corresponds to a plurality of second-level human body parts.
  • Each of the first-level human body parts is expanded and refined to form a second-level human body part corresponding to the first-level human body part, for example, the head part of the first-level human body part is further expanded and refined into two-level human body parts such as eyes, mouth, ears, nose and brain;
  • the neck of the first-level part is further expanded into a secondary human body part such as the throat and the thyroid;
  • the abdominal part of the first-level human body is further expanded and refined into a secondary human body part such as the pancreas, liver, gallbladder, spleen, stomach, appendix, intestine and peritoneum. Not listed here.
  • the embodiment of the present invention is applied to a user who has a relatively good understanding of his or her own disease, and at least has a clear understanding of the body part of the self-discipline, and is suitable for further consultation on the basis of the diagnosis, and is not suitable for the initial diagnosis.
  • Guidance is not suitable for the initial diagnosis.
  • the disease type matching module 30 is configured to select, according to the second-level human body part selected by the user, a disease type corresponding to the second-level human body part selected by the user in the database for the user to select;
  • the disease type matching module 30 selects a disease type corresponding to the second human body part selected by the user from the database according to the second-level human body part selected by the user for the user to select.
  • the relationship between the secondary human body parts and the corresponding disease type is stored in the database. There is a one-to-many relationship between the secondary human body part and the disease type, that is, a certain human body part may suffer from a variety of different diseases.
  • the type of disease matched from the database according to the user's selected secondary body part can be displayed in the form of a list for the user to select.
  • the user selects the type of disease most relevant to his or her condition based on the type of disease displayed by the client.
  • the user has obtained the disease site and the disease type that he or she is suffering from by other means before applying the method provided by the embodiment of the present invention.
  • the doctor resource matching module 40 is configured to match the doctor resource corresponding to the disease type selected by the user from the database according to the type of the disease selected by the user for the user to select.
  • the doctor resource matching module 40 matches the doctor resources corresponding to the disease type selected by the user from the database according to the disease type selected by the user for the user to select.
  • the database stores the correspondence between the disease type and the doctor's resources, and the disease type has a one-to-many relationship with the doctor resources, that is, the same disease type has multiple doctor resources for the user to select.
  • the doctor resources include the hospital where the doctor is located, the department in which the doctor is located, and the type of disease that the doctor is good at.
  • the doctor resources also include the doctor's name, the doctor's title, the doctor's scheduling information, and the number of daily registrations, such as the number of doctors who are expected to be registered each day, the number of reserved registrations, and the number of remaining reservations.
  • the doctor resource further includes address information of a hospital where the doctor is located. Users can choose the doctor resources that suit their needs according to their needs.
  • the first-level human body part input by the user is obtained by the first-level human body part acquiring module, and the second-level human body part obtaining module matches the second-level human body part corresponding to the first-level human body part input by the user from the database for the user to select, the disease
  • the type matching module selects the corresponding disease type from the database for the user to select according to the second-level human body part selected by the user
  • the doctor resource matching module matches the corresponding doctor resource from the database for the user to select according to the disease type selected by the user.
  • the embodiment of the invention is based on the secondary human body parts directly related to the condition, and after multiple interactions with the user, the information closest to the user's needs is matched, the doctor resources of the user demand are accurately obtained, and the efficiency of the consultation is improved.
  • FIG. 5 is a schematic structural view showing a second preferred embodiment of a human body part-based guidance system in a network hospital of the present invention.
  • the human body part-based guidance system further includes:
  • the department resource matching module 50 is configured to match the department resources corresponding to the disease type from the database according to the disease type selected by the user for the user to select.
  • the department resource matching module 50 matches the department resources corresponding to the disease type from the database according to the disease type selected by the user for the user to select.
  • the database stores the relationship between the disease type and the corresponding department information.
  • the disease type has a one-to-many relationship with the department information, that is, a disease corresponds to a type of department, which represents different hospitals capable of treating The department of the disease type. Since the department information represents a department in which different hospitals can treat the disease type, the user can select the department information that suits their needs. For example, according to the needs of the hospital, the department of the hospital close to the place of residence is selected, or the department with the top three qualified hospitals is selected, which facilitates the user to consult according to the needs of the department.
  • FIG. 6 is a schematic structural view showing a third preferred embodiment of a human body part-based guidance system in a network hospital according to the present invention.
  • the first preferred embodiment of the human body part-based guidance system in the network hospital of the present invention in the embodiment, the human body part-based guidance system further includes:
  • a gender acquisition module 60 configured to acquire a gender input by the user
  • the secondary human body part obtaining module 20 is further configured to match the second-level human body parts corresponding to the first-level human body parts from the database according to the first-level human body parts and the gender input by the user, for the user to select.
  • the first human body part acquiring module 10 is provided for the user.
  • the gender acquisition module 60 is for the user to input a first-level body part and gender.
  • the embodiment of the present invention takes into account the difference between the male and the female in the first human body part-genital part, and when the first human body part acquiring module 10 acquires the first-level human body input by the user.
  • the user is prompted to input the gender through the gender acquisition module 60, and the second-level human body part obtaining module 20 matches the corresponding second-level human body part according to the genital part and gender input by the user, and returns the corresponding second-level human body part for supply.
  • the gender acquisition module 60 the gender acquisition module 60
  • the second-level human body part obtaining module 20 matches the corresponding second-level human body part according to the genital part and gender input by the user, and returns the corresponding second-level human body part for supply.
  • the embodiment of the invention fully considers the difference of the second-level human body parts corresponding to the genitals of different genders, and the consultation is more accurate and flexible.

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Abstract

本发明公开了一种网络医院中基于人体部位的导诊方法和系统。本发明实施例通过获取用户输入的一级人体部位,从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择,根据用户选择的二级人体部位从数据库中匹配对应的疾病类型供用户选择,根据用户选择的疾病类型从数据库中匹配对应的医生资源供用户选择。本发明实施例基于病症直接相关的二级人体部位,经过多次与用户交互,针对最接近用户需求的信息进行匹配,准确地获取用户需求的医生资源,提高了导诊的效率。

Description

网络医院中基于人体部位的导诊方法和系统
技术领域
本发明涉及生命健康技术领域,尤其涉及一种网络医院中基于人体部位的导诊方法和系统。
背景技术
随着互联网技术的发展,集成现有的医疗资源并有效地解决人们看病难的问题是互联网+医疗领域亟需解决的问题。目前的导诊方法和系统大多是基于患者选择或自述的身体症状以及经验数据库来引导患者找到相应的医疗资源,但由于症状的不确定性,即一个症状可能是不同疾病引起,而同一疾病可以表现不同的临床症状,这种情况使得计算机实现疾病类型的判断非常困难,且患者需要从浩瀚的医院和科室资源中选择适合自己的医疗资源显得无能为力,导致导诊效率不高,用户不能快速找到适合自己的医疗资源。
发明内容
本发明的主要目的在于提供一种网络医院中基于人体部位的导诊方法和系统,解决现有技术中导诊效率不高,用户不能快速找到适合自己的医疗资源的缺陷。
为实现上述目的,本发明提供了一种网络医院中基于人体部位的导诊方法。
所述基于人体部位的导诊方法包括:
获取用户输入的一级人体部位,所述一级人体部位为按照预设的方式划分的人体部位;
根据用户输入的一级人体部位从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择;
根据用户选择的二级人体部位从数据库中匹配所述用户选择的二级人体部位对应的疾病类型供用户选择;
根据用户选择的疾病类型从数据库中匹配所述用户选择的疾病类型对应的医生资源供用户选择。
在其中一个实施例中,所述数据库存储所述一级人体部位与对应的二级人体部位的关系、所述二级人体部位与对应的疾病类型的关系以及所述疾病类型与对应的医生资源的关系,所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。
在其中一个实施例中,所述基于人体部位的导诊方法还包括:
根据用户选择的疾病类型从数据库中匹配所述疾病类型对应的科室资源供用户选择。
在其中一个实施例中,所述数据库存储所述一级人体部位与对应的二级人体部位的关系、所述二级人体部位与对应的疾病类型的关系以及所述疾病类型与对应的医生资源的关系,所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。
在其中一个实施例中,所述基于人体部位的导诊方法还包括:
获取用户输入的性别;
根据所述一级人体部位以及所述用户输入的性别从数据库中匹配所述一级人体部位对应的二级人体部位供用户选择。
在其中一个实施例中,所述数据库存储所述一级人体部位与对应的二级人体部位的关系、所述二级人体部位与对应的疾病类型的关系以及所述疾病类型与对应的医生资源的关系,所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。
在其中一个实施例中,所述医生资源还包括所述医生所在医院的地址信息。
为实现上述目的,本发明还提供了一种网络医院中基于人体部位的导诊系统。
所述基于人体部位的导诊系统包括:
一级人体部位获取模块,用于获取用户输入的一级人体部位,所述一级人体部位为按照预设的方式划分的人体部位;
二级人体部位获取模块,根据用户输入的一级人体部位从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择;
疾病类型匹配模块,用于根据用户选择的二级人体部位从数据库中匹配所述用户选择的二级人体部位对应的疾病类型供用户选择;
医生资源匹配模块,用于根据用户选择的疾病类型从数据库中匹配所述用户选择的疾病类型对应的医生资源供用户选择。
在其中一个实施例中,所述基于人体部位的导诊系统还包括:
性别获取模块,用于获取用户输入的性别;
所述二级人体部位获取模块还用于根据所述一级人体部位以及所述用户输入的性别从数据库中匹配所述一级人体部位对应的二级人体部位,供用户选择。
在其中一个实施例中,所述数据库存储所述一级人体部位与对应的二级人体部位的关系、所述二级人体部位与对应的疾病类型的关系以及所述疾病类型与对应的医生资源的关系,所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。
在其中一个实施例中,所述基于人体部位的导诊系统还包括:
科室资源匹配模块,用于根据用户选择的疾病类型从数据库中匹配所述疾病类型对应的科室资源供用户选择。
在其中一个实施例中,所述基于人体部位的导诊系统还包括:
性别获取模块,用于获取用户输入的性别;
所述二级人体部位获取模块还用于根据所述一级人体部位以及所述用户输入的性别从数据库中匹配所述一级人体部位对应的二级人体部位,供用户选择。
在其中一个实施例中,所述数据库存储所述一级人体部位与对应的二级人体部位的关系、所述二级人体部位与对应的疾病类型的关系以及所述疾病类型与对应的医生资源的关系,所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。
在其中一个实施例中,所述医生资源还包括所述医生所在医院的地址信息。
本发明采用上述技术方案,带来的技术效果为:本发明实施例通过获取用户输入的一级人体部位,从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择,根据用户选择的二级人体部位从数据库中匹配对应的疾病类型供用户选择,根据用户选择的疾病类型从数据库中匹配对应的医生资源供用户选择。本发明实施例基于病症直接相关的二级人体部位,经过多次与用户交互,针对最接近用户需求的信息进行匹配,准确地获取用户需求的医生资源,提高了导诊的效率。
附图说明
图1为本发明网络医院中基于人体部位的导诊方法第一较佳实施例流程示意图;
图2为本发明网络医院中基于人体部位的导诊方法第二较佳实施例流程示意图;
图3为本发明网络医院中基于人体部位的导诊方法第三较佳实施例流程示意图;
图4为本发明网络医院中基于人体部位的导诊系统第一较佳实施例结构示意图;
图5为本发明网络医院中基于人体部位的导诊系统第二较佳实施例结构示意图;
图6为本发明网络医院中基于人体部位的导诊系统第三较佳实施例结构示意图。
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
本发明的主要目的在于解决现有技术中导诊效率不高,用户不能快速找到适合自己的医疗资源的缺陷,本发明的创新点在于提供一种网络医院中基于人体部位的导诊方法和系统,基于病症直接相关的二级人体部位,经过多次与用户交互,针对最接近用户需求的信息进行匹配,准确地获取用户需求的医生资源,提高了导诊的效率。
为了使本发明的目的、技术方案及优点更加清楚明白,以下结合附图及实施例,对本发明进行进一步详细说明。应当理解,此处所描述的具体实施例仅用以解释本发明,并不用于限定本发明。
为实现上述目的,本发明提供了一种网络医院中基于人体部位的导诊方法。
图1为本发明网络医院中基于人体部位的导诊方法第一较佳实施例流程示意图。参照图1,所述基于人体部位的导诊方法包括:
S10:获取用户输入的一级人体部位,所述一级人体部位为按照预设的方式划分的人体部位;
具体地,所述一级人体部位为按照预设的方式划分的人体部位。例如按照人体构成划分为头部、颈部、上肢、胸部、腰部、盆腔、生殖部、臀部、腹部、下肢、骨或全身,当病症不包括在上述某个具体部位时,将其概括为全身。可以通过输入框的方式供用户输入发生病症的人体部位以获取用户输入的一级人体部位,也可以通过提供选择项的方式供用户选择发生病症的一级人体部位以获取用户输入的一级人体部位,所述选择项为按照预设的方式划分的一级人体部位的选项。
S20:根据用户输入的一级人体部位从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择;
具体地,根据用户输入的一级人体部位从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择。所述数据库中存储了一级人体部位与二级人体部位之间的对应关系,每个一级人体部位对应多个二级人体部位。将每个一级人体部位扩展细化,构成一级人体部位对应的二级人体部位,例如一级人体部位头部进一步扩展细化为眼、口、耳、鼻、脑等二级人体部位;一级部位颈部进一步扩展细化为咽喉、甲状腺等二级人体部位;一级人体部位腹部进一步扩展细化为胰腺、肝、胆、脾、胃、阑尾、肠、腹膜等二级人体部位,在此不一一列出。可以理解的,本发明实施例应用于用户对自己疾病比较了解,最起码对自身病症的身体部位有清楚的认识的情况下,适合于在确诊的基础上进行进一步导诊,不适合初次诊疗时的导诊。
S30:根据用户选择的二级人体部位从数据库中匹配所述用户选择的二级人体部位对应的疾病类型供用户选择;
具体地,根据用户选择的二级人体部位从数据库中匹配所述用户选择的二级人体部位对应的疾病类型供用户选择。数据库中存储了二级人体部位与对应的疾病类型之间的关系。所述二级人体部位与所述疾病类型之间为一对多的关系,即某个人体部位可能会患多种不同的疾病。根据用户选择的二级人体部位从数据库中匹配的疾病类型可以以列表的形式显示出来供用户选择。用户根据客户端显示的疾病类型选择与自身病症最相关的疾病类型。优选地,用户在应用本发明实施例提供的方法导诊之前,已经通过其他途径获知自身所患的疾病部位和疾病类型。
S40:根据用户选择的疾病类型从数据库中匹配所述用户选择的疾病类型对应的医生资源供用户选择。
具体地,根据用户选择的疾病类型从数据库中匹配所述用户选择的疾病类型对应的医生资源供用户选择。数据库中存储了疾病类型与医生资源之间的对应关系,疾病类型与所述医生资源之间为一对多的关系,即同一种疾病类型有多个医生资源供用户选择。所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。所述医生资源还包括医生姓名、医生职称、医生的排班信息以及每天挂号的数量,例如医生预计每天可以挂号的数量、已预约挂号数量、剩余可预约的数量等。优选地,所述医生资源还包括所述医生所在医院的地址信息。用户可根据自身需求选择适合自身需求的医生资源。
本发明实施例通过获取用户输入的一级人体部位,从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择,根据用户选择的二级人体部位从数据库中匹配对应的疾病类型供用户选择,根据用户选择的疾病类型从数据库中匹配对应的医生资源供用户选择。本发明实施例基于病症直接相关的二级人体部位,经过多次与用户交互,针对最接近用户需求的信息进行匹配,准确地获取用户需求的医生资源,提高了导诊的效率。
图2所示为本发明网络医院中基于人体部位的导诊方法第二较佳实施例流程示意图。参照图2,基于本发明网络医院中基于人体部位的导诊方法第一较佳实施例,所述基于人体部位的导诊方法还包括:
S50:根据用户选择的疾病类型从数据库中匹配所述疾病类型对应的科室资源供用户选择。
具体地,根据用户选择的疾病类型从数据库中匹配所述疾病类型对应的科室资源供用户选择。数据库中存储了疾病类型与对应的科室信息之间的关系,所述疾病类型与科室信息之间为一对多的关系,即一种疾病对应一类科室,该类科室代表了不同医院能够治疗该疾病类型的科室。由于科室信息代表了不同医院能够治疗该疾病类型的科室,因此用户可选择适合自己需求的科室信息。例如根据自身需求选择距离居住地近的医院的科室,或选择具有三甲资质医院的科室,方便了用户根据科室需求导诊。
优选地,步骤S50在步骤S40之前或之后执行。图2所示步骤S50在步骤S40之后执行。
图3所示为本发明网络医院中基于人体部位的导诊方法第三较佳实施例流程示意图。参照图3,基于本发明网络医院中基于人体部位的导诊方法第一较佳实施例,所述基于人体部位的导诊方法还包括:
S60:获取用户输入的性别;
S70:根据所述一级人体部位以及所述用户输入的性别从数据库中匹配所述一级人体部位对应的二级人体部位供用户选择。
具体地,由于性别的差别,某些人体部位会有所不同,因此,考虑到男性和女性在某些人体部位的差异,在本发明实施例中,为用户提供一级人体部位和性别供用户输入。作为本发明较佳实施例,在实施该步骤时,本发明实施例考虑到男性和女性在一级人体部位-生殖部的差异,当取到用户输入的一级人体部位为生殖部时,同时提示用户输入性别,根据用户输入的生殖部和性别匹配其对应的二级人体部位,并返回对应的二级人体部位供用户选择。
优选地,如图3所示,步骤S60在S10步骤之后执行,步骤S70替代步骤S20执行。本发明实施例充分考虑了不同性别的生殖部对应的二级人体部位的差异,导诊更准确和灵活。
本发明还提供了一种网络医院中基于人体部位的导诊系统。
图4所示为本发明网络医院中基于人体部位的导诊系统第一较佳实施例结构示意图。参照图4,所述基于人体部位的导诊系统包括:
一级人体部位获取模块10,用于获取用户输入的一级人体部位,所述一级人体部位为按照预设的方式划分的人体部位;
具体地,所述一级人体部位为按照预设的方式划分的人体部位。例如按照人体构成划分为头部、颈部、上肢、胸部、腰部、盆腔、生殖部、臀部、腹部、下肢、骨或全身,当病症不包括在上述某个具体部位时,将其概括为全身。一级人体部位获取模块10可以通过输入框的方式供用户输入发生病症的人体部位以获取用户输入的一级人体部位,也可以通过提供选择项的方式供用户选择发生病症的一级人体部位以获取用户输入的一级人体部位,所述选择项为按照预设的方式划分的一级人体部位的选项。
二级人体部位获取模块20,根据用户输入的一级人体部位从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择;
具体地,二级人体部位获取模块20根据用户输入的一级人体部位从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择。所述数据库中存储了一级人体部位与二级人体部位之间的对应关系,每个一级人体部位对应多个二级人体部位。将每个一级人体部位扩展细化,构成一级人体部位对应的二级人体部位,例如一级人体部位头部进一步扩展细化为眼、口、耳、鼻、脑等二级人体部位;一级部位颈部进一步扩展细化为咽喉、甲状腺等二级人体部位;一级人体部位腹部进一步扩展细化为胰腺、肝、胆、脾、胃、阑尾、肠、腹膜等二级人体部位,在此不一一列出。可以理解的,本发明实施例应用于用户对自己疾病比较了解,最起码对自身病症的身体部位有清楚的认识的情况下,适合于在确诊的基础上进行进一步导诊,不适合初次诊疗时的导诊。
疾病类型匹配模块30,用于根据用户选择的二级人体部位从数据库中匹配所述用户选择的二级人体部位对应的疾病类型供用户选择;
具体地,疾病类型匹配模块30根据用户选择的二级人体部位从数据库中匹配所述用户选择的二级人体部位对应的疾病类型供用户选择。数据库中存储了二级人体部位与对应的疾病类型之间的关系。所述二级人体部位与所述疾病类型之间为一对多的关系,即某个人体部位可能会患多种不同的疾病。根据用户选择的二级人体部位从数据库中匹配的疾病类型可以以列表的形式显示出来供用户选择。用户根据客户端显示的疾病类型选择与自身病症最相关的疾病类型。优选地,用户在应用本发明实施例提供的方法导诊之前,已经通过其他途径获知自身所患的疾病部位和疾病类型。
医生资源匹配模块40,用于根据用户选择的疾病类型从数据库中匹配所述用户选择的疾病类型对应的医生资源供用户选择。
具体地,医生资源匹配模块40根据用户选择的疾病类型从数据库中匹配所述用户选择的疾病类型对应的医生资源供用户选择。数据库中存储了疾病类型与医生资源之间的对应关系,疾病类型与所述医生资源之间为一对多的关系,即同一种疾病类型有多个医生资源供用户选择。所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。所述医生资源还包括医生姓名、医生职称、医生的排班信息以及每天挂号的数量,例如医生预计每天可以挂号的数量、已预约挂号数量、剩余可预约的数量等。优选地,所述医生资源还包括所述医生所在医院的地址信息。用户可根据自身需求选择适合自身需求的医生资源。
本发明实施例通过一级人体部位获取模块获取用户输入的一级人体部位,二级人体部位获取模块从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择,疾病类型匹配模块根据用户选择的二级人体部位从数据库中匹配对应的疾病类型供用户选择,医生资源匹配模块根据用户选择的疾病类型从数据库中匹配对应的医生资源供用户选择。本发明实施例基于病症直接相关的二级人体部位,经过多次与用户交互,针对最接近用户需求的信息进行匹配,准确地获取用户需求的医生资源,提高了导诊的效率。
图5所示为本发明网络医院中基于人体部位的导诊系统第二较佳实施例结构示意图。参照图5,基于本发明网络医院中基于人体部位的导诊系统第一较佳实施例,在本实施例中,所述基于人体部位的导诊系统还包括:
科室资源匹配模块50,用于根据用户选择的疾病类型从数据库中匹配所述疾病类型对应的科室资源供用户选择。
具体地,科室资源匹配模块50根据用户选择的疾病类型从数据库中匹配所述疾病类型对应的科室资源供用户选择。数据库中存储了疾病类型与对应的科室信息之间的关系,所述疾病类型与科室信息之间为一对多的关系,即一种疾病对应一类科室,该类科室代表了不同医院能够治疗该疾病类型的科室。由于科室信息代表了不同医院能够治疗该疾病类型的科室,因此用户可选择适合自己需求的科室信息。例如根据自身需求选择距离居住地近的医院的科室,或选择具有三甲资质医院的科室,方便了用户根据科室需求导诊。
图6所示为本发明网络医院中基于人体部位的导诊系统第三较佳实施例结构示意图。参照图6,基于本发明网络医院中基于人体部位的导诊系统第一较佳实施例,在本实施例中,所述基于人体部位的导诊系统还包括:
性别获取模块60,用于获取用户输入的性别;
所述二级人体部位获取模块20还用于根据所述一级人体部位以及所述用户输入的性别从数据库中匹配所述一级人体部位对应的二级人体部位,供用户选择。
具体地,由于性别的差别,某些人体部位会有所不同,因此,考虑到男性和女性在某些人体部位的差异,在本发明实施例中,为用户提供一级人体部位获取模块10和性别获取模块60供用户输入一级人体部位和性别。作为本发明较佳实施例,在实施该步骤时,本发明实施例考虑到男性和女性在一级人体部位-生殖部的差异,当一级人体部位获取模块10获取到用户输入的一级人体部位为生殖部时,同时提示用户通过性别获取模块60输入性别,二级人体部位获取模块20根据用户输入的生殖部和性别匹配其对应的二级人体部位,并返回对应的二级人体部位供用户选择。
本发明实施例充分考虑了不同性别的生殖部对应的二级人体部位的差异,导诊更准确和灵活。
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. 一种网络医院中基于人体部位的导诊方法,其特征在于,所述基于人体部位的导诊方法包括:
    获取用户输入的一级人体部位,所述一级人体部位为按照预设的方式划分的人体部位;
    根据用户输入的一级人体部位从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择;
    根据用户选择的二级人体部位从数据库中匹配所述用户选择的二级人体部位对应的疾病类型供用户选择;
    根据用户选择的疾病类型从数据库中匹配所述用户选择的疾病类型对应的医生资源供用户选择。
  2. 如权利要求1所述的基于人体部位的导诊方法,其特征在于,所述数据库存储所述一级人体部位与对应的二级人体部位的关系、所述二级人体部位与对应的疾病类型的关系以及所述疾病类型与对应的医生资源的关系,所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。
  3. 如权利要求1所述的基于人体部位的导诊方法,其特征在于,所述基于人体部位的导诊方法还包括:
    根据用户选择的疾病类型从数据库中匹配所述疾病类型对应的科室资源供用户选择。
  4. 如权利要求3所述的基于人体部位的导诊方法,其特征在于,所述数据库存储所述一级人体部位与对应的二级人体部位的关系、所述二级人体部位与对应的疾病类型的关系以及所述疾病类型与对应的医生资源的关系,所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。
  5. 如权利要求1所述的基于人体部位的导诊方法,其特征在于,所述基于人体部位的导诊方法还包括:
    获取用户输入的性别;
    根据所述一级人体部位以及所述用户输入的性别从数据库中匹配所述一级人体部位对应的二级人体部位供用户选择。
  6. 如权利要求5所述的基于人体部位的导诊方法,其特征在于,所述数据库存储所述一级人体部位与对应的二级人体部位的关系、所述二级人体部位与对应的疾病类型的关系以及所述疾病类型与对应的医生资源的关系,所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。
  7. 如权利要求6所述的基于人体部位的导诊方法,其特征在于,所述医生资源还包括所述医生所在医院的地址信息。
  8. 一种网络医院中基于人体部位的导诊系统,其特征在于,所述基于人体部位的导诊系统包括:
    一级人体部位获取模块,用于获取用户输入的一级人体部位,所述一级人体部位为按照预设的方式划分的人体部位;
    二级人体部位获取模块,根据用户输入的一级人体部位从数据库中匹配所述用户输入的一级人体部位对应的二级人体部位供用户选择;
    疾病类型匹配模块,用于根据用户选择的二级人体部位从数据库中匹配所述用户选择的二级人体部位对应的疾病类型供用户选择;
    医生资源匹配模块,用于根据用户选择的疾病类型从数据库中匹配所述用户选择的疾病类型对应的医生资源供用户选择。
  9. 如权利要求8所述的基于人体部位的导诊系统,其特征在于,所述基于人体部位的导诊系统还包括:
    性别获取模块,用于获取用户输入的性别;
    所述二级人体部位获取模块还用于根据所述一级人体部位以及所述用户输入的性别从数据库中匹配所述一级人体部位对应的二级人体部位,供用户选择。
  10. 如权利要求8所述的基于人体部位的导诊系统,其特征在于,所述数据库存储所述一级人体部位与对应的二级人体部位的关系、所述二级人体部位与对应的疾病类型的关系以及所述疾病类型与对应的医生资源的关系,所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。
  11. 如权利要求8所述的基于人体部位的导诊系统,其特征在于,所述基于人体部位的导诊系统还包括:
    科室资源匹配模块,用于根据用户选择的疾病类型从数据库中匹配所述疾病类型对应的科室资源供用户选择。
  12. 如权利要求11所述的基于人体部位的导诊系统,其特征在于,所述基于人体部位的导诊系统还包括:
    性别获取模块,用于获取用户输入的性别;
    所述二级人体部位获取模块还用于根据所述一级人体部位以及所述用户输入的性别从数据库中匹配所述一级人体部位对应的二级人体部位,供用户选择。
  13. 如权利要求11所述的基于人体部位的导诊系统,其特征在于,所述数据库存储所述一级人体部位与对应的二级人体部位的关系、所述二级人体部位与对应的疾病类型的关系以及所述疾病类型与对应的医生资源的关系,所述医生资源包括医生所在医院、所在科室以及医生擅长救治的疾病类型。
  14. 如权利要求13所述的基于人体部位的导诊系统,其特征在于,所述医生资源还包括所述医生所在医院的地址信息。
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