CN113593667A - Community two-cancer screening health management method and system - Google Patents

Community two-cancer screening health management method and system Download PDF

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CN113593667A
CN113593667A CN202110915741.2A CN202110915741A CN113593667A CN 113593667 A CN113593667 A CN 113593667A CN 202110915741 A CN202110915741 A CN 202110915741A CN 113593667 A CN113593667 A CN 113593667A
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electronic medical
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information
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冯亚玲
顾燕芳
王爱平
臧元怡
孙雁
黄小林
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Wuxi Maternal and Child Health Hospital
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Wuxi Maternal and Child Health Hospital
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    • G16H10/00ICT specially adapted for the handling or processing of patient-related medical or healthcare data
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Abstract

The application relates to the technical field of medical health management, in particular to a method and a system for screening and health management of two cancers in a community, aiming at solving the problems that in the prior art, after a patient participates in examination, the flow of examination information is complex, so that the screening work efficiency of the two cancers is low, and the patient is difficult to be treated in time, and the technical scheme is the method for screening and health management of the two cancers in the community, and comprises the following steps: acquiring personal information of a person to be checked; acquiring a unique identity matched with a person to be checked, and generating an electronic medical record; collecting electronic medical records of all inspected persons in the district, and sending the electronic medical records to a preset health management database; the electronic medical record is diagnosed, and the diagnosis report is sent to the corresponding person to be examined through the personal information contained in the electronic medical record.

Description

Community two-cancer screening health management method and system
Technical Field
The application relates to the technical field of medical health management, in particular to a community two-cancer screening health management method and system.
Background
The maternal and child health service is a public welfare for guaranteeing the health of women and children, improves the quality and level of the maternal and child health service, and has very important practical significance for further reducing the morbidity and mortality of female chronic diseases and improving the health level of women.
In the maternal and child health service, two-cancer screening is a very important part, which refers to two gynecological malignancies, cervical cancer and breast cancer, that are common to female health problems. According to review and investigation of nationwide provinces, two cancers are ranked in the first three of the total cancer mortality rates, and one of the very important reasons is that the initial stage of the disease has no obvious symptoms, and the optimal diagnosis time is usually missed when the symptoms appear. However, if two cancers are discovered and cured in time in the early stage of the disease, most cases can be cured, so that the screening of the two cancers has important significance for improving the health level of women and children.
At present, the conventional two-cancer screening work is usually carried out by community tissues, female in the jurisdiction of the community tissues are intensively checked, after the checking is finished, the community collects checking data and uniformly transfers the checking data to a maternal and child health care hospital, the maternal and child health care hospital screens checking results, then the checking results are returned to the corresponding community, and the community communicates the results with inspectors.
With respect to the related art among the above, the inventors consider that the following drawbacks exist: after the patient participates in the examination, the flow of examination information circulation is complex, so that the working efficiency of screening two cancers is low, and the patient is difficult to be treated in time.
Disclosure of Invention
In order to simplify the inspection information flow and further improve the efficiency of the screening work of the two cancers, the application provides a method and a system for screening health management of the two cancers in the community.
In a first aspect, the present application provides a method for screening and health managing two cancers in a community, which adopts the following technical scheme:
a method of community two-cancer screening health management, the method comprising the steps of:
the method comprises the steps that a checking module acquires personal information of a checked person, wherein the personal information comprises identity information and physical examination information of the checked person;
the inspection module acquires a unique identity matched with the person to be inspected based on the identity information of the person to be inspected, and generates an electronic medical record by using the personal information corresponding to the unique identity mark;
the inspection module collects electronic medical records of all inspected persons in the jurisdiction and sends the electronic medical records to a preset health management database;
the diagnosis and treatment module diagnoses the electronic medical record in the health management database and sends a diagnosis report to the corresponding person to be checked through personal information contained in the electronic medical record.
By adopting the technical scheme, after the inspection module inspects the inspected person, the personal information of the inspected person is simultaneously acquired, the inspection information and the inspected person are ensured to correspond after being integrated with the inspection information of each jurisdiction, the personal information of the inspected person is marked by the unique identity, the possibility that the inspected person cannot uniquely correspond when part of information is the same is reduced, the condition that the matching of a diagnosis result and the inspected person fails is further caused, the stability of the health management database is improved, the accuracy of information circulation between a patient and the diagnosis and treatment module is further improved, the diagnosis and treatment module is directly contacted with the patient through the electronic medical record, the step of information circulation is shortened, and the efficiency of two-cancer screening work is further improved.
Optionally, the acquiring, by the inspection module, a unique identity matched with the person to be inspected based on the identity information of the person to be inspected, and generating the electronic medical record according to the personal information corresponding to the unique identity mark includes:
the inspection module directly extracts a unique identity matched with the inspected person from the identity information;
and/or the presence of a gas in the gas,
the checking module extracts non-unique information from the identity information and then indirectly generates a unique identity which is matched with the person to be checked.
By adopting the technical scheme, different setting modes can be provided for the unique identity, the generation mode of the electronic medical record can be adjusted according to the actual application scene, the flexibility of electronic medical record generation is improved, and the application range of the health management database is expanded.
Optionally, the checking module obtains personal information of the person to be checked, where the personal information includes identity information of the person to be checked and physical examination information, and then the method further includes:
the inspection module inspects the personal information of the person to be inspected, acquires the missing information in the personal information of the person to be inspected, and sends a personal information improvement request.
By adopting the technical scheme, the feedback is facilitated when the personal information acquired by the inspection module is lost, so that the information integrity in the health management database is improved, and the usability of the data in the health management database in application is favorably ensured.
Optionally, the inspection module collects electronic medical records of all inspected persons in the jurisdiction and sends the electronic medical records to a preset health management database, and then the method further includes:
the health management database classifies the electronic medical records;
the classification basis for classifying the electronic medical records comprises the following steps: division of jurisdictions, division of ages, division of past medical histories, and the like.
By adopting the technical scheme, the data in the health management data are classified, the centralized processing of the electronic medical records of the same type is facilitated, and the efficiency of processing the electronic medical records in the health management database is improved.
Optionally, before the diagnosing and treating module diagnoses the electronic medical record in the health management database and sends a diagnosis report to the corresponding person to be examined through the personal information included in the electronic medical record, the diagnosing and treating module further includes:
the diagnosis and treatment module comprises a plurality of diagnosis and treatment units and acquires the corresponding managed region range of each diagnosis and treatment unit;
and setting the access authority of the diagnosis and treatment unit based on the region range corresponding to the diagnosis and treatment unit.
By adopting the technical scheme, different access authorities are set for different diagnosis and treatment units, the treatment of electronic medical records in the district can be favorably carried out by each diagnosis and treatment unit, the convenience of hospitalizing of a patient is favorably improved, the access authority of the electronic medical records is set, the personal information safety of the patient is favorably improved, and the possibility of information leakage is reduced.
Optionally, the diagnosis and treatment module diagnoses the electronic medical record in the health management database, and sends a diagnosis report to the corresponding person to be examined through personal information included in the electronic medical record, and then further includes:
and the diagnosis and treatment module updates the diagnosis report to the electronic medical record corresponding to the person to be examined.
By adopting the technical scheme, the timeliness of the information of the person to be examined is favorably stored, and then the diagnosis and treatment module is favorably used for making a diagnosis and treatment result which best meets the actual condition of the person to be examined, so that the quality of diagnosis and treatment work is improved.
Optionally, the method further includes:
the health management database extracts the examination time information in the electronic medical record and sends examination reminding to the person to be examined based on the examination time information.
By adopting the technical scheme, the intelligent reminding device is helpful for intelligently reminding the person to be checked to carry out the reexamination, and further replaces the manual reminding, so that the working cost of the two-cancer screening work of the community is reduced, and the efficiency of the two-cancer screening work is improved.
In a second aspect, the present application provides a two-cancer screening health management system for a community, which adopts the following technical scheme:
a community two-cancer screening health management system, the system comprising: the system comprises a health management database, a plurality of examination modules and a plurality of diagnosis and treatment modules which are deployed in a distributed manner;
the inspection module is used for acquiring personal information of a person to be inspected, wherein the personal information comprises identity information and physical examination information of the person to be inspected;
acquiring a unique identity matched with the person to be checked based on the identity information of the person to be checked, and generating an electronic medical record by using the personal information corresponding to the unique identity mark;
collecting electronic medical records of all inspected persons in the district, and sending the electronic medical records to a preset health management database;
the diagnosis and treatment module is used for diagnosing the electronic medical record in the health management database and sending a diagnosis report to a corresponding person to be checked through personal information contained in the electronic medical record;
and the health management database is used for receiving and storing the electronic medical record.
By adopting the technical scheme, after the inspection module inspects the inspected person, the personal information of the inspected person is simultaneously acquired, the inspection information and the inspected person are ensured to correspond after being integrated with the inspection information of each jurisdiction, the personal information of the inspected person is marked by the unique identity, the possibility that the inspected person cannot uniquely correspond when part of information is the same is reduced, the condition that the matching of a diagnosis result and the inspected person fails is further caused, the stability of the health management database is improved, the accuracy of information circulation between a patient and the diagnosis and treatment module is further improved, the diagnosis and treatment module is directly contacted with the patient through the electronic medical record, the step of information circulation is shortened, and the efficiency of two-cancer screening work is further improved.
In a third aspect, the present application provides an intelligent terminal, which adopts the following technical scheme:
a smart terminal comprising a processor and a memory, the memory having stored therein at least one instruction, at least one program, a set of codes, or a set of instructions, the at least one instruction, the at least one program, the set of codes, or the set of instructions being loaded and executed by the processor to implement a method of two cancer screening health management in a community as defined in any one of the first aspects.
By adopting the technical scheme, the processor in the intelligent terminal can realize the method according to the related computer program stored in the memory, so that the inspection information flow is simplified, and the efficiency of the two-cancer screening work is improved.
In a fourth aspect, the present application provides a computer-readable storage medium, which adopts the following technical solutions:
a computer readable storage medium having stored therein at least one instruction, at least one program, a set of codes, or a set of instructions, which is loaded and executed by a processor to implement a method of two cancer screening health management in a community as defined in any one of the first aspects.
By adopting the technical scheme, corresponding programs can be stored, so that the inspection information flow is simplified, and the efficiency of screening work of two cancers is improved.
In summary, the present application includes at least one of the following beneficial technical effects:
1. after the inspection module inspects the inspected person, the personal information of the inspected person is acquired at the same time, which is beneficial to ensuring that the inspection information corresponds to the inspected person after the inspection information of each jurisdiction is integrated, the personal information of the inspected person is marked by a unique identity mark, the possibility that the inspected person cannot uniquely correspond when part of information is the same, and further the condition that the matching of a diagnosis result and the inspected person fails is caused is reduced, the stability of a health management database is improved, the accuracy of information circulation between a patient and a diagnosis and treatment module is improved, the diagnosis and treatment module is directly contacted with the patient through an electronic medical record, the step of information circulation is shortened, and the efficiency of two-cancer screening work is improved;
2. different setting modes can be provided for the unique identity, the generation mode of the electronic medical record can be adjusted according to the actual application scene, the flexibility of the electronic medical record generation is improved, and the use range of the health management database is further expanded;
3. different access authorities are set for different diagnosis and treatment units, the diagnosis and treatment units can be favorably processed aiming at electronic medical records in the district under jurisdiction, the convenience of hospitalizing of patients is further favorably improved, the access authorities of the electronic medical records are set simultaneously, the personal information safety of the patients is favorably improved, and the possibility of information leakage is reduced.
Drawings
In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the drawings needed to be used in the description of the embodiments will be briefly introduced below, and it is obvious that the drawings in the following description are only some embodiments of the present invention, and it is obvious for those skilled in the art to obtain other drawings based on these drawings without creative efforts.
FIG. 1 is an architecture diagram of a two-cancer-in-community screening health management system shown in an embodiment of the present application;
fig. 2 is an architecture diagram of a medical module shown in an embodiment of the present application;
FIG. 3 is a flow chart of a method of community two cancer screening health management illustrated in an embodiment of the present application;
fig. 4 is a schematic structural diagram of the intelligent terminal shown in the embodiment of the present application.
Detailed Description
The present embodiments are only illustrative and not restrictive, and those skilled in the art can make modifications to the embodiments without inventive contribution as required after reading the present specification, but the technical solutions in the embodiments of the present application will be described clearly and completely in the following claims with reference to the drawings in the embodiments of the present application, and it is obvious that the described embodiments are some embodiments of the present application, but not all embodiments of the present application. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present application.
In order to make the objects, technical solutions and advantages of the present invention more apparent, the present application is further described in detail with reference to fig. 1-3.
The embodiment of the application provides a two-cancer screening health management method for a community, which can be applied to a two-cancer screening health management system for a community such as a CDN cluster, wherein an execution main body can be an inspection module and is assisted and realized by a diagnosis and treatment module and a health management database. A community two cancer screening health management system may be as shown in fig. 1. A plurality of inspection modules which are distributed and deployed can exist in the community two-cancer screening health management system, and each inspection module is used for executing two-cancer screening work in a district managed by the inspection module and acquiring personal information of a person to be inspected. Specifically, the personal information of the person to be checked in each jurisdiction is collected by the checking module, and then the checking module transmits the collected personal information of the person to be checked to the pre-established health management database. The health management database receives the personal information of the person to be checked, stores the personal information and sends the personal information to the diagnosis and treatment module, and the diagnosis and treatment module outputs a diagnosis result and returns the diagnosis result to the person to be checked through the health management database.
The process flow shown in fig. 2 will be described in detail below with reference to the specific embodiments, and the contents may be as follows:
step 201, a checking module acquires personal information of a person to be checked, wherein the personal information comprises identity information and physical examination information of the person to be checked;
the personal information includes identity information and physical examination information, the identity information is specifically information used for identity identification with the person to be examined, the acquisition source of the identity information may be registration acquisition before the person to be examined participates in physical examination, and specifically, the acquisition source may be as shown in table 1:
Figure 332206DEST_PATH_IMAGE002
in this way, the checking module can acquire the identity information of the checked person before the checked person participates in the physical examination work, and further facilitates identity recognition of the checked person. The identity information can be acquired through manual registration of staff in the community who are responsible for carrying out two-cancer screening work, and information can be automatically collected through an intelligent registration machine of a community hospital.
The physical examination information mainly comprises the historical medical history of the person to be examined before the physical examination and various physical data acquired by the person to be examined through the physical examination step during the current examination.
Optionally, because of the large workload and the large information acquisition requirement of the two cancer screening jobs, the information is easy to miss in the process of acquiring personal information, which results in invalid personal information, and therefore, the following processing is performed after step 201: the inspection module inspects the personal information of the person to be inspected, acquires the missing information in the personal information of the person to be inspected, and sends a personal information improvement request.
In implementation, the inspection module inspects the information input by the person to be inspected, retrieves information without entry filling from the information input table shown in table 1, acquires a list of missing information and the corresponding person to be inspected, then respectively highlights the missing information category of the person to be inspected, generates a personal information perfecting request and sends the personal information perfecting request to the person to be inspected, thereby being helpful for reminding the person to be inspected to perfect the missing personal information and further improving the perfection of the personal information.
Step 202, the checking module acquires a unique identity matched with the person to be checked based on the identity information of the person to be checked, and generates an electronic medical record according to the personal information corresponding to the unique identity mark.
In implementation, the unique identification is used for enabling the personal information of the person to be checked to have uniqueness, and further, after the electronic medical record is generated by marking the personal information with the unique identification, the electronic medical record also has uniqueness. Specifically, the unique identity information, such as the resident identification number or the social security card number in table 1 above, can be obtained from all the identity information of the person to be inspected, and since the resident identification number or the social security card number has the uniqueness, the unique identity can be used as a unique identity to uniquely represent a certain person to be inspected.
Optionally, because of the wide range of people involved in the two cancer screening jobs, a situation that part of personal information is missing may occur, such as missing a resident identification number from a foreign person, and so on, therefore, optionally, the following processing may be performed in step 202: the checking module extracts non-unique information from the identity information and then indirectly generates a unique identity which is matched with the person to be checked.
In implementation, when the personal information is entered, several selectable items can be set, which are respectively unique identification marks such as resident identification numbers, social security card numbers, and the like, and when the person to be checked selects other items, several pieces of non-unique personal information filled by the person to be checked are acquired, for example: the name, age, address, sex, family members and the like are composed of the plurality of non-unique personal information to form a unique identity with uniqueness, so that the flexibility of the electronic medical record generation is improved, and the application range of the two-cancer screening work is expanded.
Step 203, the inspection module collects the electronic medical records of all the inspected persons in the district and sends the electronic medical records to a preset health management database;
in implementation, after each inspection module acquires the electronic medical records in the jurisdiction, the electronic medical records are collected and uploaded to a health management database, and the health management database can be established in advance and used for collecting and storing all the electronic medical records in the jurisdiction.
Alternatively, since the data amount of the two cancer screening jobs is large, the data processing efficiency in the health management database may be low, and accordingly, the following process is performed after step 203: the health management database classifies the electronic medical records; the classification basis for classifying the electronic medical records comprises the following steps: division of jurisdictions, division of ages, division of past medical histories, and the like.
In implementation, the classification of the electronic medical records in the health management database may be performed in a hierarchical manner, specifically, all the electronic medical records are classified according to the jurisdiction of the source, after the electronic medical records are grouped according to the jurisdiction, a plurality of parallel groups may be set in each group, where the groups are divided according to the requirements of data analysis processing, for example, the groups may be divided into: different age classes of patients, and different severity classes of past medical records of patients. And then the electronic medical records in the health management database are combed, which is beneficial to improving the processing efficiency of the electronic medical records.
Optionally, because the personal information of the person to be checked is private, and the absence of security measures may cause a loss to the person to be checked, accordingly, the following process may be performed after step 203: the diagnosis and treatment module comprises a plurality of diagnosis and treatment units and acquires the corresponding managed region range of each diagnosis and treatment unit; and setting the access authority of the diagnosis and treatment unit based on the region range corresponding to the diagnosis and treatment unit.
In implementation, the diagnosis and treatment module can be divided into a plurality of diagnosis and treatment units, the coverage range of the plurality of diagnosis and treatment units can be divided according to the jurisdiction, so that each diagnosis and treatment unit can be independently responsible for all electronic medical records in the coverage range of the jurisdiction, and the access authority of the electronic medical records is set for the diagnosis and treatment units, specifically, a certain diagnosis and treatment unit only has the authority to access the electronic medical records in the corresponding jurisdiction, and further, the information safety in the health management database is improved.
And step 204, the diagnosis and treatment module diagnoses the electronic medical record in the health management database and sends a diagnosis report to a corresponding person to be checked through personal information contained in the electronic medical record.
In implementation, the screening diagnosis and treatment of the electronic medical record in the health management database by the diagnosis and treatment module may include three stages, namely HPV detection, cytology detection and colposcopy detection, and different risk thresholds may be set for the three detection stages, so as to evaluate and screen the correlation between the detection result and the risk of disease. For example, the HPV detection is a primary screening test, and the risk threshold of HPV detection can be set by HPV types, wherein the high-risk types are: HPV16, HPV18 and 14 HPV types such as HPV31, HPV33, HPV35, HPV45, HPV51, HPV52, HPV56, HPV58, HPV61 and the like, wherein the detected result of HPV is the person to be checked of the high-risk type, the person to be checked is marked as the high-risk person in the electronic medical record, the other persons to be checked of the non-high-risk type are marked as the non-high-risk person, and the actual detection result is registered in the electronic medical record. Thereby obtaining a preliminary diagnosis and treatment result.
Therefore, the diagnosis and treatment module directly feeds back the diagnosis and treatment result to the person to be inspected, the feedback mode can be that the diagnosis and treatment module directly sends the diagnosis and treatment result to the person to be inspected in a short message or telephone mode, and the diagnosis and treatment result can be uploaded to a platform which can be logged in by the person to be inspected and can be inquired by the person to be inspected. The presentation mode of the diagnosis and treatment results can be presented by a chart, and the evaluation results of diagnosis can also be presented by text.
Specifically, for the examinee whose HPV detection is the high-risk type, the diagnosis and treatment result may be high-risk, and notification information for colposcopic detection is sent by skipping cytological detection. For the person to be checked with the HPV detection not meeting the high-risk type, a specific detection result can be sent to the person to be checked, and notification information for cytological detection can be sent. The diagnosis and detection can be rapidly carried out on the patient with high risk of suffering from the disease, the patient can be conveniently and timely found to be treated, the medical resources can be saved, and the overall efficiency of the screening work of the two cancers can be improved.
Alternatively, since two cancer screens require multiple repeated examinations on a regular basis, the following process may be performed after step 204, accordingly: the diagnosis and treatment module updates the diagnosis report to the electronic medical record corresponding to the person to be examined, and further contributes to storing the real-time performance of the electronic medical record.
Alternatively, since the regular examination time interval of the two cancer screenings is long, the examinee is easy to forget, and accordingly, the following process can be performed after step 204: the health management database extracts the examination time information in the electronic medical record and sends examination reminding to the examinee based on the examination time information. And then reduce the staff of community and remind the labour cost of work, improved the efficiency of two cancers screening work.
Specifically, the frequency of HPV detection may be once a year, once every six months for cytological detection, or once every three years for cytological detection. Thereby improving the continuity of screening management of the two cancers.
Based on the same technical concept, the embodiment of the invention also provides a two-cancer screening health management system for a community, which comprises: the system comprises a health management database, a plurality of examination modules and a plurality of diagnosis and treatment modules which are deployed in a distributed manner;
the inspection module is used for acquiring personal information of a person to be inspected, wherein the personal information comprises identity information and physical examination information of the person to be inspected;
acquiring a unique identity matched with the person to be checked based on the identity information of the person to be checked, and generating an electronic medical record by using the personal information corresponding to the unique identity mark;
collecting electronic medical records of all inspected persons in the district, and sending the electronic medical records to a preset health management database;
the diagnosis and treatment module is used for diagnosing the electronic medical record in the health management database and sending a diagnosis report to a corresponding person to be checked through personal information contained in the electronic medical record;
and the health management database is used for receiving and storing the electronic medical record.
Optionally, the checking module is further configured to: directly extracting a unique identity matched with the checked person from the identity information; and/or extracting non-unique information from the identity information and then indirectly generating a unique identity matched with the checked person.
Optionally, the checking module is further configured to: the personal information of the person to be checked is checked, missing information in the personal information of the person to be checked is obtained, and a personal information improvement request is sent.
Optionally, the health management database is further configured to: classifying the electronic medical records; the classification basis for classifying the electronic medical records comprises the following steps: division of jurisdictions, division of ages, division of past medical histories, and the like.
Optionally, the diagnosis and treatment module further comprises a plurality of diagnosis and treatment units, and the diagnosis and treatment module is further used for: acquiring a corresponding managed jurisdiction range of each diagnosis and treatment unit; and setting the access authority of the diagnosis and treatment unit based on the region range corresponding to the diagnosis and treatment unit.
Optionally, the diagnosis and treatment module is further configured to: and updating the diagnosis report to the electronic medical record corresponding to the person to be checked.
Optionally, the health management database is further configured to: extracting the examination time information in the electronic medical record, and sending an examination prompt to the examinee based on the examination time information.
The embodiment of the application also discloses an intelligent terminal, which comprises a memory and a processor, wherein the memory is stored with a computer program which can be loaded by the processor and can execute the two-cancer screening health management method for the community.
Based on the same technical concept and the same inventive concept as above, the embodiment of the present application further discloses a computer-readable storage medium, which includes various steps in a process that can be loaded and executed by a processor to implement the above two-cancer screening health management method for a community.
The computer-readable storage medium includes, for example: various media capable of storing program codes, such as a usb disk, a removable hard disk, a Read-Only Memory (ROM), a Random Access Memory (RAM), a magnetic disk, or an optical disk.
It is clear to those skilled in the art that, for convenience and simplicity of description, the foregoing division of each functional module is merely used as an example, and in practical applications, the foregoing function distribution may be completed by different functional modules as needed, that is, the internal structure of the apparatus is divided into different functional modules to complete all or part of the foregoing described functions, and the specific working processes of the above described systems, apparatuses and units may refer to the corresponding processes in the foregoing method embodiments and are not described herein again,
in the several embodiments provided in this application, it should be understood that the disclosed system, apparatus, and method may be implemented in other ways. For example, the above-described apparatus embodiments are merely illustrative, and the division into hard blocks or units is merely one logical functional division, and there may be other divisions in actual implementation, for example, multiple units or components may be combined or integrated into another system, or some features may be omitted, or not implemented. In addition, the shown or discussed mutual coupling or direct coupling or communication connection may be an indirect coupling or communication connection through some interfaces, devices or units, and may be in an electrical, mechanical or other form.
The units described as separate parts may or may not be physically separate, and the parts displayed as units may or may not be physical units, that is, may be located in one place, or may also be distributed on a plurality of network units, and some or all of the units may be selected according to actual needs to achieve the purpose of the embodiment.
In addition, in this application, each functional unit in each embodiment may be integrated into one processing unit, or each unit may exist alone physically, or two or more units are integrated into one unit. The integrated unit can be realized in a form of hardware, and can also be realized in a form of a software functional unit.
The integrated unit, if implemented in the form of a software functional unit and sold or used as a stand-alone product, may be stored in a computer readable storage medium. With this understanding, the technical solution of the present application may be substantially implemented or contributed to by the prior art, or all or part of the technical solution may be embodied in a software product, which is stored in a storage medium and includes instructions for causing a computer device (which may be a personal computer, a server, a network device, or the like) or a processor (processor) to execute all or part of the steps of the method of the embodiments of the present application. And the aforementioned storage medium includes: u disk, removable hard disk, read only memory, random access memory, ceramic disk or optical disk, etc. various media capable of storing program codes.
The above embodiments are only used to describe the technical solutions of the present application in detail, but the above embodiments are only used to help understanding the method and the core idea of the present application, and should not be construed as limiting the present application. Those skilled in the art should also appreciate that various modifications and substitutions can be made without departing from the scope of the present disclosure.

Claims (10)

1. A community two-cancer screening health management method, comprising the steps of:
the method comprises the steps that a checking module acquires personal information of a checked person, wherein the personal information comprises identity information and physical examination information of the checked person;
the inspection module acquires a unique identity matched with the person to be inspected based on the identity information of the person to be inspected, and generates an electronic medical record by using the personal information corresponding to the unique identity mark;
the inspection module collects electronic medical records of all inspected persons in the jurisdiction and sends the electronic medical records to a preset health management database;
the diagnosis and treatment module diagnoses the electronic medical record in the health management database and sends a diagnosis report to the corresponding person to be checked through personal information contained in the electronic medical record.
2. The method of claim 1, wherein the method comprises: the inspection module acquires a unique identity matched with the person to be inspected based on the identity information of the person to be inspected, and generates an electronic medical record by using the personal information corresponding to the unique identity mark, wherein the electronic medical record comprises the following steps:
the inspection module directly extracts a unique identity matched with the inspected person from the identity information;
and/or the presence of a gas in the gas,
the checking module extracts non-unique information from the identity information and then indirectly generates a unique identity which is matched with the person to be checked.
3. The method of claim 1, wherein the method comprises: the inspection module acquires personal information of a person to be inspected, wherein the personal information comprises identity information of the person to be inspected and physical examination information, and the method further comprises the following steps:
the inspection module inspects the personal information of the person to be inspected, acquires the missing information in the personal information of the person to be inspected, and sends a personal information improvement request.
4. The method of claim 1, wherein the method comprises: the inspection module collects electronic medical records of all inspected persons in the district and sends the electronic medical records to a preset health management database, and then the inspection module further comprises:
the health management database classifies the electronic medical records;
the classification basis for classifying the electronic medical records comprises the following steps: division of jurisdictions, division of ages, division of past medical histories, and the like.
5. The method of claim 4, wherein the method comprises: the diagnosis and treatment module diagnoses the electronic medical record in the health management database, and before sending a diagnosis report to a corresponding person to be examined through personal information contained in the electronic medical record, the diagnosis and treatment module further comprises:
the diagnosis and treatment module comprises a plurality of diagnosis and treatment units and acquires the corresponding managed region range of each diagnosis and treatment unit;
and setting the access authority of the diagnosis and treatment unit based on the region range corresponding to the diagnosis and treatment unit.
6. The method of claim 1, wherein the method comprises: the diagnosis and treatment module diagnoses the electronic medical record in the health management database and sends a diagnosis report to a corresponding person to be examined through personal information contained in the electronic medical record, and then the diagnosis and treatment module further comprises:
and the diagnosis and treatment module updates the diagnosis report to the electronic medical record corresponding to the person to be examined.
7. The method of claim 6, wherein the method comprises: the method further comprises the following steps:
the health management database extracts the examination time information in the electronic medical record and sends examination reminding to the person to be examined based on the examination time information.
8. A community two-cancer screening health management system, the system comprising: the system comprises a health management database, a plurality of examination modules and a plurality of diagnosis and treatment modules which are deployed in a distributed manner;
the inspection module is used for acquiring personal information of a person to be inspected, wherein the personal information comprises identity information and physical examination information of the person to be inspected;
acquiring a unique identity matched with the person to be checked based on the identity information of the person to be checked, and generating an electronic medical record by using the personal information corresponding to the unique identity mark;
collecting electronic medical records of all inspected persons in the district, and sending the electronic medical records to a preset health management database;
the diagnosis and treatment module is used for diagnosing the electronic medical record in the health management database and sending a diagnosis report to a corresponding person to be checked through personal information contained in the electronic medical record;
and the health management database is used for receiving and storing the electronic medical record.
9. An intelligent terminal, characterized in that the intelligent terminal comprises a processor and a memory, wherein the memory stores at least one instruction, at least one program, a set of codes, or a set of instructions, which is loaded and executed by the processor to implement a method for two cancer screening health management in a community as claimed in any one of claims 1 to 7.
10. A computer readable storage medium having stored therein at least one instruction, at least one program, a set of codes, or a set of instructions, which is loaded and executed by a processor to implement a method of two cancer screening health management in a community as claimed in any one of claims 1 to 7.
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