A verification algorithm for electronic format of pharmaceutical R&D application
By using electronic format verification algorithms in the application process of pharmaceutical R&D and using servers and multi-end devices for data storage and entry, the problems of waste of resources and unfast data verification in the existing technology are solved, and efficient declaration process and accurate data management are achieved.
Patent Information
- Application Number
- CN202210139895.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-02-16
- Publication Date
- 2025-05-13
- Estimated Expiration
- 2042-02-16
AI Technical Summary
During the application process of pharmaceutical R&D, the existing technology has problems such as wasting resources, unfast data entry and verification, lack of historical data comparison and format error checking.
A verification algorithm in electronic format for pharmaceutical R&D application is adopted, and data storage and processing is carried out through the server. The PC and mobile terminals are used for information entry and review, realizing the verification process of one end initiating multi-terminal synchronous operations, and forming an electronic declaration process for data storage construction.
The synchronous electronic entry and verification of application materials has been realized, the recommendation and human resource management of project members have been optimized, and the member application experience has been formed, which has improved the application efficiency and accuracy.
Smart Images

Figure CN114548917B_ABST
Abstract
Description
Technical Field
[0001] The invention provides a verification algorithm for an electronic format of a pharmaceutical research and development application, belonging to the field of medical systems. Background Art
[0002] At present, in the process of pharmaceutical R&D application and approval, it is necessary to prepare a variety of electronic information, such as synthetic chemical formula, research background, research progress, etc. Especially in pharmaceutical R&D, the sequence table of raw materials contains a lot of content, molecular formula, chemical structure formula, etc. The use of paper application will seriously waste overall resources, and it is not possible to quickly perform input verification at different stages. There is a lack of historical data for reference and comparison, and it is easy to make data and format errors difficult to check.
[0003] Announcement No. CN101286997B discloses a data reliability verification method, system, sending device and receiving device, the method comprising: the sending end uses a preset verification algorithm to calculate the data segment to be sent, obtains and saves the verification information of the data segment, and sends the saved verification information of the previous data segment and the current data segment to the receiving end; the receiving end receives the data segment and the verification information, saves the data segment, uses a preset verification algorithm to calculate the saved previous data segment, obtains the verification information of the previous data segment, compares the obtained verification information with the received verification information, and if they are the same, determines that the saved previous data segment is reliable;
[0004] In the above algorithm, there is a lack of verification of input information, and the verification form is single, which cannot form the data history of members and the optimization push of members. Summary of the invention
[0005] The present invention provides a verification algorithm for the electronic format of pharmaceutical research and development declaration, and provides an electronic declaration process that is initiated by one end, verified by multiple ends synchronously, and forms a data storage structure. The structure is simple and easy to use.
[0006] The verification algorithm of the electronic format of the pharmaceutical research and development declaration of the present invention is implemented as follows: the verification algorithm of the electronic format of the pharmaceutical research and development declaration of the present invention comprises a server for data storage, a PC terminal and a mobile terminal that form interactive permission with the server, the server is used for information processing, integration, and verification, the PC terminal and the mobile terminal are used for information input, receiving and viewing, the PC terminal and the mobile terminal are provided with multiple groups, each declaration is initiated by one of the PC terminals, and can only be initiated by one of the PC terminals, the declaration initiation to completion process is archived in the server, the server identifies the IP address of the PC terminal to determine the corresponding account authority, and provides sharing of the corresponding authority of the historical declaration record;
[0007] After the declaration is initiated on the PC, enter the initial information on the corresponding PC;
[0008] The initial information includes the name of the project, R&D route, time period, key nodes, project member information, member division of labor, member contact information, cost budget, and resource requirement list;
[0009] The server assigns project members permissions based on the initial information and creates a list of member declaration experiences;
[0010] The server notifies each project member of the initial information based on the initial information. The project member confirms and gives feedback through the PC or mobile terminal. If the project member does not confirm or refuses to participate, the server will give feedback to the PC terminal that initiated the application or recommend a backup member.
[0011] PC and mobile terminal members confirm their participation in the application, and prepare and input the electronic materials for the application according to the division of labor among members. The server integrates the information and then verifies it. If the verification is passed, the corresponding stage is completed and the next stage is entered. If the verification fails, the project team is fed back for optimization and multiple iterations of verification are carried out until the verification is passed and the next stage is entered. Verification of each stage is carried out before the key nodes until the application is completed, and the update log is exported. The project members summarize the information, and the server is updated synchronously. The update log content is sorted and updated to the member application experience list;
[0012] The project team members will check and confirm the information through mobile phones and PCs, provide feedback on objections simultaneously, and conduct iterative verification;
[0013] When the PC or mobile terminal accesses the server, it first sends an access request message to the server. After receiving the access request message, the server analyzes the access request message, matches it with the project member list, and grants access permission;
[0014] The PC terminal accesses the server, and the server records the corresponding IP address. Before the declaration is completed, the server grants access permission to the PC terminal corresponding to the IP address;
[0015] Furthermore, the server forms a database source based on the construction of the internally stored application data, recommends or optimizes project members based on the initial information provided by the application initiating PC, and reasonably optimizes human resources based on the application time period and member experience;
[0016] Furthermore, the user registers through the server platform, obtains identity identification, and access to the server.
[0017] The information verification includes information sorting, historical data verification, and project member verification. The information level is initially established. By classifying the information, level I, level II, level III, and others are set respectively. The severity of the information to be verified decreases, and the corresponding verification personnel are different;
[0018] The information is identified by the server and classified according to the confirmed level. It is sent to the corresponding PC and mobile terminals for the designated members to check and confirm. The server fits the declared information and historical project data, verifies the similarity of technical solutions, the fit of test data, and the overlap of content, and generates abnormal information. The abnormal information is authenticated and enters the verification process. If the verification passes, the node is stored. If the verification fails, the reason is analyzed and a second verification is performed until it passes.
[0019] The analysis of the reasons for verification failure includes verification overdue and information content objection. The server will issue a reminder notification for overdue confirmation, and record the overdue record for the corresponding responsible person and add it to the corresponding declaration experience list. Objection to the information content requires an objection item. After the objection item is raised, the secondary confirmation process will be entered. If there is no objection item, the server will kick out the verification result of the corresponding responsible person and update the declaration experience list;
[0020] Beneficial effects:
[0021] 1. Electronically input and verify the application materials simultaneously;
[0022] 2. The server makes member optimization recommendations based on the database;
[0023] 3. Form a list of members’ experience declarations to facilitate connection with the human resources system;
[0024] 4. Simple structure and easy to use. BRIEF DESCRIPTION OF THE DRAWINGS
[0025] Figure 1 The present invention is a flow chart of a verification algorithm for an electronic format of a pharmaceutical R&D application.
[0026] Figure 2 The present invention is a flow chart of the verification steps of a verification algorithm for an electronic format of a pharmaceutical research and development application.
[0027] Figure 3 This is a schematic diagram of the multi-terminal synchronous operation of a verification algorithm for an electronic format of a pharmaceutical research and development application of the present invention.
[0028] In the attached figure: DETAILED DESCRIPTION
[0029] The present invention is further described below in conjunction with the accompanying drawings.
[0030] According to the attached Figure 1As shown, a verification algorithm for the electronic format of a pharmaceutical research and development application of the present invention is implemented as follows: a verification algorithm for the electronic format of a pharmaceutical research and development application of the present invention includes a server for data storage, a PC terminal and a mobile terminal that form interactive permissions with the server, the server is used for information processing, integration, and verification, the PC terminal and the mobile terminal are used for information entry, receiving and viewing, the PC terminal and the mobile terminal are provided with multiple groups, each application is initiated by one of the PC terminals, and can only be initiated by one of the PC terminals, the application initiation to completion process is archived in the server, the server identifies the PC terminal IP address to determine the corresponding account authority, and provides sharing of the corresponding authority of the historical application record;
[0031] After the declaration is initiated on the PC, enter the initial information on the corresponding PC;
[0032] The initial information includes the name of the project, R&D route, time period, key nodes, project member information, member division of labor, member contact information, cost budget, and resource requirement list;
[0033] The server assigns project members permissions based on the initial information and creates a list of member declaration experiences;
[0034] The server notifies each project member of the initial information based on the initial information. The project member confirms and gives feedback through the PC or mobile terminal. If the project member does not confirm or refuses to participate, the server will give feedback to the PC terminal that initiated the application or recommend a backup member.
[0035] PC and mobile terminal members confirm their participation in the application, and prepare and input the electronic materials for the application according to the division of labor among members. The server integrates the information and then verifies it. If the verification is passed, the corresponding stage is completed and the next stage is entered. If the verification fails, the project team is fed back for optimization and multiple iterations of verification are carried out until the verification is passed and the next stage is entered. Verification of each stage is carried out before the key nodes until the application is completed, and the update log is exported. The project members summarize the information, and the server is updated synchronously. The update log content is sorted and updated to the member application experience list;
[0036] The project team members will check and confirm the information through mobile phones and PCs, provide feedback on objections simultaneously, and conduct iterative verification;
[0037] When the PC or mobile terminal accesses the server, it first sends an access request message to the server. After receiving the access request message, the server analyzes the access request message, matches it with the project member list, and grants access permission;
[0038] The PC terminal accesses the server, and the server records the corresponding IP address. Before the declaration is completed, the server grants access permission to the PC terminal corresponding to the IP address;
[0039] Furthermore, the server forms a database source based on the construction of the internally stored application data, recommends or optimizes project members based on the initial information provided by the application initiating PC, and reasonably optimizes human resources based on the application time period and member experience;
[0040] Furthermore, the user registers through the server platform, obtains identity identification, and access to the server.
[0041] The information verification includes information sorting, historical data verification, and project member verification. The information level is initially established. By classifying the information, level I, level II, level III, and others are set respectively. The severity of the information to be verified decreases, and the corresponding verification personnel are different;
[0042] The information verification level is set according to the following algorithm:
[0043] C+Q+S=N
[0044] N≥25 is level I
[0045] 20≤N<25 Level II
[0046] 10≤N<20 Level III
[0047] N<10 Other
[0048] C is the completeness of the declared information:
[0049]
[0050] Q is the relevance of the reported information:
[0051]
[0052]
[0053] S stands for confidentiality of declared information:
[0054] grade Effect Evaluation Criteria 9-10 fatal Key technical content in the corresponding information for all employees 8 Very serious 50% member information entry 7 More serious 10% Members enter information 6 serious Key application test data 5 generally Research route 4 slight Auxiliary test data 3 Very slight Project Name 1-2 none No impact
[0055] The information is identified by the server and classified according to the confirmed level. It is sent to the corresponding PC and mobile terminals for the designated members to check and confirm. The server fits the declared information and historical project data, verifies the similarity of technical solutions, the fit of test data, and the overlap of content, and generates abnormal information. The abnormal information is authenticated and enters the verification process. If the verification passes, the node is stored. If the verification fails, the reason is analyzed and a second verification is performed until it passes.
[0056] The analysis of the reasons for verification failure includes verification overdue and information content objection. The server will issue a reminder notification for overdue confirmation, and record the overdue record for the corresponding responsible person and add it to the corresponding declaration experience list. Objection to the information content requires an objection item. After the objection item is raised, the secondary confirmation process will be entered. If there is no objection item, the server will kick out the verification result of the corresponding responsible person and update the declaration experience list;
[0057] The application project is initiated by the applicant entering the initial information on the corresponding PC. The members then complete the application content to achieve the purpose of completing the application within the node. The application database and member experience list are formed through the historical data of the server. Due to the recognition of human resources and the determination of the degree of cooperation, the nodes of the entire R&D process are entered to form an electronic format for the application, and then the application is made.
[0058] The present invention and its embodiments are described above, and such description is not restrictive. The embodiment shown is only one of the embodiments of the present invention, and the actual structure is not limited thereto. In short, if ordinary technicians in the field are inspired by it, without departing from the purpose of the invention, they can design a structure and embodiment similar to the technical solution without creativity, which should belong to the protection scope of the present invention.
Claims
1. A verification algorithm for the electronic format of pharmaceutical R&D declaration, characterized by: It includes a server for data storage, and a PC and a mobile terminal that form interactive permissions with the server. The server is used for information processing, information integration, and information verification. The PC and the mobile terminal are used for information entry, receiving and viewing. The PC and the mobile terminal are provided with multiple groups. Each declaration is initiated by one of the PC terminals, and can only be initiated by one of the PC terminals. The declaration process from initiation to completion is archived in the server. The server identifies the IP address of the PC terminal to determine the corresponding account authority, and provides sharing of the corresponding authority of the historical declaration record; The PC and mobile terminal members confirm their participation in the application, and prepare and input the electronic materials for the application according to the division of labor among the members. The server integrates the information and then verifies it. If the verification is passed, the corresponding stage is completed and the next stage is entered. If the verification fails, the project team is fed back for optimization and multiple iterations of verification are performed until the verification is passed and the next stage is entered. The verification of each stage is performed before the key nodes until the application is completed, and the update log is exported. The project members summarize the information, and the server is updated synchronously. The update log content is sorted and updated to the member application experience list; The information verification includes information sorting, historical data verification, and project member verification. The information level is initially established. By classifying the information, level I, level II, level III, and others are set respectively. The severity of the information to be verified decreases, and the corresponding verification personnel are different; The server identifies the level of the input information, and classifies it according to the confirmed level, and sends it to the corresponding PC and mobile terminals for the designated members to check and confirm. At the same time, the server fits the declared information and historical project data, verifies the similarity of the technical solutions, the fit of the test data, and the overlap of the content, and forms abnormal information. The abnormal information is authenticated at the level and enters the verification process. If the verification passes, the node is stored. If the verification fails, the reason is analyzed and a second verification is performed until it passes. The analysis of the reasons for verification failure includes verification overdue and information content objection. The server will issue a reminder notification for overdue confirmation, and make an overdue record for the corresponding responsible person, and add the corresponding declaration experience list. Objection to the information content requires an objection item to be raised. After the objection item is raised, the secondary confirmation process will be entered. If there is no objection item, the server will kick out the verification result of the corresponding responsible person and update the declaration experience list.
2. The verification algorithm for the electronic format of pharmaceutical R&D declaration according to claim 1, characterized in that: After the declaration is initiated on the PC, the initial information is entered on the corresponding PC; The initial information includes the name of the project, R&D route, time period, key nodes, project member information, member division of labor, member contact information, cost budget, and resource requirement list.
3. The verification algorithm for the electronic format of pharmaceutical R&D declaration according to claim 2, characterized in that: The server assigns project member permissions based on initial information and creates a member declaration experience list; The server notifies each project member of the initial information based on the initial information, and the project member provides confirmation feedback through the PC or mobile terminal. If the project member does not confirm or refuses to participate, the server will provide feedback to the PC terminal that initiated the application or recommend a backup member; The information verification is reviewed and confirmed by the project team members through mobile phones and PCs, and objections are fed back simultaneously, and iterative verification is performed.
4. The verification algorithm for the electronic format of pharmaceutical R&D declaration according to claim 1, characterized in that: When the PC or mobile terminal accesses the server, it first sends an access request message to the server. After receiving the access request message, the server analyzes the access request message, matches it with the project member list, and grants access permission.
5. The verification algorithm for the electronic format of pharmaceutical R&D application according to claim 4, characterized in that: The PC terminal accesses the server, and the server records the corresponding IP address. Before the declaration is completed, the server grants access permission to the PC terminal corresponding to the IP address.
6. The verification algorithm for the electronic format of pharmaceutical R&D declaration according to claim 1, characterized in that: The server forms a database source based on the construction of the internally stored declaration data, recommends or optimizes project members through the initial information provided by the declaration initiating PC, and reasonably optimizes human resources based on the declaration time period and member experience.
7. The verification algorithm for the electronic format of pharmaceutical R&D declaration according to claim 1, characterized in that: The users of the PC and mobile terminals register through the server platform to obtain identity identification and permission to access the server.
Citation Information
Patent Citations
Data reliability verifying method, system, transmitting device and receiving device
CN101286997B
Method for project management, project managing server, accepting server, and program
JP2002288405A