Visualization system and method for use completion progress of medicine purchased with quantity

By designing a visual system for the completion progress of drug use with volume procurement, the problem of difficult monitoring of drug use progress has been solved, and the drug usage rate and the efficiency of medical insurance funds have been improved.

CN120373922APending Publication Date: 2025-07-25SHANGHAI PULMONARY HOSPITAL (SHANGHAI OCCUPATIONAL DISEASE PREVENTION & CONTROL INSTITUTE)
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Patent Information

Application Number
CN202410151808.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-02-02
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

The existing technology cannot intuitively monitor and manage the progress of drug use in volume procurement, resulting in insufficient drug use, affecting the efficiency of clinical drug use and the effectiveness of medical insurance funds.

Method used

Design a visual system for the completion progress of the use of drugs with volume procurement, obtain drug consumption data from the hospital information system through the data processing module, generate current usage tables for the drug with volume, and use visualization tools to draw images to display the progress of the use of various drugs, and support data display according to various screening conditions such as departments, diagnosis and treatment groups, and doctors.

Benefits of technology

It has improved the drug use completion rate, reduced the burden on patients, promoted the ecological development of the pharmaceutical industry, and improved the clinical drug use level and the efficiency of medical insurance fund use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a visualization system and method for the use completion progress of medicine purchased with quantity, and relates to the technical field of data visualization, and the method comprises the steps: obtaining medicine consumption data from a hospital information system, and carrying out the processing of the data to obtain a current-period use table of the medicine with quantity, according to the marked period information table of the to-be-purchased drugs and the current-period usage table of the to-be-purchased drugs, the current completed amount and the current to-be-completed amount of the to-be-purchased drugs corresponding to the inpatient department of each department in the current marked period and the current completed amount and the current to-be-completed amount of the to-be-purchased drugs corresponding to each outpatient department are obtained through processing; and according to the screening condition, screening to-be-displayed data from the current completed quantity of the purchased medicines with the different quantities corresponding to the inpatient department and the current completed quantity of the purchased medicines with the different quantities corresponding to the outpatient department, and performing image drawing display on the to-be-displayed data by adopting a visual tool. The device has the beneficial effects that images are drawn through a visual tool, so that the use amount completion condition of the purchased medicines by a doctor can be visually checked, and the medicine use completion rate can be improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of data visualization, and particularly to a visualization system and method for the usage completion progress of volume-based procurement drugs. Background Art

[0004] Previously, the management of the agreed quantity completion rate of volume-based procurement drugs mainly involved pharmaceutical affairs management means such as monitoring and early warning, linking the completion rate with performance, and pre-reviewing prescriptions, but it could not well solve the problem of insufficient agreed quantity completion rate of volume-based procurement drugs. For example, pre-reviewing prescriptions would increase the complexity of clinical medication. As more and more drugs enter the "volume-based procurement", it is difficult to implement pre-review of all volume-based procurement drugs. Through the traditional digital form method, it is impossible to intuitively view the used quantity and the quantity still to be completed of various volume-based procurement drugs for each doctor, each department, each treatment group, etc. in the current bidding period, resulting in each doctor not being able to timely understand the completion situation of the corresponding volume-based procurement drugs, and the usage quantity of volume-based procurement drugs in each bidding period being insufficient. Summary of the Invention

[0005] In view of the problems existing in the prior art, the present invention provides a visualization system for the usage completion progress of volume-based procurement drugs. There are multiple departments in a hospital, and each department includes an inpatient department and an outpatient department. Then, the visualization system includes:

[0006] A data processing module, configured to obtain drug consumption data from a hospital information system, and process the drug consumption data to obtain a current usage table of volume-based drugs. Subsequently, according to a pre-saved bidding period information table of volume-based procurement drugs and the current usage table of volume-based drugs, the current completed quantity and the current quantity to be completed of each volume-based procurement drug corresponding to the inpatient department of each department in the current bidding period, and the current completed quantity and the current quantity to be completed of each volume-based procurement drug corresponding to each outpatient department are processed;

[0007] A data visualization module, connected to the data processing module, configured to screen out data to be displayed from the current completed quantity of each volume-based procurement drug corresponding to the inpatient department and the current completed quantity of each volume-based procurement drug corresponding to the outpatient department according to externally selected screening conditions, and use a visualization tool to draw the data to be displayed as an image for display, so as to view the usage completion progress of each volume-based procurement drug.

[0008] Preferably, the drug consumption data includes outpatient charging data of the outpatient department and inpatient settlement data of the inpatient department. The outpatient charging data and the inpatient settlement data include volume-based procurement drugs, usage quantity, and usage time. Then, the data processing module includes:

[0009] A data acquisition unit, configured to acquire the outpatient charge data and the inpatient settlement data from the hospital information system;

[0010] A first data processing unit, connected to the data acquisition unit, configured to eliminate each of the outpatient charge data and each of the inpatient settlement data whose usage time is not within the current bid period to obtain the current usage volume table of volume-based drugs, and then calculate the current completed volume of each of the volume-based procurement drugs corresponding to the inpatient department and the current completed volume of each of the volume-based procurement drugs corresponding to the outpatient department respectively according to the current usage volume table of volume-based drugs;

[0011] A second data processing unit, connected to the first data processing unit, configured to extract the current required completion volume of each of the volume-based procurement drugs corresponding to the inpatient department according to the volume-based procurement drug bid period information table, and then subtract the corresponding current completed volume from the current required completion volume of each of the volume-based procurement drugs corresponding to the inpatient department to obtain the corresponding current to-be-completed volume;

[0012] A third data processing unit, connected to the first data processing unit, configured to extract the current required completion volume of each of the volume-based procurement drugs corresponding to the outpatient department according to the volume-based procurement drug bid period information table, and then subtract the corresponding current completed volume from the current required completion volume of each of the volume-based procurement drugs corresponding to the outpatient department to obtain the corresponding current to-be-completed volume.

[0013] Preferably, the volume-based procurement drug bid period information table includes multiple diagnosis and treatment group names included in the inpatient department and multiple doctor names included in the outpatient department. The outpatient charge data further includes doctor names, and the inpatient settlement data further includes diagnosis and treatment group names. Then the data visualization module includes:

[0014] A department screening unit, configured to, when the screening condition is to display by department, sum up the current completed volumes of the same volume-based procurement drugs corresponding to the inpatient department and the outpatient department associated with the same department name as the data to be displayed;

[0015] A diagnosis and treatment group screening unit, configured to, when the screening condition is to display by diagnosis and treatment group, use the current completed volume and the current to-be-completed volume of each of the volume-based procurement drugs corresponding to each of the diagnosis and treatment group names associated with the same inpatient department as the data to be displayed;

[0016] The drug screening unit is used to, when the screening condition is to display by the name of the volume-based procurement drugs, sum up the current completed quantities of each of the volume-based procurement drugs corresponding to the inpatient department and the current completed quantities of each of the volume-based procurement drugs corresponding to the outpatient department in the same department respectively according to the volume-based procurement drugs as the data to be displayed;

[0017] The doctor screening unit is used to, when the screening condition is to display by the doctor's name, among the current required completion quantities and the current to-be-completed quantities of each of the volume-based procurement drugs corresponding to the outpatient department, associate the current completed quantities and the current to-be-completed quantities of each of the volume-based procurement drugs corresponding to each doctor's name in the same outpatient department as the data to be displayed;

[0018] The visualization unit is respectively connected to the department screening unit, the diagnosis and treatment group screening unit, the drug screening unit and the doctor screening unit, and is used to draw the data to be displayed as an image for display by using a visualization tool.

[0019] Preferably, the drug consumption data includes the outpatient charging data of the outpatient department and the inpatient settlement data of the inpatient department. The outpatient charging data includes volume-based procurement drugs, doctor's name, usage time, and usage quantity. The inpatient settlement data includes volume-based procurement drugs, diagnosis and treatment group name, usage time, and usage quantity. Then the visualization system further includes a progress completion module, which is connected to the data processing module and the data visualization module, and includes:

[0020] The outpatient completion progress unit is used to process each of the outpatient charging data to obtain the current completed quantity of each of the volume-based procurement drugs corresponding to the outpatient department, and then obtain the current required completion quantity of each of the volume-based procurement drugs corresponding to the outpatient department from the volume-based procurement drug standard period information table, and process the current completed quantity and the current required completion quantity of each of the volume-based procurement drugs corresponding to the outpatient department to obtain the outpatient department completion rate of each of the volume-based procurement drugs as the data to be displayed together;

[0021] The inpatient completion progress unit is used to process each of the inpatient information to obtain the current completed quantity of each of the volume-based procurement drugs corresponding to the inpatient department, and then obtain the current required completion quantity of each of the volume-based procurement drugs corresponding to the inpatient department from the volume-based procurement drug standard period information table, and process the current completed quantity and the current required completion quantity of each of the volume-based procurement drugs corresponding to the inpatient department to obtain the inpatient department completion rate of each of the volume-based procurement drugs as the data to be displayed together.

[0022] Preferably, the visualization tool adopts the E-chart visualization tool.

[0023] The present invention also provides a visualization method for the usage completion progress of volume-based procurement drugs, which is applied to the visualization system as described above. The visualization method includes:

[0024] Step S1, the visualization system obtains drug consumption data from the hospital information system, processes the drug consumption data to obtain a current usage table of volume-based drugs, and then processes the volume-based procurement drug standard period information table saved in advance and the current usage table of volume-based drugs to obtain the current completed quantity and the current to-be-completed quantity of each of the volume-based procurement drugs corresponding to the inpatient departments of each department within the current standard period, as well as the current completed quantity and the current to-be-completed quantity of each of the volume-based procurement drugs corresponding to each outpatient department.

[0025] Step S2, the visualization system screens out the data to be displayed from the current completed quantity of each of the volume-based procurement drugs corresponding to the inpatient departments and the current completed quantity of each of the volume-based procurement drugs corresponding to the outpatient departments according to the externally selected screening conditions, and uses a visualization tool to draw the data to be displayed as an image for display, so as to view the usage completion progress of each of the volume-based procurement drugs.

[0026] Preferably, the drug consumption data includes outpatient charge data of the outpatient department and inpatient settlement data of the inpatient department. The outpatient charge data and the inpatient settlement data include volume-based procurement drugs, usage amounts, and usage times. Then step S1 includes:

[0027] Step S11, the visualization system obtains the outpatient charge data and the inpatient settlement data from the hospital information system.

[0028] Step S12, the visualization system eliminates the outpatient charge data and the inpatient settlement data whose usage times are not within the current standard period to obtain the current usage table of volume-based drugs, and then calculates the current completed quantity of each of the volume-based procurement drugs corresponding to the inpatient department and the current completed quantity of each of the volume-based procurement drugs corresponding to the outpatient department respectively according to the current usage table of volume-based drugs.

[0029] Step S13, the visualization system extracts the current required quantity of each of the volume-based procurement drugs corresponding to the inpatient department according to the volume-based procurement drug standard period information table, and then subtracts the corresponding current completed quantity from the current required quantity of each of the volume-based procurement drugs corresponding to the inpatient department to obtain the corresponding current to-be-completed quantity.

[0030] Step S14: The visualization system extracts the current quantity to be completed for each of the volume-based procurement drugs corresponding to the outpatient department from the volume-based procurement drug standard period information table, and then subtracts the corresponding current completed quantity from the current quantity to be completed for each of the volume-based procurement drugs corresponding to the outpatient department to obtain the corresponding quantity to be completed for the current period.

[0031] Preferably, the volume-based procurement drug standard period information table includes the names of multiple diagnosis and treatment groups included in the inpatient department and the names of multiple doctors included in the outpatient department. The outpatient charge data also includes the doctor name, and the inpatient settlement data also includes the diagnosis and treatment group name. Then, any one of the following screening conditions is adopted in step S2:

[0032] When the screening condition is to display by department, step S2 includes:

[0033] The visualization system sums up the current completed quantities of the same volume-based procurement drugs corresponding to the inpatient department and the outpatient department associated with the same department name respectively as the data to be displayed, and the visualization system uses a visualization tool to draw the data to be displayed as an image for display;

[0034] When the screening condition is to display by diagnosis and treatment group, step S2 includes:

[0035] The visualization system uses the current completed quantity and the quantity to be completed for the current period of each volume-based procurement drug corresponding to each diagnosis and treatment group name associated with the same inpatient department as the data to be displayed. The visualization system uses a visualization tool to draw the data to be displayed as an image for display;

[0036] When the screening condition is to display by volume-based procurement drug name, step S2 includes:

[0037] When the screening condition is to display by volume-based procurement drug name, the visualization system sums up the current completed quantities of the volume-based procurement drugs corresponding to the inpatient department of the same department and the current completed quantities of the volume-based procurement drugs corresponding to the outpatient department respectively according to the volume-based procurement drugs as the data to be displayed. The visualization system uses a visualization tool to draw the data to be displayed as an image for display;

[0038] When the screening condition is to display by doctor name, step S2 includes:

[0039] The visualization system takes the current completed quantity and the to-be-completed quantity of each volume-based procurement drug corresponding to the outpatient department, and for each doctor name associated with the same outpatient department, the current completed quantity and the to-be-completed quantity of each volume-based procurement drug as the data to be displayed. The visualization system uses a visualization tool to draw the data to be displayed into an image for display.

[0040] Preferably, the drug consumption data includes the outpatient charging data of the outpatient department and the inpatient settlement data of the inpatient department. The outpatient charging data includes volume-based procurement drugs, doctor names, usage time, and usage quantity. The inpatient settlement data includes volume-based procurement drugs, diagnosis and treatment group names, usage time, and usage quantity. Then the visualization method further includes:

[0041] Step A1, the visualization system processes the current completed quantity of each volume-based procurement drug corresponding to the outpatient department according to each outpatient charging data, and then obtains the current required completion quantity of each volume-based procurement drug corresponding to the outpatient department from the volume-based procurement drug standard period information table. The completion rate of each volume-based procurement drug in the outpatient department is processed based on the current completed quantity and the current required completion quantity of each volume-based procurement drug corresponding to the outpatient department and used as the data to be displayed together;

[0042] Step A2, the visualization system processes the current completed quantity of each volume-based procurement drug corresponding to the inpatient department according to each inpatient information, and then obtains the current required completion quantity of each volume-based procurement drug corresponding to the inpatient department from the volume-based procurement drug standard period information table. The completion rate of each volume-based procurement drug in the inpatient department is processed based on the current completed quantity and the current required completion quantity of each volume-based procurement drug corresponding to the inpatient department and used as the data to be displayed together.

[0043] Preferably, the visualization tool uses the E-chart visualization tool.

[0044] The above technical solution has the following advantages or beneficial effects:

[0045] 1) By obtaining drug consumption data from the hospital information system, analyzing and processing it to obtain the current completed quantity and the to-be-completed quantity of each volume-based procurement drug corresponding to the diagnosis and treatment groups in the inpatient department and doctors in the outpatient department under each department, and then drawing it into an image for display through a visualization tool, there is no need to arrange supervisors to sort out the data, saving labor costs and improving the sorting efficiency. Each doctor can directly view the completion status of the usage quantity of their volume-based procurement drugs through this system and timely reach the allocated usage quantity target;

[0046] 2) Based on this visualized information, combined with standardized pharmaceutical affairs management methods such as "timed monitoring and early warning" and administrative management means such as "linking completion rate with performance", it can effectively ensure the reasonable implementation and completion of the agreed quantity of volume-based procurement drugs; thereby achieving the reduction of patients' burden, promoting the improvement of the ecological development of the pharmaceutical industry, enhancing the level of clinical medication for insured patients, improving the utilization efficiency of medical insurance funds, and reducing the social burden of medical expenses and other social benefits. Description of the Drawings

[0047] Figure 1 In a preferred embodiment of the present invention, it is a schematic structural diagram of a visualized system for the usage completion progress of volume-based procurement drugs;

[0048] Figure 2 In a preferred embodiment of the present invention, it is an effect diagram of the visualized interface obtained by using this visualized system;

[0049] Figure 3 In a preferred embodiment of the present invention, it is an effect diagram of the visualized interface obtained by using this visualized system;

[0050] Figure 4 In a preferred embodiment of the present invention, it is a schematic flowchart of a visualized method for the usage completion progress of volume-based procurement drugs;

[0051] Figure 5 In a preferred embodiment of the present invention, it is a schematic sub-flowchart of step S1;

[0052] Figure 6 In a preferred embodiment of the present invention, it is a flowchart of steps A1A2. Detailed Description of the Invention

[0053] The present invention will be described in detail below with reference to the drawings and specific embodiments. The present invention is not limited to this embodiment, and other embodiments can also belong to the scope of the present invention as long as they conform to the gist of the present invention.

[0054] In a preferred embodiment of the present invention, based on the above problems existing in the prior art, a visualized system for the usage completion progress of volume-based procurement drugs is provided, as Figure 1 shown, including:

[0055] A data processing module 1, which is used to obtain drug consumption data from the hospital information system, and process the drug consumption data to obtain a current usage table of volume-based drugs. Subsequently, according to the pre-saved information table of the bid period of volume-based procurement drugs and the current usage table of volume-based drugs, it processes to obtain the current completed quantity and the current quantity to be completed of each volume-based procurement drug corresponding to the inpatient department of each department and the current completed quantity and the current quantity to be completed of each volume-based procurement drug corresponding to each outpatient department;

[0056] The data visualization module 2 is connected to the data processing module 1 and is used to screen out the data to be displayed from the current completed quantities of each volume-based procurement drug corresponding to the inpatient department and the current completed quantities of each volume-based procurement drug corresponding to the outpatient department according to the externally selected screening conditions, and use a visualization tool to draw the data to be displayed as an image for viewing the usage completion progress of each volume-based procurement drug.

[0057] Specifically, in this embodiment, a visualization system for the usage completion progress of volume-based procurement drugs is provided to visually display the usage completion progress of various volume-based procurement drugs in the current period, so that each doctor can timely understand the usage completion progress of his or her respective volume-based procurement drugs through this visualization system (that is, the amount that needs to be used to complete the volume-based procurement drugs. For each bidding period, a certain usage amount task of volume-based procurement drugs is allocated to each doctor, and the doctor needs to use a sufficient amount of volume-based procurement drugs for the patient according to the task. The usage completion progress is the proportion of the already used amount of the volume-based procurement drugs used by the doctor in the current bidding period to the usage amount task). The general procurement cycle of volume-based procurement drugs is in years. In order to better complete the usage amount task, the volume-based procurement drug bidding period information table stores the required completion amounts of each volume-based procurement drug corresponding to each doctor in each bidding period, and it is convenient for managers to screen out the required data through this visualization system according to screening conditions such as departments, treatment groups, and doctors, timely understand and follow up the usage completion progress of volume-based procurement drugs in the current bidding period, and timely supervise each doctor to reach the allocated usage amount target.

[0058] Based on this visualized information, combined with standardized pharmaceutical affairs management methods such as "timed monitoring and early warning" and administrative management means such as "linking the completion rate with performance", the reasonable implementation and completion of the agreed quantity of volume-based procurement drugs can be effectively guaranteed; thus achieving the social benefits of reducing the burden on patients, promoting the improvement of the ecological development of the pharmaceutical industry, enhancing the clinical medication level of insured patients, improving the utilization efficiency of medical insurance funds, and reducing the burden of social medical expenses.

[0059] In a preferred embodiment of the present invention, the drug consumption data includes the outpatient charging data of the outpatient department and the inpatient settlement data of the inpatient department. The outpatient charging data and the inpatient settlement data include volume-based procurement drugs, the usage amount, and the usage time. As Figure 1 shown, the data processing module includes:

[0060] A data acquisition unit 11, which is used to acquire outpatient charging data and inpatient settlement data from the hospital information system;

[0061] The first data processing unit 12, connected to the data acquisition unit 11, is used to eliminate each outpatient charge data and each inpatient settlement data whose usage time is not within the current bidding period to obtain the current usage volume table of volume-based drugs. Subsequently, according to the current usage volume table of volume-based drugs, the current completed volume of each volume-based procurement drug corresponding to the inpatient department and the current completed volume of each volume-based procurement drug corresponding to the outpatient department are calculated respectively;

[0062] The second data processing unit 13, connected to the first data processing unit 12, is used to extract the current required completion volume of each volume-based procurement drug corresponding to the inpatient department according to the volume-based procurement drug bidding information table. Subsequently, the current required completion volume of each volume-based procurement drug corresponding to the inpatient department is subtracted from the corresponding current completed volume to obtain the corresponding current to-be-completed volume;

[0063] The third data processing unit 14, connected to the first data processing unit 12, is used to extract the current required completion volume of each volume-based procurement drug corresponding to the outpatient department according to the volume-based procurement drug bidding information table. Subsequently, the current required completion volume of each volume-based procurement drug corresponding to the outpatient department is subtracted from the corresponding current completed volume to obtain the corresponding current to-be-completed volume.

[0064] Specifically, in this embodiment, the data used by this system is the drug consumption data obtained from the HIS (Hospital Information System) hospital information system, including the outpatient charge data of the outpatient department and the inpatient settlement data of the inpatient department. The outpatient charge data and the inpatient settlement data include volume-based procurement drugs, usage volume, and usage time;

[0065] First, for the data view of the current bidding period, the drug consumption data whose usage time is not within the current bidding period is removed, and only the drug consumption data from the start time to the end time of the current bidding period is left to obtain the current usage volume table of volume-based drugs. The current usage volume table of volume-based drugs contains the drug consumption data whose usage time is within the current bidding period. Each drug consumption data includes the name of the volume-based procurement drug, the usage quantity, and the using doctor or diagnosis and treatment group;

[0066] In a hospital, there are many departments, such as the respiratory department, oncology department, thoracic surgery department, etc. Each department is divided into an inpatient department and an outpatient department. First, the drug consumption data is classified to obtain the current completed volume of each volume-based procurement drug corresponding to the inpatient department and the current completed volume of each volume-based procurement drug corresponding to the outpatient department;

[0067] The required completion volume of each volume-based procurement drug corresponding to each inpatient department and each outpatient department in each bidding period is stored in the pre-saved volume-based procurement drug bidding information table;

[0068] The calculation process of the required completion volume in the volume-based procurement drug bidding information table can be calculated in the following way:

[0069] First, obtain the usage amounts of each volume-based procurement drug in the previous bidding period from the drug consumption data in the hospital information system;

[0070] In addition to the volume-based procurement drugs in the drug consumption data, there are also the same drugs corresponding to the volume-based procurement drugs (for example, for volume-based procurement drug A, there are the same drugs A1, A2, etc.). The same drugs used by doctors can be converted into the corresponding volume-based procurement drugs for subsequent processing and calculation (for example, if the usage amount of the same drug A1 is a pieces and the usage amount of volume-based procurement drug A is b pieces, through a preset conversion coefficient K, it is converted to using aK pieces of volume-based procurement drug A, and aK and b are added to obtain the usage amount of volume-based procurement drug A in the previous bidding period (aK + b), which is used for the calculation of the quantity to be completed in the current bidding period);

[0071] Obtain the usage amounts of all converted volume-based procurement drugs in the above manner, and then calculate the quantity to be completed in the current period for each volume-based procurement drug corresponding to each doctor;

[0072] First, calculate the completion ratio, and the formula is as follows:

[0073]

[0074] Then, calculate the quantity to be completed in the current period for each volume-based procurement drug corresponding to each doctor in turn, and the calculation formula is as follows:

[0075] The quantity to be completed in the current bidding period for the volume-based procurement drug =

[0076] The usage amount of this volume-based procurement drug in the previous bidding period * the completion ratio

[0077] In the above manner, calculate the quantity to be completed in the current period for each volume-based procurement drug of each doctor in turn. Similarly, according to the same principle above, the quantity to be completed in the current bidding period for the corresponding volume-based procurement drugs of each department, each inpatient department, and each outpatient department can also be calculated and saved in the volume-based procurement drug bidding period information table;

[0078] At this time, extract the quantity to be completed in the current period for each volume-based procurement drug corresponding to the inpatient department from the volume-based procurement drug bidding period information table, and then subtract the corresponding quantity already completed in the current period from the quantity to be completed in the current period for each volume-based procurement drug corresponding to the inpatient department to obtain the corresponding quantity to be completed in the current period;

[0079] Extract the quantity to be completed in the current period for each volume-based procurement drug corresponding to the outpatient department from the volume-based procurement drug bidding period information table, and then subtract the corresponding quantity already completed in the current period from the quantity to be completed in the current period for each volume-based procurement drug corresponding to the outpatient department to obtain the corresponding quantity to be completed in the current period. When visualizing and displaying later, the completed quantity of the volume-based procurement drug can be divided by the quantity to be completed to obtain the completion progress percentage of each volume-based procurement drug corresponding to each inpatient department and each outpatient department.

[0080] The completed quantity (i.e., the usage quantity) of each volume-based procurement drug corresponding to each inpatient department or outpatient department can be obtained. For example, if the total usage quantity of Drug A for volume-based procurement in the inpatient department of the Respiratory Department in November is 1,000 bottles, then the completed quantity of Drug A for volume-based procurement is 1,000 pieces. In the pre-saved volume-based procurement drug bidding period information table, the required quantity to be completed for each volume-based procurement drug corresponding to the inpatient department and outpatient department of each department in each bidding period is saved. At this time, the required quantity to be completed for each volume-based procurement drug corresponding to each inpatient department and outpatient department is subtracted from the completed quantity to obtain the quantity to be completed for this volume-based procurement drug. When performing subsequent visual display, the completed quantity of the volume-based procurement drug can be divided by the required quantity to obtain the completion progress percentage of each volume-based procurement drug for the inpatient department and outpatient department of each department.

[0081] In a preferred embodiment of the present invention, the volume-based procurement drug bidding period information table includes multiple diagnosis and treatment group names included in the inpatient department and multiple doctor names included in the outpatient department. The outpatient charge data also includes doctor names, and the inpatient settlement data also includes diagnosis and treatment group names. Then, as Figure 1 shown, the data visualization module 2 includes:

[0082] A department screening unit 21, which is used to sum up the current completed quantities of the same volume-based procurement drugs corresponding to the inpatient department and outpatient department associated with the same department name respectively as the data to be displayed when the screening condition is to display by department;

[0083] A diagnosis and treatment group screening unit 22, which is used to use the current completed quantity and the quantity to be completed of each volume-based procurement drug corresponding to each diagnosis and treatment group name associated with the same inpatient department as the data to be displayed when the screening condition is to display by diagnosis and treatment group;

[0084] A drug screening unit 23, which is used to sum up the current completed quantities of each volume-based procurement drug corresponding to the inpatient department of the same department and the current completed quantities of each volume-based procurement drug corresponding to the outpatient department respectively according to the volume-based procurement drugs as the data to be displayed when the screening condition is to display by the name of the volume-based procurement drug;

[0085] A doctor screening unit 24, which is used to use the current completed quantity and the quantity to be completed of each volume-based procurement drug corresponding to each doctor name associated with the same outpatient department among the current required quantity to be completed and the quantity to be completed of each volume-based procurement drug corresponding to the outpatient department as the data to be displayed when the screening condition is to display by doctor name;

[0086] A visualization unit 25, which is respectively connected to the department screening unit 21, the diagnosis and treatment group screening unit 22, the drug screening unit 23, and the doctor screening unit 24, and is used to draw the data to be displayed into an image for display by using a visualization tool.

[0087] In a preferred embodiment of the present invention, the drug consumption data includes the outpatient charging data of the outpatient department and the inpatient settlement data of the inpatient department. The outpatient charging data includes the volume-based procurement drugs, doctor names, usage times, and usage quantities. The inpatient settlement data includes the volume-based procurement drugs, diagnosis and treatment group names, usage times, and usage quantities. Then, the visualization system further includes a progress completion module 3, which is connected to the data processing module 1 and the data visualization module 2. As Figure 1 shown, it includes:

[0088] An outpatient completion progress unit 31, which is used to process each outpatient charging data to obtain the current completed quantity of each volume-based procurement drug corresponding to the outpatient department. Subsequently, it obtains the current required completion quantity of each volume-based procurement drug corresponding to the outpatient department from the volume-based procurement drug bid period information table, and processes the current completed quantity and the current required completion quantity of each volume-based procurement drug corresponding to the outpatient department to obtain the completion rate of each volume-based procurement drug in the outpatient department, which is used as the data to be displayed together;

[0089] An inpatient completion progress unit 32, which is used to process each inpatient information to obtain the current completed quantity of each volume-based procurement drug corresponding to the inpatient department. Subsequently, it obtains the current required completion quantity of each volume-based procurement drug corresponding to the inpatient department from the volume-based procurement drug bid period information table, and processes the current completed quantity and the current required completion quantity of each volume-based procurement drug corresponding to the inpatient department to obtain the completion rate of each volume-based procurement drug in the inpatient department, which is used as the data to be displayed together.

[0090] Specifically, in a hospital, it is generally divided into an outpatient department and an inpatient department. Therefore, the drug consumption data is divided into the outpatient charging data of the outpatient department and the inpatient settlement data of the inpatient department. The outpatient charging data includes multiple charging records, and the inpatient settlement data includes multiple inpatient information. Each charging record and each inpatient information include volume-based procurement drugs, doctor names, and usage times;

[0091] The volume-based procurement drug bid period information table stored in advance stores the required completion quantity of each volume-based procurement drug corresponding to each department, each diagnosis and treatment group, and each doctor within each bid period. Combining the data we processed, we can obtain the completion progress of each volume-based procurement drug corresponding to each department, each diagnosis and treatment group, and each doctor in the current bid period;

[0092] In this embodiment, multiple tables are processed based on the drug consumption data and the data in the volume-based procurement drug bid period information table, which are respectively:

[0093] 1) The required quantity to be completed, the quantity already completed, the quantity yet to be completed, and the completion rate of the current bidding period (displayed as a percentage, calculated as the quantity already completed in the current bidding period / the required quantity to be completed in the current bidding period) for outpatient + inpatient services, presented by drug name; calculate the quantity already completed for each volume-based procurement drug corresponding to the outpatient department and the quantity already completed for each volume-based procurement drug corresponding to the inpatient department separately based on outpatient charging data and inpatient settlement data. Subsequently, calculate the completion rate for each volume-based procurement drug corresponding to the outpatient department and the completion rate for each volume-based procurement drug corresponding to the inpatient department based on the required quantity to be completed for each volume-based procurement drug corresponding to the outpatient department and the required quantity to be completed for each volume-based procurement drug corresponding to the inpatient department saved in the volume-based procurement drug bidding period information table as the data to be displayed, and display it through a visualization tool and export it in tabular form;

[0094] 2) Three indicators, namely, the required quantity to be completed in the current bidding period, the quantity already completed in the outpatient bidding period, and the quantity not completed in the outpatient bidding period for the outpatient department, are obtained by processing each charging record and can be presented by drug name or doctor name, and can be switched between by mutual jumping;

[0095] Presented by drug name, it is used to view the usage completion progress of each doctor corresponding to each volume-based procurement drug in the outpatient department during the current bidding period. You can click on the doctor's name to jump to view the usage completion progress of each volume-based procurement drug corresponding to that doctor;

[0096] Presented by doctor column, it is used to view the usage completion progress of each volume-based procurement drug corresponding to each doctor in the inpatient department during the current bidding period. You can click on the volume-based procurement drug name to jump to view the usage completion progress of each doctor corresponding to that volume-based procurement drug;

[0097] 3) Three indicators, namely, the required quantity to be completed in the current bidding period, the quantity already completed in the inpatient bidding period, and the quantity not completed in the inpatient bidding period for the inpatient department, are obtained by processing each inpatient information and can be presented by drug name or diagnosis and treatment group name, and can be switched between by mutual jumping;

[0098] Presented by drug name, it is used to view the usage completion progress of each diagnosis and treatment group corresponding to each volume-based procurement drug in the inpatient department during the current bidding period. You can click on the diagnosis and treatment group name to jump to view the usage completion progress of each volume-based procurement drug corresponding to that diagnosis and treatment group;

[0099] Presented by diagnosis and treatment group column, it is used to view the usage completion progress of each volume-based procurement drug corresponding to each diagnosis and treatment group in the inpatient department during the current bidding period. You can click on the volume-based procurement drug name to jump to view the usage completion progress of each diagnosis and treatment group corresponding to that volume-based procurement drug.

[0100] Such as Figure 2 and Figure 3, which is the visual interface effect diagram processed by using this visualization system. It can be seen that the corresponding data can be displayed in visual graphs according to requirements, which is intuitive and clear.

[0101] Specifically, the current completed quantity and the to-be-completed quantity of each volume-based procurement drug corresponding to the outpatient department and the inpatient department of each department are processed in the manner of the foregoing embodiments, and then in this embodiment, the current completed quantity and the to-be-completed quantity of each volume-based procurement drug corresponding to the outpatient department and the inpatient department of each department are screened and displayed based on the externally selected screening conditions;

[0102] One department is divided into an inpatient department and an outpatient department. In the inpatient department, the usage completion progress of each volume-based procurement drug is statistically counted in units of diagnosis and treatment groups, and in the outpatient department, the usage completion progress of each volume-based procurement drug is statistically counted in units of doctors;

[0103] When the screening condition is screening by department, at this time, the completed quantities of the same volume-based procurement drugs corresponding to the inpatient department and the outpatient department of the same department are added up to obtain the total completed quantity of each volume-based procurement drug corresponding to the inpatient department and the outpatient department in each department. For example:

[0104] For the volume-based procurement drug A of Department A, 5000 pieces have been completed, 3000 pieces have been completed in the inpatient department, and 2000 pieces have been completed in the outpatient department. For the volume-based procurement drug B, 2000 pieces have been completed, 1000 pieces have been completed in the inpatient department, and 1000 pieces have been completed in the outpatient department.

[0105] For the volume-based procurement drug A of Department B, 6000 pieces have been completed, 3000 pieces have been completed in the inpatient department, and 3000 pieces have been completed in the outpatient department. For the volume-based procurement drug B, 2500 pieces have been completed, 2000 pieces have been completed in the inpatient department, and 500 pieces have been completed in the outpatient department, etc. are used as the data to be displayed;

[0106] Since the inpatient department takes the diagnosis and treatment group as the statistical unit, when the screening condition is screening by diagnosis and treatment group, at this time, the total completed quantity of each volume-based procurement drug corresponding to each diagnosis and treatment group in the same inpatient department is displayed. For example, view the inpatient department of the respiratory department:

[0107] For the volume-based procurement drug A of Treatment Group A, 500 pieces have been completed, and for the volume-based procurement drug B, 200 pieces have been completed.

[0108] For the volume-based procurement drug A of Treatment Group B, 600 pieces have been completed, and for the volume-based procurement drug B, 250 pieces have been completed, etc. are used as the data to be displayed;

[0109] When the screening condition is to screen by drug name, the completed quantities of the same bulk purchased drugs corresponding to all outpatient departments are added together, and the completed quantities of the same bulk purchased drugs corresponding to all inpatient departments are added together to obtain the completed total quantities of the bulk purchased drugs corresponding to all outpatient departments and inpatient departments of the entire hospital. For example, in the current bidding period of this hospital, the outpatient department has completed 15,000 pieces of bulk purchased drugs A, and the inpatient department has completed 13,000 pieces, the outpatient department has completed 8,900 pieces of bulk purchased drugs B, and the inpatient department has completed 7,900 pieces, etc. as the data to be displayed;

[0110] When the filtering condition is to filter by doctor name, the current completed quantity and the expected completed quantity of each volume-purchased drug corresponding to each doctor name of each outpatient department are used as the data to be displayed. Each doctor can filter by doctor name and view the current completed quantity and the expected completed quantity of each volume-purchased drug of his / her own;

[0111] In addition, when viewing data, you need to view it according to your permissions. For example, the hospital leader has high-level permissions and has the right to view all data in the entire hospital. The department director can view all data under his or her department. Doctors in the diagnosis and treatment group can view the data of their own diagnosis and treatment group, and doctors in the outpatient department can view their corresponding data.

[0112] All the data to be displayed obtained above are visualized through visualization tools and can be exported in a table form for checking the completion progress of the use of each volume-based purchased drug.

[0113] In a preferred embodiment of the present invention, the visualization tool adopts the E-chart visualization tool.

[0114] Specifically, in this embodiment, E-chart is an open source visualization library based on JavaScript, which has many advantages, such as:

[0115] Comprehensive chart types: E-chart supports multiple types of charts, including line charts, bar charts, scatter charts, pie charts, radar charts, etc., which can meet different needs of data visualization.

[0116] Highly customizable: E-chart provides a wealth of configuration items, which can flexibly customize the style, data, interaction and other aspects of the chart, allowing users to customize charts in their own style according to their needs.

[0117] Support for multiple data formats: E-chart can support common key-value data formats, as well as two-dimensional tables or TypedArray format data. This makes it easy to process large or complex data and improve rendering efficiency.

[0118] Streaming data support: For extremely large amounts of data, the sheer volume of the data itself can be very resource-consuming. E-chart can support dynamic rendering of streaming data, rendering as much data as is loaded, eliminating the long waiting time for data loading. It also provides incremental rendering technology, only rendering the changed data, improving system resource utilization.

[0119] Mobile optimization: E-chart has been meticulously optimized for mobile interactions. For example, on the small screen of a mobile device, it is suitable for using fingers to zoom and pan in the coordinate system. On the PC side, it is also possible to use the mouse to zoom (using the mouse wheel) and pan in the graph, etc. The fine-grained modular and packaging mechanism enables E-chart to have a very small size on mobile devices as well.

[0120] Cross-platform use: E-chart supports rendering charts in the forms of Canvas, SVG (4.0+), and VML. VML can be compatible with older versions of IE, SVG eliminates memory concerns on mobile devices, and Canvas can easily handle large amounts of data and special effects display. Different rendering methods provide more choices, enabling E-chart to perform better in various scenarios.

[0121] A visualization method for the usage completion progress of volume-based procurement drugs according to the present invention, when applied to the above visualization system, is as Figure 4 shown, the visualization method includes:

[0122] Step S1, the visualization system obtains drug consumption data from the hospital information system, and processes the drug consumption data to obtain a current usage table of volume-based drugs. Subsequently, based on the pre-saved volume-based procurement drug standard period information table and the current usage table of volume-based drugs, it processes to obtain the current completed quantity and the current to-be-completed quantity of each volume-based procurement drug corresponding to the inpatient department of each department, and the current completed quantity and the current to-be-completed quantity of each volume-based procurement drug corresponding to each outpatient department;

[0123] Step S2, the visualization system filters out the data to be displayed from the current completed quantity of each volume-based procurement drug corresponding to the inpatient department and the current completed quantity of each volume-based procurement drug corresponding to the outpatient department according to the externally selected filtering conditions, and uses a visualization tool to draw the data to be displayed as an image for display, so as to view the usage completion progress of each volume-based procurement drug.

[0124] In a preferred embodiment of the present invention, the drug consumption data includes outpatient charge data of the outpatient department and inpatient settlement data of the inpatient department. The outpatient charge data and the inpatient settlement data include volume-based procurement drugs, usage quantity, and usage time, then as Figure 5 shown, Step S1 includes:

[0125] Step S11, the visualization system obtains outpatient charging data and inpatient settlement data from the hospital information system;

[0126] Step S12, the visualization system eliminates outpatient charging data and inpatient settlement data whose usage time is not within the current bidding period to obtain the current usage volume table of drugs with volume purchases. Subsequently, according to the current usage volume table of drugs with volume purchases, the current completed volume of each drug with volume purchases corresponding to the inpatient department and the current completed volume of each drug with volume purchases corresponding to the outpatient department are calculated respectively;

[0127] Step S13, the visualization system extracts the current required completion volume of each drug with volume purchases corresponding to the inpatient department according to the bidding period information table of drugs with volume purchases. Subsequently, the current required completion volume corresponding to each drug with volume purchases in the inpatient department is subtracted from the corresponding current completed volume to obtain the corresponding current to-be-completed volume;

[0128] Step S14, the visualization system extracts the current required completion volume of each drug with volume purchases corresponding to the outpatient department according to the bidding period information table of drugs with volume purchases. Subsequently, the current required completion volume corresponding to each drug with volume purchases in the outpatient department is subtracted from the corresponding current completed volume to obtain the corresponding current to-be-completed volume.

[0129] In a preferred embodiment of the present invention, the bidding period information table of drugs with volume purchases includes multiple diagnosis and treatment group names included in the inpatient department and multiple doctor names included in the outpatient department. The outpatient charging data also includes doctor names, and the inpatient settlement data also includes diagnosis and treatment group names. Then, any one of the following screening conditions is adopted in step S2:

[0130] When the screening condition is to display by department, step S2 includes:

[0131] The visualization system sums up the current completed volumes of the same drugs with volume purchases corresponding to the inpatient department and the outpatient department associated with the same department name as the data to be displayed. The visualization system uses a visualization tool to draw the data to be displayed as an image for display;

[0132] When the screening condition is to display by diagnosis and treatment group, step S2 includes:

[0133] The visualization system takes the current completed volume and the current to-be-completed volume of each drug with volume purchases corresponding to each diagnosis and treatment group name associated with the same inpatient department as the data to be displayed. The visualization system uses a visualization tool to draw the data to be displayed as an image for display;

[0134] When the screening condition is to display by the name of the drug with volume purchase, step S2 includes:

[0135] When the visualization system displays according to the name of the drugs purchased with volume-based procurement as the screening condition, the current completed quantities of each volume-based procurement drug corresponding to the inpatient department of the same department and the current completed quantities of each volume-based procurement drug corresponding to the outpatient department are respectively summed up for each volume-based procurement drug as the data to be displayed. The visualization system uses visualization tools to draw the data to be displayed into images for display;

[0136] When the screening condition is to display according to the doctor's name, step S2 includes:

[0137] Among the current quantities to be completed and the current quantities expected to be completed of each volume-based procurement drug corresponding to the outpatient department, the visualization system associates the current completed quantities and the current quantities expected to be completed of each volume-based procurement drug corresponding to each doctor's name in the same outpatient department as the data to be displayed. The visualization system uses visualization tools to draw the data to be displayed into images for display.

[0138] In a preferred embodiment of the present invention, the drug consumption data includes the outpatient charging data of the outpatient department and the inpatient settlement data of the inpatient department. The outpatient charging data includes the volume-based procurement drugs, doctor's name, usage time, and usage quantity. The inpatient settlement data includes the volume-based procurement drugs, diagnosis and treatment group name, usage time, and usage quantity. Then, as Figure 6 shown, the visualization method further includes:

[0139] Step A1, the visualization system processes the outpatient charging data to obtain the current completed quantities of each volume-based procurement drug corresponding to the outpatient department. Subsequently, it obtains the current quantities to be completed of each volume-based procurement drug corresponding to the outpatient department from the volume-based procurement drug standard period information table, and processes the current completed quantities and the current quantities to be completed of each volume-based procurement drug corresponding to the outpatient department to obtain the completion rates of each volume-based procurement drug in the outpatient department, which are used as the data to be displayed together;

[0140] Step A2, the visualization system processes the inpatient information to obtain the current completed quantities of each volume-based procurement drug corresponding to the inpatient department. Subsequently, it obtains the current quantities to be completed of each volume-based procurement drug corresponding to the inpatient department from the volume-based procurement drug standard period information table, and processes the current completed quantities and the current quantities to be completed of each volume-based procurement drug corresponding to the inpatient department to obtain the completion rates of each volume-based procurement drug in the inpatient department, which are used as the data to be displayed together.

[0141] In a preferred embodiment of the present invention, the visualization tool uses the E-chart visualization tool.

[0142] The above is only a preferred embodiment of the present invention, and it does not limit the implementation manners and protection scope of the present invention. For those skilled in the art, it should be able to realize that all the equivalent replacements and obvious changes made by using the content of this specification and the drawings should be included in the protection scope of the present invention.

Claims

1. A visualization system for the usage completion progress of drugs purchased through volume-based procurement, characterized in that, There are multiple departments in the hospital, and each of the departments includes an inpatient department and an outpatient department. Then the visualization system includes: A data processing module, configured to obtain drug consumption data from a hospital information system, process the drug consumption data to obtain a current usage table of volume-based drugs, and then process the volume-based drug current usage table and a pre-stored volume-based drug tender information table to obtain the current completed quantity and the current to-be-completed quantity of each volume-based drug corresponding to the inpatient department of each department, and the current completed quantity and the current to-be-completed quantity of each volume-based drug corresponding to the outpatient department of each department within the current tender period; A data visualization module, connected to the data processing module, configured to screen out data to be displayed from the current completed quantity of each volume-based drug corresponding to the inpatient department and the current completed quantity of each volume-based drug corresponding to the outpatient department according to externally selected screening conditions, and use a visualization tool to draw the data to be displayed as an image for display, so as to view the usage completion progress of each volume-based drug; 2. The visualization system according to claim 1, wherein The drug consumption data includes outpatient charging data of the outpatient department and inpatient settlement data of the inpatient department. The outpatient charging data and the inpatient settlement data include volume-based drugs, usage quantity, and usage time. Then the data processing module includes: A data acquisition unit, configured to obtain the outpatient charging data and the inpatient settlement data from the hospital information system; A first data processing unit, connected to the data acquisition unit, configured to eliminate the outpatient charging data and the inpatient settlement data whose usage time is not within the current tender period to obtain the current usage table of volume-based drugs, and then calculate the current completed quantity of each volume-based drug corresponding to the inpatient department and the current completed quantity of each volume-based drug corresponding to the outpatient department respectively according to the current usage table of volume-based drugs; A second data processing unit, connected to the first data processing unit, configured to extract the current required quantity of each volume-based drug corresponding to the inpatient department according to the volume-based drug tender information table, and then subtract the corresponding current completed quantity from the current required quantity of each volume-based drug corresponding to the inpatient department to obtain the corresponding current to-be-completed quantity; A third data processing unit, connected to the first data processing unit, configured to extract the current required quantity of each volume-based drug corresponding to the outpatient department according to the volume-based drug tender information table, and then subtract the corresponding current completed quantity from the current required quantity of each volume-based drug corresponding to the outpatient department to obtain the corresponding current to-be-completed quantity.

3. The visualization system according to claim 2, characterized in that The volume-based drug tender information table includes the names of multiple diagnosis and treatment groups included in the inpatient department and the names of multiple doctors included in the outpatient department. The outpatient charging data further includes doctor names, and the inpatient settlement data further includes diagnosis and treatment group names. Then the data visualization module includes: A department screening unit, which is used to sum up the current completed quantities of the same volume-based procurement drugs corresponding to the inpatient department and the outpatient department associated with the same department name respectively as the data to be displayed when the screening condition is to display by department; A diagnosis and treatment group screening unit, which is used to use the current completed quantity and the quantity to be completed of the volume-based procurement drugs corresponding to each diagnosis and treatment group name associated with the same inpatient department as the data to be displayed when the screening condition is to display by diagnosis and treatment group; A drug screening unit, which is used to sum up the current completed quantities of the volume-based procurement drugs corresponding to the inpatient department of the same department and the current completed quantities of the volume-based procurement drugs corresponding to the outpatient department respectively according to the volume-based procurement drugs as the data to be displayed when the screening condition is to display by the name of the volume-based procurement drug; A doctor screening unit, which is used to use the current completed quantity and the quantity to be completed of the volume-based procurement drugs corresponding to each doctor name associated with the same outpatient department among the current quantity to be completed and the quantity to be completed of the volume-based procurement drugs corresponding to the outpatient department as the data to be displayed when the screening condition is to display by doctor name; A visualization unit, which is respectively connected to the department screening unit, the diagnosis and treatment group screening unit, the drug screening unit and the doctor screening unit, and is used to draw the data to be displayed as an image by using a visualization tool for display.

4. The visualization system according to claim 1, wherein The drug consumption data includes the outpatient charging data of the outpatient department and the inpatient settlement data of the inpatient department. The outpatient charging data includes volume-based procurement drugs, doctor name, usage time, and usage quantity. The inpatient settlement data includes volume-based procurement drugs, diagnosis and treatment group name, usage time, and usage quantity. Then the visualization system further includes a progress completion module, which is connected to the data processing module and the data visualization module, and includes: An outpatient completion progress unit, which is used to process the outpatient charging data to obtain the current completed quantity of the volume-based procurement drugs corresponding to the outpatient department, and then obtain the current quantity to be completed of the volume-based procurement drugs corresponding to the outpatient department from the volume-based procurement drug bid period information table, and process the current completed quantity and the current quantity to be completed of the volume-based procurement drugs corresponding to the outpatient department to obtain the outpatient completion rate of each volume-based procurement drug and use it as the data to be displayed together; An inpatient completion progress unit, which is used to process the inpatient information to obtain the current completed quantity of the volume-based procurement drugs corresponding to the inpatient department, and then obtain the current quantity to be completed of the volume-based procurement drugs corresponding to the inpatient department from the volume-based procurement drug bid period information table, and process the current completed quantity and the current quantity to be completed of the volume-based procurement drugs corresponding to the inpatient department to obtain the inpatient completion rate of each volume-based procurement drug and use it as the data to be displayed together.

5. The visualization system according to claim 1, wherein The visualization tool adopts the E-chart visualization tool.

6. A visualization method for the usage completion progress of drugs purchased through volume-based procurement, characterized in that, When applied to the visualization system according to any one of claims 1-5, the visualization method includes: Step S1, the visualization system obtains drug consumption data from the hospital information system, processes the drug consumption data to obtain a current usage table of volume-based drugs, and then processes the pre-stored volume-based drug bidding information table and the current usage table of volume-based drugs to obtain the current completed quantity and the current to-be-completed quantity of each volume-based drug corresponding to the inpatient department of each department, and the current completed quantity and the current to-be-completed quantity of each volume-based drug corresponding to each outpatient department. Step S2, the visualization system filters out the data to be displayed from the current completed quantity of each volume-based drug corresponding to the inpatient department and the current completed quantity of each volume-based drug corresponding to the outpatient department according to the externally selected filtering conditions, and uses a visualization tool to draw the data to be displayed as an image for viewing the usage completion progress of each volume-based drug.

7. The visualization method according to claim 6, wherein The drug consumption data includes outpatient charging data of the outpatient department and inpatient settlement data of the inpatient department. The outpatient charging data and the inpatient settlement data include volume-based drugs, usage quantity, and usage time. Then, step S1 includes: Step S11, the visualization system obtains the outpatient charging data and the inpatient settlement data from the hospital information system. Step S12, the visualization system eliminates the outpatient charging data and the inpatient settlement data whose usage time is not within the current bidding period to obtain the current usage table of volume-based drugs, and then calculates the current completed quantity of each volume-based drug corresponding to the inpatient department and the current completed quantity of each volume-based drug corresponding to the outpatient department respectively according to the current usage table of volume-based drugs. Step S13, the visualization system extracts the current required quantity of each volume-based drug corresponding to the inpatient department according to the volume-based drug bidding information table, and then subtracts the corresponding current completed quantity from the current required quantity of each volume-based drug corresponding to the inpatient department to obtain the corresponding current to-be-completed quantity. Step S14, the visualization system extracts the current required quantity of each volume-based drug corresponding to the outpatient department according to the volume-based drug bidding information table, and then subtracts the corresponding current completed quantity from the current required quantity of each volume-based drug corresponding to the outpatient department to obtain the corresponding current to-be-completed quantity.

8. The visualization method according to claim 7, characterized in that, The volume-based drug bidding information table includes the names of multiple diagnosis and treatment groups included in the inpatient department and the names of multiple doctors included in the outpatient department. The outpatient charging data also includes the doctor name, and the inpatient settlement data also includes the diagnosis and treatment group name. Then, any one of the following filtering conditions is adopted in step S2: When the filtering condition is to display by department, step S2 includes: The visualization system sums up the current completed quantities of the same volume-based procurement drugs corresponding to the inpatient department and the outpatient department associated with the same department name respectively as the data to be displayed, and the visualization system uses a visualization tool to draw the data to be displayed into an image for display; When the screening condition is to display by diagnosis and treatment group, step S2 includes: The visualization system takes the current completed quantity and the to-be-completed quantity of each volume-based procurement drug corresponding to each diagnosis and treatment group name associated with the same inpatient department as the data to be displayed. The visualization system uses a visualization tool to draw the data to be displayed into an image for display; When the screening condition is to display by volume-based procurement drug name, step S2 includes: When the screening condition is to display by volume-based procurement drug name, the visualization system sums up the current completed quantities of the volume-based procurement drugs corresponding to the inpatient department of the same department and the current completed quantities of the volume-based procurement drugs corresponding to the outpatient department respectively according to the volume-based procurement drugs as the data to be displayed, and the visualization system uses a visualization tool to draw the data to be displayed into an image for display; When the screening condition is to display by doctor name, step S2 includes: The visualization system takes the current completed quantity and the to-be-completed quantity of each volume-based procurement drug corresponding to each doctor name associated with the same outpatient department among the current required quantity and the to-be-completed quantity of each volume-based procurement drug corresponding to the outpatient department as the data to be displayed, and the visualization system uses a visualization tool to draw the data to be displayed into an image for display.

9. The visualization method according to claim 6, characterized in that, The drug consumption data includes outpatient charging data of the outpatient department and inpatient settlement data of the inpatient department. The outpatient charging data includes volume-based procurement drugs, doctor name, usage time, and usage quantity. The inpatient settlement data includes volume-based procurement drugs, diagnosis and treatment group name, usage time, and usage quantity. Then the visualization method further includes: Step A1, the visualization system processes each outpatient charging data to obtain the current completed quantity of each volume-based procurement drug corresponding to the outpatient department, and then obtains the current required quantity of each volume-based procurement drug corresponding to the outpatient department from the volume-based procurement drug standard period information table. The completion rate of each volume-based procurement drug in the outpatient department is processed based on the current completed quantity and the current required quantity of each volume-based procurement drug corresponding to the outpatient department and is used as the data to be displayed together; Step A2, the visualization system processes each inpatient information to obtain the current completed quantity of each volume-based procurement drug corresponding to the inpatient department, and then obtains the current required quantity of each volume-based procurement drug corresponding to the inpatient department from the volume-based procurement drug standard period information table. The completion rate of each volume-based procurement drug in the inpatient department is processed based on the current completed quantity and the current required quantity of each volume-based procurement drug corresponding to the inpatient department and is used as the data to be displayed together.

10. The visualization method according to claim 6, wherein The visualization tool uses the E-chart visualization tool.