Drug supply anesthesia system for clinical anesthesiology department

By incorporating incompatible drug information into the drug analysis model and combining it with data acquisition and management modules, the interaction of anesthetic drugs can be identified. This solves the problem of insufficient integration of incompatible drugs in existing systems, enabling precise management and safe use, and improving the safety and transparency of anesthetic drugs.

CN120913747APending Publication Date: 2025-11-07THE FIRST AFFILIATED HOSPITAL OF HENAN UNIV
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Patent Information

Application Number
CN202511047061.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-29
Publication Date
2025-11-07

AI Technical Summary

Technical Problem

Existing clinical anesthesia drug supply systems have deficiencies in integrating functions related to drug incompatibilities, which may lead to difficulties in automatically identifying potential drug interactions and causing adverse reactions.

Method used

By incorporating incompatibilities into the drug analysis model, and combining it with data acquisition and drug management modules, the interaction between anesthetic drugs and other drugs can be identified, enabling precise management and control. This includes modules for identity authentication, emergency management, and record reporting to ensure safe use.

Benefits of technology

It effectively avoids side effects or adverse reactions caused by inappropriate combinations of drugs, improves the accuracy and safety of anesthetic drug management, and enhances transparency and oversight mechanisms.

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Abstract

The invention relates to the technical field of clinical anesthesia, in particular to a drug supply anesthesia system for a clinical anesthesiology department, which comprises a data acquisition module, a drug management module, an identity authentication module, an emergency management module and a record report module. By adding the taboo compatibility information in the establishment process of the drug analysis model, the drug supply anesthesia system can identify the possible interaction between the anesthetic and other drugs, so that side effects or adverse reactions caused by improper combination use are avoided.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of clinical anesthesia, in particular to a drug supply anesthesia system for clinical anesthesiology department. BACKGROUND

[0002] In the current pursuit of precision, safety and efficiency in the medical industry, the clinical anesthesiology department, as a key department for ensuring patient safety and comfort during surgery and special medical procedures, has high requirements for the supply and management of anesthetic drugs. Traditional anesthetic drug management methods often rely on manual recording and manual dispensing, which has low efficiency, is prone to human error, and is difficult to accurately control the amount of drug taken, which not only affects the progress of surgery, but also may endanger the life and health of patients. With the rapid development of information technology, automation control technology and medical Internet of Things, a drug supply anesthesia system for clinical anesthesiology department has emerged. The system aims to achieve precise supply, strict control and efficient management of anesthetic drugs through intelligent means, meet the urgent needs of drug safety, timeliness and accuracy in clinical anesthesia work, improve the overall work quality and efficiency of the anesthesiology department, and promote the medical industry to move towards a more intelligent and safer direction.

[0003] Although the existing drug supply anesthesia system for clinical anesthesiology department can achieve the management of anesthetic drugs to some extent, there are still some defects in the integration of related functions of incompatibility, which may not be able to automatically prompt potential drug interactions, affecting patients and causing adverse reactions.

[0004] In summary, the existing drug supply anesthesia system for clinical anesthesiology department has some defects in the integration of related functions of incompatibility, which may affect patients and cause adverse reactions, which has become a difficult problem that needs to be solved in the field, so it is necessary to propose a drug supply anesthesia system for clinical anesthesiology department. SUMMARY

[0005] To solve the above problems, the present application provides a drug supply anesthesia system for clinical anesthesiology department, which adds incompatibility information in the establishment process of the drug analysis model, so that the drug supply anesthesia system can identify the possible interaction between anesthetic drugs and other drugs, thereby avoiding side effects or adverse reactions caused by inappropriate combination use.

[0006] In order to achieve the above purpose, the technical scheme of the present application is as follows: a drug supply anesthesia system for clinical anesthesiology department, comprising the following modules:

[0007] A data acquisition module is used to acquire the type information, characteristic information, storage condition information, incompatibility information of various anesthetic drugs and existing case information of anesthetic drugs used in existing cases, and simultaneously acquire the historical case information of patients and the current drug use information of patients.

[0008] The drug management module is configured to manage the storage environment and specific classification of the anesthetic drugs based on a drug management model, and manage the dispensing of the anesthetic drugs based on a drug analysis model and a patient database.

[0009] The identity authentication module is configured to authenticate the identity of the drug taker according to the position of the drug taker, feed the identity authentication result to the drug management module, and limit the maximum amount of the anesthetic drugs to be taken by the drug taker according to the position of the drug taker.

[0010] The emergency management module is configured to send an alarm when an abnormal situation occurs, wherein the abnormal situation includes one or more of the following: shortage of the anesthetic drugs, loss of the anesthetic drugs, inconsistency between the actual storage condition and the predetermined storage condition of the anesthetic drugs, and non-standard taking of the anesthetic drugs.

[0011] The record reporting module is configured to draft a taking report after each time the anesthetic drugs are taken, and make the taking report public.

[0012] Further, the data collection module includes the following units:

[0013] The model data collection unit is configured to collect the type information, characteristic information, storage condition information, contraindication information and existing case information of various anesthetic drugs.

[0014] The patient data collection unit is configured to collect the historical case information of the patient and the current drug use information of the patient by querying the electronic case of the patient.

[0015] Further, the drug management model is established based on the type information, characteristic information and storage condition information of various anesthetic drugs collected by the data collection module; the drug analysis model is established based on the contraindication information and existing case information; and the patient database is established based on the historical case information of the patient and the current drug use information of the patient.

[0016] Further, the drug management module includes the following units:

[0017] The drug storage unit is configured to manage the storage environment of the anesthetic drugs according to the characteristic information and storage condition information of different anesthetic drugs based on the drug management model.

[0018] The drug classification unit is configured to manage the classification of the anesthetic drugs according to the type information of different anesthetic drugs based on the drug management model.

[0019] The drug delivery unit is used for managing the delivery of anesthetic drugs by a drug analysis model in combination with current drug use information of a patient and contraindication information of the anesthetic drugs.

[0020] Further, the delivery of the anesthetic drugs includes a delivery type of the anesthetic drugs and a delivery amount of the anesthetic drugs.

[0021] Further, the identity authentication module includes the following units:

[0022] The identity authentication unit is configured to perform identity authentication on the drug taker.

[0023] The taking amount limiting unit is configured to limit a single taking amount of the drug taker according to a job level of the drug taker.

[0024] Further, when performing identity authentication on the drug taker, one or more authentication manners of password authentication, smart card authentication and fingerprint authentication are adopted.

[0025] Further, the emergency management module includes the following units:

[0026] The real-time monitoring unit is configured to perform real-time monitoring on a stock of the anesthetic drugs, a storage condition of the anesthetic drugs and a taking specification of the drug taker when taking the anesthetic drugs.

[0027] The alarm unit is configured to send an alarm information when one or more of the following situations occurs: the stock of the anesthetic drugs is insufficient, the anesthetic drugs are missing, the actual storage condition of the anesthetic drugs does not match the predetermined storage condition, and the taking of the anesthetic drugs is not standardized.

[0028] Further, the record report module includes the following units:

[0029] The report drafting unit is configured to draft a taking report when the anesthetic drugs are taken.

[0030] The report publicizing unit is configured to publicize the taking report to all staff after the taking report is drafted.

[0031] Further, the content of the taking report includes a disease condition of a patient, a type of the anesthetic drugs, a taking amount of the anesthetic drugs and contraindication information of the anesthetic drugs.

[0032] The above scheme has the following beneficial effects:

[0033] 1. In the present application, the contraindication information is added in the process of establishing the drug analysis model, so that the anesthetic system can identify the possible interaction between the anesthetic drugs and other drugs, thereby avoiding the side effects or adverse reactions caused by inappropriate combination use.

[0034] 2. This invention, through the model data acquisition unit and patient data acquisition unit in the data acquisition module, conducts comprehensive data collection, ensuring that the drug supply anesthesia system can obtain sufficient information support when formulating anesthesia plans. At the same time, based on the collected data, drug management models and drug analysis models can be created, enabling the drug supply anesthesia system to manage and dispense anesthetic drugs more accurately.

[0035] 3. The identity authentication module of this invention not only ensures that only authorized personnel can access anesthetic drugs, but also limits the amount that can be taken at one time based on job rank, reducing the risk of misuse or abuse. At the same time, the recording and reporting module automatically generates and publishes the details of each anesthetic drug use, allowing all staff to view and take the reports, increasing the transparency of the entire anesthesia process and enabling effective supervision and collaboration among staff.

[0036] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description

[0037] Figure 1 This is a schematic diagram of the structure of the drug supply anesthesia system for clinical anesthesia departments of the present invention.

[0038] Figure 2 This is a schematic diagram of the data acquisition module in the clinical anesthesia supply system of the present invention.

[0039] Figure 3 This is a schematic diagram of the drug management module in the clinical anesthesia supply and anesthesia system of the present invention.

[0040] Figure 4 This is a schematic diagram of the identity authentication module in the clinical anesthesia supply anesthesia system of the present invention.

[0041] Figure 5 This is a schematic diagram of the emergency management module in the clinical anesthesia supply anesthesia system of the present invention.

[0042] Figure 6 This is a schematic diagram of the recording and reporting module in the clinical anesthesia supply anesthesia system of the present invention. Detailed Implementation

[0043] The following detailed description illustrates the specific implementation method:

[0044] Implementation, for example, attached Figure 1As shown: a clinical anesthesia department drug supply anesthesia system, including a data acquisition module for information acquisition, a drug management model, a drug analysis model and a patient database for establishing, and a drug management module for managing anesthetic drugs through the drug management model, an identity authentication module for identity authentication of the drug taking person, an emergency management module for issuing alarm information to the staff when abnormal conditions occur, and a record report module for preparing and publicizing the taking report.

[0045] The following will be described in detail:

[0046] The data acquisition module is used to collect the type information, characteristic information, storage condition information, contraindicated compatibility information and existing case information of various anesthetic drugs, and simultaneously collect the patient's historical case information and the patient's current drug use information.

[0047] As shown: Figure 2 The data acquisition module includes the following units:

[0048] The model data acquisition unit is used to collect the type information, characteristic information, storage condition information, contraindicated compatibility information and existing case information of various anesthetic drugs.

[0049] The patient data acquisition unit is used to collect the patient's historical case information and the patient's current drug use information by querying the patient's electronic case.

[0050] The drug management module is used to manage the storage environment and specific classification of anesthetic drugs through the drug management model, and based on the patient database, the drug analysis model is used to manage the delivery of anesthetic drugs. During the delivery process, the patient is delivered anesthetic drugs according to the patient's current drug use information and the contraindicated compatibility information of anesthetic drugs. The drug management model is established based on the type information, characteristic information and storage condition information of various anesthetic drugs collected by the data acquisition module, which is used to manage the storage environment and specific classification of anesthetic drugs; the drug analysis model is established based on the contraindicated compatibility information and existing case information, which is used to analyze the patient's current medication and the contraindicated compatibility information of anesthetic drugs to reduce side effects or adverse reactions caused by inappropriate combination use; the patient database is established based on the patient's historical case information and the patient's current drug use information.

[0051] As shown: Figure 3 The drug management module includes the following units:

[0052] The drug storage unit is used to manage the storage environment of anesthetic drugs according to the characteristic information and storage condition information of different anesthetic drugs through the drug management model.

[0053] A drug classification unit is configured to manage the classification of different anesthetic drugs according to the category information of the anesthetic drugs by a drug management model. For example, isoflurane and sevoflurane belong to inhaled general anesthetics, and the drug classification unit classifies them as type A anesthetics; propofol and etomidate belong to intravenous general anesthetics, and the drug classification unit classifies them as type B anesthetics.

[0054] A drug dispensing unit is configured to manage the dispensing of anesthetic drugs by combining the current drug use information of a patient and the contraindication information of the anesthetic drugs through a drug analysis model. The dispensing of the anesthetic drugs includes the dispensing category and the dispensing amount of the anesthetic drugs. For example, the patient has hypertension and has been taking antihypertensive drugs for a long time, and is currently taking enalapril. At this time, the drug dispensing unit combines the above patient information and dispenses 140 mg of propofol, 100 mg of fentanyl, and 42 mg of rocuronium for the patient through the drug analysis model.

[0055] An identity authentication module is configured to authenticate the identity of a drug taker according to the rank of the drug taker, feed the identity authentication result to the drug management module, and limit the maximum amount of anesthetic drugs that can be taken by the drug taker according to the rank of the drug taker.

[0056] As shown in Figure 4 , the identity authentication module includes the following units:

[0057] An identity authentication unit is configured to authenticate the identity of a drug taker by using one or more authentication methods such as password authentication, smart card authentication, and fingerprint authentication. In this embodiment, password authentication and fingerprint authentication are used.

[0058] A taking amount limiting unit is configured to limit the single taking amount of a drug taker according to the rank of the drug taker.

[0059] An emergency management module is configured to issue an alarm when an abnormal situation occurs. The abnormal situation includes one or more of the following: shortage of anesthetic drugs, loss of anesthetic drugs, inconsistency between the actual storage conditions of anesthetic drugs and the predetermined storage conditions, and non-standard taking of anesthetic drugs.

[0060] As shown in Figure 5 , the emergency management module includes the following units:

[0061] A real-time monitoring unit is configured to monitor the inventory of anesthetic drugs, the storage conditions of anesthetic drugs, and the standard taking of anesthetic drugs by a drug taker in real time.

[0062] The alarm unit is configured to send an alarm when one or more of the following conditions occurs: the amount of anesthetic drug is insufficient; the anesthetic drug is missing; the actual storage condition of the anesthetic drug does not match the predetermined storage condition; and the anesthetic drug is not used in a standard manner.

[0063] The record report module is configured to draft a use report after each anesthetic drug is used, and to make the use report public.

[0064] As shown in Figure 6 The record report module includes the following units:

[0065] The report drafting unit is configured to draft a use report after an anesthetic drug is used, and the content of the use report includes the patient's illness, the type of anesthetic drug, the amount of anesthetic drug used, and the contraindication information of the anesthetic drug.

[0066] The report publishing unit is configured to make the use report public to all staff after the use report is drafted.

[0067] Specifically, the model data collection unit first collects the type information, characteristic information, storage condition information, and contraindication information of various anesthetic drugs through an Internet large model, and simultaneously collects existing case information. At the same time, the patient data collection unit collects the patient's historical medical record information and the patient's current drug use information by querying the patient's electronic medical record, and completes the information collection operation.

[0068] Subsequently, the drug management module establishes a drug management model based on the type information, characteristic information, and storage condition information of various anesthetic drugs collected by the data collection module, establishes a drug analysis model based on the contraindication information and existing case information, and establishes a patient database based on the patient's historical case information and the patient's current drug use information.

[0069] After the establishment of the drug management model, the drug analysis model, and the patient database, the drug management module manages the storage and classification of drugs through the drug management model, determines the type of anesthetic drug and the amount of anesthetic drug needed by the patient through the drug analysis model in combination with the patient's current drug use information and the contraindication information of anesthetic drugs, and makes it public to the staff.

[0070] After determining the type and amount of anesthetic drug needed by the patient, the anesthetic drug is taken out by the person taking the anesthetic drug. In this process, the identity authentication module uses password authentication and fingerprint authentication to authenticate the identity of the person taking the anesthetic drug to reduce the loss of anesthetic drugs. At the same time, according to the different ranks of the person taking the anesthetic drug, the use amount limiting unit limits the maximum use amount of anesthetic drugs for the person taking the anesthetic drug.

[0071] When one or more of the following situations occurs: the amount of anesthetic drug is insufficient, the anesthetic drug is missing, the actual storage condition of the anesthetic drug does not match the predetermined storage condition, and the anesthetic drug is not taken in a standard manner, the alarm unit sends an alarm message, so that the staff can respond in time.

[0072] Whenever an anesthetic drug is taken, the record report module formulates a taking report through the report formulation unit, records the patient's illness, the type of anesthetic drug used, the amount of anesthetic drug used, and the contraindication information of the anesthetic drug, and then displays the taking report to all staff through the report display unit, so as to achieve the purpose of mutual supervision. Meanwhile, all staff can query the taking report, so as to form a unified standard for taking anesthetic drugs.

[0073] Obviously, the above embodiments are only examples for the purpose of clarity, and are not limiting to the embodiments. Based on the above description, other different forms of changes or variations can be made by those skilled in the art. Here, it is not necessary and impossible to enumerate all the embodiments. The obvious changes or variations derived therefrom are still within the protection scope of the present application.

Claims

1. A clinical anesthesia medicine supply and anesthesia system characterized by, The system comprises the following modules: a data collection module, configured to collect the type information, characteristic information, storage condition information, contraindication information of various anesthetic drugs, and existing case information of anesthetic drugs used in existing cases, and simultaneously collect the historical case information of the patient and the current drug use information of the patient; a drug management module, configured to manage the storage environment and specific classification of the anesthetic drugs by a drug management model, and manage the dispensing of the anesthetic drugs by a drug analysis model based on a patient database, wherein in the dispensing process, the anesthetic drugs are dispensed to the patient according to the current drug use information of the patient and the contraindication information of the anesthetic drugs; an identity authentication module, configured to authenticate the identity of the drug taker according to the rank of the drug taker, and feed back the identity authentication result to the drug management module, so as to limit the maximum amount of the anesthetic drugs taken by the drug taker according to the rank of the drug taker; an emergency management module, configured to issue an alarm information when an abnormal situation occurs, wherein the abnormal situation includes one or more of the following: shortage of the anesthetic drugs, loss of the anesthetic drugs, inconsistency between the actual storage condition of the anesthetic drugs and the predetermined storage condition, and non-standard taking of the anesthetic drugs; a record report module, configured to formulate a taking report after each time the anesthetic drugs are taken, and publicize the taking report.

2. The anesthesiology medicine supply and anesthesia system of claim 1, wherein, The data collection module comprises the following units: a model data collection unit, configured to collect the type information, characteristic information, storage condition information, contraindication information and existing case information of various anesthetic drugs; a patient data collection unit, configured to collect the historical case information of the patient and the current drug use information of the patient by querying the electronic case of the patient.

3. The anesthesiology medicine supply and anesthesia system of claim 2, wherein, The drug management model is established based on the type information, characteristic information and storage condition information of various anesthetic drugs collected by the data collection module; The drug analysis model is established based on the contraindication information and existing case information; and the patient database is established based on the historical case information of the patient and the current drug use information of the patient.

4. The anesthesiology medicine supply and administration system of claim 3, wherein, The drug management module comprises the following units: a drug storage unit, configured to manage the storage environment of the anesthetic drugs according to the characteristic information and storage condition information of different anesthetic drugs by the drug management model; a drug classification unit, configured to manage the classification of the anesthetic drugs according to the type information of different anesthetic drugs by the drug management model; a drug dispensing unit, configured to manage the dispensing of the anesthetic drugs by the drug analysis model in combination with the current drug use information of the patient and the contraindication information of the anesthetic drugs.

5. The anesthesiology medicine supply and administration system of claim 4, wherein, The dispensing of the anesthetic drugs includes the dispensing type and dispensing amount of the anesthetic drugs.

6. The anesthesiology medicine supply and administration system of claim 5, wherein, The identity authentication module comprises the following units: an identity authentication unit, configured to authenticate the identity of the drug taker; a taking amount limiting unit, configured to limit the single taking amount of the drug taker according to the rank of the drug taker.

7. The anesthesiology medicine supply and administration system of claim 6, wherein, In the identity authentication of the drug taker, one or more of the following authentication methods is adopted: password authentication, smart card authentication and fingerprint authentication.

8. The anesthesiology medicine supply and administration system of claim 7, wherein, The emergency management module comprises the following units: The real-time monitoring unit is configured to monitor the inventory of the anesthetic drug, the storage condition of the anesthetic drug, and the taking specification of the anesthetic drug by the person taking the anesthetic drug in real time. The alarm unit is configured to send an alarm information when one or more of the following conditions occurs: the inventory of the anesthetic drug is insufficient, the anesthetic drug is missing, the actual storage condition of the anesthetic drug does not match the predetermined storage condition, and the taking of the anesthetic drug is not standardized.

9. The anesthesiology medicine supply and administration system of claim 8, wherein, The record reporting module comprises the following units: The report drafting unit is configured to draft a taking report when the anesthetic drug is taken. The report publishing unit is configured to publish the taking report to all staff after the taking report is drafted.

10. The anesthesiology medicine supply and administration system of claim 9, wherein, The content of the taking report comprises the patient's illness, the type of the anesthetic drug, the amount of the anesthetic drug taken, and the contraindication information of the anesthetic drug.