Narcotic medicine chest for operating room
By setting up a biometric lock with dual bioinformatics authorization verification in the operating room drug box, the problem of authorization verification of backup drugs for surgical anesthesia drugs is solved, ensuring the stability of drug supply and compliance of control and management.
Patent Information
- Application Number
- CN202421566984.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-04
- Publication Date
- 2025-06-06
- Estimated Expiration
- 2034-07-04
AI Technical Summary
The prior art cannot realize the dual authorization verification of backup drugs for surgical anesthesia drugs, resulting in the inability to replenish time when drugs are missing during the operation, delaying the operation time.
A medical box for an operating room is designed, including a first storage box for conventional anesthetic drugs and a second storage box for backup anesthetic drugs. A biometric lock that can be opened with at least two biological information authorizations is provided on the second storage box.
Through dual bioinformatics authorization verification, we can ensure the legal use of backup narcotic drugs, avoid drug abuse, meet the requirements of control drug management, and ensure the stability of drug supply during the surgery.
Smart Images

Figure CN222942452U_ABST
Abstract
Description
Technical Field
[0001] The present application relates to an anesthetic drug box for an operating room, and belongs to the technical field of anesthetic drug management. Background Art
[0002] Anesthesia is the use of drugs or other methods to temporarily make the patient lose all or part of the body's sensation, so that the patient can undergo surgery painlessly and conveniently. Anesthetic drugs are psychotropic drugs, addictive drugs, and controlled drugs, and can only be used under strict management.
[0003] The current management method for controlled drugs is: the anesthesiologist determines the type and dosage of the required drugs based on the daily usage and his own experience with the operating room pharmacy, and the pharmacy prepares the drugs before the operation based on the requirements of dedicated application and registration authorization.
[0004] However, since the existing technology cannot achieve precise anesthesia, anesthesiologists cannot accurately predict the dosage of anesthetic drugs, and anesthetic drugs may occasionally be missing due to unexpected situations during use. When anesthetic drugs need to be replenished during surgery, time has to be spent to obtain authorized replenishment, resulting in delays in surgery. Chinese patent application No. 2024107865538 provides an anesthetic drug management system, which proposes: to estimate anesthetic drugs based on past data and provide spare drugs for surgical anesthetic drugs. The spare drugs must be double authorized by the pre-authorized personnel in the operating room before they can be used, which simplifies the authorization process. In conjunction with this, the dual authorization verification of spare drugs depends on hardware devices. The present application hopes to provide an anesthetic drug box for an operating room to realize dual authorization verification of spare drugs. Utility Model Content
[0005] The technical problem to be solved by this application is how to perform dual authorization verification on backup drugs for surgical anesthesia.
[0006] In order to solve the above-mentioned technical problems, the technical solution of the present application is to provide an anesthetic medicine box for an operating room, comprising a medicine box body, wherein the medicine box body is provided with a first storage box for storing anesthetic drugs and a second storage box for storing spare anesthetic drugs, and the second storage box is provided with a biometric lock that can only be opened with the biometric information authorization of at least two people.
[0007] Preferably, the first storage box is provided with a biometric lock which can be opened only with authorization of a single person's biometric information.
[0008] Preferably, the types of biometric information recognized by the biometric lock include face and / or iris.
[0009] Preferably, the first storage box is provided with a first storage box door, the first storage box door is arranged on the side elevation of the first storage box, the first storage box door is provided with a flip-down open state, and the first storage box door is provided with a medicine dispensing platform when in the flip-down open state, and the medicine dispensing platform is provided with a medicine placement area, a medicine dispensing area and a weighing area.
[0010] Preferably, the medicine placement area is provided with a groove for placing a syringe, and the groove is provided with an elastic clip for clamping the syringe; and the weighing area is provided with a weighing instrument.
[0011] Preferably, the second storage box is arranged inside the first storage box.
[0012] Preferably, the second storage box is arranged side by side with the first storage box.
[0013] Preferably, the biometric lock is provided with a communication module for communicating with a central control system for managing drugs in a hospital to obtain authorized biometric information.
[0014] Preferably, the second storage box is provided with a transparent observation window.
[0015] The advantage of the present application is that, by providing a second storage box for storing spare narcotic drugs in the narcotic drug box, spare narcotic drugs are available when narcotic drugs are missing during use. At the same time, the problem of authorization verification of spare narcotic drugs is solved by a biometric lock that requires biometric information authorization of at least two people to open, so that the spare narcotic drugs can meet the management requirements of controlled drugs. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 A schematic diagram of the structure of an anesthetic drug box for an operating room provided in an embodiment of the present application;
[0017] Figure 2 A schematic diagram of opening an anesthetic drug box for an operating room provided in an embodiment of the present application;
[0018] Figure 3 A schematic diagram of a transparent observation window of an anesthetic drug box for an operating room provided in an embodiment of the present application;
[0019] Reference numerals: medicine box body 1, first storage box 11, first storage box door 111, medicine dispensing platform 111-1, groove 111-2, weighing instrument 111-3, second storage box 12, transparent observation window 12-1. DETAILED DESCRIPTION
[0020] To make the application more obvious and easy to understand, various exemplary embodiments will be introduced below. These examples are non-limiting, and it should be understood that they are used for the more general application aspects of the illustrative device, system and method. Without departing from the substantive content and scope of the application, these embodiments can be subjected to multiple changes, and can be replaced by equivalents. In addition, multiple changes can be carried out to adapt to the purpose, content or scope of the application in order to adapt to special situations, materials, material components, treatment types, treatment actions or steps. All these changes will be within the protection scope of the application.
[0021] For any materials, dimensions, quantities introduced in the overview or detailed description, they will be examples only and are not intended to limit the subject matter of the present application. Moreover, the various implementations of the embodiments described herein will complement each other, rather than purely interchangeably, unless otherwise indicated. In other words, implementations from one embodiment can be freely combined with implementations of other embodiments, as those of ordinary skill in the art will readily appreciate, unless it is indicated that these implementations are only for replacement.
[0022] The embodiment of the present application provides an anesthetic drug box for an operating room, see Figure 1 , including a medicine box body 1, which includes a first storage box 11 for storing anesthetic drugs for routine use and a second storage box 12 for storing spare anesthetic drugs. Among them, the second storage box 12 is provided with a biometric lock that can only be opened after being authorized by at least two people's biometric information. The anesthetic drugs stored in the first storage box 11 are managed drugs that have been authorized by the anesthetic drug management party for anesthesiologists to use, so there is no need for re-authorization, and the anesthesiologists can use them directly. The second storage box 12 stores spare anesthetic drugs, which are managed drugs that have not been authorized and cannot be used at will by anesthesiologists. When anesthetic drugs are accidentally lost due to damage during use, or the amount of drugs is insufficient, the spare anesthetic drugs need to be verified by at least two people's biometric information before they can be authorized for use. Therefore, the anesthetic drug box for the operating room provided in the present application uses a biometric lock to verify and authorize the biometric information of at least two people before opening the second storage box 12; illustratively, the two people refer to the anesthesiologist and the surgeon in the operating room, and the multiple people refer to the anesthesiologist, the surgeon and other medical staff in the operating room; the use of at least two people for authorization and verification can prevent the anesthesiologist from using the spare anesthetic drugs at will, thereby incorporating the spare anesthetic drugs into the hospital-controlled drug management.
[0023] For example, see again Figure 1 The second storage box 12 is arranged side by side with the first storage box 11. When in use, the first storage box 11 and the second storage box 12 can be used independently.
[0024] Exemplarily, the second storage box 12 may also be disposed inside the first storage box 11. In actual use, the anesthesiologist first opens the first storage box 11. If spare anesthetic drugs are needed, the second storage box 12 is opened after double verification by the surgeon and the anesthesiologist himself.
[0025] In a further embodiment, in order to prevent other medical staff from opening the first storage box 11 at will, a biometric lock that can only be opened with authorization of a single person's biometric information is set on the first storage box 11. The single person's biometric information here refers to the biometric information of the anesthesiologist, and the anesthetic drugs in the first storage box 11 are limited to the anesthesiologist. It can be understood that biometric locks are conventional existing technologies, and locks of corresponding sizes can be provided according to the application scenario. Common biometric locks verify biometric information types such as face, fingerprint, retina, iris, palm vein, voiceprint, etc.; in the anesthetic drug box for the operating room provided in this application, a contactless verification method is preferred: that is, face, retina, iris, palm vein, and / or voiceprint.
[0026] In the implementation manner of the present application, biometric information can be pre-stored in the biometric lock, or it can be obtained by the biometric lock from the central management control system of the hospital's controlled drugs. A communication module is provided in the biometric lock for obtaining authorized biometric information through information communication with the central management control system of the hospital's controlled drugs.
[0027] In a further embodiment, see Figure 2 The first storage box 11 is provided with a first storage box door 111. The first storage box door 111 is provided on the side elevation of the first storage box 11. The first storage box door 111 is provided with a downward flipping open state. When the first storage box door 111 is in the downward flipping open state, it is set as a medicine dispensing platform 111-1. The medicine dispensing platform 111-1 is provided with a medicine placement area, a medicine dispensing area and a weighing area. Among them, the medicine placement area is provided with a groove 111-2 for placing a syringe, and an elastic clip for clamping the syringe is provided in the groove 111-2; the weighing area is provided with a weighing meter 111-3. When in use, the anesthesiologist takes out anesthetic drugs and syringes from the first storage box 11 and places them in the medicine dispensing area. If weighing is required during the medicine dispensing process, it can be done on the weighing meter. After the medicine dispensing is completed, the syringe can be temporarily placed in the groove and taken out from the groove when injection is required. It can be understood that in order to keep the first storage box door 111 level on the desktop when it is folded down, a support column is provided on the outer side of the first storage box door 111, and the height of the support column matches the height of the bottom hinge of the first storage box door 111, so that a horizontal dispensing platform can be obtained after the first storage box door 111 is folded down.
[0028] In a further embodiment, see Figure 3A transparent observation window 12-1 is also provided on the second storage box 12. The provision of spare anesthetic drugs is provided additionally after being estimated by calculating the big data of previous surgeries. The anesthesiologist does not know the specific dosage of the spare anesthetic drugs. Therefore, a transparent observation window 12-1 is provided on the second storage box 12 to facilitate the anesthesiologist's observation. Exemplarily, the transparent observation window 12-1 is provided on the box door of the second storage box 12.
[0029] In a further embodiment, the first storage box 11 and the second storage box 12 respectively include a plurality of drug storage units for storing different drugs, and the drug storage units are provided with sensors that can monitor changes in drug types and drug dosages; the sensors include a weight sensing module and a drug identification module for sensing drug electronic tags.
[0030] The above is only a preferred embodiment of the present application, and is not any formal or substantial limitation to the present application. It should be pointed out that ordinary technicians in this technical field can make several improvements and supplements without departing from the present application, and these improvements and supplements should also be regarded as the protection scope of the present application. Any technician familiar with this profession, without departing from the content and scope of the present application, can make some changes, modifications and evolutions of the technical content disclosed above, which are equivalent embodiments of the present application; at the same time, any changes, modifications and evolutions of any equivalent changes made to the above-mentioned implementation methods based on the substantial technology of the present application are still within the scope of the technical solution of the present application.
Claims
1. An anesthetic medicine box for an operating room, characterized in that: The medicine box body comprises a first storage box for storing anesthetic drugs and a second storage box for storing spare anesthetic drugs, the second storage box is provided with a biometric lock which can be opened only after authorization of biometric information of at least two persons; the first storage box is provided with a first storage box door, the first storage box door is arranged on the side elevation of the first storage box, the first storage box door is provided with a flip-down open state, and the first storage box door is configured as a medicine dispensing platform when in the flip-down open state.
2. The anesthetic drug box for operating room according to claim 1, characterized in that: The first storage box is provided with a biometric lock which can be opened only with authorization of a single person's biometric information.
3. An anesthetic drug box for an operating room according to any one of claims 1 or 2, characterized in that: The types of biometric information recognized by the biometric lock include face and / or iris.
4. The anesthetic drug box for operating room according to claim 1, characterized in that: The medicine dispensing platform is provided with a medicine placing area, a medicine dispensing area and a weighing area.
5. The anesthetic drug box for operating room according to claim 4, characterized in that: The medicine placement area is provided with a groove for placing a syringe, and the groove is provided with an elastic clamp for clamping the syringe; the weighing area is provided with a weighing instrument.
6. The anesthetic drug box for operating room according to claim 1, characterized in that: The second storage box is arranged inside the first storage box.
7. The anesthetic drug box for operating room according to claim 1, characterized in that: The second storage box is arranged side by side with the first storage box.
8. The anesthetic medicine box for operating room according to claim 1, characterized in that: The biometric lock is provided with a communication module for communicating with a central control system for managing drugs in a hospital to obtain authorized biometric information.
9. The anesthetic drug box for operating room according to claim 1, characterized in that: The second storage box is provided with a transparent observation window.