Medical medicine adding and dispensing auxiliary device
The use of a medical dispensing and preparation auxiliary device enables automatic drug verification and alerts, solving the problems of manual operation and occupational exposure in drug verification, and reducing the workload and risks for medical staff.
Patent Information
- Application Number
- CN202520531418.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-25
- Publication Date
- 2026-08-25
- Estimated Expiration
- 2035-03-25
AI Technical Summary
In existing technologies, drug verification requires manual operation. Medical staff cannot be reminded when taking incompletely prepared medications, which increases workload and occupational exposure risk.
The medical drug dispensing and preparation auxiliary device includes a preparation table, display screen, scanning component, reminder component, and drug box. The scanning component verifies drug information with the HIS system, and the reminder component alerts to errors or incomplete preparation. The drug dispensing device allows for the injection of medication into the infusion bottle without the need for a syringe.
It reduces the workload of medical staff, lowers the risk of occupational exposure, and avoids the dangers of medication errors and syringe use.
Smart Images

Figure CN224671822U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical device technology, specifically to a medical drug dispensing and preparation auxiliary device. Background Technology
[0002] In clinical practice, an infusion list needs to be printed each time an infusion is administered to a patient. Medical staff need to prepare medications according to the contents of the infusion list.
[0003] However, during the medication preparation process, the verification of the medication still requires manual operation, and there is no way to remind medical staff when they take out unprepared medication. This results in a heavy workload for medical staff. In addition, when preparing the medication in the vial, medical staff need to use a syringe to draw out the medication from the vial and then inject the drawn medication into the infusion bottle, which increases the risk of occupational exposure for medical staff. Utility Model Content
[0004] The present invention aims to overcome the shortcomings of the prior art, such as the need for manual verification of medicines and the inability to remind medical staff when they take incompletely prepared medicines or to inject the extracted medicines into the infusion bottle with a syringe, which increases the occupational exposure of medical staff.
[0005] A medical dispensing and preparation auxiliary device is proposed, comprising a preparation table, a display screen, a scanning component, a reminder component, and a medicine box. The display screen is disposed on one side of the preparation table and connected to the scanning component. The scanning component is located at one end of the display screen and connected to the top of the preparation table. The reminder component is disposed above the preparation table and located on one side of the scanning component, and the reminder component is connected to the scanning component. The medicine box is located below the scanning component and disposed inside the preparation table.
[0006] In this utility model's technical solution, during medication preparation, after scanning the patient's prescription at the scanning port, the display screen shows the required medication. During preparation, after scanning the QR code on the medication at the scanning port, the information processing module built into the preparation station imports the medication information into the HIS system for verification. If the verification result is correct, the green light of the reminder component illuminates; conversely, if the verification result is incorrect, the red light of the reminder component illuminates. This eliminates the need for manual operation by medical staff. If, during medication preparation, the weight sensor detects that the infusion bottle on the platform has been removed and the medical staff has not pressed the confirmation button, the buzzer will sound an alarm and the red light will illuminate. The device will light up to alert medical staff. When medication needs to be injected into the infusion bottle, the fixing sleeve of the medication dispensing device can be attached to the infusion bottle, and then the vial can be attached to the guide sleeve. Turning the handle will drive the guide sleeve downwards. After the syringe is inserted into the infusion bottle and vial, the medication can enter the infusion bottle through the syringe, thus eliminating the need for medical staff to use a syringe. This addresses the shortcomings mentioned in the technical background, such as the need for manual verification of medications and the inability to alert medical staff when they take incompletely prepared medications or to inject the extracted medication into the infusion bottle using a syringe, which increases the occupational exposure of medical staff.
[0007] In a preferred embodiment of the present invention, the configuration platform is provided with four support feet, all of which are threaded onto the configuration platform. Therefore, when the configuration platform is placed on an uneven ground, the support feet can be rotated to adjust the distance between the configuration platform and the ground.
[0008] In a preferred embodiment of the present invention, a box is attached to the other side of the configuration table. When saline or sugar water needs to be retrieved, the saline or sugar water can be placed inside the box, and then the required saline or sugar water can be retrieved at once through the box, thus making it convenient for medical personnel to retrieve.
[0009] In a preferred embodiment of the present invention, the box is provided with two placement frames inside, and each placement frame is provided with a label bag. When preparing the medicine solution, labels with "prepared" and "not prepared" can be placed inside the label bag, which makes it easy for medical personnel to quickly distinguish between them.
[0010] In a preferred embodiment of the present invention, the medicine box includes a pull-out box and a rotating box. The pull-out box is located below the scanning component and is slidably connected inside the preparation table. The rotating box is located below the pull-out box and is positioned at one end of the pull-out box, and is connected to the pull-out box. When preparing the medicine, the rotating box can be rotated out from below the pull-out box, and then the patient's prescription can be placed on the rotating box, which facilitates observation by medical staff.
[0011] In a preferred embodiment of the present invention, a pull ring is provided on one side of the pull-out box, and the pull-out box is provided with a slot and a clamp. The pull ring is attached to the pull-out box, and the pull-out box can be pulled out from inside the configuration table when needed.
[0012] In a preferred embodiment of the present invention, the scanning component includes a scanning port and an information transmission module. The scanning port is located at one end of the configuration table and connected to the information transmission module. The information transmission module is disposed inside the housing and located on one side of the reminder component, and is connected to the reminder component. When the scanning port scans the QR code containing the patient's medical order information and the drug's barcode and obtains the corresponding information, it is uploaded to the HIS system via the information transmission module and checked against the pre-stored dispensing information within the system to prevent dispensing errors. In a preferred embodiment of the present invention, the reminder component includes a platform, a weight sensor, a confirmation button, a buzzer, a red light, and a green light. The platform is located to one side of the scanning component and is positioned above the configuration table. The weight sensor is located below the platform and is disposed inside the configuration table, and is electrically connected to the red and green lights. The buzzer is located at one end of the platform and connected to the configuration table. The red and green lights are respectively located at opposite ends of the buzzer. The confirmation button is located to one side of the red light and is connected to the scanning component. In a preferred embodiment of the present invention, the configuration platform is further provided with a groove, and the drug dosing device is located inside the groove. When it is necessary to inject the drug solution inside the vial into the infusion bottle, the drug can be injected into the infusion bottle through the drug dosing device. During this process, the drug solution inside the vial will not come into contact with the outside, thereby reducing the risk of occupational exposure.
[0013] In a preferred embodiment of the present invention, the drug delivery device includes a fixed cylinder, a handle, a guide cylinder, a syringe, a locking block, and a membrane flap. The handle is connected to the top of the fixed cylinder. The guide cylinder is vertically positioned inside the fixed cylinder and connected to the handle. The syringe is vertically connected inside the fixed cylinder. There are two sets of locking blocks, which are respectively connected inside the fixed cylinder and the guide cylinder. There are two sets of membrane flaps, which are respectively positioned above and below the syringe. The two sets of membrane flaps are respectively adhered to the inside of the fixed cylinder and the guide cylinder. When the drug delivery device is not needed, the membrane flaps on the guide cylinder and the fixed cylinder will seal the opening at the center of the guide cylinder and the opening at the bottom of the fixed cylinder, thereby preventing external impurities from entering the inside of the fixed cylinder and contaminating the syringe.
[0014] The advantages of this utility model compared with the prior art are: This invention assists medical personnel in verifying and recording medications during drug preparation, eliminating the need for manual operation and reducing their workload. Furthermore, when medical personnel retrieve incompletely prepared medications, the reminder component uses a buzzer and red light to alert them, preventing errors. Additionally, the device can inject medications into infusion bottles when needed, eliminating the need for manual syringe use and reducing occupational exposure risks for medical personnel. Attached Figure Description
[0015] Figure 1 A schematic diagram of a medical drug dispensing and preparation auxiliary device; Figure 2 A schematic diagram of the structure of a medical drug dispensing and preparation auxiliary device viewed from below; Figure 3 A schematic diagram of the placement frame structure for a medical drug dispensing and preparation auxiliary device; Figure 4 A schematic diagram of the medicine dispensing box structure for a medical drug dispensing and preparation auxiliary device; Figure 5 A schematic diagram of the rotating box structure of the medicine dispensing box for a medical drug dispensing auxiliary device; Figure 6 A bottom view of the rotating box structure of the medicine dispensing box in a medical drug dispensing auxiliary device; Figure 7 A schematic diagram of the internal structure of the configuration table for a medical drug dispensing and preparation auxiliary device (the configuration table is a whole; one part has been removed to show the internal structure). Figure 8 A schematic diagram of the internal structure of the configuration table for a medical drug dispensing and preparation auxiliary device (the configuration table is a whole; one part has been removed to show the internal structure). Figure 9 A schematic diagram of the structure of a drug dispensing and preparation auxiliary device for medical use; Figure 10 A schematic diagram of the handle of a drug dispensing device for medical use; Figure 11 A half-sectional schematic diagram of a drug dispensing device for medical use; Figure 12 A schematic diagram showing the connection between the drug dispensing device and the infusion bottle and vial in a medical drug dispensing auxiliary device; Figure 13 for Figure 12 Enlarged view of point A; In the diagram: 1-Configuration platform, 11-Supporting leg, 2-Display screen, 3-Scanning component, 31-Scanning port, 32-Information transmission module, 4-Reminder component, 41-Platform, 42-Weight sensor, 43-Confirmation button, 44-Buzzer, 45-Red light, 46-Green light, 5-Drug box, 51-Pull-out box, 52-Rotating box, 53-Pull ring, 54-Slot, 55-Clamp, 6-Box body, 61-Placement frame, 62-Label bag, 7-Drug dosing device, 71-Fixing cylinder, 72-Handle, 73-Guide cylinder, 74-Syringe, 75-Clamping block, 76-Membrane flap. Detailed Implementation
[0016] The following will refer to the appendix in the embodiments of this utility model. Figure 1-13 The technical solutions in the embodiments of this utility model will be described in detail below.
[0017] like Figure 1-3 As shown, a medical drug dispensing and preparation auxiliary device includes a preparation platform 1, a display screen 12, a scanning component 3, a reminder component 4, and a medicine box 5. The display screen 12 is located on one side of the preparation platform 1 and is fixedly connected to the preparation platform 1 by screws. The display screen 12 is electrically connected to the scanning component 3.
[0018] like Figure 1-3 As shown, once the scanning component 3 has finished scanning the QR code containing the patient's medical order information, the display screen 12 will display the information scanned by the scanning component 3. The scanning component 3 is located at one end of the display screen 12 and is positioned above the configuration table 1.
[0019] like Figure 1-3 As shown, the reminder component 4 is set above the configuration table 1 and located on one side of the scanning component 3. The reminder component 4 is connected to the scanning component 3. Therefore, when the medicine is taken away before it is fully prepared, the reminder component 4 will issue a reminder.
[0020] like Figure 1-3 As shown, when the drug information detected by the scanning component 3 is different from the drug information in the patient's prescription, the reminder component 4 will also issue a reminder to alert medical staff. The medicine box 5 is located below the scanning component 3 and is set inside the configuration table 1.
[0021] like Figure 1-3 As shown, the medicine box 5 is slidably connected inside the preparation table 1. When medical staff need to prepare medicine, they can place the medicine to be prepared inside the medicine box 5. Boxed medicines and ampoule medicines can be placed separately to avoid causing medicine confusion and breakage.
[0022] like Figure 1-3As shown, four support legs 11 are provided below the configuration platform 1. The four support legs 11 are vertically arranged at the four corners of the configuration platform 1, and all four support legs 11 are threadedly connected to the configuration platform 1. Therefore, when the configuration platform 1 is placed on an uneven ground, it can provide support for the configuration platform 1.
[0023] like Figure 1-3 As shown, the support foot 11 can be rotated to adjust the distance between the lower end of the support foot 11 and the configuration table 1, thereby ensuring that the table surface of the configuration table 1 is horizontal. The other side of the configuration table 1 is provided with a box 6, which is parallel to the configuration table 1 and is glued to the configuration table 1.
[0024] like Figure 1-3 As shown, when saline or sugar water is needed, it can be placed inside the box 6, and then the required saline or sugar water can be taken out at once through the box 6, which is convenient for medical staff to take out. The box 6 is equipped with a placement frame 61.
[0025] like Figure 1-3 As shown, there are two placement boxes 61, and each of the two placement boxes 61 has a transparent label bag 62. When preparing the medicine solution, the labels with "prepared" and "not prepared" can be placed inside the transparent label bag 62, so that medical staff can quickly distinguish them.
[0026] like Figure 4-6 As shown, the medicine box 5 includes a pull-out box 51 and a rotating box 52. The pull-out box 51 is slidably disposed inside the configuration table 1, and a pull ring 53 is provided on one side of the pull-out box 51. The pull ring 53 is attached to the pull-out box 51.
[0027] like Figure 4-6 As shown, the pull-out box 51 can be pulled out from the configuration table 1 by the pull ring 53 when needed, so as to facilitate the use of medical staff. The rotating box 52 is located at one end of the pull-out box 51 and is set below the pull-out box 51, and one corner of the rotating box 52 is rotatably connected to the pull-out box 51.
[0028] like Figure 4-6 As shown, when preparing medication, the rotating box 52 can be rotated out from under the pull-out box 51, and then the patient's medical order can be placed on the rotating box 52 for easy observation by medical staff. The pull-out box 51 has two grooves, and the inner wall of the groove located on one side of the pull ring 53 has a slot 54.
[0029] like Figure 4-6 As shown, when preparing the medication, the boxed medication can be vertically inserted into the slot 54. On the other side of the pull ring 53, there are multiple circular clamps 55 vertically attached to the pull box 51. When preparing the medication, the ampoule-type medication can be vertically inserted into the clamps 55.
[0030] like Figure 4-6 As shown, boxed medicines and ampoule-type medicines can be placed separately on the medicine box 5 to avoid medicines getting messy and broken. After the medicine box 5 is used up, it can be stored inside the configuration table 1 to save storage space.
[0031] like Figure 7-8 As shown, the scanning component 3 includes a scanning port 31 and an information transmission module 32. The scanning port 31 is located at one end of the configuration table 1 and is positioned above the medicine box 5. The scanning port 31 is also positioned on the upper surface of the configuration table 1.
[0032] like Figure 7-8 As shown, the information transmission module 32 is located inside the housing 6 and on one side of the reminder component 4. The information transmission module 32 is fixedly connected to the configuration table 1 by screws. The scanning port 31 is electrically connected to the information transmission module 32, and the information transmission module 32 is communicatively connected to the hospital's HIS system.
[0033] like Figure 7-8 As shown, when the scanning port 31 scans the QR code containing the patient's medical order information and the drug's barcode and obtains the corresponding information, it will be uploaded to the internal HIS system through the information transmission module 32 and checked against the pre-stored medication information in the system. This is to query and verify the patient's information and to confirm that the scanned drug is the drug recorded in the patient's medical order and is the drug the patient needs, thus avoiding medication errors.
[0034] like Figure 7-8 As shown, the reminder component 4 includes a platform 41, a weight sensor 42, a confirmation button 43, a buzzer 44, a red light 45, and a green light 46. The platform 41 is located on one side of the scanning component 3 and is positioned above the configuration table 1. The lower end of the platform 41 passes through the configuration table 1 and abuts against the weight sensor 42.
[0035] like Figure 7-8 As shown, when the injection solution is placed on the platform 41, the platform 41 can transfer the weight of the injection solution to the weight sensor 42, thereby weighing it through the weight sensor 42. The weight sensor 42 is electrically connected to the red light 45 and the green light 46.
[0036] like Figure 7-8 As shown, when the injection liquid on the weight sensor 42 is removed during the preparation process, the red light 45 will light up immediately. Both the red light 45 and the green light 46 used are LED lights. The buzzer 44 is set at one end of the platform 41 and connected to the configuration table 1, and the buzzer 44 is electrically connected to the weight sensor 42.
[0037] like Figure 7-8As shown, during the preparation process, when the injection liquid on the weight sensor 42 is removed, the red light 45 lights up and the buzzer 44 is activated to sound an alarm. The red light 45 and the green light 46 are respectively located at both ends of the buzzer 44, and both the red light 45 and the green light 46 are connected to the information transmission module 32.
[0038] like Figure 7-8 As shown, after the HIS system completes the verification of the information obtained from the scanning port 31, it will send the verification result to the information transmission module 32. Then, the information transmission module 32 will activate the red light 45 or the green light 46 according to the verification result. When the verification result is correct, the green light 46 will be activated.
[0039] like Figure 7-8 As shown, if the verification result is incorrect, the red light 45 will be activated. The confirmation button 43 is located on one side of the red light 45 and is connected to the information transmission module 32. When the information transmission module 32 activates the green light 46 or the red light 45 and the buzzer 44 according to the verification result.
[0040] like Figure 7-8 As shown, medical staff can press the confirmation button 43 to confirm the verification result and turn off the green light 46 or red light 45 and buzzer 44, thereby avoiding the red light 45 or green light 46 from staying on and the buzzer 44 from sounding continuously. The confirmation button 43 is also electrically connected to the weight sensor 42.
[0041] like Figure 7-8 As shown, when the weight sensor 42 activates the red light 45, pressing the confirmation button 43 will turn off the red light 45. When the injection solution is prepared, pressing the confirmation button 43 and removing the injection solution from the platform 41 will prevent the red light 45 from lighting up.
[0042] like Figure 9-13 As shown, the configuration table 1 is also provided with a groove, and the drug dosing device 7 is set inside the groove. When it is necessary to inject the drug solution inside the vial into the infusion bottle, the drug can be injected into the infusion bottle through the drug dosing device 7. During this process, the drug solution inside the vial will not come into contact with the outside, thereby reducing the risk of occupational exposure.
[0043] like Figure 9-13 As shown, the dosing device 7 includes a fixed cylinder 71, a handle 72, a guide cylinder 73, a syringe 74, a locking block 75, and a membrane flap 76. The handle 72 is located at the top of the fixed cylinder 71 and is rotatably connected to the fixed cylinder 71.
[0044] like Figure 9-13 As shown, the guide cylinder 73 is vertically disposed inside the fixed cylinder 71, and the outer wall of the guide cylinder 73 is provided with threads. The lower end of the guide cylinder 73 is inserted into the fixed cylinder 71, and the guide cylinder 73 is connected to the handle 72 through the threads on the outer wall.
[0045] like Figure 9-13 As shown, when the handle 72 is rotated in the forward direction, the guide cylinder 73 will move downward under the action of the handle 72. Conversely, when the handle 72 is rotated in the reverse direction, the guide cylinder 73 will move upward under the action of the handle 72.
[0046] like Figure 9-13 As shown, the syringe 74 is vertically arranged inside the fixed cylinder 71, and the middle section of the syringe 74 is bonded to the fixed cylinder 71. There are two sets of locking blocks 75, which are respectively bonded to the inside of the fixed cylinder 71 and the guide cylinder 73.
[0047] like Figure 9-13 As shown, there are two sets of membrane flaps 76, which are vertically arranged above and below the syringe 74, respectively. The two sets of templates are connected to the guide tube 73 and the fixing tube 71, respectively. When it is necessary to inject drugs, the top opening of the infusion bottle can be inserted into the lower end of the fixing tube 71.
[0048] like Figure 9-13 As shown, during the process of inserting the top opening of the infusion bottle into the fixed cylinder 71, the infusion bottle will push open the template on the inner wall of the fixed cylinder 71. After the locking block 75 on the inner wall of the fixed cylinder 71 locks the infusion bottle, the lower end of the syringe 74 will also pass through the rubber stopper at the top of the infusion bottle and be inserted into the inside of the infusion bottle.
[0049] like Figure 9-13 As shown, the top opening of the vial can then be inserted upside down into the guide tube 73. After the locking block 75 on the inner wall of the guide tube 73 locks the vial, the handle 72 is rotated in the forward direction. At this time, the guide tube 73 will move downward under the action of the handle 72.
[0050] like Figure 9-13 As shown, during the downward movement of the guide cylinder 73, the tip of the syringe 74 will pass through the template on the guide cylinder 73, and then the tip of the syringe 74 will pass through the rubber stopper at the opening of the vial and be inserted into the inside of the vial.
[0051] like Figure 9-13 As shown, the liquid medicine inside the vial will then flow into the infusion bottle through the syringe 74. If the liquid medicine inside the vial cannot fall or the medicine inside the vial is in powder form, the infusion bottle can be squeezed (the infusion bottle used is made of elastic plastic or is a bag-shaped infusion bottle).
[0052] like Figure 9-13 As shown, the liquid inside the infusion bottle will be squeezed due to the deformation of the infusion bottle, and then enter the inside of the vial through the syringe 74. After the liquid and the medicine inside the vial are completely mixed, the infusion bottle can be released. During the recovery process of the infusion bottle, the medicine inside the vial can be drawn back into the infusion bottle.
[0053] like Figure 9-13 As shown, during the process, the medicine inside the vial can enter the infusion bottle without the need for a syringe. When not in use, the flaps 76 on the guide tube 73 and the fixed tube 71 will seal the opening at the center of the guide tube 73 and the opening at the lower end of the fixed tube 71, thereby preventing external impurities from entering the interior of the fixed tube 71 and contaminating the syringe 74.
[0054] The process in this embodiment is as follows: After the infusion slip or a QR code containing the patient's infusion information is placed in the scanning port 31 for scanning, the information transmission module 32 can import the information obtained from the scanning port 31 into the HIS system for verification.
[0055] Then the display screen 12 will display the information on the doctor's order. Medical staff can then take the required infusion bottle out of the placement box 61 according to the content on the display screen 12 and place the QR code on the infusion bottle on the scanning port 31 for scanning.
[0056] After scanning is completed, the infusion bottle can be placed on the platform 41. After scanning the QR code on the infusion bottle, the scanning port 31 will display the liquid information (such as saline or sugar water) inside the infusion bottle on the display screen 12.
[0057] At the same time, the information transmission module 32 will import the scanned infusion bottle information into the HIS system for verification, so as to determine whether the liquid inside the infusion bottle is what the patient needs.
[0058] Then, the medical staff will retrieve the medication according to the name of the medication displayed on the display screen 12. After retrieving the medication, the medical staff can place the medication separately on the medicine box 5 and start preparing the medication. When preparing the medication, the label of the medication is first placed on the scanning port 31 for scanning.
[0059] After scanning the drug information, the information transmission module 32 will import the drug information into the HIS system and compare it with the drug information on the doctor's prescription. If the scanned drug is the same as the one recorded on the doctor's prescription, the green light 46 of the reminder component 4 will light up.
[0060] Conversely, if the scanned medication is not listed in the doctor's prescription, the red light 45 of the reminder component 4 will light up, and the information transmission module 32 will import the medication information into the HIS system while the display bottle will also display the information of the scanned medication.
[0061] After all the medications have been injected into the infusion bottle, press the confirmation button 43. If all the medications have been injected into the infusion bottle, the green light 46 will light up, and the medical staff can then remove the infusion bottle from the weighing sensor.
[0062] During the medication preparation process, when the infusion bottle is removed from the weight sensor 42, the buzzer 44 and red light 45 in the reminder component 4 will sound an alarm. Furthermore, when the medical staff presses the confirmation button 43, if the type and quantity of medication imported into the HIS system do not match the doctor's order, the buzzer 44 and red light 45 in the reminder component 4 will still sound an alarm to remind the medical staff that the medication has not been prepared or that the medication injected does not match the doctor's order.
[0063] When injecting the drug into the infusion bottle using the drug dosing device 7, the top opening of the infusion bottle can be inserted into the fixed tube 71, and then the opening of the vial can be inserted upside down into the guide tube 73 and the handle 72 can be rotated. When the handle 72 is rotated, the vial and the guide tube 73 will slowly descend.
[0064] Once the syringe 74 is inserted into the vial, the medication inside the vial will flow into the infusion bottle through the syringe 74. When the handle 72 is rotated to move the guide tube 73 and the vial upward and the infusion bottle is removed from the inside of the fixing tube 71, the membrane flap 76 will scrape off any residual medication on the syringe 74 and the infusion bottle, thereby preventing the medication from being exposed to the air.
[0065] The above embodiments are only for illustrating the technical concept of this utility model and should not be construed as limiting the scope of protection of this utility model. Any modifications made to the technical solution based on the technical concept proposed by this utility model shall fall within the scope of protection of this utility model.
Claims
1. A medical drug dispensing and preparation auxiliary device, characterized in that: The device includes a configuration table (1), a display screen (2), a scanning component (3), a reminder component (4), and a medicine box (5). The display screen (2) is located on one side of the configuration table (1) and connected to the scanning component (3). The scanning component (3) is located at one end of the display screen (2) and connected to the top of the configuration table (1). The reminder component (4) is located above the configuration table (1) and on one side of the scanning component (3), and the reminder component (4) is connected to the scanning component (3). The medicine box (5) is located below the scanning component (3) and is located inside the configuration table (1).
2. The medical drug dispensing and preparation auxiliary device according to claim 1, characterized in that: The configuration platform (1) is provided with four support feet (11) below.
3. The medical drug dispensing and preparation auxiliary device according to claim 2, characterized in that: The other side of the configuration platform (1) is fitted with a box (6).
4. The medical drug dispensing and preparation auxiliary device according to claim 3, characterized in that: The box (6) has two placement frames (61) inside, and the placement frames are equipped with label bags (62).
5. The medical drug dispensing and preparation auxiliary device according to claim 1, characterized in that: The medicine box (5) includes a pull-out box (51) and a rotating box (52). The pull-out box (51) is located below the scanning component (3) and is slidably connected inside the configuration table (1). The rotating box (52) is located below the pull-out box (51) and is set at one end of the pull-out box (51), and the rotating box (52) is connected to the pull-out box (51).
6. The medical drug dispensing and preparation auxiliary device according to claim 5, characterized in that: The pull-out box (51) has a pull ring (53) on one side, and the pull-out box (51) has a slot (54) and a clamp (55).
7. The medical drug dispensing and preparation auxiliary device according to claim 5, characterized in that: The scanning component (3) includes a scanning port (31) and an information transmission module (32). The scanning port (31) is located at one end of the configuration table (1) and is connected to the information transmission module (32). The information transmission module (32) is located inside the box and on one side of the reminder component (4), and the information transmission module (32) is connected to the reminder component (4).
8. The medical drug dispensing and preparation auxiliary device according to claim 7, characterized in that: The reminder component (4) includes a platform (41), a weight sensor (42), a confirmation button (43), a buzzer (44), a red light (45), and a green light (46). The platform (41) is located on one side of the scanning component (3) and is set above the configuration table (1). The weight sensor (42) is located below the platform (41) and is set inside the configuration table (1). The weight sensor (42) is electrically connected to the red light (45) and the green light (46). The buzzer (44) is set at one end of the platform (41) and connected to the configuration table (1). The red light (45) and the green light (46) are respectively set at both ends of the buzzer (44). The confirmation button (43) is set on one side of the red light (45) and is connected to the scanning component (3).
9. The medical drug dispensing and preparation auxiliary device according to claim 7, characterized in that: The configuration platform (1) is also provided with a groove, and the dosing device (7) is set inside the groove.
10. The medical drug dispensing and preparation auxiliary device according to claim 9, characterized in that: The drug delivery device (7) includes a fixed cylinder (71), a handle (72), a guide cylinder (73), a syringe (74), a locking block (75), and a membrane flap (76). The handle (72) is connected to the top of the fixed cylinder (71). The guide cylinder (73) is vertically arranged inside the fixed cylinder (71) and connected to the handle (72). The syringe (74) is vertically connected inside the fixed cylinder (71). There are two sets of locking blocks (75) and they are respectively connected inside the fixed cylinder (71) and the guide cylinder (73). There are two sets of membrane flaps (76) and they are respectively arranged above and below the syringe (74). The two sets of membrane flaps (76) are respectively bonded to the inside of the fixed cylinder (71) and the guide cylinder (73).