A device for managing anesthetic drugs and anesthetic syringes, and a management system for anesthetic drugs.

By designing a management device for anesthetic drugs and syringes, the automated management of anesthetic drugs and syringes was achieved, solving the problem of low efficiency in the management process for anesthesiologists and nurses, and improving the safety and efficiency of management.

CN119611965BActive Publication Date: 2025-10-31广州多珀斯机电设备有限公司
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Patent Information

Application Number
CN202411755861.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-03
Publication Date
2025-10-31
Estimated Expiration
2044-12-03

AI Technical Summary

Technical Problem

Anesthesiologists and nurses undergoing anesthesia require a significant amount of time and effort to manage anesthetic drugs and syringes, leading to inconvenience and inefficiency.

Method used

A device for managing anesthetic drugs and syringes has been designed, comprising a container, a cap, a drug storage component, an identification module, an electronic lock, a drive device, and a control device. The electronic lock and control device enable automated management of drugs and syringes, including drug dispensing and temperature control.

Benefits of technology

It has improved the safety and standardization of anesthetic drug management, reduced the burden on medical staff, and improved management efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

This invention relates to the field of medical device technology, specifically disclosing a management device and management system for anesthetic drugs and syringes. The management device includes a container, a cap, a drug storage component, an identification module, an electronic lock, a drive device, and a control device. The container and cap are locked by the electronic lock and a slot. The container has a receiving groove, and the cap has a drug outlet communicating with the receiving groove. A turntable and a lifting device are provided inside the container. The output shaft of the drive device is connected to the turntable, and the bottom of the drug storage component has a perforation. The control device controls the electronic lock, drive device, and lifting device based at least on the identification information from the identification module. This management device replaces manual management of anesthetic drugs and syringes containing anesthetic drugs.
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Description

Technical Field

[0001] This invention relates to the field of medical device technology, specifically to a device for managing anesthetic drugs and anesthetic syringes. Background Technology

[0002] One of the most important and attention-intensive tasks for anesthesiologists during anesthesia is the management of anesthetic drugs and syringes containing anesthetic drugs.

[0003] Due to strict regulations on the management of anesthetic drugs and hospital infection control, anesthesiologists and anesthesia nurses have to expend a great deal of effort managing these drugs and syringes. To improve this situation, a device for managing anesthetic drugs and syringes has been designed to replace most of the manual management work, thereby reducing the burden on medical staff and improving the standardization and efficiency of management. Summary of the Invention

[0004] The technical problem to be solved by the present invention is to provide a device for managing anesthetic drugs and anesthetic syringes, replacing the manual management of anesthetic drugs and syringes containing anesthetic drugs.

[0005] To solve the above problems, the present invention adopts the following technical solution:

[0006] In terms of convenience, the present invention provides a management device for anesthetic drugs and anesthetic syringes, comprising: a container, a cap, a drug storage component, an identification module, an electronic lock, a drive device, and a control device.

[0007] The container and the lid are hinged together. The lid has a slot. The container and the lid are locked by the electronic lock and the slot. The container has a receiving slot, which is covered by the lid. The lid has a medicine outlet, which is connected to the receiving slot.

[0008] The container is equipped with a turntable and a lifting device. The drug storage unit is detachably mounted on the turntable. The output shaft of the drive device is connected to the turntable. The drug storage unit is used to store anesthetic drugs. The bottom of the drug storage unit has a perforation for the lifting device to extend into the drug storage unit. The lifting device is used to push the drugs stored in the drug storage unit out of the drug outlet.

[0009] The identification module, electronic lock, and drive device are all electrically connected to the control device.

[0010] The control device controls the electronic lock, drive device, and lifting device based at least on the identification information from the identification module.

[0011] In at least one embodiment of the anesthetic drug and anesthetic syringe management device provided in this disclosure, the drug storage component includes a drug placement slot and a connecting ring, and the drug placement slot communicates with the perforation.

[0012] A positioning rubber component is fixedly installed inside the drug placement slot, and the positioning rubber component is in clearance fit with the lifting device.

[0013] In at least one embodiment of the anesthetic drug and anesthetic syringe management device provided in this disclosure, the container is provided with a temporary storage compartment and a compartment door.

[0014] The temporary storage compartment is fixedly connected to the container, and the compartment door is hingedly connected to the container.

[0015] An electric telescopic rod is provided between the door and the container, and the two ends of the electric telescopic rod are respectively hinged to the door and the container.

[0016] The electric telescopic rod is electrically connected to the control device.

[0017] The temporary storage compartment is equipped with a syringe positioning seat, which is used to hold syringes.

[0018] The control device controls the electric telescopic pole based at least on the identification information from the identification module.

[0019] In at least one embodiment of the anesthetic drug and anesthetic syringe management device provided in this disclosure, a connecting part is fixedly provided on the inner ring surface of the connecting ring, and a sliding groove matching the connecting part is provided on the turntable. The connecting ring and the turntable are detachably connected through the connecting part and the sliding groove.

[0020] Multiple drug placement slots are provided, and the multiple drug placement slots are distributed in a ring array on the outer ring surface of the connecting ring.

[0021] The drug placement tank is equipped with a flange.

[0022] In at least one embodiment of the anesthetic drug and anesthetic syringe management device provided in this disclosure, a partition plate is provided inside the turntable. The partition plate is arranged in a ring shape, and the interior of the turntable is divided by the partition plate to form a cooling cavity and a receiving cavity.

[0023] The partition plate is provided with a connection port and a semiconductor cooling chip. The cold end face and the hot end face of the semiconductor cooling chip are respectively provided with a first heat-conducting chip and a second heat-conducting chip. The first heat-conducting chip passes through the partition plate through the connection port and is located in the cooling cavity.

[0024] An insulating adhesive layer is provided between the first heat-conducting sheet and the connection port.

[0025] The semiconductor cooling chip is electrically connected to the control device.

[0026] The cooling chamber is located on one side of the drug placement slot. Both the turntable and the connecting ring are provided with vent holes, and the drug placement slot and the cooling chamber are connected through the vent holes.

[0027] In at least one embodiment of the anesthetic drug and anesthetic syringe management device provided in this disclosure, the container and the turntable are respectively provided with a first heat dissipation port and a second heat dissipation port.

[0028] The first heat dissipation vent is located below the second heat dissipation vent, and both the first and second heat dissipation vents are C-shaped.

[0029] The second heat dissipation port is connected to the receiving cavity.

[0030] In at least one embodiment of the anesthetic drug and anesthetic syringe management device provided in this disclosure, a sealing ring is fixedly provided on the back of the cover, and the sealing ring seals the cooling chamber.

[0031] Both the partition plate and the connecting ring abut against the sealing ring.

[0032] In at least one embodiment of the anesthetic drug and anesthetic syringe management device provided in this disclosure, an exhaust fan is provided inside the first heat dissipation port, and an air inlet is provided on the cover.

[0033] The air inlet is connected to the receiving cavity, and a first temperature sensor is installed inside the receiving cavity.

[0034] Both the exhaust fan and the first temperature sensor are electrically connected to the control device.

[0035] The control device controls the start and stop of the exhaust fan based on the temperature information obtained by the first temperature sensor.

[0036] In at least one embodiment of the anesthetic drug and anesthetic syringe management device provided in this disclosure, a circulating fan is provided inside the cooling chamber, and a second temperature sensor is provided inside the cooling chamber.

[0037] The second temperature sensor and the circulating fan are both electrically connected to the control device.

[0038] The control device controls the start and stop of the circulating fan based on the temperature information obtained by the second temperature sensor.

[0039] Secondly, the present invention provides an anesthetic drug management system, including multiple management devices for the aforementioned anesthetic drugs and anesthetic syringes.

[0040] The beneficial effects of the present invention are as follows: When in use, the control device can start the drive device according to the instruction, the drive device drives the drug storage unit to rotate according to the set stroke, and after the drive device rotates the anesthetic drug in the drug storage unit to below the drug outlet, the control device starts the lifting device to push the anesthetic drug out of the container.

[0041] Because the container and lid are locked by the electronic lock and slot, the anesthetic drugs can be locked inside the container, which can effectively prevent the loss of anesthetic drugs, ensuring high safety and making it convenient for medical staff to manage anesthetic drugs. Attached Figure Description

[0042] To more clearly illustrate the technical solutions in the embodiments of the present invention, the accompanying drawings used in the description of the embodiments will be briefly introduced below. Obviously, the accompanying drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0043] Figure 1 This is a cross-sectional view of an anesthetic drug and anesthetic syringe management device according to the present invention.

[0044] Figure 2 This is a partial cross-sectional view of an anesthetic drug and anesthetic syringe management device according to the present invention.

[0045] Figure 3 This is a partial cross-sectional view of the medicine storage unit.

[0046] In the picture:

[0047] 10. Container; 11. Turntable; 12. Lifting device; 13. Door; 14. First heat dissipation vent; 15. Second heat dissipation vent; 16. Temporary storage compartment; 121. Syringe positioning seat; 111. Divider plate; 112. Cooling chamber; 113. Receiving chamber; 114. Semiconductor cooling chip; 115. First heat-conducting plate; 116. Second heat-conducting plate;

[0048] 20. Cap; 21. Medicine outlet; 22. Air inlet; 23. Sealing ring;

[0049] 30. Drug storage component; 31. Perforation; 32. Drug placement slot; 33. Connecting ring; 34. Positioning rubber component; 331. Connecting part; 321. Flanged edge; 35. Vent hole.

[0050] 40. Recognition module;

[0051] 50. Control device;

[0052] 60. Electronic lock;

[0053] 70. Drive unit;

[0054] 80. Electric telescopic pole;

[0055] 90. Exhaust fan;

[0056] 100. Circulating fan. Detailed Implementation

[0057] The technical solutions in the embodiments will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments, not all embodiments.

[0058] Example

[0059] like Figures 1 to 3 As shown, a management device for anesthetic drugs and anesthetic syringes includes a container 10, a cap 20, a drug storage component 30, an identification module 40, an electronic lock 60, a drive device 70, and a control device 50.

[0060] In this embodiment, the container 10 and the cover 20 are hinged together. The cover 20 is provided with a slot (not shown). The container 10 and the cover 20 are locked by an electronic lock 60 and the slot. The container 10 has a receiving groove, which is covered by the cover 20. The cover 20 is provided with a medicine outlet 21, which is connected to the receiving groove.

[0061] In this embodiment, a turntable 11 and a lifting device 12 are provided inside the container 10. The drug storage component 30 is detachably mounted on the turntable 11. The output shaft of the drive device 70 is connected to the turntable 11. The drug storage component 30 is used to store anesthetic drugs. The bottom of the drug storage component 30 has a perforation 31 for the lifting device 12 to extend into the drug storage component 30. The lifting device 12 is used to push the drugs stored in the drug storage component 30 out of the drug outlet 21. The identification module 40, electronic lock 60, drive device 70, and lifting device 12 are all electrically connected to the control device 50.

[0062] In this embodiment, the drug storage component 30 includes a drug placement groove 32 and a connecting ring 33. The drug placement groove 32 communicates with a through hole 31, which is located on the drug placement groove 32. A positioning rubber component 34 is fixedly disposed inside the drug placement groove 32, and the positioning rubber component 34 is in clearance fit with the lifting device 12.

[0063] In this embodiment, the container 10 is provided with a temporary storage compartment 16 and a compartment door 13. The temporary storage compartment 16 is fixedly connected to the container 10, and the compartment door 13 is hingedly connected to the container 10. An electric telescopic rod 80 is provided between the compartment door 13 and the container 10, and both ends of the electric telescopic rod 80 are hingedly connected to the compartment door 13 and the container 10, respectively. The electric telescopic rod 80 is electrically connected to the control device 50. A syringe positioning seat 121 is provided inside the temporary storage compartment 16, which is used to place the syringe.

[0064] For example, the control device 50 is an industrial all-in-one machine with a touch screen. During use, the operator can click on options from the industrial all-in-one machine. After receiving the option command, the all-in-one machine opens the recognition module to identify the user. Once successful, it activates the electronic lock 60, drive device 70, electric telescopic rod 80, and lifting device 12 according to the command, ensuring high security.

[0065] For example, the options include a lock / unlock option, a compartment / unlock option, and a medication option.

[0066] When the user selects the unlock option, the control device activates the identification module to identify the user. Once the identification is successful, it controls the electronic lock 60 to unlock or lock according to the instructions.

[0067] When the user selects the open / close option, the control device activates the identification module to identify the user. Once identification is successful, the control device adjusts the extension stroke of the electric telescopic rod 80 according to the command to open or close the compartment door 13.

[0068] When the user selects the medication option, the control device activates the recognition module to identify the user. Once the recognition is successful, it controls the drive device 70 and the lifting device 12 according to the instructions to send the required medication to the outside through the medication outlet 21.

[0069] In this embodiment, a connecting portion 331 is fixedly provided on the inner annular surface of the connecting ring 33, and a sliding groove (not shown) matching the connecting portion 331 is provided on the turntable 11. The connecting ring 33 and the turntable 11 are detachably connected through the connecting portion 331 and the sliding groove. Multiple drug placement slots 32 are provided, and the multiple drug placement slots 32 are distributed in a circular array on the outer annular surface of the connecting ring 33. A flange 321 is provided on the drug placement slot 32.

[0070] For example, the drive device 70 uses a stepper motor, and the included angle between adjacent drug placement slots 32 is the same as the step angle of the stepper motor, which can facilitate the programmable control by the operator.

[0071] In this embodiment, a partition plate 111 is provided inside the turntable 11. The partition plate 111 is arranged in a ring shape, and the interior of the turntable 11 is divided by the partition plate 111 to form a cooling cavity 112 and a receiving cavity 113. A connection port (not shown) and a semiconductor cooling chip 114 are provided on the partition plate 111. A first heat-conducting sheet 115 and a second heat-conducting sheet 116 are respectively provided on the cold end face and the hot end face of the semiconductor cooling chip 114. The first heat-conducting sheet 115 passes through the partition plate 111 through the connection port and is located in the cooling cavity 112. The second heat-conducting sheet 116 is located in the receiving cavity 113.

[0072] Specifically, an insulating adhesive layer (not shown) is provided between the first heat-conducting sheet 115 and the connection port. The semiconductor cooling sheet 114 is electrically connected to the control device 50. The cooling chamber 112 is located on one side of the drug placement tank 32, and both the turntable 11 and the connecting ring 33 are provided with vent holes 35. The drug placement tank 32 and the cooling chamber 112 are connected through the vent holes 35.

[0073] The drug placement tank 32 has a refrigeration function, making it suitable for anesthetic drugs that require refrigeration, and it has good adaptability.

[0074] In this embodiment, a first heat dissipation vent 14 and a second heat dissipation vent 15 are respectively provided on the container 10 and the turntable 11. The first heat dissipation vent 14 is located below the second heat dissipation vent 15, and both the first heat dissipation vent 14 and the second heat dissipation vent 15 are C-shaped. The second heat dissipation vent 15 communicates with the receiving cavity 113.

[0075] In this embodiment, a sealing ring 23 is fixedly provided on the back of the cover 20, and the sealing ring 23 seals the cooling chamber 112. The partition plate 111 and the connecting ring 33 both abut against the sealing ring 23. By providing the sealing ring 23, the sealing effect between the partition plate 111 and the cover 20 can be effectively improved, and the sealing effect between the connecting ring 33 and the cover 20 can also be effectively improved, which is beneficial to maintaining the temperature inside the cooling chamber 112.

[0076] In this embodiment, an exhaust fan 90 is installed inside the first heat dissipation vent 14, and an air inlet 22 is provided on the cover 20. The air inlet 22 communicates with the receiving cavity 113, and a first temperature sensor (not shown) is installed inside the receiving cavity 113. Both the exhaust fan 90 and the first temperature sensor are electrically connected to the control device 50. The control device 50 controls the start and stop of the exhaust fan 90 based on the temperature information obtained by the first temperature sensor (not shown).

[0077] A circulating fan 100 and a second temperature sensor (not shown) are installed inside the cooling chamber 112. Both the second temperature sensor and the circulating fan 100 are electrically connected to the control device 50. The control device 50 controls the start and stop of the circulating fan 100 based on the temperature information obtained from the second temperature sensor (not shown).

[0078] The temperature control inside the cooling chamber 112 is highly automated and easy to use.

[0079] In addition, the present invention also provides an anesthetic drug management system, including a management device for anesthetic drugs and anesthetic syringes in several embodiments.

[0080] Although embodiments of this application have been shown and described above, the scope of protection of this invention is not limited thereto. Any variations or substitutions that can be conceived without inventive effort should be covered within the scope of protection of this invention. Unless expressly stated otherwise, no element, action or instruction used herein should be construed as critical or necessary.

Claims

1. A device for managing anesthetic drugs and anesthetic syringes, characterized in that, include: Containers, lids, medicine storage components, identification modules, electronic locks, drive devices, and control devices; The container and the lid are hinged together. The lid is provided with a slot. The container and the lid are locked by the electronic lock and the slot. The container has a receiving slot. The receiving slot is covered by the lid. The lid is provided with a medicine outlet. The medicine outlet is connected to the receiving slot. The container is equipped with a turntable and a lifting device. The drug storage component is detachably mounted on the turntable. The output shaft of the drive device is connected to the turntable. The drug storage component is used to store anesthetic drugs. The bottom of the drug storage component has a perforation for the lifting device to extend into the drug storage component. The lifting device is used to push the drugs stored in the drug storage component out of the drug outlet. The identification module, electronic lock, and drive device are all electrically connected to the control device; The control device controls the electronic lock, drive device, and lifting device based at least on the identification information from the identification module; The container is equipped with a temporary storage compartment and a compartment door; The temporary storage compartment is fixedly connected to the container, and the compartment door is hingedly connected to the container; An electric telescopic rod is provided between the door and the container, and the two ends of the electric telescopic rod are respectively hinged to the door and the container. The electric telescopic rod is electrically connected to the control device; The temporary storage compartment is equipped with a syringe positioning seat, which is used to hold syringes. The control device controls the electric telescopic pole based at least on the identification information from the identification module.

2. The anesthetic drug and anesthetic syringe management device according to claim 1, characterized in that, The drug storage component includes a drug placement slot and a connecting ring, and the drug placement slot is in communication with the perforation; A positioning rubber component is fixedly installed inside the drug placement slot, and the positioning rubber component is in clearance fit with the lifting device.

3. The anesthetic drug and anesthetic syringe management device according to claim 2, characterized in that, The inner ring surface of the connecting ring is fixedly provided with a connecting part, and the turntable is provided with a sliding groove that matches the connecting part. The connecting ring and the turntable are detachably connected through the connecting part and the sliding groove. The drug placement slots are provided in multiple ways, and the multiple drug placement slots are distributed in a ring array on the outer ring surface of the connecting ring; The drug placement tank is equipped with a flange.

4. A device for managing anesthetic drugs and anesthetic syringes according to claim 2, characterized in that, The turntable is provided with a partition plate, which is arranged in a ring shape. The interior of the turntable is divided by the partition plate to form a cooling cavity and a receiving cavity. The partition plate is provided with a connection port and a semiconductor cooling chip. The cold end face and the hot end face of the semiconductor cooling chip are respectively provided with a first heat-conducting chip and a second heat-conducting chip. The first heat-conducting chip passes through the partition plate through the connection port and is located in the cooling cavity. A heat-insulating adhesive layer is provided between the first heat-conducting sheet and the connection port; The semiconductor cooling chip is electrically connected to the control device; The cooling chamber is located on one side of the drug placement slot. Both the turntable and the connecting ring are provided with vent holes, and the drug placement slot and the cooling chamber are connected through the vent holes.

5. A device for managing anesthetic drugs and anesthetic syringes according to claim 4, characterized in that, The container and the turntable are respectively provided with a first heat dissipation vent and a second heat dissipation vent; The first heat dissipation vent is located below the second heat dissipation vent, and both the first and second heat dissipation vents are C-shaped. The second heat dissipation port is connected to the receiving cavity.

6. A device for managing anesthetic drugs and anesthetic syringes according to claim 5, characterized in that, A sealing ring is fixedly provided on the back of the cover, and the sealing ring seals the cooling cavity; Both the partition plate and the connecting ring abut against the sealing ring.

7. A device for managing anesthetic drugs and anesthetic syringes according to claim 6, characterized in that, An exhaust fan is provided inside the first heat dissipation vent, and an air inlet is provided on the cover. The air inlet is connected to the receiving cavity, and a first temperature sensor is installed inside the receiving cavity; The exhaust fan and the first temperature sensor are both electrically connected to the control device; The control device controls the start and stop of the exhaust fan based on the temperature information obtained by the first temperature sensor.

8. A device for managing anesthetic drugs and anesthetic syringes according to claim 7, characterized in that, A circulating fan is installed inside the refrigeration chamber, and a second temperature sensor is installed inside the refrigeration chamber; The second temperature sensor and the circulating fan are both electrically connected to the control device; The control device controls the start and stop of the circulating fan based on the temperature information obtained by the second temperature sensor.

9. An anesthetic drug management system, characterized in that: Includes multiple anesthetic drugs and anesthetic syringe management devices as described in any one of claims 1-8.

Citation Information

Patent Citations

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