CN110942564A - Intelligent management system and management method for ophthalmic consumables - Google Patents

Intelligent management system and management method for ophthalmic consumables Download PDF

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Publication number
CN110942564A
CN110942564A CN201910839407.6A CN201910839407A CN110942564A CN 110942564 A CN110942564 A CN 110942564A CN 201910839407 A CN201910839407 A CN 201910839407A CN 110942564 A CN110942564 A CN 110942564A
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Prior art keywords
ophthalmic
storage
consumables
value
threshold value
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孙冬云
曹新平
黄小萌
秦秀芝
刘小琴
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Affiliated Hospital of Nantong University
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Affiliated Hospital of Nantong University
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    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F17/00Coin-freed apparatus for hiring articles; Coin-freed facilities or services
    • G07F17/10Coin-freed apparatus for hiring articles; Coin-freed facilities or services for means for safe-keeping of property, left temporarily, e.g. by fastening the property
    • G07F17/12Coin-freed apparatus for hiring articles; Coin-freed facilities or services for means for safe-keeping of property, left temporarily, e.g. by fastening the property comprising lockable containers, e.g. for accepting clothes to be cleaned
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F9/00Details other than those peculiar to special kinds or types of apparatus
    • G07F9/02Devices for alarm or indication, e.g. when empty; Advertising arrangements in coin-freed apparatus
    • G07F9/026Devices for alarm or indication, e.g. when empty; Advertising arrangements in coin-freed apparatus for alarm, monitoring and auditing in vending machines or means for indication, e.g. when empty
    • GPHYSICS
    • G07CHECKING-DEVICES
    • G07FCOIN-FREED OR LIKE APPARATUS
    • G07F9/00Details other than those peculiar to special kinds or types of apparatus
    • G07F9/10Casings or parts thereof, e.g. with means for heating or cooling
    • G07F9/105Heating or cooling means, for temperature and humidity control, for the conditioning of articles and their storage
    • GPHYSICS
    • G16INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
    • G16HHEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
    • G16H40/00ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
    • G16H40/20ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the management or administration of healthcare resources or facilities, e.g. managing hospital staff or surgery rooms

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  • Physics & Mathematics (AREA)
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  • Health & Medical Sciences (AREA)
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Abstract

The application provides an intelligent management system and a management method for ophthalmic consumables, and belongs to the field of medical equipment. The intelligent management system of ophthalmic consumables includes: the storage cabinet is internally provided with a plurality of storage lattices; an acquisition unit configured to acquire first consumable information of ophthalmic consumables in each storage compartment, the first consumable information including a name of the ophthalmic consumable and an effective use expiration date; the first display units and the first alarm units are arranged in the display area; the clock unit is used for acquiring the current date in real time; the control unit is used for judging whether a time difference value between the effective use expiration date and the current date of the ophthalmic consumables in each storage cell is smaller than a preset first threshold value or not, and controlling the corresponding first alarm unit to send out a first alarm signal when the time difference value is smaller than the first threshold value. The application provides an intelligent management system and a management method of ophthalmic consumables, and management efficiency and accuracy of ophthalmic consumables in a service life are improved.

Description

Intelligent management system and management method for ophthalmic consumables
Technical Field
The application belongs to the field of medical equipment, and relates to an intelligent management system and a management method for ophthalmic consumables.
Background
Ophthalmology is a discipline that studies on diseases that occur in the visual system, including the eyeball and its associated tissues. In the course of ophthalmological treatment, high-value medical consumables are often used. Ophthalmic high-value medical consumables include consumables such as a lens and an intraocular filler. Because the ophthalmic high-value medical consumables are relatively expensive and limited in number, strict control management is required in the use process of the ophthalmic high-value medical consumables so as to reduce the loss of the ophthalmic high-value medical consumables.
At present, the use management of high-value ophthalmic consumables still adopts a manual recording mode. However, in the manual recording process, problems such as mislooking and overlooking of the service life are likely to occur, and the service life of the ophthalmic high-value medical supplies is difficult to be effectively managed.
Disclosure of Invention
Technical problem to be solved
In view of the technical problem, the application provides an intelligent management system and a management method of ophthalmic supplies, whether the time difference between the effective use deadline of the ophthalmic supplies in each storage grid and the current date is smaller than a preset first threshold value or not is judged, and when the time difference is smaller than the first threshold value, a corresponding first alarm unit is controlled to send out a first alarm signal, the purpose of carrying out real-time monitoring on the quality guarantee period of the ophthalmic supplies to realize early warning is achieved, and the management efficiency and the accuracy of the service life of the ophthalmic supplies are improved.
(II) technical scheme
The application provides an intelligent management system of ophthalmology consumptive material includes:
the storage cabinet comprises a cabinet body, a plurality of storage cavity layers which are distributed along the height direction are arranged in the cabinet body, and a plurality of storage lattices which are distributed along the length direction are arranged in each storage cavity layer;
an acquisition unit configured to acquire first consumable information of ophthalmic consumables in each storage compartment, the first consumable information including a name of the ophthalmic consumable and an effective use expiration date;
the first display units are arranged in one-to-one correspondence with the storage lattices in the storage cabinet and are installed on the cabinet body, and the first display units are used for displaying first consumable information of ophthalmic consumables in the corresponding storage lattices;
the first alarm units are arranged in one-to-one correspondence with the storage lattices in the storage cabinet and are arranged on the cabinet body, and the first alarm units are used for sending out first alarm signals;
the clock unit is used for acquiring the current date in real time;
and the control unit is used for judging whether the time difference value between the effective use expiration date and the current date of the ophthalmic consumables in each storage grid is smaller than a preset first threshold value or not and controlling the corresponding first alarm unit to send out a first alarm signal when the time difference value is smaller than the first threshold value.
In some embodiments of the present application, any two adjacent storage compartments among the plurality of storage compartments in each storage chamber layer are arranged in communication with each other;
the storage cabinet also comprises a base, the base is fixedly connected to the bottom of the cabinet body, a dehumidifier is arranged in the base, and an air inlet of the dehumidifier is communicated with the plurality of storage cavity layers through a pipeline;
the intelligent management system further comprises:
the temperature and humidity detection units are arranged in the storage cavity layers in a one-to-one correspondence mode and are used for acquiring temperature values and humidity values in the storage cavity layers;
the plurality of second display units are respectively in one-to-one correspondence with the plurality of storage cavity layers and are arranged on the cabinet body, and the second display units are used for displaying the temperature values and the humidity values in the corresponding storage cavity layers;
the plurality of second alarm units are respectively in one-to-one correspondence with the plurality of storage cavity layers and are arranged on the cabinet body, and the second alarm units are used for sending out second alarm signals;
the control unit is used for judging whether the temperature value in each storage cavity layer is larger than a preset temperature threshold value and judging whether the humidity value in each storage cavity layer is larger than a preset humidity threshold value, and controlling the corresponding second alarm unit to send out a second alarm signal when the temperature value in each storage cavity layer is larger than the preset temperature threshold value or the humidity value is larger than the preset humidity threshold value.
In some embodiments of the present application, the first alarm unit and the second alarm unit are both warning lamps, and the intelligent management system further includes a buzzer installed on the storage cabinet, and the buzzer is used for emitting warning sounds; wherein,
the control unit controls the buzzer to give out warning sound when the temperature value in the storage cavity layer is greater than a preset temperature threshold value or the humidity value is greater than a preset humidity threshold value.
In some embodiments of this application, the front end of the cabinet body is the open end, and the matter storage lattice includes the main part, rotates on the front end of main part to be connected with the chamber door, is equipped with the electric control lock between main part and the chamber door, and intelligent management system still includes:
the detection unit is respectively connected with the electric control lock in each storage lattice and is used for detecting whether each electric control lock is opened or not;
and the first counting unit is used for acquiring the opening times of each electric control lock.
In some embodiments of the present application, the intelligent management system further comprises:
the scanning unit is arranged on the cabinet body and used for scanning the image codes on the ophthalmic consumables to acquire second consumable information of the ophthalmic consumables, and the second consumable information comprises the name, the brand, the model, the production date and the effective use expiration date of the ophthalmic consumables;
a second counting unit for acquiring the number of times the image code on each ophthalmic consumable is scanned.
In some embodiments of the present application, the intelligent management system further comprises:
the camera shooting unit is arranged on the storage cabinet and used for collecting the face information;
and the sending unit is used for uploading the face information to the server.
In some embodiments of the application, in the plurality of storage lattices of each storage cavity layer, a partition board is arranged between any two adjacent storage lattices, a plurality of through grooves arranged at intervals are arranged in the partition board, and the through grooves penetrate through the partition board in the thickness direction.
The application also provides a management method of ophthalmic consumables, and the management method comprises the following steps:
acquiring first consumable information and a current date of ophthalmic consumables in each storage cell, wherein the first consumable information comprises names and effective use expiration dates of the ophthalmic consumables;
and judging whether the time difference value between the effective use expiration date and the current date of the ophthalmic consumables in each storage cell is smaller than a preset first threshold value or not, and sending out a first alarm signal when the time difference value is smaller than the first threshold value.
In some embodiments of the present application, the management method further comprises:
acquiring a temperature value and a humidity value in a storage cavity layer;
and judging whether the temperature value in each storage cavity layer is greater than a preset temperature threshold value and judging whether the humidity value in each storage cavity layer is greater than a preset humidity threshold value, and sending a second alarm signal when the temperature value in each storage cavity layer is greater than the preset temperature threshold value or the humidity value is greater than the preset humidity threshold value.
In some embodiments of the present application, the management method further comprises:
and when the temperature value in the storage cavity layer is greater than a preset temperature threshold value or the humidity value is greater than a preset humidity threshold value, warning sound is sent out.
(III) advantageous effects
According to the technical scheme, the method has at least one of the following beneficial effects:
(1) the application provides an intelligent management system and a management method of ophthalmic consumables, through judging whether the effective use deadline of the ophthalmic consumables in each storage grid is smaller than a preset first threshold value or not, and controlling a corresponding first alarm unit to send out a first alarm signal when the time difference is smaller than the first threshold value, the purpose of carrying out real-time monitoring on the quality guarantee period of the ophthalmic consumables so as to realize early warning is realized, and the management efficiency and the accuracy of the service life of the ophthalmic consumables are improved.
(2) The application provides an intelligent management system and management method of ophthalmology consumptive material, through judging whether the temperature value in every storage chamber layer is greater than predetermined temperature threshold value and judging whether the humidity value in every storage chamber layer is greater than predetermined humidity threshold value, and control corresponding second alarm unit and send the second alarm signal when the temperature value in the storage chamber layer is greater than predetermined temperature threshold value or humidity value is greater than predetermined humidity threshold value, realized carrying out real-time supervision and accurate control to the humiture in the storage chamber layer, guarantee ophthalmology consumptive material storage environment.
(3) The application provides an intelligent management system and a management method of ophthalmic consumables, gather face information and upload to the server through the unit of making a video recording, can monitor the access process of ophthalmic consumables, have improved the storage security of ophthalmic consumables.
(4) The application provides an intelligent management system and a management method of ophthalmic consumables, the number of times of scanning through acquiring image codes on each ophthalmic consumable is used for obtaining each ophthalmic consumable, so that big data analysis is carried out on the usage condition of the ophthalmic consumables in the later stage.
Drawings
FIG. 1 is a schematic structural diagram of a storage cabinet according to an embodiment of the present application;
FIG. 2 is a schematic structural diagram of a separator in an embodiment of the present application;
fig. 3 is a flowchart of a management method of an ophthalmic consumable in an embodiment of the present application.
Reference numerals:
1. a cabinet body; 2. a base; 3. a second mounting panel; 4. a first image pickup unit;
5. a control panel; 6. a scanning unit; 7. a storage cavity layer; 8. a temperature sensor;
9. a humidity sensor; 10. a partition plate; 11. a storage grid; 12. an electrically controlled lock; 13. a box door;
14. a first mounting panel; 15. a second imaging unit; 16. a first display unit;
17. a first alarm unit; 18. a second display unit; 19. a second alarm unit;
20. a buzzer; 21. a dehumidifier; 22. a pipeline; 23. a control unit; 24. a through groove.
Detailed Description
The application provides an intelligent management system and a management method of ophthalmic supplies, whether the time difference between the effective use deadline of the ophthalmic supplies in each storage grid 11 and the current date is smaller than a preset first threshold value or not is judged, and when the time difference is smaller than the first threshold value, a corresponding first alarm unit 17 is controlled to send out a first alarm signal, the purpose of carrying out real-time monitoring on the quality guarantee period of the ophthalmic supplies to realize early warning is achieved, and the management efficiency and the accuracy of the service life of the ophthalmic supplies are improved.
In order to make the objects, technical solutions and advantages of the present application more apparent, the present application is further described in detail below with reference to the accompanying drawings in combination with specific embodiments.
In an exemplary embodiment of the present disclosure, an intelligent management system and a management method for ophthalmic consumables are provided, and each component of the present embodiment is described in detail below:
in this embodiment of the present application:
as shown in fig. 1, an embodiment of the present application provides an intelligent management system for ophthalmic consumables, including:
the storage cabinet comprises a cabinet body 1, a plurality of storage cavity layers 7 which are distributed along the height direction are arranged inside the cabinet body 1, and a plurality of storage lattices 11 which are distributed along the length direction are arranged in each storage cavity layer 7;
an acquisition unit configured to acquire first consumable information of ophthalmic consumables in each storage compartment 11, the first consumable information including a name and an effective use expiration date of the ophthalmic consumable;
the first display units 16 are arranged in one-to-one correspondence with the storage lattices 11 in the storage cabinet and are installed on the cabinet body 1, and the first display units 16 are used for displaying first consumable information of ophthalmic consumables in the corresponding storage lattices 11;
the storage cabinet comprises a plurality of first alarm units 17, wherein the first alarm units 17 are arranged in one-to-one correspondence with storage lattices 11 in the storage cabinet and are installed on the cabinet body 1, and the first alarm units 17 are used for sending out first alarm signals;
the clock unit is used for acquiring the current date in real time;
and the control unit 23 is used for judging whether the time difference value between the effective use expiration date and the current date of the ophthalmic consumables in each storage compartment 11 is smaller than a preset first threshold value or not, and controlling the corresponding first alarm unit 17 to send out a first alarm signal when the time difference value is smaller than the first threshold value.
In this embodiment, the cabinet includes the cabinet body 1, is equipped with a plurality of storage chamber layers 7 in the cabinet body 1, and a plurality of storage chamber layers 7 are arranged in order along the direction of height of the cabinet body 1. Between any two adjacent storage chamber layers 7, there is a layer partition 10, and the layer partition 10 is disposed in the horizontal direction. The layer partition 10 may be a sealing structure so that any two adjacent storage chamber layers 7 are not communicated with each other, thereby avoiding the situation where the storage environments interfere with each other. In each storage chamber layer 7, a partition 10 is provided between any adjacent two of the storage compartments 11, and the partition 10 is disposed in the vertical direction. The storage compartment 11 may be used to store ophthalmic consumables.
The acquisition unit is configured to acquire first consumable information of ophthalmic consumables in each of the storage compartments 11, the first consumable information including names of ophthalmic consumables and effective use expiration dates. Wherein the acquisition unit may preferably be a scanner, and the first consumable information may be obtained by scanning an image code on the ophthalmic consumable. Of course, the acquiring unit may also be an information input device such as a keyboard or a touch screen, and the first consumable information is acquired by a manner of inputting information by a worker. The acquisition unit is connected with the first display unit 16, and the first display unit 16 can preferably be a display screen for displaying the information of the first consumable item, so that the staff can acquire the name of the ophthalmic consumable item in the storage compartment 11 and the information such as the effective use expiration date at any time. The first alarm unit 17 is used for emitting a first alarm signal, and the first alarm unit 17 may preferably be an audible alarm or a warning light. In the cabinet, the top of every storage cavity layer 7 all is equipped with first installation panel 14, be equipped with the first installation department that is located directly over every matter storage lattice 11 on the first installation panel 14, first display element 16 and the first alarm unit 17 that correspond the setting with every matter storage lattice 11 all install in corresponding first installation department to whether the staff obtains the first consumptive material information of the ophthalmic consumptive material in current matter storage lattice 11 fast and judges the ophthalmic consumptive material in every matter storage lattice 11 and is in the shelf life.
The control unit 23, the control unit 23 is connected with a plurality of first alarm units 17 and clock unit respectively for judge whether the time difference between the effective use deadline of the ophthalmic supplies in each storage compartment 11 and the current date is less than the preset first threshold, and control the corresponding first alarm unit 17 to send out a first alarm signal when the time difference is less than the first threshold, thereby realizing the purpose of monitoring the quality guarantee period of the ophthalmic supplies in real time to realize early warning, and improving the management efficiency and accuracy of the service life of the ophthalmic supplies.
In some embodiments of the present application, among the plurality of storage compartments 11 of each storage chamber layer 7, any adjacent two storage compartments 11 are disposed in communication with each other;
the storage cabinet also comprises a base 2, the base 2 is fixedly connected to the bottom of the cabinet body 1, a dehumidifier 21 is arranged in the base 2, and an air inlet of the dehumidifier 21 is communicated with the plurality of storage cavity layers 7 through a pipeline 22;
the intelligent management system further comprises:
the temperature and humidity detection units are arranged in the storage cavity layers 7 in a one-to-one correspondence mode and are used for acquiring temperature values and humidity values in the storage cavity layers 7;
the plurality of second display units 18 are respectively in one-to-one correspondence with the plurality of storage cavity layers 7 and are installed on the cabinet body 1, and the second display units 18 are used for displaying the temperature values and the humidity values in the corresponding storage cavity layers 7;
the plurality of second alarm units 19 correspond to the plurality of storage cavity layers 7 one by one and are arranged on the cabinet body 1, and the second alarm units 19 are used for sending out second alarm signals;
the control unit 23 is configured to determine whether the temperature value in each storage cavity layer 7 is greater than a preset temperature threshold and determine whether the humidity value in each storage cavity layer 7 is greater than a preset humidity threshold, and control the corresponding second alarm unit 19 to send out a second alarm signal when the temperature value in the storage cavity layer 7 is greater than the preset temperature threshold or the humidity value is greater than the preset humidity threshold.
In the present embodiment, among the plurality of storage compartments 11 in each storage chamber layer 7, any two adjacent storage compartments 11 are communicated with each other, so that each storage compartment 11 in the storage chamber layer 7 has the same storage environment. The base 2 is located below the cabinet body 1 and is fixedly connected with the cabinet body 1. A dehumidifier 21 is arranged in the base 2, and an air inlet of the dehumidifier 21 is communicated with the storage cavity layers 7 through a pipeline 22 so as to perform dehumidification treatment in each storage cavity layer 7. The dehumidifier 21 may preferably be a dehumidifier 21 having a function of setting a temperature value. The set temperature value of the dehumidifier 21 is 22-25 ℃, and the humidity value is within 60% HR, so that the temperature value in each storage cavity layer 7 is 22-25 ℃, and the humidity value is within 60% HR. Every storage chamber layer 7 all is equipped with the temperature and humidity detection unit, and the temperature and humidity detection unit is used for detecting temperature value and humidity value in the storage chamber layer 7. Wherein, the temperature and humidity detection unit can include a temperature sensor 8 and a humidity sensor 9 to respectively acquire a temperature value and a humidity value. The temperature and humidity detection unit positioned in each storage cavity layer 7 is connected with the second display unit 18 corresponding to the storage cavity layer 7, and the second display unit 18 can be preferably a display screen and used for displaying the temperature value and the humidity value in the storage cavity layer 7 so that a worker can acquire the temperature and humidity condition in the storage cavity layer 7 at any time. The second alarm unit 19 is used for emitting a second alarm signal, and the second alarm unit 19 may preferably be an audible alarm or a warning light. Be equipped with on the preceding terminal surface of cabinet and store a plurality of second installation departments that the chamber layer 7 one-to-one set up with a plurality of storage, and the second installation department is located the left side of corresponding storage chamber layer 7. The second display unit 18 and the second alarm unit 19 which are arranged corresponding to each storage cavity layer 7 are installed in the corresponding second installation parts, so that a worker can conveniently and quickly obtain the temperature and humidity value in the current storage cavity layer 7 and judge whether the temperature and humidity value in each storage cavity layer 7 is abnormal or not.
The control unit 23 is respectively connected with the temperature and humidity detection units and the second alarm units 19, and is used for judging whether the temperature value in each storage cavity layer 7 is greater than a preset temperature threshold value and judging whether the humidity value in each storage cavity layer 7 is greater than a preset humidity threshold value, and controlling the corresponding second alarm units 19 to send out second alarm signals when the temperature value in the storage cavity layer 7 is greater than the preset temperature threshold value or the humidity value is greater than the preset humidity threshold value, so that the real-time monitoring and the accurate control of the temperature and the humidity in the storage cavity layer 7 are realized, and the storage environment of the ophthalmic consumables is ensured.
In some embodiments of the present application, the first alarm unit 17 and the second alarm unit 19 are both warning lamps, the intelligent management system further includes a buzzer 20 mounted on the storage cabinet, and the buzzer 20 is configured to emit a warning sound; wherein,
the buzzer 20 is connected with the control unit 23, and the control unit 23 controls the buzzer 20 to give out warning sound when the temperature value in the storage cavity layer 7 is greater than the preset temperature threshold value or the humidity value is greater than the preset humidity threshold value.
In the present embodiment, the first alarm unit 17 and the second alarm unit 19 are alarm lamps for emitting alarm light. The color of the warning light is, for example, but not limited to, red, etc. Still be equipped with bee calling organ 20 on the cabinet body 1, bee calling organ 20 is connected with the control unit 23, and the control unit 23 controls bee calling organ 20 and sends out warning sound when the temperature value in the storage chamber layer 7 is greater than predetermined temperature threshold value or humidity value is greater than predetermined humidity threshold value to suggestion staff's ophthalmology consumptive material storage environment appears unusually.
In some embodiments of this application, the front end of the cabinet body 1 is the open end, and the storage compartment 11 includes the main part, rotates on the front end of main part to be connected with chamber door 13, is equipped with electric control lock 12 between main part and chamber door 13, and intelligent management system still includes:
the detection unit is respectively connected with the electric control lock 12 in each storage lattice 11 and is used for detecting whether each electric control lock 12 is opened or not;
and the first counting unit is used for acquiring the opening times of each electric control lock 12.
In this embodiment, the front end of the cabinet body 1 is an open end, that is, the front end of the storage compartment 11 is also an open end, the open end of the storage compartment 11 is covered with a door 13, and the door 13 is rotatably connected to the main body. An electric control lock 12 is arranged between the main body and the door 13, and the electric control lock 12 is used for locking the door 13. The electric control lock 12 can be opened by means of passwords, fingerprints and the like. For example: the second mounting panel 3 is provided with a control panel 5, and after the number of the storage compartment 11 to be opened is input on the control panel 5, the control panel 5 controls the electric control lock 12 in the storage compartment 11 corresponding to the number to be opened. The detection unit is connected with the electric control lock 12 in each storage compartment 11 and is used for detecting whether each electric control lock 12 is opened or not. The detection unit may preferably be an infrared detection sensor disposed in the lock hole, and determines whether the electric control lock 12 is opened by detecting whether the bolt is in the lock hole. When the bolt is located in the lock hole, the electric control lock 12 is in a locking state; when the bolt is disengaged from the lock hole, the electric control lock 12 is in an open state. The first counting unit is connected with the detection unit and is used for acquiring the opening times of each electric control lock 12.
In some embodiments of the present application, the intelligent management system further comprises:
the scanning unit 6 is arranged on the cabinet body 1 and is used for scanning the image codes on the ophthalmic consumables to acquire second consumable information of the ophthalmic consumables, and the second consumable information comprises the names, brands, models, production dates and effective use expiration dates of the ophthalmic consumables;
a second counting unit for acquiring the number of times the image code on each ophthalmic consumable is scanned.
In this embodiment, a third mounting portion is provided on the front end surface of the storage cabinet, the second mounting portion is located on the right side of the storage cavity layer 7, the second mounting panel 3 is fixedly mounted on the third mounting portion, and the scanning unit 6 is mounted on the second mounting panel 3. The scanning unit 6 may scan the image code on the ophthalmic consumable to acquire second consumable information of the ophthalmic consumable, the second consumable information including a name, a brand, a model, a production date, and an effective use expiration date of the ophthalmic consumable, wherein the scanning unit 6 may preferably be a scanner. The second counting unit is connected to the scanning unit 6 for acquiring the number of times the image code on each ophthalmic consumable is scanned. Wherein the number of times the image code on each ophthalmic consumable is scanned is equal to the number of times each ophthalmic consumable is used. And acquiring the use times of each ophthalmic consumable by the second counting unit so as to carry out big data analysis on the use condition of each ophthalmic consumable subsequently.
In some embodiments of the present application, the intelligent management system further comprises:
the camera shooting unit is arranged on the storage cabinet and used for collecting the face information;
and the sending unit is used for uploading the face information to the server.
In this embodiment, the camera unit may preferably be a camera, the camera is mounted on the storage cabinet, and the sending unit is connected to the camera unit. The camera unit carries out the collection of face information to the personnel of getting access ophthalmology consumptive material, and the sending unit sends the face information that the camera unit gathered to the server, and then can monitor the access process of ophthalmology consumptive material, has improved the storage security of ophthalmology consumptive material.
In some embodiments of the present application, a plurality of camera units are disposed on the storage cabinet, and the plurality of camera units include a first camera unit 4 disposed on the second mounting panel 3 and a second camera unit 15 disposed at a middle portion of the plurality of first mounting panels 14, so as to increase a monitoring range of ophthalmic consumables.
As shown in fig. 2, in some embodiments of the present application, a partition 10 is provided between any two adjacent storage compartments 11 in the plurality of storage compartments 11 of each storage chamber layer 7, and a plurality of through grooves 24 are provided in the partition 10 at intervals, the through grooves 24 being provided to penetrate in a thickness direction of the partition 10.
In the present embodiment, the partition 10 is vertically disposed in the storage chamber layer 7 and is fixedly connected to the cabinet 1. The partition board 10 is provided with a plurality of through grooves 24 arranged at intervals, and the through grooves 24 penetrate along the thickness direction of the partition board 10. The through groove 24 can communicate two storage compartments 11 on two sides, so that the temperature and the humidity in the storage cavity layer 7 are relatively balanced.
As shown in fig. 3, the present application further provides a management method of ophthalmic consumables, based on an intelligent management system of ophthalmic consumables, the management method includes:
s10: acquiring first consumable information and a current date of ophthalmic consumables in each storage cell 11, wherein the first consumable information comprises names and effective use expiration dates of the ophthalmic consumables;
s20: whether the time difference value between the effective use expiration date and the current date of the ophthalmic consumables in each storage compartment 11 is smaller than a preset first threshold value or not is judged, and a first alarm signal is sent out when the time difference value is smaller than the first threshold value.
In some embodiments of the present application, the management method further comprises:
acquiring a temperature value and a humidity value in the storage cavity layer 7;
and judging whether the temperature value in each storage cavity layer 7 is greater than a preset temperature threshold value and judging whether the humidity value in each storage cavity layer 7 is greater than a preset humidity threshold value, and sending a second alarm signal when the temperature value in each storage cavity layer 7 is greater than the preset temperature threshold value or the humidity value is greater than the preset humidity threshold value.
In some embodiments of the present application, the management method further comprises:
when the temperature value in the storage cavity layer 7 is larger than a preset temperature threshold value or the humidity value is larger than a preset humidity threshold value, a warning sound is sent out.
The implementation principle and the technical effect of the management method provided by the embodiment of the present application have been described in the embodiments of the management system, and are not described herein again.
Up to this point, the present embodiment has been described in detail with reference to the accompanying drawings. From the above description, one skilled in the art should clearly recognize the present application.
It is to be noted that, in the attached drawings or in the description, the implementation modes not shown or described are all the modes known by the ordinary skilled person in the field of technology, and are not described in detail. Furthermore, the above definitions of the various elements and methods are not limited to the specific structures, shapes, or configurations shown in the examples.
It is also noted that the illustrations herein may provide examples of parameters that include particular values, but that these parameters need not be exactly equal to the corresponding values, but may be approximated to the corresponding values within acceptable error tolerances or design constraints. Directional phrases used in the embodiments, such as those referring to "upper", "lower", "front", "rear", "left", "right", etc., refer only to the orientation of the attached drawings and are not intended to limit the scope of the present application. In addition, unless steps are specifically described or must occur in sequence, the order of the steps is not limited to that listed above and may be changed or rearranged as desired by the desired design. The embodiments described above may be mixed and matched with each other or with other embodiments based on design and reliability considerations, i.e., technical features in different embodiments may be freely combined to form further embodiments.
The above-mentioned embodiments are further described in detail for the purpose of illustrating the invention, and it should be understood that the above-mentioned embodiments are only illustrative of the present invention and are not to be construed as limiting the present invention, and any modifications, equivalents, improvements and the like made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (10)

1. An intelligent management system for ophthalmic consumables, comprising:
the storage cabinet comprises a cabinet body, a plurality of storage cavity layers which are distributed along the height direction are arranged in the cabinet body, and a plurality of storage lattices which are distributed along the length direction are arranged in each storage cavity layer;
an acquisition unit configured to acquire first consumable information of ophthalmic consumables in each of the storage compartments, the first consumable information including names and effective use expiration dates of the ophthalmic consumables;
the first display units are arranged on the cabinet body in a one-to-one correspondence manner with the storage lattices in the storage cabinet, and are used for displaying the first consumable information of the corresponding ophthalmic consumables in the storage lattices;
the first alarm units are arranged in one-to-one correspondence with the storage lattices in the storage cabinet and are mounted on the cabinet body, and the first alarm units are used for sending out first alarm signals;
the clock unit is used for acquiring the current date in real time;
the control unit is used for judging whether a time difference value between the effective use expiration date and the current date of the ophthalmic consumables in each storage cell is smaller than a preset first threshold value or not, and controlling the corresponding first alarm unit to send out a first alarm signal when the time difference value is smaller than the first threshold value.
2. The intelligent management system for ophthalmic consumables according to claim 1, wherein, in the plurality of storage compartments of each storage chamber layer, any adjacent two of the storage compartments are provided in communication with each other;
the storage cabinet also comprises a base, the base is fixedly connected to the bottom of the cabinet body, a dehumidifier is arranged in the base, and an air inlet of the dehumidifier is communicated with the plurality of storage cavity layers through a pipeline;
the intelligent management system further comprises:
the temperature and humidity detection units are arranged in the storage cavity layers in a one-to-one correspondence manner and are used for acquiring temperature values and humidity values in the storage cavity layers;
the plurality of second display units are respectively in one-to-one correspondence with the plurality of storage cavity layers and are arranged on the cabinet body, and the second display units are used for displaying the corresponding temperature values and humidity values in the storage cavity layers;
the plurality of second alarm units are respectively in one-to-one correspondence with the plurality of storage cavity layers and are arranged on the cabinet body, and the second alarm units are used for sending out second alarm signals;
the control unit is used for judging whether the temperature value in each storage cavity layer is larger than a preset temperature threshold value and judging whether the humidity value in each storage cavity layer is larger than a preset humidity threshold value, and when the temperature value in each storage cavity layer is larger than the preset temperature threshold value or the humidity value is larger than the preset humidity threshold value, the corresponding second alarm unit is controlled to send out a second alarm signal.
3. The intelligent management system for ophthalmic consumables according to claim 2, wherein the first alarm unit and the second alarm unit are alarm lamps, and the intelligent management system further comprises a buzzer mounted on the storage cabinet, the buzzer being configured to emit an alarm sound; wherein,
the control unit controls the buzzer to give out warning sound when the temperature value in the storage cavity layer is larger than a preset temperature threshold value or the humidity value is larger than a preset humidity threshold value.
4. The intelligent management system for ophthalmic consumables according to claim 3, wherein the front end of the cabinet body is an open end, the storage compartment includes a main body, a door is rotatably connected to the front end of the main body, an electrically controlled lock is provided between the main body and the door, and the intelligent management system further includes:
the detection unit is respectively connected with the electric control locks in the storage lattices and is used for detecting whether each electric control lock is opened or not;
and the first counting unit is used for acquiring the opening times of each electric control lock.
5. The intelligent management system of ophthalmic consumables according to claim 2, further comprising:
the scanning unit is arranged on the cabinet body and used for scanning image codes on the ophthalmic consumables to acquire second consumable information of the ophthalmic consumables, and the second consumable information comprises the names, brands, models, production dates and effective use expiration dates of the ophthalmic consumables;
a second counting unit for acquiring the number of times the image code on each ophthalmic consumable is scanned.
6. The intelligent management system of ophthalmic consumables according to claim 2, further comprising:
the camera shooting unit is arranged on the storage cabinet and used for collecting face information;
and the sending unit is used for uploading the face information to a server.
7. The intelligent management system for ophthalmic consumables according to claim 1, wherein a partition is provided between any adjacent two of the plurality of storage compartments in each storage chamber layer, and a plurality of through grooves are provided in the partition at intervals, and the through grooves are provided to penetrate in a thickness direction of the partition.
8. A method for managing ophthalmic consumables, based on the intelligent management system for ophthalmic consumables according to any one of claims 4 to 7, the method comprising:
acquiring first consumable information and a current date of ophthalmic consumables in each storage cell, wherein the first consumable information comprises names and effective use expiration dates of the ophthalmic consumables;
and judging whether the time difference value between the effective use expiration date and the current date of the ophthalmic consumables in each storage cell is smaller than a preset first threshold value or not, and sending a first alarm signal when the time difference value is smaller than the first threshold value.
9. The method for managing an ophthalmic consumable according to claim 8, characterized in that it further comprises:
acquiring a temperature value and a humidity value in the storage cavity layer;
and judging whether the temperature value in each storage cavity layer is greater than a preset temperature threshold value and judging whether the humidity value in each storage cavity layer is greater than a preset humidity threshold value, and sending a second alarm signal when the temperature value in each storage cavity layer is greater than the preset temperature threshold value or the humidity value is greater than the preset humidity threshold value.
10. The method for managing an ophthalmic consumable according to claim 9, characterized in that it further comprises:
and sending out warning sound when the temperature value in the storage cavity layer is greater than a preset temperature threshold value or the humidity value is greater than a preset humidity threshold value.
CN201910839407.6A 2020-02-11 2020-02-11 Intelligent management system and management method for ophthalmic consumables Pending CN110942564A (en)

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Application publication date: 20200331