Medical equipment detection frequency query method and equipment and storage medium

Through the collaborative work of the intelligent code scanning system and the cloud service system, the license file is generated and verified, and the problem that medical equipment cannot upload the number of detection data in an unstable network environment is solved, real-time query and update of data is realized, and the accuracy of billing is improved.

CN120032850AActive Publication Date: 2025-05-23SHENZHEN ECHOSENS MEDICAL EQUIP CO LTD
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Patent Information

Application Number
CN202510197679.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2025-05-23
Estimated Expiration
2045-02-21

AI Technical Summary

Technical Problem

Existing medical equipment cannot upload detection data in real time in an unstable network environment, resulting in data loss or delay, affecting the accuracy of billing.

Method used

Access the cloud service system through the intelligent code scanning system, generate and verify the license file, use the information in the license file to generate a global check ID and information QR code, and the user scans the QR code to update the number of authorization available times, solving the problems of frequent data transmission and instability in the network.

Benefits of technology

Real-time query and update of data for medical equipment in unstable network environments is realized, avoiding data loss or delay and improving the accuracy of billing.

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Abstract

The invention relates to the field of equipment management, and discloses a medical equipment detection frequency query method, equipment and a storage medium. The method comprises the steps that an intelligent code scanning system accesses a cloud service system and sends a device authorization instruction to the cloud service system; the cloud service system performs combined encryption processing based on the permission unique code, the equipment serial number, the number of available authorization times and the authorization validity period to generate a permission file; the device storage system receives the imported license file and performs verification processing on the license file to obtain a verification result; when the information is qualified, generating an information two-dimensional code; the intelligent code scanning system sends code scanning data to the cloud service system; and the cloud service system updates the authorization available frequency based on the code scanning data, generates a detection frequency query value, and sends the detection frequency query value to the intelligent code scanning system. In the embodiment of the invention, the intelligent code scanning system scans the code to upload the data, so that the detection times and the user query effective times can be uploaded in time in an environment with an unstable network.
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Description

Technical Field

[0001] The present invention relates to the field of equipment management, and in particular to a method, equipment and storage medium for querying the number of detections of medical equipment. Background Art

[0002] At present, it is becoming more and more common for medical examination equipment to report usage times and operation and maintenance data to the server. By reporting usage data, equipment providers can support equipment management based on usage times.

[0003] Existing data reporting is generally based on mobile networks, requiring the inspection equipment to have a wifi module or a 4G module, and the device operating system can upload data to the server through an interface after each device inspection is completed. However, this method is generally questioned by medical institutions for its data security. In many cases, medical institutions do not provide wifi networks that can access the Internet. And due to the complex electromagnetic environment, 4g network signals are not guaranteed. And because of the statistics of the number of times the device is used, the device is required to communicate with the server after each inspection is completed, and the data transmission is frequent, which also places great pressure on the server processing. The existing medical equipment detection times cannot upload data in real time in an unstable network environment, resulting in data loss or delay, which affects the accuracy of billing. Therefore, a new technology is needed to address current technical problems. Summary of the invention

[0004] The main purpose of the present invention is to solve the technical problem that the number of existing medical equipment tests cannot be uploaded in real time in an unstable network environment and the user cannot query the remaining number of tests in time, resulting in data loss or delay, thereby affecting the accuracy of billing.

[0005] A first aspect of the present invention provides a method for querying the number of detections of a medical device, characterized in that the method for querying the number of detections of a medical device is applied to a system for querying the number of detections of a medical device, the system for querying the number of detections of a medical device comprising: a device storage system, a cloud service system, and an intelligent code scanning system, the method for querying the number of detections of a medical device comprising:

[0006] The intelligent code scanning system accesses the cloud service system and sends a device authorization instruction to the cloud service system, wherein the device authorization instruction includes: device serial number, number of authorizations available, and authorization validity period;

[0007] The cloud service system receives the device authorization instruction, generates a unique license code based on the device serial number, the number of available authorizations, and the authorization validity period, and generates a license file based on the encryption processing of the unique license code, the device serial number, the number of available authorizations, and the authorization validity period, and sends the license file to the smart code scanning system;

[0008] The intelligent code scanning system receives the license file;

[0009] The device storage system receives the imported license file, verifies the license file, and obtains a verification result;

[0010] When the verification result is qualified, a global inspection ID is generated according to the license unique code in the license file and the preset offline inspection times, and an information QR code is generated based on the global inspection ID;

[0011] The intelligent code scanning system scans the information QR code and sends the code scanning data corresponding to the information QR code to the cloud service system, wherein the code scanning data includes: a unique code of the code scanning permission, a serial number of the code scanning device, and a global code scanning inspection ID;

[0012] The cloud service system receives the code scanning data, updates the authorized available times based on the code scanning data, generates a detection times query value, and sends the detection times query value to the smart code scanning system.

[0013] Optionally, in a first implementation of the first aspect of the present invention, the device storage system receiving the imported license file includes:

[0014] The intelligent code scanning system imports the license file into the device storage system via a Bluetooth connection.

[0015] Optionally, in a second implementation of the first aspect of the present invention, the verifying the license file to obtain a verification result includes:

[0016] Decrypt and read the device serial number in the license file, and verify whether the device serial number is consistent with the preset serial number;

[0017] If the serial number is consistent with the preset serial number, the authorization validity period in the license file is decrypted and read to verify whether the authorization validity period in the license file has expired;

[0018] When the authorization validity period has not expired, a qualified verification result is generated.

[0019] Optionally, in a third implementation of the first aspect of the present invention, generating a global inspection ID according to the license unique code in the license file and a preset number of offline inspections includes:

[0020] The number of offline inspections is preset, and the license unique code is subjected to binary increment processing to generate a global inspection ID.

[0021] Optionally, in a fourth implementation of the first aspect of the present invention, generating an information QR code based on the global inspection ID includes:

[0022] The global inspection ID, the license unique code, and the device serial number are combined and processed to generate an information QR code.

[0023] Optionally, in a fifth implementation of the first aspect of the present invention, updating the available authorization times based on the code scanning data and generating a detection times query value includes:

[0024] Check whether the unique code of the code scanning permission in the code scanning data exists in the preset database;

[0025] If it exists in the preset database, verify whether the scanning device serial number in the scanning data is consistent with the scanning device serial number corresponding to the scanning permission unique code in the preset database;

[0026] If they are consistent, the global code scanning inspection ID in the code scanning data is subjected to binary subtraction processing with the unique code of the code scanning permission in the preset database to obtain the number of offline code scanning inspections;

[0027] Subtract the authorized available times from the scan code offline detection times to obtain the detection times query value.

[0028] Optionally, in a sixth implementation of the first aspect of the present invention, after the detection number query value is sent to the intelligent code scanning system, it also includes:

[0029] The detection times query value is assigned to the authorization available times corresponding to the unique code of the code scanning permission in the code scanning data to obtain an updated authorization available times.

[0030] Optionally, in a seventh implementation manner of the first aspect of the present invention, the device storage system receiving the imported license file further includes:

[0031] The device storage system receives the imported license file through a USB interface.

[0032] The second aspect of the present invention provides a device for querying the number of detections of a medical device, comprising: a memory and at least one processor, wherein instructions are stored in the memory, and the memory and the at least one processor are interconnected via lines; the at least one processor calls the instructions in the memory so that the device for querying the number of detections of the medical device executes the above-mentioned method for querying the number of detections of the medical device.

[0033] A third aspect of the present invention provides a computer-readable storage medium, wherein the computer-readable storage medium stores instructions, which, when executed on a computer, enable the computer to execute the above-mentioned method for querying the number of detections of a medical device.

[0034] In an embodiment of the present invention, this solution creates a medical examination equipment use authorization license through a cloud server. The license contains a unique license code, an inspection equipment serial number, an expiration date, and information about the number of inspections that can be used. The user obtains the license and imports it into the inspection device. After each inspection by the inspection device, the number of available inspections on the device is reduced by one. After there are no available times, the inspection device cannot be turned on for inspection. When the device is turned on and logged in, the user needs to use the collection to scan the device QR code to log in, and the QR code contains the inspection unique code. The server can obtain the number of times the authorization license corresponding to this device is used by obtaining the inspection unique code information reported by the mobile phone. This solution solves the technical problems of inaccurate reporting of the number of times medical testing equipment is used and the user cannot query the remaining number of inspections in a timely manner when the network environment is unstable. BRIEF DESCRIPTION OF THE DRAWINGS

[0035] Figure 1 A schematic diagram of an embodiment of a method for querying the number of detections of a medical device in an embodiment of the present invention;

[0036] Figure 2 A schematic diagram of a specific embodiment of step 104 in an embodiment of the present invention;

[0037] Figure 3 A schematic diagram of a specific embodiment of step 107 in an embodiment of the present invention;

[0038] Figure 4 It is a schematic diagram of an embodiment of a device for querying the number of detection times of a medical device in an embodiment of the present invention. DETAILED DESCRIPTION

[0039] The embodiment of the present invention provides a method, a device and a storage medium for querying the number of detection times of a medical device.

[0040] The embodiments disclosed in the present invention will be described in more detail below with reference to the accompanying drawings. Although certain embodiments disclosed in the present invention are shown in the accompanying drawings, it should be understood that the present invention can be implemented in various forms and should not be construed as being limited to the embodiments described herein, which are instead provided for a more thorough and complete understanding of the present invention. It should be understood that the drawings and embodiments disclosed in the present invention are only for exemplary purposes and are not intended to limit the scope of protection disclosed in the present invention.

[0041] In the description of the embodiments disclosed in the present invention, the term "including" and similar terms should be understood as open inclusion, that is, "including but not limited to". The term "based on" should be understood as "based at least in part on". The term "one embodiment" or "the embodiment" should be understood as "at least one embodiment". The terms "first", "second", etc. may refer to different or the same objects. Other explicit and implicit definitions may also be included below.

[0042] For ease of understanding, the specific process of the embodiment of the present invention is described below. Figure 1 , an embodiment of a method for querying the number of detections of a medical device in an embodiment of the present invention, the method for querying the number of detections of a medical device is applied to a system for querying the number of detections of a medical device, the system for querying the number of detections of a medical device comprises: a device storage system, a cloud service system, and an intelligent code scanning system, the method for querying the number of detections of a medical device comprises:

[0043] 101. The intelligent code scanning system accesses the cloud service system and sends a device authorization instruction to the cloud service system, wherein the device authorization instruction includes: device serial number, number of authorizations available, and authorization validity period;

[0044] In this embodiment, the smart code scanning system must first realize the link scan code login function. After the smart code scanning system scans the code successfully, the cloud service system will query the license information of all available personal medical devices, including KeyID and usage times, based on the device serial number or institution information carried in the scan code information. When the link obtains the information, the license information of the personal medical device in the local database of the linked device and the cloud service will be updated synchronously.

[0045] After binding the device to the smart scanning system and making the front-end payment, you will get a device authorization instruction, which includes: device serial number, number of authorizations available, and authorization validity period.

[0046] 102. The cloud service system receives the device authorization instruction, generates a unique license code based on the device serial number, the number of available authorizations, and the authorization validity period, and generates a license file based on the unique license code, the device serial number, the number of available authorizations, and the authorization validity period through combined encryption processing, and sends the license file to the smart code scanning system;

[0047] In this embodiment, the cloud service system receives the token of the device authorization instruction, and after the token verification is qualified, it reads the device serial number, the number of authorized times, and the authorization validity period from the authorization instruction to generate a unique license code. Based on the unique license code, device serial number, the number of authorized times, and the authorization validity period, a use license file is created, which includes multiple data parameters for creating the file, and is returned to the smart code scanning system in an encrypted package.

[0048] In the cloud service system, data corresponding to multiple license files will be created. For specific data content, please refer to Table 1.

[0049] Table 1. Data table corresponding to the license file.

[0050] License unique code Device serial number Authorization Available Times Authorization validity period 1000001 F00001 100 2025-12-31 1000101 F00002 1000 2024-12-31 1001101 F00001 500 2025-12-31

[0051] 103. The intelligent code scanning system receives the license file;

[0052] In this embodiment, the intelligent code scanning system can be a smart phone, or a computer or tablet computer with code scanning and networking functions.

[0053] 104. The device storage system receives the imported license file, verifies the license file, and obtains a verification result;

[0054] In this embodiment, the user obtains a license file and imports the license file into the device storage system. The device storage system first performs a CRC check, a hash check (such as MD5, SHA-256), a checksum, or a RAID check (such as RAID5) on the license file for integrity. The license file is then decrypted, the decrypted data is checked, and a verification result is finally obtained.

[0055] For details, please refer to Figure 2 , Figure 2 This is a schematic diagram of a specific embodiment of step 104 in an embodiment of the present invention. In step 104, "verifying the license file to obtain a verification result" includes the following specific implementation methods:

[0056] 1041. Decrypt and read the device serial number in the license file, and verify whether the device serial number is consistent with the preset serial number;

[0057] 1042. When the serial number is consistent with the preset serial number, decrypt and read the authorization validity period in the license file to verify whether the authorization validity period in the license file has expired;

[0058] 1043. When the authorization validity period has not expired, a qualified verification result is generated.

[0059] In steps 1041-1043, first check whether the device serial number in the license file is consistent with the serial number built into the device storage system. For example, if the device serial number in the license file is F00001 and the serial number built into the device storage system is F00002, they are inconsistent and the check fails.

[0060] When it is consistent with the preset serial number, the authorization validity period in the license file is decrypted and read, such as 2025-12-31, and the device is connected to the Internet today on 2025-2-18, then 2025-12-31 minus 2025-2-18 is a positive number, and it is considered that the authorization validity period has not expired, generating a qualified verification result.

[0061] Specifically, in step 104, “the device storage system receives the imported license file” includes the following specific implementation methods:

[0062] 1044. The intelligent code scanning system imports the license file into the device storage system via Bluetooth connection.

[0063] In step 1044, the device storage system and the intelligent code scanning system import the license file into the device storage system via Bluetooth transmission.

[0064] In another embodiment, the step of “the device storage system receives the imported license file” in step 104 includes the following specific implementations:

[0065] 1045. The device storage system receives the imported license file through a USB interface.

[0066] In step 1045, the medical device used offline can import the use license file into the device through its USB interface, and the device can decrypt the license and save the license information to the file database in the device.

[0067] 105. When the verification result is qualified, a global inspection ID is generated according to the license unique code in the license file and the preset offline inspection times, and an information QR code is generated based on the global inspection ID;

[0068] In an embodiment of the present invention, after a medical device completes an inspection, the inspection information is saved in the device database, and the currently imported license file information is associated, and a global inspection ID is created for this inspection result. This ID is incremented by the license unique code in the license file, and the incremented value is the number of inspections associated with this ID on the device. After the medical device completes the inspection, it enters the inspection review interface, and the interface display elements include the inspection results and the inspection result QR code. The inspection result QR code content is generated by encrypting the information of the global inspection ID, and the QR code is displayed on the display interface.

[0069] Specifically, in step 105, "generating a global inspection ID according to the license unique code in the license file and the preset offline inspection times" includes:

[0070] 1051. Perform binary addition processing on the license unique code according to the preset offline detection times to generate a global inspection ID.

[0071] In step 1051, the number of offline detections is converted into binary, and binary addition and subtraction processing is performed on the license unique code based on the binary to obtain a global inspection ID.

[0072] 106. The intelligent scanning system scans the information QR code and sends the scanning data corresponding to the information QR code to the cloud service system, wherein the scanning data includes: a scanning permission unique code, a scanning device serial number, and a scanning global check ID;

[0073] In this embodiment, the intelligent code scanning system scans the information QR code to obtain the code scanning data corresponding to the information QR code, which contains the token, verification key, unique code of code scanning permission, serial number of code scanning device, global code scanning inspection ID and other specific content data. The code scanning data is sent to the cloud service system.

[0074] 107. The cloud service system receives the code scanning data, updates the authorized available times based on the code scanning data, generates a detection times query value, and sends the detection times query value to the smart code scanning system.

[0075] In this embodiment, the scanned code data is received through the cloud service system, and the authorized available times of the data content are updated based on the scanned code data to obtain the actual number of detections, that is, the actual number of detections confirmed by the user after scanning the code, and the detection number query value is sent to the intelligent scanning system to realize the user's query and the actual number of detections in the cloud service system. The global inspection ID corresponding to each inspection will not be repeated on the server, and the corresponding inspection license unique code can be identified by comparing the inspection license list. The value of the global inspection ID is generated by the device and represents the Nth inspection under the associated license. The value of the associated inspection license unique code is subtracted from the value of the global inspection ID on the server to restore the device usage information.

[0076] For details, please refer to Figure 3 , Figure 3 This is a schematic diagram of a specific embodiment of step 107 in an embodiment of the present invention. In step 107, "updating the authorized available times based on the scanned code data and generating a detection times query value" includes the following specific implementation methods:

[0077] 1071. Check whether the unique code of the code scanning permission in the code scanning data exists in the preset database;

[0078] 1072. If it exists in the preset database, verify whether the scanning device serial number in the scanning data is consistent with the scanning device serial number corresponding to the scanning permission unique code in the preset database;

[0079] 1073. When they are consistent, a binary subtraction process is performed between the global code scanning inspection ID in the code scanning data and the unique code of the code scanning permission in the preset database to obtain the number of offline code scanning inspections;

[0080] 1074. Subtract the authorized available times from the scan code offline detection times to obtain a detection times query value.

[0081] In steps 1071-1074, first analyze whether the unique code of the code scanning permission in the code scanning data exists in the preset database. If it already exists in the cloud database, then check whether the code scanning device serial number in the code scanning data is consistent with the code scanning device serial number corresponding to the unique code of the code scanning permission in the preset database. If the permission unique code and the device serial number match, perform binary subtraction processing on the code scanning global inspection ID and the unique code of the code scanning permission in the preset database to obtain a binary number of offline code scanning detections, and convert the binary number of offline code scanning detections to decimal. Then subtract the authorized available times stored in the database from the decimal number of offline code scanning detections to obtain the detection number query value. At this time, the detection number query value is the remaining query times rather than the actual detection value of the device.

[0082] The equipment operator can upload the global inspection ID to the server by scanning the inspection result QR code with a mobile phone. The server obtains the inspection result and the global inspection ID by decryption. By comparing the global inspection ID with the inspection permission record in the server database, the authorization permission record associated with the current inspection can be calculated, and the inspection can be calculated to be the Nth inspection of the currently associated inspection permission.

[0083] Furthermore, after step 107, the following specific implementations are also included:

[0084] 108. Assign the detection times query value to the authorized available times corresponding to the unique code of the code scanning permission in the code scanning data to obtain an updated authorized available times.

[0085] In step 108, the detection number query value is used as the remaining query number, which can be directly assigned to the corresponding authorization available number of the unique code of the code scanning permission in the scanned code data in the cloud database to obtain the updated authorization available number. In this way, the user can recalculate based on the updated authorization available number during the next code scanning process.

[0086] In an embodiment of the present invention, this solution creates a medical examination equipment use authorization license through a cloud server. The license contains a unique license code, an inspection equipment serial number, an expiration date, and information about the number of inspections that can be used. The user obtains the license and imports it into the inspection device. After each inspection by the inspection device, the number of available inspections on the device is reduced by one. After there are no available times, the inspection device cannot be turned on for inspection. When the device is turned on and logged in, the user needs to use the collection to scan the device QR code to log in, and the QR code contains the inspection unique code. The server can obtain the number of times the authorization license corresponding to this device is used by obtaining the inspection unique code information reported by the mobile phone. This solution solves the technical problems of inaccurate reporting of the number of times medical testing equipment is used and the user cannot query the remaining number of inspections in a timely manner when the network environment is unstable.

[0087] Figure 4 It is a structural schematic diagram of a medical device detection number query device provided by an embodiment of the present invention. The medical device detection number query device 400 may have relatively large differences due to different configurations or performances, and may include one or more processors (central processing units, CPU) 410 (for example, one or more processors) and a memory 420, and one or more storage media 430 (for example, one or more mass storage devices) storing application programs 433 or data 432. Among them, the memory 420 and the storage medium 430 can be short-term storage or permanent storage. The program stored in the storage medium 430 may include one or more modules (not shown in the figure), and each module may include a series of instruction operations in the medical device detection number query device 400. Furthermore, the processor 410 can be configured to communicate with the storage medium 430 to execute a series of instruction operations in the storage medium 430 on the medical device detection number query device 400.

[0088] The medical device-based detection number query device 400 may also include one or more power supplies 440, one or more wired or wireless network interfaces 450, one or more input and output interfaces 460, and / or one or more operating systems 431, such as Windows Server, Mac OS X, Unix, Linux, FreeBSD, etc. Those skilled in the art will appreciate that Figure 4 The structure of the medical device detection number query device shown does not constitute a limitation on the detection number query device based on the medical device, and may include more or less components than shown in the figure, or a combination of certain components, or a different arrangement of components.

[0089] The present invention also provides a computer-readable storage medium, which may be a non-volatile computer-readable storage medium or a volatile computer-readable storage medium. Instructions are stored in the computer-readable storage medium. When the instructions are executed on a computer, the computer executes the steps of the method for querying the number of detections of the medical device.

[0090] In the context of the present disclosure, a machine-readable medium may be a tangible medium that may contain or store a program for use by or in conjunction with an instruction execution system, device, or equipment. A machine-readable medium may be a machine-readable signal medium or a machine-readable storage medium. A machine-readable medium may include, but is not limited to, an electronic, magnetic, optical, electromagnetic, infrared, or semiconductor system, device, or equipment, or any suitable combination of the foregoing. A more specific example of a machine-readable storage medium may include an electrical connection based on one or more lines, a portable computer disk, a hard disk, a random access memory (RAM), a read-only memory (ROM), an erasable programmable read-only memory (EPROM or flash memory), an optical fiber, a portable compact disk read-only memory (CD-ROM), an optical storage device, a magnetic storage device, or any suitable combination of the foregoing.

[0091] In addition, although each operation is described in a specific order, this should be understood as requiring such operation to be performed in the specific order shown or in a sequential order, or requiring that all illustrated operations should be performed to obtain desired results. Under certain circumstances, multitasking and parallel processing may be advantageous. Similarly, although some specific implementation details are included in the above discussion, these should not be interpreted as limiting the scope of the present disclosure. Some features described in the context of a separate embodiment can also be implemented in a single implementation in combination. On the contrary, the various features described in the context of a single implementation can also be implemented in multiple implementations individually or in any suitable sub-combination mode.

[0092] Although the subject matter has been described in language specific to structural features and / or methodological logical actions, it should be understood that the subject matter defined in the appended claims is not necessarily limited to the specific features or actions described above. On the contrary, the specific features and actions described above are merely example forms of implementing the claims.

Claims

1. A method for querying the number of detections of medical equipment, characterized in that: The medical device detection number query method is applied to the medical device detection number query system, the medical device detection number query system includes: a device storage system, a cloud service system, and an intelligent code scanning system. The medical device detection number query method includes: The intelligent code scanning system accesses the cloud service system and sends a device authorization instruction to the cloud service system, wherein the device authorization instruction includes: device serial number, number of authorizations available, and authorization validity period; The cloud service system receives the device authorization instruction, generates a unique license code based on the device serial number, the number of available authorizations, and the authorization validity period, and generates a license file based on the encryption processing of the unique license code, the device serial number, the number of available authorizations, and the authorization validity period, and sends the license file to the smart code scanning system; The intelligent code scanning system receives the license file; The device storage system receives the imported license file, verifies the license file, and obtains a verification result; When the verification result is qualified, a global inspection ID is generated according to the license unique code in the license file and the preset offline inspection times, and an information QR code is generated based on the global inspection ID; The intelligent code scanning system scans the information QR code and sends the code scanning data corresponding to the information QR code to the cloud service system, wherein the code scanning data includes: a unique code of the code scanning permission, a serial number of the code scanning device, and a global code scanning inspection ID; The cloud service system receives the code scanning data, updates the authorized available times based on the code scanning data, generates a detection times query value, and sends the detection times query value to the smart code scanning system.

2. The method for querying the number of detections of medical equipment according to claim 1, characterized in that: The device storage system receiving the imported license file includes: The intelligent code scanning system imports the license file into the device storage system via a Bluetooth connection.

3. The method for querying the number of detections of medical equipment according to claim 1, characterized in that: The verification process of the license file to obtain the verification result includes: Decrypt and read the device serial number in the license file, and verify whether the device serial number is consistent with the preset serial number; If the serial number is consistent with the preset serial number, the authorization validity period in the license file is decrypted and read to verify whether the authorization validity period in the license file has expired; When the authorization validity period has not expired, a qualified verification result is generated.

4. The method for querying the number of detection times of medical equipment according to claim 1, characterized in that: The generating of the global inspection ID according to the license unique code in the license file and the preset offline inspection times includes: The number of offline inspections is preset, and the license unique code is subjected to binary increment processing to generate a global inspection ID.

5. The method for querying the number of detections of medical equipment according to claim 1, characterized in that: The generating of the information QR code based on the global inspection ID comprises: The global inspection ID, the license unique code, and the device serial number are combined and processed to generate an information QR code.

6. The method for querying the number of detections of medical equipment according to claim 1, characterized in that: The updating of the authorized available times based on the code scanning data and the generation of the detection times query value comprises: Check whether the unique code of the code scanning permission in the code scanning data exists in the preset database; If it exists in the preset database, verify whether the scanning device serial number in the scanning data is consistent with the scanning device serial number corresponding to the scanning permission unique code in the preset database; If they are consistent, the global code scanning inspection ID in the code scanning data is subjected to binary subtraction processing with the unique code of the code scanning permission in the preset database to obtain the number of offline code scanning inspections; Subtract the authorized available times from the scan code offline detection times to obtain the detection times query value.

7. The method for querying the number of detection times of medical equipment according to claim 1, characterized in that: After the detection number query value is sent to the intelligent code scanning system, the method further includes: The detection times query value is assigned to the authorization available times corresponding to the unique code of the code scanning permission in the code scanning data to obtain an updated authorization available times.

8. The method for querying the number of detections of medical equipment according to claim 1, characterized in that: The device storage system receiving the imported license file further includes: The device storage system receives the imported license file through a USB interface.

9. A device for querying the number of detections of medical equipment, characterized in that: The medical device detection number query device comprises: a memory and at least one processor, the memory stores instructions, and the memory and the at least one processor are interconnected via a line; The at least one processor calls the instruction in the memory to enable the detection number query device of the medical device to execute the detection number query method of the medical device as described in any one of claims 1-8.

10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the computer program is executed by a processor, the method for querying the number of detections of a medical device according to any one of claims 1 to 8 is implemented.

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