Intelligent tracing management system for endoscope

By formulating and configuring endoscopic usage process information, establishing a cross-net and generating traceability strips, the problem of information disorder in endoscopic usage information management is solved, and the secure storage and traceability of information is achieved.

CN120236730AInactive Publication Date: 2025-07-01XINHUA SURGICAL INSTR CO LTD
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Patent Information

Application Number
CN202510333943.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-20
Publication Date
2025-07-01
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The prior art is difficult to effectively manage the use process information of the endoscope, resulting in messy information and the security and stability of information storage cannot be guaranteed.

Method used

Through the development module, the endoscope usage process information is formulated, multiple target points are configured, the cross-net is established, and the usage information is obtained and stored in real time, and a traceability bar is generated through the traceability module to prompt information that does not meet the preset conditions.

Benefits of technology

It realizes the secure storage and stability of endoscopic information, ensures the security and traceability of information, and avoids malicious access from foreign networks.

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Abstract

The invention discloses an intelligent tracing management system for endoscope use, and relates to the technical field of medical information management, and the system comprises a formulating module which is used for formulating use process information of an endoscope and configuring a plurality of corresponding target points based on the use process information; the establishing module is used for establishing a cross network based on the use process information and a plurality of corresponding target points, acquiring endoscope use information in real time and storing the endoscope use information in the corresponding target points; and the tracing module is used for confirming the target endoscope and generating a tracing strip of the endoscope based on the cross network. The use information of the endoscope can be obtained and stored through the communicated bridging lines, pheromones are obtained, the pheromones are connecting mechanisms arranged corresponding to the information bags, information can be obtained only through the connecting bridges, information can not be obtained and stored through other channels, the good information storage effect is achieved, and the service life of the endoscope is prolonged. And the security and stability of information storage are ensured.
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Description

Technical Field

[0001] The present invention relates to the technical field of medical information management, and particularly relates to an intelligent traceability management system for endoscopic use. Background Art

[0002] With the continuous progress of medical technology and the continuous improvement of the intelligent level, the intelligent traceability management system for endoscopic use will develop towards a more intelligent, automated, and integrated direction; Currently, in the use of endoscopes, due to the large number and the complex and disordered use process, it is difficult to ensure the storage of information on the entire use process of endoscopes, resulting in messy information, unable to avoid malicious access from external networks, and difficult to ensure the security and stability of information storage. Summary of the Invention

[0003] The purpose of the present invention is to provide an intelligent traceability management system for endoscopic use to solve the deficiencies in the background art.

[0004] To achieve the above purpose, the present invention provides the following technical solution: An intelligent traceability management system for endoscopic use, comprising: A formulation module, configured to formulate the use process information of the endoscope and configure a corresponding plurality of target points based on the use process information; An establishment module, connected to the formulation module, configured to establish an intersection network based on the use process information and the corresponding plurality of target points, and to obtain the endoscopic use information in real time and store the endoscopic use information in the corresponding target points; A traceability module, connected to the establishment module, configured to confirm the target endoscope, generate a traceability bar of the endoscope based on the intersection network, and prompt the traceability bars that do not meet the preset conditions.

[0005] In a preferred embodiment, the formulation module includes: A determination unit, configured to determine the use process information of the endoscope based on big data, where the use process information includes a plurality of use processes sorted in the order of the use process of the endoscope; A configuration unit, configured to respectively configure a corresponding plurality of target points for the plurality of use processes in the use process information, where the number of target points is the same as the number of endoscopes, and there is a one-to-one correspondence between the target points and the endoscopes.

[0006] In a preferred embodiment, the configuration unit includes: A division unit, configured to configure a data layer corresponding to the use process information, divide the data layer according to the number of the plurality of use processes in the use process information to obtain a plurality of unit data layers, the number of the unit data layers is the same as the number of the use processes, and establish a one-to-one correspondence between the unit data layers and the use processes; A determination unit for respectively determining a plurality of target points in the unit data layer; A corresponding unit for respectively corresponding the target points in a plurality of usage processes to the endoscope.

[0007] In a preferred embodiment, the determination unit includes: A setting unit for respectively setting a plurality of information sacs and pheromones in the unit data layer, and the information sacs are connected to the unit data layer through the pheromones; A management unit for taking the information sacs and pheromones as targets in the unit data layer.

[0008] In a preferred embodiment, the setting unit includes: An information setting unit for respectively setting a plurality of storage sacs corresponding to the unit data layer, a storage membrane is arranged outside the corresponding storage sacs, a connection space is arranged between the storage sacs and the storage membrane, and a plurality of free connection nodes are arranged in the connection space to obtain information sacs; A connection setting unit for setting connection ports in the unit data layer, establishing a connection channel between the connection ports and the storage membrane, and arranging a connection network in the connection ports, wherein the connection network includes a plurality of communication ends and a communication main end, and respectively establishing a downward infiltration communication space between the plurality of communication ends and the communication main end; An ordering unit for arranging bridge connection wires in the connection channel, placing the bridge connection wires in the downward infiltration communication space of the communication main end, and communicatively connecting the communication main end and the information acquisition end, wherein the bridge connection wire is composed of a plurality of bridge connection points connected in sequence, and the bridge connection wire extends to be connected to the storage sac to obtain pheromones; An information connection unit for connecting the information sacs to the connection ports on the unit data layer through the pheromones.

[0009] In a preferred embodiment, the establishment module includes: A first corresponding connection unit for connecting the target points corresponding to the same endoscope in a plurality of usage processes through the data layer according to the corresponding relationship between the endoscope and the target points; A second corresponding connection unit for connecting the plurality of target points in the unit data layer to obtain an intersection network; A storage unit for collecting by tracking the usage information of the endoscope and storing the endoscope usage information in the corresponding target points.

[0010] In a preferred embodiment, the tracing module includes: A tracing unit for determining a target endoscope, obtaining the target points corresponding to the target endoscope based on the intersection network, obtaining the endoscope usage information in the target points, and sorting the endoscope usage information in the order of the usage process to obtain a tracing strip; A prompting unit for prompting the endoscope usage information in the trace strip that does not meet the preset conditions.

[0011] In a preferred embodiment, the tracing unit includes: A triggering unit for determining the target point corresponding to the target endoscope, triggering an information acquisition signal on the connection port through the information acquisition end, and then moving through the connection node and sequentially located in the bridge connection points; A calculation unit for obtaining the connectivity index of the bridge wiring. The calculation formula of the connectivity index is: , where is the connectivity index, is the number of connection nodes located in the bridge connection points, is the number of bridge connection points in the bridge wiring, is a constant greater than zero; A judgment unit for, when the connectivity index of the bridge wiring does not meet the preset index, being unable to establish a connection relationship between the communication main end and the storage bladder, and when the connectivity index of the bridge wiring meets the preset index, establishing a connection relationship between the communication main end and the storage bladder; An arrangement unit for, after establishing the connection relationship between the communication main end and the storage bladder, obtaining the endoscope usage information in the storage bladder through the connected bridge wiring, sorting the endoscope usage information in the order of the usage process to obtain a trace strip.

[0012] In the above technical solution, the technical effects and advantages provided by the present invention: The present invention realizes the connection between the connection port and the storage bladder through the bridge wiring, can realize the storage and retrieval of information, and is convenient for subsequent tracing of the endoscope usage information. The bridge wiring is sequentially connected by multiple bridge connection points and extends to be connected to the storage bladder. Here, the bridge connection points are blank points without connection functions. When the bridge wiring is connected subsequently, the free connection nodes need to be located on the bridge connection points before the connection of the bridge wiring can be ensured. Through the connected bridge wiring, the endoscope usage information can be obtained and stored to obtain the information element. This information element is a connection mechanism corresponding to the information bladder, and the acquisition of this information can only be obtained through the connection bridge and cannot be obtained or stored through other channels, which has a good information storage function and ensures the security and stability of information storage. Description of the Drawings

[0013] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the embodiments. Obviously, the drawings described below are only some embodiments recorded in the present invention. For those of ordinary skill in the art, other drawings can also be obtained based on these drawings.

[0014] Figure 1 This is the system block diagram of the present invention. Specific embodiments

[0015] To make the objectives, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are some, but not all, of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without making creative efforts shall fall within the protection scope of the present invention.

[0016] Example 1, please refer to Figure 1 As shown, an intelligent traceability management system for endoscopic use in this embodiment includes: A formulation module, used to formulate the usage process information of the endoscope, configure corresponding multiple target points based on the usage process information, and sort the collected usage process information of the endoscope on the server (the cloud server provides CPU and memory resources to support the operation of the business system (such as a database)) in this system, so that the collection and management of endoscope-related information can be carried out independently according to the usage process therein. The specific operations are further refined into subsequent configuration units, determination units, and setting units; An establishment module, connected to the formulation module, used to establish an intersection network based on the usage process information and the corresponding multiple target points, obtain the endoscope usage information in real time, and store the endoscope usage information in the corresponding target points. After obtaining the usage process information, through the interaction of the storage (data layer), the storage can be the memory resources in the cloud server or an external storage device under the management of the cloud server, so as to realize the corresponding relationship between the target points and the endoscopes in the unit data layer. Here, the target points represent the corresponding endoscopes; A traceability module, connected to the establishment module, used to confirm the target endoscope, generate a traceability strip of the endoscope based on the intersection network, and prompt the traceability strips that do not meet the preset conditions. The above content is completed in the cloud service. Through the usage process information of multiple endoscopes, the traceability strips of the endoscopes that affect each other can be obtained. Here, by tracking a single endoscope, a traceability strip of its corresponding usage situation is sorted out; It should be noted that it can realize the storage and retrieval of information, which is convenient for the subsequent traceability of the endoscope usage information. The bridge wiring is composed of multiple bridge connection points connected in sequence, and the bridge wiring extends to be connected to the storage bladder. Here, the bridge connection points are blank points without connection functions. When the bridge wiring is to be connected subsequently, the free connection nodes are located on the bridge connection points, and only then can the connection of the bridge wiring be ensured. Through the connected bridge wiring, the usage information of the endoscope can be obtained and stored to obtain the information element. This information element is a connection mechanism corresponding to the information bladder. The acquisition of this information can only be obtained through the connection bridge and cannot be obtained or stored through other channels, which has a good information storage function and ensures the security and stability of information storage.

[0017] In one embodiment, the formulating module includes: A determination unit, configured to determine the usage process information of the endoscope based on big data. Among them, the usage process information includes multiple usage processes of the endoscope sorted in the order of the usage process. The usage process information of the endoscope is publicly available in big data, and the usage process information of the endoscope can be directly obtained through the big database; A configuration unit, configured to respectively configure corresponding multiple target points for the multiple usage processes in the usage process information. Among them, the number of target points is the same as the number of endoscopes, and there is a one-to-one correspondence between the target points and the endoscopes; It should be noted that the usage process information of the endoscope is determined through the big data of the medical system. For example, the cleaning, disinfection of the endoscope, and the type of patients used (the type of patients includes the condition and type of the patients). The usage process order of the endoscope is to clean and disinfect first and then store safely, and then wait for actual use. There are multiple usage processes and they are sorted in the order of the usage process to obtain the usage process information. Then, corresponding multiple target points are respectively configured for the multiple usage processes in the usage process information. This target point is a data window for storing the data of the corresponding endoscope. The combination of the usage process information and the target point here can understand the usage situation of the endoscope according to the usage process. Each usage process corresponds to multiple target points. The number of target points is the same as the number of endoscopes, and there is a one-to-one correspondence between the target points and the endoscopes. According to the corresponding relationship, the usage situation of the endoscope can be stored in the corresponding target points, which is convenient for subsequent data traceability of the endoscope and difficult to understand the usage process situation of the endoscope.

[0018] In one embodiment, the configuration unit includes: A division unit, configured to configure a data layer corresponding to the usage process information, divide the data layer according to the number of multiple usage processes in the usage process information to obtain multiple unit data layers. The number of unit data layers is the same as the number of usage processes, and the unit data layers are in one-to-one correspondence with the usage processes; A determination unit for respectively determining a plurality of target points in the unit data layer; A corresponding unit for respectively corresponding the target points in the plurality of usage processes to the endoscope; It should be noted that the data layer corresponding to the usage process information configuration is a memory space, which can be the memory resource of a cloud server or an external storage device, and is used to carry data, so that the usage process information can be displayed on the data layer. At the same time, the data layer enables the usage process to have the ability to configure a cross-network subsequently. The data layer is divided into a plurality of unit data layers according to the number of usage processes in the usage process information. Dividing the space of the data layer is equivalent to isolating a plurality of spaces from a data space. The number of unit data layers is the same as the number of usage processes. The unit data layer is divided for the corresponding usage process, so it is only used for the corresponding usage process. A plurality of target points are respectively determined in the unit data layer, and a one-to-one correspondence is established between the target points and the endoscope, which can store the information of the usage situation of the corresponding endoscope in this usage process subsequently, and has a good data storage effect.

[0019] In one embodiment, the determination unit includes: A setting unit for respectively setting a plurality of information sacs and pheromones in the unit data layer. The information sacs are connected to the unit data layer through pheromones; A management unit for taking the information sacs and pheromones as target points in the unit data layer; It should be noted that a plurality of information sacs and pheromones are respectively set in the unit data layer. The information sacs and pheromones are in a one-to-one relationship. The information sacs and pheromones are used as target points, and the number of target points is the same as that of the endoscope. The number of target points corresponding to the number of endoscopes is set in each unit data layer, which can independently store and record the usage situation of the endoscope, facilitating subsequent traceability. The information sacs are connected to the unit data layer through pheromones, and then the information sacs and pheromones are taken as target points in the corresponding unit data layer. Each unit data layer has corresponding target points. Through the target points, the usage situation of the endoscope in this usage process can be stored, such as usage information such as the disinfection situation and usage frequency of the endoscope, which has a good usage situation storage effect and is convenient for subsequent traceability of endoscope usage.

[0020] In one embodiment, the setting unit includes: An information setting unit for respectively setting a plurality of storage sacs for each unit data layer. A storage membrane is arranged outside the corresponding storage sacs, a connection space is arranged between the storage sacs and the storage membrane, and a plurality of free connection nodes are arranged in the connection space to obtain information sacs; A connection setting unit is configured to set connection ports in the unit data layer, establish a connection channel between the connection ports and the storage film, and set a connection network in the connection ports. The connection network includes a plurality of communication terminals and a communication master terminal, and a seepage communication space between the plurality of communication terminals and the communication master terminal is established respectively; A sorting unit is configured to set bridge connection lines in the connection channel, place the bridge connection lines in the seepage communication space of the communication master terminal, and communicatively connect the communication master terminal and the information acquisition terminal. The bridge connection lines are sequentially connected by a plurality of bridge connection points and extend to be connected to the storage sac to obtain pheromones; An information connection unit is configured to connect the information sac to the connection ports on the unit data layer through pheromones; It should be noted that multiple storage sacs are respectively arranged corresponding to the unit data layer. Here, the storage sac is a storage space, which is connected to the unit data layer, equivalent to the connection between a storage device and a storage device, and is used to store the usage information of the corresponding endoscope. A storage membrane is arranged outside the corresponding storage sac. Here, the storage membrane is a protective storage space for the corresponding storage sac. The storage membrane is also a storage device. The storage sac is stored inside the storage membrane. The large-capacity storage space stores the small-capacity storage space. The storage membrane is located outside the storage sac, and the space between them is a connection space. Multiple free connection nodes (mobile nodes) are arranged in the connection space. The connection nodes are used to form a connection channel in combination with bridge wiring later. The settings made outside the corresponding unit data layer here are used as information sacs. Then, connection ports are arranged in the unit data layer, and a connection channel is established between the connection ports and the storage membrane. A connection network is arranged in the connection ports. Among them, the connection network includes multiple communication terminals and a communication main terminal (both the communication terminals and the communication main terminal are ports for accessing the corresponding storage device). Penetration communication spaces are respectively established between the multiple communication terminals and the communication main terminal. Here, there are multiple communication terminals and a communication main terminal in the connection network. Only the communication main terminal can obtain the endoscope usage information in the subsequent storage sac through bridge wiring. The multiple communication terminals are all confusing ports and cannot obtain the endoscope usage information in the storage sac. The bridge wiring is placed in the penetration communication space of the communication main terminal, and the communication main terminal is communicatively connected to the information acquisition terminal. Here, the information acquisition terminal is an authorized medical staff terminal. The authorized medical staff terminal can obtain the endoscope usage information through the information acquisition terminal. The medical staff terminal and the device terminal using the endoscope can store the endoscope usage information in the storage sac, which can realize the safe storage and safe call of the endoscope usage information. The connection channel cannot directly obtain information. Here, the connection between the connection port and the storage sac needs to be realized through bridge wiring, which can realize the storage and retrieval of information and facilitate the subsequent traceability of the endoscope usage information. The bridge wiring (the bridge wiring is equivalent to a disconnected communication channel) is sequentially composed of multiple bridge connection points (the bridge connection points are equivalent to the positions where the communication channel is disconnected). The bridge wiring extends to be connected to the storage sac. Here, the bridge connection points are blank and do not have a connection function. When the bridge wiring is connected later, the free connection nodes need to be located on the bridge connection points, and then the connection of the bridge wiring can be ensured. The usage information of the endoscope can be obtained and stored through the connected bridge wiring to obtain information pheromones. The information pheromones are connection mechanisms set for the corresponding information sac. The acquisition of this information can only be obtained through the connection bridge and cannot be obtained or stored through other channels, which has a good information storage function and ensures the security and stability of information storage.

[0021] In one embodiment, the establishing module includes: The first corresponding connection unit is used to connect the target points corresponding to the same endoscope in multiple usage processes through the data layer according to the corresponding relationship between the endoscope and the target point; The second corresponding connection unit connects multiple target points in the unit data layer to obtain an intersection network; The storage unit is used to collect and track the usage information of the endoscope and store the endoscope usage information in the corresponding target point; It should be noted that there is a one-to-one correspondence between the endoscope and the target points in each unit data layer. Therefore, the target points corresponding to the same endoscope in multiple unit data layers are connected. The connection is carried out through the data layer. Through the connection ports between the target points and the data layer, and using the data layer as the connection carrier to complete the connection work, an intersection network is obtained. After setting up the storage structure corresponding to the usage information of the endoscope, the usage information of the endoscope is collected and tracked, and the endoscope usage information is stored in the corresponding target point. The endoscope usage information is stored in the information capsule, which has good information storage security and avoids malicious tampering of external information, resulting in unclear usage of the endoscope and affecting the actual use of the endoscope.

[0022] In one embodiment, the traceability module includes: The traceability unit is used to determine the target endoscope, obtain the target points corresponding to the target endoscope based on the intersection network, obtain the endoscope usage information in the target points, and sort the endoscope usage information in the order of the usage process to obtain a traceability strip; The prompting unit is used to prompt the endoscope usage information in the traceability strip that does not meet the preset conditions; In one embodiment, the traceability unit includes: The triggering unit is used to determine the target points corresponding to the target endoscope, trigger an information acquisition signal to the connection port through the information acquisition end, and then move through the connection nodes and sequentially locate in the bridge connection points; The calculation unit is used to obtain the connectivity index of the bridge connection line. The calculation formula of the connectivity index is: , where is the connectivity index, is the number of connection nodes located in the bridge connection points, is the number of bridge connection points in the bridge connection line, is a constant greater than zero. It should be noted that when is the same as , the smaller it is, the greater the connectivity security of the bridge connection line; A judgment unit, configured to be unable to establish a connection relationship between the communication master end and the storage bladder when the connectivity index of the bridge connection line does not meet the preset index, and to establish a connection relationship between the communication master end and the storage bladder when the connectivity index of the bridge connection line meets the preset index; An arrangement unit, configured to, after establishing the connection relationship between the communication master end and the storage bladder, obtain the endoscope usage information in the storage bladder through the connected bridge connection line, and sort the endoscope usage information in the order of the usage process to obtain a traceability strip; It should be noted that first, determine the endoscope for which information tracing is required as the target endoscope, and then obtain the target points corresponding to the target endoscope through the cross network. There are multiple target points here. Call the endoscope usage information in the target points in multiple unit data layers. First, obtain it through the information acquisition end. The information acquisition end is connected to the communication master end. Then, trigger the information acquisition signal, move through the connection nodes and sequentially locate in the bridge connection points to obtain the connectivity index of the bridge connection line. When the connectivity index of the bridge connection line does not meet the preset index, the connection relationship between the communication master end and the storage bladder cannot be established. When the connectivity index of the bridge connection line meets the preset index, the connection relationship between the communication master end and the storage bladder is established. After establishing the connection relationship between the communication master end and the storage bladder, obtain the endoscope usage information in the storage bladder through the connected bridge connection line, and sort the endoscope usage information in the order of the usage process to obtain a traceability strip. When the information is not obtained by the communication master end, the connectivity index of the bridge connection line cannot meet the preset index. The downward infiltration communication space corresponding to the communication end other than the communication master end cannot be connected to the bridge connection line, so the bridge connection line cannot be enabled. Even when breaking through to the downward infiltration communication space where the bridge connection line is located in the downward infiltration communication space corresponding to the communication end, the connectivity index of the bridge connection line cannot meet the preset index. Therefore, the endoscope usage information cannot be obtained, ensuring the security of the storage of the endoscope usage information, avoiding being maliciously obtained and accessed, and having a good storage security structure. Finally, prompt the endoscope usage information in the traceability strip that does not meet the preset conditions. Here, the preset conditions are the restricted information of the endoscope usage information. For example, the preset condition is the qualified disinfection quality parameter in the endoscope usage information, and it is possible to prompt the endoscope usage information that does not meet the preset conditions, indicating that the endoscope usage information is unqualified, ensuring the effectiveness of the endoscope usage information tracing.

[0023] As described above, the above is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present application can easily think of changes or substitutions, which should all be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. An intelligent traceability management system for endoscope use, characterized in that: include: A formulation module, used for formulating the use process information of the endoscope, and configuring corresponding multiple target points based on the use process information; An establishment module is connected with the formulation module, and is used to establish a cross network with corresponding multiple target points based on the use process information, obtain the endoscope use information in real time and store the endoscope use information in the corresponding target points; The tracing module is connected to the establishing module and is used to confirm the target endoscope, generate the tracing bar of the endoscope based on the cross network, and prompt the tracing bar that does not meet the preset conditions.

2. The intelligent traceability management system for endoscope use according to claim 1 is characterized by: The formulation module includes: A determination unit, configured to determine usage process information of the endoscope based on the big data, wherein the usage process information includes a plurality of usage processes of the endoscope sorted in a usage process sequence; The configuration unit is used to configure a plurality of corresponding target points respectively corresponding to a plurality of usage processes in the usage process information, wherein the number of the target points is the same as the number of the endoscopes, and there is a one-to-one correspondence between the target points and the endoscopes.

3. The intelligent traceability management system for endoscope use according to claim 2 is characterized in that: The configuration unit comprises: The division unit is used to configure the data layer corresponding to the usage process information, and the data layer is divided according to the number of the multiple usage processes in the usage process information to obtain multiple unit data layers. The number of unit data layers is the same as the number of usage processes, and the unit data layers are matched with the usage processes one by one; Determine a unit, for respectively determining a plurality of target points in a unit data layer; The corresponding unit is used to respectively correspond multiple target points in multiple usage processes with the endoscope.

4. The intelligent traceability management system for endoscope use according to claim 3 is characterized by: The determining unit comprises: A setting unit is used to respectively set a plurality of information capsules and pheromones in the unit data layer, and the information capsules are connected to the unit data layer through the pheromones; Management unit for targeting pheromones and pheromones in the unit data layer.

5. The intelligent traceability management system for endoscope use according to claim 4 is characterized in that: The setting unit comprises: The information setting unit is used to respectively set a plurality of storage capsules corresponding to the unit data layers, set a storage membrane on the outside of the corresponding storage capsules, set a connection space between the storage capsules and the storage membranes, and set a plurality of free connection nodes in the connection space to obtain information capsules; A connection setting unit, used to set a connection port in the unit data layer, establish a connection channel between the connection port and the storage membrane, set a connection network in the connection port, wherein the connection network includes a plurality of communication terminals and a communication master terminal, and respectively establish a permeation communication space between the plurality of communication terminals and the communication master terminal; The sorting unit is used to set a bridge line in the connection channel, place the bridge line in the infiltration communication space of the communication master end, and connect the communication master end with the information acquisition end, wherein the bridge line is composed of a plurality of bridge points connected in sequence, and the bridge line extends to the storage capsule to obtain pheromones; The information connection unit is used to connect the information capsule to the connection port on the unit data layer through pheromones.

6. The intelligent traceability management system for endoscope use according to claim 1 is characterized by: The establishment module includes: A first corresponding connection unit, used to connect target points corresponding to the same endoscope in multiple usage processes through a data layer according to the corresponding relationship between the endoscope and the target point; The second corresponding connection unit connects multiple target points in the unit data layer to obtain a cross network; The storage unit is used to track the use information of the endoscope for collection and store the use information of the endoscope in the corresponding target point.

7. The intelligent traceability management system for endoscope use according to claim 1 is characterized by: The traceability module includes: A tracing unit is used to determine a target endoscope, obtain a target point corresponding to the target endoscope based on a cross network, obtain endoscope usage information in the target point, sort the endoscope usage information according to the order of the usage process, and obtain a tracing bar; The prompting unit is used to prompt the endoscope usage information in the traceability bar that does not meet the preset conditions.

8. The intelligent traceability management system for endoscope use according to claim 7 is characterized in that: The traceability unit comprises: A trigger unit is used to determine the target point corresponding to the target endoscope, trigger an information acquisition signal to the connection port through the information acquisition end, and then move through the connection node and sequentially sit in the bridge point; The calculation unit is used to obtain the connectivity index of the bridge line, wherein the calculation formula of the connectivity index is: ,in, is the connectivity index, is the number of connected nodes located in the bridge point, is the number of bridge points in the bridge line, is a constant greater than zero; A judgment unit, configured to, when the connectivity index of the bridge line does not meet the preset index, fail to establish a connection relationship between the communication master end and the storage capsule, and when the connectivity index of the bridge line meets the preset index, establish a connection relationship between the communication master end and the storage capsule; The sorting unit is used to obtain the endoscope usage information in the storage capsule through the connected bridge line after establishing the connection relationship between the communication main end and the storage capsule, and sort the endoscope usage information according to the order of the usage process to obtain a traceability bar.