Biological sample sharing storage method and device based on resource sharing platform

By creating a shared saving ledger and encrypting URL address on the resource sharing platform, the inefficiency problem in biological sample sharing management is solved, and efficient lending and return management of biological samples is achieved.

CN120354019APending Publication Date: 2025-07-22THE FIRST AFFILIATED HOSPITAL OF GUANGZHOU MEDICAL UNIV (GUANGZHOU RESPIRATORY CENT)
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Patent Information

Application Number
CN202510244833.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2025-07-22

AI Technical Summary

Technical Problem

The prior art has failed to effectively solve the problem of sharing management of subsequent biological samples preservation, especially the low efficiency of secondary entrance management during lending and return of biological samples.

Method used

By creating a shared saving ledger on the resource sharing platform and encrypting its URL address to an electronic tag, the automated access window and access job robot can realize the automated storage and management of biological samples, including the input, location allocation and storage processing of sample information data.

Benefits of technology

It improves the efficiency of biological sample sharing management, realizes efficient lending and return management of biological samples, and simplifies the shared preservation process.

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Abstract

The invention discloses a biological sample sharing storage method and device based on a resource sharing platform, and the method comprises the steps: a management user inputs the sample information data of a to-be-stored biological sample to the resource sharing platform based on a sample storage management terminal, and creates a sharing storage ledger for the to-be-stored biological sample, the URL address of the shared storage ledger is issued to the sample storage management terminal; a corresponding electronic tag is distributed and pasted to the biological sample to be stored, and the URL address is encrypted and then written into the electronic tag; a shared storage ledger corresponding to the biological sample to be stored is indexed on the resource sharing platform based on the electronic tag; distributing a corresponding storage position for the biological sample to be stored based on the shared storage ledger, and updating the storage position to the shared storage ledger; and based on the storage position, controlling the access operation robot to move the biological sample to be stored to the storage position to execute shared storage processing. In the embodiment of the invention, sharing storage of the biological samples is realized.
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Description

Technical Field

[0001] The present invention relates to the technical field of sample management, and in particular, to a method and device for sharing and storing biological samples based on a resource sharing platform. Background Art

[0002] In the existing preservation of biological samples, generally only consideration is given to how to facilitate the warehousing management of biological samples, how to improve the warehousing preservation efficiency, and how to reduce the error probability of staff in the entrance management; the problems of subsequent lending management of biological samples that may exist and secondary entrance management during subsequent return are not considered. Therefore, how to make the subsequent sharing management (i.e., lending management) of biological samples convenient after the biological samples are preserved is still a technical problem to be solved urgently. Summary of the Invention

[0003] The purpose of the present invention is to overcome the deficiencies of the prior art. The present invention provides a method and device for sharing and storing biological samples based on a resource sharing platform, which realizes the sharing and storing of biological samples, and can improve the efficiency of subsequent sharing management when sharing biological samples subsequently.

[0004] To solve the above technical problems, an embodiment of the present invention provides a method for sharing and storing biological samples based on a resource sharing platform, and the method includes:

[0005] A management user inputs sample information data of a biological sample to be stored to a resource sharing platform based on a sample storage management terminal, and the resource sharing platform creates a shared storage ledger for the biological sample to be stored based on the sample information data, and issues the URL address of the shared storage ledger to the sample storage management terminal;

[0006] The storage management terminal assigns and pastes a corresponding electronic tag to the biological sample to be stored, and writes the received URL address into the electronic tag after encrypting it using a preset algorithm;

[0007] After the biological sample to be stored arrives at and is received by an automated access window, the automated access window indexes the shared storage ledger corresponding to the biological sample to be stored on the resource sharing platform based on the electronic tag;

[0008] The automated access window assigns a corresponding storage location to the biological sample to be stored based on the shared storage ledger, and updates the storage location to the shared storage ledger;

[0009] The automated access window controls an access operation robot to move the biological sample to be stored to the storage location to perform shared storage processing based on the storage location.

[0010] Optionally, the managing user inputs sample information data of the biological sample to be saved into the resource sharing platform based on the sample preservation management terminal, including:

[0011] The managing user logs in to the sample preservation management terminal based on the identity authentication information, and obtains the editing permission on the sample storage management terminal through the identity authentication information after logging in;

[0012] The managing user edits the sample information data of the biological sample to be saved on the sample preservation management terminal based on the editing permission, and after the editing is completed, uploads the sample information data to the resource sharing platform; the sample information data includes sample name, sample source, sample quantity, sample preservation conditions, and sample attributes.

[0013] Optionally, the resource sharing platform creates a shared preservation ledger for the biological sample to be saved based on the sample information data, and issues the URL address of the shared preservation ledger to the sample preservation management terminal, including:

[0014] The resource sharing platform indexes and matches the corresponding ledger template based on the sample name in the sample information;

[0015] Creates the shared preservation ledger for the biological sample to be saved by using the ledger template based on the sample information data, and extracts the URL address of the shared preservation ledger;

[0016] The resource sharing platform issues the URL address to the sample preservation management terminal.

[0017] Optionally, the preservation management terminal assigns and pastes a corresponding electronic tag to the biological sample to be saved, and writes the received URL address into the electronic tag after encrypting it by using a preset algorithm, including:

[0018] The preservation management terminal assigns a corresponding electronic tag to the biological sample to be saved based on the sample information data, where the assigned electronic tag is a passive electronic tag;

[0019] The preservation management terminal pastes the electronic tag to the specified position of the sample to be saved based on the tag pasting device;

[0020] The preservation management terminal calls a preset algorithm to encrypt the URL address by using a preset encryption key, and writes the encrypted URL address into the electronic tag through a reader-writer.

[0021] Optionally, the preset algorithm is an asymmetric encryption algorithm, and a decryption key paired with the preset encryption key is stored in the automated access window.

[0022] Optionally, the automated access window indexes the shared storage ledger corresponding to the biological sample to be stored on the resource sharing platform based on the electronic tag, including:

[0023] The automated access window reads the encrypted URL address stored in the electronic tag based on a reader, and decrypts the encrypted URL address by invoking a pre-stored decryption key to obtain the decrypted URL address;

[0024] The automated access window indexes the shared storage ledger corresponding to the biological sample to be stored on the resource sharing platform based on the decrypted URL address.

[0025] Optionally, the automated access window allocates a corresponding storage location for the biological sample to be stored based on the shared storage ledger and updates the storage location to the shared storage ledger, including:

[0026] The automated access window extracts the sample information data corresponding to the biological sample to be stored from the shared storage ledger;

[0027] Based on the sample name, sample quantity, and sample storage conditions in the sample information data, a corresponding storage location is allocated for the biological sample to be stored;

[0028] The automated access window edits and updates the storage location to the shared storage ledger based on the editing permission for the shared storage ledger.

[0029] Optionally, allocating a corresponding storage location for the biological sample to be stored based on the sample name, sample quantity, and sample storage conditions in the sample information data includes:

[0030] Using the sample storage conditions in the sample information data to match several storage containers that meet the sample storage conditions;

[0031] Based on the sample name in the sample information data, index processing is performed among several storage containers to find the first storage container storing the same sample name as the sample name, and when the first storage container is indexed, a corresponding storage location is allocated in the first storage container according to the sample quantity in the sample information data;

[0032] When the first storage container cannot be indexed, a new storage container is allocated among the several storage containers as the first storage container for the biological sample to be stored, and a storage location matching the sample quantity is allocated for the biological sample to be stored in the first storage container.

[0033] Optionally, the automated access window controls the access operation robot to move the biological sample to be stored to the storage position based on the storage position to perform shared storage processing, including:

[0034] The automated access window issues the storage position to the controller of the storage operation robot, and the controller generates a storage movement path according to the storage position;

[0035] The controller controls the access operation robot to carry the biological sample to be stored to the storage position based on the storage movement path to perform shared storage processing.

[0036] In addition, an embodiment of the present invention further provides a biological sample shared storage device based on a resource sharing platform, and the device includes:

[0037] A creation module: used to manage the sample information data of the biological sample to be stored input by the user to the resource sharing platform based on the sample storage management terminal, and the resource sharing platform creates a shared storage ledger for the biological sample to be stored based on the sample information data, and issues the URL address of the shared storage ledger to the sample storage management terminal;

[0038] An encryption module: used for the storage management terminal to allocate and paste a corresponding electronic tag to the biological sample to be stored, and write the received URL address into the electronic tag after encrypting it with a preset algorithm;

[0039] An indexing module: used for after the biological sample to be stored arrives at and is received by the automated access window, the automated access window indexes the shared storage ledger corresponding to the biological sample to be stored on the resource sharing platform based on the electronic tag;

[0040] An update module: used for the automated access window to allocate a corresponding storage position for the biological sample to be stored based on the shared storage ledger, and update the storage position to the shared storage ledger;

[0041] A shared storage module: used for the automated access window to control the access operation robot to move the biological sample to be stored to the storage position based on the storage position to perform shared storage processing.

[0042] In the embodiment of the present invention, a shared preservation ledger is created on the resource sharing platform through the sample information data corresponding to the biological sample, and the URL address of the shared preservation ledger is encrypted and written into the electronic tag corresponding to the biological sample. Subsequently, the encrypted URL address in the electronic tag is read to enter the shared preservation ledger, and the storage location is allocated to perform automated storage; thereby, when managing the borrowing and sharing of biological samples subsequently, it can be executed through the shared preservation ledger, and various information such as the lending time, return time, and lender can be obtained through the shared preservation ledger; thereby, the shared preservation of biological samples is realized, so that when sharing biological samples subsequently, the efficiency of subsequent sharing management can be improved. BRIEF DESCRIPTION OF THE DRAWINGS

[0043] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, the following drawings are only some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0044] Figure 1 is a flowchart of the method for sharing and preserving biological samples based on a resource sharing platform in an embodiment of the present invention;

[0045] Figure 2 is a flowchart of the step of allocating corresponding storage positions in an embodiment of the present invention;

[0046] Figure 3 is a schematic diagram of the structural composition of the device for sharing and preserving biological samples based on a resource sharing platform in an embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0047] The following will clearly and completely describe the technical solutions in the embodiments of the present invention with reference to the drawings in the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, rather than all embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts belong to the scope of protection of the present invention.

[0048] Embodiment 1, please refer to Figure 1 , Figure 1 is a flowchart of the method for sharing and preserving biological samples based on a resource sharing platform in an embodiment of the present invention.

[0049] As Figure 1 shown, a method for sharing and preserving biological samples based on a resource sharing platform, the method includes:

[0050] S101: The management user inputs the sample information data of the biological sample to be saved into the resource sharing platform based on the sample storage management terminal, and the resource sharing platform creates a shared storage ledger for the biological sample to be saved based on the sample information data, and issues the URL address of the shared storage ledger to the sample storage management terminal;

[0051] In the specific implementation process of the present invention, the management user inputs the sample information data of the biological sample to be saved into the resource sharing platform based on the sample storage management terminal, including: the management user logs in to the sample storage management terminal based on the identity authentication information, and obtains the editing permission on the sample storage management terminal through the identity authentication information after logging in; the management user edits the sample information data of the biological sample to be saved on the sample storage management terminal based on the editing permission, and after the editing is completed, uploads the sample information data to the resource sharing platform; the sample information data includes the sample name, sample source, sample quantity, sample storage condition, and sample attribute.

[0052] Further, the resource sharing platform creates a shared storage ledger for the biological sample to be saved based on the sample information data, and issues the URL address of the shared storage ledger to the sample storage management terminal, including: the resource sharing platform indexes and matches the corresponding ledger template based on the sample name in the sample information; creates the shared storage ledger for the biological sample to be saved using the ledger template based on the sample information data, and extracts the URL address of the shared storage ledger; the resource sharing platform issues the URL address to the sample storage management terminal.

[0053] Specifically, it involves the interaction between the sample storage management terminal, the resource sharing platform, and the automated access window; the management user needs to operate on the sample storage management terminal, that is, the management user first needs to log in to the sample storage management terminal, and the specific login method is to perform a login operation through the identity authentication method, and after the identity authentication is passed, log in to the sample storage management terminal, and then obtain the corresponding editing permission on the sample storage management terminal through the identity authentication information of the management user, which is the permission for the user to edit the corresponding information on the sample storage management terminal.

[0054] After the management user obtains the editing permission, the sample information data corresponding to the biological sample to be saved will be edited on the sample storage management terminal through this editing permission, where the sample information data mainly includes the sample name, sample source, sample quantity, sample storage condition, and sample attribute; after the editing is completed according to the rules, the sample information data will be uploaded to the resource sharing platform.

[0055] After the resource sharing platform receives the sample information data, it is necessary to create a shared storage ledger corresponding to the sample information data. Subsequently, the storage location, storage time, sharing and lending time, lender, sharing return time, shared usage quantity, etc. of the biological sample to be stored will be recorded through this shared storage ledger, so that the required data can be obtained at a glance through the shared storage ledger during management; therefore, it is necessary for the resource sharing platform to match the corresponding ledger template through the sample name index in the sample information; then, use the sample information data to create a shared storage ledger corresponding to the biological sample to be stored through this ledger template, and assign a unique URL address on the resource sharing platform to the shared storage ledger. Subsequently, the URL address of the shared storage ledger can be retrieved; and after the URL address of the shared storage ledger is retrieved, the resource sharing platform will send this URL address to the sample storage management terminal.

[0056] The operations of the above steps mainly target the newly collected biological samples to be stored. For those biological samples to be stored that are shared, lent, and returned, such operations are not required. Instead, directly identify the electronic tag on the biological sample to be stored that is shared, lent, and returned, and then enter the shared storage ledger corresponding to the URL address stored in the electronic tag to obtain the storage location, and update the information in the shared storage ledger.

[0057] S102: The storage management terminal assigns and pastes a corresponding electronic tag to the biological sample to be stored, and writes the received URL address into the electronic tag after encrypting it using a preset algorithm.

[0058] In the specific implementation process of the present invention, the storage management terminal assigns and pastes a corresponding electronic tag to the biological sample to be stored, and writes the received URL address into the electronic tag after encrypting it using a preset algorithm, including: the storage management terminal assigns a corresponding electronic tag to the biological sample to be stored based on the sample information data, where the assigned electronic tag is a passive electronic tag; the storage management terminal pastes the electronic tag to the specified position of the biological sample to be stored based on a tag pasting device; the storage management terminal calls a preset algorithm to encrypt the URL address using a preset encryption key, and writes the encrypted URL address into the electronic tag through a reader-writer.

[0059] Further, the preset algorithm is an asymmetric encryption algorithm, and a decryption key paired with the preset encryption key is stored in the automated access window.

[0060] Specifically, after the preservation management terminal receives the URL address sent by the resource sharing platform, it will first allocate a corresponding electronic tag for the biological sample to be preserved according to the sample information data. Generally, this electronic tag is a passive electronic tag. At the same time, it is necessary to paste the allocated electronic tag onto the designated position of the sample to be preserved through a tag pasting device. Finally, the preservation management terminal will need to call a preset algorithm to encrypt the URL address using a preset encryption key, and write the encrypted URL address into the electronic tag through a reader-writer.

[0061] In this embodiment, the preset algorithm adopted is an asymmetric encryption algorithm, and the decryption key corresponding to the encryption key used in the encryption process using the asymmetric encryption algorithm is stored in the automated access window. Subsequently, the automated access window can directly call the decryption key to perform the decryption operation.

[0062] S103: After the biological sample to be preserved arrives at and is received by the automated access window, the automated access window indexes the shared preservation ledger corresponding to the biological sample to be preserved on the resource sharing platform based on the electronic tag.

[0063] In the specific implementation process of the present invention, the automated access window indexes the shared preservation ledger corresponding to the biological sample to be preserved on the resource sharing platform based on the electronic tag, including: the automated access window reads the encrypted URL address stored in the electronic tag based on a reader-writer, and calls the pre-stored decryption key to perform a decryption operation on the encrypted URL address to obtain the decrypted URL address; the automated access window indexes the shared preservation ledger corresponding to the biological sample to be preserved on the resource sharing platform based on the decrypted URL address.

[0064] Specifically, after the biological sample to be preserved is transferred to the automated access window, the encrypted URL address stored in the electronic tag will be read through the tag reader-writer carried on the automated access window. Then, the automated access window will call the stored decryption key to perform a decryption operation on the encrypted URL address. After the decryption operation is completed, the decrypted URL address is obtained. At this time, the automated access window will index the shared preservation ledger corresponding to the biological sample to be preserved on the resource sharing platform through the decrypted URL address.

[0065] S104: The automated access window allocates a corresponding preservation location for the biological sample to be preserved based on the shared preservation ledger, and updates the preservation location to the shared preservation ledger.

[0066] In the specific implementation process of the present invention, the automated access window allocates a corresponding storage location for the biological sample to be stored based on the shared storage ledger and updates the storage location to the shared storage ledger, including: the automated access window extracts the sample information data corresponding to the biological sample to be stored from the shared storage ledger; allocates a corresponding storage location for the biological sample to be stored based on the sample name, sample quantity, and sample storage conditions in the sample information data; the automated access window edits and updates the storage location to the shared storage ledger based on the editing permission for the shared storage ledger.

[0067] Further, the allocating a corresponding storage location for the biological sample to be stored based on the sample name, sample quantity, and sample storage conditions in the sample information data includes: using the sample storage conditions in the sample information data to match a number of storage containers that meet the sample storage conditions; performing indexing processing on the number of storage containers based on the sample name in the sample information data to find the first storage container storing the same sample name as the sample name in the sample information data, and when the first storage container is indexed, allocating a corresponding storage location for the biological sample to be stored in the first storage container according to the sample quantity in the sample information data; when the first storage container cannot be indexed, allocating a new storage container in the number of storage containers as the first storage container for the biological sample to be stored, and allocating a storage location matching the sample quantity for the biological sample to be stored in the first storage container.

[0068] Specifically, please refer to Figure 2 , as Figure 2 shown:

[0069] S1041: The automated access window extracts the sample information data corresponding to the biological sample to be stored from the shared storage ledger;

[0070] Specifically, the automated access window will perform information extraction processing on the shared storage ledger through a corresponding page information extraction algorithm and perform screening on the extracted information to obtain the sample information data corresponding to the biological sample to be stored.

[0071] S1042: Use the sample storage conditions in the sample information data to match a number of storage containers that meet the sample storage conditions;

[0072] Specifically, in the selection of the storage container for the biological sample to be stored, first, these storage containers need to meet the corresponding sample storage conditions; that is, a number of storage containers that meet the storage conditions of the biological sample to be stored can be matched through the sample storage conditions in the sample information data.

[0073] S1043: Index the first storage container that stores the same sample name as the sample name in the sample information data among several storage containers, and when the first storage container is indexed, allocate a corresponding storage location in the first storage container according to the sample quantity in the sample information data;

[0074] Specifically, at this time, it is necessary to index the first storage container that stores the same sample name as the sample name in the sample information data among several storage containers, and determine whether the first storage container is indexed. If the first storage container is indexed, a corresponding storage location will be allocated in the first storage container according to the sample quantity in the sample information data.

[0075] S1044: When the first storage container cannot be indexed, allocate a new storage container among the several storage containers as the first storage container for the biological sample to be stored, and allocate a storage location matching the sample quantity for the biological sample to be stored in the first storage container;

[0076] Specifically, when the first storage container cannot be indexed or the remaining storage space in the first storage container is not enough to store the sample to be stored, a corresponding first storage container needs to be newly allocated. At this time, if the remaining storage space in the first storage container is not enough to store the sample to be stored, the polling algorithm can be used to poll several idle and storage-condition-compliant storage containers centered on the first storage container with insufficient remaining storage space to store the sample to be stored as the new first storage container and use it to store the biological sample to be stored; if the first storage container cannot be indexed, directly allocate a new storage container among the several storage containers as the first storage container for the biological sample to be stored, and allocate a storage location matching the sample quantity for the biological sample to be stored in the first storage container.

[0077] S1045: The automated access window edits and updates the storage location to the shared storage ledger based on the editing permission for the shared storage ledger.

[0078] Specifically, at this time, the automated access serial port will edit and update the storage location to the shared storage ledger by means of the editing permission for the shared storage ledger.

[0079] S105: The automated access window controls the access operation robot to move the biological sample to be stored to the storage location to perform shared storage processing based on the storage location.

[0080] In the specific implementation process of the present invention, the automated access window controls the access and storage operation robot to move the biological sample to be stored to the storage position for shared storage processing based on the storage position, including: the automated access window sends the storage position to the controller of the storage operation robot, and the controller generates a storage movement path according to the storage position; the controller controls the access and storage operation robot to carry the biological sample to be stored to the storage position for shared storage processing based on the storage movement path.

[0081] Specifically, the automated access operation will be realized by the access and storage operation robot. That is, the automated access window sends the storage position to the controller of the storage operation robot, and then the controller generates a storage movement path according to the storage position; finally, the controller controls the access and storage operation robot to carry the biological sample to be stored to the storage position for shared storage processing according to the storage movement path; and after the storage operation is completed, the automated access window updates the storage time to the shared storage ledger.

[0082] In the embodiment of the present invention, a shared storage ledger is created on the resource sharing platform through the sample information data corresponding to the biological sample, and the URL address of the shared storage ledger is encrypted and written into the electronic tag corresponding to the biological sample. Subsequently, the encrypted URL address in the electronic tag is read to enter the shared storage ledger, and a storage position is allocated to perform automated storage; thus, when subsequent external borrowing and sharing management of biological samples is carried out, it can be executed through the shared storage ledger, and various information such as borrowing time, return time, and borrower can be obtained through the shared storage ledger; thereby realizing the shared storage of biological samples, and improving the efficiency of subsequent sharing management when biological samples are shared later.

[0083] Embodiment 2, please refer to Figure 3 , Figure 3 is a schematic structural diagram of a biological sample shared storage device based on a resource sharing platform in the embodiment of the present invention.

[0084] As Figure 3 shown, a biological sample shared storage device based on a resource sharing platform, the device includes:

[0085] Creation module 301: used to manage the sample information data of the biological sample to be stored input by the user to the resource sharing platform based on the sample storage management terminal, and the resource sharing platform creates a shared storage ledger for the biological sample to be stored based on the sample information data, and sends the URL address of the shared storage ledger to the sample storage management terminal;

[0086] In the specific implementation process of the present invention, the managing user inputs sample information data of the biological sample to be saved into the resource sharing platform based on the sample storage management terminal, including: the managing user logs in to the sample storage management terminal based on the identity authentication information, and obtains the editing permission on the sample storage management terminal through the identity authentication information after logging in; the managing user edits the sample information data of the biological sample to be saved on the sample storage management terminal based on the editing permission, and after the editing is completed, uploads the sample information data to the resource sharing platform; the sample information data includes the sample name, sample source, sample quantity, sample storage conditions, and sample attributes.

[0087] Further, the resource sharing platform creates a shared storage ledger for the biological sample to be saved based on the sample information data, and sends the URL address of the shared storage ledger to the sample storage management terminal, including: the resource sharing platform indexes and matches the corresponding ledger template based on the sample name in the sample information; creates the shared storage ledger for the biological sample to be saved using the ledger template based on the sample information data, and extracts the URL address of the shared storage ledger; the resource sharing platform sends the URL address to the sample storage management terminal.

[0088] Specifically, it involves the interaction between the sample storage management terminal, the resource sharing platform, and the automated access window; the managing user needs to operate on the sample storage management terminal, that is, the managing user first needs to log in to the sample storage management terminal. The specific login method is to perform the login operation through the identity authentication method. After the identity authentication is passed, log in to the sample storage management terminal, and then obtain the corresponding editing permission on the sample storage management terminal through the identity authentication information of the managing user. This editing permission is the permission for the user to edit the corresponding information on the sample storage management terminal.

[0089] After the managing user obtains the editing permission, the sample information data corresponding to the biological sample to be saved will be edited on the sample storage management terminal through this editing permission. The sample information data mainly includes the sample name, sample source, sample quantity, sample storage conditions, and sample attributes; after the editing is completed according to the rules, the sample information data is uploaded to the resource sharing platform.

[0090] After the resource sharing platform receives the sample information data, it is necessary to create a shared storage ledger corresponding to the sample information data. Subsequently, the storage location, warehousing time, sharing and lending time, lender, sharing return time, shared usage quantity, etc. of the biological sample to be stored will be recorded through this shared storage ledger, so that the required data can be directly obtained from the shared storage ledger in management at a glance; therefore, it is necessary for the resource sharing platform to match the corresponding ledger template through the sample name index in the sample information; then, use the sample information data to create a shared storage ledger corresponding to the biological sample to be stored through this ledger template, and assign a unique URL address on the resource sharing platform to the shared storage ledger. Subsequently, the URL address of the shared storage ledger can be retrieved; and after retrieving the URL address of the shared storage ledger, the resource sharing platform will send this URL address to the sample storage management terminal.

[0091] The operations of the above steps mainly target newly collected biological samples to be stored. For those biological samples to be stored that are shared, lent, and returned, such operations are not required. Instead, directly identify the electronic tag on the biological sample to be stored that is shared, lent, and returned, and then enter the shared storage ledger corresponding to the URL address stored in the electronic tag to obtain the storage location, and update the information in the shared storage ledger.

[0092] Encryption module 302: Used for the storage management terminal to assign and paste a corresponding electronic tag to the biological sample to be stored, and write the received URL address into the electronic tag after encrypting it using a preset algorithm;

[0093] In the specific implementation process of the present invention, the storage management terminal assigns and pastes a corresponding electronic tag to the biological sample to be stored, and writes the received URL address into the electronic tag after encrypting it using a preset algorithm, including: the storage management terminal assigns a corresponding electronic tag to the biological sample to be stored based on the sample information data, where the assigned electronic tag is a passive electronic tag; the storage management terminal pastes the electronic tag to the specified position of the biological sample to be stored based on the tag pasting device; the storage management terminal calls a preset algorithm to encrypt the URL address using a preset encryption key, and writes the encrypted URL address into the electronic tag through a reader-writer.

[0094] Furthermore, the preset algorithm is an asymmetric encryption algorithm, and a decryption key paired with the preset encryption key is stored in the automated access window.

[0095] Specifically, after the preservation management terminal receives the URL address sent by the resource sharing platform, it will first allocate a corresponding electronic tag for the biological sample to be preserved according to the sample information data. Generally, this electronic tag is a passive electronic tag. At the same time, it is necessary to paste the allocated electronic tag to the designated position of the sample to be preserved through a tag pasting device. Finally, the preservation management terminal will need to call a preset algorithm to encrypt the URL address using a preset encryption key, and write the encrypted URL address into the electronic tag through a reader-writer.

[0096] In this embodiment, the preset algorithm adopted is an asymmetric encryption algorithm, and the decryption key corresponding to the encryption key used in the encryption process by using the asymmetric encryption algorithm is stored in the automated access window. Subsequently, the automated access window can directly call the decryption key to perform the decryption operation.

[0097] Index module 303: After the biological sample to be preserved arrives at the automated access window and is received, the automated access window indexes the shared preservation ledger corresponding to the biological sample to be preserved on the resource sharing platform based on the electronic tag.

[0098] In the specific implementation process of the present invention, the automated access window indexes the shared preservation ledger corresponding to the biological sample to be preserved on the resource sharing platform based on the electronic tag, including: the automated access window reads the encrypted URL address stored in the electronic tag based on a reader-writer, and calls the pre-stored decryption key to perform a decryption operation on the encrypted URL address to obtain the decrypted URL address; the automated access window indexes the shared preservation ledger corresponding to the biological sample to be preserved on the resource sharing platform based on the decrypted URL address.

[0099] Specifically, after the biological sample to be preserved is transferred to the automated access window, the encrypted URL address stored in the electronic tag will be read through the tag reader-writer carried on the automated access window. Then, the automated access window will call the stored decryption key to perform a decryption operation on the encrypted URL address. After the decryption operation is completed, the decrypted URL address is obtained. At this time, the automated access window will index the shared preservation ledger corresponding to the biological sample to be preserved on the resource sharing platform through the decrypted URL address.

[0100] Update module 304: The automated access window allocates a corresponding preservation location for the biological sample to be preserved based on the shared preservation ledger, and updates the preservation location to the shared preservation ledger.

[0101] In the specific implementation process of the present invention, the automated access window allocates a corresponding storage location for the biological sample to be stored based on the shared storage ledger and updates the storage location to the shared storage ledger, including: the automated access window extracts the sample information data corresponding to the biological sample to be stored from the shared storage ledger; allocates a corresponding storage location for the biological sample to be stored based on the sample name, sample quantity, and sample storage conditions in the sample information data; the automated access window edits and updates the storage location to the shared storage ledger based on the editing permission for the shared storage ledger.

[0102] Further, the allocating a corresponding storage location for the biological sample to be stored based on the sample name, sample quantity, and sample storage conditions in the sample information data includes: using the sample storage conditions in the sample information data to match several storage containers that meet the sample storage conditions; performing index processing on the sample name in the sample information data among several storage containers to find the first storage container storing the same sample name as the sample name in the sample information data, and when the first storage container is indexed, allocating a corresponding storage location in the first storage container according to the sample quantity in the sample information data; when the first storage container cannot be indexed, allocating a new storage container among the several storage containers as the first storage container for the biological sample to be stored, and allocating a storage location matching the sample quantity for the biological sample to be stored in the first storage container.

[0103] Specifically, please refer to Figure 2 As Figure 2 shown:

[0104] S1041: The automated access window extracts the sample information data corresponding to the biological sample to be stored from the shared storage ledger;

[0105] Specifically, the automated access window will perform information extraction processing on the shared storage ledger through a corresponding page information extraction algorithm and perform screening on the extracted information to obtain the sample information data corresponding to the biological sample to be stored.

[0106] S1042: Using the sample storage conditions in the sample information data to match several storage containers that meet the sample storage conditions;

[0107] Specifically, when selecting a storage container for the biological sample to be stored, first, these storage containers need to meet the corresponding sample storage conditions; that is, several storage containers that meet the storage conditions of the biological sample to be stored can be matched through the sample storage conditions in the sample information data.

[0108] S1043: Index the first storage container that stores the same sample name as the sample name in the sample information data among several storage containers, and when the first storage container is indexed, allocate a corresponding storage location in the first storage container according to the sample quantity in the sample information data;

[0109] Specifically, at this time, it is necessary to index the first storage container that stores the same sample name as the sample name in the sample information data among several storage containers, and determine whether the first storage container is indexed. If the first storage container is indexed, a corresponding storage location will be allocated in the first storage container according to the sample quantity in the sample information data.

[0110] S1044: When the first storage container cannot be indexed, allocate a new storage container among the several storage containers as the first storage container for the biological sample to be stored, and allocate a storage location matching the sample quantity for the biological sample to be stored in the first storage container;

[0111] Specifically, when the first storage container cannot be indexed or the remaining storage space in the first storage container is not enough to store the sample to be stored, a corresponding first storage container needs to be newly allocated. At this time, if the remaining storage space in the first storage container is not enough to store the sample to be stored, the polling algorithm can be used to poll several idle and storage-condition-compliant storage containers outward from the first storage container with insufficient remaining storage space to store the sample to be stored as the new first storage container, and use it to store the biological sample to be stored; if the first storage container cannot be indexed, directly allocate a new storage container among the several storage containers as the first storage container for the biological sample to be stored, and allocate a storage location matching the sample quantity for the biological sample to be stored in the first storage container.

[0112] S1045: The automated access window edits and updates the storage location to the shared storage ledger based on the editing permission for the shared storage ledger.

[0113] Specifically, at this time, the automated access serial port will edit and update the storage location to the shared storage ledger by means of the editing permission for the shared storage ledger.

[0114] Shared storage module 305: Used to control the access operation robot by the automated access window to move the biological sample to be stored to the storage location to perform shared storage processing.

[0115] In the specific implementation process of the present invention, the automated access window controls the access operation robot to move the biological sample to be stored to the storage position based on the storage position to perform shared storage processing, including: the automated access window sends the storage position to the controller of the storage operation robot, and the controller generates a storage movement path according to the storage position; the controller controls the access operation robot to carry the biological sample to be stored to the storage position based on the storage movement path to perform shared storage processing.

[0116] Specifically, the automated access operation will be realized through the access operation robot. That is, the automated access window sends the storage position to the controller of the storage operation robot, and then the controller generates a storage movement path according to the storage position; finally, the controller controls the access operation robot to carry the biological sample to be stored to the storage position based on the storage movement path to perform shared storage processing; and after the storage operation is completed, the automated access window updates the storage time to the shared storage ledger.

[0117] In an embodiment of the present invention, a shared storage ledger is created on the resource sharing platform through the sample information data corresponding to the biological sample, and the URL address of the shared storage ledger is encrypted and written into the electronic tag corresponding to the biological sample. Subsequently, the encrypted URL address in the electronic tag is read to enter the shared storage ledger, and a storage position is allocated to perform automated storage; thus, when the subsequent external borrowing and sharing management of the biological sample is carried out, it can be executed through the shared storage ledger, and various information such as the lending time, return time, and lender can be obtained through the shared storage ledger; thereby realizing the shared storage of the biological sample, and improving the efficiency of subsequent sharing management when the biological sample is shared.

[0118] Those of ordinary skill in the art can understand that all or part of the steps in the various methods of the above embodiments can be completed by instructing relevant hardware through a program, and the program can be stored in a computer-readable storage medium. The storage medium can include: read-only memory (ROM, Read Only Memory), random access memory (RAM, Random Access Memory), magnetic disk or optical disk, etc.

[0119] In addition, the above provides a detailed introduction to a method and device for shared storage of biological samples based on a resource sharing platform. In this article, specific examples are used to elaborate on the principle and implementation manner of the present invention. The description of the above embodiments is only used to help understand the method and its core idea of the present invention; at the same time, for those of ordinary skill in the art, according to the idea of the present invention, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation to the present invention.

Claims

1. A method for sharing and preserving biological samples based on a resource sharing platform, characterized in that, The method includes: The management user inputs sample information data of a biological sample to be saved to a resource sharing platform based on a sample storage management terminal, and the resource sharing platform creates a shared storage ledger for the biological sample to be saved based on the sample information data, and issues the URL address of the shared storage ledger to the sample storage management terminal; The storage management terminal assigns and pastes a corresponding electronic tag to the biological sample to be saved, and writes the received URL address into the electronic tag after encrypting it using a preset algorithm; After the biological sample to be saved arrives at and is received by an automated access window, the automated access window indexes the shared storage ledger corresponding to the biological sample to be saved on the resource sharing platform based on the electronic tag; The automated access window assigns a corresponding storage location for the biological sample to be saved based on the shared storage ledger, and updates the storage location to the shared storage ledger; The automated access window controls an access operation robot to move the biological sample to be saved to the storage location to perform shared storage processing based on the storage location.

2. The biological sample sharing and preservation method according to claim 1, wherein The management user inputs sample information data of a biological sample to be saved to a resource sharing platform based on a sample storage management terminal, including: The management user logs in to the sample storage management terminal based on identity authentication information, and obtains editing permissions on the sample storage management terminal through the identity authentication information after logging in; The management user edits the sample information data of the biological sample to be saved on the sample storage management terminal based on the editing permissions, and after the editing is completed, uploads the sample information data to the resource sharing platform; the sample information data includes sample name, sample source, sample quantity, sample storage conditions, and sample attributes.

3. The biological sample sharing and preservation method according to claim 1, characterized in that, The resource sharing platform creates a shared storage ledger for the biological sample to be saved based on the sample information data, and issues the URL address of the shared storage ledger to the sample storage management terminal, including: The resource sharing platform indexes and matches a corresponding ledger template based on the sample name in the sample information; Creates the shared storage ledger for the biological sample to be saved using the ledger template based on the sample information data, and extracts the URL address of the shared storage ledger; The resource sharing platform issues the URL address to the sample storage management terminal.

4. The biological sample sharing and preservation method according to claim 1, characterized in that The storage management terminal assigns and pastes a corresponding electronic tag to the biological sample to be saved, and writes the received URL address into the electronic tag after encrypting it using a preset algorithm, including: The storage management terminal assigns a corresponding electronic tag to the biological sample to be saved based on the sample information data, where the assigned electronic tag is a passive electronic tag; The storage management terminal pastes the electronic tag to a specified position of the biological sample to be saved based on a tag pasting device; The storage management terminal calls a preset algorithm to encrypt the URL address using a preset encryption key, and writes the encrypted URL address into the electronic tag through a reader / writer.

5. The biological sample sharing and preservation method according to claim 4, wherein, The preset algorithm is an asymmetric encryption algorithm, and a decryption key paired with a preset encryption key is stored in the automated access window.

6. The biological sample sharing and preservation method according to claim 1, wherein The automated access window indexes the shared storage ledger corresponding to the biological sample to be stored on the resource sharing platform based on the electronic tag, including: The automated access window reads the encrypted URL address stored in the electronic tag based on the reader, and calls the pre-stored decryption key to perform a decryption operation on the encrypted URL address to obtain the decrypted URL address; The automated access window indexes the shared storage ledger corresponding to the biological sample to be stored on the resource sharing platform based on the decrypted URL address.

7. The biological sample sharing and preservation method according to claim 1, characterized in that The automated access window allocates a corresponding storage location for the biological sample to be stored based on the shared storage ledger, and updates the storage location to the shared storage ledger, including: The automated access window extracts the sample information data corresponding to the biological sample to be stored from the shared storage ledger; Based on the sample name, sample quantity, and sample storage conditions in the sample information data, allocate a corresponding storage location for the biological sample to be stored; The automated access window edits and updates the storage location to the shared storage ledger based on the editing permission for the shared storage ledger.

8. The biological sample sharing and preservation method according to claim 7, wherein The allocation of a corresponding storage location for the biological sample to be stored based on the sample name, sample quantity, and sample storage conditions in the sample information data includes: Use the sample storage conditions in the sample information data to match a number of storage containers that meet the sample storage conditions; Based on the sample name in the sample information data, perform an indexing process in a number of storage containers to find the first storage container storing the same sample name as the sample name, and when the first storage container is indexed, allocate a corresponding storage location in the first storage container according to the sample quantity in the sample information data; When the first storage container cannot be indexed, allocate a new storage container in the number of storage containers as the first storage container for the biological sample to be stored, and allocate a storage location matching the sample quantity for the biological sample to be stored in the first storage container.

9. The biological sample sharing and preservation method according to claim 1, wherein, The automated access window controls the access operation robot to move the biological sample to be stored to the storage location to perform shared storage processing based on the storage location, including: The automated access window sends the storage location to the controller of the storage operation robot, and the controller generates a storage movement path according to the storage location; The controller controls the access operation robot to carry the biological sample to be stored to the storage location to perform shared storage processing based on the storage movement path.

10. A biological sample sharing and preservation device based on a resource sharing platform, characterized in that, The device includes: Creation Module: It is used to manage the sample information data of biological samples to be saved input by users from the sample storage management terminal to the resource sharing platform, and the resource sharing platform creates a shared storage ledger for the biological samples to be saved based on the sample information data, and sends the URL address of the shared storage ledger to the sample storage management terminal; Encryption Module: It is used for the storage management terminal to allocate and paste corresponding electronic tags for the biological samples to be saved, and write the received URL address into the electronic tags after encrypting it with a preset algorithm; Index Module: It is used for after the biological samples to be saved arrive at and are received by the automated access window, the automated access window indexes the shared storage ledger corresponding to the biological samples to be saved on the resource sharing platform based on the electronic tags; Update Module: It is used for the automated access window to allocate corresponding storage locations for the biological samples to be saved based on the shared storage ledger, and update the storage locations to the shared storage ledger; Shared Storage Module: It is used for the automated access window to control the access operation robot to move the biological samples to be saved to the storage locations based on the storage locations to perform shared storage processing.