Method and device for checking and accepting goods for clinical laboratory of hospital and electronic equipment
By determining the order of goods acceptance based on usage time, storage conditions, and quality assurance information through the server, the problem of low acceptance efficiency in the laboratory of large hospitals has been solved, and efficient goods acceptance and inventory management have been achieved.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-03-31
- Publication Date
- 2026-04-14
AI Technical Summary
In the laboratory departments of large hospitals, the efficiency of goods acceptance is low, mainly because when there are a large number of goods to be accepted, staff need to spend a long time determining the order of acceptance.
The system obtains the usage time information of the goods to be inspected from the server, determines the inspection order according to preset rules, including usage time, storage conditions, quality assurance information and emergency inspection information, generates the inspection order results and sends them to the user's equipment to guide the staff in the inspection.
This improved the efficiency of goods acceptance, ensured that goods were stored in the warehouse according to their usage time and demand, saved the hospital's goods expenses, and guaranteed the normal operation of the laboratory.
Smart Images

Figure CN121862333A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of data processing, specifically to a method, apparatus, and electronic equipment for accepting goods used in a hospital laboratory. Background Technology
[0002] With the development of medical technology, large hospitals are accelerating their comprehensive development, especially in terms of the increasing number of departments dedicated to the diagnosis and treatment of various diseases.
[0003] Currently, many large hospitals have established laboratories, which serve as a bridge between clinical and basic medicine. These laboratories handle the testing of various human specimens, including those from inpatient wards, outpatients, emergency rooms, physical examinations, and research. Consequently, the volume of supplies required for laboratory testing is enormous. These supplies are first shipped from suppliers, transported to the hospital where the laboratory is located, and then inspected by staff before being stored for laboratory use. However, in practice, staff often determine the order of inspection based on the arrival time of the goods. When the number of items to be inspected is large, this process can be time-consuming, leading to low efficiency in the inspection process.
[0004] Therefore, there is an urgent need for a method, device, and electronic equipment for accepting goods used in hospital laboratories. Summary of the Invention
[0005] This application provides a method, device, and electronic equipment for accepting goods used in hospital laboratories, which has the technical effect of improving the efficiency of acceptance work.
[0006] The first aspect of this application provides an acceptance method for goods used in a hospital laboratory, applied to a server, the acceptance method comprising: Obtain acceptance information for multiple goods awaiting acceptance, including usage time information; The usage time information is processed using preset rules to obtain the acceptance order of multiple goods to be inspected. The preset rules include determining the acceptance order of multiple goods to be inspected based on the order of their usage time. The acceptance sequence result is sent to the user equipment so that the user corresponding to the user equipment can accept multiple goods to be accepted according to the acceptance sequence result.
[0007] By adopting the above technical solution, the server first obtains the usage time information of multiple goods to be inspected, then processes the usage time information according to the order of usage time to obtain the inspection order result of the multiple goods to be inspected, and sends the inspection order result to the user equipment, so that the user corresponding to the user equipment can inspect the multiple goods to be inspected according to the inspection order result. Therefore, compared with related technologies, it is not necessary to determine the inspection order based on the arrival order of the goods. The server determines the inspection order based on the usage time information, which meets the usage time requirements of the inspection department, thereby improving the overall inspection efficiency.
[0008] Optionally, the step of processing the acceptance information using preset rules to obtain the acceptance order results of multiple goods to be inspected specifically includes: Obtain the first usage time information of the first item to be inspected, wherein the first item to be inspected is any one of the multiple items to be inspected; Obtain the second usage time information of the second item to be inspected, wherein the second item to be inspected is any one of the multiple items to be inspected except the first item to be inspected; If it is determined that the first usage time is earlier than the second usage time, then the first acceptance order result is obtained, and the acceptance order of the first acceptance order result is the first goods to be accepted and the second goods to be accepted.
[0009] By adopting the above technical solution, the server first obtains the first usage time information of the first item to be inspected and the second usage time information of the second item to be inspected, and determines the first and second usage times based on the first and second usage time information. Next, the server compares the order of the first and second usage times to obtain the inspection order result. When the first usage time is earlier than the second usage time, a first inspection order result is generated, thus determining the inspection order as the first item to be inspected, followed by the second item to be inspected. This facilitates the server in determining the inspection order based on the usage time information, allowing staff to inspect items according to the order, thereby improving the efficiency of the inspection process.
[0010] Optionally, the acceptance information also includes storage condition information, and the preset rule further includes determining the acceptance order of multiple goods to be accepted based on the storage condition information, specifically including: If it is determined that the first usage time is equal to the second usage time, then obtain the first storage condition information of the first goods to be inspected, and obtain the second storage condition information of the second goods to be inspected. Based on the first storage condition information and the second storage condition information, the first refrigeration time of the first goods to be inspected and the second refrigeration time of the second goods to be inspected are obtained by analysis. The refrigeration time is used to represent the time during which the goods to be inspected can be stored well under non-refrigeration conditions. If it is determined that the first refrigeration time is less than the second refrigeration time, then the second acceptance order result is obtained. The acceptance order of the second acceptance order result is the first goods to be inspected and the second goods to be inspected.
[0011] By adopting the above technical solution, the server will also determine the acceptance order of goods to be inspected based on storage condition information. When the server determines that the first usage time equals the second usage time, the server will obtain the first storage condition information of the first goods to be inspected and the second storage condition information of the second goods to be inspected, and obtain the first refrigeration time and the second refrigeration time based on the first and second storage condition information. When the server determines that the first refrigeration time is less than the second refrigeration time, the first goods to be inspected will be inspected first, which facilitates the server in determining the acceptance order based on storage condition information, thus ensuring that goods with shorter refrigeration times are inspected first, guaranteeing the normal use of refrigerated goods.
[0012] Optionally, the acceptance information also includes quality assurance information, and the preset rules further include determining the acceptance order of multiple goods to be accepted based on the quality assurance information, specifically including: If it is determined that the first refrigeration time is equal to the second refrigeration time, then the first quality assurance information of the first goods to be inspected is obtained, and the second quality assurance information of the second goods to be inspected is obtained. Based on the first quality assurance information and the second quality assurance information, the first quality assurance period of the first goods to be inspected and the second quality assurance period of the second goods to be inspected are analyzed and obtained. If it is determined that the first warranty period is earlier than the second warranty period, then a third acceptance order result is obtained. The acceptance order of the third acceptance order result is, in order, the first goods to be accepted and the second goods to be accepted.
[0013] By adopting the above technical solution, when the server determines that the first refrigeration time equals the second refrigeration time, the server will obtain the first warranty information of the first goods to be inspected and the second warranty information of the second goods to be inspected. Next, the server will determine the first warranty period and the second warranty period based on the first and second warranty information, and determine the order between the first and second warranty periods. When the first warranty period is earlier than the second warranty period, the server will prioritize inspecting the first goods to be inspected. This facilitates the server in determining the inspection order based on the warranty period, not only improving the efficiency of the inspection process but also protecting the hospital's consumer interests, thereby saving the hospital's material expenses.
[0014] Optionally, the acceptance information also includes emergency acceptance information, and the preset rules further include determining the acceptance order of multiple goods to be inspected based on the emergency acceptance information. The method further includes: Obtain urgent acceptance information for the third batch of goods awaiting inspection; The emergency acceptance information is processed using the preset rules to generate a third acceptance order result. The acceptance order of the third acceptance order result is, in order, the third goods to be accepted, the first goods to be accepted, and the second goods to be accepted.
[0015] By adopting the above technical solution, the server will also obtain emergency acceptance information for the third batch of goods awaiting acceptance, and process this information according to preset rules to generate a third acceptance order result. This allows the server to prioritize the acceptance of the third batch of goods awaiting acceptance, followed by the first batch, and finally the second batch. While ensuring that goods urgently needed by the hospital's laboratory are accepted, it also rationally prioritizes other goods awaiting acceptance.
[0016] Optionally, after obtaining the first usage time information of the first goods to be inspected, the method further includes: The first usage time is determined based on the first usage time information; Calculate the difference between the first usage time and the current time; The difference is compared with a preset time threshold. If the difference is less than or equal to the preset time threshold, the first goods to be inspected are determined to be urgent goods to be inspected.
[0017] By adopting the above technical solution, after the server obtains the first usage time information of the first item to be inspected, the server will determine the first usage time based on the first usage time information and calculate the difference between the first usage time and the current time. Next, the difference will be compared with a preset time threshold. When the difference is less than or equal to the preset time threshold, the server will determine the first item to be inspected as an urgent item to be inspected, thereby facilitating the server to inspect the urgent item and ensuring the normal operation of the hospital's laboratory.
[0018] Optionally, the acceptance information may also include a product barcode, and the method may further include: Identify the barcode of the goods to be inspected to determine the goods information and generate an RFID tag; Bind the RFID tag to the product information; Obtain the actual information of the goods to be inspected and compare it with the goods information and the inspection form information. The actual information includes the actual type and quantity of the goods to be inspected. Record the quantity of goods to be inspected based on the actual quantity of the goods to be inspected and update the corresponding inspection form information. When the actual type of the goods to be inspected is inconsistent with the goods information or inspection form information, stop the inspection operation for the goods and start the inspection operation for the next goods. When the actual type of the goods to be inspected is consistent with the goods information and the inspection form information, the RFID tag corresponding to the goods to be inspected is identified and inspected. When the information corresponding to the RFID tag is inconsistent with the actual information of the goods to be inspected, the RFID tag is re-acquired and a new RFID tag is re-bound to the actual information of the goods.
[0019] By adopting the above technical solution, the actual information of the goods is obtained through the acceptance process and compared with the information on the goods barcode and the acceptance slip. If the goods type does not match, the goods are not accepted; if the goods quantity does not match, the actual quantity is recorded, and the acceptance slip information is updated accordingly. This avoids the time wasted by returning medical goods to the original manufacturer and re-issuing acceptance slips, thus improving acceptance efficiency. Simultaneously, RFID tags replace the original manufacturer's barcodes. When the information corresponding to the RFID tag is inconsistent with the actual information of the goods, the RFID tag is re-acquired, thereby unifying the actual information of the goods. The use of acceptance slips and RFID tags reduces time wasted due to incorrect product barcodes, thereby improving acceptance efficiency. Furthermore, after all goods have been inspected and shelved, the original and updated acceptance slip information can be fed back to the original manufacturer, facilitating the replacement of incorrect goods or the adjustment of overages or underages, thus simplifying the process and improving acceptance efficiency. Additionally, when medical supplies are replenished into the warehouse, the corresponding inventory information is updated, achieving warehouse data synchronization. This facilitates the allocation of available storage spaces for later shelving items or allows pickers to select the current items, thus simplifying the storage and retrieval of goods.
[0020] Optionally, the goods to be inspected may have a pending inspection status, a standard inspection status, a changed status, and a detained status. Before the inspection operation is performed, the goods are recorded as being in a pending inspection status, and the status of the goods is changed after the inspection operation is performed. When the actual type of the goods to be inspected is inconsistent with the goods information or inspection form information, change the status of the goods to the detained status and record it. When the actual type of the goods to be inspected is consistent with the goods information and the inspection form information, but the actual quantity is inconsistent with the inspection form information, change the status of the goods to the changed status and record it. When the actual type of the goods to be inspected is consistent with the goods information and the inspection form information, and the actual quantity is consistent with the inspection form information, the status of the goods is changed to the standard inspection status and recorded.
[0021] By adopting the above technical solution, the status of goods can be changed to indicate whether the goods are before or after acceptance. If the acceptance personnel stop the acceptance process midway, they can check the status of the goods to determine whether the goods have been accepted. Furthermore, the status of the goods after acceptance can be used to easily trace the acceptance status of the corresponding goods, thereby achieving transparency and refinement of the process.
[0022] A second aspect of this application provides an acceptance device for goods used in a hospital laboratory. The acceptance device is a server, which includes an acquisition module, a processing module, and a sending module. The acquisition module is used to acquire acceptance information for multiple goods to be inspected, including usage time information. The processing module is used to process the usage time information using preset rules to obtain the acceptance order result of multiple goods to be inspected. The preset rules include determining the acceptance order of multiple goods to be inspected according to the order of usage time. The sending module is used to send the acceptance sequence result to the user equipment so that the user corresponding to the user equipment can accept multiple goods to be inspected according to the acceptance sequence result.
[0023] A third aspect of this application provides an electronic device including a processor, a memory, a user interface, and a network interface. The memory is used to store instructions, the user interface and the network interface are both used to communicate with other devices, and the processor is used to execute the instructions stored in the memory to cause the electronic device to perform the method described in any of the above.
[0024] In summary, one or more technical solutions provided in the embodiments of this application have at least the following technical effects or advantages: 1. In this application, the server first obtains the usage time information of multiple goods to be inspected, then processes the usage time information according to the order of usage time to obtain the inspection order result of the multiple goods to be inspected, and sends the inspection order result to the user equipment, so that the user corresponding to the user equipment can inspect the multiple goods to be inspected according to the inspection order result. Therefore, compared with related technologies, it is not necessary to determine the inspection order based on the arrival order of the goods. The server determines the inspection order based on the usage time information, which meets the usage time requirements of the inspection department, thereby improving the overall inspection efficiency. 2. In this application, when the server determines that the first refrigeration time equals the second refrigeration time, the server will obtain the first warranty information of the first goods to be inspected and the second warranty information of the second goods to be inspected. Next, the server will determine the first warranty period and the second warranty period based on the first and second warranty information, and determine the order between the first and second warranty periods. When the first warranty period is earlier than the second warranty period, the server will prioritize inspecting the first goods to be inspected. This facilitates the server in determining the inspection order based on the warranty period, not only improving the efficiency of the inspection process but also protecting the hospital's consumer interests, thereby saving the hospital's material expenses. 3. In this application, the server will also receive the current acceptance order sent by the user equipment and compare the current acceptance order with the acceptance order corresponding to the acceptance order result. When the current acceptance order is inconsistent with the acceptance order corresponding to the acceptance order result, the server will send a prompt message to the user equipment, thereby prompting the user to correct the current acceptance order, thus facilitating the user to improve the efficiency of the acceptance process. Attached Figure Description
[0025] Figure 1 This is a flowchart illustrating a method for accepting goods used in a hospital laboratory, as provided in an embodiment of this application.
[0026] Figure 2 This is a schematic diagram of a module for an acceptance device for goods used in a hospital laboratory, provided in an embodiment of this application.
[0027] Figure 3 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this application.
[0028] Explanation of reference numerals in the attached diagram: 21. Acquisition module; 22. Processing module; 23. Transmission module; 31. Processor; 32. Communication bus; 33. User interface; 34. Network interface; 35. Memory. Detailed Implementation
[0029] To enable those skilled in the art to better understand the technical solutions in this specification, the technical solutions in the embodiments of this specification will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments.
[0030] In the description of the embodiments of this application, the words "for example" or "for instance" are used to indicate examples, illustrations, or explanations. Any embodiment or design that is described as "for example" or "for instance" in the embodiments of this application should not be construed as being more preferred or advantageous than other embodiments or design options. Rather, the use of the words "for example" or "for instance" is intended to present the relevant concepts in a specific manner.
[0031] In the description of the embodiments of this application, the term "multiple" means two or more. For example, multiple systems means two or more systems, and multiple screen terminals means two or more screen terminals. Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the indicated technical features. Thus, a feature defined with "first" or "second" may explicitly or implicitly include one or more of that feature. The terms "comprising," "including," "having," and variations thereof all mean "including but not limited to," unless otherwise specifically emphasized.
[0032] The 21st century is a century of rapid development in molecular biology, with significant breakthroughs in the research of serious diseases such as genetic disorders, infectious diseases, and cancer. Laboratory medicine has played an irreplaceable and crucial role in the early diagnosis, differential diagnosis, early treatment, and prevention of these diseases.
[0033] In the laboratories of many large hospitals, the increasing workload has led to a significant daily demand for supplies. Laboratories require large quantities of medical reagents and other supplies daily, with greater material mobility and the need to deliver various supplies to different departments. Therefore, the quality and quantity of supplies must be carefully controlled during transportation, acceptance, warehousing, shelving, and replenishment to prevent errors.
[0034] Currently, the acceptance process for supplies used in hospital laboratories typically relies on staff members' personal experience. The specific procedure is as follows: after the supplier delivers the goods to the hospital, staff determine the acceptance order based on the arrival time. When there are many items to be accepted, the time spent determining the acceptance order is lengthy, resulting in low efficiency.
[0035] To address the aforementioned problems, this application provides a method for accepting goods used in hospital laboratories, referring to... Figure 1 , Figure 1 This is a flowchart illustrating a method for accepting goods used in a hospital laboratory, as provided in an embodiment of this application. Figure 1 As shown, the acceptance method includes steps S110 to S130, which are as follows: S110. Obtain acceptance information for multiple goods to be inspected, including usage time information.
[0036] Specifically, the server first obtains acceptance information for multiple goods to be inspected, including usage time information. In this embodiment, "usage time information" can be understood as the specific usage time of the goods required by the hospital's laboratory. For example, the hospital's laboratory plans to use 50 test kits on March 10, 2023, for specimen testing. In this embodiment, the method by which the server obtains the acceptance information is not limited; it can be extracted from the hospital's laboratory's work plan or uploaded by laboratory staff via user devices.
[0037] For example, the acceptance information obtained by the server is divided into two parts. One part is the item list provided by the supplier, which details the quantity and name of multiple items. Staff complete the acceptance process by counting the quantity and name of the items and testing their quality and safety. The other part comes from the hospital's laboratory, which summarizes the expected total amount of goods to be consumed and the timing of their use for testing over a specific period.
[0038] The server is used to manage the acceptance and product information of numerous goods. A server can be a single server, a server cluster consisting of multiple servers, or a cloud computing service center. The server can communicate with user devices via wired or wireless networks.
[0039] S120. Process the usage time information using preset rules to obtain the acceptance order of multiple goods to be inspected. The preset rules include determining the acceptance order of multiple goods to be inspected based on the order of usage time.
[0040] Specifically, the server processes the usage time information using preset rules to obtain the acceptance order of multiple goods awaiting inspection. These preset rules determine the acceptance order of the goods based on their usage time. These preset rules can be obtained automatically by the server through training on a large amount of data, or they can be manually formulated.
[0041] S130. Send the acceptance sequence results to the user equipment so that the user corresponding to the user equipment can accept multiple goods to be accepted according to the acceptance sequence results.
[0042] Specifically, after generating the acceptance order result, the server sends the acceptance order result to the user device, enabling the user corresponding to the user device to inspect multiple goods to be inspected according to the acceptance order result. The user device includes, but is not limited to: Android system devices, Apple's iOS mobile operating system devices, personal computers (PCs), World Wide Web (web) devices, virtual reality (VR) devices, augmented reality (AR) devices, etc. In this embodiment, the user device is a smartphone, and the user corresponding to the user device is the staff member responsible for inspecting the goods to be inspected.
[0043] In one possible implementation, the server processes the acceptance information using preset rules to obtain the acceptance order result of multiple goods to be accepted. Specifically, this includes: obtaining the first usage time information of a first goods to be accepted, where the first goods to be accepted is any one of the multiple goods to be accepted; obtaining the second usage time information of a second goods to be accepted, where the second goods to be accepted is any one of the multiple goods to be accepted other than the first goods to be accepted; if it is determined that the first usage time is earlier than the second usage time, then a first acceptance order result is obtained, and the acceptance order of the first acceptance order result is, in order, the first goods to be accepted and the second goods to be accepted.
[0044] Specifically, the server first obtains the first usage time information of the first item to be inspected and determines the first usage time based on this information. The server also obtains the second usage time information of the second item to be inspected and determines the second usage time based on this information. Next, the server determines the order of the first and second usage times. If the first usage time is earlier than the second usage time, the server obtains the first inspection order result, meaning the first item to be inspected is inspected first, followed by the second item. Here, the first item to be inspected is any one of a plurality of items to be inspected, and the second item to be inspected is any one of a plurality of items to be inspected other than the first item.
[0045] For example, a hospital's laboratory has two items, A and B, awaiting acceptance. The laboratory plans to use item A on March 10th and item B on March 15th. The server compares the order in which items A and B are accepted and determines that item A will be accepted first, followed by item B.
[0046] In one possible implementation, if it is determined that the first usage time is later than the second usage time, the server determines the acceptance order as the second goods to be accepted, followed by the first goods to be accepted.
[0047] In one possible implementation, the acceptance information also includes storage condition information, and the preset rules further include determining the acceptance order of multiple goods to be accepted based on the storage condition information. Specifically, this includes: if it is determined that the first usage time is equal to the second usage time, then obtaining the first storage condition information of the first goods to be accepted and obtaining the second storage condition information of the second goods to be accepted; based on the first storage condition information and the second storage condition information, analyzing and obtaining the first refrigeration time of the first goods to be accepted and the second refrigeration time of the second goods to be accepted, wherein the refrigeration time is used to represent the duration for which the goods to be accepted can be stored intact under non-refrigeration conditions; if it is determined that the first refrigeration time is less than the second refrigeration time, then obtaining the second acceptance order result, wherein the acceptance order of the second acceptance order result is, in order, the first goods to be accepted and the second goods to be accepted.
[0048] Specifically, the server will also determine the acceptance order of multiple goods to be inspected based on storage condition information. When the server determines that the first usage time equals the second usage time, the server will obtain the first storage condition information of the first goods to be inspected and determine the first refrigeration time based on the first storage condition information. The server will also obtain the second storage condition information of the second goods to be inspected and determine the second refrigeration time based on the second storage condition information. Next, the server will determine the relationship between the first refrigeration time and the second refrigeration time. When the first refrigeration time is less than the second refrigeration time, it means that the first goods to be inspected need to be refrigerated more than the second goods to be inspected. This means that the first goods to be inspected need to be inspected first, and the server will generate an acceptance order result of inspecting the first goods to be inspected first, and then inspecting the second goods to be inspected.
[0049] For example, a hospital's laboratory has three items awaiting acceptance: A, B, and C. Staff need to inspect these three items. The server shows that item A will be available on March 10th, item B on March 15th, and item C on March 15th. After comparing usage times, the server first determines that the acceptance order of goods A to be inspected should take precedence over goods B and goods C. Since goods B and C have the same usage time, the server will obtain the refrigeration time for each item. Goods B has a refrigeration time of 3 days, while goods C has a refrigeration time of 5 days. Therefore, the server determines that the refrigeration time of goods B is less than that of goods C, meaning that goods B can only be stored for 3 days without refrigeration, while goods C can be stored for 5 days without refrigeration. To ensure timely supply and quality compliance, goods B should be inspected before goods C. Therefore, the server-generated acceptance order is: goods A, goods B, and then goods C.
[0050] In one possible implementation, if it is determined that the first refrigeration time is longer than the second refrigeration time, the server determines the acceptance order as the second goods to be accepted and the first goods to be accepted.
[0051] In one possible implementation, the acceptance information also includes quality assurance information, and the preset rules further include determining the acceptance order of multiple goods to be accepted based on the quality assurance information. Specifically, this includes: if it is determined that the first refrigeration time is equal to the second refrigeration time, then obtaining the first quality assurance information of the first goods to be accepted and obtaining the second quality assurance information of the second goods to be accepted; analyzing the first and second quality assurance information to obtain the first and second quality assurance periods of the first and second goods to be accepted; if it is determined that the first quality assurance period is earlier than the second quality assurance period, then obtaining the third acceptance order result, wherein the acceptance order of the third acceptance order result is the first goods to be accepted and the second goods to be accepted.
[0052] Specifically, the server will also determine the acceptance order of multiple goods awaiting acceptance based on warranty information. When the server determines that the first refrigeration period equals the second refrigeration period, the server will obtain the first warranty information for the first goods awaiting acceptance and determine the first warranty period based on the first warranty information. The server will also obtain the second warranty information for the second goods awaiting acceptance and determine the second warranty period based on the second warranty information. Next, the server will determine the order of the first warranty period and the second warranty period. When the server determines that the first warranty period is earlier than the second warranty period, the server will generate a third acceptance order result, that is, the acceptance order is the first goods awaiting acceptance, then the second goods awaiting acceptance. The warranty period represents the longest period during which the supplier promises to guarantee the quality of the goods awaiting acceptance. Within this period, the supplier will guarantee the quality of the goods awaiting acceptance. For example, if the warranty period for goods A is April 1st and the warranty period for goods B is April 5th, then the server will determine the acceptance order as goods A, then goods B.
[0053] For example, a hospital's laboratory has four batches of goods awaiting acceptance: Goods A, Goods B, Goods C, and Goods D. Goods A has a usage date of March 10th, a refrigeration period of 4 days, and a shelf life of April 1st; Goods B has a usage date of March 15th, a refrigeration period of 3 days, and a shelf life of April 15th; Goods C has a usage date of March 15th, a refrigeration period of 5 days, and a shelf life of April 10th; Goods D has a usage date of March 15th, a refrigeration period of 5 days, and a shelf life of March 20th. Based on this information, the server obtains the acceptance order. The acceptance order is: Goods A, Goods B, Goods D, and Goods C. After the server sends this acceptance order to the staff's user devices, the staff can refer to this order to improve the overall efficiency of the acceptance process.
[0054] The above embodiments demonstrate that the server prioritizes the acceptance order based on acceptance information as follows: usage time > storage conditions > warranty information. This priority order is based on the responsibilities of the laboratory department; specifically, to coordinate with other departments in conducting life-saving testing, the usage time of goods, which is crucial to patient safety, is given priority. However, this priority order can be modified according to actual circumstances and is not strictly limited here.
[0055] In one possible implementation, if the first warranty period is determined to be later than the second warranty period, the server determines the acceptance order of the acceptance results as follows: the second item to be accepted, then the first item to be accepted. In this embodiment, it is assumed that the warranty periods for each type of item to be accepted are different.
[0056] In one possible implementation, the acceptance information also includes emergency acceptance information, and the preset rules also include determining the acceptance order of multiple goods to be accepted based on the emergency acceptance information. Specifically, it also includes: obtaining emergency acceptance information for the third goods to be accepted; processing the emergency acceptance information using preset rules to generate a third acceptance order result, wherein the acceptance order of the third acceptance order result is the third goods to be accepted, the first goods to be accepted, and the second goods to be accepted.
[0057] Specifically, the server will also determine the acceptance order of multiple goods to be inspected based on the emergency acceptance information. When the server receives emergency acceptance information for the third item to be inspected, it will process the information and generate a third acceptance order result. Finally, the server will send the third acceptance order result to the user device. The acceptance order of the third acceptance order result is, in order, the third item to be inspected, the first item to be inspected, and the second item to be inspected. This facilitates the emergency inspection of the third item and ensures the normal operation of the inspection department. The priority of emergency acceptance information is higher than that of usage time information; that is, the priority order is, emergency acceptance information, usage time information, storage condition information, and quality assurance information.
[0058] In one possible implementation, after obtaining the first usage time information of the first goods to be inspected, the method further includes: determining the first usage time based on the first usage time information; calculating the difference between the first usage time and the current time; comparing the difference with a preset time threshold; and if the difference is less than or equal to the preset time threshold, determining the first goods to be inspected as urgent goods to be inspected.
[0059] Specifically, after obtaining the first usage time of the first item to be inspected, the server calculates the difference between the first usage time and the current time, and compares this difference with a preset time threshold. When the difference is less than or equal to the preset time threshold, the server determines that the item to be inspected is an urgent item to be inspected. The preset time threshold is set according to specific circumstances and will not be elaborated here. For example, if the preset time threshold is 15 days, the usage time of item X to be inspected is March 21st, and the current time is March 11th, the calculated difference is 10 days. Since the difference is less than the preset threshold, item X is determined to be an urgent item to be inspected and will be given priority for inspection.
[0060] In one possible implementation, if the difference is greater than a preset time threshold, the usage time information is processed according to preset rules, and a corresponding acceptance order result is generated.
[0061] In this application, after all the goods from the original manufacturer arrive, hospital staff first obtain and record the acceptance slip information corresponding to the goods to be accepted through the acceptance slip information acquisition unit. When the acceptance slip is an electronic document, the acceptance slip information acquisition unit can use a computer; when the acceptance slip is a paper document, the acceptance slip information acquisition unit can use a computer and a scanner. The acceptance slip information is obtained through the scanner and recorded and displayed on the computer. Afterwards, staff scan the barcode of the goods to be accepted using a barcode scanner to identify the goods information, including the name and batch number of the goods. Simultaneously, an RFID tag is generated through the RFID tag generation unit, the RFID tag is bound to the goods information, and then the RFID tag is printed and affixed to the goods. The RFID tag generation unit can use a computer and an RFID tag printer.
[0062] In one possible implementation, staff then perform an acceptance operation on the goods, with the acceptance unit being a computer. The goods have four states: pending acceptance, standard acceptance, changed acceptance, and detained acceptance. Before the acceptance operation, the goods are in the pending acceptance state. The acceptance operation specifically involves: first, obtaining the actual information of the goods to be accepted and comparing it with the goods information and acceptance form information. The actual information includes the actual type and quantity of the goods. When the actual type of the goods to be accepted matches the goods information and acceptance form information, but the actual quantity does not match the acceptance form information, the goods' status is changed to the changed state and recorded. The accepted quantity of the goods is recorded based on the actual quantity, and the corresponding acceptance form information is updated. The actual quantity of the goods can be obtained through manual counting.
[0063] In one possible implementation, when the actual type of the goods to be inspected is inconsistent with the goods information or the inspection form information, the goods' status is changed to a "detained" state and recorded. At this point, the inspection operation for that medical item is stopped, and the inspection operation for the next item begins. This item is not included in the actual quantity of goods. After the remaining goods have been inspected, the detained goods are returned to the original manufacturer for processing, thus ensuring the continuity of the inspection process. When goods are found to have an actual type inconsistent with the goods information or the inspection form information, the goods information for that item is recorded, and the inspection form information is updated to obtain updated inspection form information. When the actual type of the goods to be inspected matches the goods information and the inspection form information, and its actual quantity matches the inspection form information, the goods' status is changed to a standard inspection status and recorded. After acceptance, the status of goods must be changed and recorded. If the acceptance personnel stop the acceptance process midway, they can check the status of the goods to determine whether the goods have been accepted, reducing the time wasted on repeated acceptance. Furthermore, the status after acceptance based on the acceptance form makes it easy to trace the acceptance of the corresponding goods, such as whether there have been any changes in the quantity of goods, thereby achieving transparency and refinement of the process.
[0064] In one possible implementation, when the actual type of the goods to be inspected matches the goods information and the inspection form information, the corresponding RFID tag for the goods is identified and inspected. When the information corresponding to the RFID tag does not match the actual information of the goods, a new RFID tag is obtained and re-bound to the actual information of the goods. The new RFID tag is then affixed to the original RFID tag, thereby unifying the actual information of the goods, the inspection form information, and the RFID tag. The computer then acquires the goods inspection data. During this process, hospital staff use a high-speed scanner to photograph and archive the goods that have passed the inspection. The photos include images of the corresponding goods, the barcode, and the RFID tag, thus recording and archiving the information for future verification. The photos also provide greater authenticity and can serve as evidence for later investigation, protecting the rights of the goods owner. The acceptance data includes the actual information of the goods, RFID tag information, updated acceptance form information, and corresponding photos of the goods. The warehouse entry document acquisition unit generates an entry document based on the acceptance data. The entry document includes information such as the time and location of the goods entering the warehouse, and updates the warehouse inventory information, such as the type and quantity of goods, thereby synchronizing the warehouse data. This facilitates the allocation of empty storage locations for goods to be put on the shelves later or makes it easier for pickers to pick the current goods, thus facilitating the storage and retrieval of goods.
[0065] In one possible implementation, the server then generates a shelving list based on the product inventory information and the receiving slip. Once generated, the shelving list is in a pending shelving state. Before retrieving the corresponding shelving list, the shelving personnel must use methods such as swiping a card to obtain their identity information from the system. If the identity verification fails, the system needs to re-verify the identity information. When the identity verification is successful, the system controls the large screen at the warehouse entrance to display the shelving lists currently in a pending shelving state. When a trigger signal for a corresponding shelving list is received, i.e., when the shelving personnel select the desired shelving list using a mechanical or virtual button, the system obtains the location information and / or task information of the corresponding goods. At this time, the shelving list selected by the shelving personnel is bound to the shelving personnel's identity information. This identity verification method confirms the identity of the shelving personnel and verifies their permissions, thereby preventing the leakage of product location information and the occurrence of fraudulent claims or losses, thus improving security.
[0066] In one possible implementation, the location information includes the shelf number where the goods are placed and the coordinates of their storage location on the shelf. After confirming receipt of the put-away order, the staff can locate the corresponding shelf using the location information. Upon reaching the corresponding shelf, a task display is installed on the shelf in the warehouse. When a trigger signal is received regarding the staff's identity information—that is, when the staff enters their identity information into the system by swiping a card or other means—the task display shows the task information for the put-away order received by the current staff member. The task information includes the goods corresponding to the put-away order, their quantity, and the shelf location, to facilitate the staff in storing the goods according to the task information.
[0067] In one possible implementation, an electronic tag is installed on each storage location of a supplied item on the warehouse shelves. The electronic tag displays the item information for that specific location, including the item's name and specifications, facilitating item identification. The electronic tag includes an indicator, which can be an LED light. Multiple shelving lists are displayed on the human-machine interface of the task display. Each shelving list has a corresponding advance function area. When a trigger signal is received for any one or more advance function areas of a shelving list (i.e., when a shelving operator selects the advance function area via a mechanical or virtual button), the system controls the indicator of the designated storage location for that item to emit a prompt signal, indicated by the LED light illuminating or flashing. The indicator marks the storage location for each item on the shelving list, allowing shelving operators to easily locate the storage location based on the flashing indicator light, thus reducing the time and effort spent searching for storage locations and improving shelving efficiency. Furthermore, when the staff arrives at the shelf with one or more shelving orders, they can advance the corresponding shelving orders according to the goods they are carrying, thereby adjusting the order of the shelving orders. This allows for adjustments based on the actual situation, and the indicator signals will change accordingly, thus improving shelving efficiency.
[0068] In one possible implementation, an electronic tag is equipped with a confirmation button. After a staff member places any type of goods, when the staff member triggers the confirmation button on the electronic tag of the corresponding storage location, the system controls the indicator of that storage location to turn off its notification signal, indicating that the goods in that location have been successfully shelved. Simultaneously, the system controls the task display screen on its human-machine interface to display a marker indicating shelving completion, such as the word "Completed," on the side corresponding to that type of goods, thus indicating that the goods have been successfully shelved. When a shelving unit corresponds to multiple goods, turning off the notification signal of the corresponding indicator after each type of goods is placed solves the problem of confusion caused by too many flashing lights. Furthermore, the markers indicating successful shelving on the task display screen facilitate inventory checks by the staff member, thereby improving shelving efficiency. Finally, after the shelving operation is completed, the system acquires and records the shelving information, including the name of the staff member who placed the goods, the shelving time, and the shelving location, to facilitate subsequent checks and achieve process transparency. After all goods have been inspected and put on the shelves, the original inspection form and the updated inspection form are transmitted to the original manufacturer's terminal or the delivery party's terminal via the network or other means. This makes it easier for the original manufacturer to replace incorrect goods or make refunds or additional payments for over- or under-ordered goods, thereby simplifying the process and further improving inspection efficiency.
[0069] In one possible implementation, after the server sends the acceptance sequence result to the user equipment, it further includes: receiving the current acceptance sequence sent by the user equipment; comparing the current acceptance sequence with the acceptance sequence corresponding to the acceptance sequence result; if the current acceptance sequence is inconsistent with the acceptance sequence corresponding to the acceptance sequence result, sending a prompt message to the user equipment to prompt the user corresponding to the user equipment to correct the acceptance sequence.
[0070] Specifically, after sending the acceptance sequence result to the user equipment, the server will also receive the current acceptance sequence sent by the user equipment and compare it with the acceptance sequence corresponding to the acceptance sequence result to determine whether the current acceptance sequence is consistent with the acceptance sequence corresponding to the acceptance sequence result. When the current acceptance sequence is inconsistent with the acceptance sequence corresponding to the acceptance sequence result, the server will send a prompt message to the user equipment so that the user can correct the acceptance sequence after observing the prompt message, thereby improving the overall efficiency of the acceptance process.
[0071] This application also provides an acceptance device for goods used in a hospital laboratory, referring to... Figure 2 , Figure 2 This is a schematic diagram of a module for accepting goods used in a hospital laboratory, provided as an embodiment of this application. Figure 2 As shown, the acceptance device is a server, which includes an acquisition module 21, a processing module 22, and a sending module 23. The acquisition module 21 is used to acquire acceptance information of multiple goods to be accepted, including usage time information. The processing module 22 is used to process the usage time information according to preset rules to obtain the acceptance order result of multiple goods to be accepted. The preset rules include determining the acceptance order of multiple goods to be accepted according to the order of usage time. The sending module 23 is used to send the acceptance order result to the user equipment so that the user corresponding to the user equipment can accept multiple goods to be accepted according to the acceptance order result.
[0072] In one possible implementation, the acquisition module 21 acquires the first usage time information of the first goods to be inspected, which is any one of a plurality of goods to be inspected; the acquisition module 21 acquires the second usage time information of the second goods to be inspected, which is any one of a plurality of goods to be inspected other than the first goods to be inspected; if the processing module 22 determines that the first usage time is earlier than the second usage time, then the first inspection order result is obtained, and the inspection order of the first inspection order result is the first goods to be inspected and the second goods to be inspected.
[0073] In one possible implementation, the acceptance information also includes storage condition information, and the preset rules also include the processing module 22 determining the acceptance order of multiple goods to be accepted based on the storage condition information. Specifically, if the processing module 22 determines that the first usage time is equal to the second usage time, the acquisition module 21 acquires the first storage condition information of the first goods to be accepted and the second storage condition information of the second goods to be accepted; the processing module 22 analyzes and obtains the first refrigeration time of the first goods to be accepted and the second refrigeration time of the second goods to be accepted based on the first and second storage condition information, wherein the refrigeration time is used to represent the duration for which the goods to be accepted can be stored intact under non-refrigeration conditions; if the processing module 22 determines that the first refrigeration time is less than the second refrigeration time, the second acceptance order result is obtained, and the acceptance order of the second acceptance order result is the first goods to be accepted and the second goods to be accepted in sequence.
[0074] In one possible implementation, the acceptance information also includes quality assurance information, and the preset rules also include the processing module 22 determining the acceptance order of multiple goods to be accepted based on the quality assurance information. Specifically, if the processing module 22 determines that the first refrigeration time is equal to the second refrigeration time, then the acquisition module 21 acquires the first quality assurance information of the first goods to be accepted and the second quality assurance information of the second goods to be accepted; the processing module 22 analyzes and obtains the first warranty period of the first goods to be accepted and the second warranty period of the second goods to be accepted based on the first and second quality assurance information; if the processing module 22 determines that the first warranty period is earlier than the second warranty period, then a third acceptance order result is obtained, and the acceptance order of the third acceptance order result is the first goods to be accepted and the second goods to be accepted in sequence.
[0075] In one possible implementation, the acceptance information also includes emergency acceptance information, and the preset rules also include the processing module 22 determining the acceptance order of multiple goods to be accepted based on the emergency acceptance information. Specifically, the processing module 22 obtains the emergency acceptance information for the third goods to be accepted; the processing module 22 processes the emergency acceptance information using preset rules to generate a third acceptance order result, and the acceptance order of the third acceptance order result is the third goods to be accepted, the first goods to be accepted, and the second goods to be accepted.
[0076] In one possible implementation, after the acquisition module 21 acquires the first usage time information of the first goods to be inspected, the process module 22 further includes: determining the first usage time based on the first usage time information; calculating the difference between the first usage time and the current time; comparing the difference with a preset time threshold, and if the difference is less than or equal to the preset time threshold, the process module 22 determines that the first goods to be inspected are urgent goods to be inspected.
[0077] In one possible implementation, the acceptance information further includes a product barcode, and the method further includes: a processing module 22 identifying the product barcode of the product to be accepted to determine the product information and generating an RFID tag; the processing module 22 binding the RFID tag to the product information; an acquisition module 21 acquiring the actual information of the product to be accepted and comparing it with the product information and the acceptance form information, the actual information including the actual type and actual quantity of the product to be accepted; the processing module 22 recording the acceptance quantity of the product based on the actual quantity of the product to be accepted and updating the acceptance form information corresponding to the product; when the actual type of the product to be accepted is inconsistent with the product information or the acceptance form information, stopping the acceptance operation for that product and restarting the acceptance operation for the next product; when the actual type of the product to be accepted is consistent with the product information and the acceptance form information, identifying and accepting the RFID tag corresponding to the product to be accepted; when the information corresponding to the RFID tag is inconsistent with the actual information of the product to be accepted, reacquiring the RFID tag and rebinding a new RFID tag to the actual information of the product.
[0078] In one possible implementation, the goods to be inspected have a pending inspection state, a standard inspection state, a changed state, and a detained state. Before performing the inspection operation, the goods are recorded as being in the pending inspection state, and the state of the goods is changed after the inspection operation is performed. When the actual type of the goods to be inspected is inconsistent with the goods information or inspection form information, the processing module 22 changes the state of the goods to the detained state and records it. When the actual type of the goods to be inspected is consistent with the goods information and inspection form information, but its actual quantity is inconsistent with the inspection form information, the processing module 22 changes the state of the goods to the changed state and records it. When the actual type of the goods to be inspected is consistent with the goods information and inspection form information, and its actual quantity is consistent with the inspection form information, the processing module 22 changes the state of the goods to the standard inspection state and records it.
[0079] This application also provides an electronic device, with reference to... Figure 3 , Figure 3 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this application. The electronic device may include: at least one processor 31, at least one network interface 34, a user interface 33, a memory 35, and at least one communication bus 32.
[0080] The communication bus 32 is used to enable communication between these components.
[0081] The user interface 33 may include a display screen and a camera. Optionally, the user interface 33 may also include a standard wired interface and a wireless interface.
[0082] The network interface 34 may optionally include a standard wired interface or a wireless interface (such as a Wi-Fi interface).
[0083] The processor 31 may include one or more processing cores. The processor 31 connects to various parts of the server via various interfaces and lines, executing instructions, programs, code sets, or instruction sets stored in the memory 35, and calling data stored in the memory 35 to perform various server functions and process data. Optionally, the processor 31 may be implemented using at least one hardware form of Digital Signal Processing (DSP), Field-Programmable Gate Array (FPGA), or Programmable Logic Array (PLA). The processor 31 may integrate one or a combination of several of the following: Central Processing Unit (CPU), Graphics Processing Unit (GPU), and modem. The CPU primarily handles the operating system, user interface, and applications; the GPU is responsible for rendering and drawing the content to be displayed on the screen; and the modem handles wireless communication. It is understood that the modem may also not be integrated into the processor 31 and may be implemented as a separate chip.
[0084] The memory 35 may include random access memory (RAM) or read-only memory. Optionally, the memory 35 may include a non-transitory computer-readable storage medium. The memory 35 can be used to store instructions, programs, code, code sets, or instruction sets. The memory 35 may include a program storage area and a data storage area, wherein the program storage area may store instructions for implementing an operating system, instructions for at least one function (such as touch function, sound playback function, image playback function, etc.), instructions for implementing the above-described method embodiments, etc.; the data storage area may store data involved in the above-described method embodiments, etc. Optionally, the memory 35 may also be at least one storage device located remotely from the aforementioned processor 31. Figure 3 As shown, the memory 35, which serves as a computer storage medium, may include an operating system, a network communication module, a user interface module, and an application program for an acceptance method of goods used in a hospital laboratory.
[0085] exist Figure 3In the electronic device shown, the user interface 33 is mainly used to provide an input interface for the user and to obtain the user input data; while the processor 31 can be used to call an application program stored in the memory 35 for the acceptance method of goods used in a hospital laboratory. When executed by one or more processors, the electronic device performs one or more methods as described in the above embodiments.
[0086] It should be noted that, for the sake of simplicity, the foregoing method embodiments are all described as a series of actions. However, those skilled in the art should understand that this application is not limited to the described order of actions, as some steps may be performed in other orders or simultaneously according to this application. Furthermore, those skilled in the art should also understand that the embodiments described in the specification are preferred embodiments, and the actions and modules involved are not necessarily essential to this application.
[0087] In the above embodiments, the descriptions of each embodiment have different focuses. For parts not described in detail in a certain embodiment, please refer to the relevant descriptions of other embodiments.
[0088] In the various embodiments provided in this application, it should be understood that the disclosed apparatus can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative; for instance, the division of units is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be through some service interface; the indirect coupling or communication connection between apparatuses or units may be electrical or other forms.
[0089] The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the units can be selected to achieve the purpose of this embodiment according to actual needs.
[0090] Furthermore, the functional units in the various embodiments of this application can be integrated into one processing unit, or each unit can exist physically separately, or two or more units can be integrated into one unit. The integrated unit can be implemented in hardware or as a software functional unit.
[0091] If the integrated unit is implemented as a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage device (CMD). Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, or all or part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a memory and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods of the various embodiments of this application. The aforementioned memory includes various media capable of storing program code, such as USB flash drives, portable hard drives, magnetic disks, or optical disks.
[0092] The above description is merely an exemplary embodiment of this disclosure and should not be construed as limiting the scope of this disclosure. Any equivalent changes and modifications made in accordance with the teachings of this disclosure shall still fall within the scope of this disclosure. Other embodiments of this disclosure will be readily apparent to those skilled in the art upon consideration of the specification and the disclosure of practical truths.
[0093] This application is intended to cover any variations, uses, or adaptations of this disclosure that follow the general principles of this disclosure and include common knowledge or customary techniques in the art not described in this disclosure. The specification and embodiments are to be considered exemplary only, and the scope and spirit of this disclosure are defined by the claims.
Claims
1. A method for accepting goods used in a hospital laboratory, characterized in that, Applied to servers, the acceptance method includes: Obtain acceptance information for multiple goods awaiting acceptance, including usage time information; The usage time information is processed using preset rules to obtain the acceptance order of multiple goods to be inspected. The preset rules include determining the acceptance order of multiple goods to be inspected based on the order of their usage time. The acceptance sequence result is sent to the user equipment so that the user corresponding to the user equipment can accept multiple goods to be accepted according to the acceptance sequence result.
2. The acceptance method according to claim 1, characterized in that, The process of processing the acceptance information using preset rules to obtain the acceptance order results of multiple goods to be inspected specifically includes: Obtain the first usage time information of the first item to be inspected, wherein the first item to be inspected is any one of the multiple items to be inspected; Obtain the second usage time information of the second item to be inspected, wherein the second item to be inspected is any one of the multiple items to be inspected except the first item to be inspected; If it is determined that the first usage time is earlier than the second usage time, then the first acceptance order result is obtained, and the acceptance order of the first acceptance order result is the first goods to be accepted and the second goods to be accepted.
3. The acceptance method according to claim 2, characterized in that, The acceptance information also includes storage condition information, and the preset rules further include determining the acceptance order of multiple goods to be accepted based on the storage condition information, specifically including: If it is determined that the first usage time is equal to the second usage time, then obtain the first storage condition information of the first goods to be inspected, and obtain the second storage condition information of the second goods to be inspected. Based on the first storage condition information and the second storage condition information, the first refrigeration time of the first goods to be inspected and the second refrigeration time of the second goods to be inspected are obtained by analysis. The refrigeration time is used to represent the time during which the goods to be inspected can be stored well under non-refrigeration conditions. If it is determined that the first refrigeration time is less than the second refrigeration time, then the second acceptance order result is obtained. The acceptance order of the second acceptance order result is the first goods to be inspected and the second goods to be inspected.
4. The acceptance method according to claim 3, characterized in that, The acceptance information also includes quality assurance information, and the preset rules further include determining the acceptance order of multiple goods to be accepted based on the quality assurance information, specifically including: If it is determined that the first refrigeration time is equal to the second refrigeration time, then the first quality assurance information of the first goods to be inspected is obtained, and the second quality assurance information of the second goods to be inspected is obtained. Based on the first quality assurance information and the second quality assurance information, the first quality assurance period of the first goods to be inspected and the second quality assurance period of the second goods to be inspected are analyzed and obtained. If it is determined that the first warranty period is earlier than the second warranty period, then a third acceptance order result is obtained. The acceptance order of the third acceptance order result is, in order, the first goods to be accepted and the second goods to be accepted.
5. The acceptance method according to claim 2, characterized in that, The acceptance information also includes emergency acceptance information, and the preset rules further include determining the acceptance order of multiple goods to be accepted based on the emergency acceptance information. The method further includes: Obtain urgent acceptance information for the third batch of goods awaiting inspection; The emergency acceptance information is processed using the preset rules to generate a third acceptance order result. The acceptance order of the third acceptance order result is, in order, the third goods to be accepted, the first goods to be accepted, and the second goods to be accepted.
6. The acceptance method according to claim 2, characterized in that, After obtaining the first usage time information of the first goods to be inspected, the method further includes: The first usage time is determined based on the first usage time information; Calculate the difference between the first usage time and the current time; The difference is compared with a preset time threshold. If the difference is less than or equal to the preset time threshold, the first goods to be inspected are determined to be urgent goods to be inspected.
7. The acceptance method according to claim 1, characterized in that, The acceptance information also includes product barcodes, and the method further includes: Identify the barcode of the goods to be inspected to determine the goods information and generate an RFID tag; Bind the RFID tag to the product information; Obtain the actual information of the goods to be inspected and compare it with the goods information and the inspection form information. The actual information includes the actual type and quantity of the goods to be inspected. Record the quantity of goods to be inspected based on the actual quantity of the goods to be inspected and update the corresponding inspection form information. When the actual type of the goods to be inspected is inconsistent with the goods information or inspection form information, stop the inspection operation for the goods and start the inspection operation for the next goods. When the actual type of the goods to be inspected is consistent with the goods information and the inspection form information, the RFID tag corresponding to the goods to be inspected is identified and inspected. When the information corresponding to the RFID tag is inconsistent with the actual information of the goods to be inspected, the RFID tag is re-acquired and a new RFID tag is re-bound to the actual information of the goods.
8. The acceptance method according to claim 7, characterized in that, The goods to be inspected have a pending inspection status, a standard inspection status, a changed status, and a detained status. Before the inspection operation is performed, the goods are recorded as being in a pending inspection status, and the status of the goods is changed after the inspection operation is performed. When the actual type of the goods to be inspected is inconsistent with the goods information or inspection form information, change the status of the goods to the detained status and record it. When the actual type of the goods to be inspected is consistent with the goods information and the inspection form information, but the actual quantity is inconsistent with the inspection form information, change the status of the goods to the changed status and record it. When the actual type of the goods to be inspected is consistent with the goods information and the inspection form information, and the actual quantity is consistent with the inspection form information, change the status of the goods to the standard inspection status and record it.
9. An acceptance device for goods used in a hospital laboratory, characterized in that, The acceptance device is a server, which includes an acquisition module (21), a processing module (22), and a sending module (23). The acquisition module (21) is used to acquire the acceptance information of multiple goods to be inspected, and the acceptance information includes usage time information; The processing module (22) is used to process the usage time information using preset rules to obtain the acceptance order result of multiple goods to be inspected. The preset rules include determining the acceptance order of multiple goods to be inspected according to the order of usage time. The sending module (23) is used to send the acceptance sequence result to the user equipment so that the user corresponding to the user equipment can accept multiple goods to be accepted according to the acceptance sequence result.
10. An electronic device, characterized in that, The electronic device includes a processor (31), a memory (35), a user interface (33), and a network interface (34). The memory (35) is used to store instructions. The user interface (33) and the network interface (34) are both used to communicate with other devices. The processor (31) is used to execute the instructions stored in the memory (35) to cause the electronic device to perform the method as described in any one of claims 1 to 8.