Medical pump configuration method, related device, equipment, system and storage medium
By obtaining and analyzing the medical orders of target patients, and combining feedback instructions from the medical pump system, the location of the medical pump is automatically determined and configured, and the complex configuration operation of traditional Chinese medicine pumps is solved in the existing technology, and efficient configuration in complex medical scenarios is achieved.
Patent Information
- Application Number
- CN202510025110.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-05-09
AI Technical Summary
The configuration and operation of traditional Chinese medicine pumps in the prior art are complicated and cumbersome, especially in complex medical scenarios, resulting in low configuration efficiency of medical pumps.
By obtaining the target medical orders for target patients, the target medical orders for target medical orders is determined based on the configuration operation of the target medical orders for target medical orders, and in response to the feedback command of the preset pump position in the medical pump system, the position to be distributed is selected to generate the configuration command for the medical pump at the position to be distributed.
The batch configuration of medical pumps is realized, especially in complex medical scenarios, which improves the configuration efficiency of medical pumps and ensures the accuracy of configuration.
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Figure CN119964766A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of intelligent medical technology, and in particular to a medical pump configuration method and related devices, equipment, systems and storage media. Background Art
[0002] With the development of intelligent medical technology, medical pumps are being used more and more widely in medical scenarios, helping to improve the accuracy, safety and quality of care of drug infusion.
[0003] In the prior art, medical pump configuration parameters are usually manually set by professional medical staff according to medication instructions. However, in complex medical scenarios, such as involving multiple medical pumps and requiring multiple adjustments to medication dosage, the configuration of medical pumps is complicated and cumbersome, so the manual configuration of medical pumps by medical staff is inefficient. In view of this, how to achieve batch configuration of medical pumps, especially in complex medical scenarios, and improve the configuration efficiency of medical pumps, has become an urgent problem to be solved. Summary of the invention
[0004] The main technical problem solved by the present application is to provide a medical pump configuration method and related devices, equipment, systems and storage media, which can realize batch configuration of medical pumps, especially in complex medical scenarios, and improve the configuration efficiency of medical pumps.
[0005] In order to solve the above-mentioned technical problems, the first aspect of the present application provides a medical pump configuration method, including obtaining a target medication order for a target patient; wherein the target medication order includes sub-medication orders for several drugs; based on a first configuration operation on the target medication order on a pump dispensing interface, obtaining a target pump dispensing position for each sub-medication order; in response to receiving a feedback instruction returned when a medical pump is detected to be placed at any preset pump dispensing position in the medical pump system, selecting the preset pump dispensing position of the feedback instruction as the pump position to be dispensed, and determining the sub-medication order for the pump position to be dispensed based on the pump position to be dispensed and the target pump position of each sub-medication order; and generating a configuration instruction for the medical pump at the pump position to be dispensed based on the sub-medication orders at the pump position to be dispensed.
[0006] In order to solve the above-mentioned technical problems, the second aspect of the present application provides a medical pump configuration device, including a medical order acquisition module, a position determination module, a medical order determination module and an instruction generation module, wherein the medical order acquisition module is used to obtain the target medication order of the target patient; wherein the target medication order includes sub-medication orders for several drugs; the position determination module is used to obtain the target dispensing pump position of each sub-medication order based on the first configuration operation of the target medication order on the pump dispensing interface; the medical order determination module is used to respond to the feedback instruction returned when a medical pump is detected to be placed at any preset dispensing pump position in the medical pump system, select the preset dispensing pump position of the feedback instruction as the pump position to be dispensed, and determine the sub-medication order of the pump position to be dispensed based on the pump position to be dispensed and the target pump position of each sub-medication order; the instruction generation module is used to generate the configuration instruction of the medical pump at the pump position to be dispensed based on the sub-medication order of the pump position to be dispensed.
[0007] In order to solve the above technical problems, the third aspect of the present application provides an electronic device, including a memory and a processor coupled to each other, the memory storing program instructions, and the processor being used to execute the program instructions to implement the medical pump configuration method described in the first aspect above.
[0008] In order to solve the above technical problems, the fourth aspect of the present application provides a medical pump configuration system, including a management system and a medical pump system that are communicatively connected, the medical pump system being used to send feedback instructions generated when a medical pump is detected to be placed at any preset pump distribution position to the management system, and being used to receive configuration instructions of the medical pump at the pump distribution position to be sent by the management system, and the management system is the electronic device described in the above third aspect.
[0009] In order to solve the above technical problems, the fifth aspect of the present application provides a computer-readable storage medium storing program instructions that can be executed by a processor, wherein the program instructions are used to implement the medical pump configuration method described in the first aspect above.
[0010] The above scheme obtains the target medication order of the target patient, and the target medication order contains sub-medication orders for several drugs, obtains the target pump dispensing position of each sub-medication order based on the first configuration operation of the target medication order on the pump dispensing interface, and in response to receiving a feedback instruction returned when a medical pump is detected to be placed at any preset pump dispensing position in the medical pump system, selects the preset pump dispensing position of the feedback instruction as the pump position to be dispensed, and determines the sub-medication order of the pump position to be dispensed based on the pump position to be dispensed and the target pump position of each sub-medication order, and generates the configuration instruction of the medical pump at the pump position to be dispensed based on the sub-medication order of the pump position to be dispensed. Therefore, based on the correspondence between the target pump dispensing position in the pump dispensing interface and the preset pump dispensing position in the medical pump system, the sub-medication order corresponding to the pump to be dispensed position where the medical pump has been placed can be determined, and the configuration instructions for configuring the medical pump at the pump to be dispensed position can be generated to achieve batch configuration of the medical pumps. In addition, since there is a one-to-one mapping relationship between the sub-medication order, the pump to be dispensed position, and the medical pump during the pump dispensing process, even in complex medical scenarios, the pump dispensing efficiency can be improved while achieving the accuracy of medical pump configuration. Therefore, batch configuration of medical pumps can be achieved, especially in complex medical scenarios, to improve the configuration efficiency of medical pumps. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] Figure 1 It is a schematic diagram of a flow chart of an embodiment of a medical pump configuration method of the present application; Figure 2 It is a schematic diagram of the framework of an embodiment of the medical pump configuration device of the present application; Figure 3 It is a schematic diagram of the framework of an embodiment of the electronic device of the present application; Figure 4 It is a schematic diagram of the framework of an embodiment of the medical pump configuration system of the present application; Figure 5 It is a schematic diagram of a framework of an embodiment of a computer-readable storage medium of the present application. DETAILED DESCRIPTION
[0012] The following will be combined with the drawings in the embodiments of the present application to clearly and completely describe the technical solutions in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0013] The terms "system" and "network" are often used interchangeably in this article. The term "and / or" in this article is only a description of the association relationship of associated objects, indicating that there can be three relationships. For example, A and / or B can mean: A exists alone, A and B exist at the same time, and B exists alone. In addition, the character " / " in this article generally indicates that the associated objects before and after are in an "or" relationship. In addition, "many" in this article means two or more than two.
[0014] See also Figure 1 , Figure 1 This is a flow chart of an embodiment of a medical pump configuration method of the present application. Specifically, it may include the following steps: Step S10: Obtain the target medication prescription of the target patient.
[0015] In the disclosed embodiment, the target medication order includes sub-medication orders for several drugs, and each sub-medication order includes specific parameters such as drug name, dosage, usage, and amount, which are not limited in this application.
[0016] In one implementation scenario, when there are multiple pumps in the medical pump system, such as multi-row syringe pumps, multi-channel infusion pumps, etc., any sub-medication order may contain medication information for multiple drugs, and the number of drug types included in the sub-medication order is not limited in this application.
[0017] In a specific implementation scenario, the target medication order for the target patient is obtained based on the analysis of the original medication order. The specific form of the original medication order is not limited in this application, such as a table, unstructured text, etc. The various types of drugs contained in the original medication order and the corresponding data on drugs to be used are analyzed, and the drugs are divided and classified according to the types of drugs to obtain a target medication order consisting of sub-medication orders for several drugs.
[0018] In a specific implementation scenario, as a possible implementation method, a medication order generation model can be pre-trained, and the medication order generation model can include but is not limited to the network model of the Encoder-Decoder architecture. In order to ensure the generation accuracy of the medication order generation model as much as possible, the sample original medication orders can be collected, each sample original medication order is annotated with a real target medication order, and the real target medication order is composed of real sub-medication orders of several drugs. The predicted target medication order of the sample original medication order is obtained based on the medication order generation model, so that the network parameters of the medication order generation model can be adjusted based on the difference between the real target medication order and the predicted target medication order until the training of the medication order generation model converges, and the original medication order of the target patient can be processed based on the converged training medication order generation model to obtain the target medication order containing several drug sub-medication orders. It should be noted that the specific processing process of the medication order generation model can refer to the technical details such as the network model of the Encoder-Decoder architecture, which will not be repeated here.
[0019] Step S20: Based on the first configuration operation of the target medication order on the pump dispensing interface, the target pump dispensing position of each sub-medication order is obtained.
[0020] In one implementation scenario, a pump dispensing interface is displayed, and the pump dispensing interface at least displays pump dispensing areas corresponding to respective preset pump dispensing positions in the medical pump system, and in response to a first configuration operation on a sub-drug order in any pump dispensing area, the preset pump dispensing position corresponding to the position of the pump dispensing area that triggered the first configuration operation is selected as the first pump dispensing position, and the target pump dispensing position of the sub-drug order is determined to be the first pump dispensing position.
[0021] In one implementation scenario, the pump dispensing interface displays several pump dispensing areas, which correspond one-to-one to each preset pump dispensing position in the medical pump system. For example, the medical pump system includes several preset pump dispensing positions arranged in sequence. Specifically, the preset pump dispensing positions in the medical pump system are arranged in three rows and two columns in the vertical direction. Then, six pump dispensing areas divided into three rows and two columns are displayed in the pump dispensing interface, thereby realizing a one-to-one correspondence between the pump dispensing areas of the pump dispensing interface and each preset pump dispensing position in the medical pump system, thereby improving the intuitiveness of the corresponding relationship display.
[0022] In a specific implementation scenario, the medical pump system includes a configuration interface corresponding to each operating room, for example, operating room 1 corresponds to configuration interface 1, and operating room 2 corresponds to configuration interface 2, and each configuration interface can be displayed on the same page of the medical pump system or on different pages of the medical pump system.
[0023] In one implementation scenario, the first configuration operation for the target medication order on the pump dispensing interface includes but is not limited to: dragging the sub-order to the pump dispensing area of the pump dispensing interface, entering the text content of the sub-order in the pump dispensing area of the pump dispensing interface, etc.
[0024] In a specific implementation scenario, each configuration area in the configuration interface displays an indicator indicating whether the preset pump position corresponding to the medical pump system is idle, for example, with the text "in use", "with medical pump", "without medical pump", or red to indicate in use, green to indicate with a medical pump, blue to indicate without a medical pump, etc.
[0025] In a specific implementation scenario, the configuration interface also displays a one-click configuration control. After the configuration interface obtains the target medication order of the target patient, in response to the triggering of the one-click configuration control, the configuration interface determines the corresponding pump dispensing area in the pump dispensing interface for each sub-medication order based on the content of the target medication order to obtain the target pump dispensing position for each sub-medication order.
[0026] Step S30: In response to receiving a feedback instruction returned when a medical pump is detected to be placed at any preset pump dispensing position in the medical pump system, the preset pump dispensing position of the feedback instruction is selected as the pump position to be dispensed, and based on the pump position to be dispensed and the target pump position of each sub-medication order, the sub-medication order of the pump position to be dispensed is determined.
[0027] In one implementation scenario, the generation of feedback instructions in the medical pump system can be realized based on hardware such as sensors, such as weight sensors, etc. The preset pump position of the feedback instruction indicates that a medical pump is placed. There is a one-to-one mapping relationship between the medication order, the pump position to be dispensed, and the medical pump. Therefore, even in complex medical scenarios, the pump efficiency can be improved while achieving the accuracy of medical pump configuration. Therefore, batch configuration of medical pumps can be realized, especially in complex medical scenarios, improving the configuration efficiency of medical pumps.
[0028] In a specific implementation scenario, the feedback instruction also includes pump information of a medical pump placed at a preset pump position. For example, detection is performed based on an NFC tag of the medical pump, and the pump information of the medical pump is generated and stored in the feedback instruction to be returned. The pump information of the medical pump includes at least the model specifications, pump number, etc. of the medical pump, which can be used as reference information for generating configuration instructions.
[0029] In a specific implementation scenario, the feedback instruction also includes the type of medicine in the medical pump placed at the preset pump dispensing position. After receiving the feedback instruction returned when a medical pump is detected to be placed at the preset pump dispensing position, the second type of medicine placed in the medical pump at the pump to be dispensed position is obtained, and the first type of medicine in the sub-medication order at the pump to be dispensed position is obtained. When the first type of medicine is consistent with the second type of medicine, a determination instruction is generated to determine the execution of the medical pump configuration instruction at the pump to be dispensed position.
[0030] In a specific implementation scenario, when the first drug type is inconsistent with the second drug type, a prompt instruction is generated to indicate that the drug or pump at the pump to be dispensed position should be replaced, and the prompt instruction is sent to the pump to be dispensed area. Specifically, the pump to be dispensed area of the medical pump system is provided with a display screen. After receiving the prompt instruction, the display screen displays that the drug type currently placed in the medical pump is inconsistent with the medication order, and displays the information of the drug type to be replaced, and / or, the pump to be dispensed area of the medical pump system is provided with a speaker. After receiving the prompt instruction, the speaker can emit a prompt tone to indicate that the drug or pump at the pump to be dispensed position should be replaced. It should be noted that, when the first drug type is inconsistent with the second drug type, the subsequent step of generating a configuration instruction for the medical pump at the pump to be dispensed position based on the sub-medication order of the pump to be dispensed position is not performed in this solution.
[0031] Step S40: Based on the sub-medication prescription of the pump position to be dispensed, a configuration instruction of the medical pump at the pump position to be dispensed is generated.
[0032] In one implementation scenario, based on the sub-medication doctor's order of the pump position to be dispensed, a configuration instruction of the medical pump at the pump position to be dispensed is generated. Therefore, based on the correspondence between the target pump position in the pump dispensing interface and the preset pump position in the medical pump system, the sub-medication doctor's order corresponding to the pump position to be dispensed where the medical pump has been placed can be determined, and a configuration instruction for configuring the medical pump at the pump position to be dispensed is generated to achieve batch configuration of the medical pump. Since there is a one-to-one mapping relationship between the sub-medication doctor's order, the pump position to be dispensed, and the medical pump during the pump dispensing process, even in complex medical scenarios, the pump dispensing efficiency can be improved while achieving the accuracy of the medical pump configuration. Therefore, batch configuration of medical pumps can be achieved, especially in complex medical scenarios, to improve the configuration efficiency of medical pumps.
[0033] In one implementation scenario, the pump dispensing interface at least displays pump dispensing areas corresponding to each preset pump dispensing position in the medical pump system, and the pump dispensing area also displays a configuration modification control, which is used to modify the configuration information of the medical pump at the preset pump dispensing position when it is working, for example, modifying the flow rate value, medication amount value, etc. in the current sub-medication order. It should be noted that the specific form of the configuration modification control is not limited in the present application. When any pump dispensing area detects a second configuration operation triggered by the configuration modification control, the preset pump dispensing position corresponding to the pump dispensing area position that triggers the second configuration operation is selected as the second pump dispensing position, and based on the second configuration operation, a new configuration instruction for the medical pump at the second pump dispensing position is generated.
[0034] In a specific implementation scenario, the second configuration operation includes any one of continuous quantity modification and single quantity modification. Taking the infusion of anesthetic drugs by a medical pump as an example, the continuous quantity refers to the amount of liquid medicine continuously infused during the operation of the medical pump. Its main purpose is to maintain a stable and continuous analgesic effect. The single quantity refers to the amount of analgesic drugs increased by a single, small dose through the medical pump when the patient feels pain.
[0035] In a specific implementation scenario, after detecting the configuration completion instruction of the second configuration operation, the used drug data of the medical pump at the second pump dispensing position transmitted back by the medical pump system is obtained. Specifically, the medical drug data includes the infusion rate, infused dose, etc. of the atomic medication order. Based on the used drug data and the second configuration operation, a new configuration instruction for the medical pump at the second pump dispensing position is generated.
[0036] In one implementation scenario, the pump dispensing interface at least displays pump dispensing areas corresponding to each preset pump dispensing position in the medical pump system, and the pump dispensing area also displays a pump replacement control, which is used to replace the medical pump at the preset pump dispensing position corresponding to the pump dispensing area in the medical pump system. It should be noted that the specific form of the pump replacement control is not limited in the present application. When a third configuration operation triggered by the pump replacement control is detected in any pump dispensing area, the preset pump dispensing position corresponding to the pump dispensing area position that triggers the third configuration operation is selected as the third pump dispensing position, and based on the pump replacement method of the third configuration operation, the fourth pump dispensing position that continues the original sub-medication order of the third pump dispensing position in each preset pump dispensing position is determined, and based on the unexecuted part of the original sub-medication order of the third pump dispensing position, the configuration instruction of the medical pump at the fourth pump dispensing position is generated.
[0037] In a specific implementation scenario, when the pump replacement method is original position replacement, it is determined that the third distribution pump position itself is the fourth distribution pump position.
[0038] In another specific implementation scenario, when the pump replacement method is to replace it to an idle preset pump dispensing position in the medical pump system, the preset pump dispensing position corresponding to the pump dispensing area position specified by the third configuration operation to continue dispensing the pump is selected as the fourth pump dispensing position.
[0039] In a specific implementation scenario, after generating the configuration instruction of the medical pump at the fourth pump dispensing position based on the unexecuted part of the original sub-medication order at the third pump dispensing position, in the case of receiving the feedback instruction returned by detecting that a medical pump is placed at the fourth pump dispensing position, the configuration instruction of the medical pump at the fourth pump dispensing position is sent to the fourth pump dispensing position. In the above scheme, based on the correspondence between the target pump dispensing position in the pump dispensing interface and the preset pump dispensing position in the medical pump system, the sub-medication order corresponding to the pump dispensing position to be dispensed where the medical pump has been placed can be determined, and the configuration instruction for configuring the medical pump at the pump dispensing position to be dispensed can be generated to realize the batch configuration of the medical pump. Since there is a one-to-one mapping relationship between the sub-medication order, the pump dispensing position to be dispensed, and the medical pump during the pump dispensing process, even in complex medical scenarios, the pump dispensing efficiency can be improved under the premise of realizing the accuracy of medical pump configuration. Therefore, the batch configuration of medical pumps can be realized, especially in complex medical scenarios, the configuration efficiency of medical pumps can be improved.
[0040] In another specific implementation scenario, after generating a configuration instruction for a medical pump at the fourth pump position based on the unexecuted portion of the original sub-medication order at the third pump position, upon receiving a feedback instruction that no medical pump is detected at the fourth pump position, a prompt instruction is generated, and the prompt instruction is at least used to instruct the first hardware at the fourth pump position to display information about the medical pump to be placed at the fourth pump position, and send the prompt instruction to the fourth pump position. The above scheme can prompt relevant medical staff to replace or adjust the pump in a timely manner, thereby improving the efficiency of medical pump configuration.
[0041] In a specific implementation scenario, a display screen is provided in the area of the medical pump system to be equipped with pumps. After receiving a prompt instruction for instructing the first hardware at the fourth pump-equipped position to display information of the medical pump to be placed at the fourth pump-equipped position, the medical pump to be placed is displayed on the display screen of the fourth pump-equipped area, and / or a speaker is provided in the area of the medical pump system to be equipped with pumps. After receiving the prompt instruction, the speaker can emit a prompt sound at the fourth pump-equipped position to indicate the placement of the medical pump. It should be noted that in the case where no feedback instruction is returned because the medical pump is not detected to be placed at the fourth pump-equipped position, the subsequent step of generating the configuration instruction of the medical pump at the fourth pump-equipped position based on the unexecuted part of the original sub-medication order at the third pump-equipped position is not executed in this solution.
[0042] The above scheme obtains the target medication order of the target patient, and the target medication order contains sub-medication orders for several drugs, obtains the target pump dispensing position of each sub-medication order based on the first configuration operation of the target medication order on the pump dispensing interface, and in response to receiving a feedback instruction returned when a medical pump is detected to be placed at any preset pump dispensing position in the medical pump system, selects the preset pump dispensing position of the feedback instruction as the pump position to be dispensed, and determines the sub-medication order of the pump position to be dispensed based on the pump position to be dispensed and the target pump position of each sub-medication order, and generates the configuration instruction of the medical pump at the pump position to be dispensed based on the sub-medication order of the pump position to be dispensed. Therefore, based on the correspondence between the target pump dispensing position in the pump dispensing interface and the preset pump dispensing position in the medical pump system, the sub-medication order corresponding to the pump to be dispensed position where the medical pump has been placed can be determined, and the configuration instructions for configuring the medical pump at the pump to be dispensed position can be generated to achieve batch configuration of the medical pumps. In addition, since there is a one-to-one mapping relationship between the sub-medication order, the pump to be dispensed position, and the medical pump during the pump dispensing process, even in complex medical scenarios, the pump dispensing efficiency can be improved while achieving the accuracy of medical pump configuration. Therefore, batch configuration of medical pumps can be achieved, especially in complex medical scenarios, to improve the configuration efficiency of medical pumps.
[0043] See also Figure 2 , Figure 2 2 is a schematic diagram of a medical pump configuration device 20 according to an embodiment of the present invention. Figure 2 As shown, the medical pump configuration device 20 includes a medical order acquisition module 21, a position determination module 22, a medical order determination module 23 and an instruction generation module 24, wherein the medical order acquisition module 21 is used to acquire the target medication order of the target patient; wherein the target medication order includes sub-medication orders of several drugs; the position determination module 22 is used to obtain the target dispensing pump position of each sub-medication order based on the first configuration operation of the target medication order on the pump dispensing interface; the medical order determination module 23 is used to respond to the feedback instruction returned when a medical pump is detected to be placed at any preset dispensing pump position in the medical pump system, select the preset dispensing pump position of the feedback instruction as the pump position to be dispensed, and determine the sub-medication order of the pump position to be dispensed based on the pump position to be dispensed and the target pump position of each sub-medication order; the instruction generation module 24 is used to generate the configuration instruction of the medical pump at the pump position to be dispensed based on the sub-medication order of the pump position to be dispensed.
[0044] In the above scheme, the medical pump configuration device 20 obtains the target medication order of the target patient, and the target medication order contains sub-medication orders for several drugs, and obtains the target pump dispensing position of each sub-medication order based on the first configuration operation of the target medication order on the pump dispensing interface, and in response to receiving the feedback instruction returned when a medical pump is detected to be placed at any preset pump dispensing position in the medical pump system, selects the preset pump dispensing position of the feedback instruction as the pump position to be dispensed, and determines the sub-medication order of the pump position to be dispensed based on the pump position to be dispensed and the target pump position of each sub-medication order, and generates the configuration instruction of the medical pump at the pump position to be dispensed based on the sub-medication order of the pump position to be dispensed. Therefore, based on the correspondence between the target pump dispensing position in the pump dispensing interface and the preset pump dispensing position in the medical pump system, the sub-medication order corresponding to the pump to be dispensed position where the medical pump has been placed can be determined, and the configuration instructions for configuring the medical pump at the pump to be dispensed position can be generated to achieve batch configuration of the medical pumps. In addition, since there is a one-to-one mapping relationship between the sub-medication order, the pump to be dispensed position, and the medical pump during the pump dispensing process, even in complex medical scenarios, the pump dispensing efficiency can be improved while achieving the accuracy of medical pump configuration. Therefore, batch configuration of medical pumps can be achieved, especially in complex medical scenarios, to improve the configuration efficiency of medical pumps.
[0045] In some disclosed embodiments, the position determination module 22 also includes an interface display module (not shown) for displaying a pump dispensing interface; wherein the pump dispensing interface at least displays pump dispensing areas corresponding to respective preset pump dispensing positions in the medical pump system; the position determination module 22 also includes a configuration operation module (not shown) for responding to a first configuration operation on a sub-drug order in any pump dispensing area, selecting the preset pump dispensing position corresponding to the pump dispensing area position that triggers the first configuration operation as the first pump dispensing position, and determining the target pump dispensing position of the sub-drug order as the first pump dispensing position.
[0046] In some disclosed embodiments, the pump dispensing interface at least displays pump dispensing areas corresponding to respective preset pump dispensing positions in the medical pump system, and the pump dispensing area also displays configuration modification controls, which are used to modify the configuration information of the medical pump at the preset pump dispensing position when it is working. The medical pump configuration device 20 also includes a configuration modification module (not shown) for responding to detecting a second configuration operation triggered by the configuration modification control in any pump dispensing area, and selecting the preset pump dispensing position corresponding to the pump dispensing area position that triggers the second configuration operation as the second pump dispensing position; the medical pump configuration device 20 also includes a first instruction update module (not shown) for generating a new configuration instruction for the medical pump at the second pump dispensing position based on the second configuration operation; wherein the second configuration operation includes any one of continuous quantity modification and single quantity modification.
[0047] In some disclosed embodiments, the first instruction update module (not shown) also includes a data acquisition module (not shown) for acquiring the drug usage data of the medical pump at the second pump dispensing position transmitted back by the medical pump system in response to detecting the configuration completion instruction of the second configuration operation; the first instruction update module (not shown) also includes an update sub-module (not shown) for generating a new configuration instruction for the medical pump at the second pump dispensing position based on the drug usage data and the second configuration operation.
[0048] In some disclosed embodiments, the pump dispensing interface at least displays pump dispensing areas corresponding to respective preset pump dispensing positions in the medical pump system, and the pump dispensing area also displays a pump replacement control, which is used to replace the medical pump at the preset pump dispensing position corresponding to the position of the pump dispensing area in the medical pump system. The medical pump configuration device 20 also includes a pump replacement module (not shown) for responding to detecting a third configuration operation triggered by the pump replacement control in any pump dispensing area, selecting the preset pump dispensing position corresponding to the pump dispensing area position that triggers the third configuration operation as the third pump dispensing position, and determining the fourth pump dispensing position in each preset pump dispensing position that continues the original sub-medication order of the third pump dispensing position based on the pump replacement method of the third configuration operation; the medical pump configuration device 20 also includes a second instruction update module (not shown) for generating a configuration instruction for the medical pump at the fourth pump dispensing position based on the unexecuted portion of the original sub-medication order of the third pump dispensing position.
[0049] In some disclosed embodiments, the pump replacement module (not shown) further includes a first replacement submodule (not shown) for determining that the third pump distribution position itself is the fourth pump distribution position in response to the pump replacement method being replacement at the original position; the pump replacement module (not shown) further includes a second replacement submodule (not shown) for selecting, in response to the pump replacement method being replacement to an idle preset pump distribution position in the medical pump system, a preset pump distribution position corresponding to the pump distribution area position specified by the third configuration operation for continuing to distribute the pump as the fourth pump distribution position.
[0050] In some disclosed embodiments, after generating a configuration instruction for a medical pump at a fourth pump dispensing position based on the unexecuted portion of the original sub-medication order for the third pump dispensing position, the medical pump configuration device 20 further includes an instruction sending module (not shown) for sending the configuration instruction for the medical pump at the fourth pump dispensing position to the fourth pump dispensing position in response to receiving a feedback instruction returned upon detection of a medical pump being placed at the fourth pump dispensing position.
[0051] In some disclosed embodiments, after generating a configuration instruction for a medical pump at a fourth pump dispensing position based on the unexecuted portion of the original sub-medication order for the third pump dispensing position, the medical pump dispensing device 20 further includes a prompt instruction generating module (not shown) for generating a prompt instruction in response to receiving a feedback instruction returned in response to detecting that no medical pump is placed at the fourth pump dispensing position; wherein the prompt instruction is at least used to instruct the first hardware at the fourth pump dispensing position to display information about the medical pump to be placed at the fourth pump dispensing position; the medical pump dispensing device 20 further includes a prompt instruction sending module (not shown) for sending a prompt instruction to the fourth pump dispensing position.
[0052] In some disclosed embodiments, after determining the sub-medication order at the pump position to be dispensed based on the pump position to be dispensed and the target pump position of each sub-medication order, and before generating the configuration instruction of the medical pump at the pump position to be dispensed based on the sub-medication order at the pump position to be dispensed, the medical pump configuration device 20 also includes a type acquisition module (not shown) for acquiring a first drug type in the sub-medication order at the pump position to be dispensed, and acquiring a second drug type placed in the medical pump at the pump position to be dispensed; the medical pump configuration device 20 also includes a determination instruction generation module (not shown) for generating a determination instruction for determining the execution of the medical pump configuration instruction at the pump position to be dispensed in response to the first drug type being consistent with the second drug type.
[0053] See also Figure 3 , Figure 3 Schematic diagram of the framework of an embodiment of the electronic device 30 of the present application. Figure 3As shown, the electronic device 30 includes a memory 31 and a processor 32 coupled to each other, the memory 31 stores program instructions, and the processor 32 is used to execute the program instructions to implement the steps in any of the above-mentioned medical pump configuration method embodiments. Specifically, the electronic device 30 may include but is not limited to: a server, a desktop computer, a laptop computer, a tablet computer, a smart phone, etc., which are not limited here. Specifically, the processor 32 is used to control itself and the memory 31 to implement the steps in any of the above-mentioned medical pump configuration method embodiments. The processor 32 can also be called a CPU (Central Processing Unit). The processor 32 may be an integrated circuit chip with signal processing capabilities. The processor 32 can also be a general-purpose processor, a digital signal processor (Digital Signal Processor, DSP), an application-specific integrated circuit (Application Specific Integrated Circuit, ASIC), a field-programmable gate array (Field-Programmable Gate Array, FPGA) or other programmable logic devices, discrete gates or transistor logic devices, discrete hardware components. The general-purpose processor can be a microprocessor or the processor can also be any conventional processor, etc. In addition, the processor 32 can be implemented by an integrated circuit chip.
[0054] Therefore, the electronic device 30 obtains the target medication order of the target patient, and the target medication order contains sub-medication orders for several drugs. Based on the first configuration operation of the target medication order on the pump dispensing interface, the target pump dispensing position of each sub-medication order is obtained. In response to receiving a feedback instruction returned when a medical pump is detected to be placed at any preset pump dispensing position in the medical pump system, the preset pump dispensing position of the feedback instruction is selected as the pump position to be dispensed, and based on the pump position to be dispensed and the target pump position of each sub-medication order, the sub-medication order of the pump position to be dispensed is determined, and based on the sub-medication order of the pump position to be dispensed, the configuration instruction of the medical pump at the pump position to be dispensed is generated. Therefore, based on the correspondence between the target pump dispensing position in the pump dispensing interface and the preset pump dispensing position in the medical pump system, the sub-medication order corresponding to the pump to be dispensed position where the medical pump has been placed can be determined, and the configuration instructions for configuring the medical pump at the pump to be dispensed position can be generated to achieve batch configuration of the medical pumps. In addition, since there is a one-to-one mapping relationship between the sub-medication order, the pump to be dispensed position, and the medical pump during the pump dispensing process, even in complex medical scenarios, the pump dispensing efficiency can be improved while achieving the accuracy of medical pump configuration. Therefore, batch configuration of medical pumps can be achieved, especially in complex medical scenarios, to improve the configuration efficiency of medical pumps.
[0055] See also Figure 4 , Figure 41 is a schematic diagram of a framework of an embodiment of a medical pump configuration system 40 of the present application. The medical pump configuration system 40 includes a management system 41 and a medical pump system 42 which are in communication connection, the medical pump system 42 is used to send a feedback instruction generated by detecting a medical pump placed at any preset pump configuration position to the management system 41, and is used to receive a configuration instruction of a medical pump at a pump configuration position to be configured sent by the management system 41, and the management system 41 is the electronic device 30 described in the third aspect above.
[0056] In one implementation scenario, the medical pump system 42 includes a medical pump placement rack (not shown) and a main control circuit (not shown). The medical pump placement rack includes a number of preset pump distribution positions for carrying medical pumps. The main control circuit is used to communicate with the management system 41 and send the configuration instructions received from the management system 41 to the medical pumps placed at the corresponding preset pump distribution positions.
[0057] In one implementation scenario, the medical pump system 42 further includes a display screen (not shown) corresponding to each preset pump position, and the display screen displays infusion information of the corresponding medical pump.
[0058] In the above scheme, the management system 41 in the medical pump configuration system 40 obtains the target medication order of the target patient, and the target medication order contains sub-medication orders for several drugs, and based on the first configuration operation of the target medication order on the pump dispensing interface, the target pump dispensing position of each sub-medication order is obtained, and in response to receiving the feedback instruction returned when a medical pump is detected to be placed at any preset pump dispensing position in the medical pump system 42, the preset pump dispensing position of the feedback instruction is selected as the pump position to be dispensed, and based on the pump position to be dispensed and the target pump position of each sub-medication order, the sub-medication order of the pump position to be dispensed is determined, and based on the sub-medication order of the pump position to be dispensed, the configuration instruction of the medical pump at the pump position to be dispensed is generated. Therefore, based on the correspondence between the target pump dispensing position in the pump dispensing interface and the preset pump dispensing position in the medical pump system 42, the management system 41 can determine the sub-medication order corresponding to the pump dispensing position where the medical pump has been placed, generate a configuration instruction for configuring the medical pump at the pump dispensing position, and realize batch configuration of the medical pump. Since there is a one-to-one mapping relationship between the sub-medication order, the pump dispensing position, and the medical pump during the pump dispensing process, even in complex medical scenarios, the pump dispensing efficiency can be improved while achieving the accuracy of medical pump configuration. Therefore, batch configuration of medical pumps can be realized, especially in complex medical scenarios, to improve the configuration efficiency of medical pumps.
[0059] See also Figure 5 , Figure 5 Schematic diagram of a computer-readable storage medium 50 of the present application. The computer-readable storage medium 50 stores program instructions 51 that can be executed by a processor, and the program instructions 51 are used to implement the steps in any of the above-mentioned medical pump configuration method embodiments.
[0060] In some embodiments, the functions or modules included in the device provided by the embodiments of the present disclosure can be used to execute the method described in the above method embodiments. The specific implementation can refer to the description of the above method embodiments, and for the sake of brevity, it will not be repeated here.
[0061] The above description of various embodiments tends to emphasize the differences between the various embodiments. The same or similar aspects can be referenced to each other, and for the sake of brevity, they will not be repeated herein.
[0062] In the several embodiments provided in the present application, it should be understood that the disclosed methods and devices can be implemented in other ways. For example, the device implementation described above is only schematic. For example, the division of modules or units is only a logical function division. There may be other division methods in actual implementation, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, and the indirect coupling or communication connection of devices or units can be electrical, mechanical or other forms.
[0063] The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, and may be located in one place or distributed over multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the present embodiment.
[0064] In addition, each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of software functional units.
[0065] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present application, 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. The computer software product is stored in a storage medium, including a number of instructions to enable a computer device (which can be a personal computer, server, or network device, etc.) or a processor (processor) to execute all or part of the steps of each implementation method of the present application. The aforementioned storage medium includes: U disk, mobile hard disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), disk or optical disk and other media that can store program code.
[0066] If the technical solution of this application involves personal information, the product using the technical solution of this application has clearly informed the personal information processing rules and obtained the individual's voluntary consent before processing the personal information. If the technical solution of this application involves sensitive personal information, the product using the technical solution of this application has obtained the individual's separate consent before processing the sensitive personal information, and at the same time meets the "explicit consent" requirement. For example, on personal information collection devices such as cameras, clear and prominent signs are set to inform that the personal information collection scope has been entered and personal information will be collected. If the individual voluntarily enters the collection scope, it is deemed that he or she agrees to the collection of his or her personal information; or on the device that processes personal information, the personal information processing rules are notified by obvious signs / information, and the individual's authorization is obtained through pop-up information or by asking the individual to upload his or her personal information; among them, the personal information processing rules may include information such as the personal information processor, the purpose of personal information processing, the processing method, and the type of personal information processed.
Claims
1. A method for configuring a medical pump, characterized in that: include: Obtaining a target medication order for a target patient; wherein the target medication order includes sub-medication orders for a plurality of drugs; Based on the first configuration operation of the target medication order on the pump dispensing interface, the target pump dispensing position of each of the sub-medication orders is obtained; In response to receiving a feedback instruction returned when a medical pump is detected to be placed at any preset pump dispensing position in the medical pump system, selecting the preset pump dispensing position that returns the feedback instruction as the pump position to be dispensed, and determining the sub-medication medical order of the pump position to be dispensed based on the pump position to be dispensed and the target pump dispensing position of each of the sub-medication medical orders; Based on the sub-medication prescription of the pump position to be dispensed, a configuration instruction of the medical pump at the pump position to be dispensed is generated.
2. The method according to claim 1, characterized in that The step of obtaining the target pump dispensing position of each of the sub-medication orders based on the first configuration operation of the target medication order on the pump dispensing interface includes: Displaying a pump dispensing interface; wherein the pump dispensing interface at least displays pump dispensing areas corresponding to the respective positions of the preset pump dispensing positions in the medical pump system; In response to a first configuration operation on the sub-medication order in any of the pump dispensing areas, a preset pump dispensing position corresponding to the pump dispensing area position that triggered the first configuration operation is selected as the first pump dispensing position, and the target pump dispensing position of the sub-medication order is determined to be the first pump dispensing position.
3. The method according to claim 1, characterized in that The pump dispensing interface at least displays a pump dispensing area corresponding to each of the preset pump dispensing positions in the medical pump system, and the pump dispensing area also displays a configuration modification control, and the configuration modification control is used to modify the configuration information of the medical pump at the preset pump dispensing position when it is working. The method also includes: In response to detecting a second configuration operation triggered by the configuration modification control in any of the pump distribution areas, selecting a preset pump distribution position corresponding to the pump distribution area position triggering the second configuration operation as a second pump distribution position; Based on the second configuration operation, a new configuration instruction for the medical pump at the second pump dispensing position is generated; wherein the second configuration operation includes any one of continuous quantity modification and single quantity modification.
4. The method according to claim 3, characterized in that The generating of a new configuration instruction for the medical pump at the second pump dispensing position based on the second configuration operation includes: In response to detecting a configuration completion instruction of the second configuration operation, acquiring drug usage data of the medical pump at the second pump dispensing position transmitted back by the medical pump system; Based on the medication data and the second configuration operation, new configuration instructions for the medical pump at the second pump dispensing location are generated.
5. The method according to claim 1, characterized in that The pump dispensing interface at least displays a pump dispensing area corresponding to each of the preset pump dispensing positions in the medical pump system, and the pump dispensing area also displays a pump replacement control, and the pump replacement control is used to replace the medical pump at the preset pump dispensing position corresponding to the position of the pump dispensing area in the medical pump system, and the method further includes: In response to detecting a third configuration operation triggered by the pump replacement control in any of the pump dispensing areas, selecting a preset pump dispensing position corresponding to the pump dispensing area position triggering the third configuration operation as the third pump dispensing position, and determining a fourth pump dispensing position in each of the preset pump dispensing positions that is connected to the original sub-medication order of the third pump dispensing position based on the pump replacement mode of the third configuration operation; Based on the unexecuted portion of the original sub-medication order at the third pump dispensing position, a configuration instruction for the medical pump at the fourth pump dispensing position is generated.
6. The method according to claim 5, characterized in that The pump replacement method based on the third configuration operation determines the fourth pump position in each of the preset pump positions that is connected to the original sub-medication order of the third pump position, including: In response to the pump replacement mode being original position replacement, determining that the third distribution pump position itself is the fourth distribution pump position; In response to the pump replacement method being to replace to an idle preset pump dispensing position in the medical pump system, the preset pump dispensing position corresponding to the pump dispensing area position specified by the third configuration operation for continuing to dispense the pump is selected as the fourth pump dispensing position.
7. The method according to claim 5, characterized in that After generating the configuration instruction of the medical pump at the fourth pump dispensing position based on the unexecuted portion of the original sub-medication order at the third pump dispensing position, the method further includes: In response to receiving a feedback instruction returned when a medical pump is detected to be placed at the fourth pump dispensing position, a configuration instruction of the medical pump at the fourth pump dispensing position is sent to the fourth pump dispensing position.
8. The method according to claim 5, characterized in that After generating the configuration instruction of the medical pump at the fourth pump dispensing position based on the unexecuted portion of the original sub-medication order at the third pump dispensing position, the method further includes: In response to receiving a feedback instruction returned because no medical pump is detected to be placed at the fourth pump dispensing position, a prompt instruction is generated; wherein the prompt instruction is at least used to instruct the first hardware at the fourth pump dispensing position to display information of the medical pump to be placed at the fourth pump dispensing position; The prompt instruction is sent to the fourth distribution pump position.
9. The method according to claim 1, characterized in that: After determining the sub-medication medical order of the pump position to be dispensed based on the pump position to be dispensed and the target pump dispensing position of each of the sub-medication medical orders, and before generating a configuration instruction of the medical pump at the pump position to be dispensed based on the sub-medication medical order of the pump position to be dispensed, the method further includes: Acquire the first drug type in the sub-medication order at the pump position to be dispensed, and acquire the second drug type placed in the medical pump at the pump position to be dispensed; In response to the first drug type being consistent with the second drug type, a determination instruction for determining to execute generation of the configuration instruction for the medical pump at the pump location to be dispensed is generated.
10. A medical pump configuration device, characterized in that: include: A medical order acquisition module is used to acquire a target medication medical order of a target patient; wherein the target medication medical order includes sub-medication medical orders of several drugs; A position determination module, configured to obtain a target dispensing pump position of each of the sub-medication orders based on a first configuration operation of the target medication order on a dispensing pump interface; a medical order determination module, configured to, in response to receiving a feedback instruction returned when a medical pump is detected to be placed at any preset pump dispensing position in the medical pump system, select the preset pump dispensing position that returns the feedback instruction as the pump position to be dispensed, and determine the sub-medication medical order of the pump position to be dispensed based on the pump position to be dispensed and the target pump dispensing position of each of the sub-medication medical orders; An instruction generation module is used to generate a configuration instruction for the medical pump at the pump position to be dispensed based on the sub-medication prescription of the pump position to be dispensed.
11. An electronic device, characterized in that: The medical pump configuration method comprises a memory and a processor coupled to each other, wherein the memory stores program instructions, and the processor is used to execute the program instructions to implement the medical pump configuration method according to any one of claims 1 to 9.
12. A medical pump configuration system, characterized in that: It comprises a management system and a medical pump system which are communicatively connected, wherein the medical pump system is used to send feedback instructions generated when a medical pump is detected to be placed at any preset pump dispensing position to the management system, and is used to receive configuration instructions of the medical pump at the pump to be dispensed position sent by the management system, and the management system is the electronic device as described in claim 11 above.
13. A computer-readable storage medium having program instructions stored thereon, characterized in that: When the program instructions are executed by a processor, the medical pump configuration method according to any one of claims 1 to 9 is implemented.