A method for displaying information from a nutrient pump and the nutrient pump itself.
By displaying nutrient solution feeding information and flushing parameters on the nutrient pump interface, the problem of existing nutrient pumps being unable to monitor blockages in real time is solved, enabling convenient operation for medical staff and improving patient safety.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- SHENZHEN MINDRAY SCIENTIFIC CO LTD
- Filing Date
- 2024-12-02
- Publication Date
- 2026-06-02
AI Technical Summary
Existing nutrient pumps cannot display the nutrient solution blockage in real time during feeding, which requires medical staff to frequently inquire about the cleaning status, increasing their workload and posing safety risks.
The feeding pump interface simultaneously displays feeding information for the nutrient solution and flushing parameters for the nutrient pump, including flow rate, flushing interval, and flushing volume, allowing medical staff to monitor and adjust in real time to avoid blockage.
This allows medical staff to obtain timely information about the cleaning status of the feeding pump, reducing the workload of frequent inquiries and improving the safety and efficiency of the feeding process.
Smart Images

Figure CN122123882A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of medical device technology, and in particular to an information display method for a nutrition pump and a nutrition pump. Background Technology
[0002] In recent years, with the advancement of medicine, the role of nutrition in disease treatment has gradually gained attention, especially for critically ill patients, whose nutritional status has a significant impact on subsequent disease treatment.
[0003] Current in-flight nutrition pumps are relatively simple devices used in clinical practice, possessing only the most basic feeding functions to meet most clinical needs. However, due to the high density of the nutrient solution, it is prone to blockage during feeding, posing a significant risk to the patient's life. Therefore, it is necessary to clean the nutrient solution in the feeding pump during feeding. However, existing feeding pumps only display feeding parameters during feeding, which means that medical staff can only focus on feeding information and cannot pay attention to other information related to nutrient solution blockage. Summary of the Invention
[0004] This invention provides a method for displaying information about a nutrient pump and a nutrient pump itself. The method displays feeding information of the nutrient solution and flushing parameters of the nutrient pump on the nutrient pump interface simultaneously, allowing medical staff to obtain the cleaning status of the nutrient pump in a timely manner. This avoids the risk of nutrient solution blockage and reduces the workload of medical staff in repeatedly inquiring about the cleaning status of the nutrient pump.
[0005] The first aspect of this application provides a method for displaying information on a nutrition pump. The nutrition pump includes a driving component and a touch screen. The driving component is used to drive the flow of liquid in the infusion tube installed in the nutrition pump, and the touch screen is used to display the nutrition pump interface. The driving component is installed on a first side of the nutrition pump, and the touch screen is installed on a second side of the nutrition pump. The first side and the second side are substantially perpendicular. The method includes:
[0006] Obtain the nutrient pump parameters, which include at least the nutrient solution identifier, the nutrient solution flow rate, and the nutrient pump flushing parameters. The nutrient pump flushing parameters include the time interval for automatic flushing and / or the flushing volume within the time interval.
[0007] The nutrient pump interface displays the nutrient solution flow rate, nutrient pump flushing parameters, and nutrient solution identifiers.
[0008] In response to a trigger operation on the flow rate display item of the nutrient solution and / or the flushing parameter display item of the nutrient pump, generate editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump.
[0009] Set the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump according to the editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump.
[0010] The second aspect of this application provides an information display method for a nutrient pump. The nutrient pump includes a drive component and a touch screen. The drive component is used to drive the flow of liquid in the infusion tube installed in the nutrient pump. The touch screen is used to display the nutrient pump interface. The drive component is installed on a first side of the nutrient pump, and the touch screen is installed on a second side of the nutrient pump. The first side and the second side are substantially perpendicular.
[0011] The nutrient pump interface includes a fixed area and a scrolling area. The fixed area is used to display some nutrient pump parameters in a fixed manner, and the scrolling area is used to display another part of the nutrient pump parameters based on a trigger operation.
[0012] The method includes:
[0013] Obtain nutrient pump parameters, which include at least the identification of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the flushing parameters of the nutrient pump, which include at least the time interval for flushing the nutrient pump and / or the flushing volume within the time interval.
[0014] The fixed area displays the identifier of the nutrient solution and the flow rate of the nutrient solution, while the rolling area displays the flushing parameters of the nutrient pump.
[0015] The amount of nutrient solution fed is displayed in the fixed area or the scrolling area.
[0016] A third aspect of this application provides a method for displaying information about a nutrient pump, the method comprising:
[0017] Obtain nutrient pump parameters, which include at least the identifier of the nutrient solution, the flow rate of the nutrient solution, and the flushing parameters of the nutrient pump, wherein the flushing parameters of the nutrient pump include the time interval for automatic flushing of the nutrient pump and / or the flushing volume within the time interval.
[0018] The nutrient pump's display interface shows the nutrient solution flow rate, the nutrient pump flushing parameters, and the nutrient solution's identifier.
[0019] In response to a trigger operation on the flow rate display item of the nutrient solution and / or the flushing parameter display item of the nutrient pump, an editing instruction for the flow rate parameter of the nutrient solution and / or the flushing parameter of the nutrient pump is generated.
[0020] The flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump are set according to the editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump.
[0021] A fourth aspect of this application provides a method for displaying information about a nutrient pump. The nutrient pump has a display interface, which includes a fixed area and a scrolling area. The fixed area is used to display nutrient pump parameters in a fixed manner, and the scrolling area is used to display the nutrient pump parameters in a scrolling manner based on a trigger operation.
[0022] The method includes:
[0023] Obtain the nutrient pump parameters, which include at least the identifier of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the flushing parameters of the nutrient pump. The flushing parameters of the nutrient pump include at least the time interval of the nutrient pump flushing and / or the flushing volume within the time interval.
[0024] The fixed area displays the identifier of the nutrient solution and the flow rate of the nutrient solution, while the rolling area displays the flushing parameters of the nutrient pump.
[0025] The amount of nutrient solution fed is displayed in the fixed area or the scrolling area.
[0026] The fifth aspect of this application provides a method for displaying information about a nutrient pump, including:
[0027] Obtain the nutrient pump parameters, which include at least the identifier of the nutrient solution, the flow rate of the nutrient solution, and the preset heating temperature of the nutrient solution.
[0028] The nutrient pump's display interface shows the nutrient solution flow rate, the nutrient solution heating, and the nutrient solution's identifier. The heating display is used to display and set the preset heating temperature.
[0029] In response to a trigger operation on the flow rate display item and / or the heating display item of the nutrient solution, an editing instruction is generated for the flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution.
[0030] The flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution are set according to the editing instructions for the flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution.
[0031] A sixth aspect of this application provides a method for displaying information about a nutrient pump. The nutrient pump has a display interface, which includes a fixed area and a scrolling area. The fixed area is used to display nutrient pump parameters, and the scrolling area is used to scroll the display of the nutrient pump parameters based on a trigger operation. The method includes:
[0032] Obtain the nutrient pump parameters, which include at least the nutrient solution identifier, the nutrient solution flow rate, the nutrient solution feeding volume, and the preset heating temperature of the nutrient solution.
[0033] The identifier of the nutrient solution and the flow rate of the nutrient solution are displayed in the fixed area;
[0034] The preset heating temperature of the nutrient solution is displayed in the scrolling area;
[0035] The amount of nutrient solution fed is displayed in the fixed area or the scrolling area.
[0036] A seventh aspect of this application provides a nutrient pump, comprising:
[0037] The nutrient pump includes a housing, a processor, a memory, a drive assembly, and a touchscreen. The processor and the memory are located inside the housing. The drive assembly is mounted on a first side of the housing, and the touchscreen is mounted on a second side of the housing. The first side and the second side are substantially perpendicular.
[0038] The drive assembly is used to drive the flow of liquid in the infusion tube installed in the nutrient pump;
[0039] The memory is used to store a computer program, which includes at least nutrient pump parameters;
[0040] The touchscreen is used to display the nutrient pump interface and receive some nutrient pump parameters input by the user.
[0041] The processor is configured to acquire the parameters of the nutrient pump and execute the nutrient pump information display method provided in the first, second, third, fourth, fifth, or sixth aspects.
[0042] As can be seen from the above technical solutions, the embodiments of the present invention have the following advantages:
[0043] The method for displaying information about a nutrient pump in this embodiment includes: acquiring nutrient pump parameters, the nutrient pump parameters including at least an identifier of the nutrient solution, a flow rate of the nutrient solution, and rinsing parameters of the nutrient pump, the rinsing parameters including an automatic rinsing time interval and / or a rinsing volume within the time interval; displaying a nutrient solution flow rate display item, a nutrient pump rinsing parameter display item, and the identifier of the nutrient solution in the nutrient pump interface; generating editing instructions for the nutrient solution flow rate parameters and / or the nutrient pump rinsing parameters in response to a triggering operation on the nutrient solution flow rate display item and / or the nutrient pump rinsing parameters; and setting the nutrient solution flow rate parameters and / or the nutrient pump rinsing parameters according to the editing instructions for the nutrient solution flow rate parameters and / or the nutrient pump rinsing parameters.
[0044] Because the embodiments of this application can simultaneously display the feeding information of the nutrient solution and the flushing parameters of the nutrient pump on the nutrient pump interface, medical staff can obtain the cleaning status of the nutrient pump in a timely manner, thereby avoiding the risk of nutrient solution blockage and correspondingly reducing the workload of medical staff repeatedly asking about the cleaning status of the nutrient pump. Attached Figure Description
[0045] Figure 1 This is a schematic diagram of the nutrient pump in an embodiment of this application;
[0046] Figure 2 This is a schematic diagram of one embodiment of the information display method for the nutrient pump in this application.
[0047] Figure 3 This is a schematic diagram of the interface in this application embodiment showing the flow rate of the nutrient solution, the flushing parameters of the nutrient pump, and the identifier of the nutrient solution in the nutrient pump interface.
[0048] Figure 4 This is a schematic diagram of the interface displaying the continuous feeding amount in the nutrient pump interface in an embodiment of this application.
[0049] Figure 5 This is a schematic diagram of the interface displaying the first intermittent feeding parameters in the intermittent feeding mode in an embodiment of this application;
[0050] Figure 6 This is a schematic diagram of the interface displaying the second intermittent feeding parameters in the intermittent feeding mode in an embodiment of this application;
[0051] Figure 7 This is a schematic diagram of the interface displaying time parameters in the nutrient pump interface in an embodiment of this application;
[0052] Figure 8 This is a schematic diagram of the interface displaying the heating display item in the nutrient pump interface in an embodiment of this application;
[0053] Figure 9 This is a schematic diagram of the interface for displaying alarm notification information in an embodiment of this application;
[0054] Figure 10 This is a schematic diagram of the interface displaying the flushing function display item in the nutrient pump interface in an embodiment of this application;
[0055] Figure 11 This is a historical record diagram in the embodiments of this application;
[0056] Figure 12 This is a schematic diagram of the interface displaying a fixed area and a scrolling area in the nutrient pump interface in an embodiment of this application.
[0057] Figure 13 This is a schematic diagram of another embodiment of the information display method for the nutrient pump in this application;
[0058] Figure 14 This is a schematic diagram of another embodiment of the information display method for the nutrient pump in this application;
[0059] Figure 15 This is a schematic diagram of another embodiment of the information display method of the nutrient pump in this application. Detailed Implementation
[0060] This invention provides a method for displaying information about a nutrient pump and a nutrient pump itself. The method displays feeding information of the nutrient solution and flushing parameters of the nutrient pump on the nutrient pump interface simultaneously, allowing medical staff to obtain the cleaning status of the nutrient pump in a timely manner. This avoids the risk of nutrient solution blockage and reduces the workload of medical staff in repeatedly inquiring about the cleaning status of the nutrient pump.
[0061] To enable those skilled in the art to better understand the present invention, the technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort should fall within the scope of protection of the present invention.
[0062] The terms "first," "second," "third," "fourth," etc., used in the specification, claims, and accompanying drawings of this invention are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover a non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0063] For ease of understanding, the nutrient pump in the embodiments of this application will be described below. Please refer to [link / reference]. Figure 1 Specifically, the nutrient pump in this embodiment includes:
[0064] Housing 10, processor 20 (not shown), memory 30 (not shown), drive assembly 40 and touch screen 50;
[0065] The processor 20 and memory 30 are located inside the housing 10, the drive assembly 40 is mounted on the first side of the housing 10, and the touch screen 50 is mounted on the second side of the housing. The first side and the second side are substantially perpendicular to each other.
[0066] Specifically, the memory 30 in this embodiment can be a flash memory card, solid-state memory, hard disk, etc. It can be volatile memory and / or non-volatile memory, removable memory and / or non-removable memory, etc.
[0067] The processor 20 in the embodiments of this application can be implemented by software, hardware, firmware or any combination thereof, and can be a circuit, a single or multiple application-specific integrated circuits (ASICs), a single or multiple general-purpose integrated circuits, a single or multiple microprocessors, a single or multiple programmable logic devices, or any combination of the foregoing circuits and / or devices, or other suitable circuits or devices, so that the processor 20 can execute the corresponding steps of the methods in the various embodiments of this specification.
[0068] It should be understood that Figure 1The components included in the nutrient pump shown are merely illustrative and may include many more. For example, the nutrient pump may also include input devices such as a keyboard, mouse, scroll wheel, trackball, etc., and / or may include output devices such as a printer. The corresponding external input / output ports may be wireless communication modules, wired communication modules, or a combination of both. External input / output ports may also be implemented based on USB, bus protocols such as CAN, and / or wired network protocols. This invention is not limited in this respect.
[0069] It should be noted that in existing nutrient pumps, the driving component and the display screen are generally placed on the same plane. Due to the limited volume of the nutrient pump, the area of the display screen is relatively small. However, in this embodiment, the driving component 40 and the touch screen 50 are placed on mutually perpendicular sides, so that the touch screen 50 can occupy more space and volume in the nutrient pump. That is, the touch screen 50 of the nutrient pump in this embodiment has a larger display screen than the display screen of the nutrient pump in the prior art, which also provides a structural basis for displaying more nutrient pump parameters on the screen in this embodiment.
[0070] based on Figure 1 The nutrient pump in the embodiment is described below. The method for displaying information using the nutrient pump in this embodiment is also described below. Please refer to [link / reference]. Figure 2 One embodiment of the information display method for the nutrient pump in this application includes:
[0071] 201. Obtain the nutrient pump parameters. The nutrient pump parameters shall include at least the identification of the nutrient solution, the flow rate of the nutrient solution, and the flushing parameters of the nutrient pump. The flushing parameters of the nutrient pump shall include the time interval of automatic flushing of the nutrient pump and / or the flushing volume within the time interval.
[0072] During the process of administering nutrient solutions to patients, most modern nutrient pumps offer an automatic flushing function because the solutions are quite viscous. However, to prevent blockages, medical staff still need to periodically check the cleaning status of the nutrient pump, which increases their workload.
[0073] To address this issue, the embodiments of this application are based on Figure 1 The provided nutrient pump displays its feeding and flushing parameters on a screen, allowing medical staff to monitor the pump's flushing status in real time. This avoids the need for medical staff to periodically check the cleaning status of the patient's nutrient pump and reduces their workload accordingly.
[0074] Specifically, in this embodiment of the application, the nutrient pump parameters are obtained before displaying the nutrient pump parameters. The nutrient pump parameters include at least: the identifier of the nutrient solution, the flow rate of the nutrient solution, and the flushing parameters of the nutrient pump. The flushing parameters of the nutrient pump include the time interval of automatic flushing of the nutrient pump and / or the flushing volume within the time interval.
[0075] The labeling of the nutrient solution primarily indicates the name of the nutrient solution being administered to the patient. This could be a brand name like "Baipuli" or simply the name "Glucose Electrolyte." Alternatively, the label can be a unique identifier composed of characters and / or graphics. There are no specific restrictions on the external form of the label, as long as it serves to uniquely identify the nutrient solution. The flow rate of the nutrient solution refers to the speed at which it is administered into the patient's body, such as 20 ml / h or 50 ml / h. These examples are merely explanations of flow rates, not demonstrations; there are no specific restrictions on the flow rate itself. Furthermore, the flushing parameters of the nutrient pump must include at least the automatic flushing time interval and the flushing volume within that interval. For example, it could be flushing 30 ml every 4 hours or flushing 20 ml every 2 hours, as long as the nutrient pump can be automatically flushed. There are no specific restrictions on the automatic flushing time interval or the flushing volume within that interval.
[0076] 202. Display the flow rate of the nutrient solution, the flushing parameters of the nutrient pump, and the label of the nutrient solution in the nutrient pump interface;
[0077] To facilitate medical staff's access to the patient's feeding information and the nutrient pump's cleaning information at any time, this embodiment of the application displays the nutrient solution flow rate, nutrient pump flushing parameters, and nutrient solution identifier on the nutrient pump interface. For ease of understanding, Figure 3 A schematic diagram is provided showing the flow rate of the nutrient solution, the flushing parameters of the nutrient pump, and the identifier of the nutrient solution in the nutrient pump interface.
[0078] Because the label for the nutrient solution is prescribed by the doctor to the patient, this embodiment displays the nutrient solution label on the nutrient pump interface to allow medical staff to access the patient's nutrient solution infusion information at any time. Since each patient's physical condition and the type of nutrient solution being infused are different, different flow rates are used for each patient's nutrient solution infusion. To ensure patient safety, the nutrient solution flow rate is also displayed on the nutrient pump interface. Furthermore, to prevent nutrient solution blockage, after the nutrient pump is automatically flushed, this embodiment further displays the rinsing parameters of the nutrient pump on the nutrient pump interface, such as the time interval of automatic rinsing and / or the amount of rinsing within that time interval. This allows medical staff to understand the cleaning status and rinsing parameters of the nutrient pump at any time, thereby improving the convenience for medical staff to obtain the nutrient pump cleaning status and correspondingly improving the safety of patients during nutrient solution infusion.
[0079] 203. In response to a trigger operation on the flow rate display item of the nutrient solution and / or the flushing parameter display item of the nutrient pump, generate editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump.
[0080] During the infusion of nutrient solution, the patient's physical condition may change at any time (such as improving or deteriorating). In order to further improve the safety of the nutrient solution during the infusion process, in this embodiment of the application, the flow rate display item of the nutrient solution and / or the flushing parameter display item of the nutrient pump can be modified on the display screen. For example, based on the user's trigger operation on the display screen for the flow rate display item of the nutrient solution and / or the flushing parameter display item of the nutrient pump, editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump can be generated.
[0081] Specifically, the user's trigger operation on the display screen can be a single click, double click, or long press, etc. The specific type of trigger operation is not displayed here. The editing command here is an associated command that is pre-bound to the trigger operation. When a trigger operation is detected on the flow rate display item of the nutrient solution and / or the flushing parameter display item of the nutrient pump, an editing command for the flow rate parameter of the nutrient solution and / or the flushing parameter of the nutrient pump is generated.
[0082] 204. Set the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump according to the editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump.
[0083] After generating editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump, the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump are set according to the editing instructions.
[0084] Specifically, when setting the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump, the flow rate parameters of the nutrient solution can be increased or decreased, the flushing interval of the nutrient pump can be increased or decreased, and the flushing volume within the flushing interval can be increased or decreased, etc. There are no specific restrictions on the process of setting the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump, as long as the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump can be set.
[0085] In this embodiment, the nutrient solution identifier, the nutrient solution flow rate, and the rinsing parameters of the nutrient pump can be displayed on the screen simultaneously. This means that the feeding parameters of the nutrient solution and the rinsing parameters during the feeding process are displayed at the same time, thereby improving the convenience for medical staff to obtain the rinsing parameters during the feeding process, which reduces the workload of medical staff and correspondingly improves the safety of patients during the infusion of nutrient solution.
[0086] based on Figure 2 The following description continues with the nutrient pump parameters displayed in the nutrient pump interface, based on the aforementioned embodiment:
[0087] As an optional embodiment, this application embodiment can further obtain the feeding mode of the nutrient solution, which includes a continuous feeding mode and an intermittent feeding mode, and display different parameters in the nutrient pump interface based on different feeding modes.
[0088] Specifically, if the current feeding mode of the nutrient pump is continuous feeding mode, a prompt message indicating that the current mode is continuous feeding mode will be displayed on the nutrient pump interface. For example, "Continuous Feeding" will be displayed on the nutrient pump interface, or a graphic or identifier representing "Continuous Feeding" will be displayed on the nutrient pump interface. The specific display format of the prompt message for continuous feeding mode is not specified here.
[0089] Furthermore, if the current mode is continuous feeding, the amount of nutrient solution fed during continuous feeding can be obtained and displayed on the nutrient pump interface. Here, continuous feeding means feeding the patient without interruption during the feeding period, and the feeding amount is the continuous amount fed to the patient during continuous feeding. For ease of understanding, Figure 4 A schematic diagram of an interface showing continuous feeding volume is provided. This interface, which displays the continuous feeding mode and feeding volume, improves the convenience for medical staff to obtain the patient's current infusion mode.
[0090] Specifically, if the current feeding mode of the nutrient pump is intermittent feeding mode, a prompt message indicating that the current mode is intermittent feeding mode will be displayed on the nutrient pump interface. This could be done by displaying "Intermittent Feeding" on the nutrient pump interface, or by displaying a graphic or identifier representing "Intermittent Feeding" on the nutrient pump interface. The specific format of the prompt message for intermittent feeding mode will not be shown here.
[0091] Furthermore, since intermittent feeding involves administering a certain amount of nutrient solution to the patient at regular intervals, it is necessary to obtain the total number of feedings, the amount of each feeding, and the interval between feedings in the intermittent feeding mode. Because intermittent feeding involves feeding for a period of time and then stopping, this embodiment displays first intermittent feeding parameters on the nutrient pump interface before the intermittent feeding mode is activated—that is, after the nutrient pump is switched to intermittent feeding mode and before the nutrient solution infusion is started. These first intermittent feeding parameters include the aforementioned total number of feedings, the amount of each feeding, and / or the interval between feedings. This improves the convenience for medical staff to obtain the first intermittent feeding parameters before the intermittent feeding mode is activated, thus enhancing the completeness and comprehensiveness of the nutrient solution infusion status obtained by medical staff throughout the entire nutrient solution infusion process. For ease of understanding... Figure 5 A schematic diagram of the first intermittent feeding parameters displayed in the intermittent feeding mode is given.
[0092] When intermittent feeding is in execution mode, i.e., entering intermittent feeding mode, and after infusion is started, this embodiment further acquires the number of feedings and the amount of food fed in this feeding from the intermittent feeding parameters. It can also acquire the amount of water rinsed during the intermittent feeding process and display a second intermittent feeding parameter on the feeding pump interface. The second intermittent feeding parameter includes at least one of the number of feedings and the amount of food fed in this feeding. To obtain the rinsing status during the intermittent feeding process, this embodiment can also display the amount of water rinsed on the feeding pump interface. Furthermore, to monitor the patient's feeding status throughout the intermittent feeding process, this embodiment can simultaneously display the first and second intermittent feeding parameters on the feeding pump interface, allowing medical staff to monitor the patient's feeding status throughout the intermittent feeding mode, thereby improving the patient's safety during the entire intermittent feeding process. For ease of understanding... Figure 6 A schematic diagram of the second intermittent feeding parameters displayed in the intermittent feeding mode is given.
[0093] based on Figure 4 and Figure 5In the embodiments described above, this application embodiment may further display time parameters on the nutrient pump interface. These time parameters indicate the total feeding time required to complete the nutrient solution feeding in continuous feeding mode, or the total feeding time required to complete a single feeding in intermittent feeding mode, or the remaining feeding time calculated based on the total feeding time and the current time. For ease of understanding, the following example illustrates this:
[0094] In continuous feeding mode, when the feeding volume is 50ml, the time parameter indicates the total time required to feed 50ml of nutrient solution. This total time is calculated based on the feeding volume and flow rate. For example, if the feeding volume is 50ml and the flow rate is 50ml / h, the total time required to feed 50ml is 1 hour. In intermittent feeding mode, when the single feeding volume is 50ml, the time parameter indicates the total time required to feed 50ml of nutrient solution in a single feeding. This total time is also calculated based on the feeding volume and flow rate. For example, if the feeding volume is 50ml and the flow rate is 50ml / h, the total time required to feed 50ml is 1 hour. In addition, the feeding time can also be used to calculate the remaining feeding time based on the total feeding time and the current time. For example, in continuous feeding mode, if the total feeding time is 1 hour, a countdown is performed based on the current time and the total feeding time to calculate the remaining feeding time. Figure 7 A schematic diagram of the interface of the nutrient pump that displays time parameters is provided.
[0095] As an optional embodiment, this application embodiment can also display a heating display item in the nutrient pump interface. This heating display item is used to set and display the preset heating temperature of the nutrient solution. In response to a trigger operation on the nutrient solution heating display item, an editing instruction for the preset heating temperature of the nutrient solution is generated. Based on the editing instruction for the preset heating temperature of the nutrient solution, the preset heating temperature of the nutrient solution is set. For ease of understanding, Figure 8 A schematic diagram of the nutrient pump interface with a heating display is provided.
[0096] Specifically, the heating display can be shown in the form of characters and / or graphics, and the heating display can set the preset heating temperature of the nutrient solution based on the user's single click, double click, or long press operation. For example, in a clinical setting, for patients in poor physical condition, the temperature of the nutrient solution generally needs to be heated to a slightly higher temperature, such as 25°C, while for other patients, the temperature of the nutrient solution can be heated to 20°C or 18°C, etc., to improve the comfort of the nutrient solution entering the body and correspondingly improve the safety of the patient during the nutrient solution infusion process.
[0097] As an optional embodiment, the heating display item in this application includes a temperature icon, which includes a failed state and a valid state. To ensure the normal operation of the heating function of the nutrient solution in the nutrient pump, the current state of the temperature icon is obtained after the nutrient pump starts feeding. If the current state of the temperature icon is a failed state, an alarm message is displayed. This alarm message is used to instruct the nutrient pump to be connected to a heater, thereby ensuring the normal use of the nutrient solution heating function in the nutrient pump. For ease of understanding... Figure 9 A schematic diagram of the nutrient pump interface with alarm prompts is provided.
[0098] Specifically, the alarm information here can be displayed in the form of text, icons, audio and / or video. There are no specific restrictions on the display format of the alarm information.
[0099] As an optional embodiment, this application embodiment can also display a flushing function display item in the feeding pump interface. When the flushing function display item is triggered, the feeding pump interface switches to the flushing interface. Specifically, the triggering operation can be a single click, double click, or long press, etc., and there is no specific limitation on the form of the triggering operation. This method of triggering the switching from the feeding pump interface to the flushing interface through an interface display item improves the convenience of the switching process and correspondingly improves the convenience for medical staff to switch from the feeding interface to the flushing interface while caring for patients. For ease of understanding, Figure 10 A schematic diagram of the nutrient pump interface with a flushing function display is provided.
[0100] As an optional embodiment, when the nutrient pump interface cannot display all the nutrient pump parameters, this application can also generate a sliding command in response to the sliding operation on the nutrient pump interface, and display the hidden parameters in the nutrient pump parameters according to the sliding command. This method of displaying hidden parameters through sliding commands improves the convenience of displaying multiple parameters in the nutrient pump interface.
[0101] As an optional embodiment, to improve the convenience of tracing the nutrient infusion process after the patient has completed the infusion, this embodiment can also obtain the feeding time period of the nutrient solution after feeding is completed, and save the feeding time period and the preset nutrient pump parameters within the feeding time period to the history record. The preset nutrient pump parameters include at least one of the following: the identifier of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the flushing volume of the flushing fluid. For ease of understanding... Figure 11 A historical diagram showing the feeding time period and the preset nutrient pump parameters within that feeding time period is provided.
[0102] If a patient feels unwell after completing the infusion of nutrient solution, this embodiment of the application can also trace the patient's nutrient solution feeding time period through historical records, as well as the identification of the nutrient solution fed during the feeding time period, the flow rate of the nutrient solution, the feeding sample of the nutrient solution, and the flushing volume of the flushing solution. This makes it convenient for medical staff to understand the patient's feeding situation during the nutrient solution infusion process, and to change or adjust the nutrient solution according to the patient's physical condition. In other words, it improves the convenience of tracing historical feeding situation and correspondingly improves the safety of the patient's feeding process.
[0103] As an optional embodiment, in order to prevent medical staff from misoperating the feeding mode, feeding amount and time parameters of the nutrient solution during the feeding process, thereby causing errors in the patient's feeding information, this embodiment of the application may also display at least one of the following parameters in the non-editable area of the nutrient pump: the identifier of the nutrient solution, the feeding mode of the nutrient solution, the feeding amount and time parameter. This makes the above parameters displayed in the nutrient pump interface uneditable and unchangeable, thereby preventing medical staff from misoperating the nutrient pump parameters when busy, and correspondingly improving the safety of the patient's feeding process.
[0104] Furthermore, since each patient's condition is different, this embodiment of the application can also use different function nutrition pumps according to each patient's condition. Generally, nutrition pumps with different functions are identified by their identifiers. Therefore, this embodiment of the application can also display the nutrition pump identifier in the non-editable area of the nutrition pump, so that medical staff can obtain and identify the nutrition pump information of each patient based on the identifier. This method of displaying the nutrition pump identifier in the non-editable area avoids misoperation by medical staff and correspondingly improves the safety of the patient feeding process.
[0105] As an optional embodiment, this application embodiment can further divide the nutrient pump interface into a fixed area and a scrolling area. The fixed area is used to display some nutrient pump parameters in a fixed position. This fixed display means that the nutrient pump parameters are displayed in a fixed position on the screen for a long time, that is, they are not affected by user operations. For example, regardless of whether the user performs a swipe operation on the screen, these parameters are displayed in a fixed position and will not be affected by user operations. The scrolling area is used to display some nutrient pump parameters based on a triggered operation. For example, when the user performs a swipe operation in the scrolling area, the nutrient pump parameters that are hidden in the scrolling area can be displayed. Of course, the way to trigger the scrolling display can also be that the computer automatically performs scrolling in real time, etc. There are no specific limitations on the triggering mechanism of the scrolling area here.
[0106] The following describes the information display method of the nutrient pump in this embodiment from the perspective of partitioned display (divided into fixed areas and scrolling areas):
[0107] As an optional embodiment, this application may display the nutrient solution flow rate and nutrient solution identifier in a fixed area, while displaying the nutrient pump flushing parameters in a scrolling area. The nutrient pump flushing parameters include at least the time interval for automatic nutrient solution flushing and / or the flushing volume within that time interval. For ease of understanding, Figure 12 Interface diagrams for fixed and scrolling areas are provided.
[0108] During the infusion of nutritional fluids to patients, the flow rate and labeling of the nutrient solution are crucial, as they directly affect the safety of the infusion process. An excessively fast flow rate can endanger the patient's life, while a slow flow rate leads to prolonged infusion times, hindering recovery. Incorrect labeling can also directly impact the patient's safety. Therefore, to improve the safety of the infusion process, this embodiment displays the flow rate and labeling of the nutrient solution in a fixed area, allowing medical staff to readily access these information and thus enhancing patient safety during infusion.
[0109] Furthermore, since the viscosity of the same nutrient solution is fixed during infusion, the flushing parameters of the nutrient pump are generally fixed after the flushing parameters are set during nutrient solution feeding. Moreover, medical staff will only check the flushing parameters if they are paying attention to them. Therefore, this embodiment displays the flushing parameters of the nutrient pump in a scrolling area, so that when there are too many parameters displayed in the scrolling area, the user can display the hidden flushing parameters by scrolling. This provides a basis for displaying more parameters in the nutrient pump interface while ensuring that the flushing parameters of the nutrient pump can be viewed.
[0110] Furthermore, the feeding process generally includes the amount of nutrient solution fed. In order to improve the convenience for users to view the feeding amount, this embodiment of the application can also display the feeding amount of nutrient solution in a fixed area or a scrolling area, thereby improving the convenience of obtaining the feeding amount of nutrient solution.
[0111] Furthermore, the nutrient pump parameters also include the feeding mode of the nutrient solution, which includes a continuous feeding mode or an intermittent feeding mode. In order to distinguish the current mode, this embodiment of the application can also display a prompt message in a fixed area indicating whether the current mode is a continuous feeding mode or an intermittent feeding mode. Specifically, the prompt message can be characters, graphics, audio and / or video, etc., and there are no specific limitations on the form of the prompt message.
[0112] Furthermore, as an optional embodiment, when the feeding mode of the nutrient solution is intermittent feeding mode, this embodiment of the application can also display a first intermittent feeding parameter in a scrolling area before the nutrient pump enters the intermittent feeding mode and before the nutrient solution infusion is started. The first intermittent feeding parameter includes a preset total number of feedings, a preset single feeding amount, and / or the interval feeding time. This improves the completeness and comprehensiveness of the patient's entire feeding information obtained by medical staff under intermittent feeding mode.
[0113] Furthermore, as an optional embodiment, when the feeding pump enters intermittent feeding mode and the nutrient solution infusion is started, a second intermittent feeding parameter is displayed in the scrolling area. This second intermittent feeding parameter includes the number of feedings and / or the amount fed in this feeding, thereby improving the convenience for medical staff to obtain patient feeding information during the patient's intermittent feeding phase. Because the number of first and second intermittent feeding parameters in this embodiment is relatively large, and given a fixed screen area, this embodiment provides a basis for displaying more parameters on the feeding pump interface by displaying the first and second feeding parameters in the scrolling area. Specifically, a schematic diagram of the first and second intermittent feeding parameters is shown here. Figures 5 to 6 The descriptions are similar and can be used for reference; they will not be shown here again.
[0114] Furthermore, as an optional embodiment, this application embodiment can also display time parameters in a scrolling area, wherein the time parameters are used to indicate the total feeding time required to complete the feeding of the nutrient solution in the continuous feeding mode and the single feeding amount in the intermittent mode, and / or the remaining feeding time calculated based on the total feeding time and the current time. The description of the time parameters and the schematic diagram of their display are consistent with... Figure 7 The descriptions in the text are similar and can be used for reference; therefore, they will not be repeated here.
[0115] Furthermore, as an optional embodiment, this application embodiment can also display a preset heating temperature in a scrolling area. The preset heating temperature indicates the temperature to which the nutrient solution is heated. Heating the nutrient solution can significantly improve the comfort of nutrient infusion into the body, thus improving the safety of patients during nutrient feeding. The display diagram of the preset heating temperature is shown below. Figure 8 Similar examples are not shown here.
[0116] Furthermore, as an optional embodiment, if the scrolling area of the nutrient pump cannot fully display the nutrient pump parameters set in the scrolling area, a sliding command can be generated in response to the sliding operation of the scrolling area, and the hidden parameters set in the scrolling area can be displayed according to the sliding command.
[0117] Because the embodiments of this application can simultaneously display the feeding mode, feeding amount, first intermittent feeding parameters, second intermittent feeding parameters, time parameters and preset heating temperature in the scrolling area, and can display hidden parameters in the scrolling area based on the sliding operation, thereby improving the convenience for users to set multiple parameters in the nutrition pump interface.
[0118] based on Figure 1 The nutrient pump in the embodiment is described below. The method for displaying information of the nutrient pump in the embodiment of this application is described below. Specifically, the nutrient pump in the embodiment of this application has a nutrient pump interface, and the nutrient pump interface includes a fixed area and a scrolling area. The fixed area is used to display some nutrient pump parameters in a fixed manner, and the scrolling area is used to scroll and display another part of the nutrient pump parameters based on a trigger operation.
[0119] Please see Figure 13 One embodiment of the information display method for the nutrient pump in this application includes:
[0120] 1301. Obtain the nutrient pump parameters. The nutrient pump parameters shall include at least the identification of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the flushing parameters of the nutrient pump. The flushing parameters of the nutrient pump shall include at least the time interval of the nutrient pump flushing and / or the flushing volume within the time interval.
[0121] Before displaying the nutrient pump parameters, this embodiment first obtains the nutrient pump parameters, which include at least: the identifier of the nutrient solution, the flow rate of the nutrient solution, and the flushing parameters of the nutrient pump. The flushing parameters of the nutrient pump include the time interval for automatic flushing of the nutrient pump and / or the flushing volume within the time interval.
[0122] The labeling of the nutrient solution primarily indicates the name of the nutrient solution being administered to the patient. For example, the nutrient solution could be a brand name like "Baipuli" or a name like "Glucose Electrolyte." Alternatively, the label can be a unique identifier composed of characters and / or graphics. There are no specific restrictions on the form of the label, as long as it uniquely identifies the nutrient solution. The flow rate of the nutrient solution refers to the speed at which it is administered into the patient's body, such as 20 ml / h or 50 ml / h. There are no specific restrictions on the flow rate. Furthermore, the flushing parameters of the nutrient pump must include at least the automatic flushing time interval and the flushing volume within that interval. For example, it could be flushing 30 ml every 4 hours or flushing 20 ml every 2 hours. There are no specific restrictions on the automatic flushing time interval or the flushing volume within that interval.
[0123] 1302. Display the nutrient solution identifier and flow rate in the fixed area, and display the nutrient pump flushing parameters in the rolling area;
[0124] The fixed area here refers to the area where the nutrient pump parameters can be displayed in a fixed position for a long time, and the nutrient pump parameters displayed in the fixed area will not disappear due to user operation. For example, regardless of whether the user is swiping on the screen, these parameters are displayed in a fixed position and will not be affected by user operation.
[0125] During the infusion of nutritional fluids to patients, the flow rate and labeling of the nutrient solution are crucial, as they directly affect the safety of the infusion process. An excessively fast flow rate can endanger the patient's life, while a flow rate that is too slow will result in a prolonged infusion time, hindering recovery. Incorrect labeling of the nutrient solution can also directly impact the patient's life. Therefore, to improve safety, this embodiment of the application displays the flow rate and labeling of the nutrient solution in a fixed area to enhance patient safety during the infusion process.
[0126] Furthermore, since the viscosity of the same nutrient solution is fixed during infusion, the flushing parameters of the nutrient pump are generally fixed after the flushing parameters are set during nutrient feeding. Medical staff only check the flushing parameters when they are focused on them. Therefore, this embodiment displays the nutrient pump's flushing parameters in a scrolling area, allowing users to see hidden flushing parameters when there are too many displayed parameters in the scrolling area. The schematic diagrams of the fixed and scrolling areas in this embodiment are consistent with... Figure 12 Similar examples are shown in the text and will not be shown here.
[0127] 1303. Display the amount of nutrient solution fed in a fixed area or a scrolling area.
[0128] Feeding amount is an important parameter in the feeding process and is not easily changed after being set. Therefore, in this embodiment, the feeding amount of nutrient solution is displayed in a fixed area or a scrolling area. As long as the user can obtain the feeding amount parameter during the feeding process, there is no specific limitation on the specific display area of the feeding amount.
[0129] In this embodiment, a fixed area and a scrolling area are set in the nutrition pump interface, so that medical staff can display important parameters in the fixed area and less important parameters in the scrolling area. Furthermore, users can also display hidden parameters in the scrolling area based on user triggering operations, thereby improving the convenience for users to set multiple parameters in the nutrition pump interface and the convenience for obtaining important parameters.
[0130] based on Figure 13In one optional embodiment, the nutrient pump parameters further include the feeding mode of the nutrient solution. This feeding mode may include a continuous feeding mode or an intermittent feeding mode. To distinguish the current mode, this embodiment may also display a prompt indicating whether the current mode is continuous or intermittent in a fixed area, improving the convenience for medical staff to obtain the patient's current infusion mode during busy periods. Specifically, the prompt information may be characters, graphics, audio, and / or video, etc., and there are no specific limitations on the form of the prompt information.
[0131] Furthermore, as an optional embodiment, when the feeding mode of the nutrient solution is the intermittent feeding mode, this embodiment of the application can also display the first intermittent feeding parameters in the scrolling area before the nutrient pump enters the intermittent feeding mode and the nutrient solution infusion is started. The first intermittent feeding parameters include the preset total number of feedings, the preset single feeding amount and / or the interval feeding time, thereby improving the convenience for medical staff to obtain the first intermittent feeding parameters in the intermittent feeding mode.
[0132] Furthermore, as an optional embodiment, when the feeding pump enters intermittent feeding mode and the nutrient solution infusion is started, a second intermittent feeding parameter is displayed in the scrolling area. This second intermittent feeding parameter includes the number of feedings and / or the amount fed in this feeding, thereby improving the convenience for medical staff to obtain patient feeding information during the patient's intermittent feeding phase. Because the number of first and second intermittent feeding parameters in this embodiment is relatively large, and given a fixed screen area, this embodiment provides a basis for displaying more parameters in the feeding pump interface by displaying the first and second feeding parameters in the scrolling area. Specifically, a schematic diagram showing the first and second intermittent feeding parameters is provided here. Figures 5 to 6 The descriptions are similar and can be used for reference; further details will not be provided here.
[0133] Furthermore, as an optional embodiment, this application embodiment can also display time parameters in a scrolling area, wherein the time parameters are used to indicate the total feeding time required to complete the feeding of the nutrient solution in the continuous feeding mode and the single feeding amount in the intermittent mode, and / or the remaining feeding time calculated based on the total feeding time and the current time. The description of the time parameters and the schematic diagram of their display are consistent with... Figure 7 The descriptions in the text are similar and can be used for reference; therefore, they will not be repeated here.
[0134] Furthermore, as an optional embodiment, this application embodiment can also display a preset heating temperature in a scrolling area. The preset heating temperature indicates the temperature to which the nutrient solution is heated. Heating the nutrient solution can significantly improve the comfort of nutrient infusion into the body, thus improving the safety of patients during nutrient feeding. The display diagram of the preset heating temperature is shown below. Figure 8 Similar to that, it will not be elaborated here.
[0135] Furthermore, as an optional embodiment, if the scrolling area of the nutrient pump cannot display all the nutrient pump parameters set in the scrolling area, a sliding command can be generated in response to the sliding operation of the scrolling area, and the hidden parameters set in the scrolling area can be displayed according to the sliding command, thereby improving the convenience for users to obtain multiple parameters in the scrolling area.
[0136] Furthermore, as an optional embodiment, a heating display item can also be displayed in the scrolling area. This heating display item includes a temperature icon, which includes both a faulty and an active state. To ensure the heating function of the nutrient solution in the nutrient pump works properly, the current state of the temperature icon is obtained after the nutrient pump starts feeding. If the current state of the temperature icon is faulty, an alarm message is displayed. This alarm message instructs the nutrient pump to be connected to a heater, thereby ensuring the normal operation of the nutrient pump's heating function. For ease of understanding, the alarm message diagram in this embodiment is similar to... Figure 9 Similar examples are shown in the text, and will not be repeated here.
[0137] Specifically, the alarm information here can be displayed in the form of text, icons, audio and / or video. There are no specific restrictions on the display format of the alarm information.
[0138] Furthermore, as an optional embodiment, to improve the convenience of tracing the nutrient infusion process after the patient completes the infusion, this embodiment can also obtain the feeding time period of the nutrient solution after feeding is completed, and save the feeding time period and the preset nutrient pump parameters within the feeding time period to the history record. The preset nutrient pump parameters include at least one of the following: the identifier of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the flushing volume of the flushing solution. For ease of understanding, the history record diagram in this embodiment is similar to... Figure 11 Similar examples are shown in the text, and will not be repeated here.
[0139] Because if a patient feels unwell after completing the infusion of nutrient solution, this embodiment of the application can also trace the patient's nutrient solution feeding time period through historical records, as well as the identification of the nutrient solution fed during the feeding time period, the flow rate of the nutrient solution, the feeding sample of the nutrient solution, and the flushing volume of the flushing solution. This makes it convenient for medical staff to understand the patient's feeding situation during the nutrient solution infusion process and make adjustments according to the patient's physical condition. In other words, it improves the convenience of tracing historical feeding situation and correspondingly improves the safety of the patient's feeding process.
[0140] Furthermore, as an optional embodiment, the nutrition pump parameters may also include a nutrition pump identifier. In this embodiment, the nutrition pump identifier may also be displayed in a fixed area. Since each patient's condition is different, this embodiment may also use nutrition pumps with different functions according to each patient's condition. Generally, nutrition pumps with different functions are identified by their identifiers. Therefore, this embodiment may also display the nutrition pump identifier in a fixed area, so that medical staff can obtain and identify the nutrition pump information for each patient based on the identifier. This method of displaying the nutrition pump identifier in a fixed area improves the convenience for medical staff to obtain the nutrition pump identifier.
[0141] The information display method of the nutrient pump in the embodiments of this application will be described next, wherein the nutrient pump in the embodiments of this application is no longer limited to Figure 1 The structural form of the nutrient pump given in the embodiments is only required as long as the nutrient pump includes a drive component, a memory, a processor and a display interface. The display interface in the embodiments of this application can be the hardware structure of the nutrient pump itself, or it can be the display interface of a display screen that is communicatively connected to the nutrient pump. There are no specific limitations on the display interface of the nutrient pump here.
[0142] The information display method of the nutrient pump in the embodiments of this application will be described below:
[0143] S1: Obtain nutrient pump parameters. The nutrient pump parameters include at least the nutrient solution identifier, the nutrient solution flow rate, and the nutrient pump flushing parameters. The nutrient pump flushing parameters include the time interval for automatic flushing of the nutrient pump and / or the flushing volume within the time interval.
[0144] S2: Display the flow rate of the nutrient solution, the flushing parameters of the nutrient pump, and the label of the nutrient solution in the display interface of the nutrient pump.
[0145] S3: In response to a trigger operation on the flow rate display item of the nutrient solution and / or the flushing parameter display item of the nutrient pump, generate editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump.
[0146] S4: Set the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump according to the editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump.
[0147] Specifically, the various steps in the embodiments of this application are the same as... Figure 2 The steps described in steps 201 to 204 of the embodiments are similar and will not be repeated here.
[0148] In this embodiment, the nutrient solution identifier, the nutrient solution flow rate, and the rinsing parameters of the nutrient pump can be displayed on the screen simultaneously. This means that the feeding parameters of the nutrient solution and the rinsing parameters during the feeding process are displayed at the same time, thereby improving the convenience for medical staff to obtain the rinsing parameters during the feeding process, which reduces the workload of medical staff and correspondingly improves the safety of patients during the infusion of nutrient solution.
[0149] As an optional embodiment, the nutrient pump parameters in this application embodiment further include the nutrient solution feeding mode, wherein the nutrient solution feeding mode includes a continuous feeding mode, and the method further includes:
[0150] If the current feeding mode of the nutrient solution is the continuous feeding mode, a prompt message indicating that the current mode is the continuous feeding mode will be displayed on the nutrient pump interface; and / or,
[0151] Obtain the nutrient solution feeding amount in the continuous feeding mode; display a prompt message indicating that the current mode is the continuous feeding mode and / or the nutrient solution feeding amount on the nutrient pump interface.
[0152] As an optional embodiment, the nutrient pump parameters in this application embodiment further include the feeding mode of the nutrient solution including an intermittent feeding mode; the method further includes:
[0153] If the current feeding mode of the nutrient solution is the intermittent feeding mode, a prompt message indicating that the current mode is the intermittent feeding mode will be displayed on the nutrient pump interface.
[0154] As an optional embodiment, the method further includes:
[0155] After the nutrient pump switches to the intermittent feeding mode and before the infusion is started, the first intermittent feeding parameters are displayed on the nutrient pump interface. The intermittent feeding parameters include the preset total number of feedings, the preset single feeding amount, and / or the interval feeding time.
[0156] And / or,
[0157] After the nutrient pump switches to the intermittent feeding mode and starts infusion, at least one of the number of feedings and the amount of feeding in this feeding is obtained from the intermittent feeding parameters; a second intermittent feeding parameter is displayed on the nutrient pump interface, the second intermittent feeding parameter including the number of feedings and / or the amount of feeding in this feeding.
[0158] As an optional embodiment, the nutrient pump parameters also include a preset heating temperature of the nutrient solution;
[0159] The method further includes:
[0160] Obtain the preset heating temperature of the nutrient solution; display a heating display item in the nutrient pump interface, the heating display item being used to set and display the preset heating temperature; in response to a trigger operation on the heating display item, generate an editing instruction for the preset heating temperature; set the preset heating temperature according to the editing instruction for the preset heating temperature.
[0161] Specifically, the descriptions of the above steps are similar to those in the above method embodiments and can be referred to each other, so they will not be repeated here.
[0162] In this embodiment, by displaying the feeding mode, first intermittent feeding parameters, second intermittent feeding parameters, and preset heating temperature on the nutrition pump interface, the convenience for medical staff to obtain the above parameters is improved, and the safety of the patient's nutrient solution infusion process is also improved accordingly.
[0163] The information display method of the nutrient pump in the embodiments of this application will be described next. The nutrient pump in the embodiments of this application is not limited to... Figure 1 The structural form of the nutrient pump given in the embodiments is only required as long as the nutrient pump includes a drive component, a memory, a processor and a display interface. The display interface in the embodiments of this application can be the hardware structure of the nutrient pump itself, or it can be the display interface of a display screen that is communicatively connected to the nutrient pump. There are no specific limitations on the display interface of the nutrient pump here.
[0164] The information display method of the nutrient pump in the embodiments of this application will be described below:
[0165] S1: Obtain the nutrient pump parameters, which include at least the identifier of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the flushing parameters of the nutrient pump. The flushing parameters of the nutrient pump include at least the time interval of the nutrient pump flushing and / or the flushing volume within the time interval.
[0166] S2: Display the identifier of the nutrient solution and the flow rate of the nutrient solution in the fixed area, and display the flushing parameters of the nutrient pump in the rolling area;
[0167] S3: Display the feeding amount of the nutrient solution in the fixed area or the rolling area.
[0168] The descriptions of the above steps are as follows: Figure 13 The steps described in the embodiments are similar and will not be repeated here.
[0169] In this embodiment, a fixed area and a scrolling area are set in the nutrition pump interface, so that medical staff can display important parameters in the fixed area and less important parameters in the scrolling area. Furthermore, users can also display hidden parameters in the scrolling area based on user triggering operations, thereby improving the convenience for users to set multiple parameters in the nutrition pump interface and the convenience for obtaining important parameters.
[0170] As an optional embodiment, the nutrient pump parameters in this application embodiment may further include the nutrient solution feeding mode, which includes a continuous feeding mode or an intermittent feeding mode.
[0171] The method further includes:
[0172] The fixed area displays a prompt indicating that the current mode is continuous feeding or intermittent feeding.
[0173] As an optional embodiment, the method further includes:
[0174] If the feeding mode of the nutrient solution is switched to the intermittent feeding mode, and before the infusion is started, the first intermittent feeding parameters are displayed in the scrolling area, the intermittent feeding parameters include the preset total number of feedings, the preset single feeding amount and / or the interval feeding time;
[0175] And / or,
[0176] After the nutrient pump switches to the intermittent feeding mode and starts infusion, at least one of the number of feedings and the amount of feeding in this feeding is obtained from the intermittent feeding parameters; a second intermittent feeding parameter is displayed in the scrolling area, the second intermittent feeding parameter including the number of feedings and / or the amount of feeding in this feeding.
[0177] As an optional embodiment, the nutrient pump parameters also include a preset heating temperature for the nutrient pump;
[0178] The method further includes:
[0179] Obtain the preset heating temperature of the nutrient pump; display the preset heating temperature in the scrolling area.
[0180] In this embodiment, a scrolling area is set, and the above-mentioned multiple parameters can be set in the scrolling area, so that the multiple parameters set in the scrolling area are displayed based on the user's trigger operation, thereby improving the convenience for the user to set multiple parameters in the display interface of the nutrient pump.
[0181] The information display method of the nutrient pump in the embodiments of this application will be described next. The nutrient pump in the embodiments of this application is not limited to... Figure 1 The structural form of the nutrient pump given in the embodiments is only required as long as the nutrient pump includes a drive component, a memory, a processor and a display interface. The display interface in the embodiments of this application can be the hardware structure of the nutrient pump itself, or it can be the display interface of a display screen that is communicatively connected to the nutrient pump. There are no specific limitations on the display interface of the nutrient pump here.
[0182] The following describes the information display method of the nutrient pump in the embodiments of this application. Please refer to [link / reference]. Figure 14 One embodiment of the information display method for the nutrient pump in this application includes:
[0183] 1401. Obtain the nutrient pump parameters, which should include at least the nutrient solution label, the nutrient solution flow rate, and the preset heating temperature of the nutrient solution.
[0184] Before displaying the nutrient pump parameters, this embodiment first obtains the nutrient pump parameters, which include at least: the identifier of the nutrient solution, the flow rate of the nutrient solution, and the preset heating temperature of the nutrient solution.
[0185] Specifically, the labeling of the nutrient solution is mainly used to display the name of the nutrient solution being administered to the patient. For example, the nutrient solution could be the brand name "Baipuli" or the name "Glucose Electrolyte," etc. Of course, the labeling can also be a unique identifier composed of characters and / or graphics. There are no specific restrictions on the form of the labeling, as long as it serves to uniquely identify the nutrient solution. The flow rate of the nutrient solution refers to the speed at which the nutrient solution is administered into the patient's body, such as 20 ml / h or 50 ml / h. There are no specific restrictions on the flow rate of the nutrient solution.
[0186] Furthermore, to avoid patient discomfort caused by excessively low temperatures during nutrient infusion, this embodiment of the application can heat the nutrient solution to a preset temperature. For patients in poor physical condition, the temperature of the nutrient solution generally needs to be heated to a slightly higher temperature, such as 25°C, while for other patients, the temperature of the nutrient solution can be heated to 20°C or 18°C, etc., to improve the comfort of the nutrient solution entering the body and correspondingly improve the safety of the patient during the nutrient infusion process.
[0187] 1402. The nutrient pump's display interface shows the nutrient solution flow rate, nutrient solution heating, and nutrient solution label. The heating display is used to display and set the preset heating temperature.
[0188] To facilitate medical staff in viewing the patient's feeding information at any time, this embodiment of the application can also display the flow rate of the nutrient solution, the identifier of the nutrient solution, and the heating status of the nutrient solution on the display interface of the nutrient pump, so as to facilitate medical staff in understanding the patient's feeding information at any time.
[0189] Specifically, the heating display item in this embodiment is used to display and set the preset heating temperature so as to facilitate the setting of the preset heating temperature of the nutrient solution.
[0190] 1403. In response to a trigger operation on the flow rate display item and / or the heating display item of the nutrient solution, generate editing instructions for the flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution.
[0191] During the infusion of nutrient solution, the patient's physical condition may change at any time (such as improving or deteriorating). In order to further improve the safety of the nutrient solution during the infusion process, in this embodiment of the application, the flow rate display item and / or the heating display item of the nutrient solution can also be modified on the display screen. For example, based on the user's trigger operation on the nutrient solution flow rate display item and / or the heating display item of the nutrient solution on the display screen, editing instructions for the nutrient solution flow rate and / or the preset heating temperature of the nutrient solution can be generated.
[0192] Specifically, the user's trigger operation on the display screen can be a single click, double click, or long press, etc. The specific type of trigger operation is not shown here. The editing command here is an associated command that is pre-bound to the trigger operation. When a trigger operation is detected for the flow rate display item and / or the heating display item of the nutrient solution, an editing command for the flow rate parameter of the nutrient solution and / or the preset heating temperature of the nutrient solution is generated.
[0193] 1404. Set the flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution according to the editing instructions for the flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution.
[0194] After generating editing instructions for the flow rate parameters and / or preset heating temperature of the nutrient solution, the flow rate and / or preset heating temperature of the nutrient solution are set according to the editing instructions.
[0195] Specifically, when setting the flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution, the flow rate parameter of the nutrient solution can be increased or decreased, and the preset heating temperature of the nutrient solution can be increased or decreased. There are no specific restrictions on the process of setting the flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution.
[0196] In this embodiment, the nutrient solution identifier, the nutrient solution flow rate, and the preset heating temperature of the nutrient solution can be displayed on the screen simultaneously, thereby improving the convenience for medical staff to obtain feeding information during the patient's feeding process, which also reduces the workload of medical staff. Furthermore, in this embodiment, the preset heating temperature of the nutrient solution can be set on the display interface, thereby improving the comfort and safety of the patient during the nutrient infusion process.
[0197] As an optional embodiment, the nutrient pump parameters in this application embodiment also include the nutrient solution feeding mode, wherein the nutrient solution feeding mode includes a continuous feeding mode;
[0198] The method further includes: if the current feeding mode of the nutrient solution is the continuous feeding mode, then displaying a prompt message that the current mode is the continuous feeding mode on the display interface of the nutrient pump;
[0199] And / or, obtain the amount of nutrient solution fed in the continuous feeding mode; display a prompt message indicating that the current mode is the continuous feeding mode and / or the amount of nutrient solution fed in the display interface of the nutrient pump.
[0200] As an optional embodiment, the nutrient pump parameters also include the feeding mode of the nutrient solution, which includes an intermittent feeding mode; the method further includes: if the current nutrient solution feeding mode is the intermittent feeding mode, then displaying a prompt message indicating that the current mode is the intermittent feeding mode on the display interface of the nutrient pump.
[0201] As an optional embodiment, the method further includes:
[0202] After the nutrient pump switches to the intermittent feeding mode, and before infusion is started, the first intermittent feeding parameters are displayed on the nutrient pump's display interface. These parameters include a preset total number of feedings, a preset single feeding amount, and / or the interval feeding time; and / or,
[0203] After the nutrient pump switches to the intermittent feeding mode and starts infusion, at least one of the number of feedings and the amount of food fed in this feeding is obtained from the intermittent feeding parameters; a second intermittent feeding parameter is displayed on the display interface of the nutrient pump, the second intermittent feeding parameter including the number of feedings and / or the amount of food fed in this feeding.
[0204] As an optional embodiment, the nutrient pump parameters further include time parameters, which are used to indicate the total feeding time required to complete the feeding of the nutrient solution in the continuous feeding mode and the single feeding amount in the intermittent feeding mode, and / or the remaining feeding time calculated based on the total feeding time and the current time; the method further includes: acquiring the time parameters; and displaying the time parameters in the display interface of the nutrient pump.
[0205] As an optional embodiment, the heating display item includes a temperature icon, which includes a failure state and an effective state; the method further includes: after the nutrient pump starts feeding, obtaining the current state of the temperature icon; if the current state of the temperature icon is the failure state, then popping up an alarm message, which is used to instruct the nutrient pump to be connected to the heater.
[0206] As an optional embodiment, the display interface of the nutrient pump further includes a flushing function display item; the method further includes: when the flushing function display item is triggered, switching the display interface of the nutrient pump to the flushing interface.
[0207] As an optional embodiment, if the display interface of the nutrient pump cannot display all the nutrient pump parameters, the method further includes: generating a sliding command in response to a sliding operation on the display interface of the nutrient pump; and displaying hidden parameters among the nutrient pump parameters according to the sliding command.
[0208] As an optional embodiment, the method further includes: if feeding is completed, obtaining the feeding time period of the nutrient solution, and saving the feeding time period of the nutrient solution and preset nutrient pump parameters within the feeding time period to the history record, wherein the preset nutrient pump parameters include at least one of the following: the identifier of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the flushing volume of the flushing solution.
[0209] As an optional embodiment, the nutrient pump parameters further include: nutrient pump flushing parameters, the nutrient pump flushing parameters including the time interval for automatic flushing of the nutrient pump and / or the flushing volume within the time interval; the method further includes: displaying a nutrient pump flushing parameter display item in the display interface of the nutrient pump, generating an editing instruction for the nutrient pump flushing parameter display item in response to a trigger operation on the nutrient pump flushing parameter display item, and setting the nutrient pump flushing parameters according to the editing instruction for the nutrient pump flushing parameter display item.
[0210] Specifically, the processes in the above embodiments are similar to those described in the above method embodiments and can be referred to each other, and will not be repeated here.
[0211] The information display method of the nutrient pump in the embodiments of this application will be described next. The nutrient pump in the embodiments of this application is not limited to... Figure 1 The structural form of the nutrient pump given in the embodiments is only required as long as the nutrient pump includes a drive component, a memory, a processor and a display interface. The display interface in the embodiments of this application can be the hardware structure of the nutrient pump itself, or it can be the display interface of a display screen that is communicatively connected to the nutrient pump. There are no specific limitations on the display interface of the nutrient pump here.
[0212] The following describes the information display method of the nutrient pump in the embodiments of this application. Please refer to [link / reference]. Figure 15 One embodiment of the information display method for the nutrient pump in this application includes:
[0213] The nutrient pump in this embodiment has a display interface, which includes a fixed area and a scrolling area. The fixed area is used to display some nutrient pump parameters, and the scrolling area is used to scroll and display another part of the nutrient pump parameters based on a trigger operation.
[0214] 1501. Obtain the nutrient pump parameters, which should include at least the nutrient solution label, the nutrient solution flow rate, the nutrient solution feeding volume, and the preset heating temperature of the nutrient solution.
[0215] The description of step 1501 is similar to that of step 1401, and will not be repeated here.
[0216] 1502. Display the nutrient solution label and flow rate in a fixed area;
[0217] The fixed area here refers to the area where the nutrient pump parameters can be displayed in a fixed position for a long time, and the nutrient pump parameters displayed in the fixed area will not disappear due to user operation. For example, regardless of whether the user is swiping on the screen, these parameters are displayed in a fixed position and will not be affected by user operation.
[0218] During the infusion of nutritional fluids to patients, the flow rate and labeling of the nutrient solution are crucial, as they directly affect the safety of the infusion process. An excessively fast flow rate can endanger the patient's life, while a flow rate that is too slow will result in a prolonged infusion time, hindering recovery. Incorrect labeling of the nutrient solution can also directly impact the patient's life. Therefore, to improve safety, this embodiment of the application displays the flow rate and labeling of the nutrient solution in a fixed area to enhance patient safety during the infusion process.
[0219] 1503. Display the preset heating temperature of the nutrient solution in the scrolling area;
[0220] Since the heating temperature of the nutrient solution is preset during infusion and remains constant, this embodiment can also display the preset heating temperature of the nutrient solution in a scrolling area. This allows the user to operate within the scrolling area while the preset heating temperature is displayed on the screen. Furthermore, when there are too many parameters displayed in the scrolling area, hidden parameters can be displayed through scrolling. The schematic diagram of this fixed area and scrolling area in this embodiment is shown below. Figure 12 Similar examples are shown in the text and will not be shown here.
[0221] 1504. Display the amount of nutrient solution fed in a fixed area or a scrolling area.
[0222] Feeding amount is an important parameter in the feeding process and is not easily changed after being set. Therefore, in this embodiment, the feeding amount of nutrient solution is displayed in a fixed area or a scrolling area. As long as the user can obtain the feeding amount parameter during the feeding process, there is no specific limitation on the specific display area of the feeding amount.
[0223] In this embodiment, a fixed area and a scrolling area are set in the nutrition pump interface, so that medical staff can display important parameters in the fixed area and less important parameters in the scrolling area. Furthermore, users can also display hidden parameters in the scrolling area based on user triggering operations, thereby improving the convenience for users to set multiple parameters in the nutrition pump interface and the convenience for obtaining important parameters.
[0224] As an optional embodiment, the nutrient pump parameters in this application embodiment also include the nutrient solution feeding mode, which includes a continuous feeding mode or an intermittent feeding mode.
[0225] The method also includes:
[0226] The system displays a message indicating whether the current mode is continuous feeding or intermittent feeding in the designated area.
[0227] As an optional embodiment, the method further includes:
[0228] If the feeding mode of the nutrient solution is switched to the intermittent feeding mode, and the first intermittent feeding parameters are displayed in the scrolling area before the infusion is started, the intermittent feeding parameters include the preset total number of feedings, the preset single feeding amount and / or the interval feeding time;
[0229] And / or,
[0230] After the nutrient pump switches to the intermittent feeding mode and starts infusion, at least one of the number of feedings and the amount of food fed in this feeding is obtained from the intermittent feeding parameters; a second intermittent feeding parameter is displayed in the scrolling area, which includes the number of feedings and / or the amount of food fed in this feeding.
[0231] As an optional embodiment, the nutrient pump parameters further include a time parameter, which indicates the total feeding time required to complete the nutrient solution feeding amount in the continuous feeding mode and the single feeding amount in the intermittent mode, and / or the remaining feeding time calculated based on the total feeding time and the current time; the method further includes: acquiring the time parameter; and displaying the time parameter in the scrolling area.
[0232] As an optional embodiment, if the nutrient pump parameters set in the scrolling area cannot be fully displayed, the method further includes: generating a sliding command in response to a sliding operation on the scrolling area of the nutrient pump interface; and displaying the hidden parameters set in the scrolling area according to the sliding command.
[0233] As an optional embodiment, a heating display item is displayed in the scrolling area. The heating display item includes a temperature icon, which includes a failure status and an effective status.
[0234] The method further includes: after the infusion pump starts feeding, obtaining the current status of the temperature icon; if the current status of the temperature icon is the failure status, popping up an alarm message, which is used to instruct the nutrient pump to be connected to a heater.
[0235] As an optional embodiment, the method further includes:
[0236] If feeding is completed, the feeding time period of the nutrient solution is obtained; the feeding time period of the nutrient solution and the preset nutrient pump parameters within the feeding time period are saved to the history record. The preset nutrient pump parameters include at least one of the following: the identifier of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the rinsing volume of the rinsing solution.
[0237] As an optional embodiment, the nutrient pump parameters further include: an identifier for the nutrient pump, and the method further includes: displaying the identifier for the nutrient pump in the fixed area.
[0238] As an optional embodiment, the nutrient pump parameters further include: nutrient pump flushing parameters, which include at least the automatic flushing time interval and the flushing volume within the time interval; the method further includes: displaying the nutrient pump flushing parameters in a scrolling area.
[0239] It should be noted that the above steps are similar to those described in the above method embodiments and can be referred to each other. They will not be repeated here.
[0240] It is understood that, in various embodiments of the present invention, the order of the steps does not imply the order of execution. The execution order of each step should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of the present invention.
[0241] The above-described embodiments are only used to illustrate the technical solutions of the present invention, and are not intended to limit it. Although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A method for displaying information from a nutrient pump, characterized in that, The nutrition pump includes a drive assembly and a touch screen. The drive assembly is used to drive the flow of liquid within the infusion tubing installed in the nutrition pump. The touch screen is used to display the nutrition pump interface. The drive assembly is installed on a first side of the nutrition pump, and the touch screen is installed on a second side of the nutrition pump. The first side and the second side are substantially perpendicular. The method includes: Obtain nutrient pump parameters, which include at least the identifier of the nutrient solution, the flow rate of the nutrient solution, and the flushing parameters of the nutrient pump, wherein the flushing parameters of the nutrient pump include the time interval for automatic flushing of the nutrient pump and / or the flushing volume within the time interval. The nutrient pump interface displays the flow rate of the nutrient solution, the flushing parameters of the nutrient pump, and the identifier of the nutrient solution. In response to a trigger operation on the flow rate display item of the nutrient solution and / or the flushing parameter display item of the nutrient pump, an editing instruction for the flow rate parameter of the nutrient solution and / or the flushing parameter of the nutrient pump is generated. The flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump are set according to the editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump.
2. The method according to claim 1, characterized in that, The nutrient pump parameters also include the nutrient solution feeding mode, which includes a continuous feeding mode. The method further includes: If the current nutrient solution feeding mode is the continuous feeding mode, a prompt message indicating that the current mode is the continuous feeding mode will be displayed on the nutrient pump interface. And / or, Obtain the amount of nutrient solution fed in the continuous feeding mode; The nutrient pump interface displays a prompt indicating that the current mode is the continuous feeding mode and / or the amount of nutrient solution being fed.
3. The method according to claim 1, characterized in that, The nutrient pump parameters also include the nutrient solution feeding mode, which includes an intermittent feeding mode. The method further includes: If the current feeding mode of the nutrient solution is the intermittent feeding mode, a prompt message indicating that the current mode is the intermittent feeding mode will be displayed on the nutrient pump interface.
4. The method according to claim 3, characterized in that, The method further includes: After the nutrient pump switches to the intermittent feeding mode and before the infusion is started, the first intermittent feeding parameters are displayed on the nutrient pump interface. The first intermittent feeding parameters include the preset total number of feedings, the preset single feeding amount, and / or the interval feeding time. And / or, After the nutrient pump switches to the intermittent feeding mode and starts infusion, at least one of the number of feedings and the amount of food fed in this feeding is obtained from the intermittent feeding parameters. The nutrition pump interface displays a second intermittent feeding parameter, which includes the number of feedings and / or the amount of food fed in this feeding.
5. The method according to claim 2 or 3, characterized in that, The nutrient pump parameters also include time parameters, which are used to indicate the total feeding time required to complete the nutrient solution feeding amount in the continuous feeding mode and the single feeding amount in the intermittent feeding mode, and / or the remaining feeding time calculated based on the total feeding time and the current time. The method further includes: Obtain the time parameter; The time parameter is displayed in the nutrient pump interface.
6. The method according to claim 1, characterized in that, The nutrient pump parameters also include the preset heating temperature of the nutrient solution; The method further includes: Obtain the preset heating temperature of the nutrient solution; The nutrient pump interface displays a heating display item, which is used to set and display the preset heating temperature. In response to a trigger operation on the heating display item, an editing instruction for the preset heating temperature is generated; The preset heating temperature is set according to the editing instructions for the preset heating temperature.
7. The method according to claim 1, characterized in that, The nutrient pump interface displays a heating display item, which includes a temperature icon, and the temperature icon includes a failure status and an effective status. The method further includes: After the nutrient pump starts feeding, obtain the current status of the temperature icon; If the current state of the temperature icon is the failed state, an alarm message will pop up, which is used to instruct the nutrient pump to be connected to the heater.
8. The method according to claim 7, characterized in that, The nutrient pump interface also includes a flushing function display item; The method further includes: When the flushing function display item is triggered, the nutrient pump interface will be switched to the flushing interface.
9. The method according to any one of claims 1 to 4, or any one of claims 6 to 8, characterized in that, If the nutrient pump interface cannot display all the nutrient pump parameters, the method further includes: A sliding command is generated in response to a sliding operation on the nutrient pump interface; The hidden parameters in the nutrient pump parameters are displayed according to the sliding command.
10. The method according to claim 1, characterized in that, The method further includes: If feeding is completed, obtain the feeding time period of the nutrient solution; The feeding time period of the nutrient solution and the preset nutrient pump parameters within the feeding time period are saved to the history record. The preset nutrient pump parameters include at least one of the following: the identifier of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the rinsing volume of the rinsing solution.
11. The method according to claim 1, characterized in that, The nutrient pump interface includes a non-editable area, and the nutrient pump parameters include at least one of the following: nutrient pump identifier, nutrient solution feeding mode, nutrient solution feeding amount, and time parameter. The nutrient solution feeding mode includes a continuous feeding mode or an intermittent feeding mode. The time parameter is used to indicate the total feeding time required to complete the feeding amount in the continuous feeding mode and the single feeding amount in the intermittent mode, and / or the remaining feeding time calculated based on the total feeding time and the current time. The non-editable area displays at least one of the following: the identifier of the nutrient pump, the identifier of the nutrient solution, the feeding mode of the nutrient solution, the feeding amount of the nutrient solution, and the time parameter.
12. The method according to claim 1, characterized in that, The nutrient pump interface includes a fixed area and a scrolling area, wherein the fixed area is used to display the nutrient pump parameters in a fixed manner, and the scrolling area is used to display the nutrient pump parameters in a scrolling manner based on a trigger operation; The display of the nutrient solution flow rate, the nutrient pump flushing parameters, and the nutrient solution identifier on the nutrient pump interface includes: The flow rate of the nutrient solution and the identifier of the nutrient solution are displayed in the fixed area. The rinsing parameters of the nutrient pump are displayed in the scrolling area.
13. The method according to claim 12, characterized in that, The nutrient pump parameters also include the feeding volume of the nutrient solution, and the method further includes: The feeding amount of the nutrient solution is displayed in the fixed area or the scrolling area.
14. The method according to claim 12, characterized in that, The nutrient pump parameters also include the nutrient solution feeding mode, which includes a continuous feeding mode or an intermittent feeding mode. The method further includes: The system displays a prompt indicating that the current mode is either the continuous feeding mode or the intermittent feeding mode in the fixed area.
15. The method according to claim 14, characterized in that, The method further includes: If the feeding mode of the nutrient solution is switched to the intermittent feeding mode, and before the infusion is started, the first intermittent feeding parameters are displayed in the scrolling area, the first intermittent feeding parameters include the preset total number of feedings, the preset single feeding amount and / or the interval feeding time; And / or, After the nutrient pump switches to the intermittent feeding mode and starts infusion, at least one of the number of feedings and the amount of food fed in this feeding is obtained from the intermittent feeding parameters. The scrolling area displays a second intermittent feeding parameter, which includes the number of feedings and / or the amount fed in the current feeding.
16. The method according to claim 14, characterized in that, The nutrient pump parameters also include time parameters, which are used to indicate the total feeding time required to complete the nutrient solution feeding amount in the continuous feeding mode and the single feeding amount in the intermittent mode, and / or the remaining feeding time calculated based on the total feeding time and the current time. The method further includes: Obtain the time parameter; The time parameter is displayed in the scrolling area.
17. The method according to claim 12, characterized in that, The nutrient pump parameters also include the preset heating temperature of the nutrient solution; The method further includes: Obtain the preset heating temperature of the nutrient solution; The preset heating temperature is displayed in the scrolling area.
18. The method according to claim 12, characterized in that, If the scrolling area cannot display all the nutrient pump parameters set in the scrolling area, the method further includes: In response to a sliding operation on the scrolling area, a sliding command is generated; Based on the sliding command, the hidden parameters set in the scrolling area are displayed.
19. A method for displaying information from a nutrient pump, characterized in that, The nutrition pump includes a drive assembly and a touch screen. The drive assembly is used to drive the flow of liquid in the infusion tube installed in the nutrition pump. The touch screen is used to display the nutrition pump interface. The drive assembly is installed on a first side of the nutrition pump, and the touch screen is installed on a second side of the nutrition pump. The first side and the second side are substantially perpendicular. The nutrient pump interface includes a fixed area and a scrolling area. The fixed area is used to display some nutrient pump parameters in a fixed manner, and the scrolling area is used to display another part of the nutrient pump parameters based on a trigger operation. The method includes: Obtain nutrient pump parameters, which include at least the identification of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the flushing parameters of the nutrient pump, which include at least the time interval for flushing the nutrient pump and / or the flushing volume within the time interval. The fixed area displays the identifier of the nutrient solution and the flow rate of the nutrient solution, while the rolling area displays the flushing parameters of the nutrient pump. The amount of nutrient solution fed is displayed in the fixed area or the scrolling area.
20. The display method according to claim 19, characterized in that, The nutrient pump parameters also include the nutrient solution feeding mode, which includes a continuous feeding mode or an intermittent feeding mode. The method further includes: The system displays a prompt indicating that the current mode is either the continuous feeding mode or the intermittent feeding mode in the fixed area.
21. The display method according to claim 20, characterized in that, The method further includes: If the feeding mode of the nutrient solution is switched to the intermittent feeding mode, and before the infusion is started, the first intermittent feeding parameters are displayed in the scrolling area, the intermittent feeding parameters include the preset total number of feedings, the preset single feeding amount and / or the interval feeding time; And / or, After the nutrient pump switches to the intermittent feeding mode and starts infusion, at least one of the number of feedings and the amount of food fed in this feeding is obtained from the intermittent feeding parameters. The scrolling area displays a second intermittent feeding parameter, which includes the number of feedings and / or the amount fed in the current feeding.
22. The method according to claim 20, characterized in that, The nutrient pump parameters also include time parameters, which are used to indicate the total feeding time required to complete the nutrient solution feeding amount in the continuous feeding mode and the single feeding amount in the intermittent mode, and / or the remaining feeding time calculated based on the total feeding time and the current time. The method further includes: Obtain the time parameter; The time parameter is displayed in the scrolling area.
23. The method according to claim 19, characterized in that, If the scrolling area cannot display all the nutrient pump parameters set in the scrolling area, the method further includes: A sliding command is generated in response to a sliding operation on the scrolling area of the nutrient pump interface; Based on the sliding command, the hidden parameters set in the scrolling area are displayed.
24. The method according to claim 19, characterized in that, The parameters of the nutrient pump also include the preset heating temperature of the nutrient pump; The method further includes: Obtain the preset heating temperature of the nutrient pump; The preset heating temperature is displayed in the scrolling area.
25. The method according to claim 19, characterized in that, A heating display item is displayed in the scrolling area. The heating display item includes a temperature icon, which includes a failure status and an effective status. The method further includes: After the infusion pump starts feeding, obtain the current status of the temperature icon; If the current state of the temperature icon is the failed state, an alarm message will pop up, which is used to instruct the nutrient pump to be connected to the heater.
26. The method according to claim 19, characterized in that, The method further includes: If feeding is completed, obtain the feeding time period of the nutrient solution; The feeding time period of the nutrient solution and the preset nutrient pump parameters within the feeding time period are saved to the history record. The preset nutrient pump parameters include at least one of the following: the identifier of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the rinsing volume of the rinsing solution.
27. The method according to claim 19, characterized in that, The nutrient pump parameters also include: the identifier of the nutrient pump, and the method further includes: The identifier of the nutrient pump is displayed in the fixed area.
28. A method for displaying information from a nutrient pump, characterized in that, The method includes: Obtain nutrient pump parameters, which include at least the identifier of the nutrient solution, the flow rate of the nutrient solution, and the flushing parameters of the nutrient pump, wherein the flushing parameters of the nutrient pump include the time interval for automatic flushing of the nutrient pump and / or the flushing volume within the time interval. The nutrient pump's display interface shows the nutrient solution flow rate, the nutrient pump flushing parameters, and the nutrient solution's identifier. In response to a trigger operation on the flow rate display item of the nutrient solution and / or the flushing parameter display item of the nutrient pump, an editing instruction for the flow rate parameter of the nutrient solution and / or the flushing parameter of the nutrient pump is generated. The flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump are set according to the editing instructions for the flow rate parameters of the nutrient solution and / or the flushing parameters of the nutrient pump.
29. The method according to claim 28, characterized in that, The nutrient pump parameters also include the nutrient solution feeding mode, which includes a continuous feeding mode. The method further includes: If the current feeding mode of the nutrient solution is the continuous feeding mode, a prompt message indicating that the current mode is the continuous feeding mode will be displayed on the display interface of the nutrient pump. And / or, Obtain the amount of nutrient solution fed in the continuous feeding mode; The display interface of the nutrient pump shows a prompt indicating that the current mode is the continuous feeding mode and / or the amount of nutrient solution being fed.
30. The method according to claim 28, characterized in that, The nutrient pump parameters also include the nutrient solution feeding mode, which includes an intermittent feeding mode. The method further includes: If the current feeding mode of the nutrient solution is the intermittent feeding mode, a prompt message indicating that the current mode is the intermittent feeding mode will be displayed on the display interface of the nutrient pump.
31. The method according to claim 30, characterized in that, The method further includes: After the nutrient pump switches to the intermittent feeding mode and before the infusion is started, the first intermittent feeding parameters are displayed on the display interface of the nutrient pump. The intermittent feeding parameters include the preset total number of feedings, the preset single feeding amount, and / or the interval feeding time. And / or, After the nutrient pump switches to the intermittent feeding mode and starts infusion, at least one of the number of feedings and the amount of food fed in this feeding is obtained from the intermittent feeding parameters. The display interface of the nutrient pump shows a second intermittent feeding parameter, which includes the number of feedings and / or the amount of food fed in this feeding.
32. The method according to claim 28, characterized in that, The nutrient pump parameters also include the preset heating temperature of the nutrient solution; The method further includes: Obtain the preset heating temperature of the nutrient solution; The display interface of the nutrient pump displays a heating indicator, which is used to set and display the preset heating temperature; In response to a trigger operation on the heating display item, an editing instruction for the preset heating temperature is generated; The preset heating temperature is set according to the editing instructions for the preset heating temperature.
33. A method for displaying information from a nutrient pump, characterized in that, The nutrient pump has a display interface, which includes a fixed area and a scrolling area. The fixed area is used to display the nutrient pump parameters in a fixed manner, and the scrolling area is used to display the nutrient pump parameters in a scrolling manner based on a trigger operation. The method includes: Obtain the nutrient pump parameters, which include at least the identifier of the nutrient solution, the flow rate of the nutrient solution, the feeding volume of the nutrient solution, and the flushing parameters of the nutrient pump. The flushing parameters of the nutrient pump include at least the time interval of the nutrient pump flushing and / or the flushing volume within the time interval. The fixed area displays the identifier of the nutrient solution and the flow rate of the nutrient solution, while the rolling area displays the flushing parameters of the nutrient pump. The amount of nutrient solution fed is displayed in the fixed area or the scrolling area.
34. The method according to claim 33, characterized in that, The nutrient pump parameters also include the nutrient solution feeding mode, which includes a continuous feeding mode or an intermittent feeding mode. The method further includes: The system displays a prompt indicating that the current mode is either the continuous feeding mode or the intermittent feeding mode in the fixed area.
35. The method according to claim 34, characterized in that, The method further includes: If the feeding mode of the nutrient solution is switched to the intermittent feeding mode, and before the infusion is started, the first intermittent feeding parameters are displayed in the scrolling area, the intermittent feeding parameters include the preset total number of feedings, the preset single feeding amount and / or the interval feeding time; And / or, After the nutrient pump switches to the intermittent feeding mode and starts infusion, at least one of the number of feedings and the amount of food fed in this feeding is obtained from the intermittent feeding parameters. The scrolling area displays a second intermittent feeding parameter, which includes the number of feedings and / or the amount fed in the current feeding.
36. The method according to claim 33, characterized in that, The parameters of the nutrient pump also include the preset heating temperature of the nutrient pump; The method further includes: Obtain the preset heating temperature of the nutrient pump; The preset heating temperature is displayed in the scrolling area.
37. A method for displaying information from a nutrient pump, characterized in that, include: Obtain the nutrient pump parameters, which include at least the identifier of the nutrient solution, the flow rate of the nutrient solution, and the preset heating temperature of the nutrient solution. The nutrient pump's display interface shows the nutrient solution flow rate, the nutrient solution heating, and the nutrient solution's identifier. The heating display is used to display and set the preset heating temperature. In response to a trigger operation on the flow rate display item and / or the heating display item of the nutrient solution, an editing instruction is generated for the flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution. The flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution are set according to the editing instructions for the flow rate of the nutrient solution and / or the preset heating temperature of the nutrient solution.
38. A method for displaying information from a nutrient pump, characterized in that, The nutrient pump has a display interface, which includes a fixed area and a scrolling area. The fixed area is used to display the nutrient pump parameters in a fixed position, and the scrolling area is used to scroll and display the nutrient pump parameters based on a triggered operation. The interface includes: Obtain the nutrient pump parameters, which include at least the nutrient solution identifier, the nutrient solution flow rate, the nutrient solution feeding volume, and the preset heating temperature of the nutrient solution. The identifier of the nutrient solution and the flow rate of the nutrient solution are displayed in the fixed area; The preset heating temperature of the nutrient solution is displayed in the scrolling area; The feeding amount of the nutrient solution is displayed in the fixed area or the scrolling area.
39. A nutrient pump, characterized in that, The nutrient pump includes a housing, a processor, a memory, a drive assembly, and a touchscreen. The processor and the memory are located inside the housing. The drive assembly is mounted on a first side of the housing, and the touchscreen is mounted on a second side of the housing. The first side and the second side are substantially perpendicular. The drive assembly is used to drive the flow of liquid in the infusion tube installed in the nutrient pump; The memory is used to store a computer program, which includes at least nutrient pump parameters; The touchscreen is used to display the nutrient pump interface and receive some nutrient pump parameters input by the user. The processor is configured to acquire the parameters of the nutrient pump and execute the information display method of the nutrient pump as described in any one of claims 1 to 18, or any one of claims 19 to 27, or any one of claims 28 to 32, or any one of claims 33 to 36, or claim 37, or claim 38.