Display method of ultrasonic equipment, ultrasonic equipment and storage medium
By displaying the parameters of different adjustment modes on the same display interface and adding the settings of current parameters in the automatic mode, the problems of inconvenient operation and dispersion of parameters of the uterine repair instrument are solved, and the operation convenience and adjustment effect are improved.
Patent Information
- Application Number
- CN202311667777.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-12-05
- Publication Date
- 2025-06-06
AI Technical Summary
The existing uterine rejuvenation device can easily cause operator fatigue during operation, and the parameter display and adjustment information of different modes are scattered on different screens, resulting in inconvenient operation.
By displaying different adjustment modes on the same display interface, users are allowed to adjust the parameters of each mode through different ultrasonic probes on the same ultrasonic device, add the settings of current parameters in automatic mode, and prohibit adjustment when the parameters are detected to exceed the preset range.
It improves the convenience and efficiency of operation, reduces the risk of operator fatigue, realizes intuitive display and flexible adjustment of parameters of different modes, and improves the adjustment effect of the body state of the target object.
Smart Images

Figure CN120093339A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of electronic medical equipment, and in particular to a display method of an ultrasonic device, an ultrasonic device and a storage medium. Background Art
[0002] The uterine involution device is generally used to regulate or repair the uterus after delivery. It stimulates the uterine smooth muscle, increases the frequency, amplitude, and tension of the rhythmic contraction of the uterine smooth muscle, relieves postpartum pain, and shortens the uterine repair time.
[0003] Uterine rejuvenation devices in the related art mostly manually operate the parameters of the ultrasound probe to adjust or restore the uterus of the parturient, but the operator will feel tired after operating for a period of time, which will affect the repair effect of the uterus. Although there are products that can have both manual mode and automatic mode, the parameter display and adjustment information of the two are displayed on different screens, which is not convenient for the operator to observe the mode parameters under different adjustment modes. Summary of the invention
[0004] In view of this, an embodiment of the present invention provides a display method of an ultrasound device, an ultrasound device, and a storage medium to solve the problem that it is difficult to display mode parameters of different modes on the same interface.
[0005] In a first aspect, an embodiment of the present invention provides a display method for an ultrasound device, comprising: displaying a display area where at least one ultrasound probe is located, and an adjustment mode corresponding to the display area on a display interface of the ultrasound device, the display area including multiple mode parameters corresponding to the adjustment mode; in response to an adjustment operation on at least one mode parameter in the display area, determining a target parameter corresponding to the adjustment mode based on the adjustment operation; and displaying the target parameter in the display area corresponding to each adjustment mode.
[0006] The display method of an ultrasound device provided in an embodiment of the present invention displays different adjustment modes on the same display interface to display the parameter adjustments of different adjustment modes together, making it easy for users to set parameters of different modes by operating different ultrasound probes on the same ultrasound device, thereby making the operation more convenient.
[0007] In an optional embodiment, the display interface includes a first display area and a second display area, the first display area includes a plurality of first parameter adjustment components corresponding to a first adjustment mode, and the second display area includes a plurality of second parameter adjustment components corresponding to a second adjustment mode; in response to an adjustment operation on at least one mode parameter in the display area, a target parameter corresponding to the adjustment mode is determined based on the adjustment operation, including: in response to a trigger operation on the first parameter adjustment component, a first target parameter component currently in an adjustment state is determined, and the first target parameter component is displayed in a first manner, and other parameter components are displayed in a second manner; in response to a parameter adjustment operation on the first target parameter component, a first target parameter corresponding to the first target parameter component is determined, and a parameter adjustment mark for the first adjustment mode is displayed; and / or, in response to a trigger operation on the second parameter adjustment component, a second target parameter component currently in an adjustment state is determined, and the second target parameter component is displayed in a third manner, and other parameter components are displayed in a fourth manner; in response to a parameter adjustment operation on the second target parameter component, a second target parameter corresponding to the second target parameter component is determined, and a parameter adjustment mark for the second adjustment mode is displayed.
[0008] The display method of the ultrasound equipment provided by the embodiment of the present invention supports adjusting the corresponding mode parameters in different adjustment modes through the same display interface, and can display the parameters for different adjustment modes through the same display interface, so that the user can intuitively understand the parameter setting status in each adjustment mode.
[0009] In an optional implementation, the second parameter adjustment component includes a current parameter adjustment component, and the method further includes: determining a current parameter of the second adjustment mode in response to an adjustment operation on the current parameter adjustment component.
[0010] The display method of the ultrasound device provided in the embodiment of the present invention adds settings for current parameters in the automatic mode, thereby realizing the superposition of ultrasound waves and current parameters, making it convenient for users to adaptively adjust the current parameters according to the real-time physical state of the target object, thereby improving the adjustment experience effect for the physical state of the target object.
[0011] In an optional embodiment, the method further includes: detecting whether the adjustment of the mode parameter exceeds a preset parameter range; when the adjustment of the mode parameter exceeds the preset parameter range, prohibiting the adjustment of the mode parameter, and adjusting the parameter adjustment component corresponding to the mode parameter to a disabled component.
[0012] The display method of the ultrasound device provided by the embodiment of the present invention adjusts the parameter adjustment component corresponding to the mode parameter to a disabled component when it is detected that the adjustment of the mode parameter exceeds the preset parameter range, thereby avoiding invalid adjustment of the mode parameter.
[0013] In an optional embodiment, before determining the target parameter corresponding to the adjustment mode in response to an adjustment operation on at least one mode parameter in the display area, it also includes: detecting the probe type of the ultrasound probe connected to the ultrasound device; and displaying the adjustment mode corresponding to the probe type and the display area corresponding to the adjustment mode in the display interface.
[0014] The display method of the ultrasound device provided in the embodiment of the present invention determines the corresponding display area by detecting the probe type of the ultrasound probe connected to the ultrasound device, thereby realizing automatic retrieval of the mode parameters corresponding to the display area, so that the user can set the mode parameters.
[0015] In an optional implementation, displaying the target parameter in the display area corresponding to each adjustment mode includes: in response to a full-screen display operation for any display area, displaying the target parameter of any display area in full screen.
[0016] The display method of the ultrasound device provided by the embodiment of the present invention supports full-screen display of any display area, and realizes flexible display of any display area in the display interface.
[0017] In an optional embodiment, the method also includes: in response to an editing operation on the attribute information of at least one target object, displaying an attribute editing interface of the target object; in response to a parameter selection operation on the attribute editing interface, determining target attribute information of at least one target object; and displaying target attribute information of the same target object and / or different target objects in each display area.
[0018] The display method of ultrasound equipment provided by the embodiment of the present invention supports setting corresponding adjustment modes for multiple target objects through a display interface, can achieve simultaneous adjustment of multiple target objects, and improves the adjustment efficiency for the target objects.
[0019] In an optional implementation, the method further includes: determining an adjustment mode for the target object based on the target attribute information.
[0020] The display method of the ultrasound device provided by the embodiment of the present invention determines the adjustment mode of the target object through the target attribute information, so that the determination of the adjustment mode is more objective.
[0021] In an optional embodiment, the display area includes an end component, and the method further includes: in response to a trigger operation for the end component, ending the operation of the current adjustment mode.
[0022] The display method of the ultrasound device provided by the embodiment of the present invention supports triggering the end component to end the operation of the current adjustment mode, thereby realizing flexible start and stop of the current adjustment mode.
[0023] In a second aspect, an embodiment of the present invention provides an ultrasound device, comprising: at least one ultrasound probe, a host and a display interface; the host comprises a probe interface, at least one type of probe is connected to the host through the probe interface, and the host is used to execute the display method of the ultrasound device of the first aspect or any corresponding embodiment thereof; the display interface is used to display the target parameters of each type of probe.
[0024] The ultrasound device provided by the embodiment of the present invention supports displaying different adjustment modes on the same display interface, so as to display the parameter adjustments of different adjustment modes together, making it convenient for users to set parameters of different modes by operating different ultrasound probes on the same ultrasound device, thereby making the operation more convenient.
[0025] In an optional embodiment, the ultrasound device further includes: an electrical stimulation unit, which is communicatively connected to the host and is used to generate current parameters for electrical stimulation; and the display interface is also used to display the current parameters.
[0026] The ultrasound device provided in the embodiment of the present invention is additionally provided with an electrical stimulation unit, which can electrically stimulate the target object, and is convenient for superimposing the three methods of ultrasound, temperature and electrical stimulation to enhance the regulating effect on the physical condition of the target object.
[0027] In a third aspect, an embodiment of the present invention provides a computer-readable storage medium having computer instructions stored thereon, the computer instructions being used to enable a computer to execute the display method of an ultrasound device according to the first aspect or any corresponding embodiment thereof. BRIEF DESCRIPTION OF THE DRAWINGS
[0028] In order to more clearly illustrate the specific implementation methods of the present invention or the technical solutions in the prior art, the drawings required for use in the specific implementation methods or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are some implementation methods of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.
[0029] Figure 1 is a schematic diagram of the structure of an ultrasound device according to some embodiments of the present invention;
[0030] Figure 2 is a schematic diagram of the main structure of an ultrasound device according to some embodiments of the present invention;
[0031] Figure 3 is a schematic flow chart of a display method of an ultrasound device according to some embodiments of the present invention;
[0032] Figure 4is a schematic diagram of a display interface of an ultrasound device according to some embodiments of the present invention;
[0033] Figure 5 is a flow chart of another display method of an ultrasound device according to some embodiments of the present invention;
[0034] Figure 6 is a schematic diagram of a disc adjustment assembly according to some embodiments of the present invention;
[0035] Figure 7 is a schematic diagram of a display interface of another ultrasound device according to some embodiments of the present invention. DETAILED DESCRIPTION
[0036] In order to make the purpose, technical solution and advantages of the embodiments of the present invention clearer, the technical solution in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative work are within the scope of protection of the present invention.
[0037] Uterine rejuvenation instruments are generally used to regulate or repair the uterus after delivery. They stimulate the uterine smooth muscle, increase the frequency, amplitude, and tension of the rhythmic contraction of the uterine smooth muscle, relieve postpartum pain, and shorten the time of uterine repair. The technical principle is to rely on low-intensity ultrasound on the body surface to penetrate the tissue, focus the effective ultrasound dose on the uterine smooth muscle, and use the mechanical effect, thermal effect, and sonochemical effect of ultrasound to induce rhythmic contraction of the uterus, so as to relieve "postpartum pain" and accelerate tissue repair.
[0038] Uterine rejuvenation instruments mostly manually operate the parameters of the ultrasound probe to adjust or restore the uterus of the parturient, but the operator will feel tired after operating for a period of time, which will affect the repair effect of the uterus. Although there are products that can have both manual mode and automatic mode, the parameter display and adjustment information of the two are displayed on different screens. In addition, the uterine rejuvenation instrument with automatic mode only sets the speed, treatment time, and motion trajectory parameters, and does not combine electrical stimulation to treat the parturient's uterus, so there is no display of electrokinetic current adjustment on the instrument display. Moreover, even if the uterine rejuvenation instrument has manual mode and automatic mode, it can only adjust or repair the uterus of one target object at a time, that is, it is either manual mode or automatic mode.
[0039] Based on this, the technical solution of the present invention displays different adjustment modes on the same display interface to display the parameter adjustments of different adjustment modes together, making it easier for users to set parameters of different modes by operating different ultrasound probes on the same ultrasound device, making the operation more convenient.
[0040] In addition, settings for current parameters are added in the automatic mode, which can achieve the superposition of ultrasonic and current parameters, making it easier for users to adaptively adjust the current parameters according to the real-time physical condition of the target object, thereby improving the adjustment effect for the physical condition of the target object.
[0041] At the same time, the display interface can support setting corresponding adjustment modes for multiple target objects, realize simultaneous adjustment of multiple target objects, and improve the adjustment efficiency for the target objects.
[0042] An embodiment of the present invention provides an ultrasonic device, such as Figure 1 As shown, the ultrasound device includes at least one ultrasound probe 101, a host 102 and a display interface 103. The host 102 is provided with a probe interface, which is used to connect the ultrasound probe 101 to the host 102, and the display interface 103 is connected to the host 102 for communication, and the communication connection can be a wired connection or a wireless connection. The type and number of the probe interfaces provided on the ultrasound device can be set according to actual needs, and are not limited here.
[0043] Specifically, the host 102 is used to control the display of at least one display area where an ultrasound probe is located, and the adjustment mode corresponding to the display area, on the display interface of the ultrasound device. The user can connect one or more ultrasound probes 101 to the host 102 through the probe interface. Correspondingly, after the host 102 is turned on, it can detect whether the ultrasound probe 101 is currently connected, and display the display area where the ultrasound probe 101 is located, and the adjustment mode corresponding to the display area on the display interface 103 of the ultrasound device. Among them, the display interface 103 includes at least one display area, and the display area corresponds to the adjustment mode, and each display area includes multiple mode parameters corresponding to the adjustment mode.
[0044] Specifically, the adjustment mode corresponding to the display area can be determined in response to the user's mode adjustment command, such as selecting automatic mode or manual mode in the configuration interface of the display area; it can also be determined by identifying the connected ultrasound probe 101. For example, when the ultrasound probe 101 is identified as an automatic probe, it is automatically matched to the automatic mode; when the ultrasound probe 101 is identified as a manual probe, it is automatically matched to the manual mode.
[0045] It should be noted that after the host 102 is turned on, each display area will be automatically displayed on the display interface of the ultrasound device. However, when it is detected that the ultrasound probe 101 is not connected, even if the mode parameters of the display area are adjusted, the mode parameters will not change until the ultrasound probe 101 is detected to be connected, and the adjusted mode parameters will be synchronized to the ultrasound probe 101.
[0046] The host 102 is also used to respond to the adjustment operation of at least one mode parameter in the display area to determine the target parameter corresponding to the adjustment mode. The user adjusts the mode parameters and / or current parameters of the ultrasound probe 101 under different adjustment modes through the human-computer interaction interface. Correspondingly, the host 102 can respond to the user's adjustment operation and obtain the target parameters under different adjustment modes. Of course, the user can also input the relevant parameter information of different adjustment modes through the software on the terminal such as a mobile phone and a tablet computer. The host 102 communicates with the above terminal to receive the relevant parameter information of different adjustment modes and determine the target parameters under different adjustment modes. Among them, the user is a user who uses an ultrasonic device for ultrasonic treatment, and the user is a medical staff in a hospital environment. The target parameters obtained by the host 102 can be stored in the ultrasonic device.
[0047] The host 102 is also used to display the target parameters corresponding to each adjustment mode in the corresponding display area. After obtaining the target parameters corresponding to each adjustment mode, the host 102 can simultaneously display the target parameters corresponding to each adjustment mode in the corresponding display area of the display interface 103. When the user determines that the target parameter setting is correct, the host 102 can generate corresponding ultrasonic and / or current stimulation according to the target parameter and the adjustment mode to act on different target objects, that is, different parturients.
[0048] The ultrasound device provided in this embodiment supports displaying different adjustment modes on the same display interface, so that the parameter adjustments of different adjustment modes are displayed together, making it convenient for users to set parameters of different modes by operating different ultrasound probes on the same ultrasound device, making the operation more convenient.
[0049] In some optional implementations of this embodiment, the host in the ultrasound device also has other functions. For specific functions, please refer to the corresponding description in the display method of the ultrasound device below.
[0050] In some optional implementations of this embodiment, the ultrasound device may further include an electrical stimulation unit, which is communicatively connected to the host 102, and generates current parameters for electrical stimulation through the electrical stimulation unit to achieve electrical stimulation for the target object, thereby facilitating the superposition of ultrasound, temperature and electrical stimulation to enhance the effect of regulating the physical state of the target object.
[0051] In some optional implementations of this embodiment, please refer to Figure 2 , Figure 2 Schematic diagram of the structure of the host of an optional embodiment of the present invention, such as Figure 2 As shown, the host includes: one or more processors 10, a memory 20, and interfaces for connecting various components, including high-speed interfaces and low-speed interfaces. The various components are connected to each other using different buses for communication, and can be installed on a common motherboard or installed in other ways as needed. The processor 10 can process instructions executed in the host, including instructions stored in or on the memory 20 to display graphical information of a GUI on an external input / output device (such as a display device coupled to the interface). In some optional embodiments, if necessary, multiple processors 10 and / or multiple buses can be used together with multiple memories 20 and multiple memories 20. Similarly, multiple other devices can be connected, and each device provides part of the necessary operations (for example, as a server array, a group of blade servers, or a multi-processor system). Figure 2 A processor 10 is taken as an example. The host 102 further includes a communication interface 30, which is used for the host to communicate data with other devices or communication networks.
[0052] The processor 10 may be a central processing unit, a network processor or a combination thereof. The processor 10 may further include a hardware chip. The hardware chip may be a dedicated integrated circuit, a programmable logic device or a combination thereof. The programmable logic device may be a complex programmable logic device, a field programmable gate array, a general purpose array logic or any combination thereof.
[0053] Among them, the memory 20 may include a program storage area and a data storage area, wherein the program storage area may store an operating system, an application required by at least one function; the data storage area may store data created according to the use of the host, etc. In addition, the memory 20 may include a high-speed random access memory, and may also include a non-transient memory, such as at least one disk storage device, a flash memory device, or other non-transient solid-state storage device. In some optional embodiments, the memory 20 may optionally include a memory remotely arranged relative to the processor 10, and these remote memories may be connected to the host via a network. Examples of the above-mentioned network include, but are not limited to, the Internet, an intranet, a local area network, a mobile communication network, and combinations thereof.
[0054] The memory 20 may include a volatile memory, such as a random access memory; the memory may also include a non-volatile memory, such as a flash memory, a hard disk or a solid state drive; the memory 20 may also include a combination of the above types of memory.
[0055] The memory 20 stores instructions executable by at least one processor 10 so as to enable the at least one processor 10 to implement the display method of the ultrasound device shown in the following embodiment.
[0056] According to an embodiment of the present invention, a display method embodiment of an ultrasound device is provided. It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer executable instructions, and although a logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in an order different from that shown here.
[0057] In this embodiment, a display method for an ultrasound device is provided, which can be used for the above-mentioned ultrasound device, for example, a host of the ultrasound device. Figure 3 is a flow chart of a display method of an ultrasound device according to an embodiment of the present invention. Figure 3 As shown, the process includes the following steps:
[0058] Step S101: displaying a display area where at least one ultrasound probe is located and an adjustment mode corresponding to the display area on a display interface of an ultrasound device.
[0059] The display area includes a plurality of mode parameters corresponding to the adjustment modes.
[0060] As described above, the ultrasound probe can be connected to the host of the ultrasound device through the probe interface. After the ultrasound device is turned on, the host of the ultrasound device can detect one or more currently connected ultrasound probes. The user can select a suitable ultrasound probe for the parturient currently receiving ultrasound treatment according to needs.
[0061] The ultrasound device has a corresponding display interface, which includes multiple display areas. Different display areas display different adjustment modes, and different adjustment modes correspond to different mode parameters. Figure 4 As shown, the adjustment mode may specifically include an automatic mode and a manual mode, and the automatic mode and the manual mode have corresponding display areas, and mode parameters corresponding to the adjustment mode are set in different display areas. For example, the mode parameters of the manual mode include adjustment gear and adjustment time; the mode parameters of the automatic mode include ultrasound mode parameters (such as the adjustment gear and adjustment time corresponding to the ultrasound probe) and electrical stimulation mode parameters (such as the electromagnetic coil speed gear and current intensity corresponding to electrical stimulation).
[0062] Step S102 : In response to an adjustment operation on at least one mode parameter in the display area, determining a target parameter corresponding to the adjustment mode.
[0063] The user adjusts the mode parameters of the different adjustment modes displayed in the display interface according to the situation of the target object. Accordingly, the host of the ultrasound device can respond to the user's adjustment operation on the mode parameters, and adjust the mode parameters according to the adjustment operation to obtain the adjusted target parameters. For example, the gear in the manual mode is adjusted from P1 to P3; the time in the automatic mode is adjusted from 600s to 1200s, and the speed of the electromagnetic coil is adjusted from 3cm / s to 5cm / s. Among them, the mode parameters corresponding to different adjustment modes are adjusted separately without affecting each other.
[0064] Step S103: displaying the target parameters in the display areas corresponding to the respective adjustment modes.
[0065] After the target parameters corresponding to each adjustment mode are determined based on the adjustment operation, the target parameters are displayed in real time in the display area corresponding to each adjustment mode. At the same time, the power curve corresponding to the target parameter is displayed in the display area of each adjustment mode so that the change status of each target parameter can be intuitively understood. Figure 4 As shown, in the display area of the manual mode, the time-acoustic power curve is displayed; in the display area of the automatic mode, the time-acoustic power curve and the time-current curve can be displayed at the same time. Of course, the same adjustment mode can also be displayed in different display areas of the same display interface according to actual needs, which is not specifically limited here.
[0066] The display method of the ultrasound device provided in this embodiment displays different adjustment modes on the same display interface to display the parameter adjustments of different adjustment modes together, making it easy for users to set different mode parameters by operating different ultrasound probes on the same ultrasound device, making the operation more convenient.
[0067] In this embodiment, a display method for an ultrasound device is provided, which can be used for the above-mentioned ultrasound device, for example, a host of the ultrasound device. Figure 5 is a flow chart of a display method of an ultrasound device according to an embodiment of the present invention. Figure 5 As shown, the process includes the following steps:
[0068] Step S201, displaying a display area where at least one ultrasound probe is located and an adjustment mode corresponding to the display area on a display interface of an ultrasound device. The display area includes a plurality of mode parameters corresponding to the adjustment mode. For detailed description, please refer to the relevant description corresponding to the above embodiment, which will not be repeated here.
[0069] Step S202: In response to an adjustment operation on at least one mode parameter in the display area, determining a target parameter corresponding to the adjustment mode.
[0070] Specifically, the display interface includes a first display area and a second display area, wherein the first display area includes a plurality of first parameter adjustment components corresponding to the first adjustment mode, and the second display area includes a plurality of second parameter adjustment components corresponding to the second adjustment mode. Figure 4 As shown, the first display area may be a display area corresponding to the manual mode, and the second display area may be a display area corresponding to the automatic mode.
[0071] Accordingly, the above step S202 may include:
[0072] Step S2021, in response to a trigger operation on the first parameter adjustment component, determining a first target parameter component that is currently in an adjustment state, and displaying the first target parameter component in a first manner, and displaying other parameter components in a second manner.
[0073] The first parameter adjustment component is set in the first display area, and the first parameter adjustment component can be a disk adjustment component, such as Figure 6 As shown; it can also be a strip-shaped key component, such as Figure 4 The gear selection button shown in ; of course, it can also be a mutually exclusive button component. The style of the first parameter adjustment component is not specifically limited here, and those skilled in the art can determine it according to actual needs.
[0074] The first mode and the second mode are used to distinguish the first target parameter component in the adjustment state from other parameter components that are not in the adjustment state. For example, the first mode can be a highlighted display or an enlarged display, and the second mode maintains a normal display state. The trigger operation is a selection operation generated by the user for the first parameter adjustment component through a mouse or keyboard. For example, the user moves the mouse to the icon position of the first parameter adjustment component. If the first parameter adjustment component is currently in the adjustment state, the icon of the first parameter adjustment component will be highlighted. In an optional embodiment, the icon of the first parameter adjustment component can also be enlarged to remind the user of the currently selected mode parameter.
[0075] Step S2022: In response to the parameter adjustment operation for the first target parameter component, determine the first target parameter corresponding to the first target parameter component, and display a parameter adjustment mark for the first adjustment mode.
[0076] The parameter adjustment operation is an operation generated by the user adjusting the parameters corresponding to the first target parameter component. Accordingly, the host of the ultrasound device can respond to the user's parameter adjustment operation on the first target parameter component and adjust the parameters corresponding to the first target parameter component according to the parameter adjustment operation to obtain the adjusted first target parameter.
[0077] After the parameter adjustment is completed, a corresponding parameter adjustment mark is displayed in the first parameter adjustment component, and the parameter adjustment mark indicates that the parameter adjustment is completed.
[0078] Step S2023, in response to the triggering operation on the second parameter adjustment component, determine the second target parameter component that is currently in the adjustment state, and display the second target parameter component in the third manner, and display other parameter components in the fourth manner.
[0079] Step S2024: In response to the parameter adjustment operation for the second target parameter component, determine the second target parameter corresponding to the second target parameter component, and display a parameter adjustment mark for the second adjustment mode.
[0080] The second parameter adjustment component is a parameter adjustment component corresponding to the second adjustment mode, and the second parameter adjustment component is arranged in the second display area. Specifically, the second parameter adjustment component can be a disk adjustment component, such as Figure 7 As shown; it can also be a strip-shaped adjustment button component, such as Figure 7 The "output current intensity (mA)" shown in the figure. The style of the second parameter adjustment component can be the same as or different from that of the first parameter adjustment component. The style of the second parameter adjustment component is not specifically limited here, and those skilled in the art can determine it according to actual needs.
[0081] The third and fourth methods are used to distinguish the second target parameter component in the adjustment state from other parameter components that are not in the adjustment state. The implementation method for triggering the second parameter adjustment component to highlight the second target parameter component and adjusting the mode parameter corresponding to the second adjustment mode through the second target parameter component is similar to the first parameter adjustment component described above, and will not be repeated here.
[0082] by Figure 6 Taking the disc adjustment component shown as an example, in a specific example, when the user rotates the disc adjustment component icon in the first display area to adjust the gear to the target gear, the corresponding target gear on the disc adjustment component will produce dynamic effects such as highlighting and font enlargement to indicate the currently selected target gear.
[0083] by Figure 4 Taking the strip button component shown as an example, in a specific example, when the user clicks on a gear option in the strip button component, after the strip button component receives the click instruction, the adjustment button selected by the click instruction will update the chromaticity display and display a completed icon (such as a check mark).
[0084] As an optional implementation, the second parameter adjustment component includes a current parameter adjustment component, and the above method may further include: determining the current parameter of the second adjustment mode in response to an adjustment operation on the current parameter adjustment component.
[0085] The current parameter adjustment component is a component for adjusting the electrical stimulation parameters. The current parameter adjustment component is set in the second display area. Specifically, the current parameters may include the current intensity of the electrokinetic current, the rotation speed of the electromagnetic coil, the current frequency, the electrical stimulation pulse width, the rise time, the fall time, the rest time, the stimulation time, and the electrical stimulation pulse waveform, etc. The corresponding current parameter adjustment component can be set in combination with the current parameters. The style and quantity of the current parameter adjustment component are not specifically limited here, and those skilled in the art can determine it according to actual needs.
[0086] by Figure 7 Taking the electromagnetic coil speed and output current intensity as examples, the electromagnetic coil speed can be adjusted by a disc adjustment component, and the output current intensity can be adjusted by a strip adjustment button component. The user can adjust the electromagnetic coil speed through the disc adjustment component and adjust the output current intensity through the strip mutually exclusive button component. Accordingly, the host of the ultrasonic device can respond to the user's adjustment operation on the disc adjustment component and the strip mutually exclusive button component, and adjust the electromagnetic coil speed and output current intensity according to the adjustment operation to obtain the adjusted current parameters.
[0087] In the above implementation, settings for current parameters are added in the automatic mode, thereby enabling the superposition of ultrasonic and current parameters, making it easier for users to adaptively adjust the current parameters according to the real-time physical condition of the target object, thereby improving the adjustment experience effect for the physical condition of the target object.
[0088] As an optional implementation, the above method may further include:
[0089] Step a1, detecting whether the adjustment of the mode parameter exceeds the preset parameter range.
[0090] Step a2: when the adjustment of the mode parameter exceeds the preset parameter range, the adjustment of the mode parameter is prohibited, and the parameter adjustment component corresponding to the mode parameter is adjusted to a disabled component.
[0091] The mode parameters have corresponding parameter adjustment ranges. Adjustments beyond the parameter adjustment range are invalid. The preset parameter range is the preset parameter adjustable range. In the process of adjusting the mode parameters of each adjustment mode, the mode parameters will change in real time, and the value displayed on the parameter adjustment component is the adjusted parameter value.
[0092] Specifically, during the adjustment process, it is possible to detect in real time whether the adjustment of the mode parameter exceeds the preset parameter range. When the adjustment of the mode parameter exceeds the preset parameter range, it means that the mode parameter has reached the upper or lower adjustment limit, and the adjustment of the mode parameter is prohibited at this time, and the parameter adjustment component corresponding to the mode parameter is adjusted to a disabled component.
[0093] In a specific example, when the parameter value corresponding to the mode parameter reaches the upper adjustment limit or the lower adjustment limit, the user can be prohibited from adjusting by disabling the two adjustment buttons corresponding to the parameter adjustment component, and the disabled display effect of the parameter adjustment component can be displayed in a grayed-out manner.
[0094] In the above implementation, when it is detected that the adjustment of the mode parameter exceeds the preset parameter range, the parameter adjustment component corresponding to the mode parameter is adjusted to a disabled component, thereby avoiding invalid adjustment of the mode parameter.
[0095] As an optional implementation, before step S202, the method may further include:
[0096] Step b1, detecting the probe type of the ultrasound probe connected to the ultrasound device.
[0097] Step b2, displaying the adjustment mode corresponding to the probe type and the display area corresponding to the adjustment mode in the display interface.
[0098] The probe types include manual probes and automatic probes. The host of the ultrasound device can detect the interface information of the connected ultrasound probe and automatically identify the currently used ultrasound probe as an automatic probe or a manual probe according to the interface information.
[0099] In combination with the probe type of the ultrasound probe, the host of the ultrasound device can automatically call up the display area of the corresponding adjustment mode so as to set the mode parameters in the display area.
[0100] For example, if the currently connected ultrasound probe is an automatic probe, it can be determined that the adjustment mode corresponding to the automatic probe is the automatic mode, and the display area of the automatic mode can be automatically called. If the currently connected ultrasound probe is a manual probe, it can be determined that the adjustment mode corresponding to the manual probe is the manual mode, and the display area of the manual mode can be automatically called. If the currently connected ultrasound probe includes a manual probe and an automatic probe, it can be determined that the current adjustment mode includes a manual mode and an automatic mode, and the display areas of the manual mode and the automatic mode are displayed on the display interface at the same time. Of course, if the multiple currently connected ultrasound probes are all manual probes, multiple manual modes can be displayed on the display interface at the same time; if the multiple currently connected ultrasound probes are all automatic probes, multiple automatic modes can be displayed on the display interface at the same time.
[0101] In the above implementation, the corresponding display area is determined by detecting the probe type of the ultrasound probe connected to the ultrasound device, thereby automatically retrieving the mode parameters corresponding to the display area so that the user can set the mode parameters.
[0102] Step S203: displaying the target parameters in the display areas corresponding to the respective adjustment modes.
[0103] Specifically, the above step S203 may include: in response to a full-screen display operation for any display area, performing full-screen display of the target parameters of any display area.
[0104] A full-screen display component can be set in the display area corresponding to different adjustment modes, and the user can implement a full-screen display operation for the display area by clicking the full-screen display component. Accordingly, the host of the ultrasound device can respond to the user's full-screen display operation for any display area and perform a full-screen display of the display area, such as a full-screen display of the display area corresponding to the manual mode, or a full-screen display of the display area corresponding to the automatic mode.
[0105] Of course, in some optional implementations, a default display mode may also be set, such as displaying both the manual mode and the automatic mode by default.
[0106] In some optional embodiments, the display of the manual mode and the automatic mode can be determined based on the model configuration of the ultrasound device. For example, if the model configuration is "manual", only the manual mode will be displayed in full screen on the display interface; if the model configuration is "automatic", the manual mode and the automatic mode will be displayed at the same time on the display interface, for example, the left display area is the manual mode, and the right display area is the automatic mode.
[0107] In some optional implementations, a "hide manual" button is provided in the display interface. When "automatic" is selected in the model configuration and the user triggers the "hide manual" button, the automatic mode is displayed in full screen in the display interface.
[0108] The display method of ultrasound equipment provided in this embodiment supports adjusting corresponding mode parameters in different adjustment modes through the same display interface, and can display parameters for different adjustment modes through the same display interface, so that users can intuitively understand the parameter setting status in each adjustment mode. At the same time, it supports full-screen display of any display area, realizing flexible display of any display area in the display interface.
[0109] In some optional embodiments, the above method may further include:
[0110] Step c1: in response to an editing operation on attribute information of at least one target object, displaying an attribute editing interface of the target object.
[0111] Step c2: determining target attribute information of at least one target object in response to a parameter selection operation on the attribute editing interface.
[0112] Step c3: display target attribute information of the same target object and / or different target objects in each display area.
[0113] The target object is the object receiving ultrasound treatment, and the attribute information is the personal information of the target object. The display interface includes a display area of the target object, and the identification of the target object, such as name, number, etc., is displayed in the display area of the target object.
[0114] When the attribute information of one or more target objects needs to be edited, the user can edit the attribute information of each target object. Accordingly, the host of the ultrasound device can respond to the editing operation and display the attribute editing interface for the target object in the display interface.
[0115] The attribute editing interface includes attribute parameters related to the target object. Users can select corresponding attribute parameters in the attribute editing interface to adjust or modify according to the actual situation. Accordingly, the host of the ultrasound device can respond to the user's selection and adjustment operations to obtain the target attribute information of the target object. After the editing is completed, if different adjustment modes are aimed at the same target object, the target attribute information of the same target object will be displayed in the display areas corresponding to the different adjustment modes; if different adjustment modes are aimed at different target objects, the target attribute information of the corresponding target objects will be displayed in each display area.
[0116] The display method of the ultrasound device provided in this embodiment supports setting corresponding adjustment modes for multiple target objects through a display interface, can achieve simultaneous adjustment of multiple target objects, and improves the adjustment efficiency for the target objects.
[0117] In some optional embodiments, the above method may further include: determining an adjustment mode for the target object based on the target attribute information.
[0118] The target object has different target attribute information, and its corresponding adjustment mode is different. In order to ensure the applicability of the adjustment mode to the target object, the matching adjustment mode is determined here in combination with the target attribute information of the target object. For example, the corresponding adjustment mode is selected according to the birth mode (cesarean section or normal delivery) or age information of the target object. Therefore, the adjustment mode of the target object is determined by the target attribute information, so that the determination of the adjustment mode is more objective.
[0119] In some optional embodiments, the display area includes an end component, and the method may further include: in response to a trigger operation on the end component, ending the operation of the current adjustment mode.
[0120] The end component is used to stop the operation of the current adjustment mode. The end component is set in the display area corresponding to different adjustment modes, such as Figure 4 When the operation needs to be ended, the user can click the end component to end the current operation. Accordingly, the host of the ultrasound device can respond to the user's trigger operation on the end component and control the end of the current adjustment mode corresponding to the end component.
[0121] The display method of the ultrasound device provided in this embodiment supports triggering the end component to end the operation of the current adjustment mode, thereby realizing flexible start and stop of the current adjustment mode.
[0122] The embodiment of the present invention also provides a computer-readable storage medium. The method according to the embodiment of the present invention can be implemented in hardware, firmware, or can be implemented as a computer code that can be recorded in a storage medium, or can be implemented as a computer code that is originally stored in a remote storage medium or a non-temporary machine-readable storage medium and will be stored in a local storage medium through a network download, so that the method described herein can be stored in such software processing on a storage medium using a general-purpose computer, a dedicated processor, or programmable or dedicated hardware. Among them, the storage medium can be a magnetic disk, an optical disk, a read-only storage memory, a random access memory, a flash memory, a hard disk or a solid-state hard disk, etc.; further, the storage medium can also include a combination of the above types of memories. It can be understood that a computer, a processor, a microprocessor controller, or programmable hardware includes a storage component that can store or receive software or computer code. When the software or computer code is accessed and executed by a computer, a processor, or hardware, the method shown in the above embodiment is implemented.
[0123] Although the embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art may make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations are all within the scope defined by the appended claims.
Claims
1. A display method for an ultrasound device, It is characterized in that The method comprises: Displaying, on a display interface of the ultrasound device, a display area where at least one ultrasound probe is located and an adjustment mode corresponding to the display area, wherein the display area includes a plurality of mode parameters corresponding to the adjustment mode; In response to an adjustment operation on at least one mode parameter in the display area, determining a target parameter corresponding to the adjustment mode; The target parameter is displayed in the display area corresponding to each adjustment mode.
2. The method according to claim 1, It is characterized in that The display interface includes a first display area and a second display area, the first display area includes a plurality of first parameter adjustment components corresponding to a first adjustment mode, and the second display area includes a plurality of second parameter adjustment components corresponding to a second adjustment mode; The step of determining a target parameter corresponding to the adjustment mode in response to an adjustment operation on at least one mode parameter in the display area includes: In response to a trigger operation on the first parameter adjustment component, determining a first target parameter component that is currently in an adjustment state, and displaying the first target parameter component in a first manner, and displaying other parameter components in a second manner; In response to a parameter adjustment operation on the first target parameter component, determining a first target parameter corresponding to the first target parameter component, and displaying a parameter adjustment indicator for the first adjustment mode; and / or, In response to a trigger operation on the second parameter adjustment component, determining a second target parameter component that is currently in an adjustment state, and displaying the second target parameter component in a third manner, and displaying other parameter components in a fourth manner; In response to the parameter adjustment operation for the second target parameter component, a second target parameter corresponding to the second target parameter component is determined, and a parameter adjustment mark for the second adjustment mode is displayed.
3. The method according to claim 2, It is characterized in that The second parameter adjustment component includes a current parameter adjustment component, and the method further includes: In response to the adjustment operation of the current parameter adjustment component, the current parameter of the second adjustment mode is determined.
4. The method according to claim 1, It is characterized in that Also includes: Detecting whether the adjustment of the mode parameters exceeds a preset parameter range; When the adjustment of the mode parameter exceeds the preset parameter range, the adjustment of the mode parameter is prohibited, and the parameter adjustment component corresponding to the mode parameter is adjusted to a disabled component.
5. The method according to any one of claims 1 to 4, It is characterized in that Before determining the target parameter corresponding to the adjustment mode in response to the adjustment operation on at least one mode parameter in the display area, the method further includes: Detecting the probe type of the ultrasound probe connected to the ultrasound device; The adjustment mode corresponding to the probe type and the display area corresponding to the adjustment mode are displayed in the display interface.
6. The method according to claim 1, It is characterized in that The displaying of the target parameter in the display area corresponding to each adjustment mode includes: In response to a full-screen display operation for any one of the display areas, the target parameter of any one of the display areas is displayed in full screen.
7. The method according to claim 1, It is characterized in that Also includes: In response to an editing operation on attribute information of at least one target object, displaying an attribute editing interface of the target object; In response to a parameter selection operation on the attribute editing interface, determining target attribute information of at least one of the target objects; The target attribute information of the same target object and / or different target objects is displayed in each display area.
8. The method according to claim 7, It is characterized in that Also includes: Based on the target attribute information, an adjustment mode for the target object is determined.
9. The method according to claim 1, It is characterized in that The display area includes an end component, and the method further includes: In response to the triggering operation of the ending component, the operation of the current adjustment mode is ended.
10. An ultrasonic device, It is characterized in that include: At least one ultrasound probe, a host, and a display interface; The host comprises a probe interface, the at least one type of ultrasound probe is connected to the host through the probe interface, and the host is used to execute the display method of the ultrasound device according to any one of claims 1 to 9; The display interface is used to display target parameters of each adjustment mode.
11. The ultrasonic device according to claim 10, It is characterized in that Also includes: An electrical stimulation unit, connected to the host for generating electrical stimulation current parameters; The display interface is also used to display the current parameter.
12. A computer-readable storage medium, It is characterized in that The computer-readable storage medium stores computer instructions, and the computer instructions are used to enable a computer to execute the display method of the ultrasound device according to any one of claims 1 to 9.