Method and device for displaying ultrasonic image, electronic equipment and storage medium

By suspending a preset control on the display interface of the ultrasonic inspection device, users can quickly switch to different imaging modes, solving the problem of cumbersome switching operations and improving inspection efficiency and user experience.

CN120189156APending Publication Date: 2025-06-24EDAN INSTR
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Patent Information

Application Number
CN202311788636.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-22
Publication Date
2025-06-24

AI Technical Summary

Technical Problem

In ultrasound examination, switching between different imaging modes is more cumbersome, resulting in lower examination efficiency.

Method used

A method of displaying an ultrasonic image is provided, by suspending a preset control on the display interface of an electronic device, the user can switch the display interface to an ultrasonic image formed based on the preset imaging mode by triggering the control.

Benefits of technology

This method reduces operation steps, improves inspection efficiency, simplifies the operation interface, and improves the user experience.

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Abstract

The invention relates to the technical field of ultrasonic equipment, and discloses a method and device for displaying an ultrasonic image, electronic equipment and a storage medium, the method is applied to the electronic equipment connected with an ultrasonic probe, and the method comprises the following steps: displaying a first display interface; in response to a trigger operation on a first preset control, switching the first display interface to a second display interface, the second display interface displaying an ultrasonic image formed based on a first imaging mode, and the first preset control being a preset control suspended on the first display interface or the second display interface and used for starting the first imaging mode, the display content of the display interface can be switched to the ultrasonic image formed based on the first imaging mode through one key.
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Description

Technical Field

[0001] The present invention relates to the technical field of ultrasonic devices, and particularly to a method, a device, an electronic device and a storage medium for displaying ultrasonic images. Background Art

[0002] An ultrasonic device emits ultrasonic waves to a target tissue through an ultrasonic probe, receives echo data returned by the target tissue, generates an ultrasonic image of the target tissue according to the received echo data, and displays the ultrasonic image on a display screen of an electronic device connected to the ultrasonic device. Due to advantages such as non-invasiveness, low cost, and strong real-time performance, ultrasonic devices have gradually become the main means of medical imaging examinations.

[0003] With the continuous development of ultrasonic imaging technology, more and more ultrasonic imaging modes have been put into clinical applications, such as grayscale imaging mode (B mode), color flow imaging mode (C mode), motion imaging mode (M mode), and Doppler imaging mode (D mode), where the D mode includes pulsed Doppler imaging mode (PW mode) and continuous Doppler imaging mode (CW mode). Different imaging modes can reflect the situation of the target tissue from different angles. In order to comprehensively understand the situation of the target tissue, when performing an ultrasonic examination, a doctor often needs to switch between different imaging modes, such as switching from B mode to C mode, and from C mode to PW mode, etc.

[0004] Currently, in order to facilitate the use by medical staff, a plurality of function buttons are configured on the display interface of the electronic device. When the display interface of the electronic device is used for ultrasonic examination, the medical staff may need to operate multiple times to switch the current display content back to the ultrasonic image formed based on a preset imaging mode, and the operation is relatively cumbersome, resulting in low examination efficiency. Summary of the Invention

[0005] In view of this, the present invention provides a method, a device, an electronic device and a storage medium for displaying ultrasonic images to solve the problem of relatively cumbersome operation when switching ultrasonic imaging modes.

[0006] In a first aspect, the present invention provides a method for displaying an ultrasonic image, which is applied to an electronic device connected to an ultrasonic probe. The method includes: displaying a first display interface; in response to a trigger operation on a first preset control, switching the first display interface to a second display interface, where the second display interface displays an ultrasonic image formed based on a first imaging mode, and the first preset control is a preset control suspended on the first display interface or the second display interface and used to start the first imaging mode.

[0007] The method for displaying an ultrasonic image provided in this embodiment is such that the electronic device displays a first display interface, and in response to a triggering operation by the user on a first preset control, the first display interface is switched to a second display interface that displays an ultrasonic image formed based on a first imaging mode. In the method provided in this embodiment, when the user needs to observe an ultrasonic image formed based on the first imaging mode, by clicking on the first preset control, the first display interface can be quickly switched to the second display interface. Compared with the method in the related art of identifying the first imaging mode from a list of multiple buttons or the way of being able to return to the first imaging mode only through multiple clicks, the way in this application of switching the display content of the display interface to an ultrasonic image formed based on the first imaging mode with one key can reduce the operation steps and improve the inspection efficiency. At the same time, it can also simplify the operation interface and improve the user experience.

[0008] In an alternative embodiment, the first display interface displays an ultrasonic image formed based on a second imaging mode, where the first imaging mode and the second imaging mode are different.

[0009] In an alternative embodiment, the first preset control is a movable preset control, and the moving range of the first preset control is the display area of the first display interface or the second display interface.

[0010] In this embodiment, the user can freely move the position of the first preset control to avoid the first preset control blocking information.

[0011] In an alternative embodiment, the second display interface includes a first area and a second area. The first area displays an ultrasonic image formed based on the first imaging mode. The method further includes: when the first preset control is located in the first area, controlling the first preset control to move to the second area.

[0012] In this implementation, the electronic device automatically controls the first preset control to move to the second area to avoid the first preset control blocking the ultrasonic image.

[0013] In an alternative embodiment, the second area is an edge area of the second display interface.

[0014] In an alternative embodiment, the method further includes: based on a selection operation on the second area, determining a target preset control, where the target preset control is one of a plurality of second preset controls, and the second preset controls are configured in the second area and are used to activate corresponding preset functions; executing the function corresponding to the target preset control, where the function of the target preset control is one of a photographing function, a video recording function, an image parameter optimization function, a display baseline function, a display scale function, and a freezing function.

[0015] In this embodiment, a plurality of second preset controls are provided on the second display interface, which can assist the user in performing ultrasonic examinations and improve the diagnostic efficiency.

[0016] In an alternative embodiment, the first preset control is displayed on the first display interface or the second display interface in the form of a graph, text, number, or letter.

[0017] In this embodiment, the first preset control is displayed in the form of a graph, text, number, or letter, which can facilitate the user to identify the first preset control.

[0018] In an alternative embodiment, the first imaging mode and the second imaging mode are any two of the gray-scale imaging mode, color Doppler imaging mode, motion imaging mode, and Doppler imaging mode.

[0019] In an alternative embodiment, the first imaging mode is the gray-scale imaging mode, and the second imaging mode is one of the color Doppler imaging mode, motion imaging mode, and Doppler imaging mode.

[0020] In a second aspect, the present invention provides a device for displaying ultrasonic images, the device comprising: a display module for displaying a first display interface; a switching module for switching the first display interface to a second display interface in response to a trigger operation on the first preset control, wherein the second display interface displays an ultrasonic image formed based on the first imaging mode, and wherein the first preset control is a preset control suspended on the first display interface or the second display interface for starting the first imaging mode.

[0021] In an alternative embodiment, the first display interface displays an ultrasonic image formed based on the second imaging mode, wherein the first imaging mode and the second imaging mode are different.

[0022] In an alternative embodiment, the first preset control is a movable preset control, and the moving range of the first preset control is the display area of the first display interface or the second display interface.

[0023] In an alternative embodiment, the second display interface includes a first area and a second area, the first area displays an ultrasonic image formed based on the first imaging mode, and the device further comprises: a moving module for controlling the first preset control to move to the second area when the first preset control is located in the first area.

[0024] In an alternative embodiment, the second area is an edge area of the second display interface.

[0025] In an alternative embodiment, the device further includes: a determination module, configured to determine a target preset control based on a selection operation for the second region, where the target preset control is one of a plurality of second preset controls, and the second preset controls are controls configured in the second region for starting corresponding preset functions; a processing module, configured to execute a function corresponding to the target preset control, where the function of the target preset control is one of a photographing function, a video recording function, an image parameter optimization function, a display baseline function, a display scale function, and a freezing function.

[0026] In an alternative embodiment, the first preset control is displayed in the first display interface or the second display interface in the form of a graph, text, number, or letter.

[0027] In an alternative embodiment, the first imaging mode and the second imaging mode are any two of a grayscale imaging mode, a color flow imaging mode, a motion imaging mode, and a Doppler imaging mode.

[0028] In an alternative embodiment, the first imaging mode is a grayscale imaging mode, and the second imaging mode is one of a color flow imaging mode, a motion imaging mode, and a Doppler imaging mode.

[0029] In a third aspect, the present invention provides an electronic device, including: a memory and a processor, which are communicatively connected to each other. The memory stores computer instructions, and the processor executes the computer instructions to execute the method according to the first aspect or any corresponding embodiment thereof.

[0030] In a fourth aspect, the present invention provides a computer-readable storage medium, on which computer instructions are stored, and the computer instructions are used to cause a computer to execute the method according to the first aspect or any corresponding embodiment thereof. BRIEF DESCRIPTION OF THE DRAWINGS

[0031] In order to more clearly illustrate the specific embodiments of the present invention or the technical solutions in the related art, the following will briefly introduce the drawings required for use in the description of the specific embodiments or the related art. Obviously, the drawings in the following description are some embodiments of the present invention. For those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0032] Figure 1 is a flowchart of a method for displaying an ultrasonic image according to an embodiment of the present invention;

[0033] Figure 2 is a flowchart of another method for displaying an ultrasonic image according to an embodiment of the present invention;

[0034] Figure 3 It is a schematic diagram of a second display interface according to an embodiment of the present invention;

[0035] Figure 4 It is a schematic diagram of the second display interface in the scanning state according to an embodiment of the present invention;

[0036] Figure 5 It is a schematic diagram of the second display interface in the frozen state according to an embodiment of the present invention;

[0037] Figure 6 It is a block diagram of the structure of a device for displaying ultrasonic images according to an embodiment of the present invention;

[0038] Figure 7 It is a schematic diagram of the hardware structure of an electronic device according to an embodiment of the present invention. Detailed implementation manners

[0039] To make the objectives, technical solutions, and advantages of the embodiments of the present invention clearer, the technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Apparently, the described embodiments are some but not all of the embodiments of the present invention. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0040] Handheld ultrasound is a portable ultrasound device that allows medical staff to efficiently collect and view clear images of the heart, blood vessels, or other parts beside patients outdoors, thereby accelerating diagnosis and treatment decisions.

[0041] The display terminal of handheld ultrasound is generally a tablet computer or a mobile phone, and the display range of the display screen is limited. Moreover, the functions of ultrasound are diverse. For example, automatic blood flow measurement, automatic diagnosis, display of baselines, etc. Using the traditional method to display buttons for various ultrasound imaging modes and function buttons on the display interface will cause the interface to be cumbersome, affecting the medical staff's viewing of ultrasound images, and it is also inconvenient for the medical staff to operate. The medical staff may need to operate multiple times to switch the current display content back to the ultrasound image formed based on the preset imaging mode, and the operation is relatively cumbersome, resulting in low inspection efficiency.

[0042] In view of this, the present application provides a method for displaying ultrasonic images, which can switch the display content of the display interface to the ultrasonic image formed based on the first imaging mode with one key, and can also simplify the operation interface, improving the user experience and diagnosis efficiency.

[0043] According to an embodiment of the present invention, there is provided an embodiment of a method for displaying an ultrasonic image. It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in an electronic device such as a set of computer-executable instructions. And although the logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in a different order than here.

[0044] In this embodiment, a method for displaying an ultrasonic image is provided, which can be used in an electronic device connected to an ultrasonic probe, such as a mobile phone, a tablet computer, or a notebook computer, etc. The electronic device and the ultrasonic probe can be connected by a wired manner (such as a data cable) or by a wireless manner (such as Wireless Fidelity (WIFI) or Bluetooth, etc.). Figure 1 It is a schematic flowchart of a method for displaying an ultrasonic image according to an embodiment of the present invention, as Figure 1 shown, the method includes the following steps:

[0045] Step S101, display a first display interface.

[0046] Exemplarily, the present application does not limit the display content of the first display interface. For example, the first display interface can display an ultrasonic image formed based on imaging modes such as B mode, C mode, M mode, or D mode, and the first display interface can also display an ultrasonic image when the automatic blood flow measurement function or other functions are turned on. The first display interface can also be the main interface of the electronic device.

[0047] Step S102, in response to a triggering operation on a first preset control, switch the first display interface to a second display interface.

[0048] Wherein, the second display interface displays an ultrasonic image formed based on a first imaging mode, and the first preset control is a preset control suspended on the first display interface or the second display interface and used to start the first imaging mode.

[0049] That is to say, the first preset control can be a virtual button (key) with a triggering instruction function displayed on the top layer of the main interface of the electronic device or the currently running program interface.

[0050] Exemplarily, the first imaging mode can be B mode, C mode, M mode, D mode, or other imaging modes.

[0051] Specifically, when the user performs operations such as clicking, swiping, or dragging on the first preset control through a human-computer interaction device (such as a touch screen or a stylus, etc.), the electronic device responds to the triggering operation of the user on the first preset control and switches the first display interface to the second display interface.

[0052] The method for displaying an ultrasonic image provided in this embodiment enables an electronic device to display a first display interface, and in response to a triggering operation by a user on a first preset control, switch the first display interface to a second display interface that displays an ultrasonic image formed based on a first imaging mode. In the method provided in this embodiment, when the user needs to observe an ultrasonic image formed based on a first imaging mode, by clicking on the first preset control, the first display interface can be quickly switched to the second display interface. Compared with the related art methods of identifying the first imaging mode from a list of multiple buttons or returning to the first imaging mode through multiple clicks, the method of this application that switches the display content of the display interface to an ultrasonic image formed based on a first imaging mode with one key can reduce the operation steps and improve the inspection efficiency. At the same time, it can also simplify the operation interface and enhance the user experience.

[0053] In this embodiment, a method for displaying an ultrasonic image is provided, which can be used in an electronic device connected to an ultrasonic probe, such as a mobile phone, a tablet computer, or a laptop computer, etc. Figure 2 It is a schematic flowchart of another method for displaying an ultrasonic image according to an embodiment of the present invention, as Figure 2 shown, and this method includes the following steps:

[0054] Step S201, display a first display interface.

[0055] Exemplarily, the first display interface displays an ultrasonic image formed based on a second imaging mode, and the first imaging mode and the second imaging mode are different. For example, the first imaging mode and the second imaging mode are any two of the B mode, C mode, M mode, and D mode.

[0056] In an optional implementation manner, according to the user's needs, the most commonly used imaging mode by the user can also be set as the first imaging mode. For example, the first imaging mode is the B mode, and the second imaging mode is one of the C mode, M mode, and D mode.

[0057] Step S202, in response to a triggering operation on the first preset control, switch the first display interface to a second display interface.

[0058] Exemplarily, the first preset control can be a movable preset control, and the moving range of the first preset control is the display area of the first display interface or the second display interface. That is to say, the first preset control can be moved by the user to any position of the first display interface or the second display interface.

[0059] The present application does not limit the specific form of the first preset control, as long as it is convenient for users to identify. For example, the first preset control can be displayed on the first display interface or the second display interface in the form of graphics, text, numbers, or letters. When the first preset control is displayed in the form of a graphic, the present application does not limit the shape of the graphic. For example, the shape of the first preset control can be a regular shape such as a square, circle, ellipse, ring, or rhombus, or an irregular shape.

[0060] Exemplarily, as Figure 3 and Figure 4 shown, the second display interface includes a first area and a second area. The first area displays an ultrasonic image formed based on a first imaging mode, and the second area is used to display other information other than the ultrasonic image. For example, the second area can display function icons of the ultrasonic device. For example, the functions of the ultrasonic device can be a photographing function, a video recording function, an image parameter optimization function, a display baseline function, a display scale function, or other functions. Among them, Figure 4 Auto in it can correspond to the icon of the automatic measurement function, B can correspond to the icon of the automatic B-line measurement function, and TGC can correspond to the icon of the image parameter optimization function.

[0061] Specifically, the first area and the second area do not overlap and belong to different areas on the second display interface. In addition, the present application does not limit the positional relationship between the first area and the second area. For example, the positional distribution manner between the first area and the second area can be Figure 3 the left-right distribution shown, or the up-down distribution or other positional distribution manners can also be adopted.

[0062] Step S203, when the first preset control is located in the first area, control the first preset control to move to the second area.

[0063] Specifically, when the user drags the first preset control to the first area through the human-computer interaction device, the electronic device automatically controls the first preset control to move to the second area to avoid the first preset control blocking the ultrasonic image.

[0064] Exemplarily, as Figure 3 and Figure 4 shown, the second area is the edge area of the second display interface. The area on the display interface other than the displayed ultrasonic image can be called the second area (edge area). The first preset control can finally be located at any position in the second area, or the final position of the first preset control can be determined according to the user's usage habit. For example, after the user moves the first preset icon to the first area through the human-computer interaction device, the electronic device automatically controls the first preset control to move to the lower right edge of the display interface, or can also move to the position shown in Figure 4 In Figure 4 the circular pattern represents the first preset control.

[0065] Step S204: Based on the selection operation for the second area, determine the target preset control.

[0066] Among them, the target preset control is one of multiple second preset controls, and the second preset control is configured in the second area and is used to start the corresponding preset function.

[0067] Step S205: Execute the function corresponding to the target preset control.

[0068] Among them, the function of the target preset control is one of the functions of taking pictures, recording videos, optimizing image parameters, displaying the baseline, displaying the scale, and freezing.

[0069] Exemplarily, the image parameters may include parameters such as brightness, saturation, hue, resolution, and contrast. The freezing function is to make the ultrasonic probe in a non-scanning state, that is, the ultrasonic probe does not emit signals. When the ultrasonic probe is in the frozen state, the display interface can be as Figure 5 shown.

[0070] Specifically, as Figure 3 and Figure 4 shown, the second area displays multiple second preset controls. For example, preset controls 310 to 314. Each second preset control among the multiple second preset controls has a corresponding function. For example, the function corresponding to preset control 310 is the video recording function, the function corresponding to preset control 311 is the taking picture function, the function corresponding to preset control 312 is the image parameter optimization function, the function corresponding to preset control 313 is the display baseline function, and the function corresponding to preset control 314 is the display scale function. The target preset control is one determined by the electronic device from the multiple second preset controls based on the user's selection operation for the second area. For example, when the user performs a click operation or other operations on preset control 311 through the human-computer interaction device, the electronic device can determine preset control 311 as the target preset control based on the user's selection operation for the second area, and execute the taking picture function to record the current display content.

[0071] It should be noted that the first preset control is on the top layer of the display interface, that is, the first preset control is the topmost among all preset controls, so as to prevent the first preset control from being covered by other preset controls and enable the user to see the first preset control at any time.

[0072] In the method for displaying an ultrasonic image provided in this embodiment, during the process of an electronic device displaying a first display interface of an ultrasonic image formed based on a second imaging mode, when a user triggers a first preset control, the electronic device can respond to the user's triggering operation on the first preset control and switch the first display interface to a second display interface. One-key switching can simplify the operation steps and improve the user experience. At the same time, a plurality of second preset controls are also provided on the second display interface to assist the user in performing ultrasonic examinations and improve the diagnostic efficiency.

[0073] Further, in some optional implementation manners, as Figure 4 and Figure 5 shown, a first button is configured in a second area. The first button is used to display a plurality of second preset controls or to hide a plurality of second preset controls, so that the display interface can better present the ultrasonic image.

[0074] In some implementation manners, before switching the first display interface to the second display interface, the method for displaying an ultrasonic image further includes: the electronic device detects a touch operation of a target object on the first preset control. When the touch operation detected by the electronic device is a single-click operation, the first display interface is switched to the second display interface. When the touch operation detected by the electronic device is a double-click operation, the first display interface is switched to a third display interface. When the touch operation detected by the electronic device is a long-press operation, the first display interface is switched to a fourth display interface. Among them, the third display interface displays an ultrasonic image formed based on a third imaging mode, and the fourth display interface displays an ultrasonic image formed based on a fourth imaging mode. The long-press operation is an operation in which the touch time on the first preset control exceeds a preset duration. The first imaging mode, the second imaging mode, the third imaging mode, and the fourth imaging mode are different. For example, the first imaging mode is the B mode, the second imaging mode is the C mode, the third imaging mode is the M mode, and the fourth imaging mode is the PW mode.

[0075] The following uses specific examples to illustrate the method for displaying an ultrasonic image of the present application.

[0076] For example, the display interface of the electronic device displays an ultrasonic image in the C mode. After the user touches the first preset control, the electronic device responds to the user's operation and switches the display interface displaying the ultrasonic image in the C mode to the display interface displaying the ultrasonic image in the B mode.

[0077] For another example, the display interface of the electronic device displays an ultrasonic image in the C mode. After the user touches the first preset control, the electronic device detects the user's touch operation on the first preset control. If the touch operation is a single-click operation, the electronic device switches to display the ultrasonic image in the B mode. If the touch operation is a double-click operation, the electronic device switches to display the ultrasonic image in the M mode. If the touch operation is a long-press operation, the electronic device switches to display the ultrasonic image in the PW mode.

[0078] In this embodiment, a device for displaying ultrasonic images is further provided. This device is used to implement the above-mentioned embodiments and preferred implementation manners, and those that have been described will not be repeated here. As used hereinafter, the term "module" may be a combination of software and / or hardware that can achieve a predetermined function. Although the device described in the following embodiments is preferably implemented in software, implementation in hardware, or a combination of software and hardware is also possible and contemplated.

[0079] This embodiment provides a device for displaying ultrasonic images, such as Figure 6 shown, including:

[0080] A display module 601, configured to display a first display interface;

[0081] A switching module 602, configured to switch the first display interface to a second display interface in response to a triggering operation on a first preset control. The second display interface displays an ultrasonic image formed based on a first imaging mode, and the first preset control is a preset control that floats on the first display interface or the second display interface and is used to start the first imaging mode.

[0082] In some alternative implementation manners, the first display interface displays an ultrasonic image formed based on a second imaging mode, where the first imaging mode and the second imaging mode are different.

[0083] In some alternative implementation manners, the first preset control is a movable preset control, and the moving range of the first preset control is the display area of the first display interface or the second display interface.

[0084] In some alternative implementation manners, the second display interface includes a first area and a second area. The first area displays an ultrasonic image formed based on the first imaging mode, and the device further includes:

[0085] A moving module, configured to control the first preset control to move to the second area when the first preset control is located in the first area.

[0086] In some alternative implementation manners, the second area is an edge area of the second display interface.

[0087] In some alternative implementation manners, the device further includes:

[0088] A determining module, configured to determine a target preset control based on a selection operation on the second area, where the target preset control is one of a plurality of second preset controls, and the second preset controls are controls configured in the second area and used to start corresponding preset functions;

[0089] A processing module is configured to execute a function corresponding to a target preset control, where the function of the target preset control is one of a photographing function, a video recording function, an image parameter optimization function, a display baseline function, a display ruler function, and a freeze function.

[0090] In some alternative embodiments, the first preset control is displayed on the first display interface or the second display interface in the form of a graph, text, number, or letter.

[0091] In some alternative embodiments, the first imaging mode and the second imaging mode are any two of a grayscale imaging mode, a color flow imaging mode, a motion imaging mode, and a Doppler imaging mode.

[0092] In some alternative embodiments, the first imaging mode is a grayscale imaging mode, and the second imaging mode is one of a color flow imaging mode, a motion imaging mode, and a Doppler imaging mode.

[0093] The further function descriptions of the above-mentioned various modules and units are the same as those in the corresponding above-mentioned embodiments, and will not be elaborated here.

[0094] The device for displaying an ultrasonic image in this embodiment is presented in the form of functional units. Here, the unit refers to an Application Specific Integrated Circuit (ASIC), a processor and a memory that execute one or more software or fixed programs, and / or other devices that can provide the above functions.

[0095] An embodiment of the present invention further provides an electronic device having the above-mentioned Figure 6 display ultrasonic image device.

[0096] Please refer to Figure 7 , Figure 7 which is a schematic structural diagram of an electronic device provided by an alternative embodiment of the present invention. As shown in Figure 7 , the electronic device includes: one or more processors 710, a memory 720, and an interface for connecting each component, including a high-speed interface and a low-speed interface. Each component communicates with each other using different buses and can be installed on a common main board or installed in other ways as needed. The processor can process instructions executed within the electronic device, including instructions stored in the memory or on the memory to display graphical information of a GUI on an external input / output device (such as a display device coupled to the interface). In some alternative embodiments, if necessary, multiple processors and / or multiple buses can be used together with multiple memories and multiple memories. Similarly, multiple electronic devices can be connected, and each device provides some necessary operations (for example, as a server array, a set of blade servers, or a multi-processor system).Figure 7 Take a processor 710 as an example.

[0097] The processor 710 can be a central processing unit, a network processor, or a combination thereof. Among them, the processor 710 can further include a hardware chip. The above-mentioned hardware chip can be an application-specific integrated circuit, a programmable logic device, or a combination thereof. The above-mentioned programmable logic device can be a complex programmable logic device, a field programmable gate array, a generic array logic, or any combination thereof.

[0098] Among them, the memory 720 stores instructions that can be executed by at least one processor 710, so that the at least one processor 710 executes the method shown in the above embodiments.

[0099] The memory 720 can include a program storage area and a data storage area. Among them, the program storage area can store an operating system and application programs required for at least one function; the data storage area can store data created according to the use of the electronic device, etc. In addition, the memory 720 can include a high-speed random access memory, and can also include a non-transitory memory, such as at least one disk storage device, a flash memory device, or other non-transitory solid-state storage devices. In some alternative embodiments, the memory 720 can optionally include a memory remotely provided with respect to the processor 710, and these remote memories can be connected to the electronic device through a network. Examples of the above-mentioned network include but are not limited to the Internet, an enterprise intranet, a local area network, a mobile communication network, and combinations thereof.

[0100] The memory 720 can include a volatile memory, for example, a random access memory; the memory can also include a non-volatile memory, for example, a flash memory, a hard disk, or a solid-state drive; the memory 720 can also include a combination of the above types of memories.

[0101] The electronic device further includes an input device 730 and an output device 740. The processor 710, the memory 720, the input device 730, and the output device 740 can be connected through a bus or other means. Figure 7 Take the connection through a bus as an example.

[0102] The input device 730 can receive input digital or character information, and generate key signal inputs related to the user settings and function controls of the electronic device, such as a touch screen, a keypad, a mouse, a trackpad, a touchpad, a pointing stick, one or more mouse buttons, a trackball, a joystick, etc. The output device 740 can include a display device, an auxiliary lighting device (for example, an LED), and a tactile feedback device (for example, a vibration motor), etc. The above-mentioned display device includes but is not limited to a liquid crystal display, a light-emitting diode, a display, and a plasma display. In some alternative embodiments, the display device can be a touch screen.

[0103] Embodiments of the present invention also provide a computer-readable storage medium. The method according to the embodiments of the present invention can be implemented in hardware, firmware, or be implemented as computer code that can be recorded on a storage medium, or be implemented as computer code that is originally stored in a remote storage medium or a non-transitory machine-readable storage medium and downloaded through a network and will be stored in a local storage medium, so that the method described herein can be stored as 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 memory, a random access memory, a flash memory, a hard disk, or a solid-state drive, etc.; further, the storage medium can also include a combination of the above-mentioned 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, and when the software or computer code is accessed and executed by the computer, the processor, or the hardware, the method shown in the above embodiments is implemented.

[0104] Although the embodiments of the present invention have been described in conjunction with the accompanying drawings, those skilled in the art can make various modifications and variations without departing from the spirit and scope of the present invention, and such modifications and variations all fall within the scope defined by the appended claims.

Claims

1. A method for displaying an ultrasonic image, characterized in that, Applied to an electronic device connected to an ultrasound probe, the method includes: Display a first display interface; In response to a triggering operation on a first preset control, switch the first display interface to a second display interface, wherein the second display interface displays an ultrasound image formed based on a first imaging mode, and the first preset control is a preset control suspended on the first display interface or the second display interface for starting the first imaging mode.

2. The method according to claim 1, wherein The first display interface displays an ultrasound image formed based on a second imaging mode, wherein the first imaging mode and the second imaging mode are different.

3. The method according to claim 1, wherein The first preset control is a movable preset control, and the moving range of the first preset control is the display area of the first display interface or the second display interface.

4. The method according to claim 3, wherein The second display interface includes a first area and a second area, and the first area displays an ultrasound image formed based on the first imaging mode. The method further includes: When the first preset control is located in the first area, control the first preset control to move to the second area.

5. The method according to claim 4, wherein The second area is an edge area of the second display interface.

6. The method according to claim 4, wherein The method further includes: Based on a selection operation on the second area, determine a target preset control, wherein the target preset control is one of a plurality of second preset controls, and the second preset controls are controls configured in the second area for starting corresponding preset functions; Execute the function corresponding to the target preset control, wherein the function of the target preset control is one of a photographing function, a video recording function, an image parameter optimization function, a display baseline function, a display scale function, and a freeze function.

7. The method according to any one of claims 1 to 6, characterized in that The first preset control is displayed on the first display interface or the second display interface in the form of a graph, text, number, or letter.

8. The method according to any one of claims 1 to 6, characterized in that, The first imaging mode and the second imaging mode are any two of a gray-scale imaging mode, a color flow imaging mode, a motion imaging mode, and a Doppler imaging mode.

9. The method according to any one of claims 1 to 6, characterized in that The first imaging mode is a gray-scale imaging mode, and the second imaging mode is one of a color flow imaging mode, a motion imaging mode, and a Doppler imaging mode.

10. An apparatus for displaying an ultrasonic image, characterized in that, The device includes: A display module for displaying a first display interface; A switching module for switching the first display interface to a second display interface in response to a triggering operation on a first preset control, wherein the second display interface displays an ultrasound image formed based on a first imaging mode, and the first preset control is a preset control suspended on the first display interface or the second display interface for starting the first imaging mode.

11. An electronic device, characterized in that, Includes: A memory and a processor, which are communicatively connected to each other. The memory stores computer instructions, and the processor executes the computer instructions to execute the method according to any one of claims 1 to 9.

12. A computer-readable storage medium, characterized in that, Computer instructions are stored on a computer-readable storage medium, and the computer instructions are used to cause a computer to execute the method according to any one of claims 1 to 9.