Operation method of medical equipment, auxiliary system and storage medium
By setting the first display area, the second display area and the process selection area in the medical equipment display interface, the user is guided to select functions and operation instructions are displayed, which solves the problem of difficulty for non-professionals to learn ultrasound instruments and realizes efficient use of the equipment.
Patent Information
- Application Number
- CN202410344640.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-25
- Publication Date
- 2025-09-26
AI Technical Summary
Non-professional medical equipment operators need to learn from scratch how to use ultrasound equipment, adjust measurement parameters and interpret ultrasound images. The learning cycle is long and difficult, resulting in a high threshold for using ultrasound equipment and difficulty in efficiently applying it in the medical field.
Provided is a method for operating a medical device. By setting a first display area and a second display area in a display interface and a process selection area between the two, the method guides the user to select a function, displays ultrasound images and operation instructions, and receives user instructions to enter the corresponding result interface, thereby lowering the usage threshold.
By comparing the operation instructions and ultrasound images in the display interface, users are guided to collect ultrasound images that meet the requirements of the image acquisition process, which lowers the threshold for using medical equipment and improves the usability of the equipment.
Smart Images

Figure CN120694677A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of medical equipment, and in particular to an operating method, an auxiliary system, and a storage medium for medical equipment. Background Art
[0002] With the advancement of medical testing technology, more and more instruments and equipment are being used in the medical industry. For example, the use of ultrasonic equipment to detect the internal structure of the human body can more accurately detect the patient's internal conditions from the outside, and the risks and pain are relatively small, which helps medical personnel understand the patient's physical condition.
[0003] However, not all medical personnel who need to use ultrasound equipment are professional instrument operators. They also need to learn from scratch how to use ultrasound equipment, adjust measurement parameters, and interpret ultrasound images. The learning cycle is long and the learning difficulty is high, resulting in ultrasound equipment usually having a high threshold for use and difficult to be used efficiently in the medical field. Summary of the Invention
[0004] To solve the above problems, the main purpose of this application is to provide an operating method for medical equipment, an auxiliary system and storage medium applied to medical equipment, which can facilitate operators to perform medical examinations and improve the usability of medical equipment.
[0005] The present application provides an operating method for a medical device, comprising entering a display interface, the display interface comprising a first display area, a second display area, and a process selection area arranged between the first display area and the second display area, the process selection area being used to select a usage function of the medical device, the first display interface being used to display an ultrasound image acquired by the medical device, and the second display interface being used to display an operation guide for acquiring the ultrasound image; receiving an operation instruction from a user on the process selection area; and entering a result interface corresponding to the operation instruction in response to the operation instruction.
[0006] The present application provides an auxiliary system for medical equipment, comprising a device body, a communication interface, and an output interface. The communication interface is connected to the device body and is used to connect to the medical equipment; the output interface is used to connect to a display device. The device body is configured to execute a computer program to implement any of the above methods.
[0007] The present application provides a computer-readable storage medium, wherein the computer-readable storage medium stores a computer program, and when the computer program is executed in a computer processor, the computer program implements any of the above methods.
[0008] The beneficial effects of the present application are: different from the existing technology, the present application discloses two areas in the display interface that display corresponding operation instructions and ultrasound images, which can guide users to refer to the operation instructions and use medical equipment to collect ultrasound images that meet the current image acquisition process requirements; there is also a process selection area between the two areas, so that users can choose the usage functions of the medical equipment, thereby lowering the threshold for using medical equipment and improving the usability of medical equipment. BRIEF DESCRIPTION OF THE DRAWINGS
[0009] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for describing the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without inventive efforts. Among them:
[0010] Figure 1 This is a flow chart of an embodiment of the operating method of the medical device of the present application.
[0011] Figure 2 It is a flowchart of an embodiment of image acquisition in the operating method of the medical device of the present application.
[0012] Figure 3 It is a flowchart of another embodiment of image acquisition in the operating method of the medical device of the present application.
[0013] Figure 4 It is a flowchart of an embodiment of the method for operating the medical device of the present application for displaying analysis results.
[0014] Figure 5 This is a schematic diagram of the display interface in the operating method of the medical device of this application.
[0015] Figure 6 This is a schematic diagram of the interface of the second display area in the operating method of the medical device of this application.
[0016] Figure 7 This is another interface schematic diagram of the second display area in the operating method of the medical device of the present application.
[0017] Figure 8 This is another interface schematic diagram of the second display area in the operating method of the medical device of the present application.
[0018] Figure 9 This is a schematic diagram of the interface of the first display area in the operating method of the medical device of this application.
[0019] Figure 10 It is a structural diagram of an auxiliary system embodiment of the medical device of the present application.
[0020] Figure 11 It is a circuit structure diagram of an embodiment of a computer-readable storage medium of the present application. DETAILED DESCRIPTION
[0021] In order to make the above-mentioned objects, features and advantages of the present application more obvious and easy to understand, the specific implementation methods of the present application are described in detail below in conjunction with the accompanying drawings. It will be understood that the specific embodiments described herein are only used to explain the present application, rather than to limit the present application. It should also be noted that, for ease of description, only some, rather than all, structures related to the present application are shown in the accompanying drawings. Based on the embodiments in the present application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of this application.
[0022] The terms "first," "second," and the like in this application are used to distinguish between different objects, not to describe a particular order. Furthermore, the terms "including," "comprising," and "provided with," and any variations thereof, are intended to cover non-exclusive inclusions. For example, a process, method, system, product, or apparatus comprising a series of steps or elements is not limited to the listed steps or elements, but may optionally include steps or elements not listed, or may optionally include other steps or elements inherent to the process, method, product, or apparatus.
[0023] References herein to "embodiments" mean that a particular feature, structure, or characteristic described in connection with the embodiments may be included in at least one embodiment of the present application. The appearance of this phrase in various places in the specification does not necessarily refer to the same embodiment, nor does it constitute an independent or alternative embodiment that is mutually exclusive of other embodiments. It is understood, both explicitly and implicitly, by those skilled in the art that the embodiments described herein may be combined with other embodiments.
[0024] If the technical solution of this application involves personal information, the product that applies the technical solution of this application has clearly informed the personal information processing rules and obtained the individual's voluntary consent before processing personal information. If the technical solution of this application involves sensitive personal information, the product that applies the technical solution of this application has obtained the individual's separate consent before processing sensitive personal information, and at the same time meets the "explicit consent" requirement. For example, on personal information collection devices such as cameras, a clear and prominent sign is set to inform that the personal information collection scope has been entered and personal information will be collected. If the individual voluntarily enters the collection scope, it is deemed that they agree to the collection of their personal information; or on the personal information processing device, when the personal information processing rules are notified by obvious signs / information, the individual's authorization is obtained through pop-up information or by asking the individual to upload their personal information; among them, the personal information processing rules may include information such as the personal information processor, the purpose of personal information processing, the processing method, and the type of personal information processed.
[0025] With the advancement of medical testing technology, more and more instruments and equipment are being used in the medical industry. For example, the use of ultrasonic equipment to detect the internal structure of the human body can more accurately detect the patient's internal conditions from the outside, and the risks and pain are relatively small, which helps medical personnel understand the patient's physical condition.
[0026] Parturition monitoring is particularly important. This crucial phase of labor is crucial for ensuring maternal and fetal safety. Traditionally, clinicians and midwives have primarily relied on digital vaginal examinations and clinical experience for monitoring. However, digital vaginal examinations are not only painful for pregnant women and increase the risk of infection, but also rely heavily on the physician's experience, leading to a high degree of subjectivity in their diagnostic results. Therefore, the integration of ultrasound technology has played a crucial role in labor monitoring. Several studies have demonstrated that intrapartum ultrasound technology is more accurate, objective, and reproducible than clinical examination in certain aspects. It can accurately and effectively monitor labor progress, enabling clinicians to make effective decisions and intervene promptly, thereby reducing the incidence of adverse pregnancy outcomes and ensuring maternal and fetal safety. Therefore, the development of intrapartum ultrasound technology is a hot topic for obstetricians and midwives.
[0027] However, not all medical personnel who need to use ultrasound equipment are professional ultrasound equipment operators. They also need to learn from scratch how to use ultrasound equipment, adjust measurement parameters, and interpret ultrasound images. Due to the precision of ultrasound equipment, the learning cycle is usually long and difficult, and there is a lack of guidance in operation. As a result, ultrasound equipment usually has a high threshold for use, making it difficult to be used efficiently in the medical field.
[0028] Based on the problems and inconveniences that occur during the use of current medical devices, the inventors of this application have conducted long-term research and, in order to improve or solve the above technical problems, this application proposes at least the following embodiments.
[0029] Figure 1 It is a flow chart of an embodiment of the method for operating the medical device of the present application. It should be noted that if there is substantially the same result, this embodiment is not based on Figure 1 The process sequence shown is limited. Figure 1 As shown, this embodiment includes:
[0030] S100: Enter the display interface.
[0031] The embodiment of the method for operating a medical device of the present application can be executed on the medical device. Specifically, the medical device can include an ultrasound probe having a collection area, and the medical device can collect ultrasound images through the collection area of the ultrasound probe.
[0032] The ultrasound probe of the medical device may be a replaceable probe, and different types of ultrasound probes are used for different ultrasound image acquisition tasks.
[0033] In step S100, the medical device may enter a display interface, which may be displayed by a display component equipped with the medical device or a display device connected to the medical device.
[0034] Specifically, the instruction to enter the display interface can be input by the user to the medical device through the human-machine interface, or can be triggered by default when the medical device is started. For example, the user steps on a pedal connected to the medical device, thereby sending the instruction to enter the display interface to the medical device.
[0035] The display interface may include a first display area, a second display area, and a process selection area disposed between the first and second display areas. The process selection area is used to select a function of the medical device. The first display interface is used to display ultrasound images captured by the medical device, and the second display interface is used to display operation instructions for capturing the ultrasound images.
[0036] Among them, the operation instructions are used to guide users to use medical equipment to collect data, so as to obtain ultrasound images that meet their needs.
[0037] The selection of the use function of the medical device can specifically include editing the image acquisition process. For example, the user can edit the image acquisition process according to parameters such as the type of ultrasound probe, working mode, image acquisition location, and image acquisition target. Different parameters can correspond to different image acquisition processes. For example: when it is necessary to acquire intrapartum ultrasound images of a pregnant woman, the user can select a suitable ultrasound probe and select the intrapartum ultrasound mode as the image acquisition process. At this time, the medical device outputs to the display device the operating instructions that meet the requirements of the intrapartum ultrasound mode.
[0038] Optionally, the process selection area may include an acquisition mode selection area, the acquisition mode selection area includes at least one advanced imaging function icon, the advanced imaging function icon corresponds one-to-one to the image acquisition process, and the advanced imaging function icon is used to be triggered to select the image acquisition process corresponding thereto.
[0039] S200: Receive a user's operation instruction on the process selection area.
[0040] The medical device receives the user's operation instruction on the process selection area. The operation instruction can also be input by the user to the medical device through the human-machine interface, or can be triggered by default when the medical device is started.
[0041] S300: In response to the operation instruction, enter the result interface corresponding to the operation instruction.
[0042] In response to the operation instruction, the medical device may enter a result interface corresponding to the operation instruction. Further, the result interface may be displayed using a display component equipped with the medical device or a display device connected to the medical device.
[0043] Using the method provided in this embodiment, corresponding operation instructions and ultrasound images can be displayed in two areas of the display interface, which can guide users to refer to the operation instructions and use medical equipment to collect ultrasound images that meet the current image acquisition process requirements; a process selection area is also provided between the two areas so that users can choose the usage functions of the medical equipment, thereby lowering the threshold for using the medical equipment and improving the usability of the medical equipment.
[0044] Figure 2 This is a flow chart of an embodiment of image acquisition in the method of operating the medical device of the present application. If there is substantially the same result, this embodiment is not based on Figure 2 The process sequence shown is limited. Figure 2 As shown, this embodiment includes:
[0045] S201: Displaying at least one guidance screen corresponding to the image acquisition process in a second display area.
[0046] The operation guide may include at least one guide screen. The guide screen may include the section features of a specified section of the current image acquisition process. The user may operate the guide screen on the display interface through a human-machine interface such as a touch screen, mouse, keyboard, or other device.
[0047] A designated section is a human body section included in an ultrasound image captured when the ultrasound probe is positioned at a specified body region and angle or in a specified motion. In the current image acquisition process, the image content, measurement data, and test results required by the user can be obtained by analyzing the designated section.
[0048] In step S201 , the medical device may display at least one guidance screen corresponding to the current image acquisition process in the second display area to indicate to the user the ultrasound image required for scanning the subject under the current image acquisition process.
[0049] S202: In response to the user selecting a certain guidance screen, displaying details of the guidance screen in the display interface.
[0050] In response to the user selecting a certain guidance screen, the medical device displays details of the guidance screen on the display interface.
[0051] Specifically, the details of the guidance screen may include pictures, videos and / or text descriptions that can reflect how to use the ultrasound probe, and may also include pictures, videos and / or text descriptions that can reflect the characteristics of a specified section.
[0052] Optionally, after step S201, the medical device may also play audio that can reflect the use of the ultrasound probe and / or the specified section characteristics through an audio playback device connected to the medical device in response to the user selecting a certain guidance screen.
[0053] Optionally, the guidance screen may specifically include at least one of a fetal position ultrasound probe operation guidance screen and a fetal head position ultrasound probe operation guidance screen.
[0054] The details of the fetal position ultrasound probe operation guidance screen may include at least one of a first ultrasound probe operation guidance video, a second ultrasound probe operation guidance video, and a third ultrasound probe operation guidance video.
[0055] The first ultrasound probe operation instruction video guides the user to use the axial plane of the medical device's probe to scan relatively evenly from above the midline of the abdomen, stopping at the pubic symphysis. The second ultrasound probe operation instruction video guides the user to use the sagittal plane of the medical device's probe to scan from the center of the abdomen vertically to the user's left, stopping at the right border of the pregnant woman's abdomen. The third ultrasound probe operation instruction video guides the user to use the sagittal plane of the medical device's probe to scan from the center of the abdomen vertically to the user's right, stopping at the left border of the pregnant woman's abdomen.
[0056] The details of the fetal head position ultrasound probe operation guidance screen may include at least one of a fourth ultrasound probe operation guidance video and a fifth ultrasound probe operation guidance video.
[0057] The fourth ultrasound probe operation instruction video guides the user to place the probe of the medical device at the perineum to acquire an ultrasound image in a transverse plane. The fifth ultrasound probe operation instruction video guides the user to place the probe at the pubic symphysis to acquire an ultrasound image in a longitudinal plane.
[0058] Optionally, in response to acquiring an ultrasound image that matches the specified section corresponding to the guidance screen, the medical device may display details of another guidance screen of the image acquisition process in the display interface.
[0059] If there is more than one guidance screen corresponding to the current image acquisition process, the medical device displays the details of another guidance screen belonging to the image acquisition process in the display interface in response to acquiring an ultrasound image that meets the specified section corresponding to the guidance screen.
[0060] If all designated sections corresponding to the current image acquisition process have been acquired or there is no other guidance screen for the current image acquisition process, the medical device responds to acquiring an ultrasound image that matches the designated section corresponding to the guidance screen and determines that the operation guidance corresponding to the current image acquisition process is completed.
[0061] Optionally, when there is more than one guidance screen corresponding to the current image acquisition process, the user can adjust the display order of the details of the multiple guidance screens. For example, when the user selects a guidance screen and triggers editing the order of the multiple guidance screens, thereby sending a second message, the medical device can respond to the second message by changing the order of the selected guidance screen among the multiple guidance screens.
[0062] In response to acquiring an ultrasound image that matches the specified section corresponding to the guidance screen, the medical device can specifically obtain the arrangement order of multiple guidance screens and display the details of the guidance screen that is one step behind the current guidance screen in the arrangement order on the display interface.
[0063] Figure 3 This is a flow chart of another embodiment of image acquisition in the operating method of the medical device of the present application. If there is substantially the same result, this embodiment is not based on Figure 3 The process sequence shown is limited. Figure 3 As shown, this embodiment includes:
[0064] S211: Displaying at least one action guide of the guidance screen in the display interface.
[0065] Specifically, the guidance screen may include at least one action guide, wherein the action guide is used for reference by the user, so that the user can use the medical device to collect data according to the action guide, thereby collecting an ultrasound image including a specified section.
[0066] Optionally, if the guidance screen includes more than one action guide, the execution order of these action guides can also be actively adjusted by the user.
[0067] For example, in the intrapartum ultrasound image acquisition process, there are three action guides. These three action guides can appear in the display interface in the order in which they are arranged, allowing the user to perform the acquisition according to the three action guides in that order. Alternatively, all three action guides can appear in the display interface simultaneously, with the action guide currently being performed being highlighted, and completed action guides having a completion mark next to them.
[0068] The adjustment method is that the user can use a mouse or a touch screen to directly drag the guide picture or action guide in the second display area.
[0069] Optionally, the medical device can determine, in real time or with a delay, whether the user has accurately completed a scan in accordance with a specific action guide based on the acquired ultrasound image and the change in position of the ultrasound probe. For example, if the action guide indicates that the user moves the probe a certain distance in a fixed direction and then raises the probe away from the scanned object, a meaningful ultrasound image can no longer be acquired after the probe is raised. Therefore, the medical device can determine whether the scan indicated by the action guide has concluded based on the ultrasound image acquired by the probe.
[0070] For another example, when the medical device identifies the end-position anatomical structure in the acquired ultrasound image, it can be determined that the probe has moved to the scanning end position indicated by the motion guide, and the scanning process can be ended.
[0071] S212: In response to the user completing an image acquisition using the medical device, but the acquired ultrasound image does not include key anatomical structures, an action guide switching element is displayed in the display interface, and / or at least one action guide of the guidance screen is continuously displayed in the display interface until the medical device identifies the key anatomical structure in the ultrasound image.
[0072] In response to a user completing an image acquisition using a medical device, but the acquired ultrasound image does not include a critical anatomical structure, the medical device may determine that the ultrasound image does not capture a required designated section, and the medical device may control the display interface to continuously display at least one action guide from the current guidance screen. This prompts the user that acquisition of the designated section corresponding to the current guidance screen has not yet been completed and that ultrasound image acquisition needs to continue according to the action guide until the medical device identifies the critical anatomical structure in the acquired ultrasound image.
[0073] The key anatomical structure may be a structure that is recognizable and universal in a designated section. When the key anatomical structure appears in an ultrasound image, it can be determined that the ultrasound image includes the designated section.
[0074] For example, during an intrapartum ultrasound, if the guidance screen is used to detect fetal position, the medical device can determine that the fetus is in an occiput posterior position if two eye sockets are identified in the ultrasound image. In this case, the device can determine that the ultrasound image includes the specified section based on the two eye sockets, thereby changing the display content within the interface.
[0075] The medical device may also display an action guide switching element in the display interface, wherein the action guide switching element is used to be triggered by the user to replace at least one current action guide displayed in the display interface with the remaining action guides in the guidance screen.
[0076] Optionally, at the same time, the medical device can also receive the fetal position manually edited by the user on the display interface, so that the user can input the results of manual recognition of key anatomical structures of the ultrasound image into the medical device.
[0077] Optionally, when the joint anatomical structure is not identified from the ultrasound image, the user may manually select an ultrasound image including a specified section from the ultrasound images acquired by the medical device.
[0078] For example: a medical device outputs an ultrasound image to a display device so that it can be presented to a user through a display interface, thereby notifying the user to manually determine whether the ultrasound image includes a specified section through a human-machine interface connected to the medical device, and then manually extract a segment including the specified section from the ultrasound image.
[0079] Optionally, if it is determined that the acquired ultrasound image includes key anatomical structures, a further determination can be made as to whether usable ultrasound parameters can be obtained using the ultrasound image. If usable ultrasound parameters cannot be obtained and the current guidance screen includes multiple action guides, the medical device can notify the user to perform acquisition according to another action guide, or notify the user to manually measure the ultrasound image and enter ultrasound parameters.
[0080] For example, when checking fetal position, a single scan or scanning method may not be able to determine the exact fetal position, requiring a combination of multiple methods. Alternatively, if the identified ultrasound parameter deviates significantly from typical data, there's a high probability of an error and, therefore, it's not considered a valid ultrasound parameter.
[0081] Optionally, the display interface may further include an editable area for displaying ultrasound parameters identified from the current ultrasound image.
[0082] When the user manually measures the ultrasound image and inputs the fetal position into the medical device, specifically: the medical device notifies the user to manually measure the ultrasound image and edit the fetal position using the editable area. The editing may be input, selection or modification.
[0083] Optionally, the second display area can also be used to display analysis results generated using ultrasound images for the current image acquisition process. The analysis results can specifically include at least one of a labor progress parameter change trend graph, a birth probability map, and a fetal model graph.
[0084] Figure 4 This is a flow chart showing an embodiment of the analysis result in the operation method of the medical device of the present application. If there are substantially the same results, this embodiment is not based on Figure 4 The process sequence shown is limited. Figure 4 As shown, this embodiment includes:
[0085] S301: Displaying analysis results obtained by analyzing the ultrasound image in a second display area of the display interface.
[0086] The medical device generates and outputs display content of the analysis result to the display device, so that the analysis result obtained by analyzing the ultrasound image can be displayed in the second display area of the display interface.
[0087] S302: In response to a data point in the labor progress parameter change trend graph being triggered, a fetal model corresponding to the ultrasound image of the data point is displayed in the second display area.
[0088] When the analysis result includes a labor progress parameter change trend graph, the medical device may be triggered in response to a data point in the labor progress parameter change trend graph and may display a fetal model corresponding to the ultrasound image of the data point in the second display area.
[0089] Optionally, in response to a data point in the labor progress parameter change trend graph being triggered, the medical device may further display a birth probability map corresponding to the ultrasound image of the data point in the second display area.
[0090] Optionally, the medical device is triggered in response to a data point in the labor progress parameter change trend chart, and can also display an ultrasound image corresponding to the data point in the first display area, so that the user can view the ultrasound image in comparison with the analysis results to deepen their understanding of the ultrasound image.
[0091] Figure 5 It is a schematic diagram of the interface display interface in the operation method of the medical device of this application. It should be noted that if there is substantially the same result, this embodiment does not Figure 5 The interface shown is limited. Figure 5 As shown, in this embodiment, the display interface 1 includes a first display area 11 and a second display area 12 .
[0092] The first display area 11 may include a main image area 111 and a history image area 112. The main image area 111 may be used to display an ultrasound image 113 currently scanned by the medical device, and the history image area 112 may be used to display ultrasound images 113 previously acquired by the medical device.
[0093] The acquired ultrasound images 113 may be displayed in the history image area 112 in the form of thumbnails in the order of acquisition time.
[0094] Optionally, the historical image area 112 may be hidden when not in use or when no historical images exist, and the user may actively trigger it to be displayed. For example, the user may use a touch screen to trigger a folding control corresponding to the historical image area 112 to expand or hide the historical image area 112.
[0095] Optionally, the user may trigger a certain ultrasound image 113 / thumbnail in the history image area 112 to cause the corresponding ultrasound image 113 to be displayed in the main image area 111 for easy viewing by the user.
[0096] Alternatively, the ultrasound image 113 may be a captured video or a frozen image. The video and the image may be displayed differently in the first display area 11, for example, a playable logo or a movie frame may be set in the thumbnail of the ultrasound image 113 in the form of a video.
[0097] The display interface 1 may also include a process selection area 13. This process selection area 13 includes a process selection area 131, which is used to be triggered by the user to select an image acquisition process. For example, a user triggering process selection area 131 will display a window on the display interface 1 containing at least one advanced imaging function icon. Each advanced imaging function icon corresponds to an image acquisition process, and the user can trigger an advanced imaging function icon in this window to enter the corresponding image acquisition process.
[0098] For example, a user can trigger an expansion icon near the process selection area 131 to display all advanced imaging function icons simultaneously near the process selection area 13. When the advanced imaging function icons are displayed simultaneously, they can cover part of the first display area 11, the second display area 12, and the process selection area 13, so that the advanced imaging function icons can be fully presented to the user.
[0099] For another example, the user may slide the scroll wheel in the process selection area 131 to quickly switch the image acquisition process.
[0100] Furthermore, the user can trigger the process selection area 131 to return the medical device to the state before receiving the instruction to enter the display interface.
[0101] Optionally, the advanced imaging function icon selected by the user may be displayed in thumbnail form in the process selection area 131 so that the user can understand the current image acquisition process.
[0102] Optionally, the user triggering the advanced imaging function icon may include at least one of a physical button, voice and gesture.
[0103] Optionally, the display interface 1 may further include a first editing element 132 near the process selection area 13, which is used to be triggered by the user to edit the ultrasound image 113 in the first display area 11. The editing may include at least one of lateral gain compensation, time gain compensation, measurement, freezing, recording, deletion, refreshing, and ultrasound image collection.
[0104] The lateral gain compensation and the time gain compensation are used to compensate for the attenuation of the ultrasonic signal caused by different reasons, so as to improve the quality of the ultrasonic image 113 . Both the lateral gain compensation and the time gain compensation may include eight adjustable items.
[0105] Measure is used to measure the ultrasound image 113 to obtain ultrasound parameters. Freeze is used to capture a specific image from the main image area 111 as the ultrasound image 113. Record is used to capture a specific video segment from the main image area 111 as the ultrasound image 113. Delete is used to delete a specific ultrasound image 113 from the history image area 112. Refresh is used to refresh the ultrasound image 113 displayed in the main image area 111. Ultrasound Image Set is used to open a new display area that includes all ultrasound images 113 in the history image area 112.
[0106] like Figure 4 As shown, the first editing elements 132 located in the process selection area 13 are, from left to right, Measure, Freeze, Record, Ultrasound Image Set, and Delete. When the ultrasound image 113 in the main image area 111 is a video, the first editing element 132 located between the process selection area 13 and the historical image area 112 can be used to adjust the progress of the video.
[0107] Optionally, the first editing element 132 located between the procedure selection area 13 and the history image area 112 may also be used to refresh the ultrasound image 113 displayed in the main image area 111 .
[0108] Optionally, the first editing element 132 located in the main image area 111 is used to edit gain compensation of the ultrasound image 113 in the main image area 111 , such as TGC (time gain compensation) and / or LGC (lateral gain compensation).
[0109] Optionally, the display interface 1 may further include a second editing element 133 corresponding to the current image acquisition process. This second editing element 133 changes as the image acquisition process changes. Second editing element 133 is used to be triggered by the user to activate the image acquisition function for the current image acquisition process. For example, if the current image acquisition process is production monitoring, the image acquisition function for that process may include displaying operational instructions and / or analysis results 124 for the current image acquisition process in the second display area 12.
[0110] Among them, intrapartum monitoring can refer to the process in which medical staff use all means to explore, monitor and / or diagnose the condition of the mother and her fetus in her womb.
[0111] It should be noted that different image acquisition processes may acquire different ultrasound parameters, and the content that users want to focus on is also different. Therefore, the image acquisition functions of different image acquisition processes are also different.
[0112] Optionally, if an image acquisition process does not have a corresponding image acquisition function, the second editing element 133 may not be displayed in the display interface 1 when the image acquisition process is executed.
[0113] Optionally, the second editing element 133 may be displayed in a suspended manner near the first editing element 132. The second editing element 133 may also partially cover the first editing element 132 to be highlighted in the display interface 1. Figure 4 As shown, the second editing element 133 may be located in the process selection area 13 and close to the first editing element 132 .
[0114] Optionally, after selecting an image acquisition process, the corresponding image acquisition function can be directly triggered by default. In this embodiment, the second editing element 133 can be the same element as the advanced imaging function icon displayed in the process selection area 131. When the user selects the advanced imaging function icon, the second editing element 133 is triggered at the same time. After determining the image acquisition process, the medical device can automatically display the operation instructions and / or analysis results 124 corresponding to the image acquisition process in the second display area 12.
[0115] The second display area 12 may include a guide screen 121. The guide screen 121 may be an image, a text description, or a video. The text may be played to the user in a voice manner.
[0116] Specifically, in this embodiment, the two guidance screens 121 in the second display area 12 are, from left to right, a fetal position ultrasound probe operation guidance screen and a fetal head position ultrasound probe operation guidance screen.
[0117] Optionally, the display interface 1 may further include functional elements 14 for performing common operations on the medical device. In this embodiment, the functional elements 14 are located at the bottom of the display interface 1 and, from left to right, include scanned object information, probe scan, current report, historical report, settings, and end current scan.
[0118] The scanned subject information is used by the user to trigger registration and viewing of the scanned subject information. This allows the ultrasound images 113, ultrasound parameters, and analysis results 124 subsequently acquired by the medical device to be associated with the scanned subject, facilitating service and management of the scanned subject. The scanned subject information may include the subject's number, name, gender, age, attending physician, and / or examining physician. For intrapartum monitoring, the scanned subject information may also include fetal number, fetal position, placental position, gestational age, expected date of delivery, and / or gestational age.
[0119] Probe scanning is used to trigger the user to enter the process of selecting an image acquisition process or selecting an ultrasound probe. After the probe scanning is triggered, the medical device can start outputting to the display device to enter an interface for the user to select an image acquisition process or an ultrasound probe, so that the user can issue an instruction to enter the display interface 1 through the interface.
[0120] This report is used by the user to trigger the generation, viewing, and / or storage of a test report generated using the ultrasound images 113 acquired during the current scan. Optionally, the test report may include the ultrasound images 113, ultrasound parameters, and more detailed analysis results 124 to fully demonstrate the results of the current scan to the user.
[0121] The historical report is used to trigger the display of inspection reports generated by other scanning processes that the scanned object underwent before the current scan. Specifically, this display method can be a second interface displayed on a display device. The second interface includes a table of report information, where the report information corresponds one-to-one with the inspection reports generated by other scanning processes. The user can trigger a specific report information to view the corresponding inspection report.
[0122] This setting allows users to trigger edits to the medical device's system and / or operating status. The End Current Scan button allows users to trigger the end of the current scan. Optionally, after the current scan is complete, a test report for the scan can be automatically generated and / or stored.
[0123] Optionally, the user can trigger triggerable elements in the display interface 1 by inputting audio. The triggerable elements include the editable area 123, the second editing element 133, the first editing element 132, the functional element 14, the guidance screen 121, etc. For example, if the user inputs the voice word "freeze" through the human-machine interface of the medical device, the medical device automatically triggers the first editing element 132 corresponding to the freeze function.
[0124] Optionally, the medical device may highlight the triggered triggerable elements to make the interface display clearer.
[0125] Figure 6This is a schematic diagram of the interface of the second display area in the operating method of the medical device of this application. It should be noted that if there is substantially the same result, this embodiment does not Figure 6 The interface shown is limited. Figure 6 As shown, in this embodiment, the second display area 12 is the second display area 12 after a certain guidance picture 121 is triggered, and the second display area 12 includes at least one action guide 122 belonging to the certain guidance picture 121 .
[0126] Optionally, the action guide 122 may be an image, video, and / or text corresponding to the ultrasound probe scanning action and the position of the scanned object, wherein the text may be played to the user in the form of voice.
[0127] Specifically, the action guide 122 in this embodiment is, from left to right, a first ultrasound probe operation guidance video, a second ultrasound probe operation guidance video, and a third ultrasound probe operation guidance video.
[0128] The second display area 12 may also include an editable area 123, which the user can trigger to edit the fetal position data identified from the ultrasound image 113. Specifically, the editable area 123 can be triggered to display at least one optional item in the second display area 12. The optional item corresponds to the fetal position one by one. The user triggers the optional item to modify the ultrasound parameters to the corresponding fetal position.
[0129] Specifically, the fetal position may include at least one of breech position, left occiput transverse position, right occiput transverse position, occiput anterior position, and cephalic position.
[0130] The second display area 12 further includes a switching element 125 . In this embodiment, the switching elements 125 correspond one-to-one to the guidance screen 121 and the analysis result 124 . Triggering a switching element 125 can cause the corresponding display content to be displayed in the second display area 12 .
[0131] Optionally, the switching element 125 corresponding to the currently displayed content can be highlighted in the second display area 12. For example, in this embodiment, the highlighted switching element 125 is "XXX", and "XXX" corresponds to the fetal position ultrasound probe operation guide screen.
[0132] Optionally, when an action corresponding to an action guide 122 is completed, a completion mark may be displayed near the action guide 122, for example, by marking the action guide 122. When a designated section corresponding to a guidance screen 121 is obtained and ultrasound parameters are available, a completion mark may also be displayed near the guidance screen 121.
[0133] For example, when a user scans a fetus according to an action guide 122, if the anatomical structure in the ultrasound image 113 identifies a midline section of the brain, the fetus can be preliminarily determined to be in an occipital transverse position, but it is not possible to determine whether the fetus is in a left or right occipital transverse position. In this case, the ultrasound image 113 including the midline of the brain can be stored, and a completion mark can be generated near the action guide 122. The completion mark can be a colored border or a "check mark" can be displayed somewhere in the action guide 122 to remind the user that the scan has been completed according to the action guide 122.
[0134] At the same time, the user can be prompted on the display interface 1 to perform another scan according to another action guide 122, and determine whether the fetal position is left occipital transverse or right occipital transverse based on the anatomical structures identified during the second scan. Similarly, if the second scan still cannot determine the specific fetal position, a completion indicator will be generated near the action guide 122, and the user will be prompted to perform another scan according to the remaining action guides 122 until usable ultrasound parameters are obtained.
[0135] Figure 7 This is another interface diagram of the second display area in the operating method of the medical device of the present application. It should be noted that if there is substantially the same result, this embodiment does not Figure 7 The interface shown is limited. Figure 7 As shown, the highlighted switching element 125 in this embodiment is "YYY", which corresponds to the ultrasound probe operation guide screen for fetal head position. The action guides 122 are respectively the fourth ultrasound probe operation guide video and the fifth ultrasound probe operation guide video from left to right.
[0136] Optionally, when the user completes the action guidance shown in the fourth ultrasound probe operation guidance video or the fifth ultrasound probe operation guidance video, a completion mark may appear near the fourth ultrasound probe operation guidance video or the fifth ultrasound probe operation guidance video to remind the user that the action guidance has been completed.
[0137] Figure 8 This is another interface diagram of the second display area in the operating method of the medical device of the present application. It should be noted that if there is substantially the same result, this embodiment does not Figure 8 The interface shown is limited. Figure 8 As shown, the highlighted switching element 125 in this embodiment is “Analysis Result”, and the “Analysis Result” corresponds to the analysis result 124 obtained by the medical device based on the collected ultrasound image 113 .
[0138] Specifically, the analysis result 124 in this embodiment may include a change trend of labor progress parameters generated using ultrasound parameters. Figure 6 , production probability mapping Figure 7 and fetal models Figure 4At least one of them.
[0139] Among them, the fetal model Figure 4 It can be a three-dimensional stereogram, used to simulate the fetal position information and / or fetal head position information of the fetus in the abdomen at different time points.
[0140] Specifically, in addition to the fetus itself, the fetal model diagram can also include some of the mother's body structures, such as soft tissues such as the uterus, cervix, pelvic peritoneum, and skeletal structures such as the pelvis, so as to reflect the relative position of the fetus and the mother's body, so that medical personnel can judge the progress of delivery based on the mother's physical condition.
[0141] Changing trends of labor progress parameters Figure 6 It can be a line graph and / or a bar graph. Labor progress parameter change trend Figure 6 The user can visualize the progress of labor using a line chart, with ultrasound parameters as the ordinate and time as the abscissa. The ultrasound parameter used as the ordinate can be at least one of the following: fetal head direction, fetal head advancement distance, fetal head advancement angle, head-perineum distance, head-pubic symphysis distance, midline angle, occipital-spine angle, or chin-sternum angle. Different ultrasound parameters are displayed as different lines in the chart.
[0142] Changing trends of parameters in the same labor process Figure 6 Multiple vertical axes can be displayed in the image, and different vertical axes can correspond to different ultrasound parameters, different vertical coordinate values, and different units. In this embodiment, the ultrasound parameters of the left and right vertical axes are cervical dilation and fetal head position, respectively.
[0143] Furthermore, users can modify the variables on the vertical axis. For example, the change trend of labor progress parameters Figure 6 The variable corresponding to the left vertical axis can be changed from cervical dilation to AOP (angle of progression of the fetal head), HPD (fetal head position), HSD (head-pubic symphysis distance), OSA (occipital-cervical angle), CCA (chin-sternal angle), CMA (cerebral midline angle) or CD (degree of cervical dilation), etc.
[0144] Changing trends of labor progress parameters Figure 6 The horizontal axis is the time when the ultrasound device obtains these ultrasound parameters. Specifically, the ultrasound parameters are obtained by the ultrasound device collecting ultrasound images and performing fetal measurements on the ultrasound images to obtain the ultrasound parameters.
[0145] Production Probability Mapping Figure 7 It can be a grayscale bar and an arrow pointing to a position in the grayscale bar. The different grayscale shades of the grayscale bar can be used to reflect the smoothness of the delivery process. For example, the lighter the grayscale, the safer the delivery.
[0146] Fetal model Figure 4 It is generated by medical equipment based on the ultrasound image 113 and ultrasound parameters, and is used to reflect the relative position of the fetus and the mother's body at a certain moment, and can intuitively reflect the ultrasound value and delivery progress.
[0147] Furthermore, the user can analyze the changing trend of labor process parameters. Figure 6 When a data point is selected in the fetal model Figure 4 and production probability mapping Figure 7 And / or the ultrasound image 113 in the main image area 111 can be changed according to the ultrasound parameters at the data point, so that the user can easily view the production situation at a certain moment.
[0148] Figure 9 This is a schematic diagram of the interface of the first display area in the operating method of the medical device of this application. It should be noted that if there is substantially the same result, this embodiment does not Figure 9 The interface shown is limited. Figure 9 As shown, this embodiment may be the main image area 111 of the first display area 11 , including the ultrasound image 113 , the measurement line 114 , the first editing element 132 and the editable area 123 .
[0149] The medical device can identify and mark the measurement line 114 within the ultrasound image 113 in the main image area 111. The ultrasound parameters within the editable area 123 are calculated by the medical device based on fetal measurements of the measurement line 114. A user can edit the ultrasound parameters within the measurement line 114 and the editable area 123 to modify the medical device's identification results. For example, a user can trigger the measurement line 114 to adjust the position of the measurement line 114 and the feature points on it. Another example is a user triggering a specific ultrasound parameter within the editable area 123 and editing it through the human-machine interface connected to the medical device.
[0150] Specifically, the ultrasound parameters displayed in the editable area 123 in this embodiment include: angle of advancement (AOP) of 97.59°, head position (Head Station) of -17.67 mm, head-to-pubic symphysis distance (HSD) of 45.73 mm, and progression distance (PD) of 71.37 mm. It should be noted that the ultrasound image 113, specific types of ultrasound parameters, specific values of ultrasound parameters, and measurement line 114 provided in this embodiment are provided for illustrative purposes only and do not limit actual implementations.
[0151] Optionally, the position of the editable area 123 displaying ultrasound parameters can be actively adjusted by the user and is not limited to the main image area 111 of the first display area 11. The user can move the editable area 123 to a position in the display interface 1 that does not block the line of sight and / or facilitates editing operations to improve the usability of the medical device.
[0152] Figure 10 It is a schematic diagram of the structure of the auxiliary system embodiment of the medical device of the present application. It should be noted that if there is substantially the same result, this embodiment is not based on Figure 10 The structure shown is limited. Figure 10 As shown, the auxiliary system 2 for a medical device described in the embodiment of the auxiliary system for a medical device of the present application may include a medical device 21, a communication interface 22, and an output interface 23. The medical device 21 may include a device body 21a. The communication interface 22 is connected to the device body 21a and is used to connect to the medical device 21 to obtain ultrasound images and analysis data from the medical device 21. The output interface 23 is used to connect to a display device 24 to transmit the ultrasound images and analysis data obtained from the medical device 21 to the display device 24 for display.
[0153] The device body 21a may specifically include a memory, which is used to store computer programs and may be a ROM (Read-Only Memory), a RAM (Random Access Memory), or other types of storage devices. Specifically, the memory may include one or more computer-readable storage media, which may be non-transitory. The memory may also include a high-speed random access memory, and a non-volatile memory, such as one or more disk storage devices, flash memory storage devices. In some embodiments, the non-transitory computer-readable storage medium in the memory is used to store at least one program code.
[0154] The device body 21a may further include a processor, which is used to control the operation of the medical device 21. The processor may also be referred to as a CPU (Central Processing Unit). The processor may be an integrated circuit chip with signal processing capabilities. The processor may also be a general-purpose processor, a digital signal processor (DSP), an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA) or other programmable logic device, a discrete gate or transistor logic device, or a discrete hardware component. The general-purpose processor may be a microprocessor or any conventional processor.
[0155] The processor is used to execute the computer program stored in the memory to implement the operating method of the medical device described in any embodiment of the present application.
[0156] Optionally, embodiments of the method for operating a medical device of the present application may be executed on a device system of the medical device. The device side may be device-side software running on a medical device with ultrasound functionality, which may be integrated or run on a device other than the medical device. When the device-side software is running, a human-computer interaction interface is generated, and the user may operate on the human-computer interaction interface using a human-computer interface device such as a touch screen, mouse, keyboard, or the like, or directly operate using a gesture detection device.
[0157] The medical device where the device-side software resides and the electronic device where the server and / or client software reside can transmit data via Ethernet, WLAN (wireless local area network), etc. Of course, the device-side software can also be run on a device that is not connected to the Internet.
[0158] For a detailed description of the functions and execution processes of the various functional modules or components in the computer device embodiment of the present application, reference can be made to the description in the embodiment of the operating method of the medical device of the present application, which will not be repeated here.
[0159] In the several embodiments provided in this application, it should be understood that the disclosed auxiliary system 2 for medical devices and the operating method of the medical device can be implemented in other ways. For example, the various embodiments of the auxiliary system 2 for medical devices described above are merely illustrative. For example, the division of modules or units is merely a logical functional division. In actual implementation, there may be other division methods, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the mutual coupling or direct coupling or communication connection shown or discussed can be an indirect coupling or communication connection through some interface, device or unit, which can be electrical, mechanical or other forms.
[0160] Units described as separate components may or may not be physically separate, and components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of these units may be selected to achieve the purpose of this embodiment according to actual needs.
[0161] In addition, the functional units in the various embodiments of the present application may be integrated into a single processing unit, or each unit may exist physically separately, or two or more units may be integrated into a single unit. The aforementioned integrated units may be implemented in the form of hardware or software functional units.
[0162] See Figure 11If the above-mentioned integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium 200. Based on this understanding, the technical solution of the present application, or the part that contributes to the prior art, or all or part of the technical solution can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions / computer programs for enabling a computer device (which can be a personal computer, server, or network device, etc.) or a processor to perform all or part of the steps of the various embodiments of the present invention. The aforementioned storage medium includes various media such as a USB flash drive, a mobile hard disk, a read-only memory, a random access memory, a magnetic disk or an optical disk, as well as electronic terminals such as computers, mobile phones, laptops, tablet computers, cameras, etc. having the above-mentioned storage medium.
[0163] The description of the execution process of the program data in the computer-readable storage medium can be made with reference to the above-mentioned embodiment of the operating method of the medical device of the present application, and will not be repeated here.
[0164] The above is only an implementation method of the present application and does not limit the patent scope of the present application. Any equivalent structure or equivalent process transformation made using the contents of the description and drawings of this application, or directly or indirectly applied in other related technical fields, are also included in the patent protection scope of the present application.
Claims
1. A method for operating a medical device, characterized in that: The method comprises: Entering a display interface, the display interface includes a first display area, a second display area, and a process selection area disposed between the first display area and the second display area, the process selection area being used to select a function of the medical device, the first display interface being used to display ultrasound images acquired by the medical device, and the second display interface being used to display operation instructions for acquiring the ultrasound images; receiving a user's operation instruction on the process selection area; In response to the operation instruction, enter the result interface corresponding to the operation instruction.
2. The method for operating a medical device according to claim 1, wherein: The operation guide includes at least one guide screen; Entering the result interface corresponding to the operation instruction includes: displaying at least one guide screen corresponding to the image acquisition process in the second display area; In response to the user selecting a certain guidance screen, details of the guidance screen are displayed in the display interface.
3. The method for operating a medical device according to claim 2, wherein: The step of entering the display interface includes: In response to acquiring the ultrasound image that matches the designated section corresponding to the guidance screen, displaying details of another guidance screen of the image acquisition process on the display interface; or, In response to acquiring the ultrasound image that matches the designated section corresponding to the guidance screen, and there not existing another guidance screen in the image acquisition process, it is determined that the operation guidance is completed.
4. The method for operating a medical device according to claim 3, wherein: There are multiple guidance screens; In response to the user selecting one of the guide screens, the method further includes: In response to the user selecting one of the guide screens and triggering a second message for editing the arrangement order of the plurality of guide screens, changing the arrangement order of the guide screen selected by the user among the plurality of guide screens; The details of another guide screen displaying the image acquisition process in the display interface include: The arrangement order is obtained, and the details of the guidance screen that is one position behind the current guidance screen in the arrangement order are displayed in the display interface.
5. The method for operating a medical device according to claim 2, wherein: The displaying of the details of the guidance screen in the display interface includes: Displaying at least one action guide of the guidance screen in the display interface, wherein the action guide is used by the user to refer to and use the medical device to perform acquisition, thereby acquiring the ultrasound image reflecting the specified section; In response to the user completing an image acquisition using the medical device, but the acquired ultrasound image does not include a key anatomical structure, displaying an action guide switching element in the display interface, and / or continuously displaying at least one action guide in the guidance screen in the display interface until the medical device identifies the key anatomical structure in the ultrasound image; The action guide switching element is configured to be triggered to replace the current at least one action guide displayed on the display interface with the remaining action guides on the guidance screen.
6. The method for operating a medical device according to claim 5, wherein: The step of entering the display interface includes: While continuously displaying at least one of the action guides of the guidance screen in the display interface, the action guide switching element is displayed in the display interface, and / or the fetal position of the fetus obtained by manually editing the user in the display interface is received.
7. The method for operating a medical device according to claim 5, wherein: In response to the acquired ultrasound image not including a key anatomical structure, the method further comprises: In response to the user manually selecting from the ultrasound images acquired by the medical device, the ultrasound image selected by the user is stored as the ultrasound image including the key anatomical structure.
8. The method for operating a medical device according to claim 2, wherein: The display interface includes an editable area, and the editable area is used to display the ultrasound parameters identified from the ultrasound image; After displaying the details of the guidance screen on the display interface, the method further comprises: Obtaining the fetal position of the fetus using the ultrasound image and displaying it in the editable area; In response to receiving a modification of the fetal position of the fetus in the editable area by the user, the modified fetal position of the fetus is displayed in the editable area.
9. The method for operating a medical device according to claim 2, wherein: The guidance screen includes a fetal position ultrasound probe operation guidance screen and / or a fetal head position ultrasound probe operation guidance screen.
10. The method for operating a medical device according to claim 9, wherein: The details of the fetal position ultrasound probe operation guidance screen include a first ultrasound probe operation guidance video, a second ultrasound probe operation guidance video and / or a third ultrasound probe operation guidance video; Among them, the first ultrasound probe operation guidance video is used to guide the user to use the axial plane of the probe of the medical device to scan relatively evenly from top to bottom from above the midline of the abdomen, and stop when it reaches the pubic symphysis; the second ultrasound probe operation guidance video is used to guide the user to use the sagittal plane of the probe of the medical device to scan from the vertical position of the middle of the abdomen to the left side of the user and stop when it reaches the right side boundary of the pregnant woman's abdomen; the third ultrasound probe operation guidance video is used to guide the user to use the sagittal plane of the probe of the medical device to scan from the vertical position of the middle of the abdomen to the right side of the user and stop when it reaches the left side boundary of the pregnant woman's abdomen.
11. The method for operating a medical device according to claim 9, wherein: The details of the fetal head position ultrasound probe operation guidance screen include a fourth ultrasound probe operation guidance video and / or a fifth ultrasound probe operation guidance video; Among them, the fourth ultrasound probe operation guidance video is used to guide the user to place the probe of the medical device at the perineum and collect the ultrasound image in the cross section; the fifth ultrasound probe operation guidance video is used to guide the user to place the probe at the pubic symphysis and collect the ultrasound image in the longitudinal section.
12. The method for operating a medical device according to claim 1, wherein: The second display area is further used to display an analysis result generated using the ultrasound image for the current image acquisition process, the analysis result including at least one of a labor progress parameter change trend graph, a birth probability map, and a fetal model graph; The step of entering the result interface corresponding to the operation instruction further includes: displaying, in the second display area of the display interface, an analysis result obtained by analyzing the ultrasound image; In response to a data point in the labor progress parameter change trend graph being triggered, a fetal model image corresponding to the ultrasound image of the data point is displayed in the second display area.
13. The method for operating a medical device according to claim 12, wherein: In response to a data point in the labor progress parameter change trend graph being triggered, the method further includes: The ultrasound image corresponding to the data point is displayed in the first display area.
14. The method for operating a medical device according to claim 12, wherein: The process selection area includes an acquisition mode selection area, and the acquisition mode selection area includes at least one advanced imaging function icon. The advanced imaging function icon corresponds one-to-one to the image acquisition process, and the advanced imaging function icon is used to be triggered to select the corresponding image acquisition process.
15. The method for operating a medical device according to claim 12, wherein: The display interface also includes a first editing element, which is used to edit the ultrasound image in the first display area. The editing includes at least one of lateral gain compensation, time gain compensation, measurement, freezing, recording, deletion, refresh, and ultrasound image concentration.
16. An auxiliary system for medical equipment, characterized in that: include: Equipment body; A communication interface, connected to the device body, for connecting to a medical device; Output interface, used to connect to a display device; The device body is configured to execute a computer program to implement the method described in any one of claims 1 to 15.
17. A computer-readable storage medium storing a computer program, characterized in that: The computer program implements the method according to one of claims 1 to 15 when executed in a computer processor.
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