A parameter adjustment method and device, computer equipment and readable storage medium

By displaying parameter indicator pop-ups on the screen of an embedded medical device, users can directly adjust parameters through activation and gesture operations, solving the problems of inconvenient operation and low efficiency in existing technologies, and realizing fast and convenient parameter adjustment and intuitive parameter display.

CN113918292BActive Publication Date: 2025-11-18SHENZHEN COMEN MEDICAL INSTR
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Patent Information

Application Number
CN202111166263.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-30
Publication Date
2025-11-18
Estimated Expiration
2041-09-30

AI Technical Summary

Technical Problem

The parameter adjustment operation of existing embedded medical devices is inconvenient, making it difficult for users to quickly find the target content, resulting in low efficiency and difficulty in observing the pattern of parameter changes.

Method used

By displaying parameter indicator pop-ups on the screen of an embedded medical device, users can initiate a process to bring up the parameter indicator icons and generate adjustment commands through gestures to directly adjust the target parameters and update the parameter indicator icons to show the adjustment status.

Benefits of technology

It enables fast and convenient parameter adjustment, reduces operation steps, improves adjustment efficiency, reduces adjustment errors, and intuitively displays parameter changes by updating parameter theme labels.

✦ Generated by Eureka AI based on patent content.

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Abstract

A parameter adjusting method. In the case of obtaining a starting operation performed by a user for a parameter adjusting button, a parameter index pop-up window is displayed on the upper layer of the current display interface of the display screen in response to the starting operation, and a parameter index identifier of a target parameter is displayed in the parameter index pop-up window. In the case of obtaining a gesture operation performed by the user based on the parameter index pop-up window, a parameter adjusting instruction is generated in response to the gesture operation. The target parameter is adjusted according to the parameter adjusting instruction, and the parameter index identifier is updated on the current display interface to indicate the parameter condition of the adjusted target parameter. The present application only needs to start a physical button to start parameter adjustment, and the operation is simple and fast. And the parameter adjustment can be completed through the parameter index pop-up window, which will not be affected by too many content levels, greatly improving the efficiency of parameter adjustment. The present application can intuitively display the parameter bar by updating the parameter index identifier, reducing the adjustment error.
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Description

Technical Field

[0001] This invention relates to the field of medical devices, and in particular to a parameter adjustment method, apparatus, computer device, and readable storage medium. Background Technology

[0002] Currently, embedded systems are widely used and are gradually being applied across various industries. In the medical field, the use of embedded medical devices has accelerated the development of the field. However, in existing technologies, most embedded medical devices still adjust parameters by directly operating multiple physical buttons to regulate brightness, or by using fixed buttons for single-item parameter control. When the content hierarchy is too deep, it is difficult for users to quickly and easily find the target content, making operation very inconvenient and inefficient. It also makes it difficult to quickly adjust device parameters and observe the changing patterns. Summary of the Invention

[0003] Therefore, it is necessary to provide a parameter adjustment method, apparatus, computer device, and readable storage medium that can quickly and directly adjust parameters to address the above problems.

[0004] In a first aspect, the present invention provides a parameter adjustment method applicable to embedded medical devices. The embedded medical device includes a parameter setting button corresponding to a target parameter and a display screen. The parameter setting button is a physical button, and the target parameter is an adjustable parameter. The method includes:

[0005] Upon receiving a start operation performed by the user on the parameter adjustment button, in response to the start operation, a parameter indicator pop-up window is displayed on the upper layer of the current display interface of the display screen. The parameter indicator pop-up window displays the parameter indicator of the target parameter, and the parameter indicator is used to indicate the current parameter status of the target parameter.

[0006] Upon receiving a gesture operation performed by the user based on the parameter indicator pop-up, a parameter adjustment instruction is generated in response to the gesture operation;

[0007] The target parameter is adjusted according to the parameter adjustment command, and the parameter indicator is updated on the current display interface to indicate the parameter status of the adjusted target parameter.

[0008] Secondly, the present invention provides a parameter adjustment device suitable for embedded medical devices. The embedded medical device includes a parameter setting button corresponding to a target parameter and a display screen. The parameter setting button is a physical button, and the target parameter is an adjustable parameter. The device includes:

[0009] The first response module is used to, upon receiving a start operation performed by the user on the parameter adjustment button, respond to the start operation by displaying a parameter indicator pop-up window on the upper layer of the current display interface of the display screen. The parameter indicator pop-up window displays a parameter indicator identifier of the target parameter, and the parameter indicator identifier is used to indicate the current parameter status of the target parameter.

[0010] The second response module is used to generate a parameter adjustment instruction in response to the gesture operation performed by the user based on the parameter indicator pop-up window when the user performs the gesture operation.

[0011] The parameter adjustment module is used to adjust the target parameter according to the parameter adjustment instruction and update the parameter indicator on the current display interface to indicate the parameter status of the adjusted target parameter.

[0012] Thirdly, the present invention provides a computer device, including a memory and a processor, the memory storing a computer program, which, when executed by the processor, causes the processor to perform the following steps:

[0013] Upon receiving a start operation performed by the user on the parameter adjustment button, in response to the start operation, a parameter indicator pop-up window is displayed on the upper layer of the current display interface of the display screen. The parameter indicator pop-up window displays the parameter indicator of the target parameter, and the parameter indicator is used to indicate the current parameter status of the target parameter.

[0014] Upon receiving a gesture operation performed by the user based on the parameter indicator pop-up, a parameter adjustment instruction is generated in response to the gesture operation;

[0015] The target parameter is adjusted according to the parameter adjustment command, and the parameter indicator is updated on the current display interface to indicate the parameter status of the adjusted target parameter.

[0016] Fourthly, the present invention provides a computer-readable storage medium storing a computer program, which, when executed by a processor, causes the processor to perform the following steps:

[0017] Upon receiving a start operation performed by the user on the parameter adjustment button, in response to the start operation, a parameter indicator pop-up window is displayed on the upper layer of the current display interface of the display screen. The parameter indicator pop-up window displays the parameter indicator of the target parameter, and the parameter indicator is used to indicate the current parameter status of the target parameter.

[0018] Upon receiving a gesture operation performed by the user based on the parameter indicator pop-up, a parameter adjustment instruction is generated in response to the gesture operation;

[0019] The target parameter is adjusted according to the parameter adjustment command, and the parameter indicator is updated on the current display interface to indicate the parameter status of the adjusted target parameter.

[0020] This application relates to a parameter adjustment method, apparatus, computer device, and readable storage medium. Upon receiving a user's activation operation on the parameter adjustment button, in response to the activation operation, a parameter indicator pop-up window is displayed above the current display interface of the screen. The parameter indicator pop-up window displays a parameter indicator identifier for the target parameter, which indicates the current parameter status of the target parameter. Upon receiving a gesture operation performed by the user based on the parameter indicator pop-up window, in response to the gesture operation, a parameter adjustment command is generated. The target parameter is adjusted according to the parameter adjustment command, and the parameter indicator identifier is updated on the current display interface to indicate the adjusted parameter status of the target parameter. This invention requires only one physical button to start parameter adjustment, making it simple to operate and fast to adjust. Furthermore, in the current display state of the screen, parameter adjustment can be completed directly through the parameter indicator pop-up window, without being affected by excessive content layers, greatly improving the efficiency of parameter adjustment. On the other hand, by updating the parameter indicator identifier, this invention can intuitively display the parameter bar adjustment, reducing adjustment errors. Attached Figure Description

[0021] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on the structures shown in these drawings without creative effort.

[0022] Figure 1 This is a flowchart of a parameter adjustment method in one embodiment;

[0023] Figure 2 This is a flowchart of a parameter adjustment method in one embodiment;

[0024] Figure 3 This is a flowchart of a parameter adjustment method in one embodiment;

[0025] Figure 4 This is a flowchart of a parameter adjustment method in one embodiment;

[0026] Figure 5 This is a flowchart of a parameter adjustment method in one embodiment;

[0027] Figure 6 This is a structural block diagram of a parameter adjustment device in one embodiment;

[0028] Figure 7 This is an internal structural diagram of a computer device in one embodiment. Detailed Implementation

[0029] To make the objectives, technical solutions, and advantages of this invention clearer, the invention will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative and not intended to limit the invention.

[0030] In one embodiment, this invention proposes a parameter adjustment method for adjusting parameters of an embedded medical device, addressing the problems of inconvenient operation and low parameter adjustment efficiency in existing embedded medical devices. Embedded medical devices capable of using the parameter adjustment method proposed in this invention allow users to complete operations quickly without conscious thought; the physical button operations and pop-up windows respond directly to each other. In the proposed solution, throughout the entire interaction process after clicking the physical button and displaying the pop-up window, the parameter indicators change with parameter adjustment, providing a clear and intuitive display of parameter changes and an excellent user experience.

[0031] In one embodiment, the present invention provides a parameter adjustment method applicable to an embedded medical device, the embedded medical device including a parameter setting button and a display screen corresponding to a target parameter, the parameter setting button being a physical button, and the target parameter being an adjustable parameter.

[0032] Embedded medical devices refer to medical devices with embedded systems. An embedded system is an application-centric, modern computer technology-based, dedicated computer system that allows for flexible customization of hardware and software modules according to user needs (function, reliability, cost, size, power consumption, environment, etc.). Specifically, an embedded system consists of hardware and software. The software content only includes the software runtime environment and its operating system. The hardware content includes various aspects such as signal processors, memory, and communication modules.

[0033] The target parameters refer to the adjustable parameters of the embedded medical device. For example, they can be parameters such as the screen brightness, alarm sound volume, pressure and temperature during infusion, and airflow and pressure during oxygen delivery.

[0034] The parameter setting button is a physical button. When the content displayed on the embedded medical device is too deep, the parameter setting button allows users to quickly and easily find the target content and adjust the parameters, making the operation fast and convenient.

[0035] In this embodiment, as Figure 1 As shown, the parameter adjustment method includes:

[0036] Step 102: Upon receiving a start operation performed by the user on the parameter adjustment button, in response to the start operation, a parameter indicator pop-up window is displayed on the upper layer of the current display interface of the display screen. The parameter indicator pop-up window displays the parameter indicator of the target parameter, and the parameter indicator is used to indicate the current parameter status of the target parameter.

[0037] Among them, the parameter indicator is an identifier used to indicate the current parameter status, and this parameter indicator changes as the target parameter changes.

[0038] The parameter indicator pop-up displays parameter indicator icons, which are used to input the gesture operations performed by the user based on the parameter indicator pop-up.

[0039] When a user needs to adjust parameters, they can initiate the adjustment by pressing the parameter adjustment button. Upon receiving the activation command triggered by the user pressing the button, the embedded system displays a parameter indicator pop-up window. The user then performs gesture operations based on this pop-up window to complete the parameter adjustment.

[0040] In this embodiment, the parameter indicator pop-up window can be of any shape, position, and size, and the direction in which the parameter indicator pop-up window pops up can be any direction. For example, it can pop up from any direction on the screen, such as the top, bottom, left, or right.

[0041] In this embodiment, each target parameter may correspond to a single parameter indicator, multiple target parameters may correspond to a single parameter indicator, or one target parameter may correspond to multiple parameter indicator indicators. The parameter indicator can be a numerical identifier or a graphical identifier. It is understood that in this embodiment, the parameter indicator changes with the target parameter, including but not limited to the following changes: the shape and / or size of the parameter indicator changes with the target parameter; the color of the parameter indicator changes with the target parameter. For example, taking a target parameter as screen brightness level and a parameter indicator as a screen brightness level identifier, when there is only one screen brightness level identifier, changes in the color, shape, etc., of the screen brightness level identifier represent changes in screen brightness. Different screen brightness levels may correspond to different colors or shapes of screen brightness level identifiers. When there are multiple screen brightness level identifiers, each identifier represents a different screen brightness level. Increasing or decreasing the screen brightness level corresponds to switching the screen brightness level identifier to represent a higher level or a lower level. When the parameter indicator is identified by a number, the number increases by one digit when the target parameter is increased by one level; the number decreases by one digit when the target parameter is decreased by one level.

[0042] Step 104: Upon receiving the gesture operation performed by the user based on the parameter indicator pop-up, generate a parameter adjustment instruction in response to the gesture operation.

[0043] Once the parameter indicator pop-up appears, the user can perform gesture operations based on this pop-up. The embedded medical device's system will respond to the gesture operation, generate parameter adjustment instructions, and complete the adjustment of the target parameter. It can be understood that the gesture operation can be performed by the user within the parameter indicator pop-up, by the user outside the display screen, or by the user dragging the parameter indicator pop-up.

[0044] Step 106: Adjust the target parameter according to the parameter adjustment instruction, and update the parameter indicator on the current display interface to indicate the parameter status of the adjusted target parameter.

[0045] After generating the parameter adjustment command, the target parameter is increased or decreased according to the parameter adjustment command. Simultaneously, the parameter indicator in the parameter indicator pop-up window on the current display interface is updated. The change of the target parameter is intuitively displayed by the change of the size, color or quantity of the parameter indicator.

[0046] This application relates to a parameter adjustment method. Upon receiving a user's activation operation on the parameter adjustment button, in response to the activation operation, a parameter indicator pop-up window is displayed on the upper layer of the current display interface of the screen. The parameter indicator pop-up window displays a parameter indicator identifier for the target parameter, which indicates the current parameter status of the target parameter. Upon receiving a user's gesture operation based on the parameter indicator pop-up window, in response to the gesture operation, a parameter adjustment command is generated. The target parameter is adjusted according to the parameter adjustment command, and the parameter indicator identifier is updated on the current display interface to indicate the adjusted parameter status of the target parameter. This invention only requires activating a physical button to begin parameter adjustment, making it simple to operate and fast. Furthermore, in the current display state of the screen, parameter adjustment can be completed directly through the parameter indicator pop-up window, without being affected by excessive content layers, greatly improving the efficiency of parameter adjustment. On the other hand, by updating the parameter indicator identifier, this invention can intuitively display the parameter bar adjustment, reducing adjustment errors.

[0047] In one embodiment, such as Figure 2 As shown, the pop-up window displaying the upper-level display parameter indicators on the current display interface of the screen includes:

[0048] Step 202: Detect the display content on the current display interface; the display content includes unobstructed content and obstructable content.

[0049] To avoid interfering with the normal operation of other page functions, before displaying the parameter indicator pop-up on top of the current display interface, it is necessary to detect the displayed content of the current interface and obtain preset obscurable and non-obscurable content. Based on the preset obscurable and non-obscurable content, the obscurable and non-obscurable content of the current display interface can be determined. It is understandable that the parameter indicator pop-up is displayed above the obscurable content. By displaying the parameter indicator pop-up above the obscurable content, treatment errors caused by the parameter indicator pop-up obscuring critical display content can be effectively avoided. For example, the infusion device cannot obscure the area displaying the infusion pump pressure. If the area displaying the infusion pump pressure is obscured, it will prevent timely observation of the infusion pump pressure, affecting the treatment effect.

[0050] Step 204: Determine the target style of the parameter indicator pop-up and the parameter indicator identifier based on the displayed content.

[0051] Once the obscurable and non-obscurable content on the current display interface is determined, the target style of the parameter indicator pop-up can be determined based on the obscurable content. Specifically, after determining the size of the obscurable and non-obscurable areas on the current display interface, the size of the parameter indicator pop-up is determined based on the size of the obscurable area, wherein the size of the parameter indicator pop-up does not exceed the size of the obscurable area. For example, if the obscurable area is a square with a side length of 5cm, then the area of ​​the parameter indicator pop-up will not exceed the 5cm square, and the parameter indicator pop-up can be of any shape.

[0052] In determining the size of the parameter indicator pop-up window, it is also necessary to determine the target style of the parameter indicator. Understandably, the target style of the parameter indicator is adjustable and preset. For example, the target style of the parameter indicator can be various styles such as snowflakes, suns, or light bulbs, and it is adjustable. For instance, when the target parameter is the sun, the user can change it to any preset target style such as a light bulb through settings.

[0053] Step 206: Display the target style parameter indicator pop-up and parameter indicator label on the top layer of the obscurable content.

[0054] Once the target style of the parameter indicator pop-up and the parameter indicator identifier is defined, the parameter indicator pop-up with the parameter indicator identifier can be displayed on top of the obscurable content.

[0055] In this embodiment, by determining the obscurable and non-obscurable content, the parameter indicator pop-up can be displayed on top of the obscurable content, which can effectively avoid treatment errors caused by the parameter indicator pop-up obscuring key display content.

[0056] In one embodiment, such as Figure 3 As shown, in response to the startup operation, before the pop-up window for displaying upper-level display parameter indicators appears on the current display interface of the screen, the following steps are also included:

[0057] Step 302: Obtain user information of the user associated with the embedded medical device.

[0058] In this context, "associated users" refers to users who have a usage relationship with the current embedded medical device, or users who can manage the current embedded medical device. For example, associated users can be doctors, nurses, patients, or other users who have an association with the embedded medical device.

[0059] In this embodiment, different associated users have different user permissions, and the adjustable target parameters differ for each user permission. Before displaying the parameter indicator pop-up window on the upper layer of the current display interface of the screen, it is necessary to obtain the user information of the associated users of the embedded medical device to determine the user permissions matching the user information, thereby determining the adjustable target parameters for the user. Specifically, the method for obtaining the user information of associated users can be through fingerprint recognition verification, facial recognition verification, or account login verification to obtain pre-stored user information. If the verification is successful, the user information of the associated user is successfully obtained; if the verification fails, the user information of the associated user is not obtained.

[0060] Step 304: Determine the adjustable parameter whitelist of the embedded medical device based on the user information. The adjustable parameter whitelist is used to store the adjustable parameters of the embedded medical device.

[0061] The adjustable parameter whitelist refers to a pre-defined list of target parameters that users can adjust. Specifically, the adjustable parameter whitelist is pre-defined by at least one medical expert; understandably, medical experts cannot pre-define parameters outside their treatment or research area. After determining the adjustable parameter whitelist for the current embedded medical device based on user information, the target parameters that the current user can adjust can be determined according to the adjustable parameter whitelist.

[0062] Step 306: If the target parameter is in the adjustable parameter whitelist, then execute the step of displaying a parameter indicator pop-up window on the upper layer of the current display interface of the display screen in response to the startup operation.

[0063] If the target parameter is in the adjustable parameter whitelist, it means that the current user has the permission to adjust the target parameter, and a parameter indicator pop-up window can be displayed on the upper layer of the current display interface of the screen.

[0064] Step 308: If the target parameter is not in the adjustable parameter whitelist, then display an unadjustable flag on the current display interface.

[0065] If the target parameter is not in the adjustable parameter whitelist, it means that the current user does not have permission to adjust the target parameter, and the parameter indicator pop-up cannot be displayed on the upper layer of the current display interface. In this case, an unadjustable indicator is displayed on the front display interface.

[0066] In this embodiment, by obtaining the user information of the associated user of the embedded medical device and the whitelist of adjustable parameters, treatment accidents caused by users accidentally adjusting key parameters can be effectively avoided.

[0067] In one embodiment, such as Figure 4As shown, the step of generating parameter adjustment instructions in response to the gesture operation includes:

[0068] Step 402: Determine the touch trajectory of the touch operation within the parameter indicator pop-up window.

[0069] The touch trajectory can be a pressing touch or a sliding touch. It is understood that a pressing touch or a sliding touch can be directed at a parameter indicator or not. Similarly, a sliding touch directed at a parameter indicator can be a slide on a single parameter indicator or a slide between multiple parameter indicators.

[0070] Step 404: Generate parameter adjustment instructions based on the touch trajectory.

[0071] Once the touch trajectory is determined, adjustment commands can be generated based on the touch trajectory to complete the adjustment of the target parameters.

[0072] In one embodiment, when a user performs a press-type touch within the parameter indicator pop-up window, the step of generating a parameter adjustment instruction in response to the gesture operation includes: obtaining the start time and end time of the press-type touch; calculating the time interval between the start time and the end time; if the time interval exceeds a preset time interval, generating a parameter adjustment instruction based on the press-type touch; if the time interval is within the preset time interval, no parameter adjustment instruction can be generated.

[0073] In this embodiment, when a user adjusts the screen brightness by pressing within the parameter indicator pop-up window, the embedded medical device acquires the start and end times of the user's press and calculates the time interval between them. If the time interval exceeds a preset time interval, a screen brightness adjustment command is generated; if the time interval is within the preset time interval, no screen brightness adjustment command is generated. Specifically, the target parameter can be increased or decreased by setting the press position. For example, the parameter indicator pop-up window can be divided into left and right areas, with pressing in the left area indicating a decrease in the target parameter and pressing in the right area indicating an increase in the target parameter. Alternatively, the target parameter can be increased or decreased by setting the press duration. For example, a press duration of 3 seconds can be used to increase the target parameter, and a press duration of 4 seconds can be used to decrease the target parameter. In this embodiment, the user can adjust the target parameter directly by pressing within the parameter indicator pop-up window, without being affected by excessive content hierarchy, greatly improving the efficiency of parameter adjustment.

[0074] In one embodiment, when a user performs a swipe touch within a parameter indicator pop-up window, generating a parameter adjustment instruction in response to the gesture operation includes: determining a second movement trajectory of the swipe touch within the parameter indicator pop-up window; and determining a parameter adjustment instruction matching the second movement trajectory in a preset trajectory correspondence table, wherein the trajectory correspondence table is used to store the correspondence between the second movement trajectory and the parameter adjustment instruction.

[0075] In this embodiment, when a user adjusts the screen brightness by sliding their finger within the parameter indicator pop-up window, the embedded medical device acquires the user's sliding trajectory and determines the parameter adjustment instruction matching the trajectory in a preset trajectory mapping table. For example, the preset trajectory mapping table stores: a circular trajectory indicates increasing the target parameter, and a broken line trajectory indicates decreasing the target parameter. After acquiring the user's sliding trajectory, the embedded medical device first determines the matching degree between the sliding trajectory and the circular and broken line trajectories, respectively. If the matching degree between the sliding trajectory and the circular trajectory exceeds a preset circular matching degree threshold, the parameter adjustment instruction is determined to be increasing the target parameter; if the matching degree between the sliding trajectory and the broken line trajectory exceeds a preset broken line matching degree threshold, the parameter adjustment instruction is determined to be decreasing the target parameter. In this embodiment, the user can directly adjust the target parameter by sliding their finger within the parameter indicator pop-up window, without being affected by excessive content layers, greatly improving the efficiency of parameter adjustment.

[0076] In one embodiment, when a user performs a swipe touch within a parameter indicator pop-up window, the step of generating a parameter adjustment instruction in response to the gesture operation includes: determining a third movement trajectory of the swipe touch within the parameter indicator pop-up window; determining the start and end coordinates of the third movement trajectory; determining the movement direction of the third movement trajectory based on the start and end coordinates; and determining a parameter adjustment instruction corresponding to the third movement trajectory based on a preset correspondence between parameter adjustment instructions and movement directions.

[0077] In this embodiment, when a user adjusts the screen brightness by sliding their finger within the parameter indicator pop-up window, the embedded medical device acquires the user's sliding trajectory and determines the direction of movement based on the starting and ending coordinates of the trajectory. Finally, it determines the parameter adjustment instruction based on the preset correspondence between parameter adjustment instructions and movement directions. For example, sliding to the left is set to increase the target parameter, and sliding to the right is set to decrease the target parameter. If the embedded medical device determines that the sliding trajectory moves to the left, it determines the parameter adjustment instruction to increase the target parameter; if it determines that the sliding trajectory moves to the right, it determines the parameter adjustment instruction to decrease the target parameter. In this embodiment, the user can directly adjust the target parameter by sliding their finger within the parameter indicator pop-up window, without being affected by excessive content layers, greatly improving the efficiency of parameter adjustment.

[0078] In one embodiment, such as Figure 5 As shown, the gesture operation includes a first movement operation performed outside the display screen; the step of generating a parameter adjustment command in response to the gesture operation includes:

[0079] Step 502: Determine the movement trajectory of the first movement operation outside the display screen.

[0080] When a gesture operation is performed outside the display screen, the movement trajectory of the first movement operation outside the display screen can be determined by an infrared sensor installed in the embedded medical device, or by an imaging device installed in the embedded medical device. It is understood that this is merely an illustrative example, and other sensing devices can be used in practical applications.

[0081] Step 504: Determine the direction of movement of the movement trajectory, and determine the parameter adjustment command corresponding to the movement direction according to the preset correspondence between parameter adjustment command and movement direction.

[0082] Specifically, after determining the movement trajectory of the first movement operation outside the display screen, the movement direction of the movement trajectory can be determined by the start and end positions of the movement trajectory. Finally, based on the preset correspondence between parameter adjustment instructions and movement directions, a parameter adjustment instruction corresponding to the movement direction is determined. For example, sliding to the left is set to increase the target parameter, and sliding to the right is set to decrease the target parameter. If the embedded medical device determines that the movement direction of the trajectory is to the left, the parameter adjustment instruction is determined to increase the target parameter; if the embedded medical device determines that the movement direction of the trajectory is to the right, the parameter adjustment instruction is determined to decrease the target parameter.

[0083] In one embodiment, the gesture operation includes dragging the parameter indicator pop-up window; the step of generating a parameter adjustment instruction in response to the gesture operation includes: determining the movement trajectory of the parameter indicator pop-up window on the current display interface; and determining a parameter adjustment instruction that matches the movement trajectory in a preset trajectory correspondence table, wherein the trajectory correspondence table is used to store the correspondence between the movement trajectory of the parameter indicator pop-up window and the parameter adjustment instruction.

[0084] Once the movement trajectory of the parameter indicator pop-up window on the current display interface is determined, a parameter adjustment command matching the movement trajectory can be determined according to a preset trajectory correspondence table.

[0085] Understandably, in this embodiment, in order to facilitate operation and improve adjustment efficiency, a parameter adjustment instruction matching the movement trajectory is determined in a preset trajectory correspondence table. This includes: determining the similarity value between the movement trajectory and a preset movement trajectory; if the similarity value is greater than a preset threshold, then a parameter adjustment instruction matching the movement trajectory is determined in the preset trajectory correspondence table. The trajectory correspondence table is used to store the correspondence between the preset movement trajectory of the parameter indicator pop-up window and the parameter adjustment instruction.

[0086] In this embodiment, a preset trajectory mapping table stores: a circular trajectory indicates increasing the target parameter, and a broken line trajectory indicates decreasing the target parameter. After the embedded medical device obtains the movement trajectory of the parameter indicator pop-up on the current display interface, it first determines the similarity value of the movement trajectory with the circular trajectory and the broken line trajectory, respectively. If the similarity value of the movement trajectory with the circular trajectory exceeds a preset circular threshold, the parameter adjustment instruction is determined to be increasing the target parameter; if the similarity value of the movement trajectory with the broken line trajectory exceeds a preset broken line threshold, the parameter adjustment instruction is determined to be decreasing the target parameter. In this embodiment, the user can adjust the target parameter by directly dragging the parameter indicator pop-up on the current display interface, without being affected by too many content layers, greatly improving the efficiency of parameter adjustment.

[0087] In one embodiment, generating a parameter adjustment instruction in response to the gesture operation includes: determining a target gesture corresponding to the gesture operation; if the target gesture matches a preset adjustment gesture, generating a parameter adjustment instruction corresponding to the preset adjustment gesture; if the target gesture does not match the preset adjustment gesture, displaying a mismatch indicator on the parameter indicator pop-up window.

[0088] In this embodiment, the embedded medical device stores a preset correspondence between preset adjustment gestures and parameter adjustment commands. The gesture operation can be a touch operation performed within the parameter indicator pop-up window, a movement operation performed outside the display screen, or a dragging operation of the parameter indicator pop-up window. Determining the target gesture corresponding to the gesture operation can be determining the touch trajectory of the touch operation within the parameter indicator pop-up window, determining the movement trajectory of the movement operation outside the display screen, or determining the movement trajectory of the parameter indicator pop-up window on the current display interface. Taking determining the movement trajectory of the parameter indicator pop-up window on the current display interface as an example, if the embedded medical device stores preset adjustment gestures where a square trajectory indicates increasing the target parameter and a triangle trajectory indicates decreasing the target parameter, then after obtaining the movement trajectory of the parameter indicator pop-up window on the current display interface, the embedded medical device will first determine the similarity value between the movement trajectory and the square trajectory and the triangle trajectory, respectively. If the similarity value between the movement trajectory and the square trajectory exceeds a preset square threshold, then the parameter adjustment command is determined to increase the target parameter; if the similarity value between the movement trajectory and the triangle trajectory exceeds a preset triangle threshold, then the parameter adjustment command is determined to decrease the target parameter. In this embodiment, users can adjust target parameters by obtaining the gesture operations performed by the user based on the parameter indicator pop-up, which is not affected by too many content levels and greatly improves the efficiency of parameter adjustment.

[0089] This invention proposes a parameter adjustment device, such as... Figure 6 As shown, the device is suitable for embedded medical devices, which include a parameter setting button and a display screen corresponding to the target parameter. The parameter setting button is a physical button, and the target parameter is an adjustable parameter. The device includes:

[0090] The first response module 602 is used to, upon receiving a start operation performed by the user on the parameter adjustment button, respond to the start operation by displaying a parameter indicator pop-up window on the upper layer of the current display interface of the display screen. The parameter indicator pop-up window displays a parameter indicator identifier of the target parameter, and the parameter indicator identifier is used to indicate the current parameter status of the target parameter.

[0091] The second response module 604 is used to generate a parameter adjustment instruction in response to the gesture operation performed by the user based on the parameter indicator pop-up window when the user performs the gesture operation.

[0092] The parameter adjustment module 606 is used to adjust the target parameter according to the parameter adjustment instruction and update the parameter index identifier on the current display interface to indicate the parameter status of the adjusted target parameter.

[0093] like Figure 7The diagram shows the internal structure of a computer device in one embodiment. This computer device can be a parameter-adjusting interactive device, or a terminal or server connected to a parameter-adjusting interactive device. Figure 7 As shown, the computer device includes a processor, memory, and a network interface connected via a system bus. The memory includes a non-volatile storage medium and internal memory. The non-volatile storage medium stores an operating system and may also store a computer program that, when executed by the processor, enables the processor to implement a parameter adjustment method. The internal memory may also store a computer program that, when executed by the processor, enables the processor to implement a parameter adjustment method. The network interface is used for communication with external devices. Those skilled in the art will understand that… Figure 7 The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specific computer devices may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.

[0094] In one embodiment, the parameter adjustment method provided in this application can be implemented as a computer program, which can be implemented in various ways, such as... Figure 7 The computer device shown operates on this device. The computer device's memory can store various program templates that make up the interactive device for adjusting the parameter. For example, a first response module 602, a second response module 604, and a parameter adjustment module 606.

[0095] A computer device includes a memory and a processor. The memory stores a computer program that, when executed by the processor, causes the processor to perform the following steps: upon receiving a start operation performed by a user on a parameter adjustment button, in response to the start operation, displaying a parameter indicator pop-up window on top of the current display interface of the screen, the parameter indicator pop-up window displaying a parameter indicator identifier of the target parameter, the parameter indicator identifier indicating the current parameter status of the target parameter; upon receiving a gesture operation performed by the user based on the parameter indicator pop-up window, in response to the gesture operation, generating a parameter adjustment instruction; adjusting the target parameter according to the parameter adjustment instruction, and updating the parameter indicator identifier on the current display interface to indicate the adjusted parameter status of the target parameter.

[0096] In one embodiment, displaying a parameter indicator pop-up window on top of the current display interface of the display screen includes: detecting the display content on the current display interface; the display content includes unobstructed content and obstructable content; determining the target style of the parameter indicator pop-up window and the parameter indicator identifier based on the display content; and displaying the parameter indicator pop-up window and parameter indicator identifier of the target style on top of the obstructable content.

[0097] In one embodiment, before displaying the parameter indicator pop-up window on the upper layer of the current display interface of the display screen in response to the startup operation, the method further includes: obtaining user information of the user associated with the embedded medical device; determining a parameter adjustable whitelist of the embedded medical device based on the user information, the parameter adjustable whitelist being used to store adjustable parameters of the embedded medical device; if the target parameter is in the parameter adjustable whitelist, then performing the step of displaying the parameter indicator pop-up window on the upper layer of the current display interface of the display screen in response to the startup operation; if the target parameter is not in the parameter adjustable whitelist, then displaying an unadjustable indicator on the current display interface.

[0098] In one embodiment, the gesture operation includes a touch operation performed within the parameter indicator pop-up window; generating a parameter adjustment instruction in response to the gesture operation includes: determining the touch trajectory of the touch operation within the parameter indicator pop-up window; and generating a parameter adjustment instruction based on the touch trajectory.

[0099] In one embodiment, the gesture operation includes a first movement operation performed outside the display screen; the step of generating a parameter adjustment instruction in response to the gesture operation includes: determining the movement trajectory of the first movement operation outside the display screen; determining the movement direction of the movement trajectory; and determining a parameter adjustment instruction corresponding to the movement direction based on a preset correspondence between parameter adjustment instructions and movement directions.

[0100] In one embodiment, the gesture operation includes dragging the parameter indicator pop-up window; the step of generating a parameter adjustment instruction in response to the gesture operation includes: determining the movement trajectory of the parameter indicator pop-up window on the current display interface; and determining a parameter adjustment instruction that matches the movement trajectory in a preset trajectory correspondence table, wherein the trajectory correspondence table is used to store the correspondence between the movement trajectory of the parameter indicator pop-up window and the parameter adjustment instruction.

[0101] In one embodiment, generating a parameter adjustment instruction in response to the gesture operation includes: determining a target gesture corresponding to the gesture operation; if the target gesture matches a preset adjustment gesture, generating a parameter adjustment instruction corresponding to the preset adjustment gesture; if the target gesture does not match the preset adjustment gesture, displaying a mismatch indicator on the parameter indicator pop-up window.

[0102] A computer-readable storage medium storing a computer program, which, when executed by a processor, causes the processor to perform the following steps: upon receiving a start operation performed by a user on a parameter adjustment button, in response to the start operation, displaying a parameter indicator pop-up window on top of the current display interface of the display screen, the parameter indicator pop-up window displaying a parameter indicator identifier of the target parameter, the parameter indicator identifier indicating the current parameter status of the target parameter; upon receiving a gesture operation performed by the user based on the parameter indicator pop-up window, in response to the gesture operation, generating a parameter adjustment instruction; adjusting the target parameter according to the parameter adjustment instruction, and updating the parameter indicator identifier on the current display interface to indicate the adjusted parameter status of the target parameter.

[0103] In one embodiment, displaying a parameter indicator pop-up window on top of the current display interface of the display screen includes: detecting the display content on the current display interface; the display content includes unobstructed content and obstructable content; determining the target style of the parameter indicator pop-up window and the parameter indicator identifier based on the display content; and displaying the parameter indicator pop-up window and parameter indicator identifier of the target style on top of the obstructable content.

[0104] In one embodiment, before displaying the parameter indicator pop-up window on the upper layer of the current display interface of the display screen in response to the startup operation, the method further includes: obtaining user information of the user associated with the embedded medical device; determining a parameter adjustable whitelist of the embedded medical device based on the user information, the parameter adjustable whitelist being used to store adjustable parameters of the embedded medical device; if the target parameter is in the parameter adjustable whitelist, then performing the step of displaying the parameter indicator pop-up window on the upper layer of the current display interface of the display screen in response to the startup operation; if the target parameter is not in the parameter adjustable whitelist, then displaying an unadjustable indicator on the current display interface.

[0105] In one embodiment, the gesture operation includes a touch operation performed within the parameter indicator pop-up window; generating a parameter adjustment instruction in response to the gesture operation includes: determining the touch trajectory of the touch operation within the parameter indicator pop-up window; and generating a parameter adjustment instruction based on the touch trajectory.

[0106] In one embodiment, the gesture operation includes a first movement operation performed outside the display screen; the step of generating a parameter adjustment instruction in response to the gesture operation includes: determining the movement trajectory of the first movement operation outside the display screen; determining the movement direction of the movement trajectory; and determining a parameter adjustment instruction corresponding to the movement direction based on a preset correspondence between parameter adjustment instructions and movement directions.

[0107] In one embodiment, the gesture operation includes dragging the parameter indicator pop-up window; the step of generating a parameter adjustment instruction in response to the gesture operation includes: determining the movement trajectory of the parameter indicator pop-up window on the current display interface; and determining a parameter adjustment instruction that matches the movement trajectory in a preset trajectory correspondence table, wherein the trajectory correspondence table is used to store the correspondence between the movement trajectory of the parameter indicator pop-up window and the parameter adjustment instruction.

[0108] In one embodiment, generating a parameter adjustment instruction in response to the gesture operation includes: determining a target gesture corresponding to the gesture operation; if the target gesture matches a preset adjustment gesture, generating a parameter adjustment instruction corresponding to the preset adjustment gesture; if the target gesture does not match the preset adjustment gesture, displaying a mismatch indicator on the parameter indicator pop-up window.

[0109] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. This program can be stored in a non-volatile computer-readable storage medium, and when executed, it can include the processes of the embodiments of the above methods. Any references to memory, storage, databases, or other media used in the embodiments provided in this application can include non-volatile and / or volatile memory. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), dual data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), RAMbus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and RAMbus dynamic RAM (RDRAM), etc.

[0110] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0111] The above embodiments merely illustrate several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of this patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A parameter adjustment method, characterized in that, The method is applicable to embedded medical devices, which include a parameter setting button and a display screen corresponding to a target parameter. The parameter setting button is a physical button, and the target parameter is an adjustable parameter. The method includes: Upon receiving a start operation performed by the user on the parameter adjustment button, in response to the start operation, a parameter indicator pop-up window is displayed on the upper layer of the current display interface of the display screen. The parameter indicator pop-up window displays the parameter indicator of the target parameter, and the parameter indicator is used to indicate the current parameter status of the target parameter. Upon receiving a gesture operation performed by the user based on the parameter indicator pop-up, a parameter adjustment instruction is generated in response to the gesture operation; The target parameter is adjusted according to the parameter adjustment command, and the parameter indicator is updated on the current display interface to indicate the parameter status of the adjusted target parameter. The gesture operation includes dragging the parameter indicator pop-up window; The step of generating parameter adjustment instructions in response to the gesture operation includes: The movement trajectory of the parameter indicator pop-up window on the current display interface is determined; In a preset trajectory correspondence table, a parameter adjustment instruction that matches the movement trajectory is determined. The trajectory correspondence table is used to store the correspondence between the movement trajectory of the parameter indicator pop-up and the parameter adjustment instruction.

2. The method according to claim 1, characterized in that, The pop-up window displaying the upper-level display parameters on the current display interface of the screen includes: Detect the displayed content on the current display interface; the displayed content includes unobstructed content and obstructable content; Determine the target style of the parameter indicator pop-up and the parameter indicator identifier based on the displayed content; Display the target style parameter indicator pop-up and parameter indicator label on top of the obscurable content.

3. The method according to claim 1, characterized in that, In response to the startup operation, before the pop-up window for displaying upper-level display parameter indicators appears on the current display interface of the screen, the method further includes: Obtain user information of the user associated with the embedded medical device; The adjustable parameter whitelist of the embedded medical device is determined based on the user information, and the adjustable parameter whitelist is used to store the adjustable parameters of the embedded medical device; If the target parameter is in the adjustable parameter whitelist, then the step of displaying a parameter indicator pop-up window on the upper layer of the current display interface of the display screen in response to the startup operation is executed. If the target parameter is not in the adjustable parameter whitelist, an unadjustable flag will be displayed on the current display interface.

4. The method according to claim 1, characterized in that, The gesture operation includes touch operations performed within the parameter indicator pop-up window; The step of generating parameter adjustment instructions in response to the gesture operation includes: Determine the touch trajectory of the touch operation within the parameter indicator pop-up window; Based on the touch trajectory, parameter adjustment instructions are generated.

5. The method according to claim 1, characterized in that, The gesture operation includes a first movement operation performed outside the display screen; The step of generating parameter adjustment instructions in response to the gesture operation includes: Determine the movement trajectory of the first movement operation outside the display screen; The direction of movement of the movement trajectory is determined, and the parameter adjustment command corresponding to the movement direction is determined according to the preset correspondence between the parameter adjustment command and the movement direction.

6. The method according to claim 1, characterized in that, The step of generating parameter adjustment instructions in response to the gesture operation includes: Determine the target gesture corresponding to the gesture operation; If the target gesture matches the preset adjustment gesture, then a parameter adjustment command corresponding to the preset adjustment gesture is generated; If the target gesture does not match the preset adjustment gesture, a mismatch indicator will be displayed on the parameter indicator pop-up window.

7. A parameter adjustment device, characterized in that, The device is suitable for embedded medical devices, which include a parameter setting button and a display screen corresponding to the target parameter. The parameter setting button is a physical button, and the target parameter is an adjustable parameter. The device includes: The first response module is used to, upon receiving a start operation performed by the user on the parameter adjustment button, respond to the start operation by displaying a parameter indicator pop-up window on the upper layer of the current display interface of the display screen. The parameter indicator pop-up window displays a parameter indicator identifier of the target parameter, and the parameter indicator identifier is used to indicate the current parameter status of the target parameter. The second response module is used to generate a parameter adjustment instruction in response to the gesture operation performed by the user based on the parameter indicator pop-up window when the user performs the gesture operation. The parameter adjustment module is used to adjust the target parameter according to the parameter adjustment instruction and update the parameter index identifier on the current display interface to indicate the parameter status of the adjusted target parameter. The gesture operation includes dragging the parameter indicator pop-up window; The step of generating parameter adjustment instructions in response to the gesture operation includes: The movement trajectory of the parameter indicator pop-up window on the current display interface is determined; In a preset trajectory correspondence table, a parameter adjustment instruction that matches the movement trajectory is determined. The trajectory correspondence table is used to store the correspondence between the movement trajectory of the parameter indicator pop-up and the parameter adjustment instruction.

8. A computer device comprising a memory and a processor, the memory storing a computer program that, when executed by the processor, causes the processor to perform the steps of the method as claimed in any one of claims 1 to 6.

9. A computer-readable storage medium storing a computer program that, when executed by a processor, causes the processor to perform the steps of the method as claimed in any one of claims 1 to 6.

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