Interaction method, interaction device, and computer-readable storage medium

CN122802723APending Publication Date: 2026-09-22BEIJING ZITIAO NETWORK TECH CO LTD
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Patent Information

Application Number
CN202610967839.5
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-06-30
Publication Date
2026-09-22

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  • Figure CN122802723A_ABST
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Abstract

The application relates to the technical field of computers, in particular to an interaction method, an interaction device and a computer readable storage medium. The interaction method comprises the following steps: a first page is displayed, wherein the first page comprises a plurality of first location objects; in response to an interaction with the first page, evaluation information is displayed; and in response to a publishing operation, media content is published into a media stream, wherein the media content comprises the plurality of first location objects, the evaluation information, marking information and form information of the plurality of first location objects, and the form information is related to a geographical area to which the plurality of first location objects belong.
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Description

Technical Field

[0001] This application relates to the field of computer technology, and in particular to an interaction method, an interaction device, a computer-readable storage medium, and a computer program product. Background Technology

[0002] With the development of internet technology, users can use various online platforms to share their travel routes and experiences at visited locations. For example, users can compile their travel experiences into travel guides and publish them, or compile their experiences at the same location visited at different times into a series of content to record changes in their personal life trajectory. Summary of the Invention

[0003] According to some aspects of this application, an interaction method is provided, including: displaying a first page, wherein the first page includes a plurality of first location objects; displaying evaluation information in response to interaction with the first page; and publishing media content to a media stream in response to a publishing operation, wherein the media content includes the plurality of first location objects, the evaluation information, tagging information and morphological information of the plurality of first location objects, and the morphological information is related to the geographical region to which the plurality of first location objects belong.

[0004] According to some aspects of this application, an interactive device is provided, comprising: a display module configured to display a first page, wherein the first page includes a plurality of first location objects; displaying evaluation information in response to interaction with the first page; and a publishing module configured to publish media content to a media stream in response to a publishing operation, wherein the media content includes the plurality of first location objects, the evaluation information, tagging information and morphological information of the plurality of first location objects, and the morphological information is related to the geographical region to which the plurality of first location objects belong.

[0005] According to other aspects of this application, an interactive device is provided, comprising: at least one memory; and at least one processor coupled to said at least one memory, said at least one processor being configured to execute the interactive method as described in any aspect of this application based on instructions stored in said at least one memory.

[0006] According to some aspects of this application, a computer-readable storage medium is provided that stores computer instructions thereon, which, when executed by a processor, implement the interaction method as described in any aspect of this application.

[0007] According to some aspects of this application, a computer program product is provided that, when the computer program product is run on a computer, causes the computer to implement the interaction method as described in any aspect of this application.

[0008] Other features, aspects, and advantages of this application will become clear from the following detailed description of exemplary scenarios with reference to the accompanying drawings. Attached Figure Description

[0009] The present application will now be described with reference to the accompanying drawings. It should be understood that the drawings described below only relate to some aspects of the present application and are not intended to limit the scope of the application. In the drawings:

[0010] Figure 1 This is a schematic diagram illustrating the system architecture in some scenarios according to this application;

[0011] Figure 2 This is a flowchart illustrating the interaction methods in some scenarios according to this application;

[0012] Figure 3 This is a schematic diagram illustrating the display page in some scenarios according to this application;

[0013] Figure 4 This is a schematic diagram illustrating a playback page for media content in some scenarios according to this application;

[0014] Figure 5 This is a schematic diagram illustrating a playback page for media content under other circumstances according to this application;

[0015] Figure 6 This is a schematic diagram illustrating a playback page for media content under certain circumstances according to this application;

[0016] Figure 7 A block diagram showing an interactive device according to some scenarios of this application;

[0017] Figure 8 Block diagrams of interactive devices according to other embodiments of this application are shown;

[0018] Figure 9 A block diagram of an electronic device according to some scenarios of this application is shown.

[0019] It should be understood that, for ease of description, the dimensions of the various parts shown in the accompanying drawings are not necessarily drawn to actual scale. The same or similar reference numerals are used in the various drawings to denote the same or similar parts. Therefore, once an item is defined in one drawing, it may not be discussed further in subsequent drawings. Detailed Implementation

[0020] The technical solution of this application will now be clearly and completely described with reference to the accompanying drawings. It should be understood that this application can be implemented in various forms and should not be construed as limited to the situations described herein.

[0021] It should be understood that the various steps described in the method embodiments of this application may be performed in different orders and / or in parallel. Furthermore, the method embodiments may include additional steps and / or omit the steps shown. The scope of this application is not limited in this respect. Unless otherwise specifically stated, the relative arrangement of components and steps set forth in these embodiments should be interpreted as merely exemplary and does not limit the scope of this application.

[0022] The term "comprising" and its variations as used in this application are open-ended terms that include at least the following elements / features but do not exclude other elements / features, i.e., "including but not limited to". The term "based on" means "at least partially based on".

[0023] It should be noted that the concepts of "first," "second," etc., mentioned in this application are used only to distinguish different devices, modules, or units, and are not used to define the order of functions performed by these devices, modules, or units or their interdependencies. Unless otherwise specified, the concepts of "first," "second," etc., are not intended to imply that the objects described so far must be in a given order in time, space, ranking, or any other way.

[0024] It should be noted that the terms "a" and "a plurality of" used in this application are illustrative rather than restrictive, and those skilled in the art should understand that, unless otherwise expressly indicated in the context, they should be understood as "one or more".

[0025] The names of messages or information exchanged between multiple devices in this application are for illustrative purposes only and are not intended to limit the scope of such messages or information.

[0026] The user information (including but not limited to user device information, user personal information, etc.) and data (including but not limited to data used for analysis, data stored, data displayed, etc.) involved in this application are information and data authorized by the user or fully authorized by all parties. The collection, use and processing of the relevant data shall comply with relevant laws, regulations and standards, and corresponding operation entry points shall be provided for users to choose to authorize or refuse.

[0027] The present application will now be described in detail with reference to the accompanying drawings, but the present application is not limited to these specific situations. These specific situations can be combined with each other, and the same or similar concepts or processes may not be described again in some cases. Furthermore, in some situations, specific features, structures, or characteristics can be combined in any suitable manner by those skilled in the art.

[0028] In the context of this application, "image" can refer to any of a variety of images, such as color images, grayscale images, etc. It should be noted that the type of image is not specifically limited in the context of this specification. Furthermore, an image can be any suitable image, such as a raw image obtained by a camera device, or an image that has undergone specific processing, such as preliminary filtering, dealiasing, color adjustment, contrast adjustment, normalization, etc. It should be noted that preprocessing operations may also include other types of preprocessing operations known in the art, which will not be described in detail here.

[0029] In related technologies, when sharing information involving multiple locations, users need to manually integrate and format text and image materials from multiple locations into a coherent content format. However, the information dimensions presented in the manually formatted content are inconsistent, failing to accurately highlight the differences between multi-location information and other content, resulting in low recognizability of multi-location information and consequently low push efficiency.

[0030] To improve the efficiency of pushing multi-location information content, this application provides an interactive method that can display multiple location objects and their evaluation information in media content containing multi-location information, as well as the tag information of multiple location objects and the morphological information related to the geographical region to which the multiple location objects belong.

[0031] In this way, during the process of pushing multi-location information content in the media stream, multiple location objects and their evaluation information, tagging information, and morphological information are displayed uniformly. Furthermore, through the coordinated display of tagging information and morphological information, the geographical characteristics of the location objects can be highlighted, effectively distinguishing multi-location information content from other content in terms of visual presentation, improving the recognizability of multi-location information content, and thus improving the efficiency of content delivery.

[0032] Figure 1 This is a schematic diagram illustrating the system architecture in some scenarios according to this application.

[0033] Figure 1 The system architecture 100 shown includes one or more client devices 102 connected to network 101, one or more servers 103, and external services 104 for implementing the interaction method of this application.

[0034] Network 101 can be a public network, such as the Internet, or a private network, such as a local area network (LAN) or a wide area network (WAN), or a combination thereof.

[0035] Client device 102 can be a personal computer, laptop computer, mobile phone, tablet computer (Tablet PC), personal digital assistant (PDA), portable media player (PMP), set-top box, television, video game console, digital assistant, wearable device, desktop computer, or any other computing device. Client device 102 can run an operating system that manages the hardware and software of client device 102.

[0036] Server 103 can be a rack server, router, computer, personal computer, portable digital assistant, mobile phone, laptop computer, tablet computer, camera, camcorder, netbook, desktop computer, media center, or any combination thereof.

[0037] Client device 102 can provide client-side functionality, including user-oriented input and output processing, such as displaying various media content, receiving and responding to user operations, and communication with server 103. Server 103 includes various interfaces to client device 102, processing modules, data and models, and interfaces with external service 104. Server 103 communicates with external service 104 via network 101 for task completion or information retrieval.

[0038] Figure 2 This is a flowchart illustrating the interaction methods in some scenarios according to this application.

[0039] like Figure 2 As shown, the interaction method includes: step S1, displaying a first page, wherein the first page includes multiple first location objects; step S2, in response to interacting with the first page, displaying evaluation information; step S3, in response to a publishing operation, publishing media content to a media stream, wherein the media content includes multiple first location objects, evaluation information, tag information and morphological information of multiple first location objects, and the morphological information is related to the geographical region to which the multiple first location objects belong.

[0040] The following is combined Figure 3 The above methods are described in detail. Figure 3 These are schematic diagrams illustrating display pages in some cases according to this application, wherein Figure (a) shows a schematic diagram of a first page in some cases of this application, and Figure (b) shows a schematic diagram of a publication page in some cases of this application.

[0041] like Figure 3As shown in Figure (a), the first page 1 includes multiple first location objects, such as location object 1, location object 2, and location object 3. By performing interactive operations on the first page 1, evaluation information can be edited and displayed on the first page 1. The evaluation information may include, for example, at least one of evaluation images and evaluation text for the multiple first location objects.

[0042] The first page 1 may include two editing areas corresponding to each first location object. One editing area is used to edit the evaluation image for that first location object, and the other editing area is used to edit the evaluation text for that first location object. For example, in area 121 corresponding to location object 1, the evaluation image for location object 1 can be edited and displayed; in area 122 corresponding to location object 1, the evaluation text for location object 1 can be edited and displayed.

[0043] The first page 1 may include control 15. After editing the evaluation information on the first page 1, control 15 can be triggered to enter the media content publishing page. Optionally, the first page 1 may include control 16, which is used to add location objects.

[0044] like Figure 3 As shown in Figure (b), the media content publishing page 2 may include the title of the media content, multiple first location objects, and evaluation information. For example, in display area 21, the title of the media content and user information, such as user avatar 21 and user nickname (e.g., user 1), may be displayed. Optionally, the quantity information of the first location objects in the media content (e.g., the total number of first location objects) may also be displayed.

[0045] For example, multiple first location objects can be displayed in a list on the publishing page 2, with a corresponding evaluation image and evaluation text displayed on one side of each first location object. Taking location object 1 as an example, the evaluation image edited in area 121 of the first page 1 is displayed in area 221, and the evaluation text edited in area 122 of the first page 1 is displayed in area 222.

[0046] On publishing page 2, a publishing operation (such as a trigger operation on publishing control 25) is received. Media content containing multiple first location objects (such as location object 1, location object 2, and location object 3) and evaluation information can be published to the media stream. During the publishing process, tag information and form information of multiple first location objects can be generated and displayed in the media content. Optionally, publishing page 2 may include editing control 26. In response to a trigger operation on editing control 26, the user can jump back to the first page 1 to continue the editing operation.

[0047] The following is combined Figure 4Describe the display methods of evaluation information, tagging information, and morphological information in media content. Figure 4 These are schematic diagrams illustrating playback pages of media content under some circumstances according to this application, wherein Figures (a) to (c) respectively illustrate display schematic diagrams of media content under different circumstances according to this application.

[0048] In some cases, evaluation information for multiple first location objects may include multiple evaluation images. For example, multiple evaluation images may include evaluation images edited for one or more first location objects on the first page 1. In this case, the media content may include a first image set, which may include a cover image and multiple evaluation images. The cover image includes tagging information and morphological information of multiple first location objects. For example, the tagging information of multiple first location objects may include multiple display tags. The multiple display tags may correspond to multiple first location objects. The morphological information of multiple first location objects may include the outline information of a first geographic region, such as outline shape, outline size, outline display position, etc., whereby the first geographic region includes the geographic region to which at least some of the first location objects belong.

[0049] like Figure 4 As shown, the media content published to the media stream can be displayed on the media content playback page 3. On the playback page 3, the cover image 31 from the first image set, the title 32 of the media content, and user information, such as user nickname (e.g., user 1) and user avatar 21, can be displayed. Optionally, the quantity information of the first location objects (e.g., the total number of location objects) can be displayed next to the title 32.

[0050] In the cover image 31, display marks 34 for each first location object (e.g., display mark 34 for location object 1) and outline information of the first geographic region (e.g., outline shape 33 of the first geographic region, with the outline shape 33 displayed at the center of the cover image 31) can be displayed. On one side of the display mark 34 of each first location object, description information 35 of the first location object can be displayed. For example, the description information 35 may include the name of the first location object, such as location object 1.

[0051] In some cases, multiple first location objects are displayed in a first order on the first page 1, and the display markers of the multiple first location objects can be displayed in the cover image 31 in a first order based on the extension direction of the first path. For example, the first path can be a pre-configured path, such as a curved path or a straight path.

[0052] For example, see Figure 3As shown in Figure (a), multiple first location objects are displayed sequentially as Location Object 1, Location Object 2, and Location Object 3 on the first page 1. Based on this, as... Figure 4 As shown in Figure (a), the first path 32 can extend from top to bottom along the playback page 3. The display marks 34 of multiple first location objects are displayed sequentially along the extension direction of the first path 32, and the display order of the display marks 34 is consistent with the display order of multiple first location objects in the first page 1, namely location object 1, location object 2, and location object 3.

[0053] In this way, the display order of multiple first-location objects' markers remains consistent with the display order of multiple first-location objects during the editing process. Therefore, the arrangement order of location objects in the editing stage can be directly mapped to the display order of their markers in the media content. This consistency in display helps users form a coherent reading flow, thereby improving content delivery efficiency. Furthermore, this consistency reduces data misalignment caused by inconsistencies between the editing and rendering order during the data editing and content rendering process, improving the accuracy of computer data processing.

[0054] In some cases, multiple evaluation images are displayed in a first image set in a first order. For example, the multiple evaluation images may include evaluation images for at least a portion of the first location object. Figure 4 As shown, Figure 4 The illustration schematically shows that the first image set includes three evaluation images. The playback page 3 may include a content indicator bar 37, which can be used to indicate the number of evaluation images contained in the first image set, excluding the cover image. For example, the cover image and the three evaluation images can be identified sequentially by four short solid lines.

[0055] For example, multiple evaluation images may include an evaluation image for each of the multiple first location objects, see [link to relevant documentation]. Figure 3 In the diagram (a), regions 121, 131, and 141, multiple evaluation images are displayed sequentially on the first page 1 as evaluation images of location object 1, location object 2, and location object 3. Based on this, as... Figure 4 As shown in Figure (a), in response to a swipe operation in the first direction (such as from right to left in playback page 3), the evaluation images of location object 1, location object 2, and location object 3 are displayed sequentially along the content indicator bar 37. Taking location object 1 as an example representing a restaurant, as shown... Figure 4 As shown in Figure (b), in response to a right-to-left swipe operation on the playback page 3, an evaluation image 38 of the location object 1 is displayed after the cover image 31. For example, the evaluation image 38 may include an evaluation image of a certain food item in the restaurant.

[0056] For example, multiple evaluation images may include evaluation images of portions of a first location object, where the evaluation images of location object 1 and location object 3 are included. See also Figure 3 In the regions 121 and 141 shown in Figure (a), multiple evaluation images are displayed sequentially on the first page 1 as evaluation images of location object 1 and location object 3. Based on this, as Figure 4 As shown in Figure (a), in response to a sliding operation in the first direction (such as from right to left in playback page 3), the evaluation images of location object 1 and location object 3 are displayed sequentially along the content indicator bar 37.

[0057] For example, multiple evaluation images may include an evaluation image of a first location object, see [link to relevant documentation]. Figure 3 As shown in Figure (a), multiple evaluation images can include only multiple images of location object 1. Based on this, as... Figure 4 As shown in Figure (a), in response to a swipe operation in a first direction (such as from right to left in playback page 3), multiple images of location object 1 are displayed along the content indicator bar 37. In this case, the multiple images can be displayed sequentially based on the user's upload order in area 121.

[0058] In the above scenario, the display order of multiple first-location objects and multiple evaluation images in the media content remains consistent with the display order of multiple first-location objects during the editing process. Therefore, the arrangement order of location objects during the editing phase can be mapped to the display order of evaluation images in the media content. This consistency in display helps users form a coherent reading flow, thereby improving content delivery efficiency. Furthermore, during the process from data editing to content rendering, this consistency reduces data misalignment caused by inconsistencies between the editing and rendering order, improving the accuracy of computer data processing.

[0059] In some cases, evaluation information for multiple first-location objects may include multiple evaluation images and multiple evaluation texts. The multiple evaluation texts are displayed on multiple evaluation images, and the display style of the multiple evaluation texts is the same, with the display position of the evaluation texts on different evaluation images being the same. For example, the display style of the evaluation text includes at least one of the following: font, color, and size. Figure 4 As shown in Figure (b), the evaluation text "DXXXXX" for location object 1 can be displayed in display area 39 on evaluation image 38. Optionally, display area 39 can also display descriptive information of location object 1 (e.g., the name of location object 1). The descriptive information displayed in display area 39 can be combined with... Figure 4The description information 35 displayed on one side of label 34 in Figure (a) may be the same or different. For example, the description information displayed in display area 39 may be a simplified form of description information 35.

[0060] For example, multiple evaluation texts may include evaluation texts for multiple first location objects, and multiple evaluation images may include evaluation images for multiple first location objects. The evaluation text for each location object can be displayed on the corresponding evaluation image of that location object. If the evaluation image of a location object comprises multiple images, then the evaluation text for that location object can be displayed on each evaluation image of that location object.

[0061] The evaluation text for each location object maintains a consistent display style (e.g., font, color, size) and a consistent display position on different evaluation images. For example, each evaluation image contains a display area 39, and the evaluation text is uniformly displayed in the display area 39 of the evaluation image.

[0062] In this way, by displaying corresponding evaluation text on the evaluation image and presenting the evaluation text in a unified display style and position, users can be guided to form a coherent reading flow, effectively reducing the cost of visual search and thus improving the efficiency of content delivery. Moreover, this unified display method helps computers to quickly and accurately perform image-text synthesis and rendering, improving computer processing efficiency.

[0063] In some cases, the geographical locations of multiple first location objects have a first relative positional relationship, and multiple display markers are displayed in the cover image 31 based on this first relative positional relationship. In this case, the first geographic region may include the geographic region to which each of the multiple first location objects belongs. For example, as... Figure 4 As shown in Figure (c), location objects 1, 2, and 3 are displayed based on their relative positional relationships according to their respective geographical locations. The outline shape 33 of the first geographic region may include the overall outline shape of the geographic region to which location objects 1, 2, and 3 belong.

[0064] In this way, the distribution of display markers for multiple location objects in the cover image aligns with their geographical distribution. Therefore, the cover image accurately reflects the spatial relationships between location objects, further highlighting their geographical features and enhancing the recognizability of multi-location information. Moreover, this display method allows content consumers to quickly perceive the geographical distribution of multiple location objects, increasing information density during content delivery and thus improving delivery efficiency.

[0065] In some cases, multiple first location objects belong to multiple second geographic regions, and the first geographic region includes multiple second geographic regions where the number of location objects exceeds a threshold.

[0066] For example, multiple second geographic regions can be sorted based on the number of location objects, with the threshold set based on the number of location objects in the Nth geographic region (N is a configurable positive integer, illustrative only). In this case, the first geographic region can include the top N geographic regions, and the outline shape 33 can include the overall outline shape of the top N geographic regions. Figure 4 As shown in Figures (a) and (b), taking N=2 as an example, assuming that location objects 1, 2, and 3 all belong to geographic region 1 (e.g., city 1), location objects 4 and 5 (not shown) all belong to geographic region 2 (e.g., city 2), and location object 6 (not shown) belongs to geographic region 3 (e.g., city 3), the first geographic region can include the geographic regions with the highest number of location objects, namely geographic region 1 and geographic region 2. The outline shape 33 can include the overall outline shape of geographic region 1 and geographic region 2.

[0067] For example, the threshold can be set to a fixed value (e.g., a threshold of 2). In this case, the first geographic region can include a geographic region containing at least two location objects, and the outline shape 33 can include the overall outline shape of the geographic region containing at least two location objects. Figure 4 As shown in Figures (a) and (b), assuming that location object 1 and location object 2 both belong to geographic region 1 (e.g., city 1) and location object 3 belongs to geographic region 2 (e.g., city 2), then the first geographic region can include geographic region 1, and the outline shape 33 can include the outline shape of geographic region 1.

[0068] This approach includes second geographic regions with more than a preset threshold of location objects within the geographic area used to display morphological information. This reduces visual redundancy caused by including sparsely populated second geographic regions in the display scope, thus improving the efficiency of content delivery. Furthermore, based on this filtering mechanism, it eliminates the need to extract data from the entire second geographic region for rendering, thereby reducing computer data processing overhead.

[0069] In some cases, multiple first location objects are displayed in a first order on the first page 1, where the first geographic region includes the geographic region to which the second location object belongs, and the second location object can be the first location object listed first on the first page 1. For example, see [link to relevant documentation]. Figure 3 As shown in Figure (a), multiple first location objects are displayed sequentially as Location Object 1, Location Object 2, and Location Object 3 on the first page 1. Based on this, the second location object is Location Object 1, as shown below. Figure 4As shown in Figures (a) and (b), the first geographic region may include geographic region 1 to which location object 1 belongs, and the outline shape 33 may include the outline shape of geographic region 1.

[0070] In this approach, the geographic region used to display morphological information is selected from the geographic region of the first location object displayed during the editing process. Therefore, only data from one geographic region needs to be rendered, further reducing the computer's data processing overhead.

[0071] The above has described how evaluation information, tagging information, and morphological information are displayed in media content. Below, we will combine this with... Figure 5 The selection and display method of cover image 31 are described. Figure 5 This is a schematic diagram illustrating a playback page for media content under other circumstances according to this application.

[0072] In some cases, cover image 31 may be selected from one of the following: multiple review images in the review information, published content, or published images of multiple first location objects, wherein published content may include any one of the multiple first location objects. For example, multiple review images in the review information may include review images uploaded by the user for multiple first location objects during the editing of media content. Published content may include media content published by the user for any one of the multiple first location objects before publishing the media content. Published images of multiple first location objects may include review images published by the user in other scenarios within the application before publishing the media content, such as a review image published by the user on the review details page of a restaurant after dining there.

[0073] In this way, the cover image can not only present the identification and morphological information of multiple location objects, but also their current or historical evaluation information, achieving a structured aggregation of identification, morphological, and evaluation information within the same display medium. This increases the amount of information carried by the cover image, thereby improving the efficiency of content delivery.

[0074] In some cases, cover image 31 may include a composite of multiple evaluation images. For example, such as Figure 5 As shown, Figure 5The first image set in the media content schematically includes four evaluation images, such as evaluation image 311, evaluation image 312, evaluation image 313, and evaluation image 314. The cover image 31 may include a composite image of evaluation images 311, 312, 313, and 314. In this case, the composite image of multiple evaluation images can be referred to as a composite image. Identification information (e.g., display marker 34) and morphological information (e.g., outline shape 33) of multiple location objects can be overlaid on this composite image to form the cover image 31.

[0075] In this way, by uniformly displaying evaluation information of multiple locations through image stitching, content recipients can intuitively perceive the evaluation information of multiple locations involved in the media content based on the stitching layout in the cover image, thereby effectively improving the efficiency of content delivery.

[0076] In some cases, multiple evaluation images may include evaluation images of a portion of the first location object. For example, multiple evaluation images may include multiple images of a single first location object, and cover image 31 may include the stitched result of these multiple images.

[0077] In other cases, multiple evaluation images can correspond one-to-one with multiple first location objects. The cover image 31 can include the stitched result of multiple evaluation images corresponding one-to-one with multiple first location objects. For example, each first location object can correspond to a set of images. One image is selected from the set of images corresponding to each first location object as the evaluation image of that first location object for display. The evaluation images of multiple first location objects are stitched together to obtain the cover image 31.

[0078] In this way, when there are multiple evaluation images, including multiple sets of evaluation images, the cover image includes an evaluation image corresponding to each location object. The content recipient can intuitively perceive the evaluation information of each location object involved in the media content based on the splicing layout in the cover image, thereby effectively improving the content delivery efficiency.

[0079] In some cases, the published content includes a second image set, and the cover image 31 includes the cover image from the second image set. For example, the published content may include multiple media content items, and each media content item may include one of multiple first location objects. The cover image 31 may include the stitched result of the cover images from each of these multiple media content items. In this way, by reusing the cover images of each media content item in the published content as stitching material to generate the cover image 31, the historical media content of multiple location objects can be displayed in a centralized manner, thereby effectively improving the content delivery efficiency.

[0080] In some cases, published images of multiple first location objects may include multiple images. In such cases, cover image 31 may include the stitched result of these multiple images.

[0081] The above has described how various information is displayed in media content. Below, we will combine... Figures 4 to 6 Describe the relevant interactions based on media content. Figure 6 These are schematic diagrams illustrating playback pages of media content under certain circumstances according to this application, wherein diagrams (a) to (c) respectively show schematic diagrams of the display pages after different controls are triggered.

[0082] like Figure 4 and Figure 5 As shown, the media content playback page 3 may include control 36. In response to a triggering operation on control 36, multiple first location objects and evaluation information from the media content can be displayed.

[0083] For example, such as Figure 6 As shown in Figure (a), in response to a trigger operation on control 36, multiple first location objects (such as location object 1, location object 2, and location object 3) and their evaluation information in the media content can be displayed in a list format on playback page 3. For example, the evaluation image of location object 1 is displayed in display area 411 on the side of location object 1, and the evaluation text of location object 1 is displayed in display area 412; the evaluation image of location object 2 is displayed in display area 421 on the side of location object 2, and the evaluation text of location object 2 is displayed in display area 422; the evaluation image of location object 3 is displayed in display area 431 on the side of location object 3, and the evaluation text of location object 3 is displayed in display area 432.

[0084] In some cases, in response to a triggering operation on control 36, the title of the media content, user information, and the quantity information of the first location objects (e.g., the total number of first location objects) can also be displayed. For example, as... Figure 6 As shown in Figure (a), the title of the media content, user information, and the number of objects at the first location can be displayed in the display area 40.

[0085] In some cases, the geographical locations of multiple first location objects have a first relative positional relationship. The media content may include a first control, which can be used to display multiple second controls based on the first relative positional relationship. The multiple second controls correspond to the multiple first location objects and are used to display detailed information about the multiple first location objects. For example, the detailed information may include at least one of the following: location information, rating information, business information, and resource information of the first location objects.

[0086] For example, such as Figure 6As shown in Figures (a) and (b), a first control 45 can be displayed in the display area 40. In response to a triggering operation on the first control 45, multiple second controls corresponding to multiple first location objects can be displayed, such as second control 461 corresponding to location object 1, second control 462 corresponding to location object 2, and second control 463 corresponding to location object 3. These multiple second controls are displayed based on the relative positional relationships between the respective geographical locations of the multiple first location objects. In response to triggering any of the second controls, detailed information about the first location object corresponding to the second control can be displayed.

[0087] For example, such as Figure 6 As shown in Figure (c), in response to the triggering of the second control 461 corresponding to location object 1, detailed information about location object 1 can be displayed. For example, the detailed information may include the name, rating information, location information, business information, and resource information of location object 1.

[0088] like Figure 6 As shown in Figure (c), the rating information for location object 1 can be displayed next to the name of location object 1. For example, the rating information can be displayed as icons. Taking a 5-point rating system as an example, the icons corresponding to ratings 1-5 are 1 star, 2 stars, 3 stars, 4 stars, and 5 stars respectively. Figure 6 As shown in Figure (c), the rating icon for location object 1 is 5 stars, indicating that its rating information is 5.0 points.

[0089] On one side of the rating information, the business information, location information, and resource information of location object 1 can be displayed sequentially. For example, the business information of location object 1 can be displayed in display area 47. Taking location object 1 as a restaurant, the business information of location object 1 can include the restaurant's business hours. The location information of location object 1 and control 49 can be displayed in display area 48. When control 49 is triggered, it can jump to the map application on the terminal device to display the route from the current location of the terminal device to location object 1 through the map application.

[0090] The resource information of location object 1 can be displayed in a list format in display area 410. For example, if location object 1 is a restaurant, the resource information of location object 1 can include resource information (such as discount information) of multiple objects (such as multiple different foods) provided by the restaurant. The resource information of two objects (object 1 and object 2) is schematically shown in display area 410. By interacting with the objects, the purchase page of the object can be displayed for purchasing.

[0091] In the above scenario, the media content contains a first control. Triggering the first control displays a second control corresponding to multiple first location objects based on their geographical distribution. Triggering the second control displays the corresponding location object's detailed information. In this way, the geographical distribution and detailed information of multiple location objects within the media content form a structured, interconnected output. Content consumers can directly interact with the media content to obtain more information related to multiple location objects, effectively increasing the amount of information carried by the media content and thus significantly improving content delivery efficiency.

[0092] In some cases, such as Figure 6 As shown in Figures (a) and (b), the media content playback page 3 may include a third control 44, which is used to create media content containing multiple location objects. For example, in response to a triggering operation on the third control 44, a display may be generated. Figure 3 The first page 1 shown in Figure (a) is used for the creation of media content. This allows content consumers to directly trigger the media content creation process from the media content playback page, shortening the trigger path for content production and improving the efficiency of multi-location media content generation.

[0093] The following is for reference. Figure 7 and Figure 8 The present application describes an interactive device for performing any of the above-described interactive methods. Figure 7 A block diagram of an interactive device according to some scenarios of this application is shown.

[0094] like Figure 7 As shown, the interactive device 7 includes: a display module 71 configured to display a first page, wherein the first page includes multiple first location objects; and to display evaluation information in response to interaction with the first page; and a publishing module 72 configured to publish media content to a media stream in response to a publishing operation, wherein the media content includes multiple first location objects, evaluation information, tag information and morphological information of the multiple first location objects, and the morphological information is related to the geographical region to which the multiple first location objects belong.

[0095] The display module 71 of the interactive device 7 can, for example, be used to perform any of the display steps in the aforementioned interactive method. Of course, the interactive device 7 may also include other modules, for example, for implementing other steps in the aforementioned interactive method.

[0096] The interactive device described in this application can display multiple location objects and their evaluation information within media content containing multi-location information, as well as the tagging information of the multiple location objects and morphological information related to the geographical regions to which the multiple location objects belong. Thus, during the media stream delivery of multi-location information content, multiple dimensions of information, including multiple location objects, their evaluation information, tagging information, and morphological information, are displayed uniformly. Furthermore, the coordinated display of tagging information and morphological information highlights the geographical characteristics of the location objects, effectively distinguishing the multi-location information content visually from other content, improving the recognizability of the multi-location information content, and thereby increasing the efficiency of content delivery.

[0097] Figure 8 Block diagrams of interactive devices according to other embodiments of this application are shown.

[0098] like Figure 8 As shown, the interactive device 8 includes: at least one memory 81; and at least one processor 82 coupled to the at least one memory 81, the at least one processor 82 being configured to execute the interactive method as described in any of the foregoing scenarios based on instructions stored in the at least one memory 81.

[0099] Memory 81 is used to store one or more computer-readable instructions. Memory 81 may include any combination of various forms of computer-readable storage media, such as volatile memory and / or non-volatile memory, including but not limited to random access memory, dynamic random access memory, static random access memory, read-only memory, and flash memory. Memory 81 may, for example, store operating systems, application programs, boot loaders, databases, and other programs, as well as various application programs and various data.

[0100] Processor 82 is used to execute computer-readable instructions to implement the interactive method described in any of the foregoing scenarios. The specific implementation of each step of the method can be found in the scenarios described above; repeated details will not be repeated here.

[0101] The processor 82 can be manifested as various processing devices, such as a central processing unit (CPU), a network processor, etc.; it can also be a digital signal processor, an application-specific integrated circuit (ASIC), a field-programmable gate array (FPGA), or other programmable logic devices, discrete gate or transistor logic devices, or discrete hardware components. The CPU can be based on Intel processor (x86) architecture or Advanced Reduced Instruction Set Machine (ARM) architecture, etc.

[0102] The processor 82 and the memory 81 can communicate with each other directly or indirectly. For example, the processor 82 and the memory 81 can communicate via a network. The network can include a wireless network, a wired network, and / or any combination of wireless and wired networks. The processor 82 and the memory 81 can also communicate with each other via a system bus, which is not limited in this application.

[0103] It should be noted that Figure 8 The components of the interactive device 8 shown are merely exemplary and not limiting. The interactive device 8 may have other components depending on the specific application requirements. The processor 82 can control other components in the interactive device 8 to perform desired functions.

[0104] The interactive device 8 can be implemented by software, firmware and / or hardware, and can be integrated into a device with the relevant application installed.

[0105] The interactive device described in this application can display multiple location objects and their evaluation information within media content containing multi-location information, as well as the tagging information of the multiple location objects and morphological information related to the geographical regions to which the multiple location objects belong. Thus, during the media stream delivery of multi-location information content, multiple dimensions of information, including multiple location objects, their evaluation information, tagging information, and morphological information, are displayed uniformly. Furthermore, the coordinated display of tagging information and morphological information highlights the geographical characteristics of the location objects, effectively distinguishing the multi-location information content visually from other content, improving the recognizability of the multi-location information content, and thereby increasing the efficiency of content delivery.

[0106] Figure 9 A block diagram of an electronic device according to some scenarios of this application is shown.

[0107] Figure 9 The electronic device 9 shown can be a computer system with a dedicated hardware structure, which can perform corresponding functions when the relevant application is installed.

[0108] Electronic devices include, but are not limited to, various mobile terminals and fixed terminals such as digital televisions and desktop computers.

[0109] like Figure 9As shown, the Central Processing Unit (CPU) 91 executes various processes based on programs stored in Read-Only Memory (ROM) 92 or programs loaded from Storage Section 98 into Random Access Memory (RAM) 93. RAM 93 stores data required as needed when the CPU 91 executes various processes. The CPU is merely exemplary; it can also be other types of processors, such as the various processors described above. ROM 92, RAM 93, and Storage Section 98 can be various forms of computer-readable storage media. It should be noted that although... Figure 9 The diagram shows ROM 92, RAM 93 and storage section 98, but one or more of them may be combined or located in the same or different memory or storage modules.

[0110] CPU 91, ROM 92 and RAM 93 are interconnected via bus 94. Input / output interface 95 is also connected to bus 94.

[0111] The following components are connected to the input / output interface 95: input section 96, such as a touchscreen, touchpad, keyboard, mouse, image sensor, microphone, accelerometer, gyroscope, etc.; output section 97, including displays such as cathode ray tubes, liquid crystal displays, speakers, vibrators, etc.; storage section 98, including hard disks, magnetic tapes, etc.; and communication section 99, including network interface cards such as LAN cards, modems, etc. The communication section 99 allows communication processing via a network such as the Internet. It is easy to understand that, although... Figure 9 The portion of the electronic device 9 shown communicates via bus 94, but it may also communicate via a network or other means, wherein the network may include a wireless network, a wired network, and / or any combination of wireless and wired networks.

[0112] As needed, drive 910 is also connected to input / output interface 95. Removable media 911, such as disks, optical disks, magneto-optical disks, semiconductor memories, etc., are installed on drive 910 as needed, so that computer programs read from them can be installed into storage section 98 as needed.

[0113] When the above series of processes are implemented through software, the program constituting the software can be installed from a network such as the Internet or a storage medium such as a removable medium 911.

[0114] According to this application, the process described in the above-referenced flowchart can be implemented as a computer software program. For example, some embodiments of this application include a computer program product that, when run on a computer, causes the computer to implement the interactive method described in any of the foregoing embodiments. The computer program product includes computer instructions carried on a computer-readable medium, containing program code for performing the methods shown in the flowchart. In such an embodiment, the computer instructions can be downloaded and installed from a network via communication section 99, or installed from storage section 98, or installed from ROM 92. When the computer program is executed by CPU 91, the interactive method of this application is performed.

[0115] The interactive method of this application can display multiple location objects and their evaluation information, as well as the tagging information and morphological information related to the geographical regions to which the multiple location objects belong, within media content containing multi-location information. In this way, during the media stream delivery of multi-location information content, multiple dimensions of information, including multiple location objects, their evaluation information, tagging information, and morphological information, are displayed uniformly. Furthermore, the coordinated display of tagging information and morphological information highlights the geographical characteristics of the location objects, effectively distinguishing the multi-location information content visually from other content, improving its recognizability, and thus increasing the efficiency of content delivery.

[0116] It should be noted that, in the context of this application, a computer-readable medium can be a tangible medium that may contain or store a program for use by or in conjunction with an instruction execution system, apparatus, or device.

[0117] A computer-readable medium may be a computer-readable storage medium, a computer-readable signal medium, or any combination thereof.

[0118] Computer-readable storage media include, but are not limited to, electrical, magnetic, optical, electromagnetic, infrared, or semiconductor systems, apparatuses, or devices, or any combination thereof. More specific examples of computer-readable storage media may include, but are not limited to, electrical connections having one or more wires, portable computer disks, hard disks, random access memory, read-only memory, erasable programmable read-only memory, optical fibers, portable compact disk read-only memory, optical storage devices, magnetic storage devices, or any suitable combination thereof. In this application, a computer-readable storage medium can be any tangible medium containing or storing a program that can be used by or in conjunction with an instruction execution system, apparatus, or device. Computer instructions are stored on the computer-readable storage medium, which, when executed by a processor, implement the interactive method described in any of the foregoing scenarios.

[0119] The interactive method of this application can display multiple location objects and their evaluation information, as well as the tagging information and morphological information related to the geographical regions to which the multiple location objects belong, within media content containing multi-location information. In this way, during the media stream delivery of multi-location information content, multiple dimensions of information, including multiple location objects, their evaluation information, tagging information, and morphological information, are displayed uniformly. Furthermore, the coordinated display of tagging information and morphological information highlights the geographical characteristics of the location objects, effectively distinguishing the multi-location information content visually from other content, improving its recognizability, and thus increasing the efficiency of content delivery.

[0120] Computer-readable signal media may include data signals propagated in baseband or as part of a carrier wave, carrying computer-readable program code. Such propagated data signals may take various forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination thereof. Computer-readable signal media may also be any computer-readable medium other than computer-readable storage media, capable of sending, propagating, or transmitting programs for use by or in connection with an instruction execution system, apparatus, or device. The program code contained on the computer-readable medium may be transmitted using any suitable medium, including but not limited to: wires, optical fibers, radio frequency, etc., or any suitable combination thereof.

[0121] The aforementioned computer-readable medium may be included in the aforementioned electronic device; or it may exist independently and not assembled into the electronic device.

[0122] In one scenario, a computer program is also provided, comprising: instructions that, when executed by a processor, cause the processor to perform the method described in any of the foregoing scenarios. For example, the instructions may be embodied in computer program code.

[0123] In this application, computer program code for performing the operations of this application can be written in one or more programming languages ​​or a combination thereof. These programming languages ​​include, but are not limited to, object-oriented programming languages ​​such as C++, and also include conventional procedural programming languages ​​such as the "C" language or similar programming languages. The program code can be executed entirely on the user's computer, partially on the user's computer, as a standalone software package, partially on the user's computer and partially on a remote computer, or entirely on a remote computer or server. In cases involving a remote computer, the remote computer can be connected to the user's computer via any type of network, or it can be connected to an external computer.

[0124] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to various embodiments of this application. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing the specified logical function. It should also be noted that in some alternative implementations, the functions indicated in the blocks may occur in a different order than those indicated in the drawings. For example, two consecutively indicated blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. It should also be noted that each block in the block diagrams and / or flowcharts, and combinations of blocks in the block diagrams and / or flowcharts, may be implemented using a dedicated hardware-based system that performs the specified function or operation, or using a combination of dedicated hardware and computer instructions.

[0125] The functions described above can be performed, at least in part, by one or more hardware logic components. For example, without limitation, exemplary hardware logic components that can be used include: field-programmable gate arrays, application-specific integrated circuits (ASICs), application-specific standard products (ASICs), systems-on-a-chip (SoCs), complex programmable logic devices, and so on.

[0126] While specific scenarios of this application have been described in detail by way of examples, those skilled in the art should understand that the examples are for illustrative purposes only and not intended to limit the scope of this application. Those skilled in the art should understand that modifications can be made to the above scenarios without departing from the scope and spirit of this application. The scope of this application is defined by the appended claims.

Claims

1. An interaction method, comprising: Display a first page, wherein the first page includes multiple first location objects; In response to interaction with the first page, evaluation information is displayed; In response to the publishing operation, media content is published to the media stream, wherein the media content includes the plurality of first location objects, the evaluation information, the tag information and morphological information of the plurality of first location objects, and the morphological information is related to the geographical region to which the plurality of first location objects belong.

2. The interaction method according to claim 1, wherein, The evaluation information includes multiple evaluation images, and the media content includes a first image set, which includes a cover image and the multiple evaluation images. The cover image includes the marking information and the morphological information.

3. The interaction method according to claim 2, wherein, The plurality of first location objects are displayed on the first page in a first order, and the marking information includes a plurality of display marks, which are displayed on the cover image in the first order based on the extension direction of the first path.

4. The interaction method according to claim 3, wherein, The plurality of evaluation images are displayed in the first image set in the first order.

5. The interaction method according to claim 2, wherein, The geographic locations of the plurality of first location objects have a first relative positional relationship, and the marking information includes a plurality of display marks, which are displayed in the cover image based on the first relative positional relationship.

6. The interaction method according to claim 2, wherein, The morphological information includes the outline information of a first geographic region, which includes at least a portion of the geographic region to which the first location object belongs.

7. The interaction method according to claim 6, wherein, The plurality of first location objects belong to a plurality of second geographic regions, wherein the first geographic region includes the second geographic region in which the number of location objects in the plurality of second geographic regions is greater than a threshold.

8. The interaction method according to claim 6, wherein, The plurality of first location objects are displayed on the first page in a first order, the first geographical region includes the geographical region to which the second location object belongs, and the second location object is the first location object that is listed first on the first page.

9. The interaction method according to claim 2, wherein, The cover image is from one of the following: The plurality of evaluation images, published content, and published images of the plurality of first location objects, wherein the published content includes one of the plurality of first location objects.

10. The interaction method according to claim 9, wherein, The cover image is a composite of the multiple evaluation images.

11. The interaction method according to claim 10, wherein, The multiple evaluation images correspond one-to-one with the multiple first location objects.

12. The interaction method according to claim 9, wherein, The published content includes a second image set, and the cover image includes the cover image in the second image set.

13. The interaction method according to claim 2, wherein, The evaluation information also includes multiple evaluation texts, which are displayed on the multiple evaluation images. The multiple evaluation texts have the same display style and are displayed in the same position on different evaluation images.

14. The interaction method according to claim 1, wherein: The geographical locations of the plurality of first location objects have a first relative positional relationship, and the media content includes a first control; The first control is used to display a plurality of second controls based on the first relative positional relationship, wherein the plurality of second controls correspond to the plurality of first location objects; The plurality of second controls are used to display detailed information about the plurality of first location objects.

15. The interaction method according to claim 1, wherein, The media content playback page includes a third control, which is used to create media content containing multiple location objects.

16. An interactive device, comprising: A display module is configured to display a first page, wherein the first page includes multiple first location objects; and to display evaluation information in response to interaction with the first page; and The publishing module is configured to publish media content to a media stream in response to a publishing operation. The media content includes the plurality of first location objects, the evaluation information, the tagging information and morphological information of the plurality of first location objects, and the morphological information is related to the geographical region to which the plurality of first location objects belong.

17. An interactive device, comprising: At least one memory; as well as At least one processor coupled to the at least one memory, the at least one processor being configured to execute the interaction method as described in any one of claims 1 to 15 based on instructions stored in the at least one memory.

18. A computer-readable storage medium having stored thereon computer instructions that, when executed by a processor, implement the interactive method as described in any one of claims 1 to 15.

19. A computer program product, when run on a computer, causes the computer to implement the interactive method as described in any one of claims 1 to 15.