Cerebrospinal fluid cell examination report output method and device, computer equipment and storage medium
By displaying the entire cerebrospinal fluid cell image and providing annotation, selection, and description interface functions, the problem of target object relocation is solved, improving the accuracy and output efficiency of cerebrospinal fluid reports.
Patent Information
- Application Number
- CN202511038922.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-07-28
- Publication Date
- 2025-11-07
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
In cerebrospinal fluid cell examination, the target object is difficult to relocate after the field of view is moved, especially when the target object is sparse or scattered in the sample. This affects the re-observation and supplementary description of the target object, which affects the accuracy and completeness of the report. In addition, the information recorded by medical staff does not have a standardized format, which is time-consuming and laborious to organize, affecting the efficiency of report output.
By acquiring cerebrospinal fluid cell images and displaying the entire image, the system provides a note-taking interface, selection operation, description interface, and image capture function. Users can input notes, mark targets, and describe their characteristics, generate alternative images for the report, standardize the report format, and improve the accuracy and efficiency of the report.
It enables rapid location and re-observation of targets, ensuring the accuracy and completeness of reports, reducing report generation time, and improving output efficiency.
Smart Images

Figure CN120913737A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of cerebrospinal fluid cell morphology examination, in particular to a cerebrospinal fluid cell examination report output method and device, a computer equipment and a storage medium. BACKGROUND
[0002] Cerebrospinal fluid cell examination has been widely used in clinical diagnosis of neurological, blood, pediatric, infectious, rheumatic, immune, endocrine, tumor and mental diseases, and has important diagnostic value for diseases such as central nervous system infection, meningeal leukemia, lymphoma, brain parasitic disease, cerebrovascular disease and immune degeneration. Its morphological examination is basically the "golden indicator" for the diagnosis of many central nervous system diseases. Because the number of cerebrospinal fluid cells is small, the types are many, the shapes are different, especially with the occurrence of diseases, the variation is large, some cells are similar to blood, bone marrow, and thoracic and abdominal fluid cell morphology but not completely the same, and the current blood, urine and other cell analyzers cannot be replaced, therefore, quickly and accurately identifying various normal and abnormal cells of cerebrospinal fluid is an important problem that needs to be solved in clinical practice. In clinical practice, some diseases other than the central nervous system also have early cerebrospinal fluid cell abnormalities, which provide important reference value for the diagnosis of systemic diseases. In addition, the detection of pathogens in cerebrospinal fluid has direct diagnostic significance. Pathogen examination of cerebrospinal fluid requires detection of bacteria, fungi and parasites in cerebrospinal fluid, and finally generates a cerebrospinal fluid report.
[0003] In the field of cerebrospinal fluid cell morphology examination, in the prior art, the cells are collected by a cerebrospinal fluid cell slide centrifuge, and the cells are analyzed by manual visual observation under an ordinary optical microscope, which is prone to inevitable human errors and even physical damage caused by long-term observation under the microscope due to factors such as experience and fatigue. At the same time, when observing bacteria, fungi and parasites, medical personnel need to record the types and characteristics of the target objects in the document, and after previewing the cerebrospinal fluid physical slide, the recorded information is sorted and filled into the cerebrospinal fluid cell examination report, thereby completing the output of the cerebrospinal fluid cell examination report. However, the target objects are difficult to reposition after moving in the field of view, especially when the target objects in the sample are rare or scattered, which affects the reobservation and supplementary description of the target objects, resulting in the accuracy and completeness of the cerebrospinal fluid cell examination report being affected. Moreover, the information recorded by medical personnel does not have a unified format, which is time-consuming and laborious to sort out, and affects the output efficiency of the cerebrospinal fluid report. SUMMARY
[0004] In view of the above existing problems, the present application is proposed.
[0005] Therefore, the application provides a cerebrospinal fluid cell examination report output method to solve the problem that it is difficult to reposition the target object after the target object moves in the field of view, especially when the target object is rare or scattered in the sample, which affects the re-observation and supplementary description of the target object, and leads to the accuracy and integrity of the cerebrospinal fluid cell examination report being affected, and the information recorded by medical staff does not have a unified format, which is time-consuming and laborious to arrange, and affects the output efficiency of the cerebrospinal fluid report.
[0006] To solve the above technical problems, the application provides the following technical solutions.
[0007] In a first aspect, the application provides a cerebrospinal fluid cell examination report output method, which comprises:
[0008] obtaining a cerebrospinal fluid cell image and performing full-slice display on the cerebrospinal fluid cell image, wherein the cerebrospinal fluid cell image is an image obtained by performing full-slice scanning on a cerebrospinal fluid cell smear;
[0009] in response to a comment button for the cerebrospinal fluid cell image, providing a comment interface for a user to input corresponding comment information;
[0010] in response to a box selection operation on a target object on the cerebrospinal fluid cell image, marking the target object;
[0011] after the target object is selected, in response to a selection operation on a description button for the target object, providing a description interface for a user to input corresponding description information, and an image of the target object is displayed on the description interface;
[0012] in response to a picture capturing button for the cerebrospinal fluid cell image, capturing a picture of the current field of view of the cerebrospinal fluid cell image as a report candidate picture;
[0013] when a user opens a report filling interface, the information of the comment interface, the information of the description interface, and the report candidate picture are displayed on the report filling interface for the user to select.
[0014] As a preferred scheme of the cerebrospinal fluid cell examination report output method, the method comprises the following steps:
[0015] performing automatic scanning on a smear carrying cerebrospinal fluid cells by a high-resolution microscopic scanning device to generate digital image data containing full-slice information;
[0016] transmitting the digital image data to a terminal device and displaying the digital image data on a user interface in a scalable and draggable panoramic view mode.
[0017] As a preferred scheme of the cerebrospinal fluid cell examination report output method, in response to a comment button for the cerebrospinal fluid cell image, a comment interface is provided for a user to input corresponding comment information, and specifically includes:
[0018] When the user clicks the comment button on the image processing interface, a text input interface in the form of a separate window or a floating panel is popped up;
[0019] The user is allowed to input a textual description related to the entire cerebrospinal fluid cell image, and the textual information is stored in a bound manner with the image file for subsequent report generation.
[0020] As a preferred scheme of the cerebrospinal fluid cell examination report output method, in response to a box selection operation on a target object on the cerebrospinal fluid cell image, the target object is labeled, and specifically includes:
[0021] A rectangular region drawn by the user on the image using a mouse, a stylus or a gesture is detected;
[0022] The system identifies the target cells or structures contained in the region and automatically generates a numbered label and a boundary mark for subsequent tracking analysis.
[0023] As a preferred scheme of the cerebrospinal fluid cell examination report output method, after the target object is selected, in response to a selection operation on a description button for the target object, a description interface is provided for a user to input corresponding description information, and the image of the target object is displayed on the description interface, and specifically includes:
[0024] After the user selects the labeled target object, the description button is clicked to pop up a description interface containing a thumbnail of the target object;
[0025] The user is allowed to input information about the morphology, quantity, classification and other medical information of the target object, and the information is bound to the corresponding target object.
[0026] As a preferred scheme of the cerebrospinal fluid cell examination report output method, in response to a picture capturing button for the cerebrospinal fluid cell image, a picture of the current field of view of the cerebrospinal fluid cell image is captured as a report candidate picture, and the specific steps are:
[0027] In response to the picture capturing button for the cerebrospinal fluid cell image, a report picture candidate interface is provided, and a picture of the current field of view of the cerebrospinal fluid cell image is captured and displayed in a pending area on the report picture candidate interface;
[0028] All report candidate pictures are displayed in a joined candidate area on the report picture candidate interface;
[0029] In response to a determination join button on the report picture candidate interface, a picture of the current field of view of the cerebrospinal fluid cell image is displayed in the joined candidate area.
[0030] As a preferred scheme of the cerebrospinal fluid cell examination report output method, in response to a box selection operation on a target object on the cerebrospinal fluid cell image, the target object is labeled, and the specific steps include:
[0031] In response to a box selection operation on a target object on the cerebrospinal fluid cell image, the target object is box selection labeled.
[0032] In a second aspect, the present application provides a cerebrospinal fluid report output device, comprising:
[0033] The acquisition module, the first response module, the second response module, the third response module, the fourth response module, and the display module;
[0034] The acquisition module is configured to acquire a cerebrospinal fluid cell image and display the entire image of the cerebrospinal fluid cell image; the cerebrospinal fluid cell image is an image obtained by full scanning of a cerebrospinal fluid cell smear;
[0035] The first response module is configured to provide a comment interface for a user to input corresponding comment information in response to a comment button on the cerebrospinal fluid cell image;
[0036] The second response module is configured to label a target object in response to a box selection operation on the target object on the cerebrospinal fluid cell image;
[0037] The third response module is configured to provide a description interface for a user to input corresponding description information in response to a selection operation on a description button of the target object after the target object is selected; an image of the target object is displayed on the description interface;
[0038] The fourth response module is configured to capture a picture of a current field of view of the cerebrospinal fluid cell image as a report candidate picture in response to a picture capture button on the cerebrospinal fluid cell image;
[0039] The display module is configured to display information of the comment interface, information of the description interface, and the report candidate picture on a report filling interface for a user to select when the user opens the report filling interface.
[0040] In a third aspect, the present application provides a computer device comprising a memory and a processor, and the memory stores a computer program, wherein the computer program is executed by the processor to implement any step of the cerebrospinal fluid cell examination report output method according to the first aspect of the present application.
[0041] In a fourth aspect, the present application provides a computer readable storage medium having stored thereon a computer program, wherein the computer program, when executed by a processor, implements any step of the cerebrospinal fluid cell examination report output method according to the first aspect of the present application.
[0042] The present application has the following advantages: the target object is framed and marked, and the description interface is provided to display the corresponding description information of the target object, so that the target object can be quickly positioned even after the field of view is moved, the target object is observed again and described supplementally, the accuracy and completeness of the cerebrospinal fluid report are ensured, and the format of the cerebrospinal fluid examination data is regulated by the remark interface function, the description interface function and the report alternative picture function in the present application, the information of the remark interface, the information of the description interface and the report alternative picture are displayed on the report filling interface for the user to select, and the output efficiency of the cerebrospinal fluid report is effectively improved. BRIEF DESCRIPTION OF DRAWINGS
[0043] In order to more clearly illustrate the technical solutions of the embodiments of the present application, the following will briefly introduce the drawings needed to be used in the embodiment description. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0044] Figure 1 Flowchart of the cerebrospinal fluid cell examination report output method in embodiment 1.
[0045] Figure 2 Schematic diagram of the remark button and the remark interface in embodiment 1.
[0046] Figure 3 Schematic diagram of marking the target object in embodiment 1.
[0047] Figure 4 Schematic diagram of the description button and the description interface in embodiment 1.
[0048] Figure 5 Schematic diagram of the picture capturing button and the report picture alternative interface in embodiment 1.
[0049] Figure 6 Schematic diagram of the report filling interface in embodiment 1.
[0050] Figure 7 Schematic diagram of the cerebrospinal fluid report output device in embodiment 1.
[0051] Figure 8 Schematic diagram of the computer device in embodiment 1.
[0052] Figure 9A scenario diagram for application of the cerebrospinal fluid cell examination report output method in Embodiment 2. DETAILED DESCRIPTION
[0053] In order to make the above objectives, characteristics and advantages of the present application more obvious and easy to understand, the specific embodiments of the present application will be described in detail below with reference to the accompanying drawings.
[0054] In the following description, a large number of specific details are set forth in order to facilitate a thorough understanding of the present application, but the present application can also be implemented in other ways different from those described herein, and those skilled in the art can make similar generalizations without departing from the concept of the present application, therefore the present application is not limited to the specific embodiments disclosed below.
[0055] Secondly, the "one embodiment" or "embodiment" referred to herein means that the specific features, structures or characteristics can be included in at least one implementation of the present application. "In one embodiment" appearing in different places in the specification does not mean the same embodiment, nor is it an embodiment that is independent or alternative to other embodiments.
[0056] Embodiment 1, Reference Figure 1 Figure 8 For the first embodiment of the present application, the embodiment provides a cerebrospinal fluid cell examination report output method, comprising the following steps:
[0057] S1, obtaining a cerebrospinal fluid cell image and performing full sheet display on the cerebrospinal fluid cell image, the cerebrospinal fluid cell image being an image obtained by full sheet scanning on a cerebrospinal fluid cell smear;
[0058] Further, the smear carrying the cerebrospinal fluid cells is automatically scanned by a high-resolution microscopic scanning device to generate digital image data containing full sheet information;
[0059] The digital image data is transmitted to a terminal device and displayed on a user interface in a scalable and draggable panoramic view mode;
[0060] It should be noted that the high-resolution microscopic scanning device used can completely capture the distribution of all cells in the cerebrospinal fluid smear, avoiding the omission problem caused by limited field of view during traditional manual microscopy. The panoramic view display mode not only improves the user's operation experience, but also facilitates doctors to observe and analyze the overall distribution characteristics of cerebrospinal fluid cells, thereby improving the accuracy and efficiency of diagnosis.
[0061] S2, in response to a comment button for the cerebrospinal fluid cell image, providing a comment interface for the user to input corresponding comment information;
[0062] Further, when the user clicks the comment button on the image processing interface, a text input interface in the form of a separate window or a floating panel is popped up;
[0063] The user is allowed to input a textual description related to the entire cerebrospinal fluid cell image, and the textual information is stored in association with the image file for subsequent report generation;
[0064] When the entire cerebrospinal fluid cell image is displayed, if an abnormal situation is found or there is other information that needs to be commented on, the user can click the comment button to make a comment; in response to the comment button for the cerebrospinal fluid cell image, a comment interface is provided for the user to input the corresponding comment information
[0065] It should be noted that the design of the comment function helps the user to record the overall judgment or preliminary conclusion, such as sample source, staining condition, overall cell distribution trend, etc., during image browsing, and the information has important reference value for subsequent report writing. At the same time, the comment information is stored in association with the image, ensuring the relevance and traceability of the information.
[0066] S3, in response to a box selection operation on the target object on the cerebrospinal fluid cell image, the target object is labeled;
[0067] Further, the rectangular region drawn by the user on the image using a mouse, a stylus, or a gesture is detected;
[0068] The system recognizes the target cells or structures contained in the region and automatically generates a numbered label and a boundary mark for subsequent tracking analysis;
[0069] After the user observes the target objects such as bacteria, fungi, and parasites, the user can box select the target objects on the cerebrospinal fluid cell image, and in response to the box selection operation on the target objects on the cerebrospinal fluid cell image, the target objects are labeled, effectively realizing the positioning of the target objects; any reasonable way can be used to label the target objects, and the target objects can be box selected and labeled;
[0070] It should be noted that through the box selection and labeling of the target objects, the doctor can quickly lock the object of interest and analyze it in detail. The numbered and boundary marks automatically generated by the system help to distinguish different target objects and prevent confusion, and are convenient for subsequent calling, description, and report generation; in addition, this function supports multiple interaction modes, improving the applicability and friendliness of the system.
[0071] S4, after the target object is selected, in response to the selection operation of the description button for the target object, a description interface is provided for the user to input the corresponding description information, and the image of the target object is displayed on the description interface;
[0072] Further, after the user selects the marked target object, the user clicks the description button, and a description interface including a thumbnail of the target object is popped up;
[0073] The user is allowed to input information about the shape, quantity, classification and other medical related information of the target object, and bind the information with the corresponding target object;
[0074] If the shape and characteristics of the target object such as bacteria, fungi and parasites need to be described, the target object can be selected and the description button is clicked to describe. After the target object is selected, in response to the selection operation of the description button of the target object, a description interface is provided for the user to input the corresponding description information. In addition, in order to facilitate the verification of whether the content of the description interface is accurate when the information of the description interface is used subsequently, in the cerebrospinal fluid cell examination report output method provided in the present application, the image of the target object is displayed on the description interface.
[0075] It should be noted that the synchronous display of the target object image in the description interface can help the user to confirm whether the current description object is accurate, and avoid information mismatch caused by misoperation. In addition, the description information can be an important part of the final report, which can improve the professionalism and credibility of the report, and also provides a reliable basis for subsequent review and archiving.
[0076] S5, in response to the picture taking button of the cerebrospinal fluid cell image, the picture of the current field of view of the cerebrospinal fluid cell image is taken as a report picture candidate;
[0077] Further, in response to the picture taking button of the cerebrospinal fluid cell image, a report picture candidate interface is provided, and the picture of the current field of view of the cerebrospinal fluid cell image is displayed in the pending area on the report picture candidate interface;
[0078] All report picture candidates are displayed in the joined candidate area on the report picture candidate interface;
[0079] In response to the confirm join button on the report picture candidate interface, the picture of the current field of view of the cerebrospinal fluid cell image is displayed in the joined candidate area;
[0080] When the user feels that the picture of the current field of view is suitable as a report picture, the picture taking button can be clicked, and in response to the picture taking button, the report picture candidate interface is provided, and the picture of the current field of view of the cerebrospinal fluid cell image is displayed in the pending area on the report picture candidate interface;
[0081] All report picture candidates are displayed in the joined candidate area on the report picture candidate interface;
[0082] Users can choose whether to add the captured image of the current field of view to the list of candidate images for the report. If the user decides to add it to the list of candidate images for the report, they can click the "Confirm Add" button. In response to the "Confirm Add" button on the candidate image selection interface, the image of the cerebrospinal fluid cells in the current field of view will be displayed in the selected area.
[0083] If you do not click the "OK Add" button, the image of the cerebrospinal fluid cell image in the current field of view will not be displayed in the added candidate area, that is, the image of the cerebrospinal fluid cell image in the current field of view will not be added to the list of candidate images for the report.
[0084] Some images of certain fields of view need to be displayed in the final cerebrospinal fluid report. However, it takes a certain amount of time to return to the current field of view after the field of view changes and the results may not be accurate. Therefore, in the cerebrospinal fluid cell examination report output method provided in this application, in response to the image capture button for the cerebrospinal fluid cell image, the image of the current field of view of the cerebrospinal fluid cell image is captured as a candidate image for the report and used when outputting the cerebrospinal fluid report.
[0085] It should be noted that the report's alternative image mechanism allows users to flexibly select the most representative images from multiple perspectives for the final report, avoiding the efficiency loss caused by repeatedly searching for specific perspectives. In addition, by setting "pending areas" and "added areas," users can preview and filter the selected images before submission, thereby ensuring the quality and representativeness of the images in the final report.
[0086] S6. When a user opens the report filling interface, the information from the remarks interface, the information from the description interface, and the report selection images are displayed on the report filling interface for the user to choose from.
[0087] Furthermore, in response to the bounding box operation on the target object in the cerebrospinal fluid cell image, the target object is bounded and marked.
[0088] When a user opens the report filling interface, information from the remarks interface, information from the description interface, and alternative report images are displayed on the report filling interface for the user to select, allowing the user to quickly copy the required report information into the report and effectively reduce the report output time.
[0089] If the information in the remarks and description interfaces is found to be inaccurate or incomplete when filling out the report, it can be modified and improved in a timely manner to ensure the accuracy and completeness of the information in the remarks and description interfaces, thus providing a basis for the accuracy and completeness of the cerebrospinal fluid report.
[0090] When you need to verify the accuracy of the report, you can open the remarks interface and description interface at any time to view them and obtain the necessary information and evidence.
[0091] It should be noted that the report filling interface integrates all previous labeling, description and screenshot information, realizes high integration and automation of the report generation process, the user can complete report editing without switching multiple interfaces, greatly improving work efficiency, and the modifiability of information guarantees the dynamic adjustment ability of report content, meeting the actual needs of clinical work.
[0092] The embodiment also provides a cerebrospinal fluid report output device, including:
[0093] The acquisition module, the first response module, the second response module, the third response module, the fourth response module and the display module;
[0094] The acquisition module is used for acquiring a cerebrospinal fluid cell image and performing full-image display on the cerebrospinal fluid cell image; the cerebrospinal fluid cell image is an image obtained by performing full-image scanning on a cerebrospinal fluid cell smear;
[0095] The first response module is used for providing a comment interface for a user to input corresponding comment information in response to a comment button for the cerebrospinal fluid cell image;
[0096] The second response module is used for marking a target object in response to a box selection operation on the target object on the cerebrospinal fluid cell image;
[0097] The third response module is used for providing a description interface for a user to input corresponding description information in response to selection of a description button for the target object after the target object is selected; an image of the target object is displayed on the description interface;
[0098] The fourth response module is used for intercepting a picture of a current field of view of the cerebrospinal fluid cell image as a report candidate picture in response to a picture interception button for the cerebrospinal fluid cell image;
[0099] The display module is used for displaying information of the comment interface, information of the description interface and the report candidate picture on the report filling interface for a user to select when the user opens the report filling interface.
[0100] The embodiment also provides a computer device suitable for the cerebrospinal fluid cell examination report output method, including a memory and a processor; the memory is used for storing computer executable instructions, and the processor is used for executing the computer executable instructions to realize the cerebrospinal fluid cell examination report output method proposed in the above embodiment.
[0101] The computer device can be a terminal, and the computer device includes a processor, a memory, a communication interface, a display screen and an input device connected by a system bus. The processor of the computer device is configured to provide computing and control capabilities. The memory of the computer device includes a non-volatile storage medium and an internal memory. The non-volatile storage medium stores an operating system and a computer program. The internal memory provides an environment for running the operating system and the computer program in the non-volatile storage medium. The communication interface of the computer device is configured to perform wired or wireless communication with an external terminal. The wireless communication can be achieved by WIFI, an operator network, NFC (Near Field Communication) or other technologies. The display screen of the computer device can be a liquid crystal display screen or an electronic ink display screen. The input device of the computer device can be a touch layer overlaid on the display screen, or a key, trackball or touchpad arranged on the shell of the computer device, or an external keyboard, touchpad or mouse, etc.
[0102] The embodiment also provides a storage medium having a computer program stored thereon, the program being executed by a processor to implement the method for outputting a cerebrospinal fluid cell examination report as described in the above embodiment. The storage medium can be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as a static random access memory (SRAM), an electrically erasable programmable read-only memory (EEPROM), an erasable programmable read-only memory (EPROM), a programmable read-only memory (PROM), a read-only memory (ROM), a magnetic storage, a flash memory, a magnetic disk or an optical disk.
[0103] In summary, the application can quickly locate the target object even after the field of view is moved by performing the frame selection operation on the target object, marking the target object and providing the description interface to display the corresponding description information of the target object. The application can realize the re-observation and supplementary description of the target object, guarantee the accuracy and integrity of the cerebrospinal fluid report, and standardize the format of the cerebrospinal fluid examination data by providing the remark interface function, the description interface function and the report alternative picture function. In addition, the application displays the information of the remark interface, the information of the description interface and the report alternative picture on the report filling interface for the user to select, and effectively improves the output efficiency of the cerebrospinal fluid report.
[0104] Embodiment 2, please refer to Figure 9For the second embodiment of the present application, the embodiment provides a specific application scenario of a cerebrospinal fluid cell examination report output method, which comprises the following steps:
[0105] The cerebrospinal fluid detection device 101 and the scanner 102 can both transmit data through a network;
[0106] The scanner 102 is configured to scan the cerebrospinal fluid cell smear to obtain a cerebrospinal fluid cell image and transmit the cerebrospinal fluid cell image to the cerebrospinal fluid detection device 101.
[0107] After the cerebrospinal fluid detection device 101 obtains the cerebrospinal fluid cell image, the cerebrospinal fluid cell image is displayed in full view. In response to a comment button for the cerebrospinal fluid cell image, a comment interface is provided for a user to input corresponding comment information. In response to a box selection operation on a target object on the cerebrospinal fluid cell image, the target object is marked. After the target object is selected, in response to a selection operation of a description button for the target object, a description interface is provided for a user to input corresponding description information. The image of the target object is displayed on the description interface. In response to a picture capturing button for the cerebrospinal fluid cell image, a picture of the current field of view of the cerebrospinal fluid cell image is captured as a report candidate picture. When a user opens a report filling interface, the information of the comment interface, the information of the description interface, and the report candidate picture are displayed on the report filling interface for the user to select.
[0108] It should be noted that the above embodiments are only used to illustrate the technical solutions of the present application and are not limiting. Although the present application has been described in detail with reference to the preferred embodiments, those skilled in the art should understand that the technical solutions of the present application can be modified or replaced by equivalents without departing from the spirit and scope of the technical solutions of the present application, and all should be covered in the scope of the claims of the present application.
Claims
1. A cerebrospinal fluid cytology report output method characterized by: The method comprises the following steps: acquiring a cerebrospinal fluid cell image, and performing full-image display on the cerebrospinal fluid cell image, wherein the cerebrospinal fluid cell image is an image obtained by performing full-image scanning on a cerebrospinal fluid cell smear; in response to a comment button for the cerebrospinal fluid cell image, providing a comment interface for a user to input corresponding comment information; in response to a box selection operation on a target object on the cerebrospinal fluid cell image, marking the target object; after the target object is selected, in response to a selection operation on a description button for the target object, providing a description interface for a user to input corresponding description information, and an image of the target object is displayed on the description interface; in response to a picture capturing button for the cerebrospinal fluid cell image, capturing a picture of a current field of view of the cerebrospinal fluid cell image as a report candidate picture; when a user opens a report filling interface, information of the comment interface, information of the description interface and the report candidate picture are displayed on the report filling interface for the user to select.
2. The cerebrospinal fluid cell examination report output method according to claim 1, wherein: The method of acquiring a cerebrospinal fluid cell image and performing full-image display on the cerebrospinal fluid cell image, wherein the cerebrospinal fluid cell image is an image obtained by performing full-image scanning on a cerebrospinal fluid cell smear, specifically comprises the following steps: performing automatic scanning on a smear carrying cerebrospinal fluid cells by using a high-resolution microscopic scanning device to generate digital image data containing full-image information; transmitting the digital image data to a terminal device and displaying the digital image data on a user interface in a scalable and draggable panoramic view mode.
3. The cerebrospinal fluid cell examination report output method according to claim 2, characterized by: The method of providing a comment interface for a user to input corresponding comment information in response to a comment button for the cerebrospinal fluid cell image specifically comprises the following steps: when a user clicks a comment button on an image processing interface, a text input interface in the form of an independent window or a floating panel is popped up; the user is allowed to input text information related to the whole cerebrospinal fluid cell image, and the text information is stored in a bound manner with an image file for subsequent report generation.
4. The cerebrospinal fluid cell examination report output method according to claim 3, wherein: The method of marking a target object in response to a box selection operation on the target object on the cerebrospinal fluid cell image specifically comprises the following steps: detecting a rectangular region drawn by a user on an image by using a mouse, a stylus or a gesture; the system identifies target cells or structures contained in the region and automatically generates a numbered label and a boundary mark for subsequent tracking analysis.
5. The cerebrospinal fluid cell examination report output method according to claim 4, characterized by: After the target object is selected, in response to a selection operation on a description button for the target object, a description interface is provided for a user to input corresponding description information, and an image of the target object is displayed on the description interface. Specifically, the method comprises the following steps: after a user selects a marked target object, a description button is clicked to pop up a description interface containing a thumbnail of the target object; the user is allowed to input information about a morphology, a quantity, a classification and other medical information of the target object, and the information is bound to the corresponding target object.
6. The cerebrospinal fluid cell examination report output method according to claim 5, wherein: The method of capturing a picture of a current field of view of the cerebrospinal fluid cell image as a report candidate picture in response to a picture capturing button for the cerebrospinal fluid cell image specifically comprises the following steps: In response to a picture taking button for the cerebrospinal fluid cell image, a report picture alternative interface is provided, and a picture of the current field of view of the cerebrospinal fluid cell image is taken and displayed in a pending area on the report picture alternative interface; All report alternative pictures are displayed in a joined alternative area on the report picture alternative interface; In response to a determination joining button on the report picture alternative interface, the picture of the current field of view of the cerebrospinal fluid cell image is displayed in the joined alternative area.
7. The cerebrospinal fluid cell examination report output method according to claim 6, wherein: The response to the framing operation on the target object on the cerebrospinal fluid cell image includes: The response to the framing operation on the target object on the cerebrospinal fluid cell image includes:
8. A cerebrospinal fluid report output apparatus based on the cerebrospinal fluid cell examination report output method according to any one of claims 1 to 7, characterized by: It includes: The acquisition module, the first response module, the second response module, the third response module, the fourth response module and the display module; The acquisition module is used to acquire a cerebrospinal fluid cell image and display the cerebrospinal fluid cell image in full view; the cerebrospinal fluid cell image is an image obtained by full scanning of a cerebrospinal fluid cell smear; The first response module is used to provide a comment interface for a user to input corresponding comment information in response to a comment button for the cerebrospinal fluid cell image; The second response module is used to mark a target object in response to a framing operation on the target object on the cerebrospinal fluid cell image; The third response module is used to provide a description interface for a user to input corresponding description information in response to selection of a description button for the target object after the target object is selected; an image of the target object is displayed on the description interface; The fourth response module is used to take a picture of the current field of view of the cerebrospinal fluid cell image as a report alternative picture in response to a picture taking button for the cerebrospinal fluid cell image; The display module is used to display information of the comment interface, information of the description interface and the report alternative picture on a report filling interface for a user to select when the report filling interface is opened by the user.
9. A computer device comprising a memory and a processor, the memory storing a computer program, characterized in that: The processor executes the computer program to realize the steps of the cerebrospinal fluid cell examination report output method of any one of claims 1-7.
10. A computer readable storage medium having stored thereon a computer program, characterized in that: The computer program is executed by the processor to realize the steps of the cerebrospinal fluid cell examination report output method of any one of claims 1-7.