Patient operation state data processing method, system and equipment
By obtaining and analyzing real-time information during the patient's surgery, generating status cycle information and pushing it to the display device, the problem of inactivity in the existing technology of surgical status tracking is solved, real-time management and monitoring of the surgical process is realized, and medical risks and costs are reduced.
Patent Information
- Application Number
- CN202510480848.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-04-17
- Publication Date
- 2025-05-16
- Estimated Expiration
- Not applicable · inactive patent
AI Technical Summary
The current eye surgery status tracking is mainly based on post-event recording and statistics, and it is difficult to track the entire process of patients' surgery in real time, resulting in increased medical risks and medical costs.
By obtaining real-time information of the target patient, the status cycle information reflecting the real-time status of the target patient is determined, and push it to the target display device to realize real-time display and management.
Real-time dynamic tracking of the patient's surgical status is achieved, improving the flexibility and timeliness of communication between medical and nursing care, and reducing medical risks and medical costs.
Smart Images

Figure CN120015380A_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the field of medical information technology, and in particular, relates to a method, system and device for processing patient surgical status data. Background Art
[0002] In the modern medical system, surgery is an important treatment for many diseases. Accurate and efficient data tracking and processing of patients' surgical status is crucial to improving the quality of medical services, optimizing the allocation of medical resources, and ensuring patient safety.
[0003] Existing tracking of ophthalmic surgery status is mainly based on post-operation records and statistics, which makes it difficult to conduct real-time dynamic tracking of the entire surgical process. Medical staff are unable to grasp the patient's progress at each stage of the operation at any time, and lack efficient and accurate data processing methods, which greatly increases medical risks and costs. Summary of the invention
[0004] The embodiments of the present application provide a method, system and device for processing patient surgical status data, which can solve the problem of greatly increased medical risks and medical costs due to the lack of efficient and accurate data processing means during ocular surgical status tracking.
[0005] In a first aspect, an embodiment of the present application provides a method for processing patient surgical status data, comprising: Obtain real-time information of target patients; Determine the state cycle information of the target patient according to the real-time information of the target patient; wherein the state cycle information is used to reflect the real-time state of the target patient; Based on the state cycle information and the real-time information of the target patient, the real-time display information of the target patient is determined and pushed to a target display device.
[0006] The above technical solutions in the embodiments of the present application have at least the following technical effects: The patient surgical status data processing method provided in the embodiment of the present application provides a basic basis for subsequent patient surgical status tracking and data processing by acquiring real-time information of the target patient. According to the real-time information of the target patient, the state cycle information reflecting the real-time status of the target patient is determined to achieve closed-loop management of pre-hospitalized patients, assist in the refined management and control of the entire process of ward patients, and greatly improve the flexibility and timeliness of communication between doctors and nurses. Based on the state cycle information and real-time information of the target patient, the real-time display information of the target patient is determined and pushed to the target display device, and various special situations of the patient in daily work are visually managed to improve work efficiency and reduce medical risks and medical costs.
[0007] In a second aspect, an embodiment of the present application provides a patient surgery status data processing system, comprising: An acquisition unit, used to acquire real-time information of a target patient; A circulation unit, used to determine the state circulation information of the target patient according to the real-time information of the target patient; wherein the state circulation information is used to reflect the real-time state of the target patient; The display unit is used to determine the real-time display information of the target patient based on the state cycle information and the real-time information of the target patient and push the real-time display information to a target display device.
[0008] In a third aspect, an embodiment of the present application provides an electronic device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor implements a method as described in any one of the above aspects when executing the computer program.
[0009] In a fourth aspect, an embodiment of the present application provides a computer program product. When the computer program product is run on an electronic device, the electronic device executes the method of any one of the above aspects.
[0010] It can be understood that the beneficial effects of the second to fourth aspects mentioned above can be found in the relevant descriptions in the above aspects and will not be repeated here. BRIEF DESCRIPTION OF THE DRAWINGS
[0011] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings required for use in the embodiments or the description of the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0012] Figure 1 It is a flowchart of a method for processing patient surgical status data provided by an embodiment of the present application; Figure 2 It is a partial operation schematic diagram of step S200 in the method for processing patient surgical status data provided by an embodiment of the present application; Figure 3 This is a partial operation diagram of step S200 in the method for processing patient surgical status data provided by an embodiment of the present application; Figure 4 It is a partial operation schematic diagram of step S300 in the method for processing patient surgical status data provided by an embodiment of the present application; Figure 5 It is a partial operation schematic diagram of step S300 in the method for processing patient surgical status data provided by an embodiment of the present application; Figure 6 is a structural schematic diagram of a patient surgical status data processing system provided by an embodiment of the present application; Figure 7 It is a schematic diagram of the structure of an electronic device provided in one embodiment of the present application. DETAILED DESCRIPTION
[0013] In the following description, specific details such as specific system structures, technologies, etc. are provided for the purpose of illustration rather than limitation, so as to provide a thorough understanding of the embodiments of the present application. However, it should be clear to those skilled in the art that the present application may also be implemented in other embodiments without these specific details. In other cases, detailed descriptions of well-known systems, devices, circuits, and methods are omitted to prevent unnecessary details from obstructing the description of the present application.
[0014] It should be understood that when used in the present specification and the appended claims, the term "comprising" indicates the presence of described features, wholes, steps, operations, elements and / or components, but does not exclude the presence or addition of one or more other features, wholes, steps, operations, elements, components and / or combinations thereof.
[0015] It should also be understood that the term “and / or” used in the specification and appended claims refers to any and all possible combinations of one or more of the associated listed items, and includes these combinations.
[0016] As used in the specification of this application and the appended claims, the term "if" can be interpreted as "when" or "uponce" or "in response to determining" or "in response to detecting" depending on the context. Similarly, the phrase "if it is determined" or "if the described condition or event is detected" can be interpreted as meaning "uponce it is determined" or "in response to determining" or "uponce the described condition or event is detected" or "in response to detecting the described condition or event" depending on the context.
[0017] In addition, in the description of the present application specification and the appended claims, the terms "first", "second", "third", etc. are only used to distinguish the descriptions and cannot be understood as indicating or implying relative importance.
[0018] References to "one embodiment" or "some embodiments" etc. described in the specification of this application mean that one or more embodiments of the present application include specific features, structures or characteristics described in conjunction with the embodiment. Therefore, the statements "in one embodiment", "in some embodiments", "in some other embodiments", "in some other embodiments", etc. that appear in different places in this specification do not necessarily refer to the same embodiment, but mean "one or more but not all embodiments", unless otherwise specifically emphasized in other ways. The terms "including", "comprising", "having" and their variations all mean "including but not limited to", unless otherwise specifically emphasized in other ways.
[0019] Existing tracking of ophthalmic surgery status is mainly based on post-operation records and statistics, which makes it difficult to conduct real-time dynamic tracking of the entire surgical process. Medical staff are unable to grasp the patient's progress at each stage of the operation at any time, and lack efficient and accurate data processing methods, which greatly increases medical risks and costs.
[0020] To solve the above problems, the embodiments of the present application provide a method, system and device for processing patient surgical status data. In this method, by obtaining the real-time information of the target patient, a basic basis is provided for subsequent patient surgical status tracking and data processing. According to the real-time information of the target patient, the state cycle information reflecting the real-time status of the target patient is determined to achieve closed-loop management of pre-hospitalized patients, assist in the refined management of the entire process of ward patients, and greatly improve the flexibility and timeliness of communication between medical staff. Based on the state cycle information and real-time information of the target patient, the real-time display information of the target patient is determined and pushed to the target display device, and various special situations of the patient in daily work are visually managed to improve work efficiency and reduce medical risks and medical costs.
[0021] The patient surgical status data processing method provided in the embodiment of the present application can be applied to an electronic device. In this case, the electronic device is the executor of the patient surgical status data processing method provided in the embodiment of the present application. The embodiment of the present application does not impose any restrictions on the specific type of the electronic device.
[0022] For example, the electronic device can be a mobile phone, a tablet computer, a laptop computer, an ultra-mobile personal computer (UMPC), a netbook, a desktop computer, a smart screen, a smart TV, a handheld device with wireless communication function, a computing device or other processing device connected to a wireless modem, a vehicle-mounted device, a vehicle networking terminal, a computer, a laptop computer, a communication device, a computing device, etc.
[0023] In order to better understand the patient surgery status data processing method provided in the embodiment of the present application, the specific implementation process of the patient surgery status data processing method provided in the embodiment of the present application is exemplarily introduced below.
[0024] Figure 1 A schematic flow chart of a method for processing patient surgical status data provided by an embodiment of the present application is shown. The method for processing patient surgical status data includes: S100, obtaining real-time information of a target patient.
[0025] It can be understood that real-time information can include a variety of data, including basic information of patients (such as name, age, gender, etc.), vital signs data (heart rate, blood pressure, body temperature, blood oxygen saturation, etc.), surgery-related information (surgery appointment time, surgery type, surgery progress, etc.), medical order information (various medical order contents before, during and after surgery), test results (blood tests, imaging test results, etc.) and nursing records (nursing operation time, nursing observation indicators, etc.). It can be obtained through the preset data interface and interact with different information systems within the hospital. For example, the patient's basic information, past medical history and test results can be obtained through the interface with the electronic medical record system; the patient's vital signs data can be collected in real time by connecting to the medical equipment monitoring system; and surgery-related information can be extracted from the surgery management system. According to the established data collection rules, data related to the target patient can be extracted from each system regularly or in real time, and preliminary cleaning and sorting can be carried out to remove duplicate, erroneous or incomplete data, and the effective data can be integrated together to form a real-time information set of the target patient for subsequent processing and analysis, providing a data basis for accurately judging the patient's surgical status and providing targeted medical services.
[0026] S200, determining the state cycle information of the target patient according to the real-time information of the target patient; wherein the state cycle information is used to reflect the real-time state of the target patient.
[0027] It can be understood that real-time information can be analyzed according to preset status judgment rules. For example, if the real-time information shows that the surgical application form has been submitted, but there is no ward registration record, it can be determined that the patient is in the scheduled surgery state; if there is a record of "hospitalization registration" on the self-service machine, and there is relevant information about the patient's arrival at the hospital or ward, it can be determined to be in the registered state. Changes in real-time information can be continuously monitored, and when the information changes and meets the judgment conditions of other status nodes, the patient's status will be updated. Finally, the determined status is sorted and recorded according to the logic of the state cycle to form a complete state cycle information, which is convenient for medical staff to understand the patient's specific position and progress in the surgical process at any time.
[0028] The real-time information includes node event information. In a possible implementation, S200, according to the real-time information of the target patient, determining the state cycle information of the target patient includes: S210, determining the current state node of the target patient according to the node event information of the target patient.
[0029] It can be understood that the node event information is an event record related to each key node of the surgical process, and the node event information can mark the patient entering different surgical stages. The processed node event information can be analyzed according to the pre-set state judgment rules. The state judgment rules are formulated according to the logic of the surgical process and the characteristics of each state node. For example, the patient's current state node may include: scheduled surgery-checked in-admitted-preoperative preparation-waiting for surgery-sent to surgery-return to the ward-discharged, each node displays a different color, and each operation only refreshes the patient. For example, scheduled surgery: the surgical application form has been submitted, but the patient has not yet reported to the ward; checked in: the patient has arrived at the hospital and / or ward, and reported for hospitalization at the self-service machine; admitted: after the patient is admitted to the hospital and paid at the bedside at the door of the ward, the patient's status enters the admitted state; preoperative preparation: CPOE gives medical advice; waiting for surgery: PDA completes preoperative preparation (conjunctival sac flushing PDA signature after surgical interaction automatically completes preoperative preparation), etc.
[0030] Optionally, S210, determining the current state node of the target patient according to the node event information of the target patient, includes: S211, updating the node status of the target patient according to the node event information of the target patient, and determining the current node information of the target patient.
[0031] It can be understood that the node event information of the target patient can be continuously monitored, and when new node event information is detected, the previous node status record of the patient can be read from the database. For example, if it is detected that the patient has completed the node event information of "hospitalization registration" at the self-service machine, and the patient's node status was "scheduled surgery" before, it can be judged according to the preset status update rules. The status update rules are formulated according to the standard logic of the surgical process, which stipulates how the patient's node status should be changed when a certain node event occurs. According to the status update rules, after the "hospitalization registration" event occurs, the patient's node status should be updated from "scheduled surgery" to "reported". The updated "reported" status is used as the current node information of the target patient, and it is stored in the corresponding patient information field in the database. Not only the update of the target patient's node status is completed, but also the current node information is determined, providing an accurate data basis for subsequent further processing and analysis.
[0032] S212: Based on the current node information of the target patient, determine the node color information corresponding to the current node information.
[0033] It can be understood that the node color information is a color identification set to more intuitively display and distinguish patients in different surgical stages. By assigning specific colors to nodes in different surgical stages, medical staff can quickly visually identify the patient's current surgical status when viewing patient information. A "node information-color information" correspondence database or data table can be preset. After obtaining the current node information of the target patient, the information will be used as a retrieval condition and searched in this correspondence database.
[0034] For example, if the current node information shows that the patient is in the "preoperative preparation" stage, the node information "preoperative preparation" is searched in the corresponding relationship database to find the corresponding color information, assuming it is "light green". The determined "light green" is used as the node color information corresponding to the current node information ("preoperative preparation") and recorded, so that when the patient's status is displayed later, the color information is combined with the node information to form a more intuitive display effect.
[0035] S213, determining the current state node of the target patient according to the current node information and the node color information corresponding to the current node information.
[0036] It can be understood that the color identification is determined from the corresponding relationship preset by the system based on the current node information. For example, "Already admitted to the hospital" may correspond to light gray. Please refer to Figure 2 , "Waiting for surgery" corresponds to sky blue, etc. The current status node of the target patient is an identifier that combines the current node information and its corresponding color information to more intuitively and comprehensively display the patient's current surgical status. After obtaining the current node information of the target patient and the node color information corresponding to the information, the two can be integrated. The name of the surgical stage represented by the current node information can be associated and combined with the corresponding color information. For example, if the current node information is "Send for surgery" and its corresponding node color information is orange, then "Send for surgery (orange)" is determined as the current status node of the target patient. Subsequently, this current status node can be displayed in a visual form on the relevant operation interface, such as the workstation screen of medical staff. By viewing this status node with a color mark, medical staff can quickly and accurately understand which stage of the surgical process the target patient is currently in, which helps medical staff to arrange medical work and manage patients more efficiently.
[0037] S220, determining the state cycle information of the target patient based on the current state node.
[0038] It can be understood that the state cycle information is a collection of information covering all possible state nodes of the patient from surgery appointment to discharge, and these state nodes form a cycle in the order of the surgery process, see Figure 3 , which is used to fully reflect the real-time status changes related to the patient's surgery. A complete surgical state cycle model can be pre-stored, which contains all possible state nodes and the conversion order and relationship between them. After the current state node of the target patient can be obtained, the node will be used as the starting point, and the subsequent possible state nodes will be listed in order according to the preset state cycle logic. For example, if the current state node is "preoperative preparation (light green)", the next possible state nodes can be determined to be "waiting for surgery (yellow)", "sent to surgery (orange)", "return to the ward (light purple)", "discharged (light pink)", etc. according to the logic of the surgical process, and these state nodes and their corresponding color information are combined into an ordered list or data structure. This ordered list or data structure is the state cycle information of the target patient, which can provide clear and systematic information display for medical staff to fully understand the various stages of the patient's surgical process and state changes, which is conducive to more effective management and tracking of patients by medical staff.
[0039] S300, based on the state cycle information and real-time information of the target patient, determine the real-time display information of the target patient and push it to the target display device.
[0040] It can be understood that real-time information covers various data closely related to the current condition of the target patient, such as node event information (such as event records such as surgery application submission and hospitalization registration), surgery notification note information (including special instructions such as release and steep axis marking), and patient abnormal information (such as abnormal vital signs, etc.), which can instantly reflect the patient's current specific status and related details. Real-time display information is information that has been processed and integrated and is suitable for display to medical staff and patients on display devices so that they can quickly understand the patient's latest condition. Target display devices refer to various types of equipment used to display patient information in the hospital, such as computer screens at medical workstations and display screens at the entrance of wards.
[0041] The target patient's state cycle information and real-time information can be analyzed and processed. For the state cycle information, the state node of the current patient and its related color information are extracted. For real-time information, corresponding processing is performed according to different information types. According to the preset recognition rules, analysis is performed to determine whether there is any content that requires special warnings; for abnormal patient information, identification and judgment are also performed to determine whether there are abnormal conditions and the corresponding warning levels. The processed state cycle information and real-time information are integrated. For example, the current state node information, the corresponding color information, and the warning information extracted from the real-time information are combined to form a complete information set. This set is the real-time display information of the target patient, which reminds medical staff to have a visual management of various special conditions of patients in daily work and improve work efficiency.
[0042] The real-time information includes the surgical notice note information and the patient abnormality information. In a possible implementation, S300, based on the state cycle information and the real-time information of the target patient, determines the real-time display information of the target patient and pushes it to the target display device, including: S310, identifying the target patient's surgery notification note information and patient abnormality information, and determining the first display information of the target patient.
[0043] It can be understood that the notes of the surgical notice record the special requirements, key details and possible risk warnings during the surgical operation, such as instructions related to surgical techniques such as release, steep axis marking, incision axis, astigmatism, or preoperative preparations and special circumstances such as mydriasis 30 minutes before surgery and shallow anterior chamber. Patient abnormal information refers to the data of the patient's body that is inconsistent with the normal state during the operation, such as abnormal fluctuations in vital signs (heart rate, blood pressure, blood oxygen saturation, etc.), or abnormal conditions shown in test results (blood indicators, imaging examination results, etc.). The notes of the surgical notice and the abnormal patient information are conducive to medical staff to fully understand the patient's condition, make accurate medical decisions and ensure the smooth progress of the operation. The first display information is a set of information determined by identifying and processing the surgical notice notes and abnormal patient information of the target patient. The surgical notification form remarks information can be used to generate relevant warning content such as scattered-word warning signs, shallow-word warning signs, anesthesia warning signs, etc. based on preset recognition rules and keyword libraries; for abnormal patient information, the acquired patient physiological indicator data and test data will be compared with the preset normal range values, and the corresponding second warning information will be generated according to the abnormal situation.
[0044] Optionally, S310, identifying the surgical notice note information and patient abnormality information of the target patient to determine the first display information of the target patient includes: S311, identifying the remark information of the target patient's surgery notification form to obtain the first warning information of the target patient.
[0045] It is understandable that based on the preset keyword list and rules, text analysis is performed on the surgical notice note information. When specific words such as "relaxation" and "steep axis marking" are detected, a scattered word warning sign is generated. Please participate Figure 4 When it detects content such as "mydriasis 30 minutes before surgery", it generates a light-text warning sign, and identifies anesthesia-related content to generate an anesthesia warning sign. Finally, these warning signs are integrated into the first warning information. For example, if a patient's surgery notification form notes "the patient has astigmatism, mydriasis is required 30 minutes before surgery, and the anesthesia method is local anesthesia", the corresponding scattered text, light text and anesthesia warning signs will be generated to form the first warning information, helping medical staff to make preoperative preparations.
[0046] Exemplarily, S311, identifying the remark information of the target patient's surgery notification form to obtain the first warning information of the target patient includes: S3111, when the patient's surgery notification note information includes at least one of release, steep axis mark, incision axis, and astigmatism, a warning mark of astigmatism for the target patient is generated.
[0047] It can be understood that when the patient's surgery notification note information is any of the "relaxation, steep axis mark, incision axis, astigmatism" marks, a "scatter" warning reminder can be constructed to remind medical staff to complete the astigmatism mark before performing preoperative mydriasis to avoid affecting the accuracy of the position.
[0048] S3112, when the patient's surgery notification note information includes at least one of mydriasis 30 minutes before surgery and shallow anterior chamber, a shallow warning sign is generated for the target patient.
[0049] It can be understood that when the patient's surgery notification form has at least one of the notes "mydriasis and shallow anterior chamber 30 minutes before surgery", a "shallow" warning reminder can be constructed to remind medical staff that mydriasis should be performed 30 minutes before surgery to avoid inducing some eye complications.
[0050] S3113, identifying the remark information of the target patient's surgery notification form and generating an anesthesia warning mark for the target patient.
[0051] It can be understood that the remarks information on the target patient's surgery notification form can be used to identify whether the patient's surgical anesthesia is general anesthesia or target control. Based on general anesthesia or target control, a "full" or "target" warning sign can be constructed to remind medical staff to check the patient's fasting and anesthesia conditions at each stage. If local anesthesia is used, no sign will be displayed.
[0052] S3114, obtaining the first warning information of the target patient based on the scattered-word warning sign, the anesthesia warning sign and the light-word warning sign.
[0053] It is understandable that the generated scattered word warning signs, shallow word warning signs and anesthesia warning signs can be integrated and summarized, please refer to Figure 5 . Store these identifiers together in a specific data structure, or arrange and combine them in a certain format to form a comprehensive information set. This information set composed of different warning identifiers is the first warning information of the target patient. By viewing the first warning information, medical staff can quickly and comprehensively understand the various important warning contents contained in the notes of the surgery notice, so as to pay corresponding attention and handle them during the surgical operation and patient care, so as to ensure the smooth progress of the operation and the safety of the patient.
[0054] S312, identifying abnormal patient information of the target patient to obtain second warning information of the target patient.
[0055] It can be understood that abnormal patient information may include fluctuations in vital sign data (such as heart rate, intraocular blood pressure, body temperature, blood oxygen saturation, etc.) that exceed the normal range, as well as abnormal conditions shown by various test results (such as blood tests, imaging tests, etc.). These abnormal information can be processed according to pre-set rules and standards. Compare and analyze the patient's vital sign data obtained in real time with the normal reference range. For example, after analyzing the patient's abnormal information and judging it as abnormal, a red mark is generated for the patient information, and a second warning message is recorded.
[0056] S313: Generate first display information of the target patient based on the first warning information and the second warning information. It can be understood that the first warning information and the second warning information can be organically integrated to generate the first display information. The first warning information is derived from the recognition of the remark information of the surgical notice, including scattered words, shallow words, and anesthesia warning signs, which respectively remind the precautions of surgical technical operation, preoperative preparation, and anesthesia. The second warning information is to warn the patient of abnormal vital signs or test results with red marks through the analysis of abnormal patient information. The two types of information can be structured and summarized, and the information can be presented to medical staff by creating a specific data list or using a visual layout such as a pop-up window or list. For example, when a patient's surgical notice notes "the patient has astigmatism and needs to dilate the pupil 30 minutes before surgery, and general anesthesia is used", and his heart rate is abnormal. The first warning information that can be generated contains scattered words, shallow words, and general anesthesia warning signs, and the second warning information uses red marks for abnormal heart rate. The first display information will arrange these warning contents in an orderly manner to assist medical staff in quickly obtaining key information about the patient's surgery and physical condition in order to make accurate medical decisions.
[0057] S320: Determine the real-time display information of the target patient according to the state cycle information and the first display information, and push it to the target display device.
[0058] It is understandable that the status cycle information and the first display information can be integrated, and the patient's current status information in the surgical process (such as "waiting for surgery" and the corresponding color) can be combined with the various warning contents in the first display information, and the information can be presented in the form of a visual template card. The real-time display card can contain the patient's basic information, the current surgical stage, related warning signs and prompt information, etc. For example, the card will display "Patient [name], surgical eye: left eye, current status: waiting for surgery (yellow), scattered warning sign, shallow warning sign: Second warning information: abnormal heart rate (red sign).
[0059] Optionally, S320, determining the real-time display information of the target patient and pushing it to the target display device according to the state cycle information and the first display information, includes: S321, generating a real-time display card of the target patient according to the state cycle information and the first display information.
[0060] It can be understood that the state description and color identification of the stage can be extracted based on the current surgical stage of the patient in the state cycle information. Various warning contents in the first display information can also be integrated. Through the method of preset templates, certain formats and layouts are performed, and these information are arranged and combined to generate a visual real-time display card. For example, if the target patient is currently in the "waiting for surgery" stage, the color corresponding to this stage in the state cycle information is yellow, the surgical eye is the left eye, and the first display information has a "scattered" warning mark: the patient has an astigmatism problem, a "shallow" warning mark, and a second warning information: the patient's blood pressure index is abnormal (red mark). Then the generated real-time display card will clearly display the patient's basic information (such as name, etc.), the current state "waiting for surgery (yellow)", and list the above warning signs and information in turn, and present them to medical staff in an intuitive way, so that they can quickly understand the patient's current surgical status and special circumstances that need to be focused on, and provide strong support for subsequent medical decision-making and nursing work.
[0061] S322, obtaining target display device information, generating real-time display information of the target patient according to the real-time display card and the target display device information, and pushing the information to the target display device.
[0062] It can be understood that the target display device information refers to the information on the relevant parameters, characteristics and permissions of various devices used to display the real-time display information of the target patient. The target display device information can be obtained through specific software interfaces and communication protocols, and the different display contents that can be displayed by different devices can be determined based on the real-time display card and the target display device information, and the real-time display information of the target patient can be generated and pushed to the target display device. The content of the real-time display card can be filtered and selected through different templates based on the permission information of the target display device. For example, all nurse devices in the current department can receive all relevant information of all patients, please refer to Figure 4 ; Doctors' equipment can only obtain all relevant information of the bound patients; the large screen in the ward only displays public information, removes the patient's privacy information, and only retains public content such as surgery status and expected return time to the ward. It realizes the closed-loop management of pre-hospitalized patients and medical communication functions, intelligent collaborative management of medical and nursing, and realizes the refined management of the whole process of ward patients and improves the flexibility of medical communication, so that medical staff can have a visual management of various special situations of patients in daily work, and improve work efficiency.
[0063] Corresponding to the patient surgery status data processing method of the above embodiment, the embodiment of the present application also provides a patient surgery status data processing system, and each unit of the system can implement each step of the patient surgery status data processing method. Figure 6 A structural block diagram of a patient surgical status data processing system provided in an embodiment of the present application is shown. For ease of explanation, only the parts related to the embodiment of the present application are shown.
[0064] Reference Figure 6 , the patient surgery status data processing system comprises: An acquisition unit, used to acquire real-time information of a target patient; A circulation unit, used to determine the state circulation information of the target patient according to the real-time information of the target patient; wherein the state circulation information is used to reflect the real-time state of the target patient; The display unit is used to determine the real-time display information of the target patient based on the state cycle information and the real-time information of the target patient and push the real-time display information to a target display device.
[0065] It should be noted that the information interaction, execution process, etc. between the above-mentioned systems / units are based on the same concept as the method embodiment of the present application. Their specific functions and technical effects can be found in the method embodiment part and will not be repeated here.
[0066] The technicians in the relevant field can clearly understand that for the convenience and simplicity of description, only the division of the above-mentioned functional units and modules is used as an example for illustration. In practical applications, the above-mentioned function allocation can be completed by different functional units and modules as needed, that is, the internal structure of the system can be divided into different functional units or modules to complete all or part of the functions described above. The functional units and modules in the embodiment can be integrated in a processing unit, or each unit module can exist physically separately, or two or more unit modules can be integrated in one unit. The above-mentioned integrated unit can be implemented in the form of hardware or in the form of software functional units. In addition, the specific names of the functional units and modules are only for the convenience of distinguishing each other, and are not used to limit the scope of protection of this application. The specific working process of the units and modules in the above-mentioned system can refer to the corresponding process in the aforementioned method embodiment, which will not be repeated here.
[0067] The embodiment of the present application also provides an electronic device, Figure 7 This is a schematic diagram of the structure of an electronic device provided by an embodiment of the present application. Figure 7 As shown, the electronic device 6 of this embodiment includes: at least one processor 60 ( Figure 7 Only one is shown), at least one memory 61 ( Figure 7 Only one is shown in the figure) and a computer program 62 stored in the at least one memory 61 and executable on the at least one processor 60. When the processor 60 executes the computer program 62, the electronic device 6 implements the steps in any of the above-mentioned patient surgical status data processing method embodiments, or implements the functions of the units in the above-mentioned system embodiments.
[0068] Exemplarily, the computer program 62 may be divided into one or more units, which are stored in the memory 61 and executed by the processor 60 to complete the present application. The one or more units may be a series of computer program instruction segments capable of completing specific functions, which are used to describe the execution process of the computer program 62 in the electronic device 6.
[0069] The electronic device 6 may be a computing device such as a desktop computer, a notebook, a PDA, a cloud server, etc. The electronic device may include, but is not limited to, a processor 60 and a memory 61. Those skilled in the art will appreciate that Figure 7 It is only an example of the electronic device 6 and does not constitute a limitation on the electronic device 6. It may include more or fewer components than shown in the figure, or a combination of certain components, or different components. For example, it may also include input and output devices, network access devices, buses, etc.
[0070] The processor 60 may be a central processing unit (CPU), or other general-purpose processors, digital signal processors (DSP), application-specific integrated circuits (ASIC), field-programmable gate arrays (FPGA) or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. A general-purpose processor may be a microprocessor or any conventional processor, etc.
[0071] In some embodiments, the memory 61 may be an internal storage unit of the electronic device 6, such as a hard disk or memory of the electronic device 6. In other embodiments, the memory 61 may also be an external storage device of the electronic device 6, such as a plug-in hard disk, a smart media card (SMC), a secure digital (SD) card, a flash card, etc. equipped on the electronic device 6. Further, the memory 61 may also include both an internal storage unit and an external storage device of the electronic device 6. The memory 61 is used to store an operating system, an application program, a boot loader (BootLoader), data, and other programs, such as the program code of the computer program. The memory 61 may also be used to temporarily store data that has been output or is to be output.
[0072] An embodiment of the present application further provides a computer-readable storage medium, wherein the computer-readable storage medium stores a computer program, and when the computer program is executed by a processor, the steps in any of the above method embodiments are implemented.
[0073] An embodiment of the present application provides a computer program product. When the computer program product is executed on an electronic device, the electronic device implements the steps in any of the above method embodiments.
[0074] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable storage medium. Based on this understanding, the present application implements all or part of the processes in the above-mentioned embodiment method, which can be completed by instructing the relevant hardware through a computer program, and the computer program can be stored in a computer-readable storage medium. When the computer program is executed by the processor, the steps of the above-mentioned various method embodiments can be implemented. Among them, the computer program includes computer program code, and the computer program code can be in source code form, object code form, executable file or some intermediate form. The computer-readable medium may at least include: any entity or device that can carry the computer program code to an electronic device, a recording medium, a computer memory, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), an electric carrier signal, a telecommunication signal, and a software distribution medium. For example, a USB flash drive, a mobile hard disk, a magnetic disk or an optical disk. In some jurisdictions, according to legislation and patent practice, computer-readable media cannot be electric carrier signals and telecommunication signals.
[0075] In the above embodiments, the description of each embodiment has its own emphasis. For parts that are not described or recorded in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.
[0076] Those of ordinary skill in the art will appreciate that the units and algorithm steps of each example described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. Professional and technical personnel can use different methods to implement the described functions for each specific application, but such implementation should not be considered to be beyond the scope of this application.
[0077] In the embodiments provided in the present application, it should be understood that the disclosed patient surgical status data processing system / electronic device and method can be implemented in other ways. For example, the patient surgical status data processing system / electronic device embodiments described above are only schematic. For example, the division of the units is only a logical function division. There may be other division methods in actual implementation, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed. Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be an indirect coupling or communication connection through some interfaces, devices or units, which can be electrical, mechanical or other forms.
[0078] The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.
[0079] The embodiments described above are only used to illustrate the technical solutions of the present application, rather than to limit them. Although the present application has been described in detail with reference to the aforementioned embodiments, a person skilled in the art should understand that the technical solutions described in the aforementioned embodiments may still be modified, or some of the technical features may be replaced by equivalents. Such modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the embodiments of the present application, and should all be included in the protection scope of the present application.
Claims
1. A method for processing patient surgical status data, characterized in that: include: Obtain real-time information of target patients; Determine the state cycle information of the target patient according to the real-time information of the target patient; wherein the state cycle information is used to reflect the real-time state of the target patient; Based on the state cycle information and the real-time information of the target patient, the real-time display information of the target patient is determined and pushed to a target display device.
2. The method for processing patient surgical status data according to claim 1, characterized in that: The real-time information includes node event information; Determining the state cycle information of the target patient according to the real-time information of the target patient includes: Determining a current state node of the target patient according to the node event information of the target patient; Based on the current state node, state cycle information of the target patient is determined.
3. The method for processing patient surgical status data according to claim 2, characterized in that: The step of determining the current state node of the target patient according to the node event information of the target patient includes: Update the node status of the target patient according to the node event information of the target patient, and determine the current node information of the target patient; Based on the current node information of the target patient, determining node color information corresponding to the current node information; The current state node of the target patient is determined according to the current node information and the node color information corresponding to the current node information.
4. The method for processing patient surgical status data according to claim 1, characterized in that: The real-time information includes surgical notice note information and patient abnormality information; The step of determining the real-time display information of the target patient based on the state cycle information and the real-time information of the target patient and pushing the real-time display information to the target display device includes: Identify the surgical notification note information and the patient abnormality information of the target patient, and determine the first display information of the target patient; According to the state cycle information and the first display information, the real-time display information of the target patient is determined and pushed to the target display device.
5. The method for processing patient surgical status data according to claim 4, characterized in that: The step of identifying the surgical notification note information and the patient abnormality information of the target patient and determining the first display information of the target patient includes: Identify the remark information of the operation notification form of the target patient to obtain the first warning information of the target patient; Identifying the abnormal patient information of the target patient to obtain second warning information of the target patient; Based on the first warning information and the second warning information, first display information of the target patient is generated.
6. The method for processing patient surgical status data according to claim 5, characterized in that: The step of identifying the remark information of the surgery notification form of the target patient to obtain the first warning information of the target patient includes: When the patient surgery notification note information includes at least one of release, steep axis mark, incision axis, and astigmatism, generating a warning mark of astigmatism for the target patient; When the patient surgery notice note information includes at least one of mydriasis 30 minutes before surgery and shallow anterior chamber, a shallow warning mark for the target patient is generated; Identify the remark information of the surgery notification form of the target patient and generate an anesthesia warning mark for the target patient; Based on the scattered-word warning sign, the anesthesia warning sign and the shallow-word warning sign, the first warning information of the target patient is obtained.
7. The method for processing patient surgical status data according to claim 6, characterized in that: The step of determining the real-time display information of the target patient according to the state cycle information and the first display information and pushing the real-time display information to the target display device includes: generating a real-time display card of the target patient according to the state cycle information and the first display information; The target display device information is obtained, and the real-time display information of the target patient is generated according to the real-time display card and the target display device information, and is pushed to the target display device.
8. The method for processing patient surgical status data according to claim 7, characterized in that: The step of generating a real-time display card of the target patient according to the state cycle information and the first display information includes: generating a basic display card for the target patient according to the state cycle information; The basic display card is modified based on the first display information to generate a real-time display card for the target patient.
9. A patient surgery status data processing system, characterized in that: include: An acquisition unit, used to acquire real-time information of a target patient; A circulation unit, used to determine the state circulation information of the target patient according to the real-time information of the target patient; wherein the state circulation information is used to reflect the real-time state of the target patient; The display unit is used to determine the real-time display information of the target patient based on the state cycle information and the real-time information of the target patient and push the real-time display information to a target display device.
10. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that: When the processor executes the computer program, the method according to any one of claims 1 to 8 is implemented.
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