Dynamic registration method, device, equipment, and storage medium based on multiple hospitals

By utilizing the dynamic tagging mechanism between the server, patient terminals, and hospital information systems in multi-hospital treatment scenarios to adjust the visibility and ownership of appointment numbers, the problem of unchangeable treatment plans is solved, flexible adjustment and accurate prediction of appointment numbers are achieved, and the patient experience is improved.

CN120146230BActive Publication Date: 2025-09-26ZHUHAI QUANSHITONG INFORMATION TECH CO LTD
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Patent Information

Application Number
CN202510616370.6
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-14
Publication Date
2025-09-26
Estimated Expiration
2045-05-14

AI Technical Summary

Technical Problem

With existing technology, in multi-hospital medical treatment scenarios, appointment time plans cannot be changed once they are determined, which affects patients' medical experience due to inconsistent time lengths and leads to low appointment utilization.

Method used

By communicating with the patient terminal and multiple hospital information systems on the server, the feasibility of the treatment plan is dynamically verified, the appointment number source is adjusted, and the first mark and second mark mechanism is adopted to dynamically adjust the visibility and ownership of the number source to ensure that the number source meets the patient's needs.

Benefits of technology

It improves the flexibility and accuracy of treatment plans, ensures that appointment numbers meet patient needs, and enhances the treatment experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention proposes a dynamic registration method, device, equipment, and storage medium based on multiple hospitals. The method includes: after predicting the medical plan, occupying the first source of each target HIS through a first mark but not performing registration; during the medical treatment process of the first HIS, predicting the second source in the second HIS and adding a second mark; if a second source with both the first mark and the second mark is obtained, determining the second source as a prediction result with a higher accuracy rate, generating second registration information based on the second source; otherwise, dynamically adjusting the occupied source of the second HIS by adjusting the attribution of the first mark, locking the target source of the second HIS with the target prescription information of the first HIS as a trigger condition, and generating second registration information. By verifying the accuracy of the source prediction of the second HIS through the second mark, the medical plan can be dynamically adjusted to ensure that the source used for registration can meet the needs of the patient and improve the flexibility of the medical plan.
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Description

Technical Field

[0001] The present invention relates to the field of data processing technology, and in particular to a dynamic registration method, device, equipment, and storage medium based on multiple hospitals. Background Art

[0002] Currently, most hospitals support online registration through apps, official accounts, or mini-programs, which can improve registration efficiency. However, official accounts and mini-programs are the hospital's own system portals, and traditional online registration can only be performed within a HIS. For some popular hospitals and departments, due to the large number of patients, appointments are often scarce. Other hospitals have more abundant appointments, resulting in low utilization of medical resources.

[0003] In order to improve the utilization rate of medical resources, some third-party systems have emerged. They access the Hospital Information System (HIS) of multiple hospitals through APP to obtain the appointment information of multiple hospitals. Then, they combine the natural language processing (NLP) model of artificial intelligence technology to judge the patient's multiple symptoms and select the appointment information that meets the medical needs from multiple hospitals for registration.

[0004] However, in the scenario of visiting multiple hospitals, relevant technologies will predict the length of consultation and commuting time at each hospital based on historical data, and then determine the appointment time period for each hospital. However, relevant technologies can only predict various durations, and the treatment plan cannot be changed after it is determined. If the time a patient spends at one node is inconsistent with the predicted duration, for example, if there are more patients now, resulting in longer waiting times, or if there are fewer patients that day and the consultation is completed earlier, or if there is traffic congestion, it is easy to cause the appointment at the next hospital to be missed or the waiting time to be longer, thus affecting the treatment and the patient experience. Summary of the Invention

[0005] The present invention aims to solve at least one of the technical problems existing in the prior art. To this end, the present invention proposes a multi-hospital dynamic registration method, apparatus, device, and storage medium that can dynamically verify the feasibility of medical plans, timely adjust appointment number sources, increase the flexibility of medical plans, and enhance the patient experience.

[0006] In a first aspect, an embodiment of the present invention provides a multi-hospital dynamic registration method, which is applied to a server, wherein the server is respectively connected to a patient terminal of a target patient and multiple optional HISs, and the method includes:

[0007] Determining multiple target HISs based on the medical treatment needs sent by the patient terminal, predicting the first source corresponding to each of the target HISs, adding a first tag to the first source, and constructing a medical treatment plan based on the target HISs and the first source and sending it to the patient terminal, wherein the first tag is used to indicate that the marked source is only visible to the target patient;

[0008] When obtaining the first registration information of the first HIS, predicting the second source of the number based on the second HIS and adding a second tag, wherein the second HIS is located after the first HIS in the medical plan, and the source of the number added with the second tag maintains the current visibility;

[0009] When the second source does not include the first tag, swapping the tags of the second source and the first source in the second HIS, and when the target prescription information is obtained based on the first registration information, predicting a new second source based on the second HIS and adding the second tag;

[0010] In the second HIS, a target number source is determined based on the first tag and the second tag, and second registration information of the second HIS is generated based on the target number source.

[0011] According to some embodiments of the present invention, after constructing a medical consultation plan based on the target HIS and the first source and sending the plan to the patient terminal, the method further includes:

[0012] When a first trigger signal sent by the patient terminal in response to the medical plan is obtained, the target HIS ranked first is determined as the first HIS, and the target HIS located next to the first HIS is determined as the second HIS;

[0013] When a second trigger signal from the first source targeting the first HIS is obtained, generating the first registration information based on the first source in the first HIS;

[0014] When the medical consultation end information of the first HIS is obtained, the second HIS is determined as the new first HIS, and a new second HIS is determined based on the medical consultation plan.

[0015] According to some embodiments of the present invention, each of the target HISs corresponds to a plurality of selectable number sources, and the selectable number sources are determined based on the medical needs. After determining the target HIS located next to the first HIS as the second HIS, the method further includes:

[0016] Determining first location information of the first HIS and the selectable number source, and determining a first target path based on the current location of the patient terminal and the first location information;

[0017] When detecting that the patient terminal is in a moving state, periodically determining a moving path of the patient terminal;

[0018] Whenever the moving path is determined and matches the first target path, a third source is predicted from the optional source numbers of the first HIS, and the second tag is added to the third source;

[0019] When the third source does not include the first mark, exchanging the marks of the first source and the third source, and continuing to determine a new third source based on the moving path determined next time;

[0020] When the third source determined at any time includes the first mark and the second mark, the first registration information is generated based on the third source, and the determination of the moving path is stopped.

[0021] According to some embodiments of the present invention, when the first HIS includes a plurality of first registration information, when target prescription information is obtained based on the first registration information, a new second source is predicted based on the second HIS and the second tag is added, including:

[0022] When the number of the optional number sources is greater than 1, each time the target prescription information is obtained, a second number source is predicted from the optional number sources of the second HIS and the second tag is added;

[0023] When the number of the second marks of any second source reaches a preset threshold, the first mark is added to the second source.

[0024] According to some embodiments of the present invention, after generating the second registration information of the second HIS based on the target number source, the method further includes:

[0025] When the second HIS includes at least one fourth source, determining second location information preset in the second HIS, and determining a second target path based on the first location information and the second location information, wherein the fourth source is the optional source including the second tag, and the fourth source does not include the target source;

[0026] Determine a first reference node, a second reference node, and a third reference node and send them to the patient terminal, wherein the first reference node is used to indicate that the patient terminal leaves the area indicated by the first location information, the second reference node is used to indicate that the patient terminal reaches the midpoint of the second target path, and the third reference node is used to indicate that the patient terminal reaches the second location information;

[0027] Predicting a prediction time period corresponding to each of the first reference node, the second reference node, and the third reference node;

[0028] When the node time sent by the patient terminal at the first reference node and the second reference node is not in the corresponding predicted time period, predicting a fifth source from the plurality of fourth sources, and recording first trend information corresponding to the fifth source, wherein the first trend information is used to indicate whether the node time of the second reference node is ahead of or behind the predicted time period;

[0029] Alternatively, when the node moment sent by the patient terminal at the third reference node is not in the corresponding predicted time period, and the second trend information of the fifth source is the same as the first trend information, the target source is replaced based on the fifth source in the second registration information, wherein the second trend information is used to characterize whether the node moment of the third reference node is ahead of or behind the predicted time period.

[0030] According to some embodiments of the present invention, after obtaining the first registration information of the first HIS, the method further includes:

[0031] When the second source cannot be predicted from the second HIS, determining the target demand corresponding to the first source of the second HIS from the medical needs;

[0032] Determine a replacement HIS and a corresponding replacement number source from the remaining target HIS based on the target demand, and add the second tag to the replacement number source, wherein the time period of the replacement number source and the first number source of the replacement HIS are staggered;

[0033] When the target prescription information is obtained and the second number source still cannot be determined based on the second HIS, and the substitute number source is determined again from the substitute HIS based on the target demand, the second tag of the substitute number source is changed to the first tag, and the second HIS is deleted from the medical plan;

[0034] A new second HIS is newly determined based on the medical consultation plan.

[0035] According to some embodiments of the present invention, after swapping the labels of the second source and the first source in the second HIS, the method further includes:

[0036] Determine the target HIS located one position after the second HIS in the medical consultation plan as the third HIS, and predict the sixth source in the third HIS;

[0037] When the sixth source does not carry the first tag, the second tag is added to the sixth source.

[0038] In the second aspect, an embodiment of the present invention provides a dynamic registration device based on multiple hospitals, comprising at least one control processor and a memory for communicating with the at least one control processor; the memory stores instructions that can be executed by the at least one control processor, and the instructions are executed by the at least one control processor to enable the at least one control processor to execute the dynamic registration method based on multiple hospitals as described in the first aspect above.

[0039] In a third aspect, an embodiment of the present invention provides an electronic device comprising the multi-hospital dynamic registration device as described in the second aspect above.

[0040] In a fourth aspect, an embodiment of the present invention provides a computer-readable storage medium storing computer-executable instructions, wherein the computer-executable instructions are used to execute the multi-hospital dynamic registration method as described in the first aspect above.

[0041] According to the dynamic registration method based on multiple hospitals according to the embodiment of the present invention, there are at least the following beneficial effects: based on the medical needs sent by the patient terminal, multiple target HISs are determined, the first source corresponding to each of the target HISs is predicted, a first tag is added to the first source, a medical plan is constructed based on the target HIS and the first source and sent to the patient terminal, wherein the first tag is used to indicate that the marked source is only visible to the target patient; when the first registration information of the first HIS is obtained, the second source is predicted based on the second HIS and a second tag is added, wherein the second HIS is located after the first HIS in the medical plan, and the source with the second tag added maintains the current visibility; when the second source does not include the first tag, the tags of the second source and the first source are interchanged in the second HIS, and when the target prescription information is obtained based on the first registration information, a new second source is predicted based on the second HIS and the second tag is added; in the second HIS, the target source is determined based on the first tag and the second tag, and the second registration information of the second HIS is generated based on the target source. According to the technical solution of the embodiment of the present invention, after predicting the medical treatment plan, the first source of each target HIS can be occupied by the first mark but registration is not performed. During the medical treatment process of the first HIS, the second source is predicted in the second HIS and a second mark is added. If a second source with both the first mark and the second mark is obtained, the second source is determined to be a prediction result with a higher accuracy, and the second registration information is generated based on the second source. Otherwise, the occupied source of the second HIS is dynamically adjusted by adjusting the attribution of the first mark, and the target prescription information of the first HIS is used as a trigger condition to lock the target source of the second HIS and generate the second registration information. By verifying the accuracy of the source prediction of the second HIS through the second mark, the medical treatment plan can be dynamically adjusted to ensure that the source used for registration can meet the needs of the patient and improve the flexibility of the medical treatment plan. BRIEF DESCRIPTION OF THE DRAWINGS

[0042] Figure 1 is a schematic diagram of a system provided by an embodiment of the present invention;

[0043] Figure 2 is a flow chart of a dynamic registration method based on multiple hospitals provided by another embodiment of the present invention;

[0044] Figure 3 This is a complete flow chart of a dynamic registration method based on multiple hospitals provided by another embodiment of the present invention;

[0045] Figure 4 It is a structural diagram of a dynamic registration device based on multiple hospitals provided by another embodiment of the present invention. DETAILED DESCRIPTION

[0046] The following describes embodiments of the present invention in detail. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended only to explain the present invention and are not to be construed as limiting the present invention.

[0047] In the description of the present invention, it should be understood that descriptions involving orientations, such as up, down, front, back, left, right, etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are only for the convenience of describing the present invention and simplifying the description, and do not indicate or imply that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, they cannot be understood as limitations on the present invention.

[0048] In the description of the present invention, "several" means one or more, "many" means more than two, "greater than," "less than," and "exceed" are understood to exclude the number itself, while "above," "below," and "within" are understood to include the number itself. The use of "first" and "second" in the description is solely for the purpose of distinguishing technical features and should not be construed as indicating or implying relative importance, implicitly specifying the number of the indicated technical features, or implicitly specifying the order of the indicated technical features.

[0049] In the description of the present invention, unless otherwise clearly defined, terms such as setting, installing, and connecting should be understood in a broad sense, and technicians in the relevant technical field can reasonably determine the specific meanings of the above terms in the present invention based on the specific content of the technical solution.

[0050] An embodiment of the present invention provides a dynamic registration method, apparatus, device, and storage medium based on multiple hospitals, wherein the dynamic registration method based on multiple hospitals includes: determining multiple target HISs based on the medical needs sent by the patient terminal, predicting the first source corresponding to each of the target HISs, adding a first tag to the first source, building a medical plan based on the target HIS and the first source and sending it to the patient terminal, wherein the first tag is used to indicate that the marked source is only visible to the target patient; when the first registration information of the first HIS is obtained, predicting the second source based on the second HIS and adding a second tag, wherein the second HIS is located after the first HIS in the medical plan, and the source with the second tag added maintains the current visibility; when the second source does not include the first tag, swapping the tags of the second source and the first source in the second HIS, when obtaining the target prescription information based on the first registration information, predicting a new second source based on the second HIS and adding the second tag; determining the target source based on the first tag and the second tag in the second HIS, and generating the second registration information of the second HIS based on the target source. According to the technical solution of the embodiment of the present invention, after predicting the medical treatment plan, the first source of each target HIS can be occupied by the first mark but registration is not performed. During the medical treatment process of the first HIS, the second source is predicted in the second HIS and a second mark is added. If a second source with both the first mark and the second mark is obtained, the second source is determined to be a prediction result with a higher accuracy, and the second registration information is generated based on the second source. Otherwise, the occupied source of the second HIS is dynamically adjusted by adjusting the attribution of the first mark, and the target prescription information of the first HIS is used as a trigger condition to lock the target source of the second HIS and generate the second registration information. By verifying the accuracy of the source prediction of the second HIS through the second mark, the medical treatment plan can be dynamically adjusted to ensure that the source used for registration can meet the needs of the patient and improve the flexibility of the medical treatment plan.

[0051] First, refer to Figure 1 , Figure 1 This is a system diagram provided by an embodiment of the present invention. The server 10 of this embodiment is communicatively connected with the patient terminal 30 of the target patient and multiple optional HISs.

[0052] It should be noted that the patient terminal 30 can be an electronic device such as a mobile phone or tablet. After the target patient accesses the server 10 through the patient terminal 30, he or she enters personal information for registration. The server 10 can obtain medical treatment needs from the patient terminal 30, such as symptom description information from the patient terminal 30, and determine the corresponding medical treatment needs through an artificial intelligence model. Determining medical treatment needs based on symptom description information is a technology well known to those skilled in the art, and this embodiment does not involve related improvements. The server 10 can be connected to multiple patient terminals 30, each patient terminal 30 corresponding to a different patient, and the technical solution of this embodiment can be independently executed for each patient terminal 30.

[0053] It should be noted that each optional HIS corresponds to a hospital, and the server 10 can obtain the number source of each department from the optional HIS, and after determining the target number source, it combines the personal information associated with the patient terminal 30 to perform online registration processing. The specific online registration method is not within the scope of discussion in this embodiment. Figure 1 As shown, the server 10 is respectively connected to the three target HIS20 for communication. Each of the three target HIS20 corresponds to a hospital. The server 10 can obtain the following number sources from one of the target HIS20: {number source 1-1, number source 1-2,...}, and perform registration operations for the target patient in the corresponding hospital through interaction with the corresponding target HIS20.

[0054] The following is based on the Figure 1 The system schematic diagram shown further illustrates the technical solution of the embodiment of the present invention.

[0055] Reference Figure 2 , Figure 2 A flowchart of a multi-hospital dynamic registration method provided in an embodiment of the present invention includes but is not limited to the following steps:

[0056] S10, based on the medical consultation needs sent by the patient terminal, multiple target HISs are determined, the first source corresponding to each target HIS is predicted, a first tag is added to the first source, a medical consultation plan is constructed based on the target HIS and the first source, and the plan is sent to the patient terminal, wherein the first tag is used to indicate that the marked source is visible only to the target patient;

[0057] S20, when the first registration information of the first HIS is obtained, a second source of the number is predicted based on the second HIS and a second tag is added, wherein the second HIS is located after the first HIS in the medical plan, and the source of the number added with the second tag maintains the current visibility;

[0058] S30, when the second source does not include the first tag, swapping the tags of the second source and the first source in the second HIS, and when the target prescription information is obtained based on the first registration information, predicting a new second source based on the second HIS and adding the second tag;

[0059] S40: Determine the target number source in the second HIS based on the first tag and the second tag, and generate second registration information of the second HIS based on the target number source.

[0060] It should be noted that if the target patient only receives treatment in one hospital and only receives outpatient treatment in one department, there is no scenario in which the target patient misses the registration due to a long waiting time in one hospital. If the target patient receives outpatient treatment in multiple departments, the treatment time periods of different departments will inevitably be staggered when performing automatic registration. The target patient can go to another department for treatment while waiting for treatment in one department. Therefore, this embodiment is only for multi-hospital treatment scenarios. In the process of cross-hospital connection, dynamic adjustments are made due to the inconsistency between the time consumed in waiting, queuing for medicine, transportation, etc. and the predicted time. At the same time, when the demand for treatment is obtained, the solution of selecting corresponding departments in multiple hospitals for registration according to the treatment demand is an existing technology. This embodiment does not involve how to predict the corresponding number source, nor does it involve improvements in time planning such as how to predict the treatment time, commuting time, etc. based on multiple number sources of different hospitals. When this embodiment subsequently explains the technical solution, it defaults to being able to predict the number source that meets the time requirements of the target patient in the next hospital of the treatment plan at the current moment based on the existing technology.

[0061] It should be noted that after determining the medical needs, predicting multiple target HISs and corresponding first sources can be completed based on existing technologies. After obtaining the first source, unlike the existing technologies, this embodiment does not perform registration operations based on the first source, but adds a first tag to each first source. The server returns the first source with the first tag to the corresponding target HIS. The target HIS sets the corresponding first source to be occupied by the target patient according to the first tag, so that the first source is only visible to the target patient. Other patients cannot select the same source to perform the same operation because they cannot see it, thereby avoiding source conflicts.

[0062] It is worth noting that all the number sources such as the first source and the second source in this embodiment are determined based on the patient's medical needs. The number sources that can meet the patient's medical needs, for example, are determined from the number sources of the target department that the target patient needs to visit, and the determined number sources are not occupied by other patients. They will not be repeated later.

[0063] It should be noted that the first number source in this embodiment is the number source that is predicted to be suitable for multi-hospital treatment when constructing the treatment plan, and the second number source is the number source predicted for the next target HIS after the previous target HIS triggers registration. That is, this embodiment uses the first, second, etc. to represent the number sources obtained at different times, and is not used to distinguish different number sources. If a number source is determined as the first number source in the first prediction, it can also be determined as the second number source in the next prediction, and will not be repeated later.

[0064] It should be noted that after determining the first source of each target HIS, a medical plan can be constructed with the target HIS and the corresponding first source, and sent to the patient terminal after being arranged in chronological order, so that the target patient can view the medical plan and go for medical treatment according to the hospital and time indicated in the medical plan.

[0065] It should be noted that the first HIS in this embodiment is not necessarily the first target HIS in the medical plan. In this embodiment, the first HIS represents the target HIS corresponding to the hospital where the target patient is currently going to or receiving treatment. The second HIS is the next one to the first HIS in the medical plan. Therefore, the first HIS and the second HIS in this embodiment are any two adjacent target HISs in the medical plan. Therefore, when the registration information of each target HIS is determined, the second HIS located at the back is located based on the medical plan. The solution of this embodiment is executed to dynamically adjust the number source of the second HIS according to the medical situation of the hospital corresponding to the first HIS. When the medical plan prediction is accurate, the registration is automatically performed. When there is a deviation in the medical plan prediction, the number source is adjusted in time to improve the patient experience.

[0066] For example, Figure 1 As shown, assuming the number of target HISs 20 is 3, when the consultation plan is initially triggered, the first target HIS 20 is determined to be the first HIS, and the corresponding first source is source 1-1. The first source of the second HIS is source 2-1, and the first source of the third HIS is source 3-1. After the consultation based on source 1-1 is completed, the second HIS is determined to be the new first HIS, and the third HIS is determined to be the new second HIS, and the technical solution of this embodiment is executed in a loop.

[0067] It should be noted that after determining the first registration information of the first HIS, it can be determined that the target patient can receive treatment at the hospital corresponding to the first HIS based on the time period corresponding to the first registration information, and after completing the registration, the queue situation of the treatment department is known and determined, and the time to complete the treatment at the corresponding hospital can be predicted based on relevant technologies, so that the commuting time from the hospital corresponding to the first HIS to the hospital corresponding to the second HIS can be predicted. Therefore, as long as the first registration information is determined, the second source applicable to the target patient based on the current moment can be predicted in the second HIS. After predicting the second source, this embodiment adds a second tag to the second source. The second tag does not modify the visibility of the second source. If the second source is the same as the first source, the source remains visible only to the target patient. If the second source does not belong to the first source, the second source remains visible to all patients.

[0068] For example, Figure 1 As shown, the time period corresponding to the number source 1-1 of the first HIS is 8:30-9:00, the time period corresponding to the number source 2-1 of the second HIS is 9:30-10:00, and the time period corresponding to the number source 2-2 is 10:00-10:30. Assuming that the first registration information is obtained at 8:30, the predicted second number source is number source 2-1, and the second mark is added to number source 2-1; assuming that the first registration information is obtained at 8:50, the predicted second number source is number source 2-2, and the second mark is added to number source 2-2.

[0069] It is worth noting that if a signal source in the second HIS has both the first and second tags, then that signal source is determined to be the target signal source. This embodiment uses the second tag to perform a secondary prediction. If the target signal source has both the first and second tags, then it can be determined that the target signal source is predicted to be the second signal source for at least the second time. Two consecutive predictions of the same signal source serve as a basis for determining accurate predictions, thereby dynamically assessing the accuracy of signal source predictions.

[0070] For example, continue to refer to the above Figure 1 In the example, when the predicted second source is source 2-2, after source 2-2 adds the second tag, since it does not have the first tag, source 2-2 exchanges tags with source 2-1. After the exchange, source 2-1 carries the second tag and source 2-2 carries the first tag. Source 2-2 is occupied by the target patient and is not visible to other patients. Source 2-1 is released again and can be seen by other patients.

[0071] It is worth noting that within the scope of discussion of this embodiment, the situation where the optional number source carrying the second mark is used by other patients is not involved. If other patients use the optional number source, the second mark of the optional number source for the target patient will be deleted and it will no longer appear in the subsequent process of this embodiment.

[0072] It should be noted that the second source in this embodiment is the source predicted based on the second HIS when visiting the hospital corresponding to the first HIS. Therefore, the second source and the first source can be the same source, so that the same source has the first tag and the second tag. That is, after executing step S20 in this embodiment, there may be a source with both tags. Therefore, it is possible to jump directly from step S20 to step S40 to determine the target source without executing step S30. If the second source is an optional source other than the first source, the accuracy of the predicted first source when constructing the medical plan may be destroyed in situations such as patient travel delays. The second source is a source predicted based on the real-time diagnostic process and has higher reliability than the first source under the same algorithm. Therefore, the second source and the first source are exchanged. The second source with higher prediction accuracy is occupied by the target patient in the second HIS, and the first source is released to be visible to other patients.

[0073] It should be noted that in step S30, since the target number source cannot be determined by prediction after determining the first registration information, this embodiment further obtains the target prescription information as a trigger signal for the second prediction. After obtaining the target prescription information, the target patient has completed the consultation and can leave after taking the medicine according to the target prescription information. At this time, the time of each node can also be predicted, so the second number source can be predicted again and a second tag can be added. If the second number source predicted twice in a row is the same number source, it has the first tag in the first tag exchange and the second tag in this prediction, so it can be determined as the target number source. If the second number source predicted twice in a row is different, it can be determined as the target number source because the time point of the second number source predicted for the second time is closer, or it can be determined as the target number source based on the number source with the most tags.

[0074] For example, referring to Figure 1 As shown, when patient 2-1 is predicted as the second patient, a second tag is added to the first tag. Since it possesses both the first and second tags, it is determined to be the target patient, and second registration information is generated based on patient 2-1. If patient 2-2 is determined to be the second patient based on the first registration information, after completing the tag exchange, patient 2-1 obtains the second tag. The target patient spends less time in the diagnosis phase than expected. Therefore, after obtaining the target prescription information, patient 2-1, who was diagnosed earlier in the process, is predicted to be the second patient and obtains the second tag. Since it possesses two second tags, it is determined to be the target patient.

[0075] In addition, in one embodiment, referring to Figure 3 In step S10, after the consultation plan is constructed based on the target HIS and the first source and sent to the patient terminal, the following steps are also included but not limited to:

[0076] S11, when a first trigger signal sent by the patient terminal in response to the medical plan is obtained, the first target HIS is determined as the first HIS, and the target HIS next to the first HIS is determined as the second HIS;

[0077] S12, when a second trigger signal targeting the first source of the first HIS is obtained, generating first registration information based on the first source in the first HIS;

[0078] S13: When the consultation completion information of the first HIS is obtained, the second HIS is determined as the new first HIS, and a new second HIS is determined based on the consultation plan.

[0079] It should be noted that after the patient terminal obtains the treatment plan, since the treatment plan is usually completed within one day, it can be pushed to the patient terminal after the treatment date of the treatment plan arrives, and the relevant trigger button can be displayed on the patient terminal. The target patient can click the button on the patient terminal when leaving for the hospital corresponding to the first HIS to generate the first trigger signal. After the treatment plan is triggered, the first target HIS is determined as the first HIS, and the second HIS is determined by analogy. The third HIS located after the second HIS can also be further determined.

[0080] It should be noted that after the target patient triggers the first trigger signal on the patient terminal, the first source of the first HIS can be pushed to the patient terminal, and a confirmation button can be displayed. The target patient determines whether he can arrive for medical treatment within the corresponding time period. If he can, he can directly click the confirmation button to generate a second trigger signal, confirming the first source as the target source for medical treatment in the hospital corresponding to the first HIS this time, without waiting for the second mark. The first registration information is directly generated based on the first source, and step S20 of the above embodiment is triggered.

[0081] It should be noted that when the end-of-consultation information of the first HIS is obtained, that is, the consultation at the corresponding hospital is completed, the second registration information of the second HIS has been determined based on steps S20 to S40, thereby determining the second HIS as the new first HIS, and the third HIS as the new second HIS. The second registration information is used as the new first registration information, and the relevant operations of step S20 are re-triggered to realize the rotation of the target HIS, ensuring that the accuracy of the number source prediction of each target HIS can be verified.

[0082] In addition, in one embodiment, referring to Figure 3Each target HIS corresponds to a plurality of optional number sources, and the optional number sources are determined based on the medical needs. In step S11, after the target HIS located next to the first HIS is determined as the second HIS, the following steps are also included but not limited to:

[0083] S111, determining first location information and an optional number source of a first HIS, and determining a first target path based on the current location of the patient terminal and the first location information;

[0084] S112, when it is detected that the patient terminal is in a moving state, periodically determining the moving path of the patient terminal;

[0085] S113, whenever a moving path is determined and the moving path matches the first target path, a third source is predicted from the optional source numbers of the first HIS, and a second tag is added to the third source;

[0086] S114, when the third source does not include the first mark, swapping the marks of the first source and the third source, and continuing to determine a new third source based on the next determined moving path;

[0087] S115 , when any determined third source includes the first mark and the second mark, first registration information is generated based on the third source, and determining the moving path is stopped.

[0088] It should be noted that the optional number sources in this embodiment are available number sources determined based on medical treatment needs. For example, after determining the treatment department of the target patient, all available number sources of the treatment department are determined as optional number sources.

[0089] It should be noted that the first HIS corresponds to the hospital, so the first location information can be determined. For example, the location information of the hospital entrance is used as the first location information. The current location of the patient terminal can also be determined by simple positioning technology. When the location is known, those skilled in the art are familiar with how to determine the first target path from the current location of the patient terminal to the first location information, and will not be repeated here.

[0090] It should be noted that when the patient terminal is detected to be in a moving state, the server can periodically determine the patient's moving path. For example, when the moving time of the first target path is determined to be 30 minutes, the moving path is determined every 10 minutes. The specific period is not limited here.

[0091] It should be noted that this embodiment uses the periodically acquired moving path as the trigger time point. When the moving path matches the first target path, it can be determined that the target patient is heading to the hospital corresponding to the first HIS. If step S12 is not executed at this time, the first source still only has the first tag. At this time, the third source can be further predicted based on the optional number source of the first HIS. The third source is used to characterize the predicted number source when the patient terminal goes to the first HIS, and a second tag is added to the third source. Similar to step S30, if the third source is the same as the first source, the prediction accuracy of the first source is verified by the second tag, and the first registration information is generated based on the first source. At this time, there is no need to continue to determine the moving path. If the third source does not include the first tag, the principle of the second source mentioned above can be referred to, and the third source and the first source can be exchanged. The prediction is performed again in the next cycle until the third source determined once includes the first tag and the second tag.

[0092] In addition, in one embodiment, referring to Figure 3 When the first HIS includes multiple first registration information, step S30 specifically includes but is not limited to the following steps:

[0093] S31, whenever a target prescription information is obtained, a second number source is predicted from the optional number sources of the second HIS and a second tag is added;

[0094] S32: When the number of second marks of any second source reaches a preset threshold, add a first mark to the second source.

[0095] It should be noted that this embodiment does not limit the number of first sources for each target HIS. For example, when the hospital of the first HIS needs to visit multiple departments, multiple first sources can be determined for the first HIS when determining the treatment plan, thereby constructing multiple first registration information, which will not be repeated here.

[0096] It should be noted that if the second source predicted for the first time is the same as the first source, you can jump directly from step S20 to step S40. Therefore, this embodiment is the specific step of step S30 and does not involve the scenario where the second source predicted for the first time is the same as the first source, and will not be elaborated on later.

[0097] It should be noted that in step S30, the target prescription information is used to represent the end of a medical visit to trigger the number source prediction of the second HIS. When there are multiple first registration information, this embodiment executes the prediction of the second HIS every time a target prescription information is obtained. In the scenario of this embodiment, the second number source predicted for the first time is exchanged to the first tag, and the first number source is exchanged to the second tag. If the second number source predicted for the second time is the same as the second number source predicted for the first time, the second number source will jump from step S31 to step S40 because it has both the first tag and the second tag, and there is no need to execute step S32.

[0098] It should be noted that since the time of each visit may be different from the expected time, the second source number predicted each time may be different. This embodiment sets a preset threshold for the second mark. When the number of second marks added to a source number reaches the preset threshold, the source number is predicted successfully multiple times, and the prediction accuracy is guaranteed to a certain extent. The first mark is directly added to it to trigger the determination of the target source number.

[0099] For example, Figure 1 As shown, the target threshold is set to 2. After the number source 2-1 is first predicted and exchanged to obtain the second tag, the number source 2-1 is predicted in response to the target prescription information. Since the number of second tags is 2, the first tag is added and it is determined as the target number source.

[0100] In addition, in one embodiment, referring to Figure 3 Step S40 specifically includes but is not limited to the following steps:

[0101] S41, when the second HIS includes at least one fourth source, determining second location information preset by the second HIS, and determining a second target path based on the first location information and the second location information, wherein the fourth source is an optional source including a second tag and does not include a target source;

[0102] S42: Determine a first reference node, a second reference node, and a third reference node and send them to the patient terminal, wherein the first reference node is used to instruct the patient terminal to leave the area indicated by the first location information, the second reference node is used to instruct the patient terminal to reach the midpoint of the second target path, and the third reference node is used to instruct the patient terminal to reach the second location information;

[0103] S43, predicting the prediction time periods corresponding to the first reference node, the second reference node, and the third reference node;

[0104] S44, when the node time sent by the patient terminal at the first reference node and the second reference node is not within the corresponding predicted time period, predicting a fifth source from the plurality of fourth sources, and recording first trend information corresponding to the fifth source, wherein the first trend information is used to indicate whether the node time of the second reference node is ahead of or behind the predicted time period;

[0105] S45, when the node moment sent by the patient terminal at the third reference node is not in the corresponding predicted time period, and the second trend information of the fifth source is the same as the first trend information, the target source is replaced based on the fifth source in the second registration information, wherein the second trend information is used to characterize whether the node moment of the third reference node is ahead of or behind the predicted time period.

[0106] It should be noted that, according to the description of the above embodiment, the target number source is determined after obtaining the target prescription information, that is, the target patient has not actually started to go to the hospital corresponding to the second HIS. At this time, the time period corresponding to the target number source is still the predicted time period. In this embodiment, the optional number source carrying the second mark is determined as the fourth source in the second HIS, and the target number source is excluded, that is, the fourth source is the number source that was successfully predicted once, so it carries the second mark, and the fourth source is used as a substitute for the target number source.

[0107] It should be noted that, in order to verify the prediction accuracy of the target signal source, this embodiment determines the second location information and the second target path of the second HIS. For details, please refer to the first location information and the first target path, which will not be repeated here.

[0108] It should be noted that after determining the second target path, this embodiment selects at least three reference nodes as the predicted triggering moments, and predicts the predicted time period for reaching each reference node. When the patient terminal actually arrives at each reference node, the node moment is sent to the server for subsequent judgment. The first reference node is the node where the target patient leaves the hospital corresponding to the first HIS. The node moment can be determined by locating the area corresponding to the patient terminal leaving the first location information; the node moment of the second reference node is sent after the patient terminal reaches the midpoint of the second target path. The node moment of the third reference node is the moment of arrival at the second location information, which can be determined by simple path positioning technology.

[0109] It should be noted that in step S44, since the second registration information has been determined based on the target number source, the changes during the commuting process are large. If the prediction is triggered only at the first reference node, it is likely to cause the second registration information to be incorrectly modified. Therefore, in this embodiment, at least the node moments of the first reference node and the second reference node are not in the preset time period. The prediction of the fifth source is triggered by the mismatch of the two moments. After the fifth source is determined, there is no need to add the first mark or the second mark, but to record the first trend information. Since the second reference node has been reached, it is no longer important whether it is ahead of or behind the first reference node. In this embodiment, only the node moment of the second reference node is ahead of or behind the predicted time period as the first trend information. For example, if the predicted time period of the second reference node is 8:50-9:00, if the node moment is 8:45, the first trend information is early arrival, and if the node moment is 9:20, the first trend information is late arrival.

[0110] It should be noted that if the third reference node's node time is within the predicted time period, the fifth source is not considered, and the current second registration information can be maintained. If the third reference node's node time is not within the predicted time period, the second trend information is determined based on the fifth source. If the second trend information is the same as the first trend information, for example, both arriving early or arriving late, the fifth source is determined to be more accurate than the target source. The fifth source is then applied to the second registration information, and the target source is released.

[0111] In addition, in one embodiment, referring to Figure 3 In step S20, after obtaining the first registration information of the first HIS, the following steps are also included but not limited to:

[0112] S21, when the second source cannot be predicted from the second HIS, determining the target demand corresponding to the first source of the second HIS from the medical needs;

[0113] S22, determining a replacement HIS and a corresponding replacement number source from the remaining target HIS based on the target demand, and adding a second tag to the replacement number source, wherein the time period of the replacement number source and the first number source of the replacement HIS are staggered;

[0114] S23, when the target prescription information is obtained and the second number source cannot be determined based on the second HIS, and a substitute number source is determined again from the substitute HIS based on the target demand, the second tag based on the substitute number source is changed to the first tag, and the second HIS is deleted from the medical plan;

[0115] S24, re-determine a new second HIS based on the consultation plan.

[0116] It should be noted that when the second number source cannot be predicted from the second HIS, it is possible that the number source of the second HIS is tight, and the previous first number source cannot meet the time requirement (for example, the delay in the first HIS is too much, resulting in missed appointments). At this time, an abnormal prompt message can be pushed to the patient terminal, and the target patient can choose to continue using the first number source as the target number source. For example, some hospitals allow patients to continue queuing after missed appointments. This embodiment only discusses the situation where the first number source is not used, and attempts are made to obtain a substitute number source with a better consultation time from other substitute HISs.

[0117] It should be noted that the medical treatment needs are all needs of the target patients. The artificial intelligence model of the relevant technology must have extracted part of the text from the medical treatment needs to predict the second HIS and the first source. This embodiment determines the text of this part of the medical treatment needs as the target needs, and runs the artificial intelligence model again based on the target needs to predict the substitute HIS and substitute number source from the target HIS other than the second HIS. Since the substitute HIS also includes the first source, it is necessary to stagger the time period with the first source when determining the substitute number source. The substitute number source is equivalent to the predicted second source, so a second tag is added to it. Since it comes from another target HIS, it is impossible to have both the first tag and the second tag in the first prediction.

[0118] It should be noted that when the target prescription information is obtained, continue to try to predict the second number source from the second HIS. If the second number source still cannot be predicted, then predict again from the substitute HIS. If the same substitute number source is predicted, the substitute number source is the one that better meets the needs of the target patient. This embodiment does not directly generate the second registration information based on the substitute number source. This is because the substitute HIS may not be the next moving target in the medical plan. Therefore, this embodiment only adds a first mark to the substitute number source for occupation, and continues to obtain the second HIS located in the next position in the medical plan. Regardless of whether it is a substitute HIS, the target number source can be obtained by prediction according to the steps of the above embodiment to complete the registration. Improve the medical efficiency without modifying the arrival order of the medical plan.

[0119] In addition, in one embodiment, referring to Figure 3 In step S30, after exchanging the labels of the second source and the first source in the second HIS, the following steps are also included but not limited to:

[0120] S33, determining the target HIS located one position after the second HIS in the medical plan as the third HIS, and predicting the sixth source in the third HIS;

[0121] S34: When the sixth source does not carry the first tag, add a second tag to the sixth source.

[0122] It should be noted that this embodiment further determines the next target HIS of the second HIS as the third HIS. The above embodiment can verify the number source of the second HIS. When the number source of the second HIS changes, the consultation time period will change, which will also cause a chain change in the consultation time of the third HIS. Based on this, this embodiment further predicts the sixth number source based on the third HIS. If the sixth number source does not carry the first tag, it is not the same number source as the first number source. However, the target number source of the second HIS is still undetermined. This embodiment simply adds the second tag to the sixth number source, indicating that the sixth number source has been hit in the first prediction. When the second HIS is determined to be the new first HIS, the third HIS will be determined to be the new second HIS. The target number source can be re-determined according to the steps of this embodiment.

[0123] like Figure 4 As shown, Figure 4 This is a structural diagram of a multi-hospital dynamic registration device provided by an embodiment of the present invention. The present invention also provides a multi-hospital dynamic registration device, including:

[0124] The processor 401 may be implemented as a general-purpose central processing unit (CPU), a microprocessor, an application-specific integrated circuit (ASIC), or one or more integrated circuits, and is configured to execute relevant programs to implement the technical solutions provided in the embodiments of the present application.

[0125] The memory 402 can be implemented in the form of a read-only memory (ROM), a static storage device, a dynamic storage device, or a random access memory (RAM). The memory 402 can store an operating system and other application programs. When the technical solutions provided in the embodiments of this specification are implemented through software or firmware, the relevant program code is stored in the memory 402 and is called by the processor 401 to execute the multi-hospital dynamic registration method of the embodiments of this application.

[0126] Input / output interface 403, used to implement information input and output;

[0127] Communication interface 404, used to implement communication interaction between this device and other devices, which can be achieved through wired means (such as USB, network cable, etc.) or wireless means (such as mobile network, WiFi, Bluetooth, etc.);

[0128] Bus 405 , which transmits information between various components of the device (e.g., processor 401 , memory 402 , input / output interface 403 , and communication interface 404 );

[0129] The processor 401 , the memory 402 , the input / output interface 403 and the communication interface 404 are connected to each other in communication within the device via a bus 405 .

[0130] An embodiment of the present application also provides an electronic device, including the multi-hospital-based dynamic registration device as described above.

[0131] An embodiment of the present application also provides a storage medium, which is a computer-readable storage medium. The storage medium stores a computer program, and when the computer program is executed by a processor, it implements the above-mentioned dynamic registration method based on multiple hospitals.

[0132] The memory, as a non-transient computer-readable storage medium, can be used to store non-transient software programs and non-transient computer executable programs. In addition, the memory may include a high-speed random access memory, and may also include a non-transient memory, such as at least one disk storage device, a flash memory device, or other non-transient solid-state storage device. In some embodiments, the memory optionally includes a memory remotely located relative to the processor, and these remote memories can be connected to the processor via a network. Examples of the above-mentioned networks include but are not limited to the Internet, an intranet, a local area network, a mobile communication network and a combination thereof. The device embodiments described above are merely schematic, wherein the units described as separate components may or may not be physically separated, and are located in one place, or may be distributed to multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the present embodiment.

[0133] Those skilled in the art will appreciate that all or some of the steps and systems disclosed above can be implemented as software, firmware, hardware, or any suitable combination thereof. Some or all of the physical components may be implemented as software executed by a processor, such as a central processing unit, digital signal processor, or microprocessor, or as hardware, or as an integrated circuit, such as an application-specific integrated circuit. Such software may be distributed on computer-readable media, which may include computer storage media (or non-transitory media) and communication media (or transient media). As is well known to those skilled in the art, the term computer storage media includes volatile and non-volatile, removable and non-removable media implemented in any method or technology for storing information, such as computer-readable instructions, data structures, program modules, or other data. Computer storage media includes, but is not limited to, RAM, ROM, EEPROM, flash memory or other memory technologies, CD-ROM, digital versatile disks (DVDs) or other optical disk storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices, or any other medium that can be used to store the desired information and can be accessed by a computer. Furthermore, as is well known to those skilled in the art, communication media typically includes computer-readable instructions, data structures, program modules, or other data in a modulated data signal such as a carrier wave or other transport mechanism, and may include any information delivery media.

[0134] The above is a specific description of the preferred implementation of the present invention, but the present invention is not limited to the above implementation. Those skilled in the art can also make various equivalent modifications or substitutions under the shared conditions that do not violate the spirit of the present invention. These equivalent modifications or substitutions are all included in the scope defined by the claims of the present invention.

Claims

1. A dynamic registration method based on multiple hospitals, characterized in that: Applied to a server, the server being communicatively connected to a patient terminal of a target patient and a plurality of optional HISs, the method comprising: Determining multiple target HISs based on the medical treatment needs sent by the patient terminal, predicting the first source corresponding to each of the target HISs, adding a first tag to the first source, and constructing a medical treatment plan based on the target HISs and the first source and sending it to the patient terminal, wherein the first tag is used to indicate that the marked source is only visible to the target patient; When obtaining the first registration information of the first HIS, predicting the second source of the number based on the second HIS and adding a second tag, wherein the second HIS is located after the first HIS in the medical plan, and the source of the number added with the second tag maintains the current visibility; When the second source does not include the first tag, the tags of the second source and the first source are swapped in the second HIS. When the target prescription information is obtained based on the first registration information and neither the first source nor the second source has both the first tag and the second tag, a new second source is predicted based on the second HIS and the second tag is added. In the second HIS, a target number source is determined based on the first tag and the second tag, and second registration information of the second HIS is generated based on the target number source, wherein the target number source includes one first tag and one second tag, or the target number source includes two second tags.

2. The dynamic registration method based on multiple hospitals according to claim 1 is characterized in that: After constructing a consultation plan based on the target HIS and the first source and sending the plan to the patient terminal, the method further includes: When a first trigger signal sent by the patient terminal in response to the medical plan is obtained, the target HIS ranked first is determined as the first HIS, and the target HIS located next to the first HIS is determined as the second HIS; When a second trigger signal from the first source targeting the first HIS is obtained, generating the first registration information based on the first source in the first HIS; When the medical consultation end information of the first HIS is obtained, the second HIS is determined as the new first HIS, and a new second HIS is determined based on the medical consultation plan.

3. The dynamic registration method based on multiple hospitals according to claim 2 is characterized in that: Each of the target HISs corresponds to a plurality of selectable number sources, and the selectable number sources are determined based on the medical needs. After determining the target HIS located next to the first HIS as the second HIS, the method further includes: Determining first location information of the first HIS and the selectable number source, and determining a first target path based on the current location of the patient terminal and the first location information; When detecting that the patient terminal is in a moving state, periodically determining a moving path of the patient terminal; Whenever the moving path is determined and matches the first target path, a third source is predicted from the optional source numbers of the first HIS, and the second tag is added to the third source; When the third source does not include the first mark, exchanging the marks of the first source and the third source, and continuing to determine a new third source based on the moving path determined next time; When the third source determined at any time includes the first mark and the second mark, the first registration information is generated based on the third source, and the determination of the moving path is stopped.

4. The dynamic registration method based on multiple hospitals according to claim 3 is characterized in that: When the first HIS includes a plurality of first registration information, when target prescription information is obtained based on the first registration information, a new second source is predicted based on the second HIS and the second tag is added, including: Whenever the target prescription information is obtained, a second number source is predicted from the optional number sources of the second HIS and the second tag is added; When the number of the second marks of any second source reaches a preset threshold, the first mark is added to the second source.

5. The dynamic registration method based on multiple hospitals according to claim 3 is characterized in that: After generating the second registration information of the second HIS based on the target number source, the method further includes: When the second HIS includes at least one fourth source, determining second location information preset in the second HIS, and determining a second target path based on the first location information and the second location information, wherein the fourth source is the optional source including the second tag, and the fourth source does not include the target source; Determine a first reference node, a second reference node, and a third reference node and send them to the patient terminal, wherein the first reference node is used to indicate that the patient terminal leaves the area indicated by the first location information, the second reference node is used to indicate that the patient terminal reaches the midpoint of the second target path, and the third reference node is used to indicate that the patient terminal reaches the second location information; Predicting a prediction time period corresponding to each of the first reference node, the second reference node, and the third reference node; When the node time sent by the first reference node and the second reference node by the patient terminal is not in the corresponding predicted time period, predicting a fifth source from the plurality of fourth sources, and recording first trend information corresponding to the fifth source, wherein the first trend information is used to indicate whether the node time of the second reference node is ahead of or behind the predicted time period; Alternatively, when the node moment sent by the patient terminal at the third reference node is not in the corresponding predicted time period, and the second trend information of the fifth source is the same as the first trend information, the target source is replaced based on the fifth source in the second registration information, wherein the second trend information is used to characterize whether the node moment of the third reference node is ahead of or behind the predicted time period.

6. The multi-hospital dynamic registration method according to claim 1, characterized in that: After obtaining the first registration information of the first HIS, the method further includes: When the second source cannot be predicted from the second HIS, determining the target demand corresponding to the first source of the second HIS from the medical needs; Determine a replacement HIS and a corresponding replacement number source from the remaining target HIS based on the target demand, and add the second tag to the replacement number source, wherein the time period of the replacement number source and the first number source of the replacement HIS are staggered; When the target prescription information is obtained and the second number source still cannot be determined based on the second HIS, and the substitute number source is determined again from the substitute HIS based on the target demand, the second tag of the substitute number source is changed to the first tag, and the second HIS is deleted from the medical plan; A new second HIS is newly determined based on the medical consultation plan.

7. The multi-hospital dynamic registration method according to claim 1, characterized in that: After exchanging the labels of the second source and the first source in the second HIS, the method further includes: Determine the target HIS located one position after the second HIS in the medical consultation plan as the third HIS, and predict the sixth source in the third HIS; When the sixth source does not carry the first tag, the second tag is added to the sixth source.

8. A dynamic registration device based on multiple hospitals, characterized in that: It includes at least one control processor and a memory for communicating with the at least one control processor; the memory stores instructions that can be executed by the at least one control processor, and the instructions are executed by the at least one control processor to enable the at least one control processor to execute the multi-hospital based dynamic registration method as described in any one of claims 1 to 7.

9. An electronic device, characterized in that: Including the dynamic registration device based on multiple hospitals as described in claim 8.

10. A computer-readable storage medium, characterized in that The computer-readable storage medium stores computer-executable instructions, and the computer-executable instructions are used to enable a computer to execute the multi-hospital dynamic registration method according to any one of claims 1 to 7.

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