Hospital general surgery department scientific research data platform query system

Through the interactive coordination module, the response record data of each trusted hospital is analyzed, and the transmission path of general surgery research data is optimized, and the resource waste and transmission instability caused by data dispersed storage is solved, thereby achieving efficient and stable data transmission.

CN120386932AInactive Publication Date: 2025-07-29ANHUI PROVINCIAL CHILDRENS HOSPITAL (ANHUI XINHUA HOSPITAL ANHUI INST OF PEDIATRIC MEDICINE FUDAN UNIV CHILDRENS HOSPITAL ANHUI HOSPITAL)
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Patent Information

Application Number
CN202510521857.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2025-07-29
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

General surgery research data is stored scattered in multiple hospitals, resulting in waste of duplicate data transmission and storage resources. The existing cloud processing method extends the data transmission path and time.

Method used

By setting up an interactive coordination module, analyzing the response record data of each trusted hospital, selecting a static data transmission path, and giving priority to hospitals with high stability for static data transmission. Dynamic data is transmitted from other hospitals to requesting hospitals, reducing duplicate data transmission and storage resource usage.

Benefits of technology

It shortens the scientific research data transmission path, reduces network load and resource waste, and improves the stability and efficiency of data transmission.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a hospital general surgery department scientific research data platform query system, which relates to the technical field of data query, and is characterized in that response record data of query information received by all trusted hospitals in a target area in the past at all times is analyzed by setting an interaction overall planning module; for any trusted hospital, the comment estimation amount of each trusted hospital is calculated based on the dynamic data amount in all query information received by the trusted hospital in the past and the amount of the query information capable of being matched with the corresponding data; and the interaction overall planning module selects a trusted hospital as a static interaction object of the query information to perform static data transmission according to the dynamic data volume in a plurality of scientific research data matched with the current query information, so that the occurrence of unstable scientific research data transmission caused by unstable data transmission is reduced; meanwhile, the situation that the trusted hospital initiating the query request receives excessive repeated scientific research data is avoided, and excessive occupation of storage resources is reduced.
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Description

Technical Field

[0001] The present invention relates to the technical field of data query, and in particular to a hospital general surgery scientific research data platform query system. Background Art

[0002] With the advancement of medical informatization, the scientific research data generated during the diagnosis and treatment of general surgical diseases has become multimodal and high-dimensional, covering the entire clinical cycle, including preoperative evaluation, surgical records, postoperative rehabilitation, and long-term follow-up. Due to geographical convenience and specialty advantages, general surgery patients often need to visit multiple hospitals at different stages of their treatment. This results in the scientific research data of the same patient being stored in multiple hospitals, resulting in a wide range of data sources and fragmentation. Currently, when doctors conducting general surgery research projects need to query the research data of several patients, the traditional method is for them to request data one by one from multiple hospitals involved in the patient's treatment. Each hospital then transmits the relevant research data to the doctors. This results in the repeated transmission of a large amount of information, including static data such as patient names. This not only wastes network transmission resources at each hospital, but also increases the network load due to frequent data transmission. For the doctors receiving the data, storing a large amount of duplicate data also occupies storage resources. At present, one way to solve the above-mentioned resource waste problem is to use a cloud management model. In this model, multiple hospitals transmit general surgery research data to the cloud, which organizes and summarizes it, and then transmits it to the corresponding hospital in need. Although this method reduces the transmission resource consumption on the hospital side and the storage resource waste on the demand side to a certain extent, because the data must first be centralized in the cloud and then forwarded after cloud processing, the data transmission path becomes longer, resulting in a significant increase in the time from the query request to the data finally reaching the demand side. In order to solve the above problems, the present invention proposes a solution. Summary of the Invention

[0003] The purpose of the present invention is to provide a hospital general surgery scientific research data platform query system to solve the problems raised in the above background technology.

[0004] The present invention provides a hospital general surgery scientific research data platform query system, comprising: A scientific research data coordination platform is used to manage the scientific research data of general surgery patients in several trusted hospitals in the target area. The scientific research data coordination platform includes several query hospital terminals, each of which corresponds to one trusted hospital. All data contained in the scientific research data is divided into static data and dynamic data; The query hospital end includes a query interaction unit and a query analysis unit. The query interaction unit stores the scientific research data of all general surgery patients in the corresponding trusted hospital; A query interaction unit, configured to, after obtaining query information typed by an authorized object serving in a corresponding trusted hospital, transmit it as the query information of the trusted hospital to the scientific research data co-ordination platform; The scientific research data co-ordination platform is further configured to, after receiving the query information, transmit the query information and the trusted hospital where the authorized object who typed the query information serves to the query interaction units of the query hospital ends corresponding to all other trusted hospitals except the trusted hospital; The query interaction unit is further configured to, after receiving the query information and the trusted hospital where the authorized object who typed the query information serves, query whether there is scientific research data of general surgery patients that matches the query information therein, and select and generate dynamic feedback data, static feedback data, and co-ordination submission data of the query information according to the query result; Transmit the dynamic feedback data to the query hospital end corresponding to the trusted hospital where the authorized object who typed the query information serves; An interaction co-ordination module, configured to, after receiving the co-ordination submission data of the transmitted query information, select a trusted hospital from a number of trusted hospitals as the static interaction object of the query information according to a preset selection rule and generate a static transmission instruction of the query information; The query interaction unit is also configured to, after receiving the static transmission instruction of the query information, transmit the static feedback data of the query information to the query hospital end corresponding to the trusted hospital where the authorized object who typed the query information serves.

[0005] Further, if there is scientific research data of general surgery patients that matches the query information in the query, first extract the scientific research data of general surgery patients that matches it, use the dynamic information data contained therein as the dynamic feedback data of the query information, temporarily store the static information data in the scientific research data as the static feedback data of the query information, and generate the co-ordination submission data of the query information. The co-ordination submission data includes the data volume sizes of the static information data and the dynamic information data, and the trusted hospital corresponding to the query hospital end.

[0006] Further, it further includes an interaction co-ordination module, configured to store the response record data of all query information received by all trusted hospitals in the target area in the past, and the response record data includes the query initiator, several feedback objects, and their feedback record information.

[0007] Further, the query initiating object refers to the trusted hospital where the authorized object who entered the query information works, the feedback object is the trusted hospital that can obtain the scientific research data of general surgery patients matching the query information according to the query information, and the feedback record information includes the static data volume, dynamic data volume, and packet loss rate; the static data volume and dynamic data volume respectively refer to the data volume sizes of static data and dynamic data in the scientific research data of general surgery patients matching the query information stored in the corresponding feedback object.

[0008] Further, if the query interaction unit does not receive the static transmission instruction of the query information transmitted after transmitting the overall submission data of the query information after P2 time, it deletes the static feedback data of the query information temporarily stored therein, where P2 is a preset response feedback duration.

[0009] Compared with the prior art, the beneficial effects of the present invention are: The present invention analyzes the response record data of all query information received by all trusted hospitals in the target area in the past by setting an interaction overall planning module. For a query information, the packet loss rate of transmitting the corresponding scientific research data by analyzing several trusted hospitals that can match the corresponding scientific research data, as well as the static data volume and dynamic data volume in the matched scientific research data, are used to determine the single-point evaluation amount of each trusted hospital. Then, for any one trusted hospital, based on the dynamic data volume in all query information received in the past and the number of query information that can match the corresponding data, combined with its single-point evaluation amount, the point-to-point evaluation amount of each trusted hospital is calculated. And the interaction overall planning module selects a trusted hospital as the static interaction object of the query information for static data transmission according to the amount of dynamic data in the scientific research data stored in several trusted hospitals matching the current query information. By this way, a trusted hospital with a low packet loss rate and high transmission stability in static data transmission is preferentially selected for static data interaction. On the one hand, it reduces the occurrence of unstable scientific research data transmission caused by unstable data transmission. On the other hand, it avoids unnecessary transmission of too many consistent static data, and at the same time greatly reduces the occurrence of the trusted hospital that initiates the query request receiving too many duplicate scientific research data, reducing the excessive occupation of storage resources; The present invention selects one of the multiple trusted hospitals storing the scientific research data of patients for static data transmission, and other hospitals only transmit dynamic data to the corresponding requesting trusted hospital. On the one hand, it shortens the transmission path of the scientific research data. On the other hand, the static data will be selected from the trusted hospitals with stronger transmission stability and less dynamic data. The other hospitals do not need to transmit static data, effectively reducing the loss of network transmission resources of other trusted hospitals and reducing the network load. Description of the Drawings

[0010] Figure 1This is the system block diagram of the present invention. Detailed implementation manners

[0011] Next, the technical solutions in the embodiments of the present invention will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0012] Please refer to Figure 1 , this application provides a query system for the scientific research data platform of general surgery in hospitals, including an interactive coordination module and a scientific research data coordination platform; The scientific research data coordination platform is used to manage the interaction process of the scientific research data of all patients in the general surgery department of trusted hospitals within the target area. The scientific research data coordination platform includes several query hospital terminals; One of the query hospital terminals corresponds to one trusted hospital within the target area. In this application, a trusted hospital refers to a hospital that has passed the identity authentication of the scientific research data coordination platform and is allowed to share scientific research data; The query hospital terminal is used to provide scientific research data query services for several authorized objects working in the corresponding hospital. The authorized objects include, but are not limited to, general surgeons, clinical physicians, and medical postgraduate students. In this application, the authorized object is a general surgeon; The scientific research data of general surgery patients refers to various information data generated during the whole process from admission to discharge and even follow-up of general surgery patients. In this application, according to the standard of storage consistency in different trusted hospitals, all the information data included in the scientific research data of any general surgery patient is divided into static data and dynamic data. That is, for all trusted hospitals storing the scientific research data of the general surgery patient, several types of information data that are consistent in the stored patient scientific research data are marked as static data, and several types of information data that are inconsistent in the stored patient scientific research data are marked as dynamic data; The query hospital terminal includes a query interaction unit and a query analysis unit. The query interaction unit stores the scientific research data of all general surgery patients in the corresponding trusted hospital; After the query interaction unit obtains the query information entered by the authorized object working in the corresponding trusted hospital, it transmits the query information as the query information of the trusted hospital to the scientific research data coordination platform. The query information includes several query keywords for querying the scientific research data of the corresponding general surgery patient; After receiving the query information of the trusted hospital transmitted, the scientific research data co-ordination platform transmits the query information and the trusted hospital where the authorized object who entered the query information works to the query hospital terminals corresponding to all the other trusted hospitals except the trusted hospital; After receiving the transmitted query information and the trusted hospital where the authorized object who entered the query information works, the query hospital terminal transmits them to the query interaction unit. The query interaction unit retrieves from all the scientific research data of general surgery patients stored therein whether there is scientific research data of general surgery patients that matches the query information. If there is, it first extracts the scientific research data of general surgery patients that matches, and takes the dynamic data contained therein as the dynamic feedback data of the query information and transmits it to the query hospital terminal corresponding to the trusted hospital where the authorized object who entered the query information works; Temporarily store the static data in the scientific research data as the static feedback data of the query information, and then generate the co-ordinated submission data of the query information according to the data capacity sizes of the static data and dynamic data in the scientific research data and the trusted hospital corresponding to the query hospital terminal, and transmit the co-ordinated submission data of the query information to the interaction co-ordination module; After receiving the co-ordinated submission data of the query information transmitted from several query hospital terminals, the interaction co-ordination module selects a trusted hospital as the static interaction object of the query information from several trusted hospitals according to a preset selection rule. The steps are as follows: S21: Mark the co-ordinated submission data of the query information transmitted from several query hospital terminals received in sequence as H1, H2,..., Hh, h≥1; S22: Sequentially obtain the point-to-point analysis data of the trusted hospitals contained in the co-ordinated submission data H1, H2,..., Hh, and mark them correspondingly as I1, I2,..., Ih, h≥1; S23: Extract from the point-to-point analysis data I1 the point-to-point evaluation quantity J1 of the trusted hospital where the authorized object who entered the query information works; Use the formula Calculate and obtain the co-ordinated static interaction index L1 of the credit hospital corresponding to the query hospital terminal that transmits the co-ordinated submission data H1 of the query information. In the formula, λ1 and λ2 are respectively the preset first and second co-ordination adjustment factors, and K1 and K2 are respectively the data capacity sizes of the dynamic information data and static information data in the co-ordinated submission data H1; S24: Calculate and obtain the overall static interaction indicators L1, L2, ..., Lh of the credit hospitals corresponding to the query hospitals for transmitting the overall submission data H1 of the query information in sequence according to S22 to S23, select the trusted hospital corresponding to the overall static interaction indicator with the smallest value as the static interaction object of the query information, and generate a static transmission instruction for the query information. Transmit the static transmission instruction to the query hospital end corresponding to the static interaction object; After receiving the static transmission instruction of the query information, the query hospital end transmits the static feedback data of the query information temporarily stored therein to the query interaction unit of the query hospital end corresponding to the trusted hospital where the authorized object who entered the query information works; After receiving the static feedback data and dynamic feedback data of the query information transmitted, the query interaction unit of the query hospital end restores them into scientific research data and displays them to the authorized object for browsing; In this application, if the query interaction unit of the query hospital end does not receive the static transmission instruction of the query information after a time P2 from transmitting the overall submission data of the query information, the static feedback data of the query information temporarily stored therein will be deleted. P2 is a preset response feedback duration; The interaction overall planning module stores the response record data of all query information received by all trusted hospitals in the target area in the past. The response record data includes the query initiating object, several feedback objects and their feedback record information. Among them, the query initiating object refers to the trusted hospital where the authorized object who entered the query information works, the feedback object is the trusted hospital that can obtain the scientific research data of general surgery patients matching the query information, and the feedback record information includes the static data volume, dynamic data volume and packet loss rate; the static data volume and dynamic data volume respectively refer to the data volume sizes of the static data and dynamic data in the scientific research data of general surgery patients matching the query information stored in the corresponding feedback object, and the packet loss rate is the network packet loss rate for transmitting the scientific research data of general surgery patients matching the query information stored in the corresponding feedback object; The interaction overall planning module analyzes the response record data of all query information received by all trusted hospitals in the target area stored therein. The analysis steps are as follows: S11: Mark all trusted hospitals in the target hospital as Z1, Z2, ..., Zz, z≥1; S12: Traverse all the response record data with the query initiating object being the trusted hospital Z1 stored in the interaction overall planning module, extract all the included feedback objects and remove duplicates from them, and sequentially mark the remaining feedback objects after deduplication as A1, A2, ..., Aa, 1≤a≤z - 1; S13: Extract all response record data containing the feedback object A1 from all the response record data stored in the interaction coordination module with the query initiating object being the trusted hospital Z1, and mark them as B1, B2, …, Bb respectively, where b ≥ 1; Use the formula to calculate and obtain the single-point evaluation quantity E1 of the feedback object A1 under the trusted hospital Z1. Here, Cc refers to the sum of the data capacities of each static data and dynamic data in the response record data B1, B2, …, Bb, Dc refers to the packet loss rate included in the response record data B1, B2, …, Bb, A is the total number of response record data with the query initiating object being the trusted hospital Z1 stored in the interaction coordination module, and ɑ1, ɑ2 are the preset first and second single-point dimension evaluation factors respectively, used to adjust the data in different calculation dimensions to the same calculation dimension for evaluation calculation; S14: Calculate and obtain the single-point evaluation quantities E2, E3, …, Ea of the feedback objects A2, A3, …, Aa under the trusted hospital Z1 in sequence according to S13; Generate the single-point analysis data of the trusted hospital Z1 based on the feedback objects A1, A2, …, Aa and their single-point evaluation quantities E1, E2, …, Ea under the trusted hospital Z1; S15: Generate the single-point analysis data of the trusted hospitals Z2, Z3, …, Zz in sequence according to the order of the trusted hospitals Z2, Z3, …, Zz; S16: Traverse the trusted hospitals Z2, Z3, …, Zz, and extract the single-point evaluation quantities of the feedback object A1 contained therein, and mark them as F1, F2, …, Ff respectively, where 1 ≤ f ≤ z - 1; Use the formula to calculate and obtain the paired-point evaluation quantity G1 of the feedback object A1 under the trusted hospital Z1. In the formula, F is the average value of all the remaining single-point evaluation quantities after processing the single-point evaluation quantities F1, F2, …, Ff using the discrete point filtering algorithm, Fmax and Fmin are the maximum and minimum values among the single-point evaluation quantities F1, F2, …, Ff respectively, and β1, β2 are the preset first and second paired-point dimension evaluation factors respectively, used to adjust the data in different calculation dimensions to the same calculation dimension for evaluation calculation; S17: Calculate and obtain the paired-point evaluation quantities of the feedback objects A2, A3, …, Aa under the trusted hospital Z1 in sequence according to S16; Generate the paired-point analysis data of the trusted hospital Z1 based on the feedback objects A1, A2, …, Aa and their paired-point evaluation quantities under the trusted hospital Z1; S18: Generate the paired-point analysis data of the trusted hospitals Z2, Z3, …, Zz in sequence according to S16 to S17; The interactive coordination module updates and stores the point-to-point analysis data of the trusted hospitals Z1, Z2, ..., Zz.

[0013] Some of the data in the above formula are numerically calculated after removing their dimensions, and the content not described in detail in this specification belongs to the prior art well-known to those skilled in the art.

[0014] The above embodiments are only used to illustrate the technical method of the present invention and not to limit it. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical method of the present invention can be modified or equivalently replaced without departing from the spirit and scope of the technical method of the present invention.

Claims

1. A query system for the scientific research data platform of general surgery in a hospital, characterized in that, Including: A scientific research data co-ordination platform for managing the scientific research data of general surgery patients in a number of trusted hospitals within a target area. The scientific research data co-ordination platform includes a number of query hospital terminals, with one query hospital terminal corresponding to one trusted hospital. All the data included in the scientific research data is divided into static data and dynamic data; The query hospital terminal includes a query interaction unit and a query analysis unit. The query interaction unit stores the scientific research data of all general surgery patients in the corresponding trusted hospital; The query interaction unit is used to transmit the query information entered by an authorized object serving in the corresponding trusted hospital to the scientific research data co-ordination platform as the query information of the trusted hospital after obtaining it; The scientific research data co-ordination platform is also used to transmit the query information and the trusted hospital where the authorized object who entered the query information serves to the query interaction units of the query hospital terminals corresponding to all the other trusted hospitals except the trusted hospital after receiving the query information; The query interaction unit is also used to query whether there is scientific research data of general surgery patients that matches the query information in it according to the query information after receiving the query information and the trusted hospital where the authorized object who entered the query information serves, and select and generate dynamic feedback data, static feedback data and co-ordination submission data of the query information according to the query results; Transmit the dynamic feedback data to the query hospital terminal corresponding to the trusted hospital where the authorized object who entered the query information serves; The interaction co-ordination module is used to select a trusted hospital from a number of trusted hospitals as the static interaction object of the query information and generate a static transmission instruction of the query information according to a preset selection rule after receiving the co-ordination submission data of the transmitted query information; The query interaction unit is also used to transmit the static feedback data of the query information to the query hospital terminal corresponding to the trusted hospital where the authorized object who entered the query information serves after receiving the static transmission instruction of the query information.

2. The query system for the general surgery scientific research data platform of a hospital according to claim 1, wherein, If there is scientific research data of general surgery patients that matches the query information in the query, first extract the scientific research data of general surgery patients that matches it, use the dynamic information data included in it as the dynamic feedback data of the query information, temporarily store the static information data in the scientific research data as the static feedback data of the query information, and generate the co-ordination submission data of the query information. The co-ordination submission data includes the data capacity sizes of the static information data and the dynamic information data and the trusted hospital corresponding to the query hospital terminal.

3. A query system for a general surgery scientific research data platform in a hospital according to claim 1, characterized in that It also includes an interaction co-ordination module for storing the response record data of all query information received by all trusted hospitals in the target area in the past. The response record data includes the query initiator, a number of feedback objects and their feedback record information.

4. The query system for the scientific research data platform of general surgery department in a hospital according to claim 3, characterized in that, The query initiating object refers to the trusted hospital where the authorized object who types the query information works. The feedback object is the trusted hospital that can obtain the scientific research data of general surgery patients matching the query information according to the query information. The feedback record information includes the static data volume, the dynamic data volume, and the packet loss rate. The static data volume and the dynamic data volume respectively refer to the data capacity sizes of the static data and the dynamic data in the scientific research data of general surgery patients matching the query information stored in the corresponding feedback object.

5. A query system for a general surgery scientific research data platform in a hospital according to claim 3, characterized in that, The interaction coordination module is also used to analyze the response record data of all query information received by all trusted hospitals in the target area in the past, as follows: S11: Mark all trusted hospitals in the target hospital as Z1, Z2,..., Zz respectively, where z≥1; S12: Extract all the feedback objects included in all the response record data with the query initiating object being the trusted hospital Z1 stored in the interaction coordination module and remove duplicates from them. Mark the remaining feedback objects after deduplication as A1, A2,..., Aa in sequence, where 1≤a≤z - 1; S13: Extract all response record data B1, B2, ..., Bb, where b≥1, that contain the feedback object A1 from all the response record data; use the formula to calculate and obtain the single-point evaluation quantity E1 of the feedback object A1 under the trusted hospital Z1. Here, Cc refers to the sum of the data capacity sizes of each static information data and dynamic information data in the response record data B1, B2, ..., Bb, Dc refers to the packet loss rate contained in each response record data in the response record data B1, B2, ..., Bb, A is the total number of response record data with the query initiating object as the trusted hospital Z1 stored in the interactive coordination module, and ɑ1 and ɑ2 are the preset first and second single-point dimension evaluation factors respectively; S14: Calculate and obtain the single - point evaluation quantities E2, E3,..., Ea of the feedback objects A2, A3,..., Aa under the trusted hospital Z1 in sequence according to S13. Generate the single - point analysis data of the trusted hospital Z1 based on the feedback objects A1, A2,..., Aa and their single - point evaluation quantities E1, E2,..., Ea under the trusted hospital Z1; S15: Generate the single - point analysis data of the trusted hospitals Z2, Z3,..., Zz in sequence according to the order of the trusted hospitals Z2, Z3,..., Zz; S16: Extract the single-point evaluation quantities F1, F2, ..., Ff of the feedback object A1 included in the trusted hospitals Z2, Z3, ..., Zz, where 1 ≤ f ≤ z - 1, and use the formula to calculate and obtain the paired-point evaluation quantity G1 of the feedback object A1 under the trusted hospital Z1. In the formula, F is the average value of all the remaining single-point evaluation quantities after processing the single-point evaluation quantities F1, F2, ..., Ff using the discrete point filtering algorithm, Fmax and Fmin are respectively the maximum and minimum values among the single-point evaluation quantities F1, F2, ..., Ff, and β1 and β2 are respectively the preset first and second paired-point dimension evaluation factors; S17: Calculate and obtain the pair - point evaluation quantities of the feedback objects A2, A3,..., Aa under the trusted hospital Z1 in sequence according to S16. Generate the pair - point analysis data of the trusted hospital Z1 based on the feedback objects A1, A2,..., Aa and their pair - point evaluation quantities under the trusted hospital Z1; S18: Generate the pair - point analysis data of the trusted hospitals Z2, Z3,..., Zz in sequence according to S16 to S17; 6. The query system for the scientific research data platform of general surgery department in a hospital according to claim 5, characterized in that, The steps of selecting the static interaction object of the query information and generating the static transmission instruction of the query information are as follows: S21: Mark the overall submission data of the query information transmitted from several query hospital terminals received as H1, H2,..., Hh in sequence, where h≥1; S22: Obtain the pair - point analysis data of the trusted hospitals included in the overall submission data H1, H2,..., Hh in sequence, and mark them as I1, I2,..., Ih respectively, where h≥1; S23: Extract the pair - point evaluation quantity J1 of the trusted hospital where the authorized object who types the query information works from the pair - point analysis data I1; Using the formula calculate and obtain the overall static interaction index L1 of the credit hospital corresponding to the query hospital end that transmits the overall submission data H1 of the query information. In the formula, λ1 and λ2 are respectively the preset first and second overall adjustment factors, and K1 and K2 are respectively the data capacity sizes of the dynamic information data and the static information data in the overall submission data H1; S24: Calculate and obtain the overall static interaction indicators L1, L2,..., Lh of the trusted hospitals corresponding to the query hospital terminals of the overall submission data H1 transmitting the query information in sequence according to S22 to S23, and select the trusted hospital corresponding to the overall static interaction indicator with the smallest value as the static interaction object of the query information and generate the static transmission instruction of the query information.

7. The query system for the scientific research data platform of general surgery department in a hospital according to claim 1, characterized in that, If the query interaction unit does not receive the static transmission instruction of the query information to be transmitted after a time P2 after transmitting the overall submission data of the query information, it deletes the static feedback data of the query information temporarily stored therein, where P2 is a preset response feedback duration.