Lung function data detection method and interface display method and device

By integrating the workflow and testing process of pulmonary function data testing, the problems of low operational convenience and low testing efficiency in existing technologies are solved, and more efficient pulmonary function data testing is achieved.

CN120809110APending Publication Date: 2025-10-17MEDCAPTAIN MEDICAL TECH
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Patent Information

Application Number
CN202510878797.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-26
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

The existing lung function data testing has low operational convenience and efficiency. Medical staff need to reselect functional modules in different testing steps, resulting in a disconnect between the operation and testing processes.

Method used

By obtaining the preset workflow, determining the inspection process according to the work steps, and executing the inspection process when the start instruction is detected, the workflow and inspection process are integrated to improve operational convenience and inspection efficiency.

Benefits of technology

It effectively avoids the separation between medical staff's operation and testing processes, and greatly improves operational convenience and testing efficiency.

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Abstract

The invention discloses a lung function data detection method and device and an interface display method and device. The method comprises the steps of obtaining a preset workflow; determining a detection process according to the plurality of working steps; and when a lung function data detection starting instruction is detected, executing a detection process so as to perform lung function data detection on the target patient through the lung function data detector to obtain a lung function data detection result of the target patient. Thus, the detection process is determined according to the working steps of lung function data detection, so that the detection process is executed to detect the target patient when the lung function data detection starting instruction is detected, and effective integration of the working process in the lung function data detection scene and the detection process of lung function data detection is realized; the operation and detection flow splitting of medical staff is effectively avoided, the operation convenience and the working efficiency of the medical staff are greatly improved, and the operation convenience and the detection efficiency of lung function data detection are improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of medical devices, in particular to a lung function data detection method and interface display method and device. BACKGROUND

[0002] A lung function detector is of great significance to improve the convenience and efficiency of lung function data detection. In the prior art, the operation instructions of medical staff are obtained through multiple independent functional modules to perform lung function data detection. However, due to the complexity of the workflow of lung function data detection, the corresponding functional module needs to be selected again for detection when different detection steps are performed, and the operation of medical staff is disconnected from the detection process, resulting in low operation convenience and detection efficiency for lung function data detection. Therefore, how to improve the operation convenience and detection efficiency of lung function data detection has become a technical problem to be further solved. SUMMARY

[0003] The present application provides a lung function data detection method and interface display method and device to solve the problem of low operation convenience and detection efficiency for lung function data detection and improve the operation convenience and detection efficiency of lung function data detection.

[0004] In a first aspect, an embodiment of the present application provides a lung function data detection method applied to a server in a lung function data detection system, wherein the lung function data detection system comprises a lung function data detector and the server, and the method comprises:

[0005] obtaining a preset workflow, wherein the workflow comprises a plurality of working steps;

[0006] determining a detection process according to the plurality of working steps, wherein the detection process comprises a plurality of detection stages, and a single detection stage corresponds to a single working step;

[0007] when a lung function data detection start instruction is detected, executing the detection process to perform lung function data detection on a target patient through the lung function data detector, and obtaining a lung function data detection result of the target patient.

[0008] In a possible embodiment, the plurality of working steps includes a plurality of operation working steps and a plurality of detection working steps, a single operation working step is a working step for ensuring normal operation of the lung function data detector, and a single detection working step is a working step for lung function data detection by the lung function data detector. The detection flow is determined according to the plurality of working steps, including: determining at least one function detection stage according to the plurality of operation working steps, the at least one function detection stage including a self-check preheating stage and a calibration stage; determining at least one lung function data detection stage according to the plurality of detection working steps, the at least one lung function data detection stage including an information input stage, a project execution stage, a result viewing stage, and a report printing stage; and determining the detection flow according to the at least one function detection stage and the at least one lung function data detection stage.

[0009] In a possible embodiment, the project execution stage includes a plurality of detection projects, the detection flow includes at least one detection sub-flow group, a single detection sub-flow group is used to indicate a project execution flow of a corresponding detection project, and the detection flow is determined according to the at least one function detection stage and the at least one lung function data detection stage, including: determining at least one detection cartridge corresponding to the plurality of detection projects; and determining the at least one detection sub-flow group according to the at least one detection cartridge.

[0010] In a possible embodiment, the lung function data detector further includes a plurality of function components, the self-check preheating stage includes a plurality of self-check preheating requirements, and the detection flow includes a plurality of self-check preheating flows. The plurality of self-check preheating requirements correspond one-to-one to the plurality of function components, a single self-check preheating flow is used to indicate a self-check preheating execution flow of a corresponding function component, and the detection flow is determined according to the at least one function detection stage and the at least one lung function data detection stage, including: determining a plurality of self-check preheating tasks according to a plurality of preset self-check preheating logics and the plurality of self-check preheating requirements, the plurality of self-check preheating logics corresponding one-to-one to the plurality of function components; and determining the plurality of self-check preheating flows according to the plurality of self-check preheating tasks and a self-check preheating start condition of each function component in the plurality of function components.

[0011] In a possible embodiment, when a lung function data detection start instruction is detected, the detection flow is executed to perform lung function data detection on a target patient, including: obtaining running information of each function component; and determining a running state of each function component according to the running information of each function component.

[0012] In a possible implementation, when the lung function data detection start instruction is detected, the detection procedure is executed to perform lung function data detection on the target patient, including: if the first skip instruction is detected when in the self-check preheating stage, stopping execution of the plurality of self-check preheating procedures.

[0013] In a possible implementation, when the lung function data detection start instruction is detected, the detection procedure is executed to perform lung function data detection on the target patient, including: if the first enter instruction is detected when in the calibration stage, obtaining a calibration operation of the user; and performing calibration according to the calibration operation.

[0014] In a second aspect, the embodiments of the present application provide a lung function data detection interface display method, applied to a terminal device in a lung function data detector, and the method comprises the following steps:

[0015] In response to a start-up instruction of the user, a lung function data detection main page is displayed, the lung function data detection main page comprising a lung function data detection procedure start control;

[0016] A lung function data detection start instruction is obtained through the lung function data detection procedure start control;

[0017] In response to the lung function data detection start instruction, an information entry page is displayed, the information entry page comprising a save and test control, the save and test control being used to obtain a save and test instruction;

[0018] The patient information of the target patient input by the user and the save and test instruction are obtained through the information entry page;

[0019] In response to the save and test instruction, a project execution page is displayed, the project execution page being used to display the lung function of the target patient in real time during the detection project, the project execution page comprising a result viewing control;

[0020] A result viewing instruction is obtained through the result viewing control;

[0021] In response to the result viewing instruction, a result report page is displayed, the result report page being used to display the lung function data detection result of the target patient.

[0022] In a possible embodiment, the lung function data detector further includes a plurality of function components, and the lung function data detection main page further includes a first display area, a second display area, and a third display area; the first display area includes a plurality of state display sub-areas, each of the plurality of state display sub-areas is configured to display an operating state of a corresponding function component in the plurality of function components; the second display area includes the lung function data detection process starting control, a calibration starting control, and a data management starting control, the calibration starting control is configured to acquire a calibration starting instruction, the calibration starting instruction is configured to instruct the lung function data detector to immediately enter a calibration stage, and the data management starting control is configured to acquire a data management starting instruction, the data management starting instruction is configured to manage system information of the lung function data detector; and the third display area includes an exercise starting control, the exercise starting control is configured to instruct the lung function data detector to enter an exercise mode, and the exercise mode is configured to guide a patient to perform action exercises before detection.

[0023] In a possible embodiment, the information entry page further includes a first input area and a second input area, the first input area is configured to acquire basic personal information of the target patient, and the second input area is configured to acquire detailed information, detection history information, and questionnaire information of the target patient.

[0024] In a possible embodiment, the project execution page further includes a fourth display area and a fifth display area, the fourth display area includes a plurality of detection project switching controls, and the fifth display area is configured to display lung function conditions of the target patient in a process of performing a target detection project, the target detection project being a detection project corresponding to a detection project switching control selected by the user in the plurality of detection project switching controls.

[0025] In a possible embodiment, the result report page includes a sixth display area, a seventh display area, and an eighth display area, the sixth display area is configured to display a plurality of key parameter samples obtained by executing the plurality of detection projects, a single key parameter sample includes a plurality of key parameter columns, the seventh display area includes a multiple selection graph line area and a single selection graph line area, the multiple selection graph line area is configured to display a graph line corresponding to at least one key parameter column currently selected by the user, the single selection graph line area is configured to display a graph line corresponding to a single key parameter column currently selected by the user, and the eighth display area is configured to display test quality of the plurality of test projects.

[0026] In a third aspect, an embodiment of the present application provides a lung function data detection device, applied to a server in a lung function data detection system, the lung function data detection system including a lung function data detector and the server, and the device includes:

[0027] a first receiving unit, configured to acquire a preset workflow, the workflow comprising a plurality of work steps;

[0028] a first processing unit, configured to determine a detection procedure according to the plurality of work steps, the detection procedure comprising a plurality of detection stages, a single detection stage corresponding to a single work step; when a lung function data detection start instruction is detected, the detection procedure is executed to perform lung function data detection on a target patient by using the lung function data detector, so as to obtain a lung function data detection result of the target patient.

[0029] In a fourth aspect, an embodiment of the present application provides a lung function data detection interface display device, applied to a terminal device in a lung function data detection system, the lung function data detection system comprising a lung function data detector and the terminal device, and the device comprises:

[0030] a second receiving unit, configured to display a lung function data detection main page in response to a lung function data detection start instruction of a user, the lung function data detection main page comprising a lung function data detection procedure start control;

[0031] a second processing unit, configured to acquire a lung function data detection procedure start instruction through the lung function data detection procedure start control; display an information input page in response to the lung function data detection procedure start instruction, the information input page comprising a save and test control, the save and test control being configured to acquire a save and test instruction; acquire patient information of a target patient input by the user and the save and test instruction through the information input page; display a project execution page in response to the save and test instruction, the project execution page being configured to display a lung function condition of the target patient in a detection project in real time, the project execution page comprising a result viewing control; acquire a result viewing instruction through the result viewing control; and display a result report page in response to the result viewing instruction, the result report page being configured to display a lung function data detection result of the target patient.

[0032] In a fifth aspect, an embodiment of the present application provides a server, comprising a processor, a memory, and one or more programs, the one or more programs being stored in the memory and configured to be executed by the processor, and the program comprises instructions for performing steps in the method of any one of the first aspect.

[0033] In a sixth aspect, an embodiment of the present application provides a computer readable storage medium, having stored thereon a computer program / instruction, the computer program / instruction being executed by a processor to implement steps of the method of any one of the first aspect.

[0034] In the seventh aspect, an embodiment of the present application provides a computer program product, including a computer program / instruction, which, when executed by a processor, implements part or all of the steps of the method described in any one of the first aspects of the embodiment of the present application.

[0035] It can be seen that in this application, the server obtains a preset workflow, which includes multiple working steps; the detection process is determined based on the multiple working steps, and the detection process includes multiple detection stages, with a single detection stage corresponding to a single working step; when a pulmonary function data detection start instruction is detected, the detection process is executed to perform pulmonary function data detection on the target patient through the pulmonary function data detector to obtain the pulmonary function data detection result of the target patient. In this way, the detection process is determined based on the working steps for performing pulmonary function data detection, so that when the pulmonary function data detection start instruction is detected, the detection process is executed to detect the target patient, realizing the effective integration of the workflow in the pulmonary function data detection scenario and the detection process of pulmonary function data detection, effectively avoiding the separation of medical staff's operation and detection process, greatly improving the operational convenience and work efficiency of medical staff, and improving the operational convenience and detection efficiency of pulmonary function data detection. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] In order to more clearly illustrate the embodiments of the present application or the technical solutions in the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are only some embodiments of the present application. For ordinary technicians in this field, other drawings can be obtained based on these drawings without any creative work.

[0037] Figure 1 Schematic diagram of the structure of a lung function data detection system provided in an embodiment of the present application;

[0038] Figure 2 This is a schematic diagram of the structure of a server in a lung function data detection system provided in an embodiment of the present application;

[0039] Figure 3 1 is a flow chart of a lung function data detection method provided in an embodiment of the present application;

[0040] Figure 4 Schematic diagram of a scenario of a lung function data detection method provided in an embodiment of the present application;

[0041] Figure 5 1 is a flow chart of another lung function data detection method provided in an embodiment of the present application;

[0042] Figure 6 This is a schematic diagram of the interface of a main page of lung function data detection provided by an embodiment of the present application;

[0043] Figure 7 is a scene schematic diagram of a lung function data detection interface display method provided by an embodiment of the present application;

[0044] Figure 8 is an interface schematic diagram of a calibration page provided by an embodiment of the present application;

[0045] Figure 9 is an interface schematic diagram of a data management page provided by an embodiment of the present application;

[0046] Figure 10 is an interface schematic diagram of an information entry page provided by an embodiment of the present application;

[0047] Figure 11 is an interface schematic diagram of a project execution page provided by an embodiment of the present application;

[0048] Figure 12 is a scene schematic diagram of another lung function data detection interface display method provided by an embodiment of the present application;

[0049] Figure 12a is an interface schematic diagram of a BCT detection sub-interface provided by an embodiment of the present application;

[0050] Figure 13 is an interface schematic diagram of a result report page provided by an embodiment of the present application;

[0051] Figure 14 is a functional unit composition block diagram of a lung function data detection device provided by an embodiment of the present application;

[0052] Figure 15 is a functional unit composition block diagram of another lung function data detection device provided by an embodiment of the present application;

[0053] Figure 16 is a structure block diagram of a server provided by an embodiment of the present application. DETAILED DESCRIPTION

[0054] In order to enable persons skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by persons skilled in the art without creative labor fall within the scope of protection of the present application.

[0055] The terms "first", "second", and the like in the description and in the claims of the present application and above-described drawings are used to distinguish different objects, and are not used to describe a particular order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product, or device that includes a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to such processes, methods, products, or devices.

[0056] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the application. The appearance of the phrase in various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily independent or alternative embodiments to other embodiments. It is explicitly and implicitly understood by those skilled in the art that the embodiments described herein can be combined with other embodiments.

[0057] In the embodiments of the present application, "and / or" describes the association relationship of the associated objects, which means that there can be three relationships. For example, A and / or B can represent the following three cases: A exists alone; A and B exist simultaneously; B exists alone. Wherein, A and B can be singular or plural.

[0058] In the embodiments of the present application, the symbol " / " can represent that the associated objects before and after the symbol are in an "or" relationship. In addition, the symbol " / " can also represent the division sign, that is, performing division operation. For example, A / B can represent A divided by B.

[0059] In the embodiments of the present application, "at least one" or similar expressions mean any combination of these items, including any combination of single item or multiple items, means one or more, and multiple means two or more. For example, at least one of a, b or c can represent the following seven cases: a, b, c, a and b, a and c, b and c, a, b and c. Wherein, each of a, b and c can be an element or a set containing one or more elements.

[0060] In the embodiments of the present application, "equal to" can be combined with greater than, which is applicable to the technical solutions adopted when greater than; or can be combined with less than, which is applicable to the technical solutions adopted when less than. When equal to is combined with greater than, it is not combined with less than; when equal to is combined with less than, it is not combined with greater than.

[0061] In order to better understand the scheme of the embodiments of the present application, the terminal device, related concepts and background that may be involved in the embodiments of the present application will be introduced first.

[0062] Pulmonary function data detection: used for detecting the pulmonary function indicators of a patient, evaluating the health status of the lungs of the patient, and specifically can include various detection items, such as routine items, lung capacity items, respiratory mechanics items, diffusion items, airway reactivity items, and the like, and each type of item has multiple detection manners, such as the routine items including forced vital capacity (FVC), slow vital capacity (SVC), maximum minute ventilation (MMV), lung volume (BODY), and the like; the respiratory mechanics including impulse oscillometry (IOS) and the like; the diffusion items including real-time one-breath (RT), internal breathing (IB), membrane diffusion (DM), repeated breathing (RB), and the like; and the airway reactivity including bronchial constriction test (BCT), bronchial provocation test (APS), and the like. Each item method has its own set of standard examination processes, and is related to the principle and algorithm of the method.

[0063] The pulmonary function detector is of great significance to improve the convenience and efficiency of pulmonary function data detection. In the prior art, the operation instructions of medical staff are obtained through multiple function modules independent of each other to perform pulmonary function data detection. However, since the work flow of pulmonary function data detection is relatively complex, the corresponding function module needs to be selected again to perform detection when different detection steps are performed, the operation of medical staff is disconnected from the work flow, which leads to low operation convenience and detection efficiency of pulmonary function data detection. Therefore, how to improve the operation convenience and detection efficiency of pulmonary function data detection has become a technical problem to be further solved.

[0064] To solve the above problems, an embodiment of the present application provides a pulmonary function data detection method, which determines a detection process according to the work steps of pulmonary function data detection, so as to perform the detection process to detect a target patient when a pulmonary function data detection start instruction is detected, thereby effectively integrating the work flow in the pulmonary function data detection scene and the detection process of pulmonary function data detection, effectively avoiding the disconnection between the operation of medical staff and the detection process, greatly improving the operation convenience and work efficiency of medical staff, and improving the operation convenience and detection efficiency of pulmonary function data detection.

[0065] As shown in Figure 1 The pulmonary function data detection system 100 includes a pulmonary function data detector 110, a server 120, and a terminal device 130. The pulmonary function data detector 110 is in communication connection with the server 120, and the terminal device 130 is in communication connection with the server 120. The server 120 can be one server or a server group composed of multiple servers. The terminal device 130 can be a personal computer, a tablet computer, or the like.

[0066] In daily use of the pulmonary function data detection system 100, the server 120 obtains a preset workflow, which includes multiple work steps; determines a detection process based on the multiple work steps, and the detection process includes multiple detection stages, and a single detection stage corresponds to a single work step; when a pulmonary function data detection start instruction is detected, the detection process is executed to perform pulmonary function data detection on the target patient through the pulmonary function data detector to obtain the pulmonary function data detection results of the target patient.

[0067] See also Figure 2 , Figure 2 This is a schematic diagram of the structure of a server in a lung function data detection system provided by an embodiment of the present application. Figure 2 As shown, the server 120 includes a processor 210 and a memory 220, and the processor 210 is in communication with the memory 220. The memory 220 stores one or more programs, and the one or more programs are configured to be executed by the processor 210. The functions of the one or more programs are to obtain a preset workflow, which includes multiple work steps; determine a detection process based on the multiple work steps, which includes multiple detection stages, with each detection stage corresponding to a single work step; and when a pulmonary function data detection start instruction is detected, execute the detection process to perform pulmonary function data detection on a target patient using a pulmonary function data detector to obtain the pulmonary function data detection results of the target patient.

[0068] The following describes a method for detecting lung function data provided in an embodiment of the present application.

[0069] See also Figure 3 , Figure 3 This is a flow chart of a lung function data detection method provided by an embodiment of the present application, which is applied to Figure 1 The server 120 in the pulmonary function data detection system 100 shown in the figure comprises a pulmonary function data detector 110, a server 120 and a terminal device 130. The pulmonary function data detector 110 is in communication with the server 120, and the terminal device 130 is in communication with the server 120. The server 120 can be a single server or a server group consisting of multiple servers. The terminal device 130 can be a personal computer, a tablet computer, etc. Figure 3 As shown, the method includes the following steps:

[0070] Step S310: Obtain a preset workflow.

[0071] The workflow includes multiple steps.

[0072] The workflow is used for characterizing a workflow of performing lung function data detection. In the lung function data detection scenario, the workflow is specifically a workflow of a medical staff performing lung function data detection for a patient.

[0073] In step S320, a detection flow is determined according to the plurality of work steps.

[0074] The detection flow includes a plurality of detection stages, and a single detection stage corresponds to a single work step.

[0075] In one possible implementation, the plurality of work steps includes a plurality of operation work steps and a plurality of detection work steps, a single operation work step is a work step for ensuring normal operation of the lung function data detector, and a single detection work step is a work step for performing lung function data detection by using the lung function data detector. The detection flow is determined according to the plurality of work steps, including: determining at least one function detection stage according to the plurality of operation work steps, the at least one function detection stage including a self-check preheating stage and a calibration stage; determining at least one lung function data detection stage according to the plurality of detection work steps, the at least one lung function data detection stage including an information input stage, a project execution stage, a result viewing stage, and a report printing stage; and determining the detection flow according to the at least one function detection stage and the at least one lung function data detection stage.

[0076] The single operation work step can be specifically a work step performed by a medical staff to ensure normal operation of the lung function data detector. The plurality of operation work steps can include, for example, a start-up step, a self-check preheating step, a calibration step, and a shutdown step. The start-up step is a work step in which the medical staff operates the lung function data detector to start up. The self-check preheating step is a work step in which the medical staff operates the lung function data detector to perform self-check and preheating. The calibration step is a work step in which the medical staff operates the lung function data detector to perform calibration. The shutdown step is a work step in which the medical staff operates the lung function data detector to shut down.

[0077] In a single operation of the lung function data detector, the medical staff needs to perform the start-up step, the self-check preheating step, the calibration step, and the shutdown step once.

[0078] The self-check preheating step and the calibration step are function maintenance steps, and the function maintenance steps are used to characterize work steps performed by the medical staff to ensure normal function of the lung function data detector.

[0079] The single function detection stage can be a function maintenance detection stage of the server to the lung function data detector, the self-check preheating stage is a self-check and preheating detection stage of the server to the lung function data detector, and the calibration stage is a calibration detection stage of the server to the lung function data detector.

[0080] The at least one function detection stage can be determined according to the function maintenance step in the plurality of operation steps, for example, the self-check preheating stage can be determined according to the self-check preheating step, and the calibration stage can be determined according to the calibration step.

[0081] The single detection working step can be a lung function data detection working step of a medical staff through the lung function data detector. The plurality of detection working steps can include a patient greeting step, an information input step, a project execution step, a result viewing step, a report printing step and a patient leaving step. The patient greeting step is a working step of the medical staff to receive a patient, the information input step is a working step of the medical staff to input patient information, the project execution step is a working step of the medical staff to execute a lung function data detection project through the lung function data detector, the result viewing step is a working step of the medical staff to view detection data of the lung function data detection project, the report printing step is a working step of the medical staff to print the detection data of the lung function data detection project, and the patient leaving step is a working step of the medical staff to end the reception.

[0082] In a single operation of the lung function data detector, the medical staff needs to execute at least one of the patient greeting step, the information input step, the project execution step, the result viewing step, the report printing step and the patient leaving step.

[0083] The single lung function data detection stage can be a lung function data detection stage of the server through the lung function data detector, the information input stage is a detection stage of the server to receive and store patient information input by the medical staff, the project execution stage is a detection stage of the server to execute a lung function data detection project through the lung function data detector, the result viewing step is a detection stage of the server to obtain and display detection data of the lung function data detection project, and the report printing step is a detection stage of the server to print the detection data of the lung function data detection project.

[0084] The detection flow is determined according to the at least one function detection stage and the at least one lung function data detection stage, and specifically, the at least one function detection stage and the at least one lung function data detection stage are arranged according to the execution order to obtain the detection flow.

[0085] Wherein, please refer to Figure 4 , Figure 4 is a scene schematic diagram of a lung function data detection method provided by the embodiment of the application. As shown in Figure 4 , the medical staff performs the plurality of working steps to support the operation of the lung function data detector and the lung function data detection through the lung function data detector. After detecting the start instruction issued by the medical staff performing the power-on step, the server starts to execute the detection flow until detecting the shutdown instruction issued by the medical staff performing the power-off step. The detection flow is composed of a self-checking preheating stage, a calibration stage, an information input stage, a project execution stage, a result viewing stage and a report printing stage arranged according to the execution order. Among them, the information input stage, the project execution stage, the result viewing stage and the report printing stage are executed at least once after the calibration stage and before the shutdown instruction. Among them, between the calibration stage and the information input stage, the medical staff performs the patient greeting step; after each execution of the report printing stage, the medical staff performs the patient leaving step.

[0086] Among them, the plurality of working steps further include a device management step and a patient information management step. The device management step is a working step for the medical staff to manage the device components of the lung function data detector, and the patient information management step is a working step for the medical staff to manage the input patient information. The device management step can be executed at any node after the power-on step and before the power-off step, and the patient information management step can be executed at any node after the calibration step and before the power-off step.

[0087] It can be seen that in the present example, the detection stages for maintaining the lung function data detector and the detection stages for lung function data detection are determined according to the working steps for ensuring the normal operation of the lung function data detector and the working steps for lung function data detection, thereby obtaining the detection flow. The working steps for maintaining the device and the working steps for using the device in the working flow correspond to the function detection stages and the lung function data detection stages in the detection flow, which realizes the reasonable integration of the working flow and the detection flow, effectively avoids the separation of the operation of the medical staff and the detection flow, greatly improves the operation convenience and work efficiency of the medical staff, and improves the operation convenience and detection efficiency of the lung function data detection.

[0088] In a possible embodiment, the item execution stage includes a plurality of detection items, the detection flow includes at least one detection sub-flow group, a single detection sub-flow group is used to indicate an item execution flow of a corresponding detection item, and the detection flow is determined according to the at least one functional detection stage and the at least one lung function data detection stage, including: determining at least one detection cartridge corresponding to the plurality of detection items; and determining the at least one detection sub-flow group according to the at least one detection cartridge.

[0089] The item execution stage corresponds to the at least one detection sub-flow group.

[0090] The plurality of detection items are lung function data detection items performed on the target patient by the lung function data detector, and for example, can include forced vital capacity (FVC), slow vital capacity (SVC), maximum minute ventilation (MMV), bronchial dilation test (BDT), provocation test (BCT), impulse oscillation (IOS), and pulmonary ventilation function test (PFT). After the information input stage, the plurality of detection items can be freely selected and determined by medical staff.

[0091] The at least one detection cartridge corresponding to the plurality of detection items is determined, specifically, a preset detection cartridge association relationship is acquired, the detection cartridge association relationship is used to indicate detection items corresponding to a plurality of preset detection cartridges, and the at least one detection cartridge is determined according to the plurality of detection items and the detection cartridge association relationship. For example, the plurality of detection items corresponding to the target patient include FVC, SVC, and BCT, and the at least one detection cartridge corresponding to the plurality of detection items corresponding to the target patient includes a detection cartridge corresponding to BCT.

[0092] A single detection cartridge corresponds to a single detection item, and a single detection cartridge is an integration of all execution flows of a corresponding detection item. For example, the test process of BCT is complex, the execution flow of BCT includes multiple control experiments, provocation experiments, and dilation experiments, and each control experiment needs to be performed on drug, FVC, and IOS experiment steps, and the preset detection cartridge corresponding to BCT integrates the execution flows of the multiple control experiments, the provocation experiments, and the dilation experiments.

[0093] The at least one detection sub-flow group is determined according to the at least one detection cartridge, for example, the detection sub-flow group corresponding to BCT is determined according to the detection cartridge corresponding to BCT, the detection sub-flow group corresponding to BCT indicates that performing BCT is to sequentially perform multiple control experiments, provocation experiments, and dilation experiments, and when the detection sub-flow group corresponding to BCT is started to be executed in the detection flow execution process, a complete BCT detection flow is completed, and after the completion, the BCT detection is exited, so that the complete flow of the complex detection is completed and is not supported to be repeatedly started again.

[0094] It can be seen that in the present example, by determining at least one detection cartridge corresponding to a plurality of detection items, at least one detection sub-process group for indicating the item execution process of the corresponding detection item is determined according to the at least one detection cartridge, thereby realizing the independence and completeness of the complex detection item execution process, making the operation of the complex detection item more simple and smooth, thereby further improving the operation convenience and detection efficiency of the lung function data detection.

[0095] In one possible embodiment, the lung function data detector further includes a plurality of functional components, the self-check preheating stage includes a plurality of self-check preheating requirements, and the detection process includes a plurality of self-check preheating processes. The plurality of self-check preheating requirements correspond one-to-one to the plurality of functional components, and a single self-check preheating process is used to indicate the self-check preheating execution process corresponding to the corresponding functional component. The detection process is determined according to the at least one functional detection stage and the at least one lung function data detection stage, including: determining a plurality of self-check preheating tasks according to a plurality of preset self-check preheating logics and the plurality of self-check preheating requirements, the plurality of self-check preheating logics corresponding one-to-one to the plurality of functional components; and determining the plurality of self-check preheating processes according to the plurality of self-check preheating tasks and a self-check preheating start condition corresponding to each functional component in the plurality of functional components.

[0096] The self-check preheating stage corresponds to the plurality of self-check preheating processes.

[0097] The self-check preheating logic is used to represent the control strategy of self-check preheating of the plurality of functional components.

[0098] The self-check preheating start condition is used to represent the state in which the corresponding functional component can start self-check preheating, for example, the plurality of functional components include a sensor module, and the self-check preheating start condition corresponding to the sensor module is that the module has been connected and the physical state is normal.

[0099] The plurality of self-check preheating tasks are determined according to the plurality of self-check preheating logics and the plurality of self-check preheating requirements, for example, the plurality of functional components include a sensor module, the self-check preheating logic of the preset sensor module includes self-checking the ambient temperature, the ambient humidity and the ambient air pressure of the sensor module, and the plurality of self-check preheating tasks of the sensor module include detecting the ambient temperature of the sensor module and adjusting the ambient temperature of the sensor module to be within the corresponding threshold range when it is detected that the ambient temperature of the sensor module is not within the corresponding threshold range; detecting the ambient humidity of the sensor module and adjusting the ambient humidity of the sensor module to be within the corresponding threshold range when it is detected that the ambient humidity of the sensor module is not within the corresponding threshold range; and detecting the ambient air pressure of the sensor module and adjusting the ambient air pressure of the sensor module to be within the corresponding threshold range when it is detected that the ambient air pressure of the sensor module is not within the corresponding threshold range.

[0100] The plurality of self-check preheating processes are determined according to the plurality of self-check preheating tasks and the self-check preheating start condition corresponding to each functional component in the plurality of functional components, for example, the self-check preheating start condition corresponding to the sensor module is that the module has been connected and the physical state is normal, and the self-check preheating process of the sensor module includes: when it is detected that the sensor module has been connected and the physical state is normal, detecting the ambient temperature, the ambient humidity and the ambient air pressure of the sensor module, judging whether the ambient temperature, the ambient humidity and the ambient air pressure of the sensor module are within the corresponding threshold range, if yes, ending, and if no, adjusting the ambient temperature or the ambient humidity or the ambient air pressure that is not within the corresponding threshold range to be within the corresponding threshold range. In this way, the self-check preheating process corresponding to each functional component is generated, which can support the plurality of functional components to automatically preheat when the corresponding self-check preheating start condition is reached, realize simultaneous preheating of the plurality of functional components, and the plurality of self-check preheating processes are independent of each other and do not affect each other.

[0101] It can be seen that in the present example, the self-check preheating task of each functional component is determined according to the self-check preheating logic and the self-check preheating requirement of each functional component, so that the corresponding self-check preheating process is determined according to the self-check preheating task of each functional component and the corresponding self-check preheating start condition, so that each functional component can be preheated at the same time, the efficiency of self-check preheating of the lung function data detector is improved, and the operation convenience and detection efficiency of lung function data detection are improved.

[0102] In step S330, when the lung function data detection start instruction is detected, the detection process is executed to perform lung function data detection on the target patient by the lung function data detector to obtain the lung function data detection result of the target patient.

[0103] In a possible embodiment, when the lung function data detection start instruction is detected, the detection process is executed to perform lung function data detection on the target patient, including: obtaining the running information of each functional component; and determining the running state of each functional component according to the running information of each functional component.

[0104] In the embodiment, the running information of each functional component can be obtained by a state monitoring circuit of each functional component, and the running state of each functional component can be determined according to a state signal of each functional component.

[0105] The running state includes a connection state, a stage state and an operable state. The connection state is used to indicate the physical connection state of the corresponding functional component. The stage state is used to indicate whether the self-checking and preheating process of the corresponding functional component is completed. The operable state is used to indicate the operation options that can be performed on the corresponding functional component at present.

[0106] In the embodiment, the running information of each functional component is obtained to determine the running state of each functional component, so that the running state of each functional component of the lung function data detector can be detected in real time, the use experience of medical staff is improved, and the operation convenience and detection efficiency of lung function data detection are improved.

[0107] In a possible embodiment, when the lung function data detection start instruction is detected, the detection process is executed to perform lung function data detection on the target patient, including: if a first skip instruction is detected when the self-checking and preheating stage is in the self-checking and preheating stage, the multiple self-checking and preheating processes are stopped.

[0108] The first skip instruction is used to indicate that the lung function data detector skips the self-checking and preheating process corresponding to the corresponding functional component.

[0109] If the first skip instruction is detected when the self-checking and preheating stage is in the self-checking and preheating stage, the multiple self-checking and preheating processes are stopped. Specifically, if the first skip instruction is detected when a target self-checking and preheating process in the multiple self-checking and preheating processes in the self-checking and preheating stage is being executed, the target self-checking and preheating process is stopped.

[0110] In the embodiment, the first skip instruction is detected in the self-checking and preheating stage to stop the execution of the multiple self-checking and preheating processes. When the medical staff determines that a certain functional component has been preheated or does not need to be preheated, the preheating can be directly skipped by inputting the first skip instruction to enter the next operation, so that the flexible control of the self-checking and preheating is realized, the use experience of the medical staff is improved, and the operation convenience and detection efficiency of the lung function data detection are improved.

[0111] In a possible implementation, when the lung function data detection start instruction is detected, the detection procedure is executed to perform lung function data detection on the target patient, including: if the first entering instruction is detected when in the calibration and adjustment stage, obtaining a calibration operation of the user; and performing calibration and adjustment according to the calibration operation.

[0112] The detection procedure includes a calibration and adjustment procedure for calibrating and adjusting the plurality of functional components. The calibration and adjustment stage corresponds to the calibration and adjustment procedure.

[0113] The first entering instruction is used to indicate that calibration and adjustment of the corresponding functional component in the lung function data detector is started.

[0114] The calibration and adjustment according to the calibration operation can specifically be calibration and adjustment of the functional component corresponding to the first entering instruction according to the calibration operation.

[0115] Before the calibration and adjustment, self-check preheating procedures of all necessary functional components in the plurality of functional components have been executed and are in a state suitable for calibration and adjustment.

[0116] It can be seen that in this example, the first entering instruction is detected in the calibration and adjustment stage to start calibration and adjustment of the corresponding functional component, and the medical staff can freely calibrate the functional component according to needs, flexible control of self-check preheating is achieved, the use experience of the medical staff is improved, and the operation convenience and detection efficiency of lung function data detection are improved.

[0117] It can be seen that in this application, the server obtains a preset work procedure, the work procedure includes a plurality of work steps; a detection procedure is determined according to the plurality of work steps, the detection procedure includes a plurality of detection stages, and a single detection stage corresponds to a single work step; when a lung function data detection start instruction is detected, the detection procedure is executed to perform lung function data detection on a target patient by a lung function data detector, and a lung function data detection result of the target patient is obtained. In this way, the detection procedure is determined according to the work step of lung function data detection, and the detection procedure is executed on the target patient when the lung function data detection start instruction is detected, which effectively integrates the work procedure in the lung function data detection scene and the detection procedure of lung function data detection, effectively avoids the separation of the operation of the medical staff and the detection procedure, greatly improves the operation convenience and work efficiency of the medical staff, and improves the operation convenience and detection efficiency of lung function data detection.

[0118] Please refer to Figure 5 , Figure 5is a flowchart of another lung function data detection method provided by the embodiment of the application, which is applied to a terminal device 130 in a lung function data detection system 100 as shown in the figure. Figure 1 The lung function data detection system 100 includes a lung function data detector 110, a server 120 and a terminal device 130. The lung function data detector 110 is in communication connection with the server 120, and the terminal device 130 is in communication connection with the server 120. The server 120 can be one server or a server group composed of multiple servers. The terminal device 130 can be a personal computer, a tablet computer or the like. As shown in the figure, Figure 5 The method includes the following steps:

[0119] Step S510, in response to a lung function data detection starting instruction of a user, a lung function data detection main page is displayed.

[0120] The lung function data detection main page includes a lung function data detection flow starting control.

[0121] The lung function data detection starting instruction can be a power-on instruction for the lung function data detector.

[0122] In response to the lung function data detection starting instruction of the user, a plurality of self-check preheating processes corresponding to the self-check preheating stage in the detection process are executed and the lung function data detection main page is displayed.

[0123] In one possible embodiment, the lung function data detector further includes a plurality of functional components, and the lung function data detection main page further includes a first display area, a second display area and a third display area. The first display area includes a plurality of state display sub-areas, each of the plurality of state display sub-areas being used to display the running state of a corresponding functional component in the plurality of functional components. The second display area includes the lung function data detection flow starting control, a calibration starting control and a data management starting control. The calibration starting control is used to obtain a calibration starting instruction, which is used to instruct the lung function data detector to immediately enter a calibration stage. The data management starting control is used to obtain a data management starting instruction, which is used to manage the system information of the lung function data detector. The third display area includes an exercise starting control, which is used to instruct the lung function data detector to enter an exercise mode. The exercise mode is used to guide the patient to perform action exercise before detection.

[0124] The virtual patient information is set after the exercise mode is started, and the patient can freely use the test program to practice the respiratory action in the virtual patient's identity. In the process, the detection process and interface are completely consistent with the actual detection, and the real steps are simulated, but the test gas and test drug are not actually used. The results obtained by the exercise mode can be viewed on the result report page, but will not be recorded in the database. Through the exercise mode, the patient can practice the respiratory action more reliably and freely in a safe condition, and can also obtain effective proficiency and improve the detection efficiency.

[0125] Wherein, please refer to Figure 6 , Figure 6 is an interface schematic diagram of a lung function data detection main page provided by an embodiment of the present application. As shown in Figure 6 , the lung function data detection main page 600 includes a first display area 610, a second display area 620 and a third display area 630. The first display area 610 includes a plurality of state display sub-areas 611, which can display, for example, the running states of the function components corresponding to IOS, PFT, APS and BODY. The second display area 620 includes a lung function data detection process starting control 621, a calibration starting control 622 and a data management starting control 623. The third display area 630 includes an exercise starting control 631.

[0126] The third display area 630 can further include a guidance starting control 632, which is used to instruct the lung function data detector to enter a guidance mode. The guidance mode is used to explain the whole process of lung function data detection to the patient.

[0127] The first display area 610 can further include a label display area 612, which is used to display the patient label of the patient.

[0128] The label display area 612 can display the patient labels of multiple patients at the same time. The label display area 612 can obtain the click operation of the medical staff on the patient label of any patient, so that the terminal device updates the patient corresponding to the patient label selected by the medical staff as the target patient and synchronizes to the server. When the user clicks the "X" in the patient label, the detection for the patient can be ended after secondary confirmation.

[0129] The running state of each functional component displayed by the plurality of state display sub-areas 611 is determined according to the running information of each functional component acquired by the server. The running state includes unconnected, self-checking preheating, uncalibrated, and completed. The unconnected is used to represent that the corresponding functional component is not normally connected. The self-checking preheating is used to represent that the corresponding functional component is executing a corresponding self-checking preheating process. The uncalibrated is used to represent that the corresponding functional component has completed the corresponding self-checking preheating process but has not executed a corresponding calibration process. The completed is used to represent that the corresponding functional component has completed the corresponding self-checking preheating process and the calibration process.

[0130] The lung function data detection main page 600 can further include a detector display area 640, which is used to display a physical structure diagram of the lung function data detector.

[0131] Referring to Figure 7 , Figure 7 is a scene schematic diagram of a lung function data detection interface display method provided by the embodiment of the application. As shown in Figure 7 , when the plurality of state display sub-areas 611 in the first display area 610 detect a selection operation of a medical staff on any state display sub-area, a corresponding prompt information display box 710 is displayed, which is used to display prompt information of the running state of the corresponding functional component. When the running state of the functional component corresponding to IOS is an abnormal state of unconnected, the corresponding prompt information is “connection failed, please retry!”; when the running state of the functional component corresponding to PFT is in preheating, the corresponding prompt information is “preheating, remaining time: X minutes X seconds”; when the running state of the functional component corresponding to APS is uncalibrated, the corresponding prompt information is “device is not calibrated, which may affect the detection accuracy!”; and when the running state of the functional component corresponding to BODY is a normal state of completed, the prompt information display box 710 is not displayed.

[0132] The prompt information display box 710 includes a state indicating lamp, which is used to indicate the running state of the corresponding functional component. For example, when the running state is unconnected or the device is in error, the state indicating lamp is red and the icon is an exclamation mark; when the running state is in self-checking preheating, the state indicating lamp is orange and the icon is a cycle; when the running state is uncalibrated, the state indicating lamp is yellow and the icon is a prompt; and when the running state is completed, the state indicating lamp is green and the icon is a checkmark.

[0133] When the running state of the functional component is in self-check preheating, the prompt information display box 710 further comprises a first skip control 711 for obtaining a first skip instruction to stop performing the self-check preheating procedure of the functional component according to the first skip instruction.

[0134] When the running state of the functional component is in undetermined calibration, the prompt information display box 710 further comprises a first enter control 712 for obtaining a first enter instruction to perform calibration of the functional component according to the first enter instruction.

[0135] After displaying the lung function data detection main page in response to the lung function data detection start instruction of the user, the method further comprises: in response to the calibration start instruction, performing a plurality of calibration procedures corresponding to the calibration stage in the detection procedure and displaying a calibration page.

[0136] Wherein, please refer to Figure 8 , Figure 8 is an interface schematic diagram of a calibration page provided by an embodiment of the present application. As shown in Figure 8 , the calibration page 800 comprises the first display area 610, a functional component selection column 810, a calibration item selection column 820, a first calibration data display area 830, a second calibration data display area 840, and a calibration guidance information display area 850. The functional component selection column 810 is used to obtain a selection operation for calibration content, so as to calibrate the functional component corresponding to the calibration content pointed by the selection operation. The functional component selection column 810 may, for example, comprise “IOS calibration”, “PFT calibration”, “APS calibration”, and “BODY calibration” selection controls. Since the running state of the IOS is not connected, the “IOS calibration” selection control cannot obtain a selection operation. The calibration item selection column 820 is used to obtain a selection operation for a calibration item, so as to start calibration of the calibration item pointed by the selection operation. The calibration item selection column 820 may, for example, comprise a “first calibration item” and a “second calibration item”. The first calibration data display area 830 is used to display calibration data. The second calibration data display area 840 is used to display visualized calibration data. The calibration guidance information display area 850 is used to display calibration guidance information for guiding medical staff to calibrate. The calibration guidance information may, for example, comprise a text prompt information 852 of “after connecting the calibration cylinder, press the start button to calibrate!” and a picture prompt information 851 of a calibration cylinder picture. The calibration guidance information display area 850 comprises a start calibration control 853 for obtaining a calibration start instruction.

[0137] The scaling data may include, for example, actions, parameters (units), history, current, and % change. The actions may include, for example, expiration and inspiration. The parameters (units) may include, for example, volume (L), flow (L / s), and expiratory rise (L).

[0138] The scaling calibration page 800 further includes a return home control 860 and a scaling name display box 870. The return home control 860 is configured to receive a return home instruction, and the return home instruction is configured to instruct to display the lung function data detection main page. The scaling name display box 870 is configured to indicate the content of the ongoing scaling calibration, such as “APS scaling”.

[0139] After the lung function data detection main page is displayed in response to the lung function data detection start instruction of the user, the method further includes: displaying a data management page in response to a data management start instruction.

[0140] Referring to Figure 9 , Figure 9 is a schematic diagram of a data management page according to an embodiment of the present application. As shown in Figure 9 , the data management page 900 includes the first display area 610, a management item selection bar 910, and a management information display area 920. The management item selection bar 910 is configured to receive a selection operation for a management item. The management item selection bar 910 may include, for example, “software settings”, “user management”, “operation log”, “predicted value settings”, “detection settings”, and “system and device” selection controls. After the data management page 900 is displayed, when a selection operation for the “system and device” selection control is detected, the management information display area 920 includes a software information display area 921 and a device information display area 922. The software information display area 921 is configured to display software information of a lung function data detector. The device information display area 922 is configured to display component information and state information of the plurality of functional components.

[0141] The software information may include, for example, software name, software version number, database version number, system installation time, recent self-check time, SN, and installation address.

[0142] The component information may include, for example, hardware versions of functional components corresponding to IOS, PFT, APS, and BODY.

[0143] The status information may be, for example, a description of the operating status of the functional components corresponding to the IOS, PFT, APS, and BODY. The operating status of the functional components corresponding to the IOS, PFT, APS, and BODY displayed in the device information display area 922 is consistent with the operating status of the functional components corresponding to the IOS, PFT, APS, and BODY displayed in the first display area 610.

[0144] The device information display area 922 may also include a first skip control 711 and a first enter control 712 . Functional components corresponding to the first skip control 711 and the first enter control 712 in the device information display area 922 are consistent with those in the prompt information display box 710 .

[0145] The data management page 900 further includes the return to home page control 860 and a management project name display box 930 . The management project name display box 930 is used to indicate an ongoing management project, such as “system and equipment”.

[0146] It can be seen that in this example, the operating status of multiple functional components of the pulmonary function data detector is displayed through the first display area in the pulmonary function data detection main page, and the process corresponding to the at least one pulmonary function data detection stage in the detection process is obtained and started through the pulmonary function data detection process start control in the second display area, and the process corresponding to the calibration stage in the detection process is started through the calibration start control, and the system information of the pulmonary function data detector can be comprehensively managed, realizing the effective integration of the workflow in the pulmonary function data detection scenario and the detection process of the pulmonary function data detection, effectively avoiding the separation of the operation of medical staff and the detection process, greatly improving the operation convenience and work efficiency of medical staff, and improving the operation convenience and detection efficiency of pulmonary function data detection.

[0147] Step S520: obtaining a pulmonary function data detection process start instruction through the pulmonary function data detection process start control.

[0148] The pulmonary function data detection process start instruction is used to start the process corresponding to the at least one pulmonary function data detection stage in the detection process, and a single pulmonary function data detection stage corresponds to a single detection work step.

[0149] Step S530 , in response to the pulmonary function data detection process start instruction, an information entry page is displayed.

[0150] The information entry page includes a save and test control, and the save and test control is used to obtain a save and test instruction.

[0151] The information input page further comprises a first input area and a second input area, the first input area is used to acquire basic personal information of the target patient, and the second input area is used to acquire detailed information, detection history information and questionnaire information of the target patient.

[0152] In one possible embodiment, the information input page further comprises a first input area and a second input area, the first input area is used to acquire basic personal information of the target patient, and the second input area is used to acquire detailed information, detection history information and questionnaire information of the target patient.

[0153] In one possible embodiment, the information input page further comprises a first input area and a second input area, the first input area is used to acquire basic personal information of the target patient, and the second input area is used to acquire detailed information, detection history information and questionnaire information of the target patient. Figure 10 Figure 10 is an interface schematic diagram of an information input page provided by the embodiment of the present application. As shown in Figure 10 the information input page 1000 comprises the first display area 610, the first input area 1010 and the second input area 1020, the basic personal information input in the first input area 1010 can for example include ID information, name, test type, gender, date of birth, race, height, weight, arm span, predicted value model, operating physician and attending physician, the second input area 1020 comprises a first input switching control 1021, a second input switching control 1022, a third input switching control 1023, a detailed information input sub-area 1024, a save and test control 1025 and a save control 1026, the first input switching control 1021 is used to acquire a first input switching operation, the second input switching control 1022 is used to acquire a second input switching operation, the third input switching control 1023 is used to acquire a third input switching operation, the first input switching operation is used to indicate that the detailed information input in the detailed information input sub-area 1024 is currently being performed, the second input switching operation is used to indicate that the detection history information input in the detailed information input sub-area 1024 is currently being performed, and the third input switching operation is used to indicate that the questionnaire information input in the detailed information input sub-area 1024 is currently being performed. When the first input switching operation is acquired, the detailed information input in the detailed information input sub-area 1024 can for example include medical information, health records, address and contact information and other information, the medical information can for example include medical location, department, ward, social security, insurance, insurance number, the health records can for example include history diagnosis, smoking history, occupation / environmental exposure, medication history, allergen, medical reason, clinical impression, remarks, and the address and contact information can for example include province, city / district, detailed address, postcode, contact number, email, fax.

[0154] ​The information entry page 1000 further includes the return homepage control 860 and a patient search control 1030, and the patient search control 1030 is used to search for the entered patient information.

[0155] It can be seen that in the present example, the basic personal information, detailed information, test history information and questionnaire information of the target patient are obtained through the information entry page, the fragmentation of the operation is reduced, the work flow of the medical staff is smoother, the operation convenience and work efficiency of the medical staff are greatly improved, and the operation convenience and test efficiency of the lung function data test are improved.

[0156] In step S540, the patient information of the target patient entered by the user is obtained through the information entry page, and the save and test instruction is obtained.

[0157] The save and test instruction is used to start the process corresponding to the project execution stage in the test process.

[0158] In step S550, the project execution page is displayed in response to the save and test instruction.

[0159] The project execution page is used to display the lung function of the target patient in real time during the test project, and the project execution page includes a result viewing control.

[0160] The project execution page is displayed in response to the save and test instruction, including: in response to the save and test instruction of the user, the process corresponding to the project execution stage in the test process is executed and the project execution page is displayed.

[0161] In one possible embodiment, the project execution page further includes a fourth display area and a fifth display area, the fourth display area includes a plurality of test project switching controls, and the fifth display area is used to display the lung function of the target patient during the target test project, and the target test project is the test project corresponding to the test project switching control selected by the user in the plurality of test project switching controls.

[0162] Please refer to Figure 11 , Figure 11 is an interface schematic diagram of a project execution page provided by the present application. As Figure 11As shown, the project execution page 1100 includes the first display area 610, the fourth display area 1110, the fifth display area 1120, and the viewing result control 1130. The fourth display area 1110 includes a plurality of detection project switching controls 1111, which correspond to a plurality of detection projects one by one. The fifth display area 1120 includes a first graph area 1121, a second graph area 1122, an operation area 1123, and a real-time parameter area 1124. The first graph area 1121 is configured to display a first lung function data change curve of the target detection project. The second graph area 1122 is configured to display a second lung function data change curve of the target detection project. The operation area 1123 is configured to obtain a detection operation for the target detection project. The real-time parameter area 1124 is configured to display a real-time lung function detection parameter of the target patient in the target detection project. The viewing result control 1130 is configured to obtain a viewing result instruction.

[0163] The project execution page 1100 further includes the return home page control 860 and a zero-point calibration control 1140. The zero-point calibration control 1140 is configured to obtain a zero-point calibration instruction. The zero-point calibration instruction is configured to instruct to perform zero-point calibration on a functional component corresponding to a target detection project.

[0164] In the project execution stage, a medical staff can perform lung function data detection on a target patient by selecting any detection project switching control in the project execution page.

[0165] A special detection project in the plurality of detection projects has a special layout adapted to its special requirements. For example, the detection project BODY needs to perform a first sub-detection and a second sub-detection. When the first sub-detection is switched to the second sub-detection during the execution of the detection project BODY, the layout of the fifth display area 1120 in the project execution page 1100 will also change accordingly. For details, please refer to Figure 12 Figure 12 is a scene schematic diagram of another lung function data detection interface display method provided by the embodiment of the present application. As shown in Figure 12 ​As shown, when the first sub-test of the test item BODY is executed, the first graph area in the fifth display area in the project execution page 1100 displays a flow-volume change graph 1121a, and the second graph area displays a respiratory tracing graph 1122a. The operation area includes a test guidance area 1123a, a test operation area 1123b and an operation instruction area 1123c. The test guidance area 1123a displays picture guidance information of the lung picture and text guidance information of "Please enter the box and sit firmly, and close the door tightly". The test operation area 1123b includes a blocking control, a forced vital force control, an accept data control and a discard data control. The operation instruction area 1123c displays whether the exhalation time and FRC pleth meet the standards. At this time, the operation instruction area 1123c displays "Exhalation time does not meet the standard", "FRC pleth does not meet the standard", the real-time parameter area includes a detection parameter display area 1124a and a hardware performance display area 1124b, the detection parameter display area 1124a displays the resistance detection parameters, and the hardware performance display area 1124b displays the opening status of the box door, the opening status of the blocker, and the detection time. At this time, the hardware performance display area 1124b displays "box door closed", "blocker off", and "detection time: 00:05:30".

[0166] Among them, when the operation indication area 1123c displays "exhalation time meets the standard", when the second sub-test of the test item BODY is performed, the first graph area 1121 displays the flow-volume change graph 1121a and the oral pressure-change graph 1121b.

[0167] Among them, for the detection items with corresponding detection boxes preset, since the detection box integrates the complex test process as a sub-process, the corresponding detection item switching control in the project execution page 1100 is the entrance to the corresponding detection box. When entering the detection box to start executing the corresponding detection sub-process group, all corresponding execution processes will be completed. After completion, the detection item will be exited and returned to the project execution page 1100. For example, when executing the detection sub-process group corresponding to the detection item BCT with the corresponding detection box, in response to the user's selection operation of the BCT detection item switching control in the multiple detection item switching controls 1111, the BCT detection sub-interface is displayed to enable the user to execute the BCT detection item in the BCT detection sub-interface. For details, please refer to Figure 12a , Figure 12a This is a schematic diagram of a BCT detection sub-interface provided in an embodiment of the present application. Figure 12a As shown, the BCT detection sub-interface 1100 a includes a process guidance area 1101 , the first display area 610 and the fifth display area 1120 .

[0168] The flow guide area 1101 includes a plurality of flow guide switching controls 1101a corresponding to all execution flows of the BCT detection items. The plurality of flow guide switching controls 1101a are used to obtain flow switching operations. For example, the plurality of flow guide switching controls 1101a can include control experiment 11, control experiment 12, excitation experiment 21, excitation experiment 22, and diastolic experiment 31. When the user clicks the control experiment 11, the flow guide area 1101 displays the step switching control 1101b corresponding to the medication, FVC, and IOS experiment steps included in the control experiment 11, so that the user can perform the experiment in sequence by clicking the step switching control 1101b. In this way, the user can clearly proceed with the execution flow of the complex detection item by clicking the controls in the flow guide area 1101.

[0169] As can be seen, in the present example, the project execution page can freely switch between multiple detection items, which conforms to the workflow of medical personnel, reduces the fragmentation of operations, makes the workflow of medical personnel more smooth, greatly improves the operation convenience and work efficiency of medical personnel, and improves the operation convenience and detection efficiency of lung function data detection.

[0170] In step S560, the viewing result instruction is obtained through the viewing result control.

[0171] In the project execution phase, the medical personnel can issue a viewing result instruction through the viewing result control at any time.

[0172] In step S570, the result report page is displayed in response to the viewing result instruction.

[0173] The result report page is used to display the lung function data detection result of the target patient.

[0174] In response to the viewing result instruction, the result report page is displayed, including: in response to the viewing result instruction of the user, executing the flow of the corresponding result viewing phase in the detection flow and displaying the result report page.

[0175] In one possible embodiment, the result report page includes a sixth display area, a seventh display area, and an eighth display area. The sixth display area is used to display a plurality of key parameter samples obtained by executing the plurality of detection items. A single key parameter sample includes a plurality of key parameter columns. The seventh display area includes a multiple selection graph area and a single selection graph area. The multiple selection graph area is used to display a graph corresponding to at least one key parameter column currently selected by the user. The single selection graph area is used to display a graph corresponding to a single key parameter column currently selected by the user. The eighth display area is used to display the test quality of the plurality of test items.

[0176] Wherein, please refer to Figure 13 , Figure 13 is an interface schematic diagram of a result report page provided by an embodiment of the present application. As shown in Figure 13 , the result report page 1200 includes the fourth display area 1110, the viewing result control 1130, the sixth display area 1210, the seventh display area 1220 and the eighth display area 1230, the seventh display area 1220 includes the multiple selection graph area 1221 and the single selection graph area 1222, the multiple selection graph area 1221 includes a multiple selection key parameter column selection sub-area 1221a. The multiple selection key parameter column selection sub-area 1221a is used to obtain a selection operation of at least one key parameter column by a user, the single selection graph area 1222 includes a single selection key parameter column selection sub-area 1222a, the single selection key parameter column selection sub-area 1222a is used to obtain a selection operation of a single key parameter column by a user.

[0177] Wherein, the graph displayed in the multiple selection graph area 1221 is a graph corresponding to at least one key parameter column currently selected by a user in the multiple selection key parameter column selection sub-area 1221a, the graph corresponding to the at least one key parameter column selected by the user is displayed in the multiple selection graph area 1221 in different lines so as to be distinguishable, the at least one key parameter column selected by the user is also displayed in the sixth display area 1210 in different bottom colors so as to be distinguishable. The graph displayed in the single selection graph area 1222 is a graph corresponding to a single key parameter column selected by a user in the single selection key parameter column selection sub-area 1222a, the single key parameter column selected by the user is displayed in the sixth display area 1210 in different borders so as to be distinguishable. When a user changes the selection in the multiple selection key parameter column selection sub-area 1221a and the single selection key parameter column selection sub-area 1222a, the graph displayed in the multiple selection graph area 1221 and the graph displayed in the single selection graph area 1222 also change with the selection change of the user, the display of the key parameter column in the sixth display area 1210 also changes with the selection change of the user.

[0178] The multiple focus parameter columns displayed in the sixth display area 1210 may, for example, include parameters, predicted values, optimal values, (optimal / preset) %, LLN, Z-score, detection 1, detection 2, detection 3, and detection 4. The multiple selection focus parameter column selection sub-area 1221a may, for example, check at least one of detection 1, detection 2, detection 3, and detection 4, so as to display an impedance spectrum graph or coherence graph of the checked focus parameter column. The single selection focus parameter column selection sub-area 1222a may, for example, check any one of detection 1, detection 2, detection 3, and detection 4, so as to display an impedance volume graph, result time trend graph, main data time trend, structure parameter graph, USG, or spectrum differential mean graph of the checked focus parameter column.

[0179] The test quality displayed in the eighth display area 1230 may, for example, include test quality and system evaluation. The test quality may, for example, include overall test quality, quality standard, evaluation conclusion, and evaluation items. The overall test quality may, for example, be “B”. The quality standard may, for example, be “ATS & ERS 2005”. The evaluation conclusion may, for example, be “results are more reliable” or “effective number of detections is insufficient, Z5MV% is XX”. The evaluation items may, for example, be “coughing during breathing”.

[0180] The result report page 1200 further includes a ninth display area 1240 for displaying multiple detection item result switching controls 1241. The multiple detection item result switching controls 1241 correspond to multiple detection items one by one. The focus parameter sample corresponding to the detection item corresponding to the detection item result switching control selected by the user is displayed in the sixth display area 1210. Meanwhile, the user can arbitrarily select a graph corresponding to a focus parameter column in the multiple selection graph area 1221 and the single selection graph area 1222.

[0181] The result report page 1200 further includes an editing control 1250 and a report generation control 1260. The editing control 1250 is used to obtain a focus parameter column editing operation. The report generation control 1260 is used to obtain a report generation operation. When the editing control 1250 obtains the focus parameter column editing operation, all parameter columns are displayed, and the user can arbitrarily configure a parameter column to be viewed, i.e., a focus parameter column. When the report generation control 1260 obtains the report generation operation, the detection process corresponding to the report generation stage is executed and a report printing page is displayed in response to the report generation operation.

[0182] It can be seen that in the present application, the server acquires a preset workflow, the workflow includes a plurality of work steps; a detection process is determined according to the plurality of work steps, the detection process includes a plurality of detection stages, and a single detection stage corresponds to a single work step; when a lung function data detection start instruction is detected, the detection process is executed to perform lung function data detection on the target patient through the lung function data detector to obtain the lung function data detection result of the target patient. In this way, the detection process is determined according to the work step of performing lung function data detection, so that the target patient is detected by executing the detection process when the lung function data detection start instruction is detected, and the effective integration of the work process in the lung function data detection scene and the detection process of the lung function data detection is realized. The operation and detection process of the medical staff are effectively avoided, the operation convenience and work efficiency of the medical staff are greatly improved, and the operation convenience and detection efficiency of the lung function data detection are improved.

[0183] It can be seen that in the present application, the server acquires a preset workflow, the workflow includes a plurality of work steps; a detection process is determined according to the plurality of work steps, the detection process includes a plurality of detection stages, and a single detection stage corresponds to a single work step; when a lung function data detection start instruction is detected, the detection process is executed to perform lung function data detection on the target patient through the lung function data detector to obtain the lung function data detection result of the target patient. In this way, the detection process is determined according to the work step of performing lung function data detection, so that the target patient is detected by executing the detection process when the lung function data detection start instruction is detected, and the effective integration of the work process in the lung function data detection scene and the detection process of the lung function data detection is realized. The operation and detection process of the medical staff are effectively avoided, the operation convenience and work efficiency of the medical staff are greatly improved, and the operation convenience and detection efficiency of the lung function data detection are improved.

[0184] The above mainly introduces the scheme of the embodiment of the present application from the perspective of the method side execution process. It can be understood that in order to realize the above functions, the server includes the hardware structure and / or software module corresponding to the execution of each function. Those skilled in the art should easily realize that the units and algorithm steps of each example described in combination with the embodiments provided in the present application can be realized in the form of hardware or combination of hardware and computer software. Whether a certain function is executed in hardware or computer software driven hardware depends on the specific application and design constraints of the technical solution. Professional technicians can use different methods to realize the described functions for each specific application, but such implementation should not be considered beyond the scope of the present application.

[0185] Consistent with the above-mentioned embodiments, please refer to Figure 14 , Figure 14 is a functional unit composition block diagram of a lung function data detection device provided by the embodiment of the present application, as Figure 14As shown, the lung function data detection apparatus 1400 comprises: a first receiving unit 1401 configured to acquire a preset workflow, the workflow comprising a plurality of working steps; a first processing unit 1402 configured to determine a detection procedure according to the plurality of working steps, the detection procedure comprising a plurality of detection stages, a single detection stage corresponding to a single working step; when a lung function data detection start instruction is detected, the detection procedure is executed to perform lung function data detection on a target patient by the lung function data detector to obtain a lung function data detection result of the target patient.

[0186] In a possible implementation, the plurality of working steps comprises a plurality of operation working steps and a plurality of detection working steps, a single operation working step being a working step for ensuring normal operation of the lung function data detector, and a single detection working step being a working step for performing lung function data detection by the lung function data detector. In the determination of the detection procedure according to the plurality of working steps, the first processing unit 1402 is specifically configured to: determine at least one function detection stage according to the plurality of operation working steps, the at least one function detection stage comprising a self-check preheating stage and a calibration stage; determine at least one lung function data detection stage according to the plurality of detection working steps, the at least one lung function data detection stage comprising an information input stage, a project execution stage, a result viewing stage and a report printing stage; and determine the detection procedure according to the at least one function detection stage and the at least one lung function data detection stage.

[0187] In a possible implementation, the project execution stage comprises a plurality of detection projects, and the detection procedure comprises at least one detection sub-procedure group, a single detection sub-procedure group being used to indicate a project execution procedure of a corresponding detection project. In the determination of the detection procedure according to the at least one function detection stage and the at least one lung function data detection stage, the first processing unit 1402 is specifically configured to: determine at least one detection cartridge corresponding to the plurality of detection projects; and determine the at least one detection sub-procedure group according to the at least one detection cartridge.

[0188] In a possible implementation, the lung function data detector further includes a plurality of functional components, the self-check preheating phase includes a plurality of self-check preheating requirements, and the detection procedure includes a plurality of self-check preheating procedures. The plurality of self-check preheating requirements correspond to the plurality of functional components one by one, and a single self-check preheating procedure is used to indicate a corresponding self-check preheating execution procedure of a corresponding functional component. In the determination of the detection procedure according to the at least one functional detection phase and the at least one lung function data detection phase, the first processing unit 1402 is specifically configured to determine a plurality of self-check preheating tasks according to a plurality of preset self-check preheating logics and the plurality of self-check preheating requirements, and the plurality of self-check preheating logics correspond to the plurality of functional components one by one; and determine the plurality of self-check preheating procedures according to the plurality of self-check preheating tasks and a self-check preheating start condition of each functional component in the plurality of functional components.

[0189] In a possible implementation, in the execution of the detection procedure to perform lung function data detection on a target patient when the lung function data detection start instruction is detected, the first processing unit 1402 is specifically configured to: acquire running information of each functional component; and determine a running state of each functional component according to the running information of each functional component.

[0190] In a possible implementation, in the execution of the detection procedure to perform lung function data detection on a target patient when the lung function data detection start instruction is detected, the first processing unit 1402 is specifically configured to: if a first skip instruction is detected when the self-check preheating phase is in, stop execution of the plurality of self-check preheating procedures.

[0191] In a possible implementation, in the execution of the detection procedure to perform lung function data detection on a target patient when the lung function data detection start instruction is detected, the first processing unit 1402 is specifically configured to: if a first enter instruction is detected when the calibration phase is in, acquire a calibration operation of a user; and perform calibration according to the calibration operation.

[0192] It can be understood that, since the method embodiments and the device embodiments are different presentation forms of the same technical concept, the content of the method embodiment part in the present application should be synchronously adapted to the device embodiment part, which will not be repeated here.

[0193] In the case of using an integrated unit, as shown in Figure 15 , the functional unit composition block diagram of another lung function data detection device provided by the embodiment of the present application is shown in Figure 15 Figure 15 ​In some embodiments, the lung function data detection apparatus 1400 includes a processing module 1512 and a communication module 1511. The processing module 1512 is configured to control and manage actions of the lung function data detection apparatus 1400, such as performing the steps of the first receiving unit 1401, the first processing unit 1402, and / or other processes for performing the techniques described herein. The communication module 1511 is configured to support interactions between the lung function data detection apparatus 1400 and other devices. As Figure 15 As shown, the lung function data detection apparatus 1400 can also include a storage module 1513 configured to store program codes and data of the lung function data detection apparatus 1400.

[0194] The processing module 1512 can be a processor or a controller, such as a Central Processing Unit (CPU), a general-purpose processor, a Digital Signal Processor (DSP), an ASIC, an FPGA, or other programmable logic device, transistor logic device, hardware component, or any combination thereof. It can implement or execute various exemplary logical blocks, modules, and circuits described in connection with the disclosure. The processor can also be a combination of components that implement computing functions, such as a combination of one or more microprocessors, a combination of a DSP and a microprocessor, and the like. The communication module 1511 can be a transceiver, an RF circuit, a communication interface, or the like. The storage module 1513 can be a memory.

[0195] All related content of each scenario involved in the above method embodiments can be cited to the function description of the corresponding functional module, which will not be repeated here. The above lung function data detection apparatus 1400 can perform the above lung function data detection method. Figure 3 As shown in the lung function data detection method.

[0196] The above-described embodiments can be implemented in whole or in part by software, hardware, firmware, or any combination thereof. When implemented by software, the above-described embodiments can be implemented in whole or in part in the form of a computer program product. The computer program product includes one or more computer instructions or computer programs. When the computer instructions or computer programs are loaded or executed on a computer, the processes or functions described in the embodiments of the present application are wholly or partially generated. The computer can be a general-purpose computer, a special-purpose computer, a computer network, or other programmable devices. The computer instructions can be stored in a computer-readable storage medium or transferred from one computer-readable storage medium to another, for example, the computer instructions can be transferred from one website, computer, server or data center to another website, computer, server or data center through wired or wireless means. The computer-readable storage medium can be any available medium accessible by a computer or a data storage device such as a server, data center, etc. containing one or more available medium collections. The available medium can be a magnetic medium (e.g., floppy disk, hard disk, magnetic tape), an optical medium (e.g., DVD), or a semiconductor medium. The semiconductor medium can be a solid state disk.

[0197] Figure 16 is a structural block diagram of a server provided by an embodiment of the present application. As shown in Figure 16 the server 120 can include one or more of the following components: a processor 210, a memory 220 coupled to the processor 210, wherein the memory 220 can store one or more computer programs 221, and the one or more computer programs 221 can be configured to be executed by the one or more processors 210 to implement the methods described in the above embodiments.

[0198] The processor 210 can include one or more processing cores. The processor 210 connects various parts within the server 120 by various interfaces and lines, performs various functions of the server 120 and processes data by running or executing instructions, programs, code sets or instruction sets stored in the memory 220, and calling data stored in the memory 220. Alternatively, the processor 210 can be implemented in at least one of a hardware form of a digital signal processing (DSP), a field-programmable gate array (FPGA), a programmable logic array (PLA). The processor 210 can be integrated with a combination of one or more of a central processing unit (CPU), a graphics processing unit (GPU), and a modem. Among them, the CPU mainly processes operating systems, user interfaces, and application programs; the GPU is responsible for rendering and drawing display content; and the modem is used for processing wireless communication. It can be understood that the above-mentioned modem can also not be integrated into the processor 210, but can be realized by a separate communication chip.

[0199] The memory 220 can include a random access memory (RAM) and can also include a read-only memory (ROM). The memory 220 can be used to store instructions, programs, codes, code sets or instruction sets. The memory 220 can include a program storage area and a data storage area, wherein the program storage area can store instructions for implementing an operating system, instructions for implementing at least one function (such as a touch function, a sound playing function, an image playing function, etc.), instructions for implementing the above-mentioned various method embodiments, etc. The data storage area can also store data created by the server 120 in use, etc.

[0200] It can be understood that the server 120 can include more or fewer structural elements than the above structural block diagram, which is not limited herein. The embodiments of the present application provide a computer readable storage medium having a computer program / instruction stored thereon, which, when executed by a processor, implements the steps of the method described in any possible embodiment.

[0201] It should be understood that in various embodiments of the present application, the size of the sequence number of the above-mentioned processes does not mean the order of execution, and the execution order of the processes should be determined according to their functions and internal logic, and should not constitute any limitation on the implementation process of the embodiments of the present application.

[0202] In several embodiments provided in the present application, it should be understood that the disclosed method, device and system can be implemented in other manners. For example, the described device embodiments are merely illustrative; for example, the division of the units is merely logical function division; in actual implementation, other division manners can be adopted; for example, a plurality of units or components can be combined or integrated into another system, or some features can be ignored or not executed. In addition, the displayed or discussed mutual couplings or direct couplings or communication connections can be indirect couplings or communication connections through some interfaces, devices or units, and can be in electrical, mechanical or other forms.

[0203] The units described as separated components can or can not be physically separated, and the components displayed as units can or can not be physical units, i.e., can be located in one place, or can be distributed on a plurality of network units. Some or all of the units can be selected according to actual needs to achieve the purposes of the embodiments of the present application.

[0204] In addition, each function unit in the various embodiments of the present application can be integrated in a processing unit, or each unit can be physically separated, or two or more units can be integrated in one unit. The integrated unit can be implemented in the form of hardware, or in the form of hardware plus software function units.

[0205] The integrated unit in the form of software function unit can be stored in a computer readable storage medium. The software function unit is stored in a storage medium, including a plurality of instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) to execute part of steps of the method according to various embodiments of the present application. The aforementioned storage medium includes a U disk, a mobile hard disk, a magnetic disk, an optical disk, a volatile memory or a non-volatile memory. The non-volatile memory can be a read-only memory (ROM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), an electrically EPROM (EEPROM) or a flash memory. The volatile memory can be a random access memory (RAM) used as an external cache. By way of example but not limitation, many forms of random access memory (RAM) can be used, such as static random access memory (SRAM), dynamic random access memory (DRAM), synchronous dynamic random access memory (SDRAM), double data rate SDRAM (DDR SDRAM), enhanced SDRAM (ESDRAM), synchlink DRAM (SLDRAM), and direct rambus RAM (DRAM) and various other media that store program codes.

[0206] Although the present application is disclosed as above, the present application is not limited thereto. Any person skilled in the art can easily conceive variations or substitutions without departing from the spirit and scope of the present application, and various modifications can be made, including combinations of different functions and implementation steps, including software and hardware implementations, which are all within the scope of the present application.

Claims

1. A method for detecting lung function data, characterized in that: A server is applied to a pulmonary function data detection system, wherein the pulmonary function data detection system includes a pulmonary function data detector and the server, and the method includes: Obtaining a preset workflow, wherein the workflow includes multiple working steps; Determine a detection process according to the multiple working steps, wherein the detection process includes multiple detection stages, and each detection stage corresponds to a single working step; When a pulmonary function data detection start instruction is detected, the detection process is executed to perform pulmonary function data detection on the target patient through the pulmonary function data detector to obtain the pulmonary function data detection result of the target patient.

2. The method according to claim 1, characterized in that The multiple working steps include multiple operating working steps and multiple detecting working steps, wherein a single operating working step is a working step for ensuring the normal operation of the pulmonary function data detector, and a single detecting working step is a working step for performing pulmonary function data detection by the pulmonary function data detector. Determining the detection process according to the multiple working steps includes: Determining at least one function detection phase according to the plurality of operation steps, wherein the at least one function detection phase includes a self-test warm-up phase and a calibration phase; Determining at least one pulmonary function data detection stage according to the multiple detection work steps, wherein the at least one pulmonary function data detection stage includes an information entry stage, a project execution stage, a result viewing stage, and a report printing stage; The detection process is determined according to the at least one function detection stage and the at least one lung function data detection stage.

3. The method according to claim 2, characterized in that The project execution stage includes multiple test items, the test process includes at least one test sub-process group, and a single test sub-process group is used to indicate the project execution process of the corresponding test item. Determining the test process according to the at least one function test stage and the at least one pulmonary function data test stage includes: Determining at least one detection box corresponding to the plurality of detection items; The at least one detection sub-process group is determined according to the at least one detection box.

4. The method according to claim 3, characterized in that The pulmonary function data detector further includes multiple functional components, the self-test preheating stage includes multiple self-test preheating requirements, the detection process includes multiple self-test preheating processes, the multiple self-test preheating requirements correspond one-to-one to the multiple functional components, and a single self-test preheating process is used to indicate the self-test preheating execution process corresponding to the corresponding functional component. Determining the detection process according to the at least one functional detection stage and the at least one pulmonary function data detection stage includes: Determining a plurality of self-test and preheating tasks according to a plurality of preset self-test and preheating logics and the plurality of self-test and preheating requirements, wherein the plurality of self-test and preheating logics correspond one-to-one to the plurality of functional components; The plurality of self-test and preheating processes are determined according to the plurality of self-test and preheating tasks and the self-test and preheating start condition corresponding to each of the plurality of functional components.

5. The method according to claim 4, characterized in that When the pulmonary function data detection start instruction is detected, the detection process is executed to perform pulmonary function data detection on the target patient, including: Obtaining the operation information of each functional component; The operating status of each functional component is determined according to the operating information of each functional component.

6. The method according to claim 5, characterized in that When the pulmonary function data detection start instruction is detected, the detection process is executed to perform pulmonary function data detection on the target patient, including: If a first skip instruction is detected during the self-test and preheating phase, the execution of the plurality of self-test and preheating processes is stopped.

7. The method according to claim 6, characterized in that When the pulmonary function data detection start instruction is detected, the detection process is executed to perform pulmonary function data detection on the target patient, including: If a first entry instruction is detected during the calibration phase, a calibration operation by the user is acquired; and calibration is performed according to the calibration operation.

8. A method for displaying a pulmonary function data detection interface, characterized in that: A terminal device is used in a pulmonary function data detection system, wherein the pulmonary function data detection system includes a pulmonary function data detector and the terminal device, and the method includes: In response to a user's pulmonary function data detection start instruction, displaying a pulmonary function data detection main page, the pulmonary function data detection main page including a pulmonary function data detection process start control; Obtaining a pulmonary function data detection process start instruction through the pulmonary function data detection process start control; In response to the pulmonary function data detection process start instruction, an information entry page is displayed, wherein the information entry page includes a save and test control, and the save and test control is used to obtain the save and test instruction; Acquiring the patient information of the target patient and the save and test instruction entered by the user through the information entry page; In response to the save and test instruction, displaying the project execution page, the project execution page is used to display the lung function status of the target patient in real time during the test project, and the project execution page includes a view result control; Obtaining a view result instruction through the view result control; In response to the view result instruction, a result report page is displayed, wherein the result report page is used to display the lung function data test results of the target patient.

9. The method according to claim 8, characterized in that The pulmonary function data detector also includes multiple functional components, and the pulmonary function data detection main page also includes a first display area, a second display area and a third display area; the first display area includes multiple status display sub-areas, and each status display sub-area in the multiple status display sub-areas is used to display the operating status of the corresponding functional component in the multiple functional components; the second display area includes the pulmonary function data detection process start control, the calibration start control and the data management start control, the calibration start control is used to obtain the calibration start instruction, and the calibration start instruction is used to instruct the pulmonary function data detector to immediately enter the calibration phase, the data management start control is used to obtain the data management start instruction, and the data management start instruction is used to manage the system information of the pulmonary function data detector; the third display area includes an exercise start control, the exercise start control is used to obtain the exercise start instruction, and the exercise start instruction is used to instruct the pulmonary function data detector to enter the exercise mode, and the exercise mode is used to guide the target patient to perform movement exercises before the test.

10. The method according to claim 9, characterized in that The information entry page also includes a first input area and a second input area. The first input area is used to obtain the basic personal information of the target patient, and the second input area is used to obtain the detailed information, test history information and questionnaire information of the target patient.

11. The method according to claim 10, characterized in that The project execution page also includes a fourth display area and a fifth display area. The fourth display area includes multiple test item switching controls, and the fifth display area is used to display the lung function status of the target patient during the target test item. The target test item is the test item corresponding to the test item switching control currently selected by the user from the multiple test item switching controls.

12. The method according to claim 11, characterized in that The result report page includes a sixth display area, a seventh display area and an eighth display area. The sixth display area is used to display multiple key parameter samples obtained by executing the multiple detection items. A single key parameter sample includes multiple key parameter columns. The seventh display area includes a multiple-selection graph area and a single-selection graph area. The multiple-selection graph area is used to display the graph corresponding to at least one key parameter column currently selected by the user. The single-selection graph area is used to display the graph corresponding to the single key parameter column currently selected by the user. The eighth display area is used to display the test quality of the multiple test items.

13. A lung function data detection device, characterized in that: A server used in a pulmonary function data detection system, wherein the pulmonary function data detection system includes a pulmonary function data detector and the server, and the device includes: A first receiving unit is configured to obtain a preset workflow, where the workflow includes a plurality of working steps; The first processing unit is used to determine a detection process based on the multiple working steps, where the detection process includes multiple detection stages, and a single detection stage corresponds to a single working step; when a pulmonary function data detection start instruction is detected, the detection process is executed to perform pulmonary function data detection on the target patient through the pulmonary function data detector to obtain the pulmonary function data detection result of the target patient.

14. A pulmonary function data detection interface display device, characterized in that: A terminal device used in a pulmonary function data detection system, wherein the pulmonary function data detection system includes a pulmonary function data detector and the terminal device, wherein the device includes: a second receiving unit, configured to display a pulmonary function data detection main page in response to a pulmonary function data detection start instruction from a user, wherein the pulmonary function data detection main page includes a pulmonary function data detection process start control; The second processing unit is used to obtain a pulmonary function data detection process start instruction through the pulmonary function data detection process start control; in response to the pulmonary function data detection process start instruction, display an information entry page, the information entry page includes a save and test control, and the save and test control is used to obtain the save and test instruction; obtain the patient information of the target patient entered by the user and the save and test instruction through the information entry page; in response to the save and test instruction, display the project execution page, the project execution page is used to display the pulmonary function status of the target patient during the detection project in real time, the project execution page includes a view result control; obtain a view result instruction through the view result control; in response to the view result instruction, display a result report page, the result report page is used to display the pulmonary function data detection results of the target patient.