Holographic imaging diagnostic method, system and application for fetal monitoring

By building a fetal monitoring imaging diagnosis system, fetal position positioning and abnormal analysis are realized, the problem of difficulty in retrieving remote data in existing fetal monitoring diagnosis is solved, and diagnostic efficiency and intelligence are improved.

CN115281616BActive Publication Date: 2025-08-26GUANGZHOU KESONG MEDICAL INTELLIGENT TECH CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202210938848.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-05
Publication Date
2025-08-26
Estimated Expiration
2042-08-05

AI Technical Summary

Technical Problem

The existing fetal monitoring diagnosis cannot remotely retrieve data, resulting in abnormal problems that cannot be handled in time, increasing the intensity of manual labor and posing safety hazards, and insufficient intelligence level.

Method used

A fetal monitoring imaging diagnosis system is built, the fetal position is positioned through a single acquisition device, multiple display devices are used to simulate 3D image imaging, and the model data is backed up through the database, combining PLC controller and information control terminal to achieve real-time data interoperability and abnormality analysis.

Benefits of technology

It improves data accuracy and diagnostic efficiency, reduces manual labor intensity, shortens work flow, and enhances the intelligence level of fetal monitoring diagnosis.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115281616B_ABST
    Figure CN115281616B_ABST
Patent Text Reader

Abstract

The present invention discloses a holographic imaging diagnosis method, system and application for fetal monitoring, which relates to the field of medical diagnosis technology. The method includes the following steps: S1, constructing a fetal monitoring imaging diagnosis system, and locating the fetal heartbeat in a specified pregnant woman through a single acquisition device, thereby locating the fetal position; S2, simulating the acquisition of the fetal contour. The present invention is provided with a fetal monitoring imaging diagnosis system and a holographic imaging diagnosis technology for fetal monitoring, which complement each other and are used in conjunction with each other. The fetal contour data is formed twice by a sub-end forming module and a terminal forming module, thereby improving the accuracy of the final data, reducing potential harm to pregnant women, shortening the overall workflow, and accelerating the efficiency of diagnostic work. The fetal monitoring data and corresponding analysis results are managed, visualized and stored, which helps to realize fetal monitoring information management through Internet management and control, and improve the intelligence level of fetal monitoring diagnosis.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] The present invention belongs to the field of medical diagnosis technology, and specifically relates to a holographic imaging diagnosis method, system and application for fetal monitoring. Background Art

[0002] Fetal monitoring, the full name of which is fetal heart rate monitoring, is a way to check whether there is intrauterine hypoxia. Existing data cannot be retrieved remotely during fetal monitoring diagnosis, and abnormal problems that occur therein cannot be dealt with in a timely manner. It is impossible to locate and search for pregnant women with problems in the first place, which makes the overall work process cumbersome and increases the intensity of manual labor. At the same time, there are certain safety hazards, and the overall intelligent level does not meet the requirements. Existing data cannot be retrieved remotely during fetal monitoring diagnosis, and abnormal problems that occur therein cannot be dealt with in a timely manner. It is impossible to locate and search for pregnant women with problems in the first place, which makes the overall work process cumbersome and increases the intensity of manual labor. At the same time, there are certain safety hazards, and the overall intelligent level does not meet the requirements. Therefore, the present invention needs to design a holographic imaging diagnosis method, system and application for fetal monitoring to solve the above problems. Summary of the Invention

[0003] The purpose of the present invention is to provide a holographic imaging diagnosis method, system and application for fetal monitoring in order to solve the above problems, which solves the problems mentioned in the background technology that the data cannot be retrieved remotely during fetal monitoring diagnosis, abnormal problems cannot be dealt with in a timely manner, and pregnant women with problems cannot be located and found in the first time, which makes the overall workflow cumbersome and increases the intensity of manual labor. At the same time, there are certain safety hazards and the overall intelligence level does not meet the required level.

[0004] In order to solve the above problems, the present invention provides a technical solution:

[0005] The holographic imaging diagnostic method for fetal monitoring comprises the following steps:

[0006] S1. Build a fetal monitoring imaging diagnostic system that uses a single acquisition device to locate the fetal heartbeat in a designated pregnant woman, thereby locating the fetal position;

[0007] S2. Simulate the collection of the fetal outline, simulate 3D imaging of the collected data through a display device, and display the model;

[0008] S3. Receive multiple model data sent by multiple display devices and back them up through the database. If there is no abnormal change in the model data, no adjustment is made. If there is an abnormal change in the model data, locate and analyze the abnormal model data and obtain the analysis results.

[0009] The display device in step S2 is one or more of a mobile phone, a display screen, and a computer.

[0010] The abnormal changes in step S3 include increased baseline variability, decreased baseline variability, early deceleration, mild variable deceleration, or severe variable deceleration.

[0011] A holographic imaging diagnostic system for fetal monitoring, comprising a PLC controller, a fetal monitoring information control terminal, a fetal monitoring information control sub-terminal, and a collection terminal. The fetal monitoring information control terminal maintains real-time data communication with the fetal monitoring information control sub-terminal and the collection terminal via the Internet;

[0012] The fetal monitoring information control terminal is used to receive positioning data, preliminary forming data and abnormal data sent by the fetal monitoring information control sub-terminal, perform corresponding processing, and maintain real-time data communication with the fetal monitoring information control sub-terminal and the collection terminal through the Internet;

[0013] The fetal monitoring information control sub-terminal is used to receive the collected data sent by the collection terminal, perform preliminary shaping, positioning and identify whether it is abnormal. At the same time, the fetal monitoring information control sub-terminal sends the positioning data, preliminary shaping data and abnormal data to the fetal monitoring information control terminal;

[0014] The acquisition terminal is used to collect the contour data of the fetus in the pregnant woman's body and send the data to the fetal monitoring information control sub-terminal.

[0015] Among them, the output end of the fetal monitoring information control terminal is electrically connected to the input end of the fetal monitoring information control sub-terminal, the output end of the fetal monitoring information control sub-terminal is electrically connected to the input end of the acquisition terminal, and the output end of the PLC controller is electrically connected to the input end of the fetal monitoring information control terminal.

[0016] The fetal monitoring information control sub-terminal includes a sub-terminal display module, a sub-terminal forming module, a sub-terminal backup module, and a sub-terminal positioning module. The output end of the sub-terminal forming module is electrically connected to the input end of the sub-terminal display module, the output end of the sub-terminal display module is electrically connected to the input end of the sub-terminal backup module, the output end of the sub-terminal display module is communicatively connected to the input end of the fetal monitoring information control terminal, the output end of the sub-terminal backup module is communicatively connected to the input end of the fetal monitoring information control terminal, and the output end of the sub-terminal positioning module is electrically connected to the input end of the sub-terminal backup module.

[0017] The sub-end display module is used to receive the molding data sent by the sub-end molding module, perform visual display, and add corresponding descriptions if there is no abnormality. At the same time, the sub-end display module sends the molding data and description data to the sub-end backup module for backup processing. If there is an increase in baseline variation, a decrease in baseline variation, an early deceleration, a mild variable deceleration, or a severe variable deceleration abnormality, a corresponding description is added. At the same time, the sub-end display module sends the molding data and description data to the fetal monitoring information control terminal for remote processing;

[0018] The sub-end shaping module is used to receive the real-time fetal acquisition data sent by the acquisition terminal, perform preliminary simulation of the fetal outline 3D image shaping processing, and at the same time, the sub-end shaping module sends the shaping image to the inside of the sub-end display module;

[0019] The sub-end backup module is used to receive the shaping data sent by the sub-end display module, and is also used to receive the positioning data sent by the sub-end positioning module, and perform corresponding backup. The sub-end backup module simultaneously sends the shaping data and positioning data to the fetal monitoring information control terminal;

[0020] The sub-end positioning module is integrated into the sub-end forming module, and simultaneously locates and records the collecting equipment while collecting fetal data. At the same time, the sub-end positioning module sends the positioning data to the sub-end backup module for backup processing.

[0021] The data collection terminal is one or more of a handheld fetal monitoring detector, a medical fetal monitoring device and a fetal heart rate monitoring belt.

[0022] The fetal monitoring information control terminal includes a terminal display module, a terminal forming module, a terminal backup module and a terminal positioning module. The output end of the terminal backup module is electrically connected to the input end of the terminal forming module, the output end of the terminal backup module is electrically connected to the input end of the terminal positioning module, and the output end of the terminal forming module is electrically connected to the input end of the terminal display module.

[0023] The terminal display module is used to receive the holographic forming model sent by the terminal forming module and perform visual display; the terminal display module is also used to receive the holographic forming image and comparison result sent by the terminal forming module and perform visual display;

[0024] The terminal forming module is used to receive the forming data sent by the terminal backup module, perform comprehensive holographic simulated 3D image forming processing on the fetal outline, and at the same time, the terminal forming module sends the formed image to the terminal display module; the terminal forming module is also used to receive abnormal data sent by the terminal backup module, re-perform comprehensive holographic simulated 3D image forming processing on the fetal outline, and compare it with the preliminary forming data, and at the same time, the terminal forming module sends the holographic forming image and the comparison result to the terminal display module;

[0025] The terminal backup module is used to receive the real-time shaping data, positioning data and abnormal data sent by the fetal monitoring information control sub-terminal and perform a backup again; the terminal backup module is used to send the shaping data and abnormal data to the terminal shaping module, and the terminal backup module is also used to send the positioning data to the terminal positioning module;

[0026] The terminal positioning module is used to receive a plurality of positioning data sent by the terminal backup module.

[0027] The mobile phone, display screen, computer, handheld fetal monitoring detector, medical fetal monitoring monitor and fetal heart rate monitoring belt are all electrically connected to the PLC controller.

[0028] Application of a holographic imaging diagnosis system for fetal monitoring, and the holographic imaging diagnosis method for fetal monitoring are applied to the fetal monitoring imaging diagnosis system.

[0029] The beneficial effects of the present invention are as follows: the present invention is provided with a fetal monitoring imaging diagnosis system and a holographic imaging diagnosis technology for fetal monitoring, and the fetal contour data is formed and processed twice by the sub-end forming module and the terminal forming module, thereby improving the accuracy of the final data. The sub-end positioning module and the terminal positioning module are used in conjunction with each other, so that when an abnormal model is found during use, the position can be accurately located at the first time, which not only reduces the potential harm to pregnant women, but also shortens the overall workflow and speeds up the diagnostic work efficiency. The fetal monitoring data and the corresponding analysis results are managed, visualized and stored, which helps to realize fetal monitoring information management through Internet management and control, and improve the intelligence level of fetal monitoring diagnosis. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] For ease of explanation, the present invention is described in detail with reference to the following specific implementations and accompanying drawings.

[0031] Figure 1 This is the overall topological diagram of the holographic imaging diagnostic method, system and application for fetal monitoring of the present invention;

[0032] Figure 2 It is a topological diagram of the holographic imaging diagnosis method and system for fetal monitoring and the fetal monitoring imaging diagnosis system used in the present invention. DETAILED DESCRIPTION

[0033] like Figure 1 and Figure 2 As shown, this specific embodiment adopts the following technical solutions:

[0034] The holographic imaging diagnostic method for fetal monitoring comprises the following steps:

[0035] S1. Construct a fetal monitoring imaging diagnostic system that uses a single acquisition device to locate the fetal heartbeat in a specified pregnant woman, thereby locating the fetus's position. The fetal monitoring imaging diagnostic system includes a PLC controller, a fetal monitoring information control terminal, a fetal monitoring information control sub-terminal, and an acquisition terminal. The fetal monitoring information control terminal maintains real-time data communication with the fetal monitoring information control sub-terminal and the acquisition terminal via the Internet.

[0036] S2. Simulate the fetal contour collection, simulate 3D imaging of the collected data through a display device, and display the model. The display device is one or more of a mobile phone, a display screen, and a computer;

[0037] S3. Receive multiple model data sent by multiple display devices and back them up through a database. If there is no abnormal change in the model data, no adjustment is made. If there is an abnormal change in the model data, locate and analyze the abnormal model data and obtain analysis results. Abnormal changes include increased baseline variation, decreased baseline variation, early deceleration, mild variable deceleration, or severe variable deceleration.

[0038] Among them, the fetal monitoring information control terminal is used to receive the positioning data, preliminary shaping data and abnormal data sent by the fetal monitoring information control sub-terminal, perform corresponding processing, and maintain real-time data exchange with the fetal monitoring information control sub-terminal and the collection terminal through the Internet; the fetal monitoring information control sub-terminal is used to receive the collection data sent by the collection terminal, perform preliminary shaping, positioning and identify whether it is abnormal, and at the same time, the fetal monitoring information control sub-terminal sends the positioning data, preliminary shaping data and abnormal data to the inside of the fetal monitoring information control terminal; the collection terminal is used to collect the contour data of the fetus in the pregnant woman's body and send the data to the fetal monitoring information control sub-terminal, the output end of the fetal monitoring information control terminal is electrically connected to the input end of the fetal monitoring information control sub-terminal, the output end of the fetal monitoring information control sub-terminal is electrically connected to the input end of the collection terminal, and the output end of the PLC controller is electrically connected to the input end of the fetal monitoring information control terminal.

[0039] Wherein, the fetal monitoring information control sub-terminal includes a sub-terminal display module, a sub-terminal molding module, a sub-terminal backup module and a sub-terminal positioning module. The output end of the sub-terminal molding module is electrically connected to the input end of the sub-terminal display module, the output end of the sub-terminal display module is electrically connected to the input end of the sub-terminal backup module, the output end of the sub-terminal display module is communicatively connected to the input end of the fetal monitoring information control terminal, the output end of the sub-terminal backup module is communicatively connected to the input end of the fetal monitoring information control terminal, and the output end of the sub-terminal positioning module is electrically connected to the input of the sub-terminal backup module; the sub-terminal display module is used to receive the molding data sent by the sub-terminal molding module for visual display. If there is no abnormality, a corresponding description is added. At the same time, the sub-terminal display module sends the molding data and the description data to the sub-terminal backup module for backup processing. If there is an increase in baseline variation, a decrease in baseline variation, early deceleration, mild variation deceleration or severe The sub-end display module sends the molding data and the description data to the fetal monitoring information control terminal for remote processing; the sub-end molding module is used to receive the real-time fetal acquisition data sent by the acquisition terminal, and perform preliminary simulation of the fetal outline 3D image molding processing, and the sub-end molding module sends the molding image to the sub-end display module; the sub-end backup module is used to receive the molding data sent by the sub-end display module, and is also used to receive the positioning data sent by the sub-end positioning module, and perform corresponding backup, and the sub-end backup module sends the molding data and the positioning data to the fetal monitoring information control terminal at the same time; the sub-end positioning module is integrated in the sub-end molding module, and simultaneously locates and records the acquisition equipment while collecting fetal data, and the sub-end positioning module sends the positioning data to the sub-end backup module for backup processing.

[0040] The data collection terminal is one or more of a handheld fetal monitoring detector, a medical fetal monitoring device and a fetal heart rate monitoring belt.

[0041] Wherein, the fetal monitoring information control terminal includes a terminal display module, a terminal forming module, a terminal backup module and a terminal positioning module, the output end of the terminal backup module is electrically connected to the input end of the terminal forming module, the output end of the terminal backup module is electrically connected to the input end of the terminal positioning module, and the output end of the terminal forming module is electrically connected to the input end of the terminal display module; the terminal display module is used to receive the holographic forming model sent by the terminal forming module for visual display; the terminal display module is also used to receive the holographic forming image and comparison result sent by the terminal forming module for visual display; the terminal forming module is used to receive the forming data sent by the terminal backup module, and perform comprehensive holographic simulation 3D image forming processing on the fetal contour, and at the same time, the terminal forming module sends the forming image to the inside of the terminal display module; The terminal forming module is also used to receive the abnormal data sent by the terminal backup module, re-perform comprehensive holographic simulation 3D image forming processing on the fetal contour, and compare it with the preliminary forming data. At the same time, the terminal forming module sends the holographic forming image and the comparison result to the terminal display module; the terminal backup module is used to receive the real-time forming data, positioning data and abnormal data sent by the fetal monitoring information control sub-terminal, and back them up again; the terminal backup module is used to send the forming data and abnormal data to the terminal forming module, and the terminal backup module is also used to send the positioning data to the terminal positioning module; the terminal positioning module is used to receive multiple positioning data sent by the terminal backup module, and the mobile phone, display screen, computer, handheld fetal monitoring detector, medical fetal monitoring monitor and fetal heart monitoring belt are all electrically connected to the PLC controller.

[0042] Application of a holographic imaging diagnosis system for fetal monitoring, and the holographic imaging diagnosis method for fetal monitoring are applied to the fetal monitoring imaging diagnosis system.

[0043] Example 1

[0044] S1. Collect fetal position information and contour data in a single pregnant woman through a single acquisition terminal, collect data through a fetal monitoring information control sub-terminal, perform preliminary simulation of the fetal contour in 3D image forming through a sub-terminal forming module, and visualize the fetal contour through a sub-terminal display module. If there is no abnormality, add a corresponding description, and perform backup processing through a sub-terminal backup module; if there is an increase in baseline variation, a decrease in baseline variation, early deceleration, mild variable deceleration, or severe variable deceleration abnormality, add a corresponding description, receive it through a terminal backup module, locate and record the acquisition device through a sub-terminal positioning module within the sub-terminal forming module, and back up the positioning data through the sub-terminal backup module;

[0045] S2. The terminal backup module backs up the received real-time shaping data, positioning data, and abnormal data again, and performs comprehensive holographic simulation 3D imaging processing on the fetal contour through the terminal shaping module; the abnormal data is processed again, and the fetal contour is re-processed with comprehensive holographic simulation 3D imaging processing, and compared with the preliminary shaping data, and finally visualized separately through the terminal display module;

[0046] S3. Multiple positioning data are recorded through the terminal positioning module. When abnormal data is analyzed and processed, the terminal positioning module can be used to accurately find the specific collection equipment, so that the staff can take timely and appropriate measures.

[0047] Example 2

[0048] When the fetal monitoring imaging diagnostic system is connected to hospital maintenance management:

[0049] S1. Collect fetal position information and contour data from a single pregnant woman using a single medical fetal monitoring monitor and fetal heart rate monitoring belt. Collect the data using a fetal monitoring information control sub-terminal. Perform preliminary 3D image simulation of the fetal contour using a sub-terminal shaping module. Visualize the image on a display screen or computer. If there are no abnormalities, add a corresponding description, and perform backup processing using a sub-terminal backup module. If there are abnormalities such as increased baseline variation, decreased baseline variation, early deceleration, mild variable deceleration, or severe variable deceleration, add a corresponding description, receive the data through a terminal backup module, locate and record the acquisition device through a sub-terminal positioning module within the sub-terminal shaping module, and back up the positioning data through the sub-terminal backup module.

[0050] S2. The terminal backup module backs up the received real-time shaping data, positioning data, and abnormal data again, and performs comprehensive holographic simulation 3D imaging processing on the fetal contour through the terminal shaping module; the abnormal data is processed again, and the fetal contour is re-processed as a comprehensive holographic simulation 3D imaging process, and compared with the preliminary shaping data, and finally visualized through the display screen and computer respectively;

[0051] S3. Multiple positioning data are recorded through the terminal positioning module. When abnormal data is analyzed and processed, the terminal positioning module can accurately find the specific collection equipment, the specific bed number, and the corresponding pregnant woman, so that the staff can take timely and appropriate measures.

[0052] Example 3

[0053] When the fetal monitoring imaging diagnostic system is connected to home care management:

[0054] S1. Using a single handheld fetal monitoring detector, collect fetal position information and contour data within a single pregnant woman. The data is collected through a fetal monitoring information control sub-terminal. The sub-terminal shaping module performs preliminary 3D image shaping of the fetal contour, which is visualized on a mobile phone. If there are no abnormalities, a corresponding description is added, and the data is backed up through the sub-terminal backup module. If there are abnormalities such as increased baseline variation, decreased baseline variation, early deceleration, mild variable deceleration, or severe variable deceleration, a corresponding description is added, which is received through the terminal backup module. The sub-terminal positioning module within the sub-terminal shaping module locates and records the collection device, and the positioning data is backed up through the sub-terminal backup module.

[0055] S2. The terminal backup module backs up the received real-time shaping data, positioning data, and abnormal data again, and performs comprehensive holographic simulation 3D imaging of the fetal contour through the terminal shaping module; the abnormal data is processed again, and the fetal contour is re-processed as a comprehensive holographic simulation 3D imaging, and compared with the preliminary shaping data, and finally visualized separately through the mobile phone;

[0056] S3. Multiple positioning data are recorded through the terminal positioning module. When abnormal data is found and analyzed, the terminal positioning module can accurately find the specific collection equipment and find the corresponding home location information of the pregnant woman, so that the staff can take timely and appropriate measures.

[0057] Specifically: In actual applications, there are multiple collection terminals. The fetal monitoring information control terminal maintains real-time data exchange with the fetal monitoring information control sub-terminal and the collection terminal through the Internet. The fetal position information and contour data of a single pregnant woman are collected through a single collection terminal, and the data is collected through the fetal monitoring information control sub-terminal. The sub-terminal forming module performs preliminary simulation of the fetal contour in 3D image forming, and the sub-terminal display module performs visual display. If there is no abnormality, a corresponding description is added, and the sub-terminal backup module performs backup processing; if there is an increase in baseline variation, a decrease in baseline variation, early deceleration, mild variation deceleration or severe variation deceleration abnormality, a corresponding description is added, received through the terminal backup module, and the collection device is located and recorded through the sub-terminal positioning module inside the sub-terminal forming module, and the positioning data is backed up through the sub-terminal backup module; the terminal backup module backs up the received real-time forming data, positioning data, and abnormal data again, and performs comprehensive holographic simulation of the fetal contour in 3D image forming through the terminal forming module; the abnormal data is processed again The fetal contour is re-processed with a comprehensive holographic simulated 3D image molding process, and compared with the preliminary molding data, and finally visualized separately through the terminal display module; multiple positioning data are recorded through the terminal positioning module. When abnormal data is analyzed and processed, the terminal positioning module can be used to accurately find the specific acquisition equipment, so as to facilitate the staff to perform timely and appropriate remedies. The present invention is provided with a fetal monitoring image diagnosis system and a fetal monitoring holographic image diagnosis technology that complement each other. The fetal contour data is molded twice by the sub-end molding module and the terminal molding module, which improves the accuracy of the final data. The sub-end positioning module and the terminal positioning module are used in conjunction, so that when an abnormal model is found during use, the position can be accurately located in the first time, which not only reduces the potential harm to pregnant women, but also shortens the overall work process and speeds up the diagnostic work efficiency. The fetal monitoring data and the corresponding analysis results are managed, visualized and stored, which helps to realize fetal monitoring information management through Internet control and improve the intelligence level of fetal monitoring diagnosis.

[0058] While embodiments of the present invention have been shown and described, it will be appreciated by those skilled in the art that various changes, modifications, substitutions, and variations may be made to these embodiments without departing from the principles and spirit of the invention, and that the scope of the invention is defined by the appended claims and their equivalents.

Claims

1. A holographic imaging diagnostic system for fetal monitoring, characterized by: The system includes a PLC controller, a fetal monitoring information control terminal, a fetal monitoring information control sub-terminal and a collection terminal. The fetal monitoring information control terminal maintains real-time data communication with the fetal monitoring information control sub-terminal and the collection terminal via the Internet; The fetal monitoring information control terminal is used to receive positioning data, preliminary forming data and abnormal data sent by the fetal monitoring information control sub-terminal, perform corresponding processing, and maintain real-time data communication with the fetal monitoring information control sub-terminal and the collection terminal through the Internet; The fetal monitoring information control sub-terminal is used to receive the collected data sent by the collection terminal, perform preliminary shaping, positioning and identify whether it is abnormal. At the same time, the fetal monitoring information control sub-terminal sends the positioning data, preliminary shaping data and abnormal data to the fetal monitoring information control terminal; The acquisition terminal is used to collect the contour data of the fetus in the pregnant woman's body and send the data to the fetal monitoring information control sub-terminal; The system uses a holographic imaging diagnostic method, which includes the following steps: S1. Build a fetal monitoring imaging diagnostic system that uses a single acquisition device to locate the fetal heartbeat in a designated pregnant woman, thereby locating the fetal position; S2. Simulate the collection of the fetal outline, simulate 3D imaging of the collected data through a display device, and display the model; S3. Receive multiple model data sent by multiple display devices, back up them through a database, and if the model data does not change abnormally, do not make any adjustments. If the model data changes abnormally, locate and analyze the abnormal model data and obtain analysis results. The display device in step S2 is one or more of a mobile phone, a display screen and a computer; The abnormal changes in step S3 include increased baseline variability, decreased baseline variability, early deceleration, mild deceleration, or severe deceleration; The fetal monitoring information control sub-terminal includes a sub-terminal display module, a sub-terminal forming module, a sub-terminal backup module and a sub-terminal positioning module. The output end of the sub-terminal forming module is electrically connected to the input end of the sub-terminal display module, the output end of the sub-terminal display module is electrically connected to the input end of the sub-terminal backup module, the output end of the sub-terminal display module is communicatively connected to the input end of the fetal monitoring information control terminal, the output end of the sub-terminal backup module is communicatively connected to the input end of the fetal monitoring information control terminal, and the output end of the sub-terminal positioning module is electrically connected to the input end of the sub-terminal backup module; The sub-end display module is used to receive the molding data sent by the sub-end molding module, perform visual display, and add corresponding descriptions if there is no abnormality. At the same time, the sub-end display module sends the molding data and description data to the sub-end backup module for backup processing. If there is an increase in baseline variation, a decrease in baseline variation, an early deceleration, a mild variable deceleration, or a severe variable deceleration abnormality, a corresponding description is added. At the same time, the sub-end display module sends the molding data and description data to the fetal monitoring information control terminal for remote processing; The sub-end shaping module is used to receive the real-time fetal acquisition data sent by the acquisition terminal, perform preliminary simulation of the fetal outline 3D image shaping processing, and at the same time, the sub-end shaping module sends the shaping image to the inside of the sub-end display module; The sub-end backup module is used to receive the shaping data sent by the sub-end display module, and is also used to receive the positioning data sent by the sub-end positioning module, and perform corresponding backup. The sub-end backup module simultaneously sends the shaping data and positioning data to the fetal monitoring information control terminal; The sub-end positioning module is integrated into the sub-end forming module, and simultaneously locates and records the collecting equipment while collecting fetal data. At the same time, the sub-end positioning module sends the positioning data to the sub-end backup module for backup processing.

2. The holographic imaging diagnostic system for fetal monitoring according to claim 1, characterized in that: The output end of the fetal monitoring information control terminal is electrically connected to the input end of the fetal monitoring information control sub-terminal, the output end of the fetal monitoring information control sub-terminal is electrically connected to the input end of the acquisition terminal, and the output end of the PLC controller is electrically connected to the input end of the fetal monitoring information control terminal.

3. The holographic imaging diagnostic system for fetal monitoring according to claim 1, characterized in that: The acquisition terminal is one or more of a handheld fetal monitoring detector, a medical fetal monitoring device and a fetal heart rate monitoring belt.

4. The holographic imaging diagnostic system for fetal monitoring according to claim 1, characterized in that: The fetal monitoring information control terminal includes a terminal display module, a terminal forming module, a terminal backup module and a terminal positioning module, wherein the output end of the terminal backup module is electrically connected to the input end of the terminal forming module, the output end of the terminal backup module is electrically connected to the input end of the terminal positioning module, and the output end of the terminal forming module is electrically connected to the input end of the terminal display module; The terminal display module is used to receive the holographic forming model sent by the terminal forming module and perform visual display; the terminal display module is also used to receive the holographic forming image and comparison result sent by the terminal forming module and perform visual display; The terminal forming module is used to receive the forming data sent by the terminal backup module, perform comprehensive holographic simulated 3D image forming processing on the fetal outline, and at the same time, the terminal forming module sends the formed image to the terminal display module; the terminal forming module is also used to receive abnormal data sent by the terminal backup module, re-perform comprehensive holographic simulated 3D image forming processing on the fetal outline, and compare it with the preliminary forming data, and at the same time, the terminal forming module sends the holographic forming image and the comparison result to the terminal display module; The terminal backup module is used to receive the real-time shaping data, positioning data and abnormal data sent by the fetal monitoring information control sub-terminal and perform a backup again; the terminal backup module is used to send the shaping data and abnormal data to the terminal shaping module, and the terminal backup module is also used to send the positioning data to the terminal positioning module; The terminal positioning module is used to receive a plurality of positioning data sent by the terminal backup module.

5. The holographic imaging diagnostic system for fetal monitoring according to claim 3, characterized in that: The mobile phone, display screen, computer, handheld fetal monitoring detector, medical fetal monitoring monitor and fetal heart monitoring belt are all electrically connected to the PLC controller.

6. An application of the holographic imaging diagnostic system for fetal monitoring according to any one of claims 1 to 5, characterized in that: The holographic imaging diagnosis method for fetal monitoring is applied to a fetal monitoring imaging diagnosis system.

Citation Information

Patent Citations

  • Device and method for fetal monitoring telemetering

    CN108992091A

  • Real-time remote monitoring and fetal movement observation system

    CN214804868U