Monitor operation module based on voice recognition technology

By using a monitor operation module based on voice recognition technology, the ease of use and response speed of the monitor have been improved, solving the problem that doctors cannot obtain key vital sign data in a timely manner in the operating room and reducing the operational burden.

CN224112655UActive Publication Date: 2026-04-14THE FIRST MEDICAL CENT CHINESE PLA GENERAL HOSPITAL
View PDF 0 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-08
Publication Date
2026-04-14

AI Technical Summary

Technical Problem

Existing monitors cannot obtain critical vital sign data in a timely manner when used in the operating room because doctors are busy with their hands, which affects the quality of surgery and also increases the workload for doctors.

Method used

The monitor operation module, which adopts voice recognition technology, includes vital sign monitoring, data processing and display, interaction module and response module. It realizes human-computer interaction through voice interaction and touch control, reduces manual operation, and displays and reminds key data in real time.

Benefits of technology

The monitor has been improved in terms of ease of use and response speed, reducing the workload of doctors and ensuring that critical vital signs data can be obtained in a timely manner during surgery.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN224112655U_ABST
    Figure CN224112655U_ABST
Patent Text Reader

Abstract

The utility model discloses a monitor operation module based on a voice recognition technology, which comprises a vital sign monitoring module used for collecting vital sign data of a patient and provided with a data transmission interface, and a data processing and display module used for receiving the data of the vital sign monitoring module and displaying the data on a display screen; the interaction module comprises a voice interaction unit, a touch control unit and an audio player; and the response module is connected with the data processing and display module, transmits the vital sign data in real time, monitors data changes, transmits prompt data to the display screen and the audio player, and assists in reminding a user. According to the vital sign monitor, the usability and the response speed of the vital sign monitor are improved through the man-machine interaction technology, the vital sign monitor is compatible with a clinically applied monitor through the data transmission interface, the operation burden of a doctor is reduced, and meanwhile a patient is reminded of key vital sign data.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This utility model relates to the field of medical equipment technology, and in particular to a monitor operation module based on voice recognition technology. Background Technology

[0002] A vital signs monitor is a device that provides non-invasive monitoring of blood pressure, pulse rate, mean arterial pressure, blood oxygen saturation, and body temperature. It can be used by physicians and qualified medical personnel to monitor these vital signs in newborns, children, and adult patients in both normal and axillary modes. It is primarily used in intensive care units and operating rooms. However, existing equipment may fail to capture critical vital signs data due to the physician's busy hands, necessitating the assistance of professional personnel. Operating rooms place high demands on both physicians and support staff, with surgeries often lasting several hours, creating a heavy workload. Failure to obtain critical vital signs data promptly can negatively impact surgical quality. Therefore, it is necessary to design a system that improves the usability and response speed of the vital signs monitor through human-computer interaction technology, ensuring compatibility with mainstream clinical monitors, reducing the physician's workload, and simultaneously alerting patients to critical vital signs data. Utility Model Content

[0003] The purpose of this utility model is to provide a monitor operation module based on voice recognition technology.

[0004] To achieve the above objectives, the present invention adopts the following technical solution:

[0005] A patient monitor operation module based on voice recognition technology includes a vital signs monitoring module, a data processing and display module, an interaction module, and a response module;

[0006] The vital signs monitoring module is used to collect the patient's vital signs data. It is equipped with at least one data transmission interface, which is connected to a clinically used monitor to obtain the vital signs data collected by the monitor.

[0007] The data processing and display module receives data from the vital signs monitoring module and displays it on the screen.

[0008] The interaction module includes a voice interaction unit, a touch unit, and an audio player. The voice interaction unit and the touch unit interact with the data processing and display module respectively. The data processing and display module works according to instructions, displays data on the display screen, and broadcasts information through the audio player.

[0009] The response module is connected to the data processing and display module, and transmits vital sign data in real time, monitors data changes, and transmits prompt data to the display screen and audio player to help remind the user.

[0010] Furthermore, the vital signs monitoring module includes a body temperature detection unit for detecting the patient's body temperature, a pulse detection unit for detecting the patient's pulse, a blood oxygen detection unit for detecting the patient's blood oxygen content, and a blood pressure detection unit for detecting the patient's blood pressure.

[0011] Furthermore, the data processing and display module is equipped with a processor, which is connected to the vital signs monitoring module to receive the patient's vital signs data collected by the module, process the data, and transmit it to the display screen for display.

[0012] Furthermore, the touch unit is located on the display screen, allowing users to interact and control the device via the touch unit.

[0013] Furthermore, the voice interaction unit includes a voice recognizer for acquiring voice, a dialogue manager for analyzing voice, and an information synthesizer for generating feedback information.

[0014] Furthermore, the feedback information includes text and image information and voice information. The speech synthesizer is connected to the display screen and transmits text and image information data to it, and displays the text and image information on the display screen. The speech synthesizer is also connected to an audio player and transmits voice information data to it, and plays the voice information through the audio player.

[0015] Furthermore, the response module includes an alarm unit, which receives data from the data processing and display module in real time and monitors data changes. When the change exceeds a preset value, alarm data is sent to the audio player and the display screen. The audio player plays alarm audio based on the alarm data, and the display screen displays alarm graphics based on the alarm data.

[0016] Furthermore, the response module also includes a prompting unit and a data storage unit. The prompting unit is connected to the alarm unit and transmits alarm data. The prompting unit is connected to the data storage unit and transmits prompting data. The prompting unit is also connected to the display screen and the audio player and transmits prompting data to them respectively.

[0017] By adopting the above technical solution, this utility model has the following advantages compared with the prior art:

[0018] This utility model's vital signs monitoring module can connect to clinically used monitors to acquire patients' vital signs data. The data processing and display module processes the acquired data in real time and displays it intuitively on the screen. The interactive module enables both touch and voice interaction. In actual use, users can flexibly use the module according to their needs. Voice interaction allows for quick acquisition of patients' vital signs via voice commands, eliminating the need for manual operation. This human-computer interaction technology improves the ease of use and response speed of the vital signs monitor, ensuring compatibility with clinically used monitors, reducing the workload of doctors while simultaneously reminding patients of key vital signs data. Attached Figure Description

[0019] Figure 1 This is a block diagram of the system structure of this utility model.

[0020] Explanation of reference numerals in the attached figures:

[0021] Vital signs monitoring module 1; data processing and display module 2; interaction module 3; response module 4. Detailed Implementation

[0022] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are merely illustrative of the present utility model and are not intended to limit the present utility model.

[0023] It should be noted that in this utility model, the terms "upper", "lower", "left", "right", "vertical", "horizontal", "inner", and "outer" are based on the orientation or positional relationship shown in the accompanying drawings, and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the device or element of this utility model must have a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0024] Example

[0025] refer to Figure 1 As shown, this utility model discloses a patient monitor operation module based on voice recognition technology, including a vital signs monitoring module 1, a data processing and display module 2, an interaction module 3, and a response module 4.

[0026] The vital signs monitoring module 1 is used to collect the patient's vital signs data. It is equipped with at least one data transmission interface, which is connected to a clinically used monitor to obtain the collected vital signs data.

[0027] The data processing and display module 2 receives data from the vital signs monitoring module 1 and displays it on the screen.

[0028] The interaction module 3 includes a voice interaction unit, a touch unit, and an audio player. The voice interaction unit and the touch unit interact with the data processing and display module 2 respectively. The data processing and display module 2 works according to the instructions, displays data on the display screen, and broadcasts information through the audio player.

[0029] The response module 4 is connected to the data processing and display module 2, and transmits vital sign data in real time, monitors data changes, and transmits prompt data to the display screen and audio player to help remind the user.

[0030] The vital signs monitoring module 1 includes a temperature detection unit for detecting the patient's body temperature, a pulse detection unit for detecting the patient's pulse, a blood oxygen detection unit for detecting the patient's blood oxygen content, and a blood pressure detection unit for detecting the patient's blood pressure. In this embodiment, the vital signs monitoring unit 1 can independently collect the patient's vital signs, or it can connect to mainstream clinical monitors via a data transmission interface to acquire the collected patient vital signs data in real time. The data transmission interface is compatible with existing mainstream clinical monitors and can be connected via an adapter if necessary.

[0031] The body temperature detection unit is a body temperature probe. The pulse and blood oxygen detection unit collects corresponding pulse and blood oxygen data through a pulse and blood oxygen sensor. The blood pressure detection unit includes a blood pressure cuff and a tubing. The main unit of the vital signs monitoring module 1 is equipped with the VSM300 monitor embedded software component, and also includes an oral probe and a probe sleeve.

[0032] The data processing and display module 2 is equipped with a processor, which is connected to the vital signs monitoring module 1 to receive the patient's vital signs data collected by the module. The processed data is then transmitted to the display screen for display.

[0033] The touch unit is located on the display screen, and the user can interact and control the device through the touch unit on the display screen.

[0034] The voice interaction unit includes a voice recognizer for acquiring voice data, a dialogue manager for analyzing voice data, and an information synthesizer for generating feedback information.

[0035] The feedback information includes text and image information and voice information. The voice synthesizer is connected to the display screen and transmits text and image information data to it. The text and image information is displayed on the display screen. The voice synthesizer is connected to the audio player and transmits voice information data to it. The voice information is played through the audio player.

[0036] The response module 4 includes an alarm unit, which is a data analysis and processing chip. The alarm unit receives data from the data processing and display module 2 in real time and monitors data changes. When the change exceeds a preset value, alarm data is sent to the audio player and the display screen. The audio player plays alarm audio according to the alarm data, and the display screen displays alarm graphics and text according to the alarm data.

[0037] The response module 4 also includes a prompting unit and a data storage device. The prompting unit is a processing chip for analyzing and processing data. The prompting unit is connected to the alarm unit and transmits alarm data. The prompting unit is connected to the data storage device and transmits prompt data. The prompting unit is also connected to the display screen and the audio player and transmits prompt data to them respectively.

[0038] This embodiment collects the patient's vital signs data through the vital signs monitoring module 1, processes the collected data in real time through the data processing and display module 2, and displays it on the screen in an intuitive way. The interaction module 3 enables both touch and voice interaction. In actual use, users can use it flexibly according to their needs. Through voice interaction, the patient's vital signs can be quickly obtained through voice commands without manual operation. This realizes the improvement of the ease of use and response speed of the vital signs monitor through human-computer interaction technology, reduces the doctor's operating burden, and reminds the patient of key vital signs data.

[0039] The above description is merely a preferred embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this utility model should be included within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.

Claims

1. A monitor operating module based on voice recognition technology, characterized in that it comprises a vital sign monitoring module, a data processing and display module, an interactive module and a response module. The vital sign monitoring module is used to collect vital sign data of a patient, and is provided with at least one data transmission interface, which is connected with a clinical application monitor to obtain the vital sign data collected by the monitor. The data processing and display module receives the data of the vital sign monitoring module and displays it on a display screen. The interactive module comprises a voice interactive unit, a touch control unit and an audio player, which respectively interact with the data processing and display module, and the data processing and display module works according to the instructions, displays data on the display screen and plays the data through the audio player. The response module is connected with the data processing and display module, and transmits vital sign data in real time, monitors data changes, and transmits prompt data to the display screen and the audio player to assist the user. 2.The monitor operating module based on voice recognition technology according to claim 1, characterized in that the vital sign monitoring module is provided with a body temperature detection unit for detecting the body temperature of the patient, a pulse detection unit for detecting the pulse of the patient, a blood oxygen detection unit for detecting the blood oxygen content of the patient, and a blood pressure detection unit for detecting the blood pressure of the patient. 3.The monitor operating module based on voice recognition technology according to claim 1, characterized in that the data processing and display module is provided with a processor, which is connected with the vital sign monitoring module to receive the vital sign data of the patient collected by the vital sign monitoring module, and transmits the processed data to the display screen for display. 4.The monitor operating module based on voice recognition technology according to claim 3, characterized in that the touch control unit is arranged on the display screen, and the user controls the display screen through the touch control unit. 5.The monitor operating module based on voice recognition technology according to claim 4, characterized in that the voice interactive unit comprises a voice recognizer for collecting voice, a dialogue manager for analyzing voice, and an information synthesizer for generating feedback information. 6.The monitor operating module based on voice recognition technology according to claim 5, characterized in that the feedback information comprises text information and voice information, the voice synthesizer is connected with the display screen and transmits the data of the text information to the display screen, and the display screen displays the text information, and the voice synthesizer is connected with the audio player and transmits the data of the voice information to the audio player, and the audio player plays the voice information. 7.The monitor operating module based on voice recognition technology according to claim 1, characterized in that the response module comprises an alarm unit, which receives the data of the data processing and display module in real time and monitors the data changes, and sends alarm data to the audio player and the display screen when the changes exceed the preset value, the audio player plays alarm audio according to the alarm data, and the display screen displays alarm text according to the alarm data.

8. The voice recognition technology based monitor operating module as claimed in claim 7, wherein the response module further comprises a prompt unit and a data storage, the prompt unit is connected with the alarm unit to transmit the alarm data, the prompt unit is connected with the data storage to transmit the prompt data, and the prompt unit is connected with the display screen and the audio player to transmit the prompt data respectively.