Early lung cancer screening device and method suitable for risk prediction and evaluation of early-stage lung cancer
By connecting questionnaires, mobile phones, distributed detectors, and CT scanners via the cloud and the internet, the lung cancer early screening device enables multi-location environmental monitoring and risk assessment, solving the problem of limited analytical capabilities in existing technologies and improving the accuracy and efficiency of risk prediction.
Patent Information
- Application Number
- PCT/CN2024/101185
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Filing Date
- 2024-06-25
- Publication Date
- 2026-01-02
AI Technical Summary
Existing lung cancer early screening devices cannot perform interconnected and collaborative processing, and their preliminary analysis capabilities are relatively limited, which is not conducive to holistic risk assessment and control.
The questionnaire and data analyzer are connected via the cloud and the Internet. Information is entered and feedback is provided via mobile phone. The distributed detectors and the central detector are wirelessly connected. The data analyzer performs unified analysis and risk assessment is conducted through a CT scanner, integrating the feedback information.
It enables unified analysis and risk assessment of environmental monitoring information from multiple locations, improving the accuracy and efficiency of early lung cancer risk prediction, and recommends that high-risk individuals undergo CT scans.
Smart Images

Figure CN2024101185_02012026_PF_FP_ABST
Abstract
Description
Lung cancer early screening device and method suitable for early lung cancer risk prediction assessment TECHNICAL FIELD
[0001] The present application relates to the technical field of lung cancer screening, in particular to a lung cancer early screening device and method suitable for early lung cancer risk prediction assessment. BACKGROUND
[0002] In the trend of preventing lung cancer and improving patients, the existing medical equipment can perform early lung cancer risk prediction assessment to avoid people from being attacked by lung cancer. Through early risk prediction assessment, the occurrence of cancer can be effectively prompted, thereby warning patients to pay more attention to examination.
[0003] The current lung cancer early screening device cannot be interconnected and cooperated, and the early analysis capability is relatively single, which is not conducive to overall risk assessment control and needs to be improved.
[0004] SUMMARY
[0005] In view of the problems in the prior art, the present application provides a lung cancer early screening device and method suitable for early lung cancer risk prediction assessment.
[0006] The technical scheme adopted by the present application to solve the technical problem is: a lung cancer early screening device and method suitable for early lung cancer risk prediction assessment, comprising a cloud and an Internet, a questionnaire connected with a data analyzer through information inputting and data analysis, data transmission, a mobile phone connected with the data analyzer through wireless technology, the data analyzer capable of feeding back information to the mobile phone, a plurality of distributed detectors capable of transmitting detection information to a total detector, the total detector capable of uniformly transmitting the detection information to the data analyzer, the data analyzer capable of transmitting information to a CT machine for analysis and processing, and the data analyzer connected with the cloud and the Internet, the information being integrated and transmitted to the CT machine through the Internet.
[0007] Specifically, the total detector comprises an air inlet pipe and a communication pipe, the lower end of the air inlet pipe is connected with the communication pipe, the lower end of the communication pipe is connected with a fan through a guide pipe, the side end of the communication pipe is provided with a control base, and a control screen is installed on the control base.
[0008] Specifically, the total detector further comprises a sealing plate and a PM2.5 detector, the guide pipe is connected with the sealing plate, and the sealing plate is internally provided with a circuit board, the circuit board is provided with a detection port, and the surface of the circuit board is provided with a PM2.5 detector, a CO2 concentration detector and a sulfide detector.
[0009] Specifically, the data analyzer comprises a signal transmitter, a processing base and a touch panel, the processing base is centrally provided with the touch panel, and the processing base is provided at the top with the signal transmitter.
[0010] Specifically, the data analyzer further comprises a signal receiver and a chassis, and the signal receiver is installed at the bottom of the processing machine base through the chassis.
[0011] Specifically, the CT machine comprises a control machine table, a bed body and a pushing seat, the pushing seat controls the telescopic adjustment of the bed body, the side end of the control machine table is fixedly connected with a detector, a sampler is installed on the detector, and a target ring is installed in the detector.
[0012] Specifically, the CT machine further comprises a stand, an electron gun and a focusing coil, the electron gun is installed on the stand, the focusing coil is installed at the rear end of the electron gun, the deflection coil is installed at the rear end of the focusing coil, the electron gun emits an electron beam, which is adjusted through the focusing coil and the deflection coil and reaches the target ring, and then is detected and processed through the sampler.
[0013] The beneficial effects of the present application are as follows:
[0014] The present application can spread information through questionnaires and mobile phones, and conduct to the data analyzer for detection in the geographical position range, and the scattered detectors can be wirelessly connected with the total detector to transmit the air information of each position, and then the total detector uniformly transmits to act on the data analyzer for data analysis, and feedback can be conducted through the cloud and the Internet to inform the evaluation risk and suggest the evaluators to diagnose and check through the CT machine. BRIEF DESCRIPTION OF DRAWINGS
[0015] The present application will be further described below in combination with the drawings and examples.
[0016] Fig. 1 is a schematic diagram of the main body of the present application;
[0017] Fig. 2 is a front perspective view of the total detector of the present application;
[0018] Fig. 3 is a side perspective view of the total detector of the present application;
[0019] Fig. 4 is a front perspective view of the data analyzer of the present application;
[0020] Fig. 5 is a side perspective view of the data analyzer of the present application;
[0021] Fig. 6 is a front perspective view of the CT machine of the present application;
[0022] Fig. 7 is a side perspective view of the CT machine of the present application;
[0023] Fig. 8 is a rear perspective view of the CT machine of the present application.
[0024] Fig. 1-8, the lung cancer early screening device and method for predicting risk assessment of early lung cancer of the present application comprises a cloud 1 and an internet 8, a questionnaire 2 is connected with a data analyzer 6 through information input and data analysis, data transmission is carried out, a mobile phone 3 can be connected with the data analyzer 6 through wireless technology, at the same time, the data analyzer 6 can feed back information to the mobile phone 3, the dispersion detector 5 is provided with multiple groups, which can conduct detection information to the total detector 4, and then the total detector 4 is uniformly conducted into the data analyzer 6, the data analyzer 6 can transmit information to the CT machine 7 for analysis and processing, at the same time, the data analyzer 6 is connected with the cloud 1 and the internet 8, information can be integrated and transmitted to the CT machine 7 through the internet 8, the questionnaire 2 and the mobile phone 3 can fill in the form, then the information is collected into the data analyzer 6 for analysis and processing, at the same time, the risk assessment is informed, at the same time, the dispersion detector 5 is installed in each place, the dispersion detector 5 is dispersedly arranged for long-term environmental detection, data can be collected into the data analyzer 6 through the total detector 4, unified data analysis and processing are carried out through the data analyzer 6, then the data is uploaded to the cloud 1, the cloud 1 is connected with the internet 8, information transmission is carried out, so as to inform the evaluation personnel, and it is suggested that the high-risk evaluation personnel go to the CT machine 7 for lung detection. DETAILED DESCRIPTION
[0025] The present application is further described below in conjunction with the drawings.
[0026] EMBODIMENT
[0027] As shown in Fig. 1-8, the lung cancer early screening device and method for predicting risk assessment of early lung cancer of the present application comprises a cloud 1 and an internet 8, a questionnaire 2 is connected with a data analyzer 6 through information input and data analysis, data transmission is carried out, a mobile phone 3 can be connected with the data analyzer 6 through wireless technology, at the same time, the data analyzer 6 can feed back information to the mobile phone 3, the dispersion detector 5 is provided with multiple groups, which can conduct detection information to the total detector 4, and then the total detector 4 is uniformly conducted into the data analyzer 6, the data analyzer 6 can transmit information to the CT machine 7 for analysis and processing, at the same time, the data analyzer 6 is connected with the cloud 1 and the internet 8, information can be integrated and transmitted to the CT machine 7 through the internet 8, the questionnaire 2 and the mobile phone 3 can fill in the form, then the information is collected into the data analyzer 6 for analysis and processing, at the same time, the risk assessment is informed, at the same time, the dispersion detector 5 is installed in each place, the dispersion detector 5 is dispersedly arranged for long-term environmental detection, data can be collected into the data analyzer 6 through the total detector 4, unified data analysis and processing are carried out through the data analyzer 6, then the data is uploaded to the cloud 1, the cloud 1 is connected with the internet 8, information transmission is carried out, so as to inform the evaluation personnel, and it is suggested that the high-risk evaluation personnel go to the CT machine 7 for lung detection.
[0028] The total detector 4 comprises an air inlet pipe 9 and a communication pipe 10, the lower end of the air inlet pipe 9 is communicated with the communication pipe 10, the lower end of the communication pipe 10 is communicated with the fan 13 through the guide pipe 14, the side end of the communication pipe 10 is provided with a control machine base 12, and the control screen 11 is installed on the control machine base 12.
[0029] The total detector 4 further comprises a sealing plate 15 and a PM2.5 detector 16, the sealing plate 15 is fixedly connected on the guide pipe 14, and the circuit board 18 is installed in the sealing plate 15, the detection port 17 is arranged on the circuit board 18, and the PM2.5 detector 16, the CO2 concentration detector 19 and the sulfide detector 20 are arranged on the surface of the circuit board 18.
[0030] The data analyzer 6 comprises a signal transmitter 21, a processing machine base 22 and a touch panel 23, the touch panel 23 is installed at the center of the processing machine base 22, and the signal transmitter 21 is installed on the top of the processing machine base 22.
[0031] The data analyzer 6 further comprises a signal receiver 24 and a bottom frame 25, and the signal receiver 24 is limitingly installed at the bottom of the processing machine base 22 through the bottom frame 25.
[0032] The CT machine 7 comprises a control machine table 26, a bed body 27 and a propulsion base 28, the propulsion base 28 controls the telescopic adjustment of the bed body 27, the detector 31 is fixedly connected on the side end of the control machine table 26, the sampler 30 is installed on the detector 31, and the target ring 29 is installed in the detector 31.
[0033] The CT machine 7 further comprises a stand 32, an electron gun 33 and a focusing coil 34, the electron gun 33 is installed on the stand 32, the focusing coil 34 is installed at the rear end of the electron gun 33, the deflection coil 35 is installed at the rear end of the focusing coil 34, the electron gun 33 emits an electron beam, which is adjusted through the focusing coil 34 and the deflection coil 35 to reach the target ring 29, and then is detected and processed through the sampler 30.
[0034] Working principle: in use, the user can fill in the form through questionnaire 2, mobile phone 3, then the information is collected into data analyzer 6, analyzed and processed, and the risk is informed, and the scattered detectors 5 are installed in each place, which are scatteredly arranged for long-term environmental detection, the data can be collected to data analyzer 6 through total detector 4, and unified data analysis and processing are carried out through data analyzer 6, then uploaded to cloud 1, and cloud 1 is connected with internet 8, so that the information can be transmitted to inform the evaluation personnel, and it is suggested that the high-risk evaluation personnel go to CT machine 7 for lung detection, wherein the fan 13 in the total detector 4 can guide the wind, and the wind body is transmitted to the guide exhaust pipe 14 through the air inlet pipe 9 and the communication pipe 10, at this time the detection port 17 detects, and the PM2.5 detector 16, the CO2 concentration detector 19 and the sulfide detector 20 on the circuit board 18 analyze and process different data, and then the information is transmitted to the control screen 11 and the control machine base 12, and then it can be transmitted to the signal transmitter 21, at this time the processing base 22 and the touch panel 23 process data, then the information is transmitted through the signal receiver 24, the patient can go to the CT machine 7 for detection in the later stage, the patient lies on the bed body 27, controls the CT machine 7 through the operation machine 26, controls the bed body 27 to move through the pusher 28, reaches the center of the detector 31, at this time the electron gun 33 emits electron beam, through the correction of the focusing coil 34 and the deflection coil 35, reaches the target ring 29, then detects and analyzes through the sampler 30, so as to carry out ct scanning processing and complete the work.
[0035] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and alterations can be made to the embodiments without departing from the principles and spirit of the present application, the scope of which is defined by the appended claims and their equivalents.
Claims
1. A lung cancer early screening device suitable for risk prediction and assessment of early-stage lung cancer, characterized in that: Including the cloud (1) and the Internet (8), the questionnaire (2) is connected to the data analyzer (6) through information input to transmit data. The mobile phone (3) can connect to the data analyzer (6) through wireless technology. At the same time, the data analyzer (6) can provide information feedback to the mobile phone (3). The distributed detector (5) is equipped with multiple groups, which can transmit the detection information to the total detector (4). The total detector (4) transmits the information to the data analyzer (6). The data analyzer (6) can transmit the information to the CT machine (7) for analysis and processing. At the same time, the data analyzer (6) is connected to the Internet (8) through the cloud (1). The information can be integrated and transmitted to the CT machine (7) through the Internet (8).
2. The lung cancer early screening device for risk prediction and assessment applicable to early-stage lung cancer according to claim 1, characterized in that: The total detector (4) includes an air inlet pipe (9) and a connecting pipe (10). The lower end of the air inlet pipe (9) is connected to the connecting pipe (10). The lower end of the connecting pipe (10) is connected to the fan (13) through the guide pipe (14). The side end of the connecting pipe (10) is provided with a control base (12). A control panel (11) is installed on the control base (12).
3. The lung cancer early screening device for risk prediction and assessment applicable to early-stage lung cancer according to claim 2, characterized in that: The total detector (4) also includes a sealing plate (15) and a PM2.5 detector (16). The upper limit of the guide pipe (14) is connected to the sealing plate (15), and a circuit board (18) is installed inside the sealing plate (15). The circuit board (18) is provided with a detection port (17), and the surface of the circuit board (18) is provided with a PM2.5 detector (16), a CO2 concentration detector (19), and a sulfide detector (20).
4. The lung cancer early screening device for risk prediction and assessment applicable to early-stage lung cancer according to claim 3, characterized in that: The data analyzer (6) includes a signal transmitter (21), a processing base (22) and a touch panel (23). The touch panel (23) is installed at the center of the processing base (22), and the signal transmitter (21) is installed on the top of the processing base (22).
5. The lung cancer early screening device for risk prediction and assessment applicable to early-stage lung cancer according to claim 4, characterized in that: The data analyzer (6) also includes a signal receiver (24) and a base frame (25), with the signal receiver (24) mounted on the bottom of the processing base (22) by means of the base frame (25).
6. The lung cancer early screening device for risk prediction and assessment applicable to early-stage lung cancer according to claim 5, characterized in that: The CT machine (7) includes a control panel (26), a bed (27) and a propulsion seat (28). The propulsion seat (28) controls the extension and retraction adjustment of the bed (27). A detector (31) is fixedly connected to the side of the control panel (26). A sampler (30) is installed on the detector (31). A target ring (29) is installed inside the detector (31).
7. The lung cancer early screening device for risk prediction and assessment applicable to early-stage lung cancer according to claim 6, characterized in that: The CT machine (7) also includes a stand (32), an electron gun (33) and a focusing coil (34). The electron gun (33) is mounted on the stand (32). The focusing coil (34) is mounted at the rear end of the electron gun (33). The deflection coil (35) is mounted at the rear end of the focusing coil (34). The electron gun (33) emits an electron beam, which is adjusted by the focusing coil (34) and the deflection coil (35) and reaches the target ring (29). Then it is detected and processed by the sampler (30).
8. A method for a lung cancer early screening device for risk prediction and assessment applicable to early-stage lung cancer, comprising using the lung cancer early screening device for risk prediction and assessment applicable to early-stage lung cancer as described in claim 6, characterized in that... Includes the following steps: S1. First, fill out the form using a questionnaire (2) and mobile phone (3), and then collect the information into the data analyzer (6) for analysis and processing. S2. Meanwhile, distributed detectors (5) are installed in various locations. The distributed detectors (5) are set up in a decentralized manner for long-term environmental monitoring. The data can be aggregated to the data analyzer (6) through the total detector (4). S3. Data analysis and processing are performed by the data analyzer (6), and then uploaded to the cloud (1). The cloud (1) is connected to the Internet (8) to transmit information, thereby informing the evaluation personnel and suggesting that high-risk evaluation personnel go to the CT machine (7) for lung examination.
Citation Information
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