WO2022036562A1 - Procédé et système pour générer un rapport d'analyse d'un utilisateur - Google Patents
Procédé et système pour générer un rapport d'analyse d'un utilisateur Download PDFInfo
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- WO2022036562A1 WO2022036562A1 PCT/CN2020/109849 CN2020109849W WO2022036562A1 WO 2022036562 A1 WO2022036562 A1 WO 2022036562A1 CN 2020109849 W CN2020109849 W CN 2020109849W WO 2022036562 A1 WO2022036562 A1 WO 2022036562A1
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- urine
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- G—PHYSICS
- G01—MEASURING; TESTING
- G01N—INVESTIGATING OR ANALYSING MATERIALS BY DETERMINING THEIR CHEMICAL OR PHYSICAL PROPERTIES
- G01N21/00—Investigating or analysing materials by the use of optical means, i.e. using sub-millimetre waves, infrared, visible or ultraviolet light
- G01N21/62—Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light
- G01N21/63—Systems in which the material investigated is excited whereby it emits light or causes a change in wavelength of the incident light optically excited
- G01N21/65—Raman scattering
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- G—PHYSICS
- G16—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
- G16H—HEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
- G16H15/00—ICT specially adapted for medical reports, e.g. generation or transmission thereof
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- G—PHYSICS
- G16—INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR SPECIFIC APPLICATION FIELDS
- G16H—HEALTHCARE INFORMATICS, i.e. INFORMATION AND COMMUNICATION TECHNOLOGY [ICT] SPECIALLY ADAPTED FOR THE HANDLING OR PROCESSING OF MEDICAL OR HEALTHCARE DATA
- G16H40/00—ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices
- G16H40/60—ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices
- G16H40/67—ICT specially adapted for the management or administration of healthcare resources or facilities; ICT specially adapted for the management or operation of medical equipment or devices for the operation of medical equipment or devices for remote operation
Definitions
- the present application belongs to the field of Internet technologies, and in particular, relates to a method and device for generating a user analysis report.
- the user's health analysis report can be obtained by collecting the user's body fluids, such as saliva, blood, and urine.
- Urine as one of the commonly used samples for human health testing, its collection process is the most convenient compared to other body fluids such as blood, and it can also directly reflect the health status of an individual. Combined detection with ⁇ 2-microglobulin is indicative for the early diagnosis of diabetes and nephropathy.
- the existing urine detection method generally relies on the professional chemical analysis method of the hospital. This method has many detection items for urine, and the accuracy of the output user analysis report is also high.
- the above-mentioned detection process is relatively time-consuming and the detection price is high. , which requires users to go to the hospital for testing, which reduces the convenience of the testing process.
- the existing method can use urine detection test strips to meet the daily urine detection, and use a small electronic device to identify the change in the color of the urine detection test strip soaked in urine to judge the individual's health status.
- the method is neither hygienic, inconvenient, nor accurate, and the number of detected items is small, generally whether the urine sugar is too high, whether the uric acid is normal, etc. Therefore, there is an urgent need for a user analysis report generation method that can take into account the convenience and accuracy of detection, so as to meet the daily detection needs of current users.
- the embodiment of the present application provides a method and system for generating a user analysis report, so as to solve the existing generation technology of the user analysis report, the acquisition efficiency of the analysis report is low, the detection difficulty is high, and the time for outputting the analysis report is high. Longer, the real-time performance of user analysis reports is generally low.
- a first aspect of the embodiments of the present application provides a method for generating a user analysis report, which is applied to a system for generating a user analysis report, where the system for generating a user analysis report includes: at least one distributed urine Raman spectrum collection device, Data processing equipment and cloud server;
- the method for generating the user analysis report includes:
- the distributed urine Raman spectrum collection device acquires the Raman spectrum and user information of the urine sample of the target user, and outputs the Raman spectrum information corresponding to the urine sample through the Raman spectrum analysis module;
- the data processing device receives the Raman spectrum information and the user information output by the distributed urine Raman spectrum collection device, and generates the target user's information based on the Raman spectrum information and the user information. user analysis report;
- the data processing device uploads the user analysis report to the cloud server
- the cloud server receives the report acquisition instruction initiated by the user terminal corresponding to the target user, and sends the user analysis report to the user terminal.
- the Raman spectrum and user information of the urine sample of the target user are acquired through a distributed urine Raman spectrum collection device, and the Raman spectrum information and user information corresponding to the urine sample are output to the data processing device to generate the target user.
- the user analysis report corresponding to the user is uploaded to the cloud server, and the target user can obtain the generated user analysis report from the cloud server through the user terminal, realizing the purpose of obtaining the user analysis report generated based on the urine sample at any time.
- the distributed urine Raman spectrum acquisition device Due to the deployment flexibility and intelligent automatic unmanned operation of the distributed urine Raman spectrum acquisition device, there is no need for the user to collect urine samples, and there is no need for the user to go to the hospital or For medical institutions to conduct testing, users can independently obtain testing reports and health trend information in real time without the need for users to wait for testing reports. Users can perform non-sensing health tests in daily life; and after analyzing and processing the collected urine samples through data processing equipment, the user analysis report of the output target user can be uploaded to the cloud server for storage, and the target user can pass The user terminal can obtain the user analysis report at any time, which improves the real-time and convenience of obtaining the user analysis report.
- FIG. 1 is a schematic structural diagram of a system for generating a user analysis report provided by an embodiment of the present application
- Fig. 2 is the realization flow chart of the generation method of the user analysis report provided by the first embodiment of the present application
- FIG. 3 is a schematic structural diagram of a urine collection device provided by an embodiment of the present application.
- FIG. 4 is a schematic structural diagram of a urine collection device provided by an embodiment of the present application.
- FIG. 5 is a specific implementation flowchart of S201 of a method for generating a user analysis report provided by the second embodiment of the present application;
- FIG. 6 is a schematic diagram of a connection of a signal switching device according to an embodiment of the present application.
- FIG. 7 is a specific implementation flowchart of a method S201 for generating a user analysis report provided by the third embodiment of the present application;
- FIG. 8 is a specific implementation flowchart of a method S703 for generating a user analysis report provided by the fourth embodiment of the present application;
- FIG. 9 is a schematic diagram of a connection of a laser switching device according to an embodiment of the present application.
- FIG. 10 is a specific implementation flowchart of a method for generating a user analysis report provided by the fifth embodiment of the present application.
- FIG. 11 is a specific implementation flowchart of S801 of a method for generating a user analysis report provided by the sixth embodiment of the present application;
- FIG. 12 is a specific implementation flowchart of a method S204 for generating a user analysis report provided by the seventh embodiment of the present application;
- FIG. 13 is a structural block diagram of a system for generating a user analysis report provided by another embodiment of the present application.
- the Raman spectrum and user information of the urine sample of the target user are acquired by the distributed urine Raman spectrum acquisition device, the urine sample and the user information are output to the data processing device, and the user analysis report corresponding to the target user is generated. , and upload the user analysis report to the cloud server, and the target user can obtain the generated user analysis report from the cloud server through the user terminal.
- the analysis report generation technology has low efficiency in obtaining the analysis report, high detection difficulty, and a long time for outputting the analysis report, and the real-time performance of the user analysis report is generally low.
- the execution body of the process is the generation system of the user analysis report.
- the generation of the user analysis report includes at least one distributed urine Raman spectrum acquisition device, a data processing device and a cloud server.
- the distributed urine Raman spectrum collection device is connected in communication with the corresponding data processing equipment, and the data processing equipment is in communication connection with the cloud server;
- the data processing equipment can be a device with data processing function, specifically, the data processing equipment It can be a computer, a server, a laptop, etc.;
- the distributed urine Raman spectrum acquisition device can be distributed in different toilets, and one toilet can be deployed with multiple distributed urine Raman spectrum acquisition devices.
- the liquid Raman spectrum acquisition device can be integrated into each urinal in the bathroom, and the urinals include urinals and urinals; the data processing equipment can be used to process the data output by at least one distributed urine Raman spectrum acquisition device, for example
- a data processing device can be deployed in a building, and all the distributed urine Raman spectrum acquisition devices in the building can establish a communication connection with the data processing device, and output the collected data to the data in the building.
- Processing equipment and receiving control instructions from the data processing equipment; a data processing equipment can also be deployed on each floor in the building, and the data processing equipment is used to manage the distributed urine Raman spectrum acquisition devices in all toilets on each floor. Therefore, the number and range of the distributed urine Raman spectrum collection devices managed by the data processing equipment can be adjusted according to the actual situation, which improves the flexibility of networking of the user analysis report generation system.
- FIG. 1 shows a schematic structural diagram of a system for generating a user analysis report provided by an embodiment of the present application.
- the generation system of the user analysis report includes a distributed urine Raman spectrum collection device 101 , a data processing device 102 , a cloud server 103 and a user terminal 104 .
- multiple distributed urine Raman spectrum acquisition devices 101 can be connected to the same data processing device 102, that is, the data processing device 102 manages multiple distributed urine Raman spectrum acquisition devices 101, and all data processing devices 102 are connected to the cloud
- the server 103 is communicatively connected to upload the generated user analysis report to the cloud server 103 .
- the user can download the user analysis report from the cloud server 103 through the user terminal 104 .
- Fig. 2 shows the implementation flow chart of the method for generating a user analysis report provided by the first embodiment of the present application, which is described in detail as follows:
- the distributed urine Raman spectrum collection device acquires the Raman spectrum and user information of the urine sample of the target user, and outputs the Raman spectrum information corresponding to the urine sample through a Raman spectrum analysis module.
- the distributed urine Raman spectrum collection device can be distributed and deployed in the urinals of each toilet to collect the urine of the target user in the urinal, so as to obtain the Raman spectrum of the above-mentioned urine sample, and pass
- the preset Raman spectrum analysis module obtains Raman spectrum information corresponding to the urine sample.
- the pass-through laser beam can be irradiated on the urine sample, the laser beam will produce scattering phenomenon in the urine sample, and the laser beam obtained by the Raman spectrum collection module configured in the distributed collection device passes through the urine sample
- the Raman spectrum signal obtained by scattering is then transmitted to the Raman spectrum analysis module, and the optical signal is converted into an electrical signal to obtain the above-mentioned Raman spectrum information.
- the Raman spectroscopic analysis method is an analysis method based on the Raman scattering effect. Specifically, the scattering spectrum with different frequencies from the incident light is analyzed to obtain information on molecular vibration and rotation, which is applied to the study of molecular structure. an analytical method.
- the analysis method of Raman spectroscopy does not require preprocessing of the collected samples, nor the preparation process of the samples, which avoids the generation of some errors, and has the advantages of simple operation, short measurement time, and high sensitivity in the analysis process. At the same time, due to the weak Raman spectrum of water, the spectrum is very simple. Therefore, Raman spectroscopy can study the trace components of liquid substances in a close to natural state.
- the Raman spectroscopy analysis method can be used.
- the Raman spectrum analysis module can be integrated into a distributed urine Raman spectrum acquisition device, or can be used as other equipment independent of the urine Raman spectrum analysis device. If the Raman spectrum analysis module is other equipment independent of the urine Raman spectrum analysis device, the multiple distributed urine Raman spectrum collection devices can time-division multiplex the same Raman spectrum analysis module, the Raman spectrum analysis module The Raman spectrum information of the urine sample corresponding to each urine Raman spectrum analysis device can be output separately through the circuit switching module.
- the above-mentioned urine Raman spectroscopic analysis device may be integrated into different objects according to the type of the toilet where it is placed.
- the above-mentioned urine Raman spectroscopy analysis device can be integrated into urinals or urinals, such as toilets or squatting toilets, etc.; and for women's toilets, the above-mentioned urine Raman spectroscopy analysis
- the device can be integrated into a toilet or squatting toilet. According to different objects integrated in the urine Raman spectroscopic analysis device, its hardware structure can also be adjusted accordingly.
- FIG. 3 shows a schematic structural diagram of a urine Raman spectroscopic analysis device provided by an embodiment of the present application.
- the urine Raman spectroscopy analysis device may include: urinal sewage pipe 301 , urine inlet valve switch 302 , transparent urine sampling Tube 303, infrared thermometer 304, power cord 305, urine outlet 306, fixing nut 307, reinforced housing 308, Raman scattering collector 309, fiber optic probe 310, non-closed urine valve switch 311, fiber optic 312, signal line 313 , face recognition device 314 , NFC card reader 315 , human body infrared sensor 316 , flush valve switch 317 .
- the above-mentioned urinal sewage pipe 301 can be connected with the drainage port on the lower side of the urinal, so that urine can flow into the above-mentioned urine Raman spectroscopy analysis device through the urinal sewage pipe;
- the urine inlet valve switch 302 and the non- The closed urine valve switch 311 is used to open when the conditions for opening the collection are met, and to close the valve when the urine state is stable, so as to measure the urine composition;
- the infrared thermometer 304 is used to obtain the temperature of the urine to determine Whether the cost of urine is stable, because when the urine flows through the drainage pipe, it may be mixed with the flushing water, and the composition of the urine is unstable at this time.
- the urine Raman spectrum analysis device can judge whether the urine is Stabilized to determine whether to perform a measurement operation; the optical fiber 312 is used to transmit the laser beam, and the fiber probe 310 is used to direct the received laser beam to the urine sample to obtain the corresponding Raman scattered light, and then pass the laser beam.
- the Mann scattering collector 309 obtains the spectral signal of the laser beam scattered by the urine sample, outputs the Raman spectral signal to the Raman spectral analysis module through the optical fiber 312, and converts the optical signal into a corresponding electrical signal;
- the signal line 313 can be used for Receive the control instruction sent by the data processing device;
- the face recognizer 314 and the NFC card reader 315 are used to obtain the user information of the target user, and the above-mentioned user information may include the user's face information and the card number corresponding to the NFC card, etc.; and the human body
- the infrared sensor 316 is used to detect whether there is a user approaching the urinal, so as to determine whether to collect user information and collect urine samples.
- the present embodiment in order to prevent the upper wall of the transparent urine sampling tube 303 from being soaked in urine all the time and affecting the laser beam emitted by the light probe 310 from irradiating the urine sample, the present embodiment is provided with a non-closed urine sample.
- the liquid valve switch 311 means that the urine cannot be filled in the transparent urine sampling tube 303, and the part beyond the closed surface will flow out of the transparent urine sampling tube 303, thereby reducing the probability of the upper wall being contaminated.
- the non-closed urine valve switch 311 may specifically be a 1/2 closed urine valve switch, or a 3/4 closed urine valve switch, preferably, the closing range may be between 1/2 to 3/4 Any value in between is not limited here.
- FIG. 4 shows a schematic structural diagram of a urine Raman spectroscopic analysis device provided by an embodiment of the present application.
- the urine Raman spectroscopy analysis device may include: a slag separator 401 , a urine inlet valve switch 402 , and a transparent urine sampling tube 403, infrared thermometer 404, power cord 405, urine outlet 406, fixing nut 407, reinforced housing 408, Raman scattering collector 409, optical fiber probe 410, non-closed urine valve switch 411, optical fiber 412, signal line 413 , face recognition device 414, NFC card reader 415, human body infrared sensor 416, flush valve switch 417.
- a slag separator 401 can be arranged at the urine inlet of the urine Raman spectroscopic analysis device.
- the distributed urine Raman spectrum acquisition device may acquire user information of the target user through the data acquisition module.
- the user information includes, but is not limited to, the face information of the target user or the card number of the identification card, such as an NFC card or an IC card corresponding to an ID card, and the like.
- the distributed urine Raman spectrum acquisition device may integrate a fingerprint sensor at the flush valve switch, and when the target user presses the flush valve switch, the fingerprint sensor may obtain the target user's fingerprint information , and use the fingerprint information as the user information of the target user.
- the distributed urine Raman spectrum collection device can associate and store the Raman spectrum information corresponding to the urine sample and the user information, so that when generating the user analysis report of the target user, it can be based on the user information.
- the user to which the user analysis report belongs is determined so that the user terminal can download it.
- a positioning signal can be obtained through a positioning module, such as a global positioning system GPS module, and the positioning signal can be sent to the data Handling equipment.
- the data processing equipment can generate the corresponding distribution sub-map according to the positioning signal output by each distributed urine Raman spectrum acquisition device, and then the cloud server can receive the distribution sub-map uploaded by each data processing equipment, and generate the entire user analysis report generation system The corresponding distribution map.
- the user terminal can determine the location of each distributed urine Raman spectrum collection device by downloading the distribution map, and collect urine samples by going to the distributed urine Raman spectrum collection device at the corresponding location, and the collection is completed. Then obtain the corresponding user analysis report.
- the positioning signal can be directly uploaded to the cloud server through the built-in communication module.
- the above-mentioned communication modules include wireless communication modules and wired communication modules, and wireless communication modules include mobile communication modules, such as 3G communication modules, 4G communication modules, and 5G communication modules, and the type of communication module is not limited here.
- the data processing device receives the Raman spectrum information and the user information output by the distributed urine Raman spectrum collection device, and generates the data based on the Raman spectrum information and the user information.
- the data processing device can analyze the Raman spectrum information, for example, determine the frequency value contained in the Raman spectrum information and The spectral information such as the amplitude corresponding to each frequency value, and query the trace components corresponding to the spectral information, as well as the content corresponding to the trace components, the data processing equipment can compare the content of each trace component with the preset standard content, Thus, according to the comparison result of each item, the user analysis report of the target user is output.
- the data processing device may store a report template, and a plurality of measurement items may be preset in the report template.
- the data processing equipment can extract the content of trace components required by each measurement item according to the Raman spectrum information, so as to obtain the measurement result of each measurement item, and import the measurement result of each measurement item into the report template to obtain the above-mentioned user analysis report .
- the data processing device may encapsulate the user information into the above-mentioned user analysis report, for example, use the user information as a report label of the user analysis report, so as to facilitate subsequent searching.
- the data processing device may query the user database in the cloud server to obtain information related to the above-mentioned information.
- User information matched with user information the user information may include user name, phone number, user account, user age, user gender, etc.
- a user analysis report is generated, which can improve the accuracy of the user analysis report. sex. Due to different ages and different genders, the corresponding analysis algorithms may be different. Obtain the user data of the corresponding target user through the user information, so as to obtain the analysis algorithm matching the user data, and output the user analysis report matching the user data. It can improve the accuracy of user analysis reports.
- the data processing device uploads the user analysis report to the cloud server.
- the data processing device may upload the generated user analysis report to the cloud server.
- the data processing device can establish a communication connection with the cloud server through a wired communication module or a wireless communication module, and upload the generated user analysis report to the cloud server.
- the data processing device may upload the user analysis report to the cloud server after each user analysis report is generated.
- the data processing device can be configured with multiple report output time nodes, for example, a user analysis report is uploaded every half an hour, or in order to effectively utilize the bandwidth resources of the cloud server, different data processing devices can be configured with The corresponding report output time node, for example, data processing device A uploads the user analysis report at 10:00-10:20; while data processing device B can upload the user analysis report at 10:20-10:30, so as to avoid all data processing at the same time.
- the data processing device uploads the user analysis report to the cloud server, which causes great pressure on the cloud server to receive data, and can also improve the efficiency of report uploading.
- the cloud server receives the report acquisition instruction initiated by the user terminal corresponding to the target user, and sends the user analysis report to the user terminal.
- the cloud server may receive user analysis reports uploaded by each data processing device, and store all user analysis reports in the database.
- the cloud server may configure corresponding storage areas for different target users, and after receiving the user analysis report uploaded by the data processing device, the cloud server may identify the user information corresponding to the user analysis report, and The user analysis report is stored in the storage area associated with the user information, and the user terminal can acquire all the user analysis reports at the same time, that is, output all the user analysis reports in the storage area to the user terminal.
- the cloud server may receive a report acquisition instruction initiated by the user terminal, and the report acquisition instruction may carry user information of the target user. After receiving the report acquisition instruction, the cloud server can extract the user information in the instruction, query the user analysis report matching the user information from the database, and output the user analysis report to the user terminal. After receiving the user analysis report, the user terminal may output the above-mentioned user analysis report.
- one target user may correspond to multiple user analysis reports.
- the cloud server can send a user analysis report with the latest detection time to the user terminal according to the detection time of each user analysis report. are sent to the user terminal in turn.
- each user analysis report can be configured with a corresponding sending status identifier, used to determine whether the user analysis report has been sent to the user terminal, and for the sent user analysis report, the sending status identifier can be used to record the user. The number of times the analysis report is sent to the user terminal.
- the cloud server may select the user analysis report to be sent that matches the user information of the user terminal as the user analysis report to be sent according to the sending status identifier, and use The user analysis report that needs to be sent is sent to the user terminal.
- the cloud server may authenticate the report acquisition instruction, and determine whether the user terminal has the authority to acquire the user analysis report. For example, whether the user terminal has paid the generation fee corresponding to the user analysis report, or whether the user account associated with the user terminal has the authority to download the user analysis report, such as whether the user account is a member user, or whether the available number of times to download the user analysis report is 0 etc. If the authentication is successful, the user analysis report is output to the user terminal; otherwise, if the authentication fails, for example, the user terminal does not pay the corresponding fee, the corresponding authorization page can be output to the user terminal, and after the user terminal is detected to authorize , and then output the user analysis report to the user terminal.
- the user terminal may be installed with a client program corresponding to the generation system of the user analysis report, communicate with the cloud server by starting the client program, and download the above-mentioned user analysis report; the user terminal may also use the API interface, For example, by means of a small program, etc., obtain the above-mentioned user analysis report from the cloud server.
- the user terminal can also open the corresponding acquisition page through the browser, and download the user analysis report through the acquisition page.
- the cloud server may generate a change trend report according to multiple user analysis reports of the target user, and output the change trend report to the user terminal of the target user, so that the target user can obtain a single In addition to the test results, you can also determine your own health trends.
- the method for generating a user analysis report obtained by the embodiment of the present application obtains the Raman spectrum and user information of the urine sample of the target user through a distributed urine Raman spectrum collection device, The Raman spectrum information and user information are output to the data processing equipment, the user analysis report corresponding to the target user is generated, and the user analysis report is uploaded to the cloud server.
- the target user can obtain the generated user analysis report from the cloud server through the user terminal. For the purpose of obtaining user analysis reports based on urine samples at any time.
- Test report can obtain test report and health trend information independently in real time. Users can perform non-inductive health detection in their daily life. The detection process is non-inductive to the user, which greatly facilitates the user's detection. The user does not need other operations unrelated to daily behavior, and does not require medical staff to check the test results.
- the Raman spectrum information corresponding to the urine sample and the user information are output to the data processing equipment, and after the data processing equipment is analyzed and processed, the user analysis report of the output target user can be After uploading to the cloud server for storage, the target user can obtain the user analysis report at any time through the user terminal, which improves the real-time and convenience of obtaining the user analysis report.
- FIG. 5 shows a specific implementation flowchart of S201 of a method for generating a user analysis report provided by the second embodiment of the present application.
- a method S201 for generating a user analysis report provided in this embodiment includes: S501 to S503 , which are described in detail as follows:
- the generation system of the user analysis report further includes a signal switching device; the signal switching device is deployed on the communication link between the distributed urine Raman spectrum acquisition device and the data processing device; example 6 shows a schematic diagram of a connection of a signal switching apparatus according to an embodiment of the present application.
- the signal switching device is used to connect the data processing equipment with a plurality of distributed urine Raman spectrum collection devices, wherein the number of distributed urine Raman spectrum collection devices is N, and N can be Any positive integer greater than 1, each distributed urine Raman spectrum acquisition device and the data processing device corresponds to a communication line, which are lines 1 to N respectively, and the signal switching device is located between the communication lines of the two devices , the on-off of the communication line is controlled by the signal switching device.
- the data processing device receives the Raman spectrum information and the user information output by the distributed urine Raman spectrum collection device, including:
- the distributed urine Raman spectrum collection device stores the user information in the to-be-uploaded cache queue, and adds the line number corresponding to the distributed urine Raman spectrum collection device into the line queue.
- the distributed urine Raman spectrum collection device can upload the user information that needs to be uploaded to the corresponding cache queue to be uploaded, and the queue number of the upload cache queue is the same as the distributed urine Raman spectrum collection device.
- the line numbers corresponding to the devices can be the same. Since one data processing device can be connected to multiple distributed urine Raman spectrum acquisition devices, the data processing device can configure corresponding numbers for different distributed urine Raman spectrum acquisition devices, and use the numbers as the distributed urine Raman spectrum acquisition devices. Line number of the communication line where the Mann spectrum acquisition device is located.
- the distributed urine Raman spectrum acquisition device needs to inform the signal switching device that the data to be uploaded needs to be sent, so that the signal switching device can switch
- the line to the distributed urine Raman spectrum acquisition device with data upload based on this, the distributed urine Raman spectrum acquisition device can add its corresponding line number to the line queue, so that the signal switching device can be based on the line queue.
- the line number in the line switch is performed.
- the line queue can determine the order in the line queue according to the numbering order of each line number, that is, if the line number is 1 for the distributed urine Raman spectrum acquisition device and the line number is 3 After the distributed collection device of , adds the line number to the line queue, the order of line number 1 in the line queue will be earlier, and the order of line number 3 will be later in the line queue.
- the line queue may determine the order of each line number in the line queue according to the order of adding each line number, that is, the earlier the line number added, the higher the order in the queue.
- the signal switching device can sequentially switch the corresponding communication lines according to the sequence of the line numbers in the line queue.
- the signal switching device reads the line number contained in the line queue, and connects a communication link corresponding to the line number; the communication link is used to transmit the data processing device and the Interaction data between the distributed urine Raman spectrum collection devices corresponding to the line numbers.
- the signal switching device can read the line numbers stored in the line queue, and sequentially connect the communication links corresponding to the line numbers according to the order of the line numbers in the line queue. For example, if the line queue includes line number 1 and line number 3, the signal switching device will connect the communication link between the data processing device and the first distributed urine Raman spectrum acquisition device (that is, the line number is 1). After completing the data transmission, the signal switching device will disconnect the above-mentioned communication link and connect the communication link between the data processing equipment and the third distributed urine Raman spectrum acquisition device (that is, the line number communication link for 3). It should be noted that only one communication link is connected at the same time to avoid abnormal sending of interactive data.
- the data processing device may also store and issue control instructions for the urine Raman spectrum collection device in a buffer queue, and store the control instructions for different distributed urine Raman spectrum collection devices
- the number of queues in the delivery buffer queue is the same as the number of queues in the upload buffer queue.
- the upload buffer queue corresponding to the line number can upload the user information to the data processing device, and the release buffer queue can send the control command to the line through the communication link.
- the distributed urine Raman spectrum acquisition device corresponding to the number, that is, the above-mentioned communication link is a full-duplex working mode, which supports simultaneous uploading and downloading.
- the data processing device after the data processing device adds the control instruction to be sent to the delivery buffer queue, it can send the target object to be sent (that is, the distributed urine Raman spectrum acquisition device)
- the line number is added to the above-mentioned line queue, so that the line switching device can switch the corresponding communication link according to the line number contained in the line queue.
- the signal switching device acquires the user information from the to-be-uploaded cache queue of the distributed urine Raman spectrum collection device corresponding to the line number, and transmits the user information to the data processing device.
- the signal switching device can send the user information stored in the upload buffer queue by the distributed urine Raman spectrum acquisition device to the data processing through the communication link equipment; similarly, if a control instruction is stored in the cache queue corresponding to the data processing equipment, it can be transmitted to the distributed urine Raman spectrum acquisition device through a communication link.
- the signal switching device has a corresponding line maintenance time, and when it is detected that the connection duration of the above communication link is greater than or equal to the above line maintenance time, the signal switching device can switch to the next line numbered. communication link.
- the signal switching device after the signal switching device reads the line numbers contained in the line queue, it can clear the line numbers in the line queue; if the signal switching device responds to the completion of the connection operation of all line numbers in the line queue, The line number contained in the line queue can be read again, and the above-mentioned response process can be repeated.
- the data processing equipment can manage multiple distributed urine Raman spectrum acquisition devices at the same time, and it is also possible to avoid signal collision or transmission disorder between the issuance of control instructions and the upload of user information
- line polling is not required, which greatly improves the transmission efficiency of interactive data.
- FIG. 7 shows a specific implementation flowchart of a method S201 for generating a user analysis report provided by the third embodiment of the present application.
- a method S201 for generating a user analysis report provided in this embodiment includes: S701 to S703 , which are described in detail as follows:
- the distributed urine Raman spectrum collection device obtains the Raman spectrum and user information of the urine sample of the target user, and outputs the Raman spectrum information corresponding to the urine sample through the Raman spectrum analysis module, including: :
- the distributed urine Raman spectrum collection device acquires user information of the target user.
- the distributed urine Raman spectrum collection device can first obtain the user information of the target user, so as to determine whether the target user is a user with urine detection authority, and then collect urine samples and obtain Raman spectrum information , thereby reducing invalid detection operations and avoiding resource waste.
- the above-mentioned user information includes the face information of the target user and/or the card number of the identification card of the target user, and the like.
- the data processing device receives the user information output by the distributed urine Raman spectrum collection device, and performs identity authentication on the target user based on the user information.
- the distributed collection device can output the acquired user information to the data processing device, and the data processing device can perform identity authentication on the user information, for example, determine whether the target user is a registered user. If the user information is face information, it can be identified whether the face information matches the standard face of any registered user, if so, the target user is identified as a registered user, and the urine detection process is performed; if the person If the face information does not match the standard faces of all registered users, it will be identified as a non-registered user. At this time, the target user can be prompted to register, and the target user will not be subjected to the urine detection process.
- the above-mentioned user information is the card number of the identity card, then determine whether the card number of the registered user's registered identity card matches the card number obtained this time, and if so, identify the target user as a registered user. registered user.
- the data processing device if it detects that the target user is a legitimate user, it can control the distributed urine Raman spectrum collection device to carry out the urine sample collection process, so it can send the data to the distributed urine Raman spectrum collection device
- the authentication passing information is sent to instruct the distributed urine Raman spectrum acquisition device to perform the subsequent process.
- the distributed urine Raman spectrum acquisition device receives the authentication pass information output by the data processing device, it acquires the Raman spectrum of the urine sample of the target user, and passes the Raman spectrum of the urine sample of the target user.
- the spectral analysis module outputs the Raman spectral information corresponding to the urine sample.
- the distributed urine Raman spectrum collection device receives the authentication pass information output by the data processing device, it will perform subsequent urine sample collection and Raman spectrum collection operations to generate user analysis of the target user Report.
- the accuracy of starting the urine detection process can be improved, and invalid detection operations can be avoided.
- FIG. 8 shows a specific implementation flowchart of a method S703 for generating a user analysis report provided by the fourth embodiment of the present application.
- a method S703 for generating a user analysis report provided in this embodiment further includes: S801 to S811 , which are described in detail as follows:
- the generation system of the user analysis report further includes: a laser emission module, a Raman scattering processing module, and a laser switching device; exemplarily, FIG. 9 shows a schematic connection diagram of the laser switching device according to an embodiment of the present application.
- the laser switching device is used to connect the optical path between the data processing equipment and a plurality of distributed urine Raman spectrum collection devices, wherein the number of distributed urine Raman spectrum collection devices is N, The N can be any positive integer greater than 1.
- Each distributed urine Raman spectrum acquisition device and the data processing device corresponds to an optical path, which are lines 1 to N, respectively.
- the signal switching device is located in the optical paths of the two devices. In between, the on-off of the optical path is controlled by the laser switching device.
- the distributed urine Raman spectrum collection device receives the authentication pass information output by the data processing device, it will acquire the Raman spectrum of the urine sample of the target user, and output it through the Raman spectrum analysis module.
- the Raman spectrum information corresponding to the urine sample includes:
- the data processing device sends a valve opening instruction to the distributed urine Raman spectrum acquisition device to control the distributed urine Raman spectrum acquisition device to open the urine valve switch, so that the target The user's urine passes through the urine sampling tube.
- the data processing device may instruct the distributed urine Raman spectrum collection device to perform a urine collection operation. Based on this, the data processing device will firstly send a valve opening command to the distributed urine Raman spectrum acquisition device, so that the user's urine can pass through the urine sampling tube.
- the above-mentioned urine valve switch may include: a urine inlet valve switch and a non-closing valve switch.
- the closing range of the non-closing valve switch can be any value between 1/2 and 3/4.
- the distributed urine Raman spectrum collection device obtains a first temperature value output by a temperature sensor for collecting urine temperature at a preset collection interval.
- the distributed urine Raman spectrum collection device will acquire the temperature of urine flowing through the urine sampling tube at a preset collection interval through the temperature sensor. At this time, because the valve of the urine sampling tube is not If it is not closed, the urine is still flowing, that is, the sampling has not been completed. Since the liquid initially flowing through the urine sampling tube may be mixed with other liquids, such as rinsed water or disinfectant, it will affect the subsequent measurement accuracy.
- the liquid in the above environment is often lower than the body temperature, that is, the urine temperature, so it can be determined whether the liquid in the urine sampling tube is urine by collecting the urine temperature.
- the data processing device receives a plurality of the first temperature values uploaded by the distributed urine Raman spectrum collection device.
- the distributed urine Raman spectrum collection device obtains multiple temperature values of urine through the temperature sensor, that is, after the above-mentioned multiple first temperature values, it can be output to the data processing device, and the data processing device can Based on the plurality of first temperature values, it is determined whether the urine temperature is stable.
- judging whether the urine temperature is stable is specifically: whether there are multiple consecutive first temperature values higher than the preset temperature threshold, if so, it is recognized that the urine temperature has stabilized, and at this time, urine is mainly in the urine sampling tube. , and other liquids with less content, the urine sample can be fixed and subsequent detection operations can be performed.
- the data processing device may set a number threshold, for example, 3, and if three consecutive first temperature values are detected to be greater than or equal to the temperature threshold, the operation of S804 is performed.
- the data processing device sends a sample collection instruction to the distributed urine Raman spectrum collection device if it detects that the first temperature values outputted continuously are greater than a preset temperature threshold.
- the data processing device detects that multiple consecutively output first temperature values are greater than the temperature threshold, the urine sample is identified as stable, the urine sample can be fixed, and subsequent detection operations can be performed, so the data processing device can distribute The distributed urine Raman spectrum acquisition device sends a sample acquisition instruction to close the urine valve switch of the distributed urine Raman spectrum acquisition device.
- the distributed urine Raman spectrum collection device receives the sample collection instruction, it closes the urine valve switch to obtain a urine sample.
- the distributed urine Raman spectrum collection device after receiving the sample collection instruction, the distributed urine Raman spectrum collection device will close the urine valve switch, so that the collected urine sample can be fixed. If the urine valve switch includes a urine inlet valve switch and a non-closing valve switch, the two valve switches can be closed at the same time.
- the data processing device turns on the laser emission module, and controls the laser switching device to switch to an optical path corresponding to the distributed urine Raman spectrum collection device, so as to emit the laser light through the optical path
- the laser signal output by the module is irradiated to the urine sample.
- the laser emission module can be turned on, and the laser switching device can be controlled to switch on the connection between the distributed urine Raman spectrum collection device and the distributed urine Raman spectrum collection device.
- the data processing equipment can add the optical path number corresponding to the urine Raman spectroscopic analysis device into the optical path queue, and the laser switching device can read the optical path number in the optical path queue, and turn on the optical path corresponding to the optical path number.
- the laser light generated by the laser emission module can be irradiated to the urine sample through the optical path through the optical fiber to obtain the corresponding Raman scattering spectrum .
- the Raman scattering processing module receives the Raman scattered light signal generated by the Raman collection module in the distributed urine Raman spectrum collection device based on the laser signal after irradiating urine, and based on the The Raman spectral information is obtained from the Raman scattered light signal.
- the distributed urine Raman spectrum collection device is equipped with a Raman collection module, which can acquire the Raman spectrum after the laser is scattered by the urine sample, that is, the above-mentioned Raman scattered light signal, through the optical fiber and the above-mentioned optical path
- the output optical path in the device is transmitted to the Raman scattering processing module, and the optical signal is converted into an electrical signal through the Raman scattering processing module to generate Raman spectral information.
- the data processing device receives the Raman spectrum information output by the Raman scattering processing module, and controls the laser switching device to disconnect the laser emission module from the distributed urine Raman spectrum collection the optical path between the devices.
- the data processing device can control the laser switching module to cut off the connection between the Raman spectrum collecting device and the distributed urine Raman spectrum collecting device. the optical path, thus completing the collection of urine samples.
- the laser switching device can switch to the corresponding optical path, and repeat the above operations.
- the Raman spectrum acquisition device reuses the same laser emission module and Raman scattering analysis module, which greatly improves the reuse rate of the equipment, reduces the cost of the distributed urine Raman spectrum acquisition device, and facilitates popularization and application.
- the data processing device sends the valve opening instruction to the distributed urine Raman spectrum collection device, so as to control the distributed urine Raman spectrum collection device to open the urine valve switch, so as to The urine of the target user is caused to flow out of the urine sampling tube.
- the data processing device After the data processing device receives the Raman spectrum information, it indicates that the urine sample has been used, and the urine sampling tube can be cleaned. Based on this, the data processing device sends a valve opening command to the distributed urine Raman spectrum acquisition device. After receiving the valve opening command, the urine Raman spectrum analysis device turns on the urine valve switch, and the urine sample is under the action of gravity. The urine sampling tube can flow out.
- the signal switching device can be used to send the commands. Repeat.
- the distributed urine Raman spectrum collection device detects that the target user is far away from the distributed urine Raman spectrum collection device, it sends a detection completion instruction to the data processing device.
- the distributed urine Raman spectrum collection device can be configured with a human body infrared distance sensor, and the distance value between the distributed urine Raman spectrum collection device and the target user can be collected through the human body infrared distance sensor. If the obtained distance value keeps increasing and is larger than the preset distance threshold value, it is recognized that the target user is far away from the distributed urine Raman spectrum acquisition device. At this time, the urinal can be cleaned, and a detection test can be sent to the data processing device. Complete the instruction.
- the data processing device sends a flushing start instruction to the distributed urine Raman spectrum acquisition device, so as to control the distributed urine Raman spectrum acquisition device to open a flush valve switch, and clean the urine Liquid sampling tube.
- the data processing device determines that the detection operation has been completed, and can notify the distributed urine Raman spectrum acquisition device to flush the toilet.
- the data processing equipment will send data to the distributed urine Raman spectrum acquisition device.
- the flushing start command is used to turn on the flushing valve switch of the distributed urine Raman spectrum collection device. Since the urine valve switch is already turned on when the urine sample is discharged above, it does not need to be turned on again at this time.
- the data processing device sends a valve closing instruction to the distributed urine Raman spectrum collection device to control the distributed urine Raman spectrum collection device to close the urine valve switch.
- the data processing device may be set with a flushing duration, and after detecting that the duration of the flushing valve opening is greater than the aforementioned flushing duration, it may send a valve closing instruction to the distributed urine Raman spectrum acquisition device, so as to control the
- the distributed urine Raman spectrum collection device closes the urine valve switch, optionally, the flushing valve switch can also be closed at the same time to stop the flushing action.
- flushing the urine sampling tube after the detection is completed can improve the cleanliness of the urine sampling tube, avoid mutual contamination between urine samples, and thus improve the accuracy of the user's analysis report.
- FIG. 10 shows a specific implementation flowchart of a method for generating a user analysis report provided by the fifth embodiment of the present application.
- the distributed urine Raman spectrum collection device obtains the Raman spectrum of the urine sample of the target user and User information, and before outputting the Raman spectrum information corresponding to the urine sample through the Raman spectrum analysis module, it also includes: S1001 ⁇ S1003, the details are as follows:
- the distributed urine Raman spectrum collection device acquires the Raman spectrum and user information of the urine sample of the target user, and outputs the Raman spectrum information corresponding to the urine sample through the Raman spectrum analysis module, Also includes:
- the data processing device receives the power-on instruction uploaded by the distributed urine Raman spectrum acquisition device, it sends a valve opening instruction to the distributed urine Raman spectrum acquisition device to control the The distributed urine Raman spectrum acquisition device turns on the urine valve switch.
- the distributed urine Raman spectrum collection device when the distributed urine Raman spectrum collection device is turned on, it can send a power-on command to the data processing device. After the data processing device receives the power-on command, it can perform a The acquisition device performs the initialization process, so it will send a valve opening command to the distributed urine Raman spectrum acquisition device to open the urine valve switch of the distributed urine Raman spectrum acquisition device. Similarly, if the urine valve switch includes The urine inlet valve switch and the non-closed valve switch can be opened at the same time. Of course, the flush valve switch can also be turned on to perform an initial cleaning operation on the distributed urine Raman spectrum acquisition device.
- the distributed urine Raman spectrum collection device acquires the current second temperature value through the temperature sensor.
- the distributed urine Raman spectrum collection device can obtain the second temperature value in the current environment through the temperature sensor, and the second temperature value is specifically the ambient temperature value.
- the distributed urine Raman spectrum collection device may acquire multiple temperature values at preset time intervals, use the average value of the multiple temperature values as the above-mentioned second temperature value, and output it to the data processing device.
- the data processing device receives the second temperature value output by the distributed urine Raman spectrum collection device, and identifies the second temperature value as the temperature threshold.
- the data processing device may use the second temperature value as a temperature threshold for judging whether the urine is stable. Because, when no urine passes through the urine sampling tube, the temperature of the general liquid will be lower than or equal to the above temperature threshold. If the detected temperature is greater than the above temperature threshold, there must be urine passing through, so that the temperature can be set by obtaining the ambient temperature. Threshold value for identification of urine stability.
- the data processing device sends a valve closing instruction to the distributed urine Raman spectrum collection device to control the distributed urine Raman spectrum collection device to close the urine valve switch.
- the data processing device After the data processing device obtains the temperature threshold corresponding to the urine Raman spectrum analysis device, it can recognize that the initialization operation has been performed, and at this time, the urine valve of the distributed urine Raman spectrum acquisition device can be closed. switch, thus sending it a valve closing command.
- the temperature threshold corresponding to the distributed urine Raman spectrum collection device is obtained by performing an initialization process on the distributed urine Raman spectrum collection device, which can improve the accuracy of subsequent urine detection operations.
- FIG. 11 shows a specific implementation flowchart of S801 of a method for generating a user analysis report provided by the sixth embodiment of the present application.
- a method S801 for generating a user analysis report provided in this embodiment includes: S1101-S1102 and/or S1103-S1104, and the details are as follows:
- the distributed urine Raman spectrum collection device obtains the user information of the target user, including:
- the face recognition module obtains the face image of the target user;
- the distance measuring sensor is used for the distance value between the object close to the distributed urine Raman spectrum collection device and the distributed urine Raman spectrum collection device.
- the distributed urine Raman spectrum acquisition device may be configured with a ranging sensor, and the ranging sensor may specifically be an infrared ranging sensor, and the distributed urine Raman spectrum acquisition device may be obtained through the infrared ranging sensor The distance value from the target user.
- the distributed urine Raman spectrum collection device detects that multiple distance values are smaller than the preset proximity distance, it can be recognized that the target user has approached the collection device, and a urine detection operation may be required.
- the distributed urine Raman spectrum collection device can start the face recognition module, so as to obtain the face image of the target user.
- the face recognition module is specifically a camera module with a face recognition function.
- the distributed urine Raman spectrum collection device generates the user information based on the face image.
- the distributed urine Raman spectrum collection device may use the collected face image as user information.
- the distributed urine Raman spectrum collection device acquires the chip identifier of the NFC chip of the target user through a near-field wireless communication NFC module.
- the distributed urine Raman spectrum collection device may also be configured with an NFC module for reading the chip identifier of the NFC chip of the target user.
- the NFC chip can be placed in the user terminal of the target user, and can also be placed in the identification card of the target user, such as a membership card corresponding to the target user.
- the distributed urine Raman spectrum collection device generates the user information based on the chip identification.
- the distributed urine Raman spectrum collection device may use the collected chip identification as user information.
- the user information is acquired through the face recognition module and/or the NFC module, which can improve the efficiency of user information acquisition.
- FIG. 12 shows a specific implementation flowchart of a method S204 for generating a user analysis report provided by the seventh embodiment of the present application.
- a method S204 for generating a user analysis report provided in this embodiment includes: S1201 to S1203 , which are described in detail as follows:
- the user terminal In S1201, the user terminal generates the report acquisition instruction based on the user information of the target user, and sends the report acquisition instruction to the cloud server.
- the target user can input corresponding user information on the user terminal, for example, obtain the face image of the target user or the chip identification of the corresponding NFC chip.
- the user terminal may generate a report acquisition instruction according to the user information, so that the cloud server may determine, according to the user information, a user analysis report corresponding to the user terminal that initiates the acquisition request.
- the above-mentioned user information includes but is not limited to: face information, the card number of the ID card, user account, user number, etc.
- the cloud server extracts the user information from the report obtaining instruction sent by the user terminal, and extracts the user analysis report matching the user information from a database; User analysis report and the user information.
- the cloud server after receiving the report acquisition instruction, the cloud server will extract the user information carried in the instruction, and check whether there is a user analysis report that matches the user information from the database storing the user analysis report, and if there is no user analysis report , the information of no report is output to the user terminal; otherwise, if there is, the user analysis report matching the user information is sent to the user terminal.
- the user terminal receives and displays the user analysis report.
- the user terminal may display it through a local display module.
- the user analysis report is downloaded through the user terminal, the purpose of obtaining the user analysis report anytime and anywhere is realized, and the convenience of obtaining the user analysis report is improved.
- FIG. 13 shows a structural block diagram of a system for generating a user analysis report provided by another embodiment of the present application, and each device included in the system for generating a user analysis report is used to execute the steps in the embodiment corresponding to FIG. 1 .
- each device included in the system for generating a user analysis report is used to execute the steps in the embodiment corresponding to FIG. 1 .
- only the parts related to this embodiment are shown.
- the generation system for the user analysis report includes: at least one distributed urine Raman spectrum acquisition device 131 , a data processing device 132 and a cloud server 133 ;
- the distributed urine Raman spectrum collection device 131 is used to obtain the urine sample and user information of the target user, and output the Raman spectrum information corresponding to the urine sample through the Raman spectrum analysis module;
- the data processing device 132 is configured to receive the Raman spectrum information and the user information output by the distributed urine Raman spectrum collection device, and generate the data based on the Raman spectrum information and the user information.
- User analysis report describing the target user;
- the data processing device 132 configured to upload the user analysis report to the cloud server;
- the cloud server 133 is configured to send the user analysis report to the user terminal after receiving the report acquisition instruction initiated by the user terminal corresponding to the target user.
- the generation system for the user analysis report further includes a signal switching device; the signal switching device is deployed in the communication link between the distributed urine Raman spectrum acquisition device 131 and the data processing device 132 superior;
- the data processing device 132 is configured to receive the Raman spectrum information and the user information output by the distributed urine Raman spectrum collection device, including:
- the distributed urine Raman spectrum collection device 131 is used to store the user information in the to-be-uploaded cache queue, and add the line number corresponding to the distributed urine Raman spectrum collection device to the line queue;
- the signal switching device is used to read the line number contained in the line queue, and connect a communication link corresponding to the line number; the communication link is used to transmit the data processing device and the line Interactive data between the distributed urine Raman spectrum collection devices corresponding to the numbers;
- the signal switching device is configured to acquire the user information from the to-be-uploaded cache queue of the distributed urine Raman spectrum collection device corresponding to the line number, and transmit the user information to the data processing device.
- the generation system is also used for:
- the data processing device 132 is used to store the control instructions for the distributed urine Raman spectrum collection device in the delivery buffer queue, and add the line number corresponding to the distributed urine Raman spectrum collection device to the line. in the queue;
- the signal switching device is used to read the line number contained in the line queue, and connect a communication link corresponding to the line number; the communication link is used to transmit the data processing device and the line Interactive data between the distributed urine Raman spectrum collection devices corresponding to the numbers;
- the signal switching device is used to obtain the control instruction from the issued buffer queue corresponding to the line number, and transmit it to the distributed urine Raman spectrum acquisition device corresponding to the line number .
- the distributed urine Raman spectrum collection device 131 is used to acquire the urine sample and user information of the target user, and output the Raman spectrum information corresponding to the urine sample through the Raman spectrum analysis module, include:
- the distributed urine Raman spectrum collection device 131 is used to obtain user information of the target user;
- the data processing device 132 is configured to receive the user information output by the distributed urine Raman spectrum collection device, and perform identity authentication on the target user based on the user information;
- the distributed urine Raman spectrum collection device 131 is configured to acquire the Raman spectrum of the urine sample of the target user if the authentication pass information output by the data processing device is received, and pass the Raman spectrum of the urine sample of the target user.
- the spectral analysis module outputs the Raman spectral information corresponding to the urine sample.
- the generation system for the user analysis report further includes: a laser emission module, a Raman scattering processing module, and a laser switching device;
- the distributed urine Raman spectrum collection device 131 is configured to acquire the Raman spectrum of the urine sample of the target user if the authentication pass information output by the data processing device is received, and pass the Raman spectrum of the urine sample of the target user.
- the spectral analysis module outputs the Raman spectral information corresponding to the urine sample, including:
- the data processing device 132 is configured to send a valve opening instruction to the distributed urine Raman spectrum acquisition device to control the distributed urine Raman spectrum acquisition device to open the urine valve switch, so that the target The user's urine is passed through the urine sampling tube;
- the distributed urine Raman spectrum collection device 131 is used to obtain a first temperature value output by a temperature sensor for collecting urine temperature at a preset collection interval;
- the data processing device 132 is configured to receive a plurality of the first temperature values uploaded by the distributed urine Raman spectrum collection device;
- the data processing device 132 is configured to send a sample collection instruction to the distributed urine Raman spectrum collection device if it is detected that the first temperature values of multiple continuous outputs are greater than a preset temperature threshold;
- the distributed urine Raman spectrum collection device 131 is configured to close the urine valve switch to obtain a urine sample if the sample collection instruction is received;
- the data processing device 132 is used to turn on the laser emission module and control the laser switching device to switch to the optical path corresponding to the distributed urine Raman spectrum collection device, so as to emit the laser light through the optical path
- the laser signal output by the module is irradiated to the urine sample;
- the Raman scattering processing module is configured to receive the Raman scattered light signal generated by the Raman collection module in the distributed urine Raman spectrum collection device based on the laser signal after irradiating urine, and based on the Raman scattering light signal.
- the Raman spectral information is obtained by obtaining the Raman spectral information;
- the data processing device 132 is configured to receive the Raman spectrum information output by the Raman scattering processing module, and control the laser switching device to disconnect the laser emission module from the distributed urine Raman spectrum collection the optical path between the devices.
- the data processing device 132 is configured to receive the Raman spectrum information output by the Raman scattering processing module, and control the laser switching device to disconnect the laser emission module from the distributed urine. After the optical path between the liquid Raman spectrum collection devices, it also includes:
- the data processing device 132 is configured to send the valve opening instruction to the distributed urine Raman spectrum acquisition device, so as to control the distributed urine Raman spectrum acquisition device to open the urine valve switch to causing the target user's urine to flow out of the urine sampling tube;
- the distributed urine Raman spectrum collection device 131 is configured to send a detection completion instruction to the data processing device if it is detected that the target user is far away from the distributed urine Raman spectrum collection device;
- the data processing device 131 is used to send a flushing start instruction to the distributed urine Raman spectrum acquisition device, so as to control the distributed urine Raman spectrum acquisition device to open the flush valve switch and clean the urine.
- the data processing device sends a valve closing instruction to the distributed urine Raman spectrum collection device to control the distributed urine Raman spectrum collection device to close the urine valve switch.
- the urine valve switch includes: a urine inlet valve switch and a non-closing valve switch.
- the distributed urine Raman spectrum collection device 131 is used to obtain the urine sample and user information of the target user, and output the Raman spectrum information corresponding to the urine sample through the Raman spectrum analysis module.
- the Raman spectrum analysis module Before, also included:
- the data processing device 132 is configured to send a valve opening instruction to the distributed urine Raman spectrum acquisition device to control the The distributed urine Raman spectrum acquisition device turns on the urine valve switch;
- the distributed urine Raman spectrum collection device 131 is used to obtain the current second temperature value through the temperature sensor;
- the data processing device 131 is configured to receive the second temperature value output by the distributed urine Raman spectrum collection device, and identify the second temperature value as the temperature threshold;
- the data processing device 131 is configured to send a valve closing instruction to the distributed urine Raman spectrum collection device, so as to control the distributed urine Raman spectrum collection device to close the urine valve switch.
- the distributed urine Raman spectrum collection device 131 is used to obtain the user information of the target user, including:
- the distributed urine Raman spectrum collection device 131 is used to obtain the face image of the target user through the face recognition module if the received multiple distance values continuously output by the ranging sensor are smaller than the preset proximity threshold;
- the distance measuring sensor is used for the distance value between the object close to the distributed urine Raman spectrum collection device and the distributed urine Raman spectrum collection device;
- the distributed urine Raman spectrum collection device 131 is used for generating the user information based on the face image; and/or the distributed urine Raman spectrum collection device 131 is used for near-field wireless communication
- the NFC module obtains the chip identifier of the NFC chip of the target user
- the distributed urine Raman spectrum collection device 131 is configured to generate the user information based on the chip identification.
- the cloud server 133 is configured to receive a report acquisition instruction initiated by a user terminal corresponding to the target user, and then send the user analysis report to the user terminal, including: a user terminal for The user information of the target user generates the report acquisition instruction, and sends the report acquisition instruction to the cloud server; the cloud server 133 is configured to extract the report acquisition instruction from the report acquisition instruction sent by the user terminal user information, and extract the user analysis report matching the user information from the database; each user analysis report and the user information are associated and stored in the database; the user terminal is used to receive and display the user analysis report.
- the user analysis report generation system obtains the urine sample and user information of the target user through the distributed urine Raman spectrum collection device, and outputs the Raman spectrum information and user information corresponding to the urine sample To the data processing equipment, generate the user analysis report corresponding to the target user, and upload the user analysis report to the cloud server.
- the target user can obtain the generated user analysis report from the cloud server through the user terminal, realizing the generation of urine samples at any time. for the purpose of user analytics reports.
- the distributed urine Raman spectrum acquisition device Due to the deployment flexibility and intelligent automatic unmanned operation of the distributed urine Raman spectrum acquisition device, there is no need for the user to collect urine samples, and there is no need for the user to go to the hospital or For medical institutions to conduct testing, users can independently obtain testing reports and health trend information in real time without the need for users to wait for testing reports. Users can perform non-sensing health tests in daily life; and after analyzing and processing the collected urine samples through data processing equipment, the user analysis report of the output target user can be uploaded to the cloud server for storage, and the target user can pass The user terminal can obtain the user analysis report at any time, which improves the real-time and convenience of obtaining the user analysis report.
- each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically alone, or two or more units may be integrated into one unit.
- the above-mentioned integrated units may be implemented in the form of hardware, or may be implemented in the form of software functional units.
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Abstract
La présente demande se rapporte au domaine technique de l'Internet et concerne un procédé et un système pour générer un rapport d'analyse d'un utilisateur. Le procédé comprend les étapes suivantes : un dispositif d'acquisition de spectre Raman d'urine distribué acquiert un spectre Raman d'un échantillon d'urine et des informations d'utilisateur d'un utilisateur cible et délivre des informations du spectre Raman correspondant à l'échantillon d'urine au moyen d'un module d'analyse du spectre Raman ; un dispositif de traitement de données reçoit les informations du spectre Raman et les informations de l'utilisateur qui sont délivrées par le dispositif d'acquisition du spectre Raman d'urine distribué, et génère un rapport d'analyse d'utilisateur de l'utilisateur cible sur la base des informations du spectre Raman et des informations de l'utilisateur ; le rapport d'analyse de l'utilisateur est téléchargé vers un serveur en nuage ; et le serveur en nuage reçoit une instruction d'acquisition de rapport initiée par un terminal d'utilisateur correspondant à l'utilisateur cible, puis il envoie le rapport d'analyse de l'utilisateur au terminal de l'utilisateur. Dans la présente demande, un utilisateur peut acquérir un rapport d'essai, des informations de tendance de santé, etc. en temps réel, sans effectuer une opération d'acquisition d'échantillon d'urine, sans se rendre dans un hôpital ou un établissement de santé pour se soumettre à un examen et sans attendre un rapport d'examen. L'utilisateur peut effectuer un examen de santé sans problème dans la vie quotidienne.
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| PCT/CN2020/109849 WO2022036562A1 (fr) | 2020-08-18 | 2020-08-18 | Procédé et système pour générer un rapport d'analyse d'un utilisateur |
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Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| CN114974483A (zh) * | 2022-05-23 | 2022-08-30 | 佳净洁环境科技有限公司 | 基于智慧云厕的排泄物检测数据获取方法及系统 |
| CN117747018A (zh) * | 2024-01-26 | 2024-03-22 | 宁波礼达先导生物技术有限公司 | 一种基于物联网的分布式化合物样本管理的系统及方法 |
| CN117783086A (zh) * | 2023-12-28 | 2024-03-29 | 山东鸿瑞新材料科技有限公司 | 异丁烯聚合反应出料在线拉曼分析仪实施与运行方法 |
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| CN117783086A (zh) * | 2023-12-28 | 2024-03-29 | 山东鸿瑞新材料科技有限公司 | 异丁烯聚合反应出料在线拉曼分析仪实施与运行方法 |
| CN117747018A (zh) * | 2024-01-26 | 2024-03-22 | 宁波礼达先导生物技术有限公司 | 一种基于物联网的分布式化合物样本管理的系统及方法 |
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