CT machine intelligent console system and control method thereof

The CT scanner intelligent control console system integrates identity recognition, visual interaction, and voice interaction modules, which solves the limitations of the CT scanner system in terms of information entry, fault handling, and operational efficiency, and realizes an efficient and convenient operation process.

CN121237358APending Publication Date: 2025-12-30SHINVA MEDICAL INSTR CO LTD
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Patent Information

Application Number
CN202511145890.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-08-15
Publication Date
2025-12-30

AI Technical Summary

Technical Problem

Existing CT scanner systems have limitations in information entry, fault handling, and operational efficiency, resulting in cumbersome operation, low efficiency, and potential impact on the lifespan of the patients being examined and the equipment.

Method used

The CT scanner employs an intelligent control console system, which includes a button module, an identity recognition module, an MCU module, a knowledge base module, a visual interaction module, and a voice interaction module. This system enables automatic input of patient information, fault diagnosis guidance, and button function redefinition.

Benefits of technology

It improved the accuracy and efficiency of information entry, simplified the fault handling process, enhanced the work efficiency of operators and ensured the smooth progress of scanning and inspection.

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Abstract

The invention provides a CT machine intelligent console system and a control method thereof, and relates to the technical field of CT machines and intelligent consoles. The system comprises a key module, an identity recognition module, an MCU module, a think tank module, a visual interaction module and a voice interaction module, the key module, the identity recognition module, the visual interaction module and the voice interaction module are in communication connection with the MCU module, the MCU module is in communication connection with the think tank module, and the think tank module is in communication connection with an external diagnosis and treatment network; the key module comprises a plurality of CT function operation keys and a plurality of movable key function indication labels, the think tank module comprises a CT equipment control computer additionally provided with an intelligent algorithm library, and the intelligent algorithm library comprises a CT equipment fault solution guide algorithm library. On the basis, the problem that an existing CT machine system is limited in the aspects of information input, fault processing and operation efficiency is solved.
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Description

Technical Field

[0001] This invention relates to the field of CT scanners and intelligent control consoles, specifically to an intelligent control console system for a CT scanner and its control method. Background Technology

[0002] Medical CT scanners are among the most widely used routine diagnostic devices in clinical medicine today, and are extensively applied in many clinical fields such as disease detection, angiography, cardiac imaging, and interventional therapy. However, existing CT systems suffer from cumbersome operating procedures and user-unfriendly interfaces, causing significant inconvenience to CT operators and even potentially negatively impacting patients. Specifically:

[0003] Firstly, regarding data entry: Before operating the CT scanner to scan a patient, the CT operator needs to enter the patient's personal information. Current technology typically uses manual entry, where the operator collects information through questioning and then inputs it into a computer. This requires the operator to repeatedly verify the patient's ID number, name, age, examination site, serial number, etc., making the process extremely cumbersome. Furthermore, many patients may have unclear speech due to age or not speaking Mandarin, and the operator may also make mistakes due to fatigue or lack of concentration, leading to errors in data entry. Therefore, the existing manual entry method cannot guarantee the effectiveness and efficiency of the scanning examination.

[0004] Secondly, regarding troubleshooting: Prolonged equipment use, component aging, and design deficiencies can lead to occasional malfunctions of CT scanners during scans. While current CT scanners will report error warning codes when malfunctions occur, CT operators, being users rather than engineers, often rely solely on experience to handle simple issues. When complex malfunctions occur, operators typically opt for a power-off restart, but this is time-consuming, usually taking several minutes to over ten minutes. This reduces scanning efficiency and can lead to patient dissatisfaction. More seriously, for patients undergoing contrast-enhanced CT scans, the pre-injected contrast agent may flow through arteries and veins during the restart process, rendering the enhancement effect ineffective after the scan resumes. Furthermore, directly cutting off power can damage internal components of the CT scanner, shortening its lifespan.

[0005] Thirdly, in terms of operational efficiency: the structural layout of CT machines from different brands (especially domestic and foreign brands) often differs, and the operating habits of different operators are also different. Therefore, when CT operators are faced with a newly replaced or newly encountered CT machine from a different brand, they often need a long time to adapt, during which time the operator's operational efficiency will be greatly affected.

[0006] In summary, this invention provides an intelligent control console system for a CT scanner and its control method. Summary of the Invention

[0007] The purpose of this invention is to provide a CT scanner intelligent control console system and its control method to solve the problems mentioned in the background art, such as the limitations of existing CT scanner systems in terms of information input, fault handling and operating efficiency.

[0008] This invention is achieved using the following technical solution:

[0009] A CT scanner intelligent control console system includes a button module, an identity recognition module, an MCU module, a knowledge base module, a visual interaction module, and a voice interaction module. The button module, identity recognition module, visual interaction module, and voice interaction module are each communicatively connected to the MCU module. The MCU module is communicatively connected to the knowledge base module, and the knowledge base module is communicatively connected to an external medical network. The MCU module is used to transmit information and data between the knowledge base module and other modules. The knowledge base module is used to perform corresponding operations based on the received information and data. The button module includes several CT function operation buttons and several movable button function indicator labels. The knowledge base module includes a CT equipment control computer equipped with an intelligent algorithm library, which includes a CT equipment fault-solving guidance algorithm library.

[0010] Furthermore, the button function indicator labels are magnetic labels, and several button function indicator labels respectively indicate the functions of several CT function operation buttons.

[0011] Furthermore, the identity recognition module is configured to be oriented towards the examinee, CT operator, and CT machine equipment engineer. The identity recognition module includes a fingerprint recognition module integrated on the control panel of the console. The fingerprint recognition module includes a fingerprint sensor and a fingerprint chip with a built-in fingerprint algorithm. The external medical network is equipped with a corresponding fingerprint recognition module.

[0012] Furthermore, the visual interaction module includes a touch screen integrated on the control panel of the console. The touch screen is used to display CT equipment fault troubleshooting information and to customize the functions of several CT function operation buttons.

[0013] A control method for a CT scanner intelligent control console system, using the aforementioned CT scanner intelligent control console system, includes the following steps:

[0014] Step 1: Complete the initial registration, including entering the identity information of the corresponding CT operator and granting the corresponding permissions to the CT operator;

[0015] Step 2: Respond to personalized settings, including redefining the functions of several CT function operation buttons according to the instructions of the CT operator;

[0016] Step 3: Supervise the scanning and inspection process, including identifying the subject of the inspection and recording the subject's information, as well as guiding CT operators to troubleshoot CT equipment malfunctions.

[0017] Further, step 1 includes the following sub-steps:

[0018] Step 1-1: The identity recognition module obtains the original fingerprint image of the CT operator. The database module processes the original fingerprint image to obtain the data fingerprint template for identity registration of the CT operator, and then stores the data fingerprint template for identity registration in the server database.

[0019] Step 1-2: Grant the CT operator the appropriate permissions according to the instructions of the CT equipment engineer with the authority to assign permissions.

[0020] Furthermore, step 2 includes the following sub-steps:

[0021] Step 2-1: The identity recognition module obtains the real-time fingerprint image of the CT operator. The database module processes the real-time fingerprint image to obtain a temporary data fingerprint template of the CT operator. Then, the temporary data fingerprint template is registered with the identity registration data fingerprint template in the server database. If the registration result meets the threshold, the identity of the CT operator is recognized and he / she is allowed to operate within the corresponding permissions.

[0022] Step 2-2: The visual interaction module receives instructions from the CT operator and transmits the instruction information to the think tank module to redefine the functions of the corresponding CT function operation buttons.

[0023] Furthermore, step 2 also includes:

[0024] Steps 2-3: The think tank module, in conjunction with the visual interaction module and / or the voice interaction module, instructs the CT operator to move the corresponding button function indicator labels, so that the redefined CT function operation buttons and button function indicator labels remain in correspondence.

[0025] Furthermore, step 3 includes the following sub-steps:

[0026] Step 3-1: The identity recognition module obtains the real-time fingerprint image of the CT operator. The database module processes the real-time fingerprint image to obtain a temporary data fingerprint template of the CT operator. Then, the temporary data fingerprint template is registered with the identity registration data fingerprint template in the server database. If the registration result meets the threshold, the identity of the CT operator is recognized and allowed to operate within the corresponding permissions.

[0027] Step 3-2: The identity recognition module acquires the real-time fingerprint image of the subject, and the think tank module processes the real-time fingerprint image to obtain the data fingerprint template of the subject. Then, based on the data fingerprint template, the subject's identity is matched from the external diagnosis and treatment network and the subject's information is imported.

[0028] Step 3-3: The think tank module, in conjunction with the visual interaction module, displays the information of the inspected object;

[0029] If step 3 is executed after step 2 but before the technician's identity verification for the current CT operation expires, then step 3-2 is executed directly.

[0030] Furthermore, in step 3, the CT equipment troubleshooting guidance includes two methods: display guidance and voice guidance, wherein:

[0031] The display guidance is a touch screen in the visual interaction module that displays CT equipment fault resolution information, which includes error warning codes, error warning code explanations, and fault handling procedures.

[0032] The voice guidance is provided by the CT operator waking up the voice interaction module with a voice command. Under the control of the think tank module, the voice interaction module broadcasts the fault handling process to the CT operator and / or conducts voice interaction with him / her.

[0033] The beneficial effects achieved by this invention are:

[0034] This invention provides an intelligent control console system for a CT scanner and its control method. By setting up a button module, an identity recognition module, an MCU module, a knowledge base module, a visual interaction module, and a voice interaction module, and by setting steps 1 to 3, it can automatically input the information of the examined object, provide troubleshooting guidance when the CT scanner malfunctions, and redefine the CT function operation buttons. Based on this, compared with existing CT scanner systems that have limitations in information input, fault handling, and operational efficiency, this invention eliminates the cumbersome manual input method, can intuitively guide CT operators to troubleshoot equipment malfunctions, and can flexibly change the button function layout according to the operating habits of CT operators, thereby facilitating the effective and efficient conduct of scanning examinations. Attached Figure Description

[0035] Figure 1 This is a schematic block diagram of the structural composition of the intelligent control console system for CT scanners according to an embodiment of the present invention;

[0036] Figure 2 This is a schematic diagram of the flow steps of the control method described in the embodiment of the present invention. Detailed Implementation

[0037] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.

[0038] Example 1

[0039] The first aspect of this embodiment provides a CT scanner intelligent control console system. Please refer to... Figure 1 It includes a button module, an identity recognition module, an MCU module, a think tank module, a visual interaction module, and a voice interaction module. The button module, identity recognition module, visual interaction module, and voice interaction module are each connected to the MCU module. The MCU module is connected to the think tank module, and the think tank module is connected to an external medical network. Specifically:

[0040] The button module includes several CT function operation buttons (mechanical buttons) integrated on the control panel and several movable button function indicator labels. Each button function indicator label corresponds to a specific CT function operation button. When a CT function operation button is pressed, its corresponding function status is collected and fed back, unaffected by the status of other buttons. The button function indicator labels are magnetic and can be repeatedly applied and reused. For example, button function indicator label A can be removed and placed in the location of button function indicator label B, and vice versa, allowing for label interchangeability.

[0041] The identity recognition module is configured for patients, CT operators, and CT equipment engineers. It includes a commercial fingerprint recognition module integrated on the control panel of the console. The fingerprint recognition module includes a fingerprint sensor and a fingerprint chip with built-in fingerprint algorithm for fingerprint information recognition. Corresponding fingerprint recognition modules are provided in the external medical network for pre-registering the fingerprint information of patients.

[0042] The MCU module is used to facilitate information and data transmission between the think tank module and other modules, serving as the embedded core control component of the console operation panel. Specifically, the MCU module collects the function status information of each button from the button module and feeds it back to the think tank module via CAN bus / RS232 interface / RS422 interface, etc.; fingerprint information acquired by the identity recognition module is also fed back to the think tank module via the MCU module; the visual interaction module and voice interaction module also use some communication method, such as USART serial port, I2C bus, etc., to transmit information and data to the MCU module. After the MCU module transmits the information and data to the think tank module for decision-making, the think tank module will then control the visual interaction module and / or voice interaction module to perform corresponding operations through the MCU module.

[0043] The think tank module includes a CT equipment control computer equipped with an intelligent algorithm library, which includes a CT equipment fault-solving guidance algorithm library. This library contains the characteristics and solutions for common CT machine faults, and can be invoked to provide corresponding solutions when a CT machine malfunctions. The think tank module can communicate with the external (outside the CT room) medical network. Typically, this is achieved by placing both on the same local area network and communicating via TCP / IP. This allows the think tank module to retrieve the corresponding personal information of the examinee from the medical network after recognizing the examinee's fingerprint information.

[0044] The visual interaction module includes a touchscreen display integrated into the control panel and several backlit buttons. The touchscreen display shows CT equipment troubleshooting information and allows for customization of the functions of several CT operation buttons. The button backlights indicate the operation process (e.g., scan process guidance) or button jamming. The intelligent module can define the backlight changes of each button through the MCU module. Specifically, in practical applications, the backlight of the button requiring the next operation in the scan procedure can be set to flash, thus guiding the CT operator to complete the operation quickly and efficiently. When a button is jammed, its backlight will display a breathing light effect to quickly report the jamming situation to the CT operator.

[0045] The voice interaction module includes a commercial voice chip integrated into the console operation panel and corresponding peripheral circuits designed for the voice chip. It is mainly used to collect voice signals and transmit them to the MCU module. The MCU module converts the voice signals into corresponding operation requests and sends them to the think tank module. After verification, the think tank module makes a decision on the corresponding operation request. If it decides to execute, it controls the voice interaction module to output the corresponding voice through the MCU module.

[0046] The second aspect of this embodiment provides a control method for a CT scanner intelligent control console system. For the application of the CT scanner intelligent control console system described above, please refer to...Figure 2 It includes the following steps:

[0047] Step 1: Complete the initial registration. This includes entering the identity information of the corresponding CT operator and granting the appropriate permissions to that operator. Specifically, it includes the following sub-steps:

[0048] Step 1-1: When initial registration is required (e.g., when a new CT scanner is installed in a hospital or a CT operator is using the scanner for the first time), the CT scanner equipment engineer (who usually has higher privileges) turns on the equipment and guides the CT operator to place their finger (usually the index finger or thumb) in the fingerprint recognition module's acquisition area. The identity recognition module automatically acquires the CT operator's original fingerprint image and transmits it to the database module via the MCU module. The database module processes the original fingerprint image to obtain the CT operator's identity registration data fingerprint template, which is then encrypted and stored in the server database.

[0049] Image processing includes initial image preprocessing (noise reduction, enhancement, etc.), followed by feature extraction. Then, the extracted feature point set needs to be structured to obtain a data fingerprint template at the end.

[0050] Steps 1-2: Based on the instructions of the CT machine equipment engineer with the authority to assign permissions, grant the CT operator the corresponding permissions, such as the permission to start / stop scanning examinations, the permission to activate the voice interaction module, and the permission to customize button functions.

[0051] Step 2: Responding to Personalized Settings. This includes redefining the functions of several CT operation buttons based on the instructions of the CT operator, specifically including the following sub-steps:

[0052] Step 2-1: After the CT operator places their finger on the fingerprint recognition module's acquisition area, the identity recognition module acquires the CT operator's real-time fingerprint image. The database module processes the real-time fingerprint image to obtain a temporary data fingerprint template for the CT operator. Then, it searches the server database and registers the temporary data fingerprint template with the identity registration data fingerprint template in the server database. If the registration result meets certain thresholds in various dimensions such as type, location, and orientation, the CT operator's identity is recognized, and they are allowed to operate within the corresponding permissions.

[0053] Step 2-2: As the CT operator operates on the touchscreen, the visual interaction module receives the operator's instructions and transmits the instruction information to the intelligence module to redefine the functions of the corresponding CT function operation buttons. For example, the CT operator can redefine button A from "stop scan" to "start scan" and button B from "start scan" to "stop scan" according to their personal operating habits.

[0054] Steps 2-3: The think tank module, in conjunction with the visual interaction module and / or the voice interaction module, instructs the CT operator to move the corresponding button function indicator labels, so that the redefined CT function operation buttons and button function indicator labels remain in correspondence.

[0055] Step 3: Supervise the scanning and inspection process. This includes identifying the examinee and recording their information, as well as guiding CT operators in troubleshooting CT equipment malfunctions. Specifically, it includes the following sub-steps:

[0056] Step 3-1: After the CT operator places their finger on the fingerprint recognition module's acquisition area, the identity recognition module acquires the CT operator's real-time fingerprint image. The database module processes the real-time fingerprint image to obtain a temporary data fingerprint template for the CT operator. Then, the temporary data fingerprint template is registered with the identity registration data fingerprint template in the server database. If the registration result meets the threshold, the CT operator's identity is recognized, and they are allowed to operate within the corresponding permissions.

[0057] Step 3-2: After the CT operator guides the examinee to place their finger on the fingerprint recognition module's acquisition area, the identity recognition module acquires the examinee's real-time fingerprint image. The intelligence module processes the real-time fingerprint image to obtain the examinee's data fingerprint template, and then matches the examinee's identity from the external medical network based on the data fingerprint template and imports the examinee's information.

[0058] Step 3-3: The think tank module, in conjunction with the visual interaction module, displays the information of the inspected object.

[0059] If step 3 is executed after step 2 but before the technician's identity verification expires, then step 3-2 is executed directly. The expiration of identity verification specifically refers to the fact that in practical applications, the CT machine is usually set to automatically enter sleep mode after a certain period of inactivity. If it needs to be woken up from sleep mode (or turned on directly from the off state), the CT technician needs to re-verify his identity.

[0060] In step 3 of this section, the CT equipment troubleshooting guidance includes two methods: visual guidance and voice guidance.

[0061] The display guide shows CT equipment fault resolution information on the touch screen in the visual interaction module, allowing CT operators to directly view the information, including error warning codes, their explanations, and troubleshooting procedures.

[0062] The voice guidance system allows CT operators to activate the voice interaction module via voice commands. Under the control of the intelligence module, the voice interaction module then broadcasts troubleshooting procedures and / or facilitates voice interaction with the operator. Voice commands can be customized to include phrases like "intelligent assistant." These commands are captured by the voice interaction module and converted into operation request signals by the MCU module, which are then fed back to the intelligence module. The intelligence module makes intelligent decisions based on the current equipment status and subsequently broadcasts the corresponding troubleshooting procedures or facilitates voice interaction with the CT operator through the voice interaction module.

[0063] For example, a CT operator discovers that the X-ray tube preheating operation fails, and the touchscreen displays an error warning code 0X1071001E. Since the operator cannot directly glean any useful information from the error code, they can activate the voice interaction module via voice command and then instruct the system to activate the intelligent troubleshooting function (or activate it directly on the touchscreen). Once activated, the touchscreen displays the error warning code as "CT gantry speed abnormal, X-ray tube preheating failed," and prompts the operator to test and verify the gantry speed. The operator can choose to perform the test manually or automatically via voice command (the system, in conjunction with the CT equipment control computer, controls the gantry rotation and verifies whether the actual speed matches the target speed). The system will then inform the operator of the test results via either the visual or voice interaction module. The operator can then choose a troubleshooting approach based on these results (either attempt to resolve the issue directly or contact the CT equipment engineer for intervention). During troubleshooting, CT operators can receive more specific guidance through voice interaction. For example, they can ask questions like "What factors typically cause abnormal gantry speed?" or "What aspects need to be checked for abnormal gantry speed?" The system's knowledge base will retrieve relevant information from the CT equipment troubleshooting algorithm library to provide the answer. It will also guide the operator to open the CT machine casing and check the status of the gantry rotation drive indicator lights, whether the gantry belt is loose or detached, and whether the gantry rotation position sampling encoder is making good contact with the rotating gantry. The system will then provide specific solutions, such as adjusting the belt tensioner and tightening certain fixing screws for a loose belt. Furthermore, if the knowledge base determines that a machine restart is necessary, it will guide the operator to operate the reset switch (either via the reset button on the control panel or displayed on the touchscreen). This reset switch triggers a hardware enable signal, directly controlling the CT machine's system control kernel to reset and restart, thus eliminating the need for a complete power-off restart of the entire machine.

[0064] In summary, the intelligent control console system and control method for a CT scanner provided in this embodiment achieve a significant breakthrough over existing technologies by setting up a button module, an identity recognition module, an MCU module, a knowledge base module, a visual interaction module, and a voice interaction module, as well as setting steps 1 to 3. Specifically: First, it integrates fingerprint recognition. Since fingerprint information is relatively unique, it can directly retrieve the patient's personal information from the medical network, avoiding input errors and ensuring effective and efficient identity verification. Second, in case of CT scanner malfunction, the visual and voice interaction modules can provide troubleshooting guidance, enabling CT operators to quickly and efficiently handle CT equipment malfunctions on-site, thus ensuring the smooth progress of the patient's scan. Third, it allows for the redefinition of CT function operation buttons, eliminating the need for CT operators to spend considerable time forcing themselves to change their operating habits, thereby improving operational efficiency.

[0065] It should be noted that the parts not described in detail or in detail in the above solution, such as the mechanical structure and algorithm program that support the specific functions of each module (including fingerprint recognition, touch screen human-computer interaction, voice interaction, etc.), the mechanical structure and algorithm program that automatically monitors whether the CT machine has malfunctioned and judges the content of the malfunction (such as detecting abnormal speed of the CT gantry), and the specific content of the intelligent algorithm library, are all existing technologies and do not constitute improvements made by this invention to existing technologies, nor are they within the protection scope of this invention's technical solution. Therefore, they will not be elaborated on in this article.

[0066] Of course, the above description is only a preferred embodiment of the present invention and should not be considered as limiting the scope of the embodiments of the present invention. The present invention is also not limited to the above examples, and all equivalent changes and improvements made by those skilled in the art within the scope of the present invention should fall within the patent coverage of the present invention.

Claims

1. A CT machine intelligent console system, characterized in that: The application relates to a CT device control system, which comprises a key module, an identity recognition module, an MCU module, a wisdom library module, a visual interaction module and a voice interaction module, wherein the key module, the identity recognition module, the visual interaction module and the voice interaction module are in communication connection with the MCU module, the MCU module is in communication connection with the wisdom library module, the wisdom library module is in communication connection with an external diagnosis and treatment network, the MCU module is used for realizing information and data transmission between the wisdom library module and other modules, the wisdom library module is used for executing corresponding operations according to the received information and data, the key module comprises a plurality of CT function operation keys and a plurality of movable key function indication labels, the wisdom library module comprises a CT device control computer which is additionally provided with a smart algorithm library, and the smart algorithm library comprises a CT device fault solution guide algorithm library.

2. The CT machine intelligent console system of claim 1, wherein: The key function indication labels are magnetic labels, and the plurality of key function indication labels correspond to the functions of the plurality of CT function operation keys respectively.

3. The CT scanner intelligent console system of claim 1, wherein: The identity recognition module is configured to face the examinee, a CT operation technician and a CT machine equipment engineer, the identity recognition module comprises a fingerprint recognition module integrated on a console operation panel, the fingerprint recognition module comprises a fingerprint sensor and a fingerprint chip with a built-in fingerprint algorithm, and the external diagnosis and treatment network is provided with a corresponding fingerprint recognition module.

4. The CT scanner intelligent console system of claim 1, wherein: The visual interaction module comprises a touch display screen integrated on the console operation panel, the touch display screen is used for displaying CT device fault solution information and realizing function customization of the plurality of CT function operation keys.

5. A control method of a CT machine intelligent console system, applying the CT machine intelligent console system according to any one of claims 1-4, characterized in that, The application further discloses a CT device control method, which comprises the following steps: Step 1: completing initial registration, including inputting the identity information of a corresponding CT operation technician and opening corresponding permissions for the CT operation technician; Step 2: responding to individualization setting, including redefining the functions of the plurality of CT function operation keys according to the instructions of the CT operation technician; Step 3: supervising scanning inspection work, including recognizing the identity of the examinee and inputting the examinee information and guiding the CT operation technician to solve the CT device fault when the CT machine is in fault.

6. The control method of the CT machine intelligent console system according to claim 5, wherein, The step 1 comprises the following substeps: Step 1-1: the identity recognition module acquires the original fingerprint image of the CT operation technician, the wisdom library module processes the original fingerprint image to obtain a data fingerprint template for identity registration of the CT operation technician, and then the data fingerprint template for identity registration is stored into a server database; Step 1-2: according to the instructions of the CT machine equipment engineer who has the permission allocation permission, corresponding permissions are opened for the CT operation technician.

7. The control method of the CT machine intelligent console system according to claim 6, wherein, The step 2 comprises the following substeps: Step 2-1: the identity recognition module acquires the real-time fingerprint image of the CT operation technician, the wisdom library module processes the real-time fingerprint image to obtain a temporary data fingerprint template of the CT operation technician, and then the temporary data fingerprint template is matched with the data fingerprint template for identity registration in the server database, if the matching result satisfies a threshold value, the identity of the CT operation technician is identified, and the CT operation technician is allowed to operate within the corresponding permissions; Step 2-2: The visual interaction module receives the instruction of the CT operator and transmits the instruction information to the wisdom module to redefine the functions of the corresponding CT function operation keys.

8. The control method of the CT machine intelligent console system according to claim 7, wherein, The step 2 further comprises: Step 2-3: The wisdom module links the visual interaction module and / or the voice interaction module to instruct the CT operator to move the corresponding key function indication label, so that the redefined CT function operation keys correspond to the key function indication labels.

9. The control method of the CT machine intelligent console system according to claim 6, wherein, The step 3 comprises the following sub-steps: Step 3-1: The identity recognition module obtains the real-time fingerprint image of the CT operator, the wisdom module processes the real-time fingerprint image to obtain a temporary data fingerprint template of the CT operator, and then matches the temporary data fingerprint template with the data fingerprint template for identity registration in the server database. If the matching result meets the threshold, the identity of the CT operator is identified, and the CT operator is allowed to operate within the corresponding permission; Step 3-2: The identity recognition module obtains the real-time fingerprint image of the subject, the wisdom module processes the real-time fingerprint image to obtain a data fingerprint template of the subject, and then matches the data fingerprint template to match the subject's identity from the external diagnosis network and import the subject's information; Step 3-3: The wisdom module links the visual interaction module to display the subject's information; If step 3 is executed before the CT operator's identity recognition is invalidated after step 2 is executed, step 3-2 is directly executed.

10. The control method of the CT machine intelligent console system according to claim 9, wherein, In the step 3, the CT device fault solution guidance includes two ways of display guidance and voice guidance, wherein: The display guidance is that the touch display screen in the visual interaction module displays the CT device fault solution information, and the CT device fault solution information includes error warning code, error warning code interpretation and fault processing flow; The voice guidance is that after the CT operator awakens the voice interaction module through voice instruction, the voice interaction module plays the fault processing flow and / or interacts with the CT operator under the control of the wisdom module.

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