P32 application treatment equipment

By designing the P32 patch therapy device, the entire process from patient identification to patch preparation and recovery is automated, solving the problems of complex and low automation level of P32 patch therapy in existing technologies and improving the efficiency and safety of treatment.

CN120673981APending Publication Date: 2025-09-19SHENZHEN PEOPLES HOSPITAL
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Patent Information

Application Number
CN202510553172.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2025-09-19

AI Technical Summary

Technical Problem

The process of treating scars with P32 application in the prior art is complicated, has a low degree of automation, and requires a lot of time and human resources.

Method used

A P32 patch therapy device was designed, which included a target patient identification module, a scar identification module, a plan generation module, an automatic appointment module, an arrival identification module, a patch preparation and use module, and a patch recovery module. It realized the automation of the entire process of patient identification, scar identification, plan generation, automatic appointment, patch preparation, and recovery.

Benefits of technology

The automation level of dressing treatment is improved, time and human resources are saved, and the safety and accuracy of treatment are ensured.

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Abstract

The invention discloses P32 application treatment equipment. The equipment comprises a target patient identification module, a scar identification module, a plan generation module, an automatic reservation module, an arrival diagnosis identification module, an application preparation and use module, an intelligent learning module and an application recovery module, the patient recognition module, the scar recognition module, the plan generation module, the automatic reservation module, the diagnosis recognition module, the application preparation and use module and the application recovery module are connected in sequence, and the patient recognition module and the plan generation module are further connected with the diagnosis recognition module. The automatic application treatment equipment provided by the invention can realize a whole set of process of patient identification, scar identification, plan generation, automatic reservation, diagnosis identification, application preparation and application and application recovery, and provides a function of retaining scar images of the patient before and after treatment, so that the automation degree of application treatment is improved, and the application treatment efficiency is improved. And a lot of time and manpower resources are saved.
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Description

Technical Field

[0001] The present invention relates to the field of medical automation technology, and in particular to a P32 patch therapy device. Background Art

[0002] Scars are a common skin abnormality that primarily appears as marks left behind after a wound has healed. Generally speaking, scars are defined as areas where the skin, after an injury, grows back and becomes noticeably different from the surrounding normal skin, appearing uneven or with an unusual color.

[0003] P32 patch therapy is a nuclear medicine therapy that uses the beta rays released by the radioactive isotope phosphorus-32 to inhibit scar proliferation. It is particularly suitable for keloids and hypertrophic scars.

[0004] Currently, the process of using the P32 patch to treat scars is relatively complicated, usually including registering for a doctor's appointment, visiting a doctor in the corresponding department, the doctor examining the affected area, prescribing treatment, preparing for treatment, applying the patch, and post-treatment observation. The entire process has a low degree of automation and requires a lot of time and human resources.

[0005] Therefore, the existing technology still needs to be improved and developed. Summary of the Invention

[0006] The main purpose of the present invention is to provide a P32 patch treatment device, which aims to solve the problems in the prior art of using P32 patch to treat scars, which have complex processes, low automation levels, and require a lot of time and human resources.

[0007] To achieve the above objectives, the present invention provides a P32 patch therapy device, the P32 patch therapy device comprising:

[0008] Target patient identification module, scar identification module, plan generation module, automatic appointment module, visit identification module, dressing preparation and use module, and dressing recovery module;

[0009] The patient identification module, the scar identification module, the plan generation module, the automatic appointment module, the visit identification module, the dressing preparation and use module, and the dressing recovery module are connected in sequence, and the patient identification module and the plan generation module are also respectively connected to the visit identification module;

[0010] The patient identification module is used to identify the first identity information of the target patient, authenticate and save the first identity information;

[0011] The scar recognition module is used to take a photo and scan the scar area of ​​the target patient to identify the scar information after the first identity information is authenticated;

[0012] The plan generation module is used to automatically generate and save a treatment plan based on the scar information using a built-in dose calculation algorithm;

[0013] The automatic reservation module is used to generate an appointment time according to the treatment plan and hospital resources, and send the appointment time to the target patient;

[0014] The patient identification module is used to obtain the second identity information of the patient who comes to the clinic, compare the second identity information with the first identity information stored in the patient identification module, and when confirming that the patient who comes to the clinic is the target patient, retrieve the treatment plan stored in the plan generation module;

[0015] The patch preparation and use module is used to automatically prepare a P32 patch according to the treatment plan, print an identification code on the P32 patch, and use the P32 patch to treat the target patient;

[0016] The patch recovery module is used to automatically recover the P32 patch used by the target patient after treatment is completed, and to treat the P32 patch as radioactive waste.

[0017] Optionally, the P32 patch therapy device further comprises: a protective ventilation module, the protective ventilation module being connected to the patch preparation and use module, the protective ventilation module comprising a sealing unit, an exhaust unit, a gas collection unit, and a high-efficiency filtration unit;

[0018] The sealing unit is used to seal the entire operating area through an organic glass cover;

[0019] The exhaust unit is used to connect the built-in exhaust port to the external ventilation system to ensure air circulation;

[0020] The gas collection unit is used to collect P32 aerosol generated during the operation to prevent the P32 aerosol from overflowing;

[0021] The high-efficiency filter unit is used to install a high-efficiency filter at the built-in exhaust port to ensure that the exhausted air meets environmental protection standards.

[0022] Optionally, the P32 patch therapy device further comprises an interface module, the interface module being connected to the patient identification module and the patch recovery module, the interface module comprising: an HIS interface unit, a multi-point appointment interface unit, and a department Chinese reporting system interface unit;

[0023] The HIS interface unit is used to connect to the hospital information system to obtain patient information, medical records, and treatment records to complete identity authentication;

[0024] The multi-point reservation interface unit is used to provide reservation functions to multiple channels.

[0025] The department Chinese reporting system interface unit is used to automatically generate a treatment report after the dressing is recovered.

[0026] Optionally, the P32 patch therapy device further comprises an intelligent learning module, wherein the intelligent learning module is respectively connected to the patch preparation and use module, the scar recognition module and the plan generation module, and the intelligent learning module comprises a pre- and post-treatment data acquisition unit, a data evaluation and analysis unit, a database construction unit and an intelligent iterative learning unit;

[0027] The pre- and post-treatment data acquisition unit is configured to call the scar recognition module to again acquire the post-treatment scar information of the target patient after the patch preparation and use module completes the treatment, and obtain the pre-treatment scar information from the scar recognition module;

[0028] The data evaluation and analysis unit is used to obtain the treatment plan from the plan generation module, and evaluate and analyze the scar information before treatment and the scar information after treatment to obtain treatment effect data of the treatment plan;

[0029] The database construction unit is used to construct a database based on the treatment plans and treatment effect data of all patients;

[0030] The intelligent iterative learning unit is used to train the AI ​​model based on the data in the database, and optimize the built-in dose calculation algorithm of the plan generation module through the trained AI model.

[0031] Optionally, in the P32 patch therapy device, the scar recognition module includes a two-dimensional laser scanning unit and a three-dimensional laser scanning unit, and the scar information includes first scar information and second scar information;

[0032] Wherein, the two-dimensional laser scanning unit is used to quickly obtain first scar information of the scar, wherein the first scar information includes the scar surface contour and scar size;

[0033] The three-dimensional laser scanning unit is used to obtain second scar information of the scar, where the second scar information includes scar shape, scar depth, scar volume, and scar concave-convex information.

[0034] Optionally, in the P32 patch therapy device, the plan generation module includes a dose calculation unit and an adjustment optimization unit;

[0035] The dose calculation unit is used to obtain multiple irradiation areas based on the scar information, formulate corresponding coefficients for each irradiation area based on clinical experience and guidelines, calculate the radioactive drug activity required for each irradiation area, and automatically generate and save a treatment plan based on the radioactive drug activity required for each irradiation area using the built-in dose calculation algorithm. The treatment plan includes target irradiation areas and the radioactive drug dose required for each target irradiation area.

[0036] The adjustment and optimization unit is used to receive the trained AI model from the intelligent learning module and use the trained AI model to optimize the built-in dose calculation algorithm.

[0037] Optionally, in the P32 patch therapy device, the automatic reservation module includes a consent signing unit, an on-site reservation unit, and a multi-point reservation unit;

[0038] The consent signing unit is used to show the informed consent form to the target patient before the appointment, and activate the on-site appointment unit or the multi-point appointment unit after receiving the electronic signature or fingerprint information of the target patient;

[0039] The on-site reservation unit is used to automatically or manually select an appointment time to complete the appointment based on the treatment plan of the target patient and hospital resources, and send the appointment time to the target patient;

[0040] The multipoint reservation unit is used to provide reservation functions to multiple channels through the multipoint reservation interface unit of the interface module.

[0041] Optionally, in the P32 patch therapy device, the visit identification module includes a patient information confirmation unit and a treatment plan retrieval unit;

[0042] The patient information confirmation unit is used to obtain the second identity information of the patient who comes to the clinic, compare the second identity information with the first identity information stored in the patient identification module, and determine whether the patient who comes to the clinic is the target patient;

[0043] The treatment plan retrieving unit is configured to retrieve the treatment plan saved by the plan generating module when the patient visiting the clinic is the target patient.

[0044] Optionally, the P32 patch therapy device, wherein the patch preparation and use module comprises a first preparation unit, a second preparation unit and a treatment use unit;

[0045] The first preparation unit is used to automatically prepare the P32 dressing according to the treatment plan and print an identification code for the P32 dressing. The P32 dressing supports automatic cutting of the dressing substrate and precise coating of the P32 solution.

[0046] The second preparation unit is used to accurately spray a P32 solution mixed with a biological dye at different activity levels on a substrate according to the treatment plan to prepare a P32 patch, and to print an identification code on the P32 patch;

[0047] The treatment using unit is used to receive the P32 patch prepared by the first preparation unit or the second preparation unit, and use the P32 patch to treat the target patient.

[0048] Optionally, the P32 patch therapy device, wherein the patch recovery module includes a waste storage unit and a classification processing unit;

[0049] Wherein, the waste storage unit is used to safely store the P32 dressing used by the target patient through a dressing recovery container;

[0050] The classification processing unit is used to automatically identify and classify the P32 dressings in the dressing recovery container.

[0051] The present invention discloses a P32 patch therapy device, comprising: a target patient identification module, a scar identification module, a plan generation module, an automatic appointment module, an on-call identification module, a patch preparation and use module, and a patch recovery module; the patient identification module, the scar identification module, the plan generation module, the automatic appointment module, the on-call identification module, the patch preparation and use module, and the patch recovery module are connected in sequence, and the patient identification module and the plan generation module are also respectively connected to the on-call identification module. The present invention provides an automated patch therapy device that can implement a complete process of patient identification, scar identification, plan generation, automatic appointment, on-call identification, patch preparation and use, and patch recovery, thereby improving the degree of automation of patch therapy and saving a considerable amount of time and human resources. BRIEF DESCRIPTION OF THE DRAWINGS

[0052] Figure 1 This is the overall architecture diagram of the P32 patch therapy device of the present invention;

[0053] Figure 2 This is a diagram of the architecture of the interface module in the P32 patch therapy device of the present invention;

[0054] Figure 3 This is an architectural diagram of the intelligent learning module in the P32 patch therapy device of the present invention. DETAILED DESCRIPTION

[0055] In order to make the purpose, technical solutions and advantages of the present invention more clear and distinct, the present invention is further described in detail below with reference to the accompanying drawings and examples. It should be understood that the specific embodiments described herein are only used to explain the present invention and are not intended to limit the present invention.

[0056] To solve the problems in the prior art, this embodiment provides a P32 patch therapy device, such as Figure 1 As shown, the P32 patch therapy device includes: a target patient identification module, a scar identification module, a plan generation module, an automatic appointment module, a visit identification module, a patch preparation and use module, and a patch recovery module.

[0057] Among them, the patient identification module, the scar identification module, the plan generation module, the automatic appointment module, the visit identification module, the patch preparation and use module and the patch recovery module are connected in sequence, and the patient identification module and the plan generation module are also respectively connected to the visit identification module.

[0058] Furthermore, the P32 patch therapy device further comprises: a protective ventilation module, the protective ventilation module being connected to the patch preparation and use module, the protective ventilation module comprising a sealing unit, an exhaust unit, a gas collection unit and a high-efficiency filtration unit;

[0059] Among them, the sealing unit is used to seal the entire operating area through a plexiglass cover; the exhaust unit is used to connect the built-in exhaust port with the external ventilation system to ensure air circulation; the gas collection unit is used to collect P32 aerosols generated during the operation to prevent the P32 aerosols from overflowing; the high-efficiency filtration unit is used to install a high-efficiency filter at the built-in exhaust port to ensure that the exhausted air meets environmental protection standards.

[0060] The protective ventilation module ensures radiation safety during operation and prevents the escape of P32 aerosols. Specifically, it features a plexiglass cover that completely seals the operating area to prevent radiation leakage. It also includes an exhaust vent, which connects to the ventilation system to ensure air circulation. It also collects P32 aerosols that may be generated during operation to prevent their escape. Finally, a high-efficiency filter is installed at the exhaust vent to ensure that the exhausted air meets environmental standards.

[0061] like Figure 2 As shown, further, the P32 patch therapy device also includes an interface module, which is connected to the patient identification module and the patch recovery module, and the interface module includes: an HIS interface unit, a multi-point appointment interface unit and a department Chinese reporting system interface unit;

[0062] The HIS interface unit is used to connect to the hospital information system to obtain patient information, medical history, and treatment records for identity authentication; the multi-point appointment interface unit is used to provide appointment functions for multiple channels; and the departmental Chinese reporting system interface unit is used to automatically generate a treatment report after the dressing is recovered.

[0063] It is understandable that the interface module can achieve docking with the hospital information system (HIS), the department's Chinese reporting system, etc., and support multi-point appointments and the interconnection of patient treatment information. Specifically, the HIS interface unit is connected to the hospital information system to achieve the sharing of patient information, medical records, and treatment records. The department's Chinese reporting system interface unit will automatically generate a treatment report after the treatment is completed, and support Chinese format, which is convenient for doctors and patients to consult. The multi-point appointment interface unit can support patients to make appointments through multiple channels (official website, APP or on-site terminal). The interface module realizes data intercommunication and interconnection, so that patient treatment information can be seamlessly transmitted between different systems and departments, thereby improving diagnosis and treatment efficiency.

[0064] Further, if Figure 3 As shown, the P32 patch therapy device also includes an intelligent learning module, which is connected to the patch preparation and use module, the scar recognition module, and the plan generation module respectively. The intelligent learning module includes a pre- and post-treatment data acquisition unit, a data evaluation and analysis unit, a database construction unit, and an intelligent iterative learning unit;

[0065] The pre- and post-treatment data acquisition unit is configured to call the scar recognition module to again acquire the post-treatment scar information of the target patient after the patch preparation and use module completes the treatment, and obtain the pre-treatment scar information from the scar recognition module;

[0066] The data evaluation and analysis unit is used to obtain the treatment plan from the plan generation module, and evaluate and analyze the scar information before treatment and the scar information after treatment to obtain treatment effect data of the treatment plan;

[0067] The database construction unit is used to construct a database based on the treatment plans and treatment effect data of all patients;

[0068] The intelligent iterative learning unit is used to train the AI ​​model based on the data in the database, and optimize the built-in dose calculation algorithm of the plan generation module through the trained AI model.

[0069] In this embodiment, the intelligent learning module uses artificial intelligence technology to analyze and iteratively learn the scar data of patients before and after treatment to achieve accurate dose calculation and personalized treatment plan optimization. Specifically, the scar conditions (thickness changes, area changes, scab conditions, edge shape, etc.) are recorded by taking photos or scanning before and after each course of treatment. After treatment, patients return for regular visits and upload scar images via mobile phone or in the hospital. Then, based on the changes in the scars, the treatment effect is calculated and evaluated to generate a complete patient case, including scar data before and after treatment, dosage regimen, treatment effect, etc. The case data of each patient is then integrated with the data of other devices to build a unified database. Finally, the data in the database is used to train the AI ​​model, optimize the dose calculation algorithm and treatment plan, and enable the equipment to accurately calculate the activity required for treatment of each part, thereby improving the treatment effect and safety.

[0070] Furthermore, the patient identification module is used to identify the first identity information of the target patient, authenticate and save the first identity information.

[0071] Specifically, the patient identification module identifies the user using multiple methods (face recognition, ID card reading, and medical insurance card reading) to identify the patient's identity, ensuring the accuracy and uniqueness of patient information. Furthermore, upon user identification, the patient identification module can also connect to the hospital information system (HIS) to automatically retrieve the patient's medical and treatment records, accelerating identification and subsequent processing.

[0072] Furthermore, the scar recognition module is used to take a photo and scan the scar area of ​​the target patient to identify the scar information after the first identity information is authenticated.

[0073] It can be understood that the scar recognition module includes a two-dimensional laser scanning unit and a three-dimensional laser scanning unit, and the scar information includes first scar information and second scar information.

[0074] The two-dimensional laser scanning unit is used to quickly obtain first scar information of the scar, which includes scar surface contour and scar size; the three-dimensional laser scanning unit is used to obtain second scar information of the scar, which includes scar shape, scar depth, scar volume and scar concave-convex information.

[0075] The scar recognition module takes pictures and scans the patient's scar area through a high-definition camera or a two-dimensional or three-dimensional laser scanner to identify key parameters such as the scar's shape, size, depth, and position, providing a more accurate basis for dose calculation.

[0076] Furthermore, the plan generation module is used to automatically generate and save a treatment plan based on the scar information using a built-in dose calculation algorithm.

[0077] Specifically, the plan generation module includes a dose calculation unit and an adjustment optimization unit.

[0078] The dose calculation unit is used to obtain multiple irradiation areas based on the scar information, formulate corresponding coefficients for each irradiation area based on clinical experience and guidelines, calculate the radioactive drug activity required for each irradiation area, and automatically generate and save a treatment plan based on the radioactive drug activity required for each irradiation area using the built-in dose calculation algorithm. The treatment plan includes the target irradiation area and the radioactive drug dose required for each target irradiation area. The adjustment and optimization unit is used to receive the trained AI model from the intelligent learning module and use the trained AI model to optimize the built-in dose calculation algorithm.

[0079] It can be understood that the dose calculation unit formulates the corresponding irradiation amount according to relevant domestic and international guidelines, and then formulates the corresponding coefficients according to clinical usage experience and guidelines to calculate the radioactive drug activity required for each irradiation area, and the adjustment and optimization unit is used to receive the trained AI model from the intelligent learning module, support dose adjustment and optimization, and ensure treatment effect and safety.

[0080] Furthermore, the automatic reservation module is used to generate a reservation time according to the treatment plan and hospital resources, and send the reservation time to the target patient;

[0081] Specifically, the automatic reservation module includes a consent signing unit, an on-site reservation unit and a multi-point reservation unit.

[0082] Among them, the consent signing unit is used to show the informed consent form to the target patient before the appointment, and after receiving the electronic signature or fingerprint information of the target patient, start the on-site appointment unit or the multi-point appointment unit; the on-site appointment unit is used to automatically or manually select the appointment time to complete the appointment based on the treatment plan and hospital resources of the target patient, and send the appointment time to the target patient; the multi-point appointment unit is used to provide appointment functions to multiple channels through the multi-point appointment interface unit of the interface module.

[0083] It is understandable that the patient needs to sign an informed consent form before the patch treatment. Therefore, the present invention sets a consent form signing unit before the appointment. Only after obtaining the user's electronic signature information or fingerprint information can the subsequent appointment registration be started; the automatic appointment module can automatically generate an appointment time according to the patient's needs and hospital resources, or provide the patient with a time period that can be selected to manually select the treatment period and complete the appointment. At the same time, the on-site appointment unit can also provide real-time appointment time query and selection functions, and support SMS or WeChat notifications to remind patients of appointment information. Multi-point appointments are supported, and patients can make appointments through the hospital's official website, APP or on-site terminals.

[0084] Furthermore, the patient identification module is used to obtain second identity information of the patient who comes to the clinic, compare the second identity information with the first identity information stored in the patient identification module, and when confirming that the patient who comes to the clinic is the target patient, retrieve the treatment plan stored in the plan generation module;

[0085] Specifically, the visit identification module includes a patient information confirmation unit and a treatment plan retrieval unit.

[0086] Among them, the patient information confirmation unit is used to obtain the second identity information of the patient who comes for consultation, compare the second identity information with the first identity information saved by the patient identification module, and determine whether the patient who comes for consultation is the target patient; the treatment plan retrieval unit is used to retrieve the treatment plan saved by the plan generation module when the patient who comes for consultation is the target patient.

[0087] Furthermore, the patch preparation and use module is used to automatically prepare a P32 patch according to the treatment plan, print an identification code on the P32 patch, and use the P32 patch to treat the target patient;

[0088] Specifically, the patch preparation and use module includes a first preparation unit, a second preparation unit and a treatment use unit.

[0089] Among them, the first preparation unit is used to automatically prepare the P32 patch according to the treatment plan, and print an identification code for the P32 patch. The P32 patch supports automatic cutting of the patch substrate and precise coating of the P32 solution; the second preparation unit is used to accurately spray the P32 solution mixed with the biological dye on the substrate with different activities according to the treatment plan to prepare the P32 patch, and print an identification code for the P32 patch; the treatment use unit is used to receive the P32 patch prepared by the first preparation unit or the second preparation unit, and use the P32 patch to treat the target patient.

[0090] In this embodiment, the patch preparation and use module can automatically prepare a P32 patch based on the dose calculation results and print an identification code. The patch preparation and use module has two P32 patch preparation modes, corresponding to the first preparation unit and the second preparation unit, respectively. Among them, the first P32 patch preparation mode supports automatic cutting of the patch substrate and precise coating of the P32 solution, with the coating being a set uniform activity. The second P32 patch preparation mode supports precise spraying of the P32 solution mixed with the biological dye on the substrate at different activities (grayscale display) according to the scar thickness and morphology, and automatic cutting of the patch substrate.

[0091] Furthermore, the dressing recovery module is used to automatically recover the P32 dressing used by the target patient after treatment is completed, and to treat the P32 dressing as radioactive waste.

[0092] Specifically, the dressing recovery module includes a waste storage unit and a classification processing unit.

[0093] The waste storage unit is used to safely store the P32 dressing used by the target patient in a dressing recovery container; the classification processing unit is used to automatically identify and classify the P32 dressing in the dressing recovery container.

[0094] As will be appreciated, after treatment of a target patient is complete, the patch recovery module automatically recovers the used patch and disposes of it as radioactive waste. This module first provides a dedicated patch recovery container to ensure the safe storage of radioactive waste. Next, the sorting unit automatically identifies and sorts the used patches.

[0095] It should be noted that encryption technology is used for data transmission and storage between modules of the P32 patch therapy device to ensure data security and privacy, and to support rapid query and statistical analysis of data.

[0096] It can be seen that the above-mentioned P32 patch therapy device has the following advantages:

[0097] 1. High-precision scar identification: Through two-dimensional or three-dimensional laser scanners and cameras, more accurate scar data is provided, providing a scientific basis for dose calculation.

[0098] 2. High safety: Organic glass cover, radiation monitor and ventilation device are used to ensure radiation safety during operation.

[0099] 3. Strong environmental protection: Gas collection module and high-efficiency filter prevent P32 aerosol from overflowing, which meets environmental protection standards.

[0100] 4. High degree of automation: From patient identification to automatic preparation and recovery of the two modes of application, the entire process is automated to reduce human error. The activity of different areas of the applicator can be customized and visualized to achieve precise treatment results.

[0101] 5. Data management: All treatment data are encrypted and stored for easy query and analysis.

[0102] 6. Interconnection: Through the interface module, it can be connected with HIS, departmental Chinese reporting system, etc., supporting multi-point appointment and sharing of patient treatment information.

[0103] 7. Intelligent learning and optimization: Use AI technology to analyze and iteratively learn scar data to achieve accurate dose calculation and personalized treatment plan optimization.

[0104] In summary, the present invention provides a P32 patch therapy device, which includes: a target patient identification module, a scar identification module, a plan generation module, an automatic appointment module, an on-call identification module, a patch preparation and use module, and a patch recovery module; the patient identification module, the scar identification module, the plan generation module, the automatic appointment module, the on-call identification module, the patch preparation and use module, and the patch recovery module are connected in sequence, and the patient identification module and the plan generation module are also respectively connected to the on-call identification module. The present invention provides an automated patch therapy device that can implement a complete set of processes including patient identification, scar identification, plan generation, automatic appointment, on-call identification, patch preparation and use, and patch recovery, thereby improving the degree of automation of patch therapy and saving a large amount of time and human resources.

[0105] It should be noted that, in this document, the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, article, or terminal comprising a series of elements includes not only those elements but also other elements not explicitly listed, or elements inherent to such process, method, article, or terminal. In the absence of further limitations, an element defined by the phrase "comprising a ..." does not exclude the presence of other identical elements in the process, method, article, or terminal comprising the element.

[0106] Of course, those skilled in the art will appreciate that all or part of the processes in the above-described method embodiments can be implemented by instructing related hardware (such as a processor, controller, etc.) through a computer program. The program can be stored in a computer-readable storage medium that can be read by a computer. When the program is executed, it can include the processes in the above-described method embodiments. The computer-readable storage medium can be a memory, a magnetic disk, an optical disk, etc.

[0107] It should be understood that the application of the present invention is not limited to the above examples. For those skilled in the art, improvements or changes can be made based on the above description. All these improvements and changes should fall within the scope of protection of the claims attached to the present invention.

Claims

1. A P32 patch therapy device, characterized in that: The P32 patch therapy device includes: a target patient identification module, a scar identification module, a plan generation module, an automatic appointment module, a visit identification module, a patch preparation and use module, and a patch recovery module; The patient identification module, the scar identification module, the plan generation module, the automatic appointment module, the visit identification module, the dressing preparation and use module, and the dressing recovery module are connected in sequence, and the patient identification module and the plan generation module are also respectively connected to the visit identification module; The patient identification module is used to identify the first identity information of the target patient, authenticate and save the first identity information; The scar recognition module is used to take a photo and scan the scar area of ​​the target patient to identify scar information after the first identity information is authenticated; The plan generation module is used to automatically generate and save a treatment plan based on the scar information using a built-in dose calculation algorithm; The automatic reservation module is used to generate an appointment time according to the treatment plan and hospital resources, and send the appointment time to the target patient; The patient identification module is used to obtain the second identity information of the patient who comes to the clinic, compare the second identity information with the first identity information stored in the patient identification module, and when confirming that the patient who comes to the clinic is the target patient, retrieve the treatment plan stored in the plan generation module; The patch preparation and use module is used to automatically prepare a P32 patch according to the treatment plan, print an identification code on the P32 patch, and use the P32 patch to treat the target patient; The patch recovery module is used to automatically recover the P32 patch used by the target patient after treatment is completed, and to treat the P32 patch as radioactive waste.

2. The P32 patch therapy device according to claim 1, characterized in that: The P32 patch therapy device further includes: a protective ventilation module, which is connected to the patch preparation and use module, and includes a sealing unit, an exhaust unit, a gas collection unit, and a high-efficiency filtration unit; The sealing unit is used to seal the entire operating area through an organic glass cover; The exhaust unit is used to connect the built-in exhaust port to the external ventilation system to ensure air circulation; The gas collection unit is used to collect P32 aerosol generated during the operation to prevent the P32 aerosol from overflowing; The high-efficiency filter unit is used to install a high-efficiency filter at the built-in exhaust port to ensure that the exhausted air meets environmental protection standards.

3. The P32 patch therapy device according to claim 1, characterized in that: The P32 patch therapy device further includes an interface module, which is connected to the patient identification module and the patch recovery module. The interface module includes: an HIS interface unit, a multi-point appointment interface unit, and a department Chinese reporting system interface unit; The HIS interface unit is used to connect to the hospital information system to obtain patient information, medical records, and treatment records to complete identity authentication; The multi-point reservation interface unit is used to provide reservation functions to multiple channels. The department Chinese reporting system interface unit is used to automatically generate a treatment report after the dressing is recovered.

4. The P32 patch therapy device according to claim 1, characterized in that: The P32 patch therapy device also includes an intelligent learning module, which is connected to the patch preparation and use module, the scar recognition module, and the plan generation module respectively. The intelligent learning module includes a pre- and post-treatment data acquisition unit, a data evaluation and analysis unit, a database construction unit, and an intelligent iterative learning unit; The pre- and post-treatment data acquisition unit is configured to call the scar recognition module to again acquire the post-treatment scar information of the target patient after the patch preparation and use module completes the treatment, and obtain the pre-treatment scar information from the scar recognition module; The data evaluation and analysis unit is used to obtain the treatment plan from the plan generation module, and evaluate and analyze the scar information before treatment and the scar information after treatment to obtain treatment effect data of the treatment plan; The database construction unit is used to construct a database based on the treatment plans and treatment effect data of all patients; The intelligent iterative learning unit is used to train the AI ​​model based on the data in the database, and optimize the built-in dose calculation algorithm of the plan generation module through the trained AI model.

5. The P32 patch therapy device according to claim 1, characterized in that: The scar recognition module includes a two-dimensional laser scanning unit and a three-dimensional laser scanning unit, and the scar information includes first scar information and second scar information; Wherein, the two-dimensional laser scanning unit is used to quickly obtain first scar information of the scar, wherein the first scar information includes the scar surface contour and the scar size; The three-dimensional laser scanning unit is used to obtain second scar information of the scar, where the second scar information includes scar shape, scar depth, scar volume, and scar concave-convex information.

6. The P32 patch therapy device according to claim 4, characterized in that: The plan generation module includes a dose calculation unit and an adjustment optimization unit; The dose calculation unit is used to obtain multiple irradiation areas based on the scar information, formulate corresponding coefficients for each irradiation area based on clinical experience and guidelines, calculate the radioactive drug activity required for each irradiation area, and automatically generate and save a treatment plan based on the radioactive drug activity required for each irradiation area using the built-in dose calculation algorithm. The treatment plan includes target irradiation areas and the radioactive drug dose required for each target irradiation area. The adjustment and optimization unit is used to receive the trained AI model from the intelligent learning module and use the trained AI model to optimize the built-in dose calculation algorithm.

7. The P32 patch therapy device according to claim 3, characterized in that: The automatic reservation module includes an on-site consent signing unit, a reservation unit and a multi-point reservation unit; The consent signing unit is used to show the informed consent form to the target patient before the appointment, and activate the on-site appointment unit or the multi-point appointment unit after receiving the electronic signature or fingerprint information of the target patient; The on-site reservation unit is used to automatically or manually select an appointment time to complete the appointment based on the treatment plan of the target patient and hospital resources, and send the appointment time to the target patient; The multipoint reservation unit is used to provide reservation functions to multiple channels through the multipoint reservation interface unit of the interface module.

8. The P32 patch therapy device according to claim 1, characterized in that: The visit identification module includes a patient information confirmation unit and a treatment plan retrieval unit; The patient information confirmation unit is used to obtain the second identity information of the patient who comes to the clinic, compare the second identity information with the first identity information stored in the patient identification module, and determine whether the patient who comes to the clinic is the target patient; The treatment plan retrieving unit is configured to retrieve the treatment plan saved by the plan generating module when the patient visiting the clinic is the target patient.

9. The P32 patch therapy device according to claim 1, characterized in that: The patch preparation and use module includes a first preparation unit, a second preparation unit and a treatment use unit; The first preparation unit is used to automatically prepare the P32 dressing according to the treatment plan and print an identification code for the P32 dressing. The P32 dressing supports automatic cutting of the dressing substrate and precise coating of the P32 solution. The second preparation unit is used to accurately spray a P32 solution mixed with a biological dye at different activity levels on a substrate according to the treatment plan to prepare a P32 patch, and to print an identification code on the P32 patch; The treatment using unit is used to receive the P32 patch prepared by the first preparation unit or the second preparation unit, and use the P32 patch to treat the target patient.

10. The P32 patch therapy device according to claim 1, characterized in that: The dressing recovery module includes a waste storage unit and a classification processing unit; Wherein, the waste storage unit is used to safely store the P32 dressing used by the target patient through a dressing recovery container; The classification processing unit is used to automatically identify and classify the P32 dressings in the dressing recovery container.