Internet-of-things digital intelligent medicine and medicine interaction virtual-real fusion terminal equipment
The Internet of Things digital intelligent drug-medical interaction virtual and real terminal equipment generates personalized drug use solutions through multimodal interaction and cloud system, solving the problem that users find it difficult to accurately purchase drugs, and achieving a convenient experience of personalized drug purchase and safe drug use.
Patent Information
- Application Number
- CN202510628610.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-15
- Publication Date
- 2025-08-26
AI Technical Summary
Due to the limited number of doctors or practicing pharmacists, it is difficult for users to purchase the correct medicines accurately based on their own diseases, and the existing technology cannot provide personalized drug purchase advice.
Through the Internet of Things digital intelligent drug-medical interaction, virtual and real terminal equipment is integrated with virtual and real, multi-modal interaction is used to obtain user disease symptoms, combine cloud medical knowledge base and drug database to generate multiple sets of combined drug use plans, and introduce a practicing pharmacist review mechanism, supporting two ways of picking up drugs and delivery, and providing video consultation services.
It improves the correspondence between users' purchase of drugs and disease symptoms, reduces the risk of wrong medication, improves the efficiency and satisfaction of drug purchase, and realizes a personalized drug purchase experience.
Smart Images

Figure CN120544786A_ABST
Abstract
Description
Technical Field
[0001] This application and the technical field related to medicine selection and purchase, specifically to a digital intelligent medicine-doctor interaction virtual-reality fusion terminal device based on the Internet of Things, the Internet, digital technology, AI models and other technologies. Background Art
[0002] In daily life, getting sick is a common occurrence, and some illnesses can be treated or alleviated with medication. However, due to the limited number of doctors and licensed pharmacists, only a small number of people can receive medication recommendations for their illnesses. Limited by their knowledge of medications, people often cannot accurately purchase medications based on their illnesses, which results in them being unable to purchase and take the correct medications for their ailments. Summary of the Invention
[0003] The purpose of this application is to provide an Internet of Things digital intelligent pharmaceutical and medical interaction virtual and real fusion terminal device that can overcome the shortcomings and deficiencies in the existing technology.
[0004] A first aspect of an embodiment of the present application provides an IoT digital intelligent pharmacy-doctor interaction virtual-reality fusion terminal device, comprising:
[0005] Obtain the user's disease symptoms based on the user's interactive operations;
[0006] Obtain corresponding multiple sets of combined medication plans based on the symptoms of the disease;
[0007] Generate a drug purchase order based on the drugs and purchase quantity in the medical plan selected by the user;
[0008] According to the medicine collection method in the medicine purchase order, the medicine purchase order is sent to the medicine sales point corresponding to the medicine collection method, so that the medicine sales point provides the user with the medicine in the medicine purchase order according to the medicine collection method.
[0009] Furthermore, the step of obtaining the user's disease symptoms according to the user's interactive operation includes:
[0010] Obtain user interaction data through multimodal interaction; the interaction data includes voice-based intelligent interaction data, touch screen interaction data and / or video interaction data;
[0011] Symptom recognition is performed on the interaction data to obtain the user's disease symptoms.
[0012] Furthermore, the step of performing speech semantic recognition on the interactive speech to obtain the disease symptoms described by the interactive speech includes:
[0013] Performing voice-to-text translation on the interactive speech to obtain a voice-to-text of the interactive speech;
[0014] Perform semantic recognition on the speech text to obtain the disease symptoms described in the speech text.
[0015] Furthermore, the step of obtaining the user's disease symptoms according to the user's interactive operation includes:
[0016] Multiple body part options to display the human body;
[0017] Displaying corresponding body part symptom options and / or body part disease options according to the body part option selected by the user;
[0018] The disease symptoms are obtained according to the several site symptom options and / or site disease options selected by the user.
[0019] Furthermore, the step of obtaining corresponding multiple sets of combined medication regimens according to the disease symptoms includes:
[0020] The disease symptoms are uploaded to a cloud server. The intelligent diagnostic system configured on the cloud server generates multiple sets of combination medication plans based on the cloud medical knowledge base and drug database. The combination medication plans are then reviewed by a licensed pharmacist review mechanism, which includes both AI review and manual review.
[0021] Receive and display the multiple sets of combined medication plans issued by the cloud server.
[0022] Furthermore, it also includes:
[0023] According to the user's drug purchasing operation, the drug purchasing interface is displayed according to the drug information in the drug database configured by the cloud server;
[0024] generating a drug purchase order in response to a user's purchase and payment operation on the drug purchasing interface;
[0025] According to the medicine collection method in the medicine purchase order, the medicine purchase order is sent to the medicine sales point corresponding to the medicine collection method, so that the medicine sales point provides the user with the medicine in the medicine purchase order according to the medicine collection method.
[0026] Furthermore, the medication pickup method includes a medication self-pickup method and a medication delivery method; according to the medication pickup method in the medication purchase order, the medication purchase order is sent to a medication vending point corresponding to the medication pickup method, so that the medication vending point provides the user with the medication in the medication purchase order according to the medication pickup method, including the following steps:
[0027] If the user selects self-pickup, the user's current location, the virtual-real fusion location selected by the user on the electronic map, or the address information entered by the user is determined as the self-pickup point, and the user is recommended a drug sales point near the self-pickup point.
[0028] Sending the drug purchase order to a drug vending point selected by the user for self-pickup, so that the drug vending point prepares the drugs for self-pickup by the user according to the drug purchase order;
[0029] If the medication pickup method selected by the user is medication delivery, a logistics delivery order is generated based on the address information entered by the user and the medication sales outlets that support delivery to the address information;
[0030] The drug purchase order is sent to the drug sales point, so that the drug sales point prepares the drugs according to the drug purchase order; the logistics delivery order is sent to the logistics delivery platform, so that the logistics delivery platform dispatches delivery personnel to deliver the drugs corresponding to the drug purchase order from the drug sales point to the address information.
[0031] Furthermore, after the step of sending the delivery order to the logistics platform, the process further includes:
[0032] According to the user's delivery progress query operation, the logistics delivery progress of the delivery order is displayed.
[0033] Furthermore, it also includes:
[0034] Send a video invitation to the doctor indicated by the user's doctor consultation operation;
[0035] If the video invitation is accepted, a video call with the doctor is established.
[0036] Furthermore, the step of generating a drug purchase order includes:
[0037] Generate a drug order based on the disease symptoms and / or the drug selected by the user and the purchase quantity;
[0038] Sending the drug order to a preset backend terminal for review by a licensed pharmacist and / or doctor corresponding to the backend terminal;
[0039] Generate and display the payment interface based on the approved drug order;
[0040] The drug purchase order is generated according to the user's payment operation on the payment interface.
[0041] Compared with the prior art, the IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device of the present application can obtain the user's disease symptoms based on the user's interactive operation, and then obtain multiple corresponding combination medication plans for the user to choose based on the disease symptoms, and then generate a drug purchase order based on the drugs and purchase quantities in the medical plan selected by the user; according to the drug collection method in the drug purchase order, the drug purchase order is sent to the drug sales point corresponding to the drug collection method, so that the drug sales point provides the user with the drugs in the drug purchase order according to the drug collection method. Since the multiple combination medication plans are obtained based on the user's disease symptoms, it can guide the user to purchase drugs accurately according to the disease symptoms, improve the correspondence between the drugs purchased by the user and the disease symptoms, and enable the user to purchase the correct drugs. Therefore, the IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device of the present application provides users with a new and convenient self-diagnosis and drug purchase experience with advanced voice recognition technology, an intuitive touch display interface, an intelligent drug recommendation system, and a flexible pickup method, which can help users quickly and accurately find the drugs that suit them, and can also greatly improve the user's drug selection efficiency and satisfaction.
[0042] In order to provide a clearer understanding of the present application, the specific implementation methods of the present application will be described below with reference to the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS
[0043] Figure 1 This is a schematic diagram of an IoT digital intelligent pharmaceutical and medical interaction virtual-reality fusion terminal device according to an embodiment of the present application.
[0044] Figure 2 This is a schematic diagram of the steps executed by an IoT digital intelligent pharmaceutical and medical interaction virtual-reality fusion terminal device in one embodiment of the present application.
[0045] Figure 3 This is a schematic diagram of steps S4-S6 executed by an IoT digital intelligent pharmaceutical-doctor interaction virtual-reality fusion terminal device in one embodiment of the present application. DETAILED DESCRIPTION
[0046] In order to make the objectives, technical solutions and advantages of this application clearer, the embodiments of this application will be further described in detail below with reference to the accompanying drawings.
[0047] It should be clear that the embodiments described are only part of the embodiments of the present application, not all of the embodiments. Based on the embodiments of the present application, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the embodiments of the present application.
[0048] When the following description refers to the accompanying drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. In the description of this application, it should be understood that the terms "first", "second", "third", etc. are only used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence, nor can they be understood as indicating or implying relative importance. For those of ordinary skill in the art, the specific meanings of the above terms in this application can be understood according to the specific circumstances. The singular forms of "a", "said" and "the" used in this application and the appended claims are also intended to include the plural forms, unless the context clearly indicates other meanings. The words "if" / "if" used herein can be interpreted as "at the time of" or "when" or "in response to determination".
[0049] In addition, in this application, unless otherwise specified, "plurality" refers to two or more. "And / or" describes the relationship between associated objects, indicating that three possible relationships exist. For example, "A and / or B" can mean: A exists alone, A and B exist simultaneously, or B exists alone. The character " / " generally indicates that the associated objects are in an "or" relationship.
[0050] See also Figure 1 , which is a schematic diagram of an IoT digital intelligent pharmacy-doctor interaction virtual-reality fusion terminal device according to one embodiment of the present application. The IoT digital intelligent pharmacy-doctor interaction virtual-reality fusion terminal device includes a main body, a touch screen, a microphone, a speaker, a camera, an alarm, and a printer assembly disposed on the main body. The touch screen can display multiple function options.
[0051] See also Figure 2 The IoT digital intelligent pharmaceutical-medical interaction virtual-real fusion terminal device of the present application can provide users with a convenient diagnosis and treatment and drug purchase experience by performing the following steps, including:
[0052] S1: Obtain the user's disease symptoms based on the user's interactive operations;
[0053] S2: Obtain corresponding multiple sets of combined medication plans based on the disease symptoms;
[0054] S3: Generate a drug purchase order based on the drugs and purchase quantity in the medical plan selected by the user;
[0055] Among them, a drug purchase order refers to a purchase order generated after the user confirms the drug order of the medical plan selected for purchase, and completes operations such as selecting the pickup method, selecting the payment method, and completing the payment.
[0056] S6: According to the medicine collection method in the medicine purchase order, the medicine purchase order is sent to a medicine sales point corresponding to the medicine collection method, so that the medicine sales point provides the user with the medicine in the medicine purchase order according to the medicine collection method.
[0057] In a feasible embodiment, according to the user's interactive operation, S1: the step of obtaining the user's disease symptoms includes:
[0058] S11: Acquire user interaction data through multimodal interaction; the interaction data includes voice interaction data, touch screen interaction data and / or video interaction data;
[0059] S12: Perform symptom recognition on the interaction data to obtain the user's disease symptoms.
[0060] In a feasible embodiment, S12: performing speech semantic recognition on the interactive speech to obtain the disease symptoms described by the interactive speech, includes:
[0061] S121: Performing voice-to-text translation on the interactive speech to obtain a voice text of the interactive speech;
[0062] S122: Perform semantic recognition on the voice text to obtain the disease symptoms described in the voice text.
[0063] In a feasible embodiment, S1: the step of obtaining the user's disease symptoms according to the user's interactive operation includes:
[0064] S13: Display multiple body part options of the human body;
[0065] S14: Displaying corresponding body part symptom options and / or body part disease options according to the body part option selected by the user;
[0066] S15: Obtain the disease symptoms according to the several body symptom options and / or body disease options selected by the user.
[0067] In a feasible embodiment, S2: the step of obtaining corresponding multiple sets of combined medication regimens according to the disease symptoms includes:
[0068] S21: Uploading the disease symptoms to a cloud server, generating multiple combination medication plans based on a cloud medical knowledge base and drug database through an intelligent diagnostic system configured on the cloud server, and introducing a licensed pharmacist review mechanism to review the combination medication plans; the licensed pharmacist review mechanism includes both AI review and manual review;
[0069] S22: Receive and display the multiple sets of combined medication plans issued by the cloud server.
[0070] See also Figure 3 In a feasible embodiment, the method further includes:
[0071] S4: Based on the user's drug purchasing operation, the drug purchasing interface is displayed according to the drug information in the drug database configured on the cloud server;
[0072] S5: generating a drug purchase order in response to the user's purchase and payment operation on the drug purchasing interface;
[0073] Among them, the purchase and payment operations include but are not limited to confirming the drug order, selecting the pickup method, selecting the payment method, and completing the payment.
[0074] S6: According to the medicine collection method in the medicine purchase order, the medicine purchase order is sent to a medicine sales point corresponding to the medicine collection method, so that the medicine sales point provides the user with the medicine in the medicine purchase order according to the medicine collection method.
[0075] In a feasible embodiment, the medication pickup method includes a self-pickup method and a delivery method. S6: Based on the medication pickup method in the medication purchase order, the medication purchase order is sent to a medication vending point corresponding to the medication pickup method, so that the medication vending point provides the user with the medication in the medication purchase order based on the medication pickup method, including the following steps:
[0076] S61: If the medication pickup method selected by the user is self-pickup, the user's current location, or the virtual-real fusion location selected by the user on the electronic map, or the address information input by the user is determined as the self-pickup point, and medication sales points near the self-pickup point are recommended to the user;
[0077] S62: Sending the drug purchase order to a drug vending point for self-pickup selected by the user, so that the drug vending point prepares the drugs for self-pickup by the user according to the drug purchase order;
[0078] S63: If the medication pickup method selected by the user is medication delivery, a logistics delivery order is generated based on the address information input by the user and the medication sales outlets that support delivery to the address information;
[0079] S64: Send the drug purchase order to the drug sales point, so that the drug sales point prepares the drugs according to the drug purchase order; send the logistics delivery order to the logistics delivery platform, so that the logistics delivery platform dispatches delivery personnel to deliver the drugs corresponding to the drug purchase order from the drug sales point to the address information.
[0080] In a feasible embodiment, after the step of sending the delivery order to the logistics platform in step S64, the following steps are further included:
[0081] According to the user's delivery progress query operation, the logistics delivery progress of the delivery order is displayed.
[0082] Specifically, the backend system of the IoT digital intelligent pharmaceutical and medical interaction virtual-real integration terminal device will be connected with the third-party logistics platform to provide users with real-time delivery progress query and logistics tracking services.
[0083] In a feasible embodiment, it also includes:
[0084] S7: according to the user's doctor consultation operation, sending a video invitation to the doctor indicated by the doctor consultation operation;
[0085] S8: If the video invitation is accepted, establish a video call with the doctor.
[0086] After establishing a video call with a doctor, the user can make a video call with the doctor through the IoT digital intelligent pharmaceutical and medical interactive virtual-real fusion terminal device. The doctor can also observe the user's facial expression, demeanor, body movements and other information through the video call.
[0087] In one feasible embodiment, S3: the step of generating a drug purchase order includes:
[0088] S31: Generate a drug order based on the disease symptoms and / or the drug selected by the user and the purchase quantity;
[0089] S32: Sending the drug order to a preset backend terminal for the licensed pharmacist and / or doctor corresponding to the backend terminal to review the drug order;
[0090] S33: Generate and display a payment interface based on the approved drug order.
[0091] Among them, the payment methods displayed on the payment interface include at least four payment methods: WeChat, Alipay, cash, medical insurance card / medical insurance code.
[0092] S34: Generate the drug purchase order according to the user's payment operation on the payment interface.
[0093] Compared with the existing technology, the IoT digital intelligent pharmaceutical and medical interactive virtual-reality fusion terminal device of the present application can obtain the user's disease symptoms based on the user's interactive operations, and then obtain corresponding multiple sets of combined medication plans based on the disease symptoms for the user to choose, and then generate a drug purchase order based on the drugs and purchase quantities in the medical plan chosen by the user; according to the drug collection method in the drug purchase order, the drug purchase order is sent to the drug sales point corresponding to the drug collection method, so that the drug sales point provides the user with the drugs in the drug purchase order according to the drug collection method. Since multiple sets of combined medication plans are obtained based on the user's disease symptoms, the user can be guided to purchase drugs accurately according to the disease symptoms, thereby improving the correspondence between the drugs purchased by the user and the disease symptoms, so that the user can purchase the correct drugs.
[0094] In summary, the present application relates to an IoT digital intelligent drug-medical interaction virtual-real fusion terminal device, which aims to solve the problem of drug selection bias caused by insufficient medical knowledge of users in the traditional drug purchasing process. The device obtains user symptoms through multimodal interaction (voice, touch screen, video), generates a combined medication plan based on the cloud medical knowledge base and drug database, and introduces a review mechanism for doctors, pharmacists, and licensed pharmacists to ensure that users use drugs scientifically and safely. The system supports four payment methods and two drug collection modes (self-pickup / delivery), realizing the intelligence of the entire process from symptom analysis to drug delivery, and digitizing the entire process from body organ part-part symptoms to drug delivery to adapt to local dialects. The present application can guide users to accurately purchase drugs for scientific and safe use based on disease symptoms, improve the correspondence between the drugs purchased by users and disease symptoms, reduce the risk of user medication errors, and improve the accuracy of scientific and professional drug use.
[0095] Core technology modules include:
[0096] Intelligent diagnostic system: collects symptom data through natural language processing (NLP) and a visual human body part selection interface, and combines AI algorithms to match potential diseases.
[0097] Medical plan generation: Utilize cloud-based big data analysis to generate multiple medication plans, which are then pushed to users after manual review by the backend.
[0098] Order processing system: Integrates geographic information systems to recommend the nearest pharmacy and supports logistics platform docking to achieve drug tracking.
[0099] Telemedicine module: provides video consultation services and enables electronic prescription circulation.
[0100] The innovation lies in the creation of a closed-loop service system encompassing "symptom identification - solution generation - review and oversight - drug delivery," balancing efficiency and safety through a human-machine collaborative mechanism (AI preliminary diagnosis + manual review). Test data shows that this application significantly improves the accuracy of over-the-counter drug selection compared to traditional methods.
[0101] Furthermore, to further improve the accuracy of diagnosis and prescriptions, as well as the safety of medication, this application will also conduct feasibility analysis based on AI and large-scale model enhancement, including but not limited to:
[0102] 1. Enhanced symptom understanding: A large language model fine-tuned in the medical field parses ambiguous symptoms described by users;
[0103] 2. Personalized recommendations: Build a multimodal recommendation model based on patient profiles (allergy history, medication records);
[0104] 3. Automatic prescription review: Use a prescription review model and retain manual review to meet medical regulatory requirements;
[0105] 4. Medication Safety Monitoring: Build a time-series prediction model to monitor adverse reactions, providing early warning of most potential adverse reactions within a certain timeframe, such as 12 hours, 24 hours, or 48 hours. Different diagnostic results and prescribed medications correspond to different warning durations.
[0106] In combination with the above content, this application has the following functions: Function 1: Digital diagnosis and treatment. Digital diagnosis and treatment is to obtain the user's physical symptoms based on the user's human-screen interactive operation; based on the user's physical symptoms, the user's disease is diagnosed through digital interaction based on big data, and several corresponding combination medication plans are obtained for the disease; after the order is reviewed and placed by the back-end doctor or pharmacist, a drug purchase order is generated based on the drugs and purchase quantity in the combination medication plan chosen by the user, and according to the drug collection method in the drug purchase order, the drug purchase order is sent to the drug sales point corresponding to the drug collection method, so that the drug sales point provides the user with the drugs in the drug purchase order according to the drug collection method. Function 2: Artificial intelligence diagnosis and treatment. Artificial intelligence diagnosis and treatment is based on the user's human-computer voice interaction and the user's physical symptoms. The background uses AI diagnosis and treatment algorithms to diagnose the user's disease and provide several treatment and combination medication plans for the disease. After the digital doctor or digital pharmacist reviews the prescription and places an order, the user chooses the drugs and purchase quantities in the combination medication plan according to their own needs, and generates a drug purchase order. At the same time, the device provides the user with four payment methods: WeChat, Alipay, bank card, and medical insurance card for the user to choose. After completing the purchase order, the user can choose to pick up the medicine in the store or have it delivered by errands. The drug purchase order receipt is sent to the physical pharmacy and the user's mobile phone. The physical store provides the user with the drugs in the drug purchase order according to the pickup method. This application can guide users to purchase drugs accurately according to disease symptoms, improve the correspondence between the drugs purchased by users and disease symptoms, reduce the risk of users taking incorrect medications, and improve medication safety. Function 3: Remote Consultation: Based on user-screen interaction, users can choose to have a remote video consultation with an online doctor, receive prescriptions, order tests, and purchase medications. After completing a purchase order, users can choose to pick up their medications at the store or have them delivered. The purchase order receipt is sent to the physical pharmacy and the user's phone. The physical store then provides the medications in the order based on the pickup method. Function 4: Users can choose digital shopping based on their needs through user-screen interaction, directly entering the digital mall to shop. Function 5: Prescription Registration: When purchasing prescription medications, users can connect to their phone in real time through the device to upload their prescriptions or register their identity to purchase prescription medications.
[0107] This application can guide users to purchase medicines accurately according to disease symptoms, improve the correspondence between the medicines purchased by users and disease symptoms, reduce the risk of users taking incorrect medicines, and improve medication safety.
[0108] In actual application, the IoT digital intelligent drug-doctor interaction virtual-reality fusion terminal device of this application uses advanced voice recognition technology, an intuitive touch display interface, an intelligent drug recommendation system, and a flexible pickup method to provide users with a new and convenient self-diagnosis and drug purchasing experience. It can help users quickly and accurately find the right medicine for them, and can also greatly improve the efficiency and satisfaction of users' drug selection. For example, the user only needs to simply describe their disease symptoms, such as "I have a headache, accompanied by a slight fever, stomachache, etc." The IoT digital intelligent drug-doctor interaction virtual-reality fusion terminal device can accurately capture and understand this information in conjunction with the cloud server, and analyze the disease symptoms through the cloud server's medical knowledge base and drug database to obtain multiple sets of combination medication plans. The IoT digital intelligent drug-doctor interaction virtual-reality fusion terminal device receives and displays the multiple sets of combination medication plans issued by the cloud server for users to self-select. In addition, this application is equipped with a high-definition touch screen that clearly displays various parts of the human body and their possible corresponding symptoms. Users can further refine their symptom description by clicking on the body parts on the touch screen, thereby providing more accurate disease symptoms.
[0109] When the IoT digital intelligent pharmaceutical and medical interaction virtual-reality fusion terminal device displays a medical plan, users can clearly see detailed information such as the name, usage and dosage, precautions, drug diagrams, and drug prices of the various drugs included in each medical plan through the touch screen, allowing users to choose the drugs that best suit their medical plan based on their needs and preferences and place an order. When the IoT digital intelligent pharmaceutical and medical interaction virtual-reality fusion terminal device displays the drug selection interface, the drug selection interface can be categorized and displayed according to the drug's attributes, including but not limited to the drug's use and the area where the drug's efficacy is targeted. For the drug selection interface, users only need to complete the purchase process through a few simple steps, such as selecting the purchase quantity, confirming the drug order, selecting the pickup method, selecting the payment method, and completing the payment.
[0110] Among them, the IoT digital intelligent pharmaceutical and medical interaction virtual and real fusion terminal device of this application provides a flexible pickup method. That is, when placing an order, users can choose self-pickup or delivery service according to their actual situation and needs. If self-pickup is selected, the system will recommend the nearest self-pickup point based on the user's geographical location and provide detailed pickup time and address information. If the delivery service is selected, the system will connect with a third-party logistics platform to provide users with real-time delivery progress query and logistics tracking services.
[0111] The IoT digital intelligent pharmacy and medical interaction virtual-reality fusion terminal device of this application provides users with a video call service with a doctor through a touch screen, camera, and microphone, allowing doctors to consult and prescribe for users through video calls. In addition, to protect the privacy and security of users, the IoT digital intelligent pharmacy and medical interaction virtual-reality fusion terminal device of this application encrypts the transmitted data of users' personal information and disease symptoms to prevent leakage of users' personal information and disease symptom data.
[0112] The device embodiments described above are merely illustrative, wherein the components described as separate parts may or may not be physically separate, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of the modules may be selected according to actual needs to achieve the purpose of the present application. Those of ordinary skill in the art can understand and implement the present invention without inventive effort.
[0113] Those skilled in the art will appreciate that the embodiments of the present application can be provided as methods, systems, or computer program products. Therefore, the present application can adopt the form of a complete hardware embodiment, a complete software embodiment, or an embodiment in combination with software and hardware. Moreover, the present application can adopt the form of a computer program product implemented on one or more computer-usable storage media (including but not limited to magnetic disk storage, CD-ROM, optical storage, etc.) that contain computer-usable program code.
[0114] The present application is described with reference to the flowcharts and / or block diagrams of the methods, devices (systems), and computer program products according to the embodiments of the present application. It should be understood that each process and / or box in the flowchart and / or block diagram, as well as the combination of the processes and / or boxes in the flowchart and / or block diagram, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, a special-purpose computer, an embedded processor, or other programmable data processing device to produce a machine, so that the instructions executed by the processor of the computer or other programmable data processing device generate instructions for implementing the steps in the process. Figure 1 a process or multiple processes and / or boxes Figure 1 These computer program instructions can also be stored in a computer-readable memory that can guide a computer or other programmable data processing device to work in a specific way, so that the instructions stored in the computer-readable memory produce a product including an instruction device, which implements the function selected in the process. Figure 1 a process or multiple processes and / or boxes Figure 1 function selected in a box or multiple boxes.
[0115] These computer program instructions can also be loaded onto a computer or other programmable data processing device so that a series of operational steps are executed on the computer or other programmable device to produce a computer-implemented process, thereby providing the instructions executed on the computer or other programmable device for implementing the process. Figure 1 a process or multiple processes and / or boxes Figure 1 steps for the function selected in a box or multiple boxes.
[0116] In a typical configuration, a computing device includes one or more processors (CPUs), input / output interfaces, network interfaces, and memory.
[0117] The memory may include non-permanent memory in a computer-readable medium, random access memory (RAM) and / or non-volatile memory in the form of read-only memory (ROM) or flash RAM. The memory is an example of a computer-readable medium.
[0118] Computer-readable media includes permanent and non-permanent, removable and non-removable media that can be implemented by any method or technology to store information. The information can be computer-readable instructions, data structures, program modules or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technology, compact disc read-only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices or any other non-transmission media that can be used to store information that can be accessed by a computing device. As defined herein, computer-readable media does not include transitory computer-readable media (transitory media), such as modulated data signals and carrier waves.
[0119] It should also be noted that the terms "comprises," "includes," or any other variations thereof are intended to encompass non-exclusive inclusion, such that a process, method, commodity, or apparatus that includes a series of elements includes not only those elements but also other elements not explicitly listed, or includes elements inherent to such process, method, commodity, or apparatus. In the absence of further limitations, an element defined by the phrase "comprises a ..." does not exclude the presence of other identical elements in the process, method, commodity, or apparatus that includes the element.
[0120] The above are merely embodiments of the present application and are not intended to limit the present application. For those skilled in the art, the present application may have various changes and variations. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application should all be included within the scope of the claims of the present application.
Claims
1. An IoT digital intelligent pharmaceutical and medical interaction virtual and real fusion terminal device, characterized by: include: Obtain the user's disease symptoms based on the user's interactive operations; Obtain corresponding multiple sets of combined medication plans based on the symptoms of the disease; Generate a drug purchase order based on the drugs and purchase quantity in the medical plan selected by the user; According to the medicine collection method in the medicine purchase order, the medicine purchase order is sent to the medicine sales point corresponding to the medicine collection method, so that the medicine sales point provides the user with the medicine in the medicine purchase order according to the medicine collection method.
2. The IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device according to claim 1 is characterized in that: The steps for obtaining the user's disease symptoms based on the user's interactive operations include: Acquire user interaction data through multimodal interaction; the interaction data includes voice interaction data, touch screen interaction data and / or video interaction data; Symptom recognition is performed on the interaction data to obtain the user's disease symptoms.
3. The IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device according to claim 2 is characterized in that: The step of performing speech semantic recognition on the interactive speech to obtain the disease symptoms described by the interactive speech includes: Performing voice-to-text translation on the interactive speech to obtain a voice-to-text of the interactive speech; Perform semantic recognition on the speech text to obtain the disease symptoms described in the speech text.
4. The IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device according to claim 1 is characterized in that: The steps for obtaining the user's disease symptoms based on the user's interactive operations include: Multiple body part options to display the human body; Displaying corresponding body part symptom options and / or body part disease options according to the body part option selected by the user; The disease symptoms are obtained according to the several site symptom options and / or site disease options selected by the user.
5. The IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device according to claim 1 is characterized in that: The steps of obtaining corresponding multiple sets of combined medication regimens according to the disease symptoms include: The disease symptoms are uploaded to a cloud server. The intelligent diagnostic system configured on the cloud server generates multiple sets of combination medication plans based on the cloud medical knowledge base and drug database. The combination medication plans are then reviewed by a licensed pharmacist review mechanism, which includes both AI review and manual review. Receive and display the multiple sets of combined medication plans issued by the cloud server.
6. The IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device according to claim 1 is characterized in that: Also includes: According to the user's drug purchasing operation, the drug purchasing interface is displayed according to the drug information in the drug database configured by the cloud server; generating a drug purchase order in response to a user's purchase and payment operation on the drug purchasing interface; According to the medicine collection method in the medicine purchase order, the medicine purchase order is sent to the medicine sales point corresponding to the medicine collection method, so that the medicine sales point provides the user with the medicine in the medicine purchase order according to the medicine collection method.
7. The IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device according to claim 1 is characterized in that: The medication pickup method includes a medication self-pickup method and a medication delivery method; according to the medication pickup method in the medication purchase order, the medication purchase order is sent to a medication vending point corresponding to the medication pickup method, so that the medication vending point provides the user with the medication in the medication purchase order according to the medication pickup method, including the following steps: If the user selects self-pickup, the user's current location, the virtual-real fusion location selected by the user on the electronic map, or the address information entered by the user is determined as the self-pickup point, and the user is recommended a drug sales point near the self-pickup point. Sending the drug purchase order to a drug vending point selected by the user for self-pickup, so that the drug vending point prepares the drugs for self-pickup by the user according to the drug purchase order; If the medication pickup method selected by the user is medication delivery, a logistics delivery order is generated based on the address information entered by the user and the medication sales outlets that support delivery to the address information; The drug purchase order is sent to the drug sales point, so that the drug sales point prepares the drugs according to the drug purchase order; the logistics delivery order is sent to the logistics delivery platform, so that the logistics delivery platform dispatches delivery personnel to deliver the drugs corresponding to the drug purchase order from the drug sales point to the address information.
8. The IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device according to claim 7 is characterized in that: After the step of sending the delivery order to the logistics platform, the following steps are also included: According to the user's delivery progress query operation, the logistics delivery progress of the delivery order is displayed.
9. The IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device according to claim 1 is characterized in that: Also includes: Send a video invitation to the doctor indicated by the user's doctor consultation operation; If the video invitation is accepted, a video call with the doctor is established.
10. The IoT digital intelligent pharmaceutical and medical interaction virtual-real fusion terminal device according to claim 1 is characterized in that: The steps to generate a drug purchase order include: Generate a drug order based on the disease symptoms and / or the drug selected by the user and the purchase quantity; Sending the drug order to a preset backend terminal for review by a licensed pharmacist and / or doctor corresponding to the backend terminal; Generate and display the payment interface based on the approved drug order; The drug purchase order is generated according to the user's payment operation on the payment interface.
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CN121999959A