Multifunctional and full-coverage intelligent ward system and operation method

By integrating a multi-functional smart ward system, the shortcomings of traditional ward models in terms of intelligence have been addressed, enabling real-time monitoring and personalized services, improving medical efficiency and patient recovery outcomes, and meeting the high-efficiency needs of modern medicine.

CN121789925APending Publication Date: 2026-04-03THE FIRST HOSPITAL OF LANZHOU UNIV
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-07
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

Traditional ward models are difficult to meet the demands of modern medicine for efficiency, personalization, and intelligence. Smart wards face challenges in construction and operation, including high capital investment, poor system compatibility, low technical acceptance among medical staff, and difficulty in patient adaptation.

Method used

Design a multifunctional, fully-covered smart ward system, including an intelligent care system, an intelligent infusion management system, a robot intelligent guidance system, a logistics system, a mobile medical workstation, a rehabilitation karaoke system, an intelligent interactive rehabilitation system, a functional rehabilitation evaluation system, an intelligent thermal imaging epidemic prevention system, an intelligent item management cabinet, and a laboratory. Integrate IoT, AI, and big data technologies to achieve real-time monitoring, data sharing, and personalized services.

Benefits of technology

It has improved medical efficiency and patient recovery outcomes, reduced repetitive work for medical staff, enhanced the hospital's information technology capabilities, and strengthened its ability to handle emergencies, earning praise from medical staff and patients.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to the technical field of ward management, in particular to a multifunctional and full-coverage intelligent ward system and an operation method. The system comprises an intelligent nursing system, an intelligent infusion management system, a robot intelligent guide system, a logistics system, a rehabilitation singing bar system, a mobile medical workstation, an intelligent interactive rehabilitation wall surface system, an intelligent interactive rehabilitation ground system, an intelligent interactive screen drawing system, a functional rehabilitation evaluation system and an intelligent thermal imaging epidemic prevention system. Through cooperative work of all the systems, real-time monitoring of vital signs of a patient in a ward, automation of infusion management, intelligentization of material distribution, interaction of rehabilitation training and support of rapid inspection are achieved, and therefore the efficiency and quality of medical services are improved, and the rehabilitation experience of the patient is improved.
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Description

Technical Field

[0001] This invention relates to the field of ward management technology, specifically to a multifunctional, comprehensive smart ward system and its operation method. Background Technology

[0002] With the rapid development of medical technology and the increasing demands for healthcare services, traditional ward models are gradually failing to meet the needs of modern medicine for efficiency, personalization, and intelligence. Smart wards have emerged as a crucial component of the digital transformation of healthcare and have experienced rapid global development in recent years. By integrating the Internet of Things (IoT), Artificial Intelligence (AI), big data, 5G communication, and robotics, smart wards achieve interconnectivity of medical equipment and real-time data sharing. Smart wards not only enable real-time monitoring of patients' vital signs, optimize medical processes, and improve the efficiency of medical and nursing work, but also provide patients with a more comfortable and personalized rehabilitation experience.

[0003] While achieving positive development, smart wards still face many challenges and problems in their actual implementation. Firstly, the construction of smart wards requires substantial financial investment, including the procurement of intelligent equipment, system development, and maintenance. This may be unaffordable for some small and medium-sized hospitals or economically underdeveloped regions. Secondly, the technologies and equipment involved in smart wards come from different manufacturers, lacking unified technical standards and data interfaces, resulting in poor compatibility and coordination between systems, impacting overall efficiency. Thirdly, the operation of smart wards requires medical staff to possess certain technical operational skills. However, some medical staff have low acceptance of new technologies and lack systematic training, leading to the underutilization of the smart ward's functions. Finally, some patients, especially elderly patients, may find the use of intelligent equipment uncomfortable or even resistant. Therefore, designing a more user-friendly and easy-to-operate smart ward system is an issue that needs attention.

[0004] The inventor's research group primarily focuses on smart healthcare and smart wards. Combining research with clinical challenges, they have creatively developed a multifunctional, comprehensive smart ward system. This system comprehensively addresses clinical issues, significantly reducing repetitive work for nurses and improving medical efficiency. Mobile medical workstations enable healthcare professionals to conduct diagnosis and data recording anytime, anywhere, while the intelligent interactive rehabilitation system uses gamification and interactive methods to assist patients in rehabilitation training, enhancing rehabilitation outcomes. The application of this smart ward system has achieved excellent clinical results and received unanimous praise from medical staff and patients. Summary of the Invention

[0005] The purpose of this invention is to provide a multifunctional, comprehensive smart ward system, including: an intelligent care system, an intelligent infusion management system, a robot intelligent guidance system, a logistics system, a mobile medical workstation, a rehabilitation karaoke system, an intelligent interactive rehabilitation system, a functional rehabilitation evaluation system, an intelligent thermal imaging epidemic prevention system, an intelligent item management cabinet, and a laboratory. The intelligent care system is used to monitor the patient's vital signs in real time and provide abnormal alarms.

[0006] The aforementioned intelligent infusion management system is used to monitor the infusion progress, automatically adjust the infusion rate, and record infusion data;

[0007] The aforementioned robot intelligent guidance and logistics system is used to provide navigation services for patients, their families, or medical staff, and is also used for automated delivery of medicines, medical devices, and other supplies.

[0008] The mobile medical workstation is used to support medical staff in conducting mobile diagnosis and treatment and recording data in the ward.

[0009] The aforementioned rehabilitation karaoke system is used to assist patients in their rehabilitation through music therapy.

[0010] The aforementioned intelligent interactive rehabilitation system is used to assist patients in rehabilitation training through interactive games;

[0011] The aforementioned functional rehabilitation evaluation system is used to assess the patient's rehabilitation progress and provide personalized rehabilitation suggestions;

[0012] The aforementioned intelligent thermal imaging epidemic prevention system is used to monitor the body temperature of people in the ward in real time and identify abnormalities;

[0013] The aforementioned intelligent item management cabinet is used for the automated management of the storage and retrieval of medicines, medical devices and other items;

[0014] The laboratory is used to support rapid testing and experimental analysis within the ward.

[0015] Furthermore, the intelligent care system includes a medical care terminal, a patient terminal, and a central control terminal. The patient terminal is used to collect data such as the patient's heart rate, blood pressure, and blood oxygen saturation in real time. This is the core of the intelligent care system's data collection, monitoring the patient's physiological indicators in real time and transmitting the data to the central control terminal for analysis. Its functional modules include vital sign monitoring: real-time collection of key physiological indicators such as the patient's heart rate, blood pressure, blood oxygen saturation, and body temperature. It supports both continuous and timed monitoring modes. The above data collection is achieved through wearable devices such as smart bracelets or bedside monitoring devices, supporting wireless data transmission to reduce cable constraints and improve patient comfort. The patient terminal also needs to be equipped with a small display screen or a mobile app, allowing patients to view their health data in real time. If abnormal data is detected (such as excessively high heart rate or excessively low blood oxygen), an immediate alert (such as vibration or sound prompts) is issued to the patient, along with timely suggestions, such as timely breathing exercises and relaxation techniques. The central control unit analyzes the collected data and generates health reports. It receives physiological data from patients in real time, stores it in the cloud or on a local server, and uses artificial intelligence algorithms to analyze the data and identify potential health risks. It also supports historical data comparison, generating trend charts and analysis reports to provide medical staff with a clearer understanding of the patient's condition. Based on the analysis results, a detailed health report is generated, including the current status, abnormal indicators, and recommended measures, allowing medical staff to quickly grasp the information and make timely treatment plans and measures. The system visually displays patients' health data through charts, curves, and other formats, and can simultaneously monitor the health status of multiple patients, facilitating comprehensive management by medical staff. The medical staff terminal is used to issue alerts to medical staff when abnormal data is detected. It serves as the alarm and operation center of the intelligent care system, primarily receiving analysis results from the central control unit and issuing alerts to medical staff in abnormal situations. Medical staff can view patients' health data in real time through multiple terminals, such as computers, tablets, mobile phones, or smart bracelets, with data synchronized across all terminals. When abnormal data is detected on the healthcare terminal, the system automatically sends alerts to healthcare personnel (such as pop-up notifications, SMS alerts, and sound alerts). Alerts can also be tiered, with different alert sounds for different levels. Healthcare personnel can remotely adjust monitoring parameters or initiate emergency measures via the healthcare terminal. The healthcare terminal can integrate the patient's real-time monitoring data with the electronic medical record system to form a complete health record. During the operation of the intelligent care system, the patient terminal collects the patient's physiological data in real time through sensors and transmits it to the central control terminal. The central control terminal analyzes the received data, identifies anomalies, and generates health reports. If an anomaly is detected, the central control terminal pushes the information to the healthcare terminal, and healthcare personnel take appropriate measures based on the alert. Healthcare personnel can view the patient's health report through the healthcare terminal and develop personalized care plans. Patients can understand their own health status through the patient terminal and adjust their lifestyle habits according to system suggestions.

[0016] Furthermore, the intelligent infusion management system includes a patient terminal, a central monitoring terminal, and a multi-terminal monitoring and management terminal; the patient terminal is used to monitor the patient's infusion status in real time, including infusion progress, remaining time, and abnormal alarms; the central monitoring terminal is used to centrally manage infusion data from multiple patient terminals and provide real-time monitoring and data analysis functions; the multi-terminal monitoring and management terminal is used to support medical staff to remotely monitor and manage the infusion process through mobile terminals or fixed terminals.

[0017] The patient terminal includes an infusion progress monitoring module, an abnormality alarm module, and a data display module. The infusion progress monitoring module is used to collect infusion progress data in real time; the abnormality alarm module is used to issue an alarm when an infusion abnormality is detected; and the data display module is used to display the infusion progress, remaining time, and precautions to the patient or their family.

[0018] The central monitoring terminal includes a data receiving module, a data analysis module, and an alarm management module. The data receiving module is used to receive infusion data from multiple patient terminals. The data analysis module is used to analyze the received data and generate infusion reports. The alarm management module is used to centrally process abnormal alarms from patient terminals and notify medical staff.

[0019] The multi-terminal monitoring and management terminal includes a remote monitoring module, a remote control module, and a data synchronization module. The remote monitoring module allows medical staff to view the infusion status in real time via mobile or fixed terminals. The remote control module allows medical staff to remotely adjust infusion parameters. The data synchronization module synchronizes data with the central monitoring terminal to ensure information consistency.

[0020] Furthermore, the robot intelligent guidance and logistics system includes a material storage module, a path planning module, a voice interaction module, an obstacle avoidance module, a positioning module, and a task management module. The material storage module is used to securely store delivered items, providing multi-layered, partitioned storage space to support items of different sizes and types (such as medicines, medical devices, and documents). It also needs to be equipped with electronic or mechanical locks to ensure that items are not lost or damaged during transportation. The electronic lock automatically opens after the robot transports the items to the designated location for easy storage and retrieval. The path planning module is used to plan the optimal path according to user needs, reducing the time cost of repetitive tasks. It can also dynamically adjust the path based on real-time environmental changes (such as new obstacles or pedestrian density). When transporting multiple items, it can simultaneously plan the optimal path to multiple target points, improving delivery efficiency. The voice interaction module interacts with users via voice and provides navigation guidance, offering a more intuitive interactive experience in conjunction with screen display. It can also announce task status and any anomalies in itself and the operating environment via voice, facilitating timely detection and resolution by medical personnel. The obstacle avoidance module detects and avoids obstacles in real time during movement. Upon detecting an obstacle, it immediately stops or adjusts its path to avoid collisions. It can also identify moving obstacles (such as pedestrians and other robots) and predict their trajectories. This is primarily achieved using sensors such as LiDAR, ultrasonic sensors, infrared sensors, and cameras. The positioning module determines the robot's position in real time using indoor positioning technology, matching the real-time positioning data with a pre-built map to ensure navigation accuracy. It can also automatically calibrate its position when there is a large positioning deviation. The task management module receives and executes user tasks, supporting task reception via voice commands, touchscreen, or a mobile app.

[0021] Furthermore, the mobile medical workstation includes a mobile terminal device, a data entry module, a wireless communication module, a battery management module, and a disinfection module: the mobile terminal device supports mobile diagnosis and treatment by medical staff in wards; the data entry module records patient treatment data, including medical records, examination results, and medication records; the wireless communication module synchronizes data with the hospital information system; the battery management module manages the power of the mobile terminal device and supports long-term operation; the disinfection module regularly disinfects the mobile terminal device to prevent cross-infection; the mobile terminal device includes a touch screen, keyboard, and barcode scanner for convenient data input and retrieval by medical staff; the data entry module supports voice input and handwriting input to improve data entry efficiency; the wireless communication module supports Wi-Fi, Bluetooth, and 5G communication to ensure data transmission stability and real-time performance; the battery management module supports fast charging and low-power modes to extend the device's usage time; and the disinfection module uses ultraviolet disinfection or spray disinfection technology to ensure the device's hygiene and safety.

[0022] Furthermore, the intelligent interactive rehabilitation system includes an intelligent interactive rehabilitation wall system, an intelligent interactive rehabilitation floor system, and an intelligent interactive rehabilitation screen system. The intelligent interactive rehabilitation wall system is used to assist patients in rehabilitation training through interactive games on the wall; the intelligent interactive rehabilitation floor system is used to assist patients in rehabilitation training through interactive games on the floor; and the intelligent interactive rehabilitation screen system is used to assist patients in psychological and physiological rehabilitation through interactive content on the screen.

[0023] The intelligent interactive rehabilitation wall system and intelligent interactive rehabilitation floor system include: an interactive game module for assisting patients in rehabilitation training by projecting interactive games onto the wall or floor; a motion capture module for capturing patients' movements in real time and providing feedback on training effects; and a personalized training module for customizing training content according to patients' rehabilitation needs. The intelligent interactive rehabilitation wall system uses devices such as touch screens and motion sensors, allowing patients to interact with the system through touch operations or body movements to complete rehabilitation training tasks. The intelligent interactive rehabilitation floor system uses devices such as pressure-sensitive floor tiles and projectors to create interactive training scenes projected onto the floor. Patients interact with the scenes while walking, standing, etc., and the system provides feedback on training effects based on the patient's movements.

[0024] The intelligent interactive rehabilitation screen system includes: a screen display module for displaying interactive content; a psychological rehabilitation module for assisting patients in psychological rehabilitation through screen content; and a physiological rehabilitation module for assisting patients in physiological rehabilitation through screen content. The intelligent interactive screen system uses an e-ink screen or an LCD screen, has image recognition and touch functions, can automatically adjust the screen brightness according to the ambient light, has high definition and low power consumption when displaying decorative content, and can clearly display relevant information when switching to the medical function interface.

[0025] The rehabilitation karaoke system includes: a music playback module for providing patients with a variety of music options; an interaction module for supporting patients to conduct rehabilitation training through singing or rhythmic interaction; and an effect evaluation module for recording patients' participation and evaluating rehabilitation effects. The music software of the rehabilitation karaoke system recommends personalized rehabilitation music tracks based on the patient's condition, rehabilitation stage, and personal preferences, and has a music therapy effect evaluation function.

[0026] Furthermore, the functional rehabilitation evaluation system includes a data acquisition module, an analysis module, and a personalized suggestion module. The data acquisition module is used to collect the patient's rehabilitation training data; the analysis module is used to analyze the collected data and generate a rehabilitation evaluation report; and the personalized suggestion module is used to provide personalized rehabilitation suggestions based on the analysis results. The functional rehabilitation evaluation system uses various sensors, including but not limited to accelerometers, pressure sensors, and electromyography (EMG) sensors, to collect data on the patient's limb movements and muscle strength during rehabilitation training, and uses professional rehabilitation assessment models and algorithms to quantitatively evaluate the patient's rehabilitation effects.

[0027] Furthermore, the intelligent thermal imaging epidemic prevention system includes a thermal imaging module, an anomaly recognition module, and a data recording module. The thermal imaging module is used to monitor the body temperature of people in the ward in real time and is the core component of the system. It adopts infrared thermal imaging technology, which can measure the surface temperature of the human body without contact. The temperature measurement accuracy can reach ±0.3℃, which meets the requirements of medical-grade temperature measurement. It can also support the simultaneous monitoring of the body temperature of multiple people and is suitable for multiple-person scenarios such as wards and corridors.

[0028] The aforementioned anomaly detection module, used to identify individuals with abnormal body temperatures and issue alarms, is the core of the system's intelligent analysis. Medical staff can define a custom body temperature threshold (e.g., 37.3℃) before using the system. Temperatures exceeding this threshold are considered abnormal, triggering different levels of alarms (e.g., audible alarms, pop-up notifications, SMS notifications) based on the severity of the anomaly. The system also records the activity trajectory of individuals with abnormal temperatures in real time, facilitating subsequent investigation and handling.

[0029] The data recording module is used to record body temperature monitoring data and generate reports. It is the core of the system's data management. It can also store body temperature data, thermal imaging images and abnormal records to a local server or the cloud, and classify them for easy access and analysis. In addition, the data can be exported to generate reports when needed.

[0030] Furthermore, the intelligent item management cabinet includes an item storage module, an automated storage and retrieval module, and an automated storage and retrieval module. The item storage module is used to store medicines, medical devices, and other items; the automated storage and retrieval module is used to automatically store and retrieve items according to instructions; and the inventory management module is used to track the inventory status of items in real time. The intelligent item management cabinet uses radio frequency identification technology and automated storage and retrieval equipment, enabling automatic identification of item information, rapid storage, and accurate retrieval. It also has an inventory warning function, sending a replenishment reminder to the central control system when the item inventory falls below a set threshold.

[0031] Furthermore, the laboratory includes rapid testing equipment, a laboratory analysis module, and a data synchronization module. The rapid testing equipment supports rapid testing within the ward; the laboratory analysis module analyzes the test data and generates reports; and the data synchronization module synchronizes data with the hospital information system. The laboratory is equipped with conventional testing equipment such as a blood routine analyzer, a urine routine analyzer, and a biochemical analyzer. This equipment features automated sample processing and data analysis functions and can transmit test results to the central control system in real time via a communication interface.

[0032] This invention offers the following beneficial effects: The proposed multifunctional, comprehensive smart ward system includes an intelligent care system, an intelligent infusion management system, a robot intelligent guidance system, a logistics system, a mobile medical workstation, a rehabilitation karaoke system, an intelligent interactive rehabilitation system, a functional rehabilitation evaluation system, an intelligent thermal imaging epidemic prevention system, an intelligent supplies management cabinet, and a laboratory. The intelligent care system monitors patients' vital signs in real time and provides alarms for abnormalities. The smart ward system comprehensively covers clinical problems, effectively improves hospital informatization, streamlines daily patient monitoring processes, frees up medical staff, and improves work efficiency and emergency response capabilities. The mobile medical workstation allows medical staff to conduct diagnosis and data recording anytime, anywhere, while the intelligent interactive rehabilitation system helps patients with rehabilitation training through gamification and interaction, improving rehabilitation outcomes. The application of this smart ward system has achieved good clinical results and has received unanimous praise from medical staff and patients. Attached Figure Description

[0033] To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are merely exemplary, and those skilled in the art can derive other embodiments based on the provided drawings without creative effort.

[0034] Figure 1 A schematic diagram of a multifunctional, fully-covered smart ward system.

[0035] Figure 2 A schematic diagram of a multifunctional, fully-covered smart ward system. Figure 2

[0036] Figure 3 Schematic diagram of intelligent infusion management system

[0037] Figure 4 Schematic diagram of the central monitoring terminal of the intelligent infusion management system

[0038] Figure 5 Actual product image of Kangfu Changba (a karaoke app).

[0039] Figure 6 Actual product image of the intelligent interactive rehabilitation wall system

[0040] Figure 7 Actual image of the intelligent interactive rehabilitation floor system

[0041] Figure 8 Actual product image of the intelligent interactive screen system

[0042] Figure 9 Schematic diagram of intelligent thermal imaging epidemic prevention system Detailed Implementation

[0043] The following specific embodiments illustrate the implementation of the present invention. Those skilled in the art can easily understand other advantages and effects of the present invention from the content disclosed in this specification. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0044] Example 1: A multifunctional, fully-covered smart ward system

[0045] refer to Figures 1-9This invention provides a multifunctional, fully-covered smart ward system, including: an intelligent care system, an intelligent infusion management system, a robot intelligent guidance system, a logistics system, a mobile medical workstation, a rehabilitation karaoke system, an intelligent interactive rehabilitation system, a functional rehabilitation evaluation system, an intelligent thermal imaging epidemic prevention system, an intelligent item management cabinet, and a laboratory. The intelligent care system is used to monitor the patient's vital signs in real time and provide abnormal alarms.

[0046] The aforementioned intelligent infusion management system is used to monitor the infusion progress, automatically adjust the infusion rate, and record infusion data;

[0047] The aforementioned robot intelligent guidance and logistics system is used to provide navigation services for patients, their families, or medical staff, and is also used for automated delivery of medicines, medical devices, and other supplies.

[0048] The mobile medical workstation is used to support medical staff in conducting mobile diagnosis and treatment and recording data in the ward.

[0049] The aforementioned rehabilitation karaoke system is used to assist patients in their rehabilitation through music therapy.

[0050] The aforementioned intelligent interactive rehabilitation system is used to assist patients in rehabilitation training through interactive games;

[0051] The aforementioned functional rehabilitation evaluation system is used to assess the patient's rehabilitation progress and provide personalized rehabilitation suggestions;

[0052] The aforementioned intelligent thermal imaging epidemic prevention system is used to monitor the body temperature of people in the ward in real time and identify abnormalities;

[0053] The aforementioned intelligent item management cabinet is used for the automated management of the storage and retrieval of medicines, medical devices and other items;

[0054] The laboratory is used to support rapid testing and experimental analysis within the ward.

[0055] Furthermore, the intelligent care system includes a medical care terminal, a patient terminal, and a central control terminal. The patient terminal is used to collect data such as the patient's heart rate, blood pressure, and blood oxygen saturation in real time. This is the core of the intelligent care system's data collection, monitoring the patient's physiological indicators in real time and transmitting the data to the central control terminal for analysis. Its functional modules include vital sign monitoring: real-time collection of key physiological indicators such as the patient's heart rate, blood pressure, blood oxygen saturation, and body temperature. It supports both continuous and timed monitoring modes. The above data collection is achieved through wearable devices such as smart bracelets or bedside monitoring devices, supporting wireless data transmission to reduce cable constraints and improve patient comfort. The patient terminal also needs to be equipped with a small display screen or a mobile app, allowing patients to view their health data in real time. If abnormal data is detected (such as excessively high heart rate or excessively low blood oxygen), an immediate alert (such as vibration or sound prompts) is issued to the patient, along with timely suggestions, such as timely breathing exercises and relaxation techniques. The central control unit analyzes the collected data and generates health reports. It receives physiological data from patients in real time, stores it in the cloud or on a local server, and uses artificial intelligence algorithms to analyze the data and identify potential health risks. It also supports historical data comparison, generating trend charts and analysis reports to provide medical staff with a clearer understanding of the patient's condition. Based on the analysis results, a detailed health report is generated, including the current status, abnormal indicators, and recommended measures, allowing medical staff to quickly grasp the information and make timely treatment plans and measures. The system visually displays patients' health data through charts, curves, and other formats, and can simultaneously monitor the health status of multiple patients, facilitating comprehensive management by medical staff. The medical staff terminal is used to issue alerts to medical staff when abnormal data is detected. It serves as the alarm and operation center of the intelligent care system, primarily receiving analysis results from the central control unit and issuing alerts to medical staff in abnormal situations. Medical staff can view patients' health data in real time through multiple terminals, such as computers, tablets, mobile phones, or smart bracelets, with data synchronized across all terminals. When abnormal data is detected on the healthcare terminal, the system automatically sends alerts to healthcare personnel (such as pop-up notifications, SMS alerts, and sound alerts). Alerts can also be tiered, with different alert sounds for different levels. Healthcare personnel can remotely adjust monitoring parameters or initiate emergency measures via the healthcare terminal. The healthcare terminal can integrate the patient's real-time monitoring data with the electronic medical record system to form a complete health record. During the operation of the intelligent care system, the patient terminal collects the patient's physiological data in real time through sensors and transmits it to the central control terminal. The central control terminal analyzes the received data, identifies anomalies, and generates health reports. If an anomaly is detected, the central control terminal pushes the information to the healthcare terminal, and healthcare personnel take appropriate measures based on the alert. Healthcare personnel can view the patient's health report through the healthcare terminal and develop personalized care plans. Patients can understand their own health status through the patient terminal and adjust their lifestyle habits according to system suggestions.

[0056] Furthermore, the intelligent infusion management system includes a patient terminal, a central monitoring terminal, and a multi-terminal monitoring and management terminal; the patient terminal is used to monitor the patient's infusion status in real time, including infusion progress, remaining time, and abnormal alarms; the central monitoring terminal is used to centrally manage infusion data from multiple patient terminals and provide real-time monitoring and data analysis functions; the multi-terminal monitoring and management terminal is used to support medical staff to remotely monitor and manage the infusion process through mobile terminals or fixed terminals.

[0057] The patient terminal includes an infusion progress monitoring module, an abnormality alarm module, and a data display module. The infusion progress monitoring module is used to collect infusion progress data in real time; the abnormality alarm module is used to issue an alarm when an infusion abnormality is detected; and the data display module is used to display the infusion progress, remaining time, and precautions to the patient or their family.

[0058] The central monitoring terminal includes a data receiving module, a data analysis module, and an alarm management module. The data receiving module is used to receive infusion data from multiple patient terminals. The data analysis module is used to analyze the received data and generate infusion reports. The alarm management module is used to centrally process abnormal alarms from patient terminals and notify medical staff.

[0059] The multi-terminal monitoring and management terminal includes a remote monitoring module, a remote control module, and a data synchronization module. The remote monitoring module allows medical staff to view the infusion status in real time via mobile or fixed terminals. The remote control module allows medical staff to remotely adjust infusion parameters. The data synchronization module synchronizes data with the central monitoring terminal to ensure information consistency.

[0060] Furthermore, the robot intelligent guidance and logistics system includes a material storage module, a path planning module, a voice interaction module, an obstacle avoidance module, a positioning module, and a task management module. The material storage module is used to securely store delivered items, providing multi-layered, partitioned storage space to support items of different sizes and types (such as medicines, medical devices, and documents). It also needs to be equipped with electronic or mechanical locks to ensure that items are not lost or damaged during transportation. The electronic lock automatically opens after the robot transports the items to the designated location for easy storage and retrieval. The path planning module is used to plan the optimal path according to user needs, reducing the time cost of repetitive tasks. It can also dynamically adjust the path based on real-time environmental changes (such as new obstacles or pedestrian density). When transporting multiple items, it can simultaneously plan the optimal path to multiple target points, improving delivery efficiency. The voice interaction module interacts with users via voice and provides navigation guidance, offering a more intuitive interactive experience in conjunction with screen display. It can also announce task status and any anomalies in itself and the operating environment via voice, facilitating timely detection and resolution by medical personnel. The obstacle avoidance module detects and avoids obstacles in real time during movement. Upon detecting an obstacle, it immediately stops or adjusts its path to avoid collisions. It can also identify moving obstacles (such as pedestrians and other robots) and predict their trajectories. This is primarily achieved using sensors such as LiDAR, ultrasonic sensors, infrared sensors, and cameras. The positioning module determines the robot's position in real time using indoor positioning technology, matching the real-time positioning data with a pre-built map to ensure navigation accuracy. It can also automatically calibrate its position when there is a large positioning deviation. The task management module receives and executes user tasks, supporting task reception via voice commands, touchscreen, or a mobile app.

[0061] Furthermore, the mobile medical workstation includes a mobile terminal device, a data entry module, a wireless communication module, a battery management module, and a disinfection module: the mobile terminal device supports mobile diagnosis and treatment by medical staff in wards; the data entry module records patient treatment data, including medical records, examination results, and medication records; the wireless communication module synchronizes data with the hospital information system; the battery management module manages the power of the mobile terminal device and supports long-term operation; the disinfection module regularly disinfects the mobile terminal device to prevent cross-infection; the mobile terminal device includes a touch screen, keyboard, and barcode scanner for convenient data input and retrieval by medical staff; the data entry module supports voice input and handwriting input to improve data entry efficiency; the wireless communication module supports Wi-Fi, Bluetooth, and 5G communication to ensure data transmission stability and real-time performance; the battery management module supports fast charging and low-power modes to extend the device's usage time; and the disinfection module uses ultraviolet disinfection or spray disinfection technology to ensure the device's hygiene and safety.

[0062] Furthermore, the intelligent interactive rehabilitation system includes an intelligent interactive rehabilitation wall system, an intelligent interactive rehabilitation floor system, and an intelligent interactive rehabilitation screen system. The intelligent interactive rehabilitation wall system is used to assist patients in rehabilitation training through interactive games on the wall; the intelligent interactive rehabilitation floor system is used to assist patients in rehabilitation training through interactive games on the floor; and the intelligent interactive rehabilitation screen system is used to assist patients in psychological and physiological rehabilitation through interactive content on the screen.

[0063] The intelligent interactive rehabilitation wall system and intelligent interactive rehabilitation floor system include: an interactive game module for assisting patients in rehabilitation training by projecting interactive games onto the wall or floor; a motion capture module for capturing patients' movements in real time and providing feedback on training effects; and a personalized training module for customizing training content according to patients' rehabilitation needs. The intelligent interactive rehabilitation wall system uses devices such as touch screens and motion sensors, allowing patients to interact with the system through touch operations or body movements to complete rehabilitation training tasks. The intelligent interactive rehabilitation floor system uses devices such as pressure-sensitive floor tiles and projectors to create interactive training scenes projected onto the floor. Patients interact with the scenes while walking, standing, etc., and the system provides feedback on training effects based on the patient's movements.

[0064] The intelligent interactive rehabilitation screen system includes: a screen display module for displaying interactive content; a psychological rehabilitation module for assisting patients in psychological rehabilitation through screen content; and a physiological rehabilitation module for assisting patients in physiological rehabilitation through screen content. The intelligent interactive screen system uses an e-ink screen or an LCD screen, has image recognition and touch functions, can automatically adjust the screen brightness according to the ambient light, has high definition and low power consumption when displaying decorative content, and can clearly display relevant information when switching to the medical function interface.

[0065] The rehabilitation karaoke system includes: a music playback module for providing patients with a variety of music options; an interaction module for supporting patients to conduct rehabilitation training through singing or rhythmic interaction; and an effect evaluation module for recording patients' participation and evaluating rehabilitation effects. The music software of the rehabilitation karaoke system recommends personalized rehabilitation music tracks based on the patient's condition, rehabilitation stage, and personal preferences, and has a music therapy effect evaluation function.

[0066] Furthermore, the functional rehabilitation evaluation system includes a data acquisition module, an analysis module, and a personalized suggestion module. The data acquisition module is used to collect the patient's rehabilitation training data; the analysis module is used to analyze the collected data and generate a rehabilitation evaluation report; and the personalized suggestion module is used to provide personalized rehabilitation suggestions based on the analysis results. The functional rehabilitation evaluation system uses various sensors, including but not limited to accelerometers, pressure sensors, and electromyography (EMG) sensors, to collect data on the patient's limb movements and muscle strength during rehabilitation training, and uses professional rehabilitation assessment models and algorithms to quantitatively evaluate the patient's rehabilitation effects.

[0067] Furthermore, the intelligent thermal imaging epidemic prevention system includes a thermal imaging module, an anomaly recognition module, and a data recording module. The thermal imaging module, used for real-time monitoring of body temperature in wards, is the core component of the system. It employs infrared thermal imaging technology, measuring human surface temperature without contact, with a measurement accuracy of ±0.3℃, meeting medical-grade temperature measurement requirements. It can also support simultaneous monitoring of multiple people's temperatures, making it suitable for multi-person scenarios such as wards and corridors. The anomaly recognition module, used to identify individuals with abnormal body temperatures and issue alarms, is the core of the system's intelligent analysis. Medical staff can define a body temperature threshold (e.g., 37.3℃) before using the system; exceeding the threshold is considered abnormal, triggering different levels of alarms (e.g., sound alarms, pop-up notifications, SMS notifications) based on the severity of the anomaly, and recording the activity trajectory of individuals with abnormalities in real time for subsequent investigation and handling. The data recording module, used to record body temperature monitoring data and generate reports, is the core of the system's data management. It can also store body temperature data, thermal imaging images, and anomaly records to a local server or cloud, and categorize them for easy retrieval and analysis. Furthermore, data can be exported to generate reports when needed.

[0068] Furthermore, the intelligent item management cabinet includes an item storage module, an automated storage and retrieval module, and an automated storage and retrieval module. The item storage module is used to store medicines, medical devices, and other items; the automated storage and retrieval module is used to automatically store and retrieve items according to instructions; and the inventory management module is used to track the inventory status of items in real time. The intelligent item management cabinet uses radio frequency identification technology and automated storage and retrieval equipment, enabling automatic identification of item information, rapid storage, and accurate retrieval. It also has an inventory warning function, sending a replenishment reminder to the central control system when the item inventory falls below a set threshold.

[0069] Furthermore, the laboratory includes rapid testing equipment, a laboratory analysis module, and a data synchronization module. The rapid testing equipment supports rapid testing within the ward; the laboratory analysis module analyzes the test data and generates reports; and the data synchronization module synchronizes data with the hospital information system. The laboratory is equipped with conventional testing equipment such as a blood routine analyzer, a urine routine analyzer, and a biochemical analyzer. This equipment features automated sample processing and data analysis functions and can transmit test results to the central control system in real time via a communication interface.

[0070] Example 2: A method for operating a smart ward system

[0071] In the smart ward system described in this invention, the intelligent care system, intelligent infusion management system, robot intelligent guidance system, logistics system, mobile medical workstation, rehabilitation karaoke system, intelligent interactive rehabilitation system, functional rehabilitation evaluation system, intelligent thermal imaging epidemic prevention system, intelligent item management cabinet, and laboratory can operate independently or simultaneously. Data from each system can be simultaneously transmitted to the cloud for processing. The following describes the operation methods of each system:

[0072] (1) Intelligent care system

[0073] The system collects patients' physiological data in real time via smart bracelets and other devices, transmitting it to a central control unit. The central control unit analyzes the received data, identifies anomalies, and generates health reports. If an anomaly is detected, the central control unit pushes the information to the healthcare provider, who then takes appropriate action based on the alert. Healthcare professionals can also view patients' health reports and develop personalized care plans through their own devices. Patients can understand their own health status and adjust their lifestyles according to system suggestions. This system is a valuable tool for both healthcare professionals and patients to understand the patient's condition and physical state. Once patients learn how to observe these results, the frequency of doctor-patient communication can be reduced, thus minimizing doctor-patient conflicts.

[0074] (2) Intelligent Infusion Management System

[0075] The system collects infusion data in real time from the patient's end and transmits it to the central monitoring terminal. The central monitoring terminal analyzes the data, generates reports, and handles abnormal alarms. Medical staff can view the infusion status and handle abnormalities through a multi-terminal monitoring and management terminal. Patients or their families can view the infusion progress and precautions through the patient's end. The system records all infusion data and generates reports, supporting data sharing and subsequent analysis. The intelligent infusion management system enables full-process monitoring and intelligent management of the infusion process, significantly improving infusion safety and medical efficiency. It also monitors the infusion status of hospitalized patients in real time, reducing the workload of medical staff.

[0076] (3) Robot intelligent guidance and logistics system

[0077] Users issue tasks via voice or touchscreen (e.g., "deliver medication to ward 301"). The path planning module generates the optimal path based on task requirements and the environmental map. The robot moves along the planned path, and the obstacle avoidance module detects and avoids obstacles in real time. The voice interaction module provides navigation guidance and task status feedback. After the robot reaches the target location, the material storage module completes the delivery or guidance task. The task management module records the task execution status and synchronizes it to the central management system. For many repetitive tasks in clinical work, this can be achieved through...

[0078] (4) Mobile medical workstation

[0079] Healthcare staff log into the mobile medical workstation, and the system automatically synchronizes patients' basic information and treatment tasks. Tasks include ward rounds, infusion monitoring, and medical record updates. Healthcare staff bring the mobile medical workstation into the ward and view patients' electronic medical records, examination results, and medication records through their mobile devices. The data entry module records patients' real-time treatment data (such as vital signs, symptom descriptions, and treatment plans). The system supports real-time transmission of patient treatment data and imaging materials, facilitating remote collaboration. When abnormal patient conditions are detected (such as abnormal vital signs or medication reactions), the system automatically triggers an alarm and alerts healthcare staff. The system automatically records all operations and data during the treatment process and generates a task report. The report includes treatment time, operator, treatment results, and abnormal records. The mobile medical workstation significantly improves the efficiency of healthcare staff's treatment and the quality of patient care, while ensuring data security and equipment hygiene.

[0080] (5) Rehabilitation Karaoke System

[0081] Patients or healthcare professionals activate the Rehabilitation Karaoke System by logging in via identity verification (e.g., card swiping, QR code scanning, or facial recognition). The system automatically loads the patient's rehabilitation plan and historical data. Patients select their preferred music genre or rehabilitation-specific music through the user interface module. The system can also recommend suitable music for rehabilitation. Patients sing through the microphone, and the interactive module analyzes their participation in real time (e.g., pitch, rhythm, reaction speed). The system dynamically adjusts the training difficulty based on the patient's performance, ensuring the training is both fun and challenging. The system provides real-time feedback through screen displays or voice prompts. For areas where performance is lacking, the system offers improvement suggestions. The effectiveness evaluation module records the patient's training data (e.g., participation time, singing score, game results). The system generates a rehabilitation effectiveness report, including progress trends, current status, and improvement suggestions. Healthcare professionals adjust the patient's rehabilitation plan based on the effectiveness evaluation report (e.g., increasing training frequency, changing music genres). The Rehabilitation Karaoke System, through music and gamified interaction, increases patient participation, stimulates interest, and significantly improves rehabilitation outcomes and patient satisfaction.

[0082] (6) Intelligent Interactive Rehabilitation System

[0083] Patients or medical staff activate the intelligent interactive rehabilitation system by logging in via identity verification (e.g., card swiping, QR code scanning, or facial recognition). Patients then select suitable rehabilitation training content (e.g., wall-mounted interactive games, floor-mounted interactive games, and screen-based interactive content) through the user interface module. The system recommends appropriate training content based on the patient's rehabilitation needs (e.g., upper limb training, lower limb training, and balance training). Specifically, the wall-mounted interactive system allows patients to train through interactive games projected onto the wall using touch or movement (e.g., hitting virtual balloons, catching falling fruit). The floor-mounted interactive system allows patients to train through interactive games projected onto the floor using stepping or jumping (e.g., avoiding obstacles, dancing to a rhythm). The screen-based interactive system allows patients to train through interactive content projected onto the screen using touch or voice (e.g., psychological counseling games, cognitive training). The system provides real-time feedback through screen displays or voice prompts. For areas where performance is lacking, the system provides improvement suggestions. The data acquisition module records the patient's training data in real time (e.g., range of motion, reaction time, and completion rate). The data analysis module analyzes the collected data and generates a rehabilitation effect report (e.g., progress trend, current status, and improvement suggestions). Medical staff can also adjust patients' rehabilitation plans based on the effectiveness evaluation reports (such as increasing training intensity or changing training content). The intelligent interactive rehabilitation system can provide patients with a fun and personalized rehabilitation training experience, significantly improving rehabilitation outcomes and patient satisfaction.

[0084] (7) Functional Rehabilitation Evaluation System

[0085] Healthcare workers or patients activate the functional rehabilitation assessment system and log in after identity verification. The system automatically loads the patient's rehabilitation plan and historical data. The patient performs rehabilitation training (such as strength training, balance training, and flexibility training). The data acquisition module collects training data in real time (such as range of motion, strength, balance, and reaction time) through sensors, cameras, or wearable devices. The collected data is transmitted to the data analysis module via wireless networks (such as Wi-Fi and Bluetooth). The data analysis module performs in-depth analysis of the collected data to assess the patient's rehabilitation progress, such as the accuracy and completion of movements, and the improvement in strength, balance, and flexibility. An evaluation report is then generated.

[0086] (8) Intelligent thermal imaging epidemic prevention system

[0087] The thermal imaging module scans the body temperature of people in the ward in real time and transmits the data to the anomaly detection module. The anomaly detection module analyzes the temperature data, identifies individuals with abnormal temperatures, and triggers an alarm. The data logging module stores temperature data, anomaly records, and thermal imaging images, and generates reports. Medical staff promptly handle abnormal situations (such as isolation or retesting) based on alarm information. They can also view temperature trends and analysis reports through the data logging module to optimize epidemic prevention measures.

[0088] (9) Intelligent Item Management Cabinet

[0089] Medical staff or patients log in to the smart supplies management cabinet by scanning a QR code. The system automatically loads inventory data and access permissions. Medical staff place items into designated storage compartments, and the system automatically identifies the item type and records inventory information. For items requiring temperature control, the system automatically activates the temperature control module (e.g., refrigerated medicines). Medical staff request to retrieve items by scanning a QR code, swiping a card, or facial recognition. The system automatically opens the corresponding storage compartment and updates the inventory status. The inventory management module tracks the inventory status of items in real time (e.g., quantity, location, expiration date). When inventory is insufficient or items are nearing their expiration date, the system automatically issues reminders (e.g., pop-up notifications, SMS notifications). The temperature control module monitors the temperature of the storage compartments in real time to ensure that the storage requirements of the items are met. In case of abnormal temperature, the system automatically issues an alarm and activates backup temperature control equipment. Medical staff view inventory status, access records, and reminder information through the user interface module. Operation is supported via touchscreen or mobile app. The smart supplies management cabinet enables efficient, accurate, and secure management of items, significantly improving hospital operational efficiency and the quality of supplies management.

[0090] (10) Laboratory

[0091] Medical staff collect patient samples (such as blood and urine) and send them to the laboratory. The sample management module records the basic information of the samples (such as patient ID, sample type, and collection time). Laboratory personnel use rapid testing equipment to test the samples (such as complete blood count, complete urine count, and biochemical analysis). The testing equipment automatically generates raw test data. The experimental analysis module analyzes the raw test data, generates test reports, and marks and interprets abnormal results. The test report generation module generates detailed test reports based on the analysis results, which are then issued after verification.

[0092] This invention proposes a multifunctional, comprehensive smart ward system, comprising an intelligent care system, an intelligent infusion management system, a robot intelligent guidance system, a logistics system, a mobile medical workstation, a rehabilitation karaoke system, an intelligent interactive rehabilitation system, a functional rehabilitation evaluation system, an intelligent thermal imaging epidemic prevention system, an intelligent supplies management cabinet, and a laboratory. The intelligent care system monitors patients' vital signs in real time and provides alarms for abnormalities. The smart ward system comprehensively covers clinical problems, effectively improves hospital informatization, streamlines daily patient monitoring processes, frees up medical staff, and improves work efficiency and emergency response capabilities. The mobile medical workstation allows medical staff to conduct diagnosis and data recording anytime, anywhere, while the intelligent interactive rehabilitation system uses gamification and interactivity to help patients with rehabilitation training, improving rehabilitation outcomes. The application of this smart ward system has achieved good clinical results and has received unanimous praise from medical staff and patients.

[0093] Although the present invention has been described in detail above with general descriptions and specific embodiments, modifications or improvements can be made to it, which will be obvious to those skilled in the art. Therefore, all such modifications or improvements made without departing from the spirit of the present invention fall within the scope of protection claimed by the present invention.

Claims

1. A multifunctional, fully-covered smart ward system, characterized in that, include: The system includes an intelligent care system, an intelligent infusion management system, a robot intelligent guidance system, a logistics system, a mobile medical workstation, a rehabilitation karaoke system, an intelligent interactive rehabilitation system, a functional rehabilitation evaluation system, an intelligent thermal imaging epidemic prevention system, an intelligent item management cabinet, and a laboratory. The intelligent care system is used to monitor the patient's vital signs in real time and provide abnormal alarms. The aforementioned intelligent infusion management system is used to monitor the infusion progress, automatically adjust the infusion rate, and record infusion data; The aforementioned robot intelligent guidance and logistics system is used to provide navigation services for patients, their families, or medical staff, and is also used for automated delivery of medicines, medical devices, and other supplies. The mobile medical workstation is used to support medical staff in conducting mobile diagnosis and treatment and recording data in the ward. The aforementioned rehabilitation karaoke system is used to assist patients in their rehabilitation through music therapy. The aforementioned intelligent interactive rehabilitation system is used to assist patients in rehabilitation training through interactive games; The aforementioned functional rehabilitation evaluation system is used to assess the patient's rehabilitation progress and provide personalized rehabilitation suggestions; The aforementioned intelligent thermal imaging epidemic prevention system is used to monitor the body temperature of people in the ward in real time and identify abnormalities; The aforementioned intelligent item management cabinet is used for the automated management of the storage and retrieval of medicines, medical devices and other items; The laboratory is used to support rapid testing and experimental analysis within the ward.

2. The smart ward system according to claim 1, characterized in that, The intelligent care system includes a medical care terminal, a patient terminal, and a central control terminal. The patient terminal is used to collect the patient's heart rate, blood pressure, and blood oxygen saturation data in real time. The central control terminal is used to analyze the collected data and generate health reports. The medical care terminal is used to issue alarms to medical staff when abnormal data is detected.

3. The smart ward system according to claim 1, characterized in that, The intelligent infusion management system includes a patient terminal, a central monitoring terminal, and a multi-terminal monitoring and management terminal. The patient terminal is used to monitor the patient's infusion status in real time, including infusion progress, remaining time, and abnormal alarms. The central monitoring terminal is used to centrally manage the infusion data of multiple patient terminals and provide real-time monitoring and data analysis functions. The multi-terminal monitoring and management terminal is used to support medical staff to remotely monitor and manage the infusion process through mobile terminals or fixed terminals. The patient terminal includes an infusion progress monitoring module, an abnormality alarm module, and a data display module. The infusion progress monitoring module is used to collect infusion progress data in real time; the abnormality alarm module is used to issue an alarm when an infusion abnormality is detected; and the data display module is used to display the infusion progress, remaining time, and precautions to the patient or their family. The central monitoring terminal includes a data receiving module, a data analysis module, and an alarm management module. The data receiving module is used to receive infusion data from multiple patient terminals. The data analysis module is used to analyze the received data and generate infusion reports. The alarm management module is used to centrally process abnormal alarms from patient terminals and notify medical staff. The multi-terminal monitoring and management terminal includes a remote monitoring module, a remote control module, and a data synchronization module. The remote monitoring module allows medical staff to view the infusion status in real time via mobile or fixed terminals. The remote control module allows medical staff to remotely adjust infusion parameters. The data synchronization module synchronizes data with the central monitoring terminal to ensure information consistency.

4. The smart ward system according to claim 1, characterized in that, The robot intelligent guidance system includes a material storage module, a path planning module, a voice interaction module, an obstacle avoidance module, a positioning module, and a task management module. The material storage module is used to securely store and deliver items; the path planning module is used to plan the optimal path based on user needs; the voice interaction module is used to interact with the user via voice and provide navigation guidance; the obstacle avoidance module is used to detect and avoid obstacles in real time during movement; the positioning module is used to determine the robot's location in real time using indoor positioning technology; and the task management module is used to receive and execute the user's guidance tasks.

5. The smart ward system according to claim 1, characterized in that, The mobile medical workstation includes a mobile terminal device, a data entry module, a wireless communication module, a battery management module, and a disinfection module. The mobile terminal device supports mobile medical staff in conducting treatments within wards. The data entry module records patient treatment data, including medical records, examination results, and medication records. The wireless communication module synchronizes data with the hospital information system. The battery management module manages the mobile terminal device's power and supports extended operation. The disinfection module regularly disinfects the mobile terminal device to prevent cross-infection. The mobile terminal device includes a touchscreen, keyboard, and barcode scanner for convenient data input and retrieval by medical staff; the data entry module supports voice and handwriting input to improve data entry efficiency; the wireless communication module supports Wi-Fi, Bluetooth, and 5G communication to ensure data transmission stability and real-time performance; the battery management module supports fast charging and low-power modes to extend device usage time; and the disinfection module uses ultraviolet disinfection or spray disinfection technology to ensure the hygiene and safety of the device.

6. The smart ward system as described in claim 1, characterized in that, The intelligent interactive rehabilitation system includes an intelligent interactive rehabilitation wall system, an intelligent interactive rehabilitation floor system, and an intelligent interactive rehabilitation screen system. The intelligent interactive rehabilitation wall system is used to assist patients in rehabilitation training through interactive wall games. The aforementioned intelligent interactive rehabilitation floor system is used to assist patients in rehabilitation training through interactive floor games; The aforementioned intelligent interactive rehabilitation screen system is used to assist patients in psychological and physiological rehabilitation through interactive screen content; The intelligent interactive rehabilitation wall system and intelligent interactive rehabilitation floor system include: an interactive game module for projecting interactive games onto the wall or floor to assist patients in rehabilitation training; a motion capture module for capturing patients' movements in real time and providing feedback on training effects; and a personalized training module for customizing training content according to patients' rehabilitation needs. The intelligent interactive rehabilitation screen system includes: a screen display module for displaying interactive content; a psychological rehabilitation module for assisting patients in psychological rehabilitation through screen content; and a physiological rehabilitation module for assisting patients in physiological rehabilitation through screen content. The rehabilitation karaoke system includes: a music playback module for providing various types of music for patients to choose from; an interactive module for supporting patients in rehabilitation training through singing or rhythm interaction; and an effect evaluation module for recording patients' participation and evaluating rehabilitation effects.

7. The smart ward system according to claim 1, characterized in that, The functional rehabilitation evaluation system includes a data acquisition module, an analysis module, and a personalized suggestion module. The data acquisition module is used to collect the patient's rehabilitation training data. The analysis module is used to analyze the collected data and generate a rehabilitation evaluation report; the personalized suggestion module is used to provide personalized rehabilitation suggestions based on the analysis results.

8. The smart ward system according to claim 1, characterized in that, The intelligent thermal imaging epidemic prevention system includes a thermal imaging module, an anomaly recognition module, and a data recording module. The thermal imaging module is used to monitor the body temperature of people in the ward in real time; the anomaly recognition module is used to identify people with abnormal body temperatures and issue an alarm; and the data recording module is used to record body temperature monitoring data and generate reports.

9. The smart ward system according to claim 1, characterized in that, The intelligent item management cabinet includes an item storage module, an item storage module, and an automated storage and retrieval module. The item storage module is used to store medicines, medical devices, and other items. The automated storage and retrieval module is used to automatically store and retrieve items according to instructions. The inventory management module is used to track the inventory status of items in real time.

10. The smart ward system according to claim 1, characterized in that, The laboratory includes rapid testing equipment, an experimental analysis module, and a data synchronization module. The rapid testing equipment is used to support rapid testing within the wards; the experimental analysis module is used to analyze the test data and generate reports; and the data synchronization module is used to synchronize data with the hospital information system.