Active health building embedded basic medical facility equipment and usage methods
By embedding basic medical facilities in buildings, real-time monitoring of personal health information and medical and health services can be achieved, solving the problem of lack of perception and interaction of health-related information in buildings, providing intelligent and digital medical and health services, and improving the functional integration and safety of equipment.
Patent Information
- Application Number
- CN202410976699.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Priority Date
- 2024-04-07
- Filing Date
- 2024-07-21
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2044-07-21
AI Technical Summary
Existing buildings lack intelligent, digital, and information-based service facilities that can perceive and interact with health-related information of people within the buildings, making it difficult to achieve real-time monitoring of personal health information and infrastructure support for medical and health services.
Active health building embedded basic medical facility equipment is used, including servers, embedded interfaces and unified conversion adapters. By embedding them in the wall, it can realize the recognition and conversion of multiple interfaces, integrate biological signal collection, environmental monitoring, medical information transmission and other functions, and support health passport systems and public health monitoring.
It realizes the informationization, digitization and intelligent services of medical and health care in buildings, expands the perception and interaction functions of health-related information, provides perception, communication, computing, storage, security, AI, blockchain and other capabilities, and improves the slimness and safety of equipment in buildings.
Smart Images

Figure CN118969271B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the fields of building and medical equipment, rehabilitation aids and health equipment, and in particular to embedded basic medical facility equipment for active health buildings. Background Art
[0002] With the development of modern building technology, building facilities are becoming increasingly intelligent. Some buildings utilize low-carbon, environmentally friendly materials, achieving energy conservation and emission reduction throughout production, installation, and operation. However, most existing building technologies focus on technical improvements in the building's craftsmanship, production, and processing, such as the use of thermal insulation with improved thermal insulation properties and intelligent sensors for temperature control. However, few buildings can perceive and interact with health-related information within the building, and they lack the infrastructure capabilities required for healthcare informationization, digitization, and intelligent services. Summary of the Invention
[0003] To address the aforementioned issue of few buildings being able to perceive and interact with health-related information within the building and providing infrastructure functions for medical and health informationization, digitization, and intelligent services, the present invention proposes an embedded basic medical facility device for active health buildings and a method for use thereof, comprising:
[0004] A server, wherein the server is located in a building at the local end;
[0005] An embedded interface is installed on a building by being embedded in a wall. The embedded interface includes multiple types of interfaces and is connected to a server for communication;
[0006] The unified conversion adapter includes a physical conversion unit and a protocol conversion unit. The physical conversion unit is connected to the embedded interface and is used to convert the physical interface into a unified active healthy building infrastructure interface. The protocol conversion unit is used to convert signals related to the embedded interface into a protocol corresponding to the unified active healthy building infrastructure interface.
[0007] Furthermore, the embedded interface includes:
[0008] An embedded portion embedded in the wall, a first cavity and a second cavity located on the embedded portion, and a plurality of openings located on an end surface of the embedded portion;
[0009] The multiple openings are respectively equipped with the same or different interface sockets.
[0010] Furthermore, a physical conversion unit is installed in the first cavity, and a protocol conversion adapter is installed in the second cavity.
[0011] Furthermore, the server side is used to identify the information transmitted from the interface side, and then encrypt it in a predetermined manner and store it locally or transmit it to an external server.
[0012] Furthermore, the embedded interface can adapt to different types of terminal interfaces, identify the interface type corresponding to the terminal, and uniformly convert the terminal interface into the interface and protocol corresponding to the active healthy building infrastructure, identify user identity information, and transmit user data.
[0013] Furthermore, the user data includes: personal health information, information on interactions between people, machines and objects, and information from medical and health institutions.
[0014] Furthermore, the personal health information includes personal physiological, psychological, behavioral, temporal, spatial, environmental, cultural information and information related to diet, exercise, disease symptoms, and medication.
[0015] Furthermore, the information from medical and health institutions includes: diagnosis and identification of diseases and health conditions by medical and health institutions or medical and health equipment, examination and test results, prescription records, and medical expense bills from insurance companies.
[0016] Furthermore, it also includes: environmental monitoring information from environmental protection agencies.
[0017] Furthermore, the environmental monitoring information of the environmental protection agency includes: water, weather, air composition, environmental pollution, radioactivity, lighting information and noise information.
[0018] Furthermore, the embedded interface includes:
[0019] Indoor environmental quality monitoring and adjustment interface: used to monitor and adjust indoor temperature, humidity, VOC (volatile gas) levels and other environmental elements in real time.
[0020] Bio-signal acquisition interface: used for integrated acquisition of multi-modal bio-signals, collecting physiological indicators of residents' heart rate, blood pressure, and body temperature in real time.
[0021] Environmental and physiological data fusion interface: used to combine environmental perception with personal physiological data and provide an environmental and physiological fusion data interface.
[0022] Light environment adjustment interface: used to collect light environment information and access light environment related data interface.
[0023] Intelligent water quality management interface: used for real-time monitoring and purification of water quality, and provides a water quality data interface.
[0024] Health behavior monitoring and emergency response interface: used for health behavior monitoring and initiating emergency response in emergencies.
[0025] Basic medical facility interface: used to provide edge integration and control interface, and provide data perception, communication and storage support for various medical and health equipment in the building.
[0026] Health Passport System Interface: Used to provide access and authorization of health-related data interfaces based on blockchain technology.
[0027] Health passport access rights management interface: used to dynamically manage access rights to health passport data and provide an access rights management interface.
[0028] Public health monitoring integrated system interface: used to integrate personal health data with the public health monitoring system and provide a city-level disease prevention and control public service interface.
[0029] In a second aspect, a method for using an embedded basic medical facility equipment in an active health building is provided, including:
[0030] Use the server to send information from remote medical and health institutions to the embedded interface, or receive personal information sent from the embedded interface;
[0031] The embedded interface is converted into a unified active healthy building infrastructure interface using a unified conversion adapter, and the signals related to the embedded interface are converted into a protocol corresponding to the unified active healthy building infrastructure interface.
[0032] Beneficial effects:
[0033] Through the active healthy building embedded basic medical facility equipment of the present invention, it is possible to insert and connect various medical devices and health equipment in the building, expand the building's perception and interaction functions for health-related information of people in the building, and possess basic functions in medical and health informationization, digitization, and intelligent services. The healthy building embedded basic medical facility equipment proposed by the present invention provides "perception, communication, computing, storage, security, AI, blockchain" and other capabilities for other connected devices. Equipment in various types of near-human space buildings can share the "perception, communication, computing, storage, security, AI, blockchain" functions by docking with the active healthy building embedded basic medical facility equipment, which can achieve the effects of weight loss, safety, and efficiency improvement. BRIEF DESCRIPTION OF THE DRAWINGS
[0034] Figure 1 : Schematic diagram of embedded basic medical facilities equipment in active health buildings;
[0035] Figure 2 : PHR information framework diagram;
[0036] Figure 3 : Attribution information framework diagram;
[0037] Figure 4 : Natural environment information framework diagram;
[0038] Figure 5 : Bioinformatics framework diagram;
[0039] Figure 6 : Lifestyle framework diagram;
[0040] Figure 7 : Health care service framework diagram;
[0041] Figure 8 : Medical and health information framework diagram;
[0042] Figure 9 : Result information framework diagram;
[0043] Figure 10 : A method for using embedded basic medical facility equipment in active health buildings;
[0044] Figure 11 : Physical interface diagram;
[0045] Figure 12 : Protocol conversion interface diagram.
[0046] Logo Description:
[0047] 100, server; 200, embedded interface; 201-208, interface sockets; 401-404, computing equipment; DETAILED DESCRIPTION
[0048] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present invention.
[0049] like Figure 1 As shown, the present invention proposes an active health building embedded basic medical facility equipment 10, comprising:
[0050] Server 100, the server is located in a local building;
[0051] An embedded interface 200 is installed on a building by being embedded in a wall. The embedded interface includes various types of interfaces and is connected to a server for communication.
[0052] The unified conversion adapter includes a physical conversion unit and a protocol conversion unit. The physical conversion unit is connected to the embedded interface and is used to convert the physical interface into a unified active healthy building infrastructure interface. The protocol conversion unit is used to convert the signals related to the embedded interface into the protocol corresponding to the unified active healthy building infrastructure interface. The unified conversion adapter can realize the recognition of different types of devices after they are inserted into the embedded interface, such as Figure 1 The computer's USB port can recognize inserted devices because the USB device sends an identification code to the computer. This identification code allows the computer to identify the device's type and function, and to load drivers and allocate resources for the device. The computer also maintains a list of USB devices. When a device is detected, it scans this list to determine whether the device has been used on this computer before. If so, the computer automatically loads the device's driver and configuration file. If it is a new device, the computer prompts you to install the corresponding driver. Also included: computing devices 401-404.
[0053] Active healthy building infrastructure provides a variety of pluggable interface converters, each interface converter corresponds to a common type of interface, and the interface converter is responsible for converting various different interfaces into a standard CAN bus. For example, USB to bus card, 232 to bus card, RJ45 to bus card, 485 to bus card, etc. Each converter has a built-in different programmable controller and sets a different "identification code" to assist in identifying the interface type. At the same time, the converter is equipped with an 8-bit jumper switch for configuring the device type. Preferably, each plug interface can correspond to one of the identification codes. For example, RJ45 corresponds to 01, 485 interface corresponds to 02, etc. When the programmable controller sets the identification code to 02, it means that the current connection is the 485 interface. The interface converter needs to convert the 485 interface into the CAN bus. The specific hardware conversion can be performed by setting the conversion circuit according to the relationship between the pins specified in the standard.
[0054] Furthermore, the embedded interface includes:
[0055] An embedded portion embedded in the wall, a first cavity and a second cavity located on the embedded portion, and a plurality of openings located on an end surface of the embedded portion;
[0056] The plurality of openings are respectively installed with the same or different interface sockets 201 - 208 .
[0057] Furthermore, a physical conversion unit is installed in the first cavity, and a protocol conversion adapter is installed in the second cavity. According to one embodiment, the physical conversion unit is a physical converter (adapter): used to convert the physical interface into a unified base interface.
[0058] Furthermore, the server side is used to identify the information transmitted from the interface side, and then encrypt it in a predetermined manner and store it locally or transmit it to an external server.
[0059] Furthermore, the embedded interface can adapt to different types of terminal interfaces, identify the interface type corresponding to the terminal, and uniformly convert the terminal interface into the interface and protocol corresponding to the active healthy building infrastructure, identify user identity information, and transmit user data.
[0060] Furthermore, the user data includes: personal health information, information on interactions between people, machines and objects, and information from medical and health institutions.
[0061] Furthermore, the personal health information includes personal physiological, psychological, behavioral, temporal, spatial, environmental, cultural information and information related to diet, exercise, disease symptoms, and medication.
[0062] Furthermore, the diagnosis and identification of diseases and health conditions, examination and test results, prescription records from medical and health institutions or medical and health equipment, and medical expense bills from insurance companies.
[0063] Furthermore, it also includes: environmental monitoring information from environmental protection agencies.
[0064] Furthermore, the environmental monitoring information of the environmental protection agency includes: water, weather, air composition, environmental pollution, radioactivity, lighting information and noise information.
[0065] Furthermore, the embedded interface includes:
[0066] Indoor environmental quality monitoring and adjustment interface: used to monitor and adjust indoor environmental elements such as temperature, humidity, and VOC levels in real time.
[0067] Bio-signal acquisition interface: used for integrated acquisition of multi-modal bio-signals, collecting the occupants' heart rate, blood pressure, and body temperature physiological indicators in real time.
[0068] Environmental and physiological data fusion interface: used to combine environmental perception with personal physiological data and provide an environmental and physiological fusion data interface.
[0069] Light environment adjustment interface: used to collect light environment information and access light environment related data interface.
[0070] Intelligent water quality management interface: used for real-time monitoring and purification of water quality, and provides a water quality data interface.
[0071] Health behavior monitoring and emergency response interface: used to interface with the health behavior monitoring system and initiate emergency response in emergencies.
[0072] Basic medical facility interface: used to provide edge integration and control interface, and provide data perception, communication and storage support for various medical and health equipment in the building.
[0073] Health Passport System Interface: Used to provide access and authorization of health-related data interfaces based on blockchain technology.
[0074] Health passport access rights management interface: used to dynamically manage access rights to health passport data and provide an access rights management interface.
[0075] Public health monitoring integrated system interface: used to integrate personal health data with the public health monitoring system and provide a city-level disease prevention and control public service interface.
[0076] At the same time, a protocol conversion unit is used to convert the protocol corresponding to the physical interface into the protocol corresponding to the active healthy building infrastructure. The data is identified through the protocol to realize the "device type identification code" function. For example, it can identify whether an electrocardiogram device is inserted or a smart mattress device is inserted.
[0077] The user data is also referred to as a personal health record (PHR) in this application; the PHR is a tool set based on an Internet platform for self-managing personal lifelong health information, also known as a personal health passport. The health passport is owned and managed by the individual, and is authorized to be accessed and managed by other personnel. Some information can be provided to those in need. The health passport provides an integrated and comprehensive health information "folder", including personal physiological, psychological, behavioral, temporal and spatial, environmental, cultural information and information generated by the interaction between people, machines and objects, such as diet, exercise, disease symptoms, health status, medication-related information, and information generated by other institutions, such as disease diagnosis and health identification, examination and test results, prescription records from medical and health institutions, medical expense bills from insurance companies, and environmental monitoring information from environmental protection agencies.
[0078] Based on the PHR data specifications of the health passport, it connects health-related terminal devices, digital devices and their infrastructure in the region, and is an open sharing platform for personal health information perception, interaction and application services authorized by individuals.
[0079] The Health Passport PHR management platform allows individuals to manage their health information independently through the tools provided by the platform, or delegate management to a third party through authorization or agreement. The platform provides real-name authentication, document signing, and document preservation services for medical and health institutions or individuals. Users must complete real-name authentication on the platform. Users simply complete the document preparation process and initiate document signing after confirming its content. The recipient then successfully logs in to the platform and signs the document. Once signed, the platform encrypts and stores the signed document on the blockchain. This technology can be used for authorized contracts between institutions and individuals.
[0080] like Figure 2 The figure shows the health passport PHR information framework, in which health information includes: attribution information, result information and correlation information.
[0081] like Figure 3 As shown in the figure, attribution information includes four categories: environment, biology, lifestyle, and health care services. The natural environment includes four five-level categories: urban and rural spatial environment (macro environment, such as air, water, climate, food chain, etc.), near-human space building environment (meso environment, mainly referring to the sound, light, heat, gas, food storage, etc. in the indoor environment of buildings and the interior environment of vehicles), body space environment (micro environment, such as the breathing environment after wearing a mask, food cooking, etc., the body domain refers to the human body domain), and other natural environment.
[0082] like Figure 3 As shown, the social environment includes six five-level categories: changes in the political system, social and economic development, progress in culture and education, bad customs and habits, harmful ideologies, and other social environments.
[0083] like Figure 4 As shown, this is a six-level directory of natural environment information.
[0084] like Figure 5 As shown, biological information includes three four-level categories: genetic factors, physical factors and psychological factors.
[0085] like Figure 6 As shown, there are two four-level categories of health literacy and bad habits included in the biological information.
[0086] like Figure 7 As shown, health care services include three four-level categories: medical and health services, fitness and wellness services, and other health services.
[0087] like Figure 8 The following table shows the categories of medical and health service information, including primary health care information, continuous health care services, and other specific framework information for medical and health services.
[0088] like Figure 9 As shown, the result information of the secondary category of health information includes two secondary categories: objective detection and subjective detection.
[0089] The active health building embedded basic medical facility equipment of the present invention enables the insertion and connection of various devices within the building, expanding the building's ability to perceive and interact with health-related information of the people within the building, and possessing basic functions in the areas of medical and health informationization, digitization, and intelligent services. The active health building embedded basic medical facility equipment proposed in the present invention provides other connected devices with capabilities such as "perception, communication, computing, storage, security, AI, and blockchain." By connecting and sharing functions with the active health building embedded basic medical facility equipment, various devices within buildings in close-to-human spaces can achieve a slimming effect.
[0090] Second, as Figure 10 As shown, a method for using an active health building embedded basic medical facility equipment is provided, including:
[0091] The server is used to send information from remote medical institutions to the embedded interface, or to receive personal information sent by the embedded interface; the server is linked to the information of the remote medical institution through the network, receives information from the medical institution, and sends it to the embedded interface; or the personal medical information collected by the embedded interface is sent to the remote medical institution through the network.
[0092] The embedded interface is converted into a unified active healthy building infrastructure interface using a unified conversion adapter, and the signals related to the embedded interface are converted into the protocol corresponding to the unified active healthy building infrastructure interface. Figure 11 、 12 As shown, it can be seen that the unified conversion adapter includes a physical conversion unit and a protocol conversion unit; wherein the physical conversion unit includes: an active healthy building infrastructure physical interface conversion module, and the protocol conversion unit includes: an active healthy building infrastructure protocol conversion module.
[0093] Among them, the active healthy building infrastructure protocol conversion module will convert multiple protocols (such as protocols A, B, and C) into protocol O that can be accepted, that is, processed, by the active healthy building infrastructure.
[0094] For example, a temperature sensor in a room has the function of collecting human body temperature at a specified time. After collecting the human body temperature at the specified time, the temperature information, time information, device ID number, and room ID number are packaged and sent to the active healthy building infrastructure protocol conversion module according to the specified protocol A. The process includes: first, the temperature information, time information, device ID number, and room ID number are combined into the information portion of protocol A, and then an identification code that distinguishes it from other sensors is added. The information is then sent to the active healthy building infrastructure physical interface conversion module via a Bluetooth device. After the active healthy building infrastructure physical interface conversion module receives a radio signal using a Bluetooth antenna, it performs physical layer recognition on the radio signal and identifies it as a signal composed of protocol A. The identification code is then stripped from the radio signal and sent to the active healthy building infrastructure protocol conversion module. The active healthy building infrastructure protocol conversion module strips the information portion of protocol A and then adds the packet header of protocol O before the temperature information and time information to form a data stream that complies with protocol O. The data stream that complies with protocol O is then sent to the active healthy building infrastructure via the physical interface transmission bus. After receiving the data stream from the physical interface transmission bus, the active health building infrastructure sends it to the server, which then sends the data stream to a remote medical institution. In one embodiment, the protocol O may include: health passport PHR identification information, result information and correlation information, time information, device ID number and room ID number, current parameter type, and parameter value information; this is not limited to the above, and the health passport PHR identification information may be the PHR ID number or flag number;
[0095] After receiving a data stream from a local server, a server at a remote medical or health institution, acting as a health passport server, verifies the name, physical address, and other information of the target client, pre-stored on the remote medical institution's server based on the IP and MAC addresses contained in the data stream. The information collected by the sensors in the data stream is then stored in the corresponding database based on the client's name and physical address. For example, the collected temperature and time of a particular person's body are stored below the name and physical address of the corresponding client. When viewing the corresponding client's name and physical address, the user's body temperature at a specific time is displayed. Both body temperature and physical address information are relevant to the health passport. The health passport server can analyze the attribution information and result information, such as body temperature and physical address information, based on this body temperature information. Based on this body temperature information, the health status of the user using this active health embedded basic medical device can be analyzed and promptly fed back to the attending physician, enabling real-time monitoring of the user's health status, i.e., real-time monitoring of the personal health record (PHR).
[0096] Although the above describes the illustrative specific embodiments of the present invention to facilitate understanding of the present invention by those skilled in the art, and it should be clear that the present invention is not limited to the scope of the specific embodiments, it is obvious to those skilled in the art that as long as various changes are within the spirit and scope of the present invention as defined and determined by the appended claims, these changes are obvious, and all inventions and creations utilizing the concepts of the present invention are protected.
Claims
1. An active health building embedded basic medical facility equipment, characterized by: include: A server, wherein the server is located in a building at the local end; An embedded interface is installed on a building by being embedded in a wall. The embedded interface includes multiple types of interfaces and is connected to a server for communication; A unified conversion adapter, comprising a physical conversion unit and a protocol conversion unit, wherein the physical conversion unit is connected to the embedded interface and is used to convert the physical interface into a unified active healthy building infrastructure interface, and the protocol conversion unit is used to convert signals related to the embedded interface into a protocol corresponding to the unified active healthy building infrastructure interface; An embedded portion embedded in the wall, a first cavity and a second cavity located on the embedded portion, and a plurality of openings located on an end surface of the embedded portion; A physical conversion unit is installed in the first cavity, and a protocol conversion adapter is installed in the second cavity; The unified conversion adapter includes a physical conversion unit and a protocol conversion unit; wherein the physical conversion unit includes: an active healthy building infrastructure physical interface conversion module, and the protocol conversion unit includes: an active healthy building infrastructure protocol conversion module; Among them, the active healthy building infrastructure protocol conversion module converts multiple protocols, including protocols A, B, and C, into protocol O that can be accepted, that is, processed, by the active healthy building infrastructure; The temperature sensor in the room has the function of collecting human body temperature at a specified time. After collecting the human body temperature at the specified time, the human body temperature information, time information, device ID number and room ID number are packaged and sent to the active healthy building infrastructure protocol conversion module according to the specified protocol A. The process includes: first, human body temperature information, time information, device ID number and room ID number are combined into the information part of protocol A, and then an identification code that is different from other sensors is added and sent to the active healthy building infrastructure physical interface conversion module through the Bluetooth device; the active healthy building infrastructure physical interface conversion module receives the radio signal using the Bluetooth antenna, and then performs physical layer recognition on the radio signal to identify the radio signal as a signal composed of protocol A; then, the radio signal is stripped of the identification code and sent to the active healthy building infrastructure protocol conversion module; the active healthy building infrastructure protocol conversion module converts the identified information part of protocol A into the information part of protocol A. The data stream is separated and then loaded into the header of protocol O in front of the temperature information and time information to form a data stream that satisfies protocol O; the data stream that satisfies protocol O is then sent to the active healthy building infrastructure through the physical interface transmission bus; the active healthy building infrastructure receives the data stream from the physical interface transmission bus and then sends it to the server; the data stream is sent to the remote medical institution through the server; the protocol O includes: health passport PHR identification information, result information and correlation information, time information, device ID number and room ID number, current parameter type, parameter value information; the health passport PHR identification information is the PHR ID number or flag number; After receiving the data stream from the local server, the server of the remote medical or health institution, acting as the health passport service end, confirms the name and physical address information of the target client pre-stored in the server of the remote medical institution based on the IP address and MAC address contained in the data stream. Then, based on the name and physical address information of the client object, the information collected by the sensor in the data stream is stored in the corresponding database. The collected human body temperature information and time information are stored under the name and physical address of the corresponding client object. When viewing the name and physical address information of the corresponding client object, the human body temperature information of the client at a certain time can be viewed. The above-mentioned human body temperature information and actual address information are all health passport-related information. On the health passport service side, specific analysis is performed based on the human body temperature information, actual address information attribution information and result information. Under the premise of the human body temperature information, the health status of users equipped with this active health embedded basic medical facility is obtained and promptly fed back to the attending physician to achieve real-time attention to the user's health status, that is, real-time attention to the personal health record PHR.
2. The active health building embedded basic medical facility equipment according to claim 1 is characterized in that: The embedded interface includes: The multiple openings are respectively equipped with the same or different interface sockets.
3. The active health building embedded basic medical facility equipment according to claim 1, characterized in that: The server is used to identify the information transmitted from the interface end, and then encrypt it in a predetermined manner and store it locally or transmit it to an external server.
4. The active health building embedded basic medical facility equipment according to claim 1, characterized in that: The embedded interface can adapt to different types of terminal interfaces, identify the interface type corresponding to the terminal, and uniformly convert the terminal interface into the interface and protocol corresponding to the active healthy building infrastructure, identify user identity information, and transmit user data.
5. The active health building embedded basic medical facility equipment according to claim 4 is characterized in that: The user data includes personal health information, information on interactions between people, machines and objects, and information from medical and health institutions.
6. The active health building embedded basic medical facility equipment according to claim 5, characterized in that: The personal health information includes personal physiological, psychological, behavioral, temporal, spatial, environmental, cultural information, and information related to diet, exercise, disease symptoms, and medication.
7. The active health building embedded basic medical facility equipment according to claim 5, characterized in that: The information from medical and health institutions includes: diagnosis and identification of diseases and health conditions by medical and health institutions or medical and health equipment, examination and test results, prescription records, and medical expense bills from insurance companies.
8. The active health building embedded basic medical facility equipment according to claim 5, characterized in that: Also includes: Environmental monitoring information from environmental protection agencies or environmental monitoring equipment, including: water, weather, air composition, environmental pollution, radioactivity, light information and noise information.
9. A method for using embedded basic medical equipment in active health buildings, using the equipment described in claim 1, characterized in that: include: Use the server to send information from remote medical and health institutions to the embedded interface, or receive personal information sent from the embedded interface; The embedded interface is converted into a unified active healthy building infrastructure interface using a unified conversion adapter, and the signals related to the embedded interface are converted into a protocol corresponding to the unified active healthy building infrastructure interface.
Citation Information
Patent Citations
Personal health related information acquisition system for near-human-body space
CN116898395A