Smart healthcare systems and their application methods
Patent Information
- Authority / Receiving Office
- TW · TW
- Patent Type
- Patents
- Current Assignee / Owner
- IROBOT MEDICINE TECHNOLOGY CO LTD
- Filing Date
- 2023-11-30
- Publication Date
- 2026-08-01
- Estimated Expiration
- Not applicable · inactive patent
Smart Images

Figure TWG2TB001903498_001 
Figure TWG2TB001903498_002 
Figure TWG2TB001903498_003
Abstract
Description
Technical Field
[0001] The present invention relates to a medical system, in particular to a smart medical system and its application method, which utilizes an integrated device with triage function, such as a smart medical bracelet, which can instantly transmit patient-related information, including vital signs, location and triage identification signals, to the smart medical system of the present invention after pairing. In this way, the adaptability of the medical system can be improved through real-time information transmission and intelligent data analysis, while providing patients with faster and more personalized medical services. Prior Art
[0002] Today, hospitals with emergency units face a huge number of emergency patients every day, which puts hospitals under great work pressure. Emergency patients have different conditions, different levels of urgency, and may change at any time. In such an environment, hospitals, doctors and emergency patients must follow complex medical processes. Therefore, there is an urgent need to overcome the delays that patients may encounter in hospitals and medical processes, integrate existing hospitals and medical processes, and improve the level of intelligent automation in emergency units. In this era of smart medical care, it is crucial to help hospitals, doctors and emergency patients face these challenges together. Therefore, how to introduce advanced automation technology, especially intelligent process management systems, so that it can help smoothly connect admission, diagnosis, medical treatment and discharge processes and improve efficiency, and help it to cope with the changing needs of emergency patients, help hospitals, doctors and emergency patients complete various processes quickly and correctly, and at the same time help hospitals and medical processes become more intelligent / efficient and reduce the burden on hospitals, doctors and emergency patients in the process to provide a better medical experience. This is an urgent problem that the emergency medical system currently needs to solve. Summary of the invention
[0003] In view of the above-mentioned shortcomings and deficiencies of the prior art, the present invention discloses a smart medical system, comprising: An integrated device comprising: A touch display panel is disposed on a top portion of the integrated device, and the touch display panel is exposed on a surface of the top portion; An optical transceiver is disposed on a bottom of the integrated device, and the optical transceiver is exposed on the surface of the bottom; An integrated temperature detector is disposed on the bottom of the integrated device, and the temperature detector is exposed on the surface of the bottom; A wristband is disposed on a set of opposite sides of the integrated device, for fixing the integrated device on a user's wrist; A soft light-guiding display element, which has light-guiding capability and is disposed on an outer surface of the wristband; At least one full-color light-emitting diode is disposed on at least one side of the set of opposite sides of the integrated device and is optically coupled to the flexible light-guiding display element; a control unit connected to the touch display panel, the optical transceiver, the body temperature detector, and the flexible light guide display element, the control unit can provide an identification code of the integrated device, and can obtain the user's real-time vital sign data from the optical transceiver and the body temperature detector; A data transmission wireless network communication device, the data transmission wireless network communication device is connected to the control unit; An identity recognition wireless network communication device, the identity recognition wireless network communication device is connected to the control unit; an emergency room subsystem connected to the integrated device via the data transmission wireless network communication device and the identity recognition wireless network communication device; A medical information subsystem is connected to the emergency room subsystem via a network and can access medical records.
[0004] In one embodiment, the smart medical system further includes a positioning subsystem, the positioning subsystem uses a positioning wireless network, and an integrated device of the smart medical system includes a positioning wireless network communication device of the positioning wireless network, and the positioning wireless network communication device is connected to the control unit; The positioning subsystem is composed of a plurality of ultra-wideband (UWB) base stations. The positioning subsystem can calculate a current position of the integrated device by detecting the respective signal propagation delay times of the plurality of ultra-wideband (UWB) base stations receiving the same ultra-wideband (UWB) signal emitted by the integrated device; the signal propagation delay time is the time required for an ultra-wideband (UWB) signal emitted by the integrated device to propagate to an ultra-wideband (UWB) base station.
[0005] In addition, the present invention also discloses an application method of the smart medical system, which is to apply the above-mentioned smart medical system and includes the following pairing steps: Step a1: A medical information subsystem reads a patient's health insurance card number; Step a2: The medical information subsystem transmits the health insurance card number and a medical record corresponding to the health insurance card number to the emergency room subsystem; Step a3: The emergency room subsystem receives an identification code of an integrated device of the patient and the medical record data; Step a4: The emergency room subsystem binds and pairs the integrated device with the health insurance card according to the card number of the health insurance card and the identification code of the integrated device.
[0006] In addition, the present invention also discloses an application method of the smart medical system, wherein the application method applies the above-mentioned smart medical system and comprises the following triage steps: Step b1: An emergency room subsystem reads an identification code of an integrated device of a patient and real-time vital signs data of the integrated device; Step b2: The emergency room subsystem reads a medical record data corresponding to the identification code of the integrated device via a medical information subsystem; Step b3: The emergency room subsystem presents and displays the medical record data and the real-time vital sign data of the integrated device to a display device at a medical end; Step b4: The emergency room subsystem guides the medical staff of the medical end to quickly evaluate and select and confirm a triage of the patient in an interface of the emergency room subsystem based on the medical record data and the real-time vital sign data; Step b5: The emergency room subsystem sets the luminous color of the wristband of the integrated device of the patient according to the triage classification of the patient.
[0007] By wearing the paired integrated device of the present invention on a patient, for the intelligent medical system of the present invention, especially the emergency room subsystem, the integrated device is equivalent to the patient's health insurance card, and through the above-mentioned identity recognition wireless network communication device and positioning subsystem, the patient's relevant real-time information can be easily imported into the hospital's existing system and medical procedures, so that the patient's real-time vital signs information and the hospital's relevant medical procedures can be integrated, and the overall medical system is injected with higher efficiency and intelligence, and the probability of medical staff making mistakes is effectively reduced. The integrated device can authorize the call of medical records in the medical subsystem, assisting medical staff in conducting a rapid triage assessment of the patient, and the emergency room subsystem can automatically set the light color of the multiple full-color LEDs of the integrated device and the soft light guide display according to the results of the assessment, so that medical staff can intuitively know the patient's condition, saving time and effort to avoid misjudgment. The integrated device can inform patients of the time / location of relevant diagnosis and treatment processes, and can also assist patients in paying fees, collecting medicines, and the process of discharge. This integration method with the integrated device as the core can improve the automation of emergency units, not only providing real-time data, but also analyzing a large amount of digital information through an intelligent data processing system to provide real-time reference for medical staff; even under limited medical manpower conditions, it can quickly make the best treatment for a large number of patients and efficiently complete various hospital processes, effectively reducing the workload of relevant units and medical staff, while ensuring fast and correct medical processes, and achieving the purpose of the present invention. Simple diagram description
[0008] FIG. 1 is a functional block diagram of the smart medical system of the present invention. FIG. 2 is a schematic diagram of the front structure of the integration device of the present invention. FIG. 3 is a functional block diagram of the integrated device of the present invention. FIG. 4 is a flowchart of pairing the integration device and the health insurance card of the present invention. FIG. 5 is a flow chart of the triage process of the present invention. FIG. 6 is a flow chart of the diagnosis and treatment of the present invention. FIG. 7 is a discharge payment process of the present invention. FIG. 8 is a flow chart of the present invention showing the process of collecting medications upon discharge from hospital. FIG. 9 is a discharge return process of the present invention. FIG. 10 is a diagram of the intelligent voice process of the present invention. Implementation
[0009] The following is a detailed description of the technical means used by the present invention to achieve the intended purpose of the invention, in conjunction with the drawings and preferred embodiments of the present invention.
[0010] Please refer to Figure 1, which shows a block diagram of the smart medical system 1 of the present invention. The smart medical system 1 of the present invention includes: an integration device 2, which has a wireless communication function, an emergency room subsystem 3 connected to the integration device 2 via a wireless network, a medical information subsystem (HIS) 4 connected to the emergency room subsystem 3 via the network, a financial flow subsystem 5 connected to the emergency room subsystem 3 via the network, and a data center 6 connected to the emergency room subsystem 3 via the network.
[0011] The emergency room subsystem 3 is the main server of the smart medical system 1 of the present invention. The emergency room subsystem 3 includes a plurality of databases and a plurality of servers such as: the database of the emergency room subsystem 3, the application server, the in-memory database, and the emergency room AI server 7. The medical information subsystem (HIS) 4 is mainly based on the authorization of a patient's health insurance card, allowing the hospital / medical staff to access the basic information and medical records of the patient. The financial subsystem 5 is a financial system belonging to the hospital, which can calculate the medical expenses of the patient and confirm / record the medical expenses paid by the patient; the data center 6 is used to store / record the data generated by the smart medical system 1 of the present invention for use by the emergency room AI server 7; the emergency room AI server 7 mainly cooperates with the emergency room subsystem 3 to provide artificial intelligence applications and process related massive data, that is, the emergency room AI server 7 provides the emergency room subsystem 3 with relevant information based on the needs of the emergency room subsystem 3. For example, when a patient calls the emergency room subsystem 3 through the integrated device 2, "The drip is almost gone!", the emergency room subsystem 3 can transmit the received patient voice "The drip is almost gone!" to the emergency room AI server 7 for voice recognition. If the result of the patient voice recognition is understood as "the patient requests to process the drip", the emergency room subsystem 3 can perform subsequent processing according to the request, such as assigning a smart nursing car / nurse to the patient to end the drip treatment or replace the drip medicine. The rest of Figure 1 will be described later.
[0012] Please refer to FIG. 2, which shows a front structural diagram of the integrated device 2 of the present invention. The integrated device 2 is a device on the patient side. The integrated device 2 must be a device worn on a patient, such as a smart medical bracelet worn on the wrist of the patient. When an identification code of the integrated device 2 is paired with a health insurance card number of the patient through the emergency room subsystem 3, for the smart medical system 1 of the present invention, especially the emergency room subsystem 3, the integrated device 2 is equivalent to the health insurance card, so the medical information subsystem (HIS) 4 can provide the basic information and medical history of the patient to the medical staff through the authorization of the integrated device 2 of the patient. The rest of FIG. 2 will be described later.
[0013] As shown in FIG1 , the smart medical system 1 of the present invention further includes a device end connected to the emergency room subsystem 3 via a network, including: a positioning subsystem 10, a payment machine 11, a smart medicine cabinet 12, a smart service desk 13, and a return machine 14. The positioning subsystem 10 has a plurality of wireless base stations, such as a plurality of ultra-wideband (UWB) base stations, which can all receive the same ultra-wideband (UWB) signal sent from the integration device 2, and calculate the position of the integration device 2 based on the signal delay time related to the distance between the plurality of ultra-wideband (UWB) base stations and the integration device 2. For example, in one embodiment, when 6 ultra-wideband (UWB) base stations are set in 1800 square meters, the positioning accuracy can reach 10-30cm. The payment machine 11 can read an identification code of a patient's integration device 2, and after the patient pays, the payment machine 11 notifies the payment subsystem 5 through the emergency room subsystem 3 that the patient has paid the medical expenses. The smart medicine cabinet 12 can read an identification code of a patient's integrated device 2. After the smart medicine cabinet 12 reads the identification code of the integrated device 2, it will provide the patient with medicines listed on a prescription for collection.
[0014] The intelligent service desk 13 can receive general inquiries, including text / voice inquiries, and the intelligent service desk 13 will cooperate with the emergency room subsystem 3 to respond to the received inquiries, including text / voice responses and treatment actions of medical personnel. The return machine 14 can read an identification code of a patient's integrated device 2. After reading the identification code of the integrated device 2, the return machine 14 will cooperate with the emergency room subsystem 3 to disconnect the pairing between the identification code of the integrated device 2 and a health insurance card number of the patient.
[0015] The smart medical system 1 of the present invention also includes medical equipment connected to the emergency room subsystem 3 via the network, including: a battle situation meter 15, a tablet device / smart glasses 16, and a notification alarm device 17. The battle situation meter 15 mainly receives the current medical information and location information of the patient provided by the emergency room subsystem 3 and displays it on a display, so that medical staff can know the patient's immediate vital signs and the medical treatment that has been or will be provided to the patient, such as: whether the patient's current condition is stable, when the patient should take injections or take medicine, or when the patient should go for X-rays, etc. The tablet device / smart glasses 16 is a display / communication equipment that medical staff can carry with them, so that medical staff can keep in touch with the emergency room subsystem 3 at any time. When the emergency room subsystem 3 believes that it is necessary to remind medical staff to deal with an emergency, the emergency room subsystem 3 controls the notification alarm device 17 to emit light or sound.
[0016] As shown in FIG. 2 , the integrated device 2 comprises a main body 21, a wristband 22 disposed on a set of opposite sides of the main body 21 of the integrated device 2, a touch display panel 23 disposed on a top of the main body 21 of the integrated device 2 and the touch display panel 23 is exposed on the surface of the top, a housing 24, a soft light-guiding display element 25 having light-guiding capability and disposed on an outer surface of the wristband 22, a plurality of full-color light-emitting diodes 26 also disposed on the set of opposite sides of the main body 21 of the integrated device 2 and optically coupled with the soft light-guiding display element 25, a button 27, and a Velcro 221. A bottom surface of the main body 21 of the integrated device 2 that contacts the skin of a patient is also provided with an optical transceiver (not shown), which is disposed at a bottom of the integrated device 2 and is exposed on the bottom surface, and an integrated temperature detector 37 (not shown in FIG. 2 ) is disposed at the bottom of the main body 21 of the integrated device 2 and is exposed on the bottom surface. The Velcro 221 is used to fix the wristband 22 on a patient's wrist; the soft light guide display 25 is used to extend the light emitted by the plurality of full-color LEDs 26 to the outer surface of the wristband 4, so that the light emitted by the plurality of full-color LEDs 26 can be displayed more significantly and softly, so that people around can confirm the severity of the patient's condition wearing the integrated device 2 according to the light color displayed by the soft light guide display 25, for example, red light represents the most serious condition of the patient, orange light is the second, green light is the third, blue light is the third, and green light represents the mildest condition of the patient. The touch display panel 23 can be a thin film transistor (TFT) liquid crystal touch display panel, a quantum dot (QD) touch display panel or an active organic light emitting diode (AMOLED) touch display panel, and the touch display panel 23 can display information, input data or click options. The flexible light-guiding display element 25 can be made of flexible, light-guiding, light-transmissive silicone or transparent rubber.
[0017] Please refer to FIG. 3 , which shows a functional block diagram of the integrated device 2 of the present invention, wherein the integrated device 2 further includes a control unit 30, and a wireless communication module 31 connected to the control unit 30, the ultra-wideband (UWB) module 32, a near field communication (NFC) module 33, the touch display panel 23, the plurality of full-color light-emitting diodes 26, the button 27, a data security chip 28, a buzzer 29, a heartbeat detector 361, a blood oxygen detector 362, a blood pressure detector 363, a blood sugar detector 364, the body temperature detector 37, and the optical transceiver (not shown), wherein the wireless communication module 31 is also connected to a microphone 34 and a speaker 341. In one embodiment, the wireless communication module 31 can be a WiFi module or a Bluetooth module or both. The control unit 30 may be a microcontroller (MCU), and the control unit 30 may read an identification code of the integrated device from a memory of the control unit 30 or another memory (not shown) of the integrated device 2, and provide the identification code of the integrated device to the near field communication (NFC) module 33, so that the identification code of the integrated device can be transmitted to the outside world via the near field communication (NFC) module 33. The optical transceiver has a light emitting diode and a light sensor (not shown). The optical transceiver uses the light of the light emitting diode to illuminate the skin of the wrist of the user, and uses the light sensor to sense the light intensity change of the light penetrating the skin and then reflected to the light sensor, while the heartbeat detector 361, the blood oxygen detector 362, the blood pressure detector 363, and the blood sugar detector 364 share the light intensity change sensed by the light sensor of the optical transceiver, and respectively calculate the heartbeat, blood oxygen, blood pressure, and blood sugar level of the patient using the integrated device 2. In different embodiments, the heartbeat detector 361, the blood oxygen detector 362, the blood pressure detector 363, and the blood sugar detector 364 can be a hardware chip circuit (IC), or a software program executed by the control unit 30. The body temperature detector 37 is used to detect the skin temperature of the user's wrist to confirm the body temperature of the patient using the integrated device 2. The body temperature detector 37 can be an infrared body temperature detector or other types of body temperature detectors. The buzzer 29 is used to call and remind the patient using the integrated device 2. For example, when the touch display panel 23 receives a new message or when the user needs to respond to a message, the buzzer 29 can make a sound to call and remind the patient using the integrated device 2. The wireless communication module 31 is used to transmit data back to the emergency room subsystem 3, for example, the heartbeat, blood oxygen, blood pressure, blood sugar, body temperature and other vital signs of the patient using the integrated device 2 measured by the heartbeat detector 361, the blood oxygen detector 362, the blood pressure detector 363, the blood sugar detector 364, and the body temperature detector 37 are transmitted back to the emergency room subsystem 3 to monitor the above vital signs of the patient in real time.The wireless communication module 31 can also receive messages from the outside for reference by the patient using the integrated device 2, so the output data of the wireless communication module 31 can be encrypted and the input data can be decrypted through the data security chip 25. As mentioned above, the wireless communication module 31 is connected to the microphone 34 and the speaker 341, so the wireless communication module 31 can also communicate with the external wireless communication module matched with it by voice; therefore, the wireless communication module 31 is obviously a data transmission wireless network communication device. The near field communication (NFC) module 33 can be used for short-range contactless identity recognition (such as a distance of 2 to 5 cm); therefore, the near field communication (NFC) module 33 is obviously an identity recognition wireless network communication device. Similarly, according to the above description of the positioning subsystem 10, the ultra-wideband (UWB) module 32 is obviously a positioning wireless network communication device. .
[0018] Please refer to FIG. 4, which shows a flowchart of pairing the integration device 2 of the present invention with a health insurance card, and includes the following steps: Step a1: The medical information subsystem (HIS) confirms whether the card number of a patient's health insurance card has been read. If not, return to step a1; Step a2: The medical information subsystem (HIS) transmits a medical record corresponding to the health insurance card number to the emergency room subsystem; Step a3: The emergency room subsystem confirms whether it has received an integrated device identification code and the medical record data, if not received, return to step a3; Step a4: The emergency room subsystem binds and pairs the integrated device with the health insurance card according to the health insurance card number and the identification code of the integrated device; This process is complete.
[0019] Please refer to FIG5, which shows a flow chart of the triage process of the present invention, which has the following steps: Step b1: The emergency room subsystem confirms whether it has read an identification code of an integrated device of a patient and the real-time vital signs data of the integrated device. If not, return to step b1; Step b2: The emergency room subsystem confirms whether a medical record corresponding to the identification code of the integrated device has been read through the medical information subsystem (HIS). If not, return to step b2; Step b3: The emergency room subsystem presents and displays the medical record data and the real-time vital sign data of the integrated device to a display device at a medical end; Step b4: The emergency room subsystem guides the medical staff of the medical end to quickly evaluate and select and confirm a triage of the patient in an interface of the emergency room subsystem based on the medical record data and the real-time vital sign data; Step b5: The emergency room subsystem sets the luminous color of the integrated device bracelet of the patient according to the triage classification of the patient. This process is complete.
[0020] Please refer to FIG. 6 , which shows a flow chart of the diagnosis and treatment of the present invention, which has the following steps: Step c1: The emergency room subsystem notifies a patient to go to a physician's office for medical treatment; Step c2: The emergency room subsystem confirms whether it has read the patient's integrated device identification code and the real-time vital signs data of the integrated device, if not read, return to step c2; Step c3: The emergency room subsystem confirms whether the medical information subsystem (HIS) has read the patient's medical record data. If not, return to step c3; Step c4: The emergency room subsystem presents and displays the medical record data, the real-time vital sign data of the integrated device, and the condition comparison before and after the medical treatment to a display device of the physician; Step c5: The emergency room subsystem receives the physician's input regarding whether the patient should be discharged or continue to be observed; This process is complete.
[0021] Please refer to FIG. 7, which shows the discharge payment process of the present invention, which has the following steps: Step d1: The payment subsystem calculates the fees payable by a patient and sends a payment notification to the emergency room subsystem; Step d2: The emergency room subsystem confirms whether the payment notification has been received. If not, return to step d2; Step d3: The emergency room subsystem transmits a payment amount of the payment notice to an integrated device of the patient, and causes the full-color LED of the integrated device to flash or / and a buzzer to sound, so as to notify the patient to pay; Step d4: A payment machine confirms whether the identification code and payment amount of the patient's integrated device have been read. If not, return to step d4; Step d5: The payment machine confirms whether the patient has completed payment at the payment machine. If payment has not been completed, return to step d5; Step d6: The payment machine notifies the emergency room subsystem that the patient has completed payment at the payment machine; Step d7: The emergency room subsystem notifies the payment subsystem that the patient has completed payment; This process is complete.
[0022] Please refer to FIG8 , which shows the process of collecting medicine after discharge from hospital according to the present invention, which has the following steps: Step e1: The medical information subsystem (HIS) instructs a pharmacy to prepare medicines according to a patient's prescription and put the prepared medicines on a smart medicine cabinet; Step e2: The smart medicine cabinet sends a notification that medicine can be collected to the emergency room subsystem; Step e3: The emergency room subsystem confirms whether it has received the notification that the medicine can be collected. If not, return to step e3; Step e4: The emergency room subsystem causes a full-color LED of an integrated device of the patient to flash or / and a buzzer to sound, so as to notify the patient to collect medicine; Step e5: The smart medicine cabinet confirms whether the identification code of the integrated device has been read. If not, return to step e5; Step e6: The smart medicine cabinet confirms whether the patient has received the medicine and the instructions for use of the medicine. If not, return to step e6; Step e7: The smart medicine cabinet notifies the emergency room subsystem that the patient has received the medicine and the instructions for use of the medicine; This process is complete.
[0023] Please refer to FIG. 9, which shows the discharge return process of the present invention, which has the following steps: Step f1: A return machine confirms whether it has read an identification code of an integrated device of a patient, if not, returns to step f1; Step f2: The return machine sends a return notification and the identification code of the integrated device to the emergency room subsystem; Step f3: The emergency room subsystem confirms whether it has received the return notification and the identification code of the integrated device, if not received, return to step f3; Step f4: The emergency room subsystem disconnects the pairing between the integrated device and a health insurance card of the patient; This process is complete.
[0024] Please refer to FIG. 10 , which shows a smart voice flow chart between the integration device 2 and the emergency room subsystem 3 of the present invention, and has the following steps: Step g1: The emergency room subsystem confirms whether a voice signal transmitted by an integrated device of a patient has been received. If not, return to step g1; Step g2: The emergency room AI server of the emergency room subsystem performs artificial intelligence speech recognition on the voice signal. If the voice signal cannot be recognized, return to step g1; Step g3: The emergency room AI server confirms the patient's needs; Step g4: The emergency room subsystem performs follow-up processing according to the patient's needs; This process is complete.
[0025] The above is only a preferred embodiment of the present invention, and does not limit the present invention in any form. Although the present invention has been disclosed as a preferred embodiment as above, it is not used to limit the present invention. Any person with ordinary knowledge in the technical field can make some changes or modifications to equivalent embodiments of equivalent changes by using the technical contents disclosed above without departing from the scope of the technical solution of the present invention. However, any simple modification, equivalent change and modification made to the above embodiments according to the technical essence of the present invention without departing from the content of the technical solution of the present invention still falls within the scope of the technical solution of the present invention.
[0026] 1: Smart medical system 2:Integrated device 3: Emergency Room Subsystem 4: Medical Information Subsystem 5: Gold flow system 6: Data Center 7: Emergency Room AI Server 10: Positioning subsystem 11: Payment Machine 12: Smart medicine cabinet 13: Smart Service Desk 14: Return Machine 15: Combat Instrument 16: Tablet devices / smart glasses 17: Notification alarm 21: Main Body 22: Bracelet 221: Velcro 23: Touch display panel 24: Shell 25: Soft light guide display 26: Full-color LED 27: Button 28: Data security chip 29:Buzzer 30: Control unit 31: Bluetooth (BT) module 32:Ultra-wideband (UWB) module 33: Near Field Communication (NFC) Module 34: Microphone 341: Speaker 36: Optical transceiver 361: Heartbeat Detector 362: Blood oxygen detector 363: Blood Pressure Monitor 364: Blood Glucose Monitor 37: Body temperature detector
Claims
1. A smart medical system, comprising: an integrated device, comprising: a touch display panel disposed on a top of the integrated device, the touch display panel being exposed on the surface of the top; an optical transceiver disposed on a bottom of the integrated device, the optical transceiver being exposed on the surface of the bottom; an integrated temperature detector disposed on the bottom of the integrated device, the temperature detector being exposed on the surface of the bottom; a wristband disposed on a set of opposite sides of the integrated device for securing the integrated device to a user's wrist; a flexible light-guiding display element having light-guiding capability and disposed on an outer surface of the wristband; at least one full-color light-emitting diode disposed on at least one of the opposite sides of the integrated device and optically coupled to the flexible light-guiding display element; A control unit connected to the touch display panel, the optical transceiver, the body temperature detector, and the flexible light guide display; the control unit can provide an identification code for the integrated device and can obtain the user's real-time vital signs data from the optical transceiver and the body temperature detector; a data transmission wireless network communication device connected to the control unit; an identity verification wireless network communication device connected to the control unit; a positioning subsystem using a positioning wireless network, and the integrated device including a positioning wireless network communication device connected to the control unit; the positioning subsystem can calculate the current location of the integrated device. An emergency room subsystem is connected to the integrated device via a data transmission wireless network communication device and an identification wireless network communication device. The emergency room subsystem receives the current location of the integrated device via a positioning subsystem. The emergency room subsystem receives a user's real-time vital signs via the integrated device. The emergency room subsystem can bind and pair the integrated device with a health insurance card based on a health insurance card number and the integrated device's identification code. The emergency room subsystem can notify the user of treatment process information via the integrated device. A medical information subsystem is connected to the emergency room subsystem via a network. The medical information subsystem can access medical records with authorization via the integrated device.
2. The smart medical system as described in claim 1, wherein the optical transceiver further includes a light-emitting diode and a light sensor, wherein the light from the light-emitting diode illuminates the skin of the user's wrist, and the light sensor senses the change in light intensity of the light passing through the skin and being reflected back to the light sensor; the integrated device is also provided with at least one vital sign detector, the at least one vital sign detector being electrically connected to the control unit, the at least one vital sign detector being electrically connected to the optical transceiver, and each calculating the value of the at least one vital sign based on the change in light intensity of the light passing through the skin and being reflected back to the light sensor.
3. The smart medical system as described in claim 1, wherein the optical transceiver further includes a light-emitting diode and a photosensor, wherein the light from the light-emitting diode illuminates the skin of the user's wrist, and the photosensor senses the change in light intensity of the light passing through the skin and being reflected back to the photosensor; the control unit is electrically connected to the optical transceiver, and the control unit executes at least one vital sign detection program, wherein the at least one vital sign detection program calculates the value of at least one vital sign based on the change in light intensity of the light passing through the skin and being reflected back to the photosensor.
4. The smart healthcare system as described in any one of claims 1 to 3, wherein the vital signs data includes data on the user's body temperature, heart rate, blood oxygen level, blood pressure, or blood glucose level.
5. The smart medical system as described in claim 1, wherein the integrated device further includes a buzzer and a button, both of which are electrically connected to the control unit, and the button is disposed on one side of the integrated device and exposed on the surface of the integrated device.
6. The smart healthcare system as described in claim 1, wherein the positioning subsystem comprises a plurality of ultra-wideband (UWB) base stations, and the positioning subsystem can calculate the current position of the integrated device by detecting the individual signal propagation delay time of the UWB signal received by each of the plurality of UWB base stations from the integrated device; the signal propagation delay time is the time required for an UWB signal emitted by the integrated device to propagate to an UWB base station.
7. The smart healthcare system as described in claim 1, wherein the emergency room subsystem further includes an emergency room AI server, which has the functions of speech recognition and language understanding, or the function of processing massive amounts of data.
8. An application method of a smart healthcare system, wherein the application method is the smart healthcare system of application request item 1, comprising the following pairing steps: Step a1: A medical information subsystem reads the card number of a patient's health insurance card; Step a2: The medical information subsystem transmits the health insurance card number and medical record data corresponding to the health insurance card number to an emergency room subsystem; Step a3: The emergency room subsystem receives the identification code of an integrated device of the patient and the medical record data; Step a4: The emergency room subsystem binds and pairs the integrated device with the health insurance card according to the health insurance card number and the identification code of the integrated device.
9. A method for applying a smart healthcare system, wherein the method applies the smart healthcare system of claim 1, and includes the following triage steps: Step b1: An emergency room subsystem reads the identification code of an integrated device of a patient and the real-time vital signs data of the integrated device; Step b2: The emergency room subsystem reads medical record data corresponding to the identification code of the integrated device via a medical information subsystem; Step b3: The emergency room subsystem presents and displays the medical record data and the real-time vital signs data of the integrated device to a display device on a healthcare worker's end; Step b4: The emergency room subsystem guides the healthcare worker on the healthcare worker's end to quickly assess and select and confirm a triage classification of the patient in an interface of the emergency room subsystem based on the medical record data and the real-time vital signs data; Step b5: The emergency room subsystem sets the light emission color of the patient's integrated device according to the triage classification of the patient.
10. A method for applying a smart healthcare system, wherein the method applies the smart healthcare system of request item 1, and includes the following diagnostic and treatment steps: Step c1: An emergency room subsystem notifies a patient to go to a doctor's office for medical treatment; Step c2: The emergency room subsystem reads the identification code of an integrated device of the patient and the real-time vital signs data of the integrated device; Step c3: The emergency room subsystem reads medical record data corresponding to the identification code of the integrated device through a medical information subsystem; Step c4: The emergency room subsystem presents and displays the medical record data, the real-time vital signs data of the integrated device, and a comparison of the patient's condition before and after medical treatment to a display device of the doctor; Step c5: The emergency room subsystem receives the medical decision about the patient input by the doctor.
11. A method for applying a smart healthcare system, wherein the method applies the smart healthcare system of request 1, the smart healthcare system further comprising a payment subsystem connected to an emergency room subsystem via a network, the method comprising the following payment steps: Step d1: The payment subsystem calculates the amount due for a patient and transmits a payment notification to the emergency room subsystem; Step d2: The emergency room subsystem receives the payment notification; Step d3: The emergency room subsystem transmits the payment amount of the payment notification to an integrated device of the patient, and causes the full-color LED of the integrated device to flash and / or a buzzer of the integrated device to sound, to notify the patient; Step d4: A payment machine reads the identification code and payment amount of the patient's integrated device; Step d5: The payment machine confirms that the patient has completed payment at the payment machine; Step d6: The payment machine notifies the emergency room subsystem that the patient has completed payment at the payment machine. Step d7: The emergency room subsystem notifies the payment subsystem that the patient has completed payment.
12. A method for applying a smart healthcare system, wherein the method is based on the smart healthcare system described in request 1, and the method includes the following medication dispensing steps: Step e1: The medical information subsystem instructs a pharmacy to dispense medication according to a patient's prescription and place the dispensed medication on a smart medication dispensing cabinet; Step e2: The smart medication dispensing cabinet transmits a medication availability notification to an emergency room subsystem; Step e3: The emergency room subsystem receives the medication availability notification; Step e4: The emergency room subsystem causes a full-color LED on a patient's integrated device to flash and / or a buzzer to sound to notify the patient; Step e5: The smart medication dispensing cabinet reads the identification code of the integrated device; Step e6: The smart medication dispensing cabinet confirms that the patient has received the medication and its instructions for use; Step e7: The smart medication dispensing cabinet notifies the emergency room subsystem that the patient has received the medication and its instructions for use.
13. A method for applying a smart healthcare system, wherein the method is the smart healthcare system of application request 1, the method comprising the following steps for returning an integrated device: Step f1: A return device reads the identification code of an integrated device of a patient; Step f2: The return device transmits a return notification and the identification code of the integrated device to an emergency room subsystem; Step f3: The emergency room subsystem receives the return notification and the identification code of the integrated device; Step f4: The emergency room subsystem disconnects the pairing between the integrated device and a health insurance card of the patient.
14. An application method of a smart medical system, wherein the application method is the smart medical system of application request item 1, and the method of the smart medical system includes the steps of the following smart voice flowchart: Step g1: The emergency room subsystem receives a voice signal transmitted by a patient's integrated device; Step g2: The emergency room AI server of the emergency room subsystem performs artificial intelligence voice recognition on the voice signal; Step g3: The emergency room AI server confirms the patient's needs; Step g4: The emergency room subsystem performs subsequent processing according to the patient's needs.