Device for providing customized exercise content for cardiac rehabilitation

The cardiac rehabilitation customized exercise content service device addresses the need for personalized exercise content by determining and guiding exercise based on individual health status, effectively measuring and evaluating heart health through electrocardiogram function and perceived exertion levels.

WO2025135909A1PCT designated stage expired Publication Date: 2025-06-26L&H LABS INC
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Patent Information

Application Number
PCT/KR2024/020877
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2023-12-20
Filing Date
2024-12-20
Publication Date
2025-06-26

AI Technical Summary

Technical Problem

Current cardiac rehabilitation programs lack personalized exercise content tailored to individual health status, making it difficult to effectively monitor and manage heart health through non-face-to-face digital healthcare services.

Method used

A cardiac rehabilitation customized exercise content service device that determines exercise content based on a user's health status, guides users through sequential exercise steps, estimates user motion, evaluates exercise performance, and updates health status based on perceived exertion levels.

Benefits of technology

The device provides personalized exercise content that effectively measures electrocardiogram function, evaluates exercise performance, and updates health status, enhancing the effectiveness of cardiac rehabilitation through real-time monitoring and feedback.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention relates to a device for providing customized exercise content for cardiac rehabilitation, the device comprising: an exercise content determination unit for determining exercise content for measuring electrocardiogram function; an exercise content guide unit for sequentially guiding the steps of the exercise content in response to user interactions; an exercise evaluation report generation unit for generating an exercise evaluation report for each step by evaluating each step of the exercise content; and a perceived exertion check unit for checking ratings of perceived exertion (RPE) by means of user control when generating the exercise evaluation report for each step.
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Description

Cardiac rehabilitation customized exercise content service device

[0001] The present invention relates to a technology for providing customized exercise content for cardiac rehabilitation, and more specifically, to a cardiac rehabilitation customized exercise content service device that can provide exercise content for measuring electrocardiogram function to a user and perform exercise evaluation on the exercise content.

[0002]

[0003] Digital healthcare refers to intelligent services that integrate digital technologies such as big data, artificial intelligence, the Internet of Things, and the cloud into healthcare to monitor and manage an individual's health status in real time and enable customized treatment.

[0004] Cardiac rehabilitation can prevent relapse and complications in patients with heart and vascular diseases such as angina, myocardial infarction, and heart failure through multifaceted education on strengthening the heart muscle and physical and endurance, as well as nutrition, risk factor control, and improved dietary compliance.

[0005] To effectively conduct cardiac rehabilitation, patients must acquire and understand information about heart disease themselves. To this end, non-face-to-face digital healthcare services for customized programs for each patient are required.

[0006]

[0007] [Prior Art Literature]

[0008] [Patent Document]

[0009] Korean Patent No. 10-2538856 (May 26, 2023)

[0010]

[0011] One embodiment of the present invention provides a cardiac rehabilitation customized exercise content service device capable of determining exercise content for measuring electrocardiogram function based on a user's health status.

[0012] One embodiment of the present invention provides a cardiac rehabilitation customized exercise content service device capable of sequentially guiding steps of exercise content in response to user interaction during the execution of exercise content.

[0013] One embodiment of the present invention provides a cardiac rehabilitation customized exercise content service device capable of estimating user motion based on a wearable device and evaluating exercise performance for each step of exercise content.

[0014] One embodiment of the present invention provides a cardiac rehabilitation customized exercise content service device that can update a user's health status based on RPE (Perceived Exercise Level).

[0015]

[0016] Among the embodiments, the present invention includes an exercise content determination unit that determines exercise content for measuring electrocardiogram function; an exercise content guide unit that sequentially guides steps of the exercise content in response to user interaction; a step-by-step exercise evaluation report generation unit that performs exercise evaluation for each step of the exercise content to generate an exercise evaluation report for each step; and an exercise evaluation check unit that checks RPE (Ratings of Perceived Exertion) through user control during the process of generating the exercise evaluation report for each step.

[0017] The above exercise content determination unit can determine the exercise content based on the user's health status.

[0018] The above exercise content determination unit can estimate the user's health status based on the user's activity level through a wearable device.

[0019] The above exercise content guide section can curate the steps of the exercise content and confirm the start, middle, and end of exercise through the user interaction.

[0020] The above exercise content guide section can check the user's activity level through a wearable device during the exercise and guide accurate exercise performance through video and voice.

[0021] The above step-by-step exercise evaluation report generation unit can receive user movement estimation through a wearable device.

[0022] The step-by-step exercise evaluation report generation unit can generate the step-by-step exercise evaluation report by evaluating exercise performance for each step of the exercise content based on the user motion estimation.

[0023] The step-by-step exercise evaluation report generation unit can generate a step-by-step exercise guide based on the step-by-step exercise evaluation report and generate user-customized exercise content.

[0024] The above-mentioned exercise perception check unit can update the user's health status based on the RPE exercise perception and cause the exercise content determination unit to redetermine the exercise content.

[0025] Among the embodiments, a method for providing customized content for cardiac rehabilitation includes an exercise content determination step for determining exercise content for measuring electrocardiogram function; an exercise content guide step for sequentially guiding steps of the exercise content in response to user interaction; a step-by-step exercise assessment report generation step for performing exercise evaluation for each step of the exercise content to generate an exercise assessment report for each step; and a perceived exertion check step for checking RPE (Ratings of Perceived Exertion) through user control during the process of generating the step-by-step exercise assessment report.

[0026]

[0027] The disclosed technology may have the following effects. However, this does not mean that a particular embodiment must include all or only the following effects, and thus the scope of the disclosed technology should not be construed as being limited thereby.

[0028] A cardiac rehabilitation customized exercise content service device according to one embodiment of the present invention can determine exercise content for measuring electrocardiogram function based on the user's health status.

[0029] A cardiac rehabilitation customized exercise content service device according to one embodiment of the present invention can sequentially guide steps of exercise content in response to user interaction during the execution of exercise content.

[0030] A cardiac rehabilitation customized exercise content service device according to one embodiment of the present invention can estimate user motion based on a wearable device and evaluate exercise performance for each step of exercise content.

[0031] A cardiac rehabilitation customized exercise content service device according to one embodiment of the present invention can update a user's health status based on RPE (rated exercise performance).

[0032]

[0033] Figure 1 is a drawing illustrating a cardiac rehabilitation customized exercise content service system according to the present invention.

[0034] Figure 2 is a drawing explaining the system configuration of the cardiac rehabilitation customized exercise content service device of Figure 1.

[0035] Figure 3 is a drawing explaining the functional configuration of the cardiac rehabilitation customized exercise content service device of Figure 1.

[0036] Figure 4 is a flowchart explaining the functional configuration of a cardiac rehabilitation customized exercise content service device according to the present invention.

[0037] FIG. 5 is a drawing illustrating one embodiment of a cardiac rehabilitation customized exercise content service device according to the present invention.

[0038]

[0039] The description of the present invention is merely an example for structural and functional explanation, and therefore, the scope of the present invention should not be construed as being limited by the embodiments described in the text. That is, since the embodiments can be modified in various ways and can take various forms, the scope of the present invention should be understood to include equivalents that can realize the technical idea. In addition, the purposes or effects presented in the present invention do not mean that a specific embodiment must include all of them or only such effects, and therefore, the scope of the present invention should not be construed as being limited thereby.

[0040] Meanwhile, the meaning of the terms described in this application should be understood as follows.

[0041] Terms such as "first" and "second" are intended to distinguish one component from another, and the scope of the rights should not be limited by these terms. For example, the first component may be referred to as the second component, and similarly, the second component may also be referred to as the first component.

[0042] When a component is said to be "connected" to another component, it should be understood that while it may be directly connected to that other component, there may also be other components intervening. Conversely, when a component is said to be "directly connected" to another component, it should be understood that there are no other intervening components. Similarly, other expressions describing relationships between components, such as "between" and "directly between," or "adjacent to" and "directly adjacent to," should be interpreted similarly.

[0043] Singular expressions should be understood to include plural expressions unless the context clearly indicates otherwise, and terms such as "comprises" or "have" should be understood to specify the presence of a feature, number, step, operation, component, part or combination thereof, but not to exclude the possibility of the presence or addition of one or more other features, numbers, steps, operations, components, parts or combinations thereof.

[0044] For each step, the identifiers (e.g., a, b, c, etc.) are used for convenience of explanation and do not describe the order of the steps. The steps may occur in a different order than stated unless the context clearly dictates a specific order. That is, the steps may occur in the same order as stated, may be performed substantially simultaneously, or may be performed in the opposite order.

[0045] The present invention can be implemented as computer-readable code on a computer-readable recording medium, and the computer-readable recording medium includes all types of recording devices that store data that can be read by a computer system. Examples of the computer-readable recording medium include ROM, RAM, CD-ROM, magnetic tape, floppy disk, and optical data storage devices. In addition, the computer-readable recording medium can be distributed across network-connected computer systems, so that the computer-readable code can be stored and executed in a distributed manner.

[0046] Unless otherwise defined, all terms used herein have the same meaning as commonly understood by those of ordinary skill in the art to which this invention pertains. Terms defined in commonly used dictionaries should be interpreted to be consistent with their meaning within the context of the relevant technology, and should not be interpreted as having an idealized or overly formal meaning unless explicitly defined herein.

[0047]

[0048] Figure 1 is a drawing illustrating a cardiac rehabilitation customized exercise content service system according to the present invention.

[0049] Referring to FIG. 1, a cardiac rehabilitation customized exercise content service system (100) may include a user terminal (110), a cardiac rehabilitation customized exercise content service device (130), and a database (150).

[0050] The user terminal (110) may be connected to a cardiac rehabilitation customized exercise content service device (130) via a network, and may correspond to a computing terminal operated by a user that receives content provided from the cardiac rehabilitation customized exercise content service device (130). Here, the content may correspond to an exercise program provided in the form of an image, video, or voice for cardiac rehabilitation, and is not necessarily limited thereto, and may correspond to a service for cardiac rehabilitation. In addition, the user terminal (110) may install and execute a dedicated program or application to link with the cardiac rehabilitation customized content device (130).

[0051] The user terminal (110) may be composed of one or more users, and when composed of multiple users, may include a first user terminal, a second user terminal, ..., n-th user terminal (n is a natural number). For example, the user terminal (110) may be implemented as a smartphone, laptop, or computer that is connected to and operable with a cardiac rehabilitation customized exercise content service device (130), but is not necessarily limited thereto and may also be implemented as various devices including tablet PCs.

[0052] The cardiac rehabilitation customized exercise content service device (130) may be implemented as a computing server capable of providing at least one cardiac rehabilitation customized exercise content in a database (150) to a user terminal (110) according to a user's selection. The cardiac rehabilitation customized exercise content service device (130) may be connected to the user terminal (110) via a wired network or a wireless network such as Bluetooth, WiFi, or LTE, and may transmit and receive data with the user terminal (110) via a wired or wireless network.

[0053] The database (150) may correspond to a storage device that stores exercise content provided by a cardiac rehabilitation customized exercise content service device (130).

[0054] In one embodiment, the database (150) may store user data that has performed exercise content provided by the cardiac rehabilitation customized exercise content service device (130). That is, the database (150) may store exercise evaluation data based on the user's exercise content performance results. The database (150) is not necessarily limited thereto, and may receive and sequentially store data on the presence or absence of cardiovascular abnormalities in the user's exercise content performance process from the user terminal (110).

[0055] In FIG. 1, the database (150) is depicted as an independent device from the cardiac rehabilitation customized exercise content service device (130), but it is not necessarily limited thereto and can be implemented by being included in the cardiac rehabilitation customized exercise content service device (130).

[0056]

[0057] Figure 2 is a drawing explaining the system configuration of the cardiac rehabilitation customized exercise content service device of Figure 1.

[0058] Referring to FIG. 2, the cardiac rehabilitation customized exercise content service device (130) may include a processor (210), a memory (230), a user input / output unit (250), and a network input / output unit (270).

[0059] The processor (210) can execute a cardiac rehabilitation customized exercise content service procedure according to an embodiment of the present invention, manage a memory (230) that is read or written in this process, and schedule a synchronization time between a volatile memory and a non-volatile memory in the memory (230). The processor (210) can control the overall operation of the cardiac rehabilitation customized exercise content service device (130), and can be electrically connected to the memory (230), the user input / output unit (250), and the network input / output unit (270) to control the data flow therebetween. The processor (210) can be implemented as a CPU (Central Processing Unit) or GPU (Graphics Processing Unit) of the cardiac rehabilitation customized exercise content service device (130).

[0060] The memory (230) may include an auxiliary memory device implemented with a non-volatile memory such as an SSD (Solid State Disk) or an HDD (Hard Disk Drive) and used to store all data required for the cardiac rehabilitation customized exercise content service device (130), and may include a main memory device implemented with a volatile memory such as a RAM (Random Access Memory). In addition, the memory (230) may store a set of commands for executing the cardiac rehabilitation customized exercise content service method according to the present invention by being executed by an electrically connected processor (210).

[0061] The user input / output unit (250) includes an environment for receiving user input and an environment for outputting specific information to the user, and may include, for example, an input device including an adapter such as a touchpad, a touch screen, a visual keyboard, or a pointing device, and an output device including an adapter such as a monitor or a touch screen. In one embodiment, the user input / output unit (250) may correspond to a computing device connected via remote access, and in such a case, the cardiac rehabilitation customized exercise content service device (130) may be performed as an independent server.

[0062] The network input / output unit (270) provides a communication environment for connecting to a user terminal via a network, and may include, for example, an adapter for communication such as a Local Area Network (LAN), a Metropolitan Area Network (MAN), a Wide Area Network (WAN), and a Value Added Network (VAN). In addition, the network input / output unit (270) may be implemented to provide a short-range communication function such as WiFi or Bluetooth, or a wireless communication function of 4G or higher for wireless transmission of learning data.

[0063]

[0064] Figure 3 is a drawing explaining the functional configuration of the cardiac rehabilitation customized exercise content service device of Figure 1.

[0065] Referring to FIG. 3, a cardiac rehabilitation customized exercise content service device (130) may include an exercise content determination unit (310), an exercise content guide unit (330), a step-by-step exercise evaluation report generation unit (350), an exercise perception check unit (370), and a control unit (390).

[0066] The cardiac rehabilitation customized exercise content service device (130) does not have to include all of the above functional components at the same time, and may be implemented by omitting some of the above components or selectively including some or all of the above components depending on each embodiment. In addition, the cardiac rehabilitation customized exercise content service device (130) may be implemented as an independent module that selectively includes some of the above components, and may perform the cardiac rehabilitation customized exercise content service method according to the present invention through linkage between each module. The operation of each component will be described in detail below.

[0067]

[0068] The exercise content determination unit (310) may determine exercise content for measuring electrocardiogram (ECG) functions. Here, the exercise content may correspond to at least one exercise method for measuring the user's blood pressure, pulse, and ECG, and may include, for example, exercise methods such as STS (Sit-to-Stand), walking, and running. In one embodiment, the exercise content determination unit (310) may measure the ECG function based on an exercise stress ECG test, an activity ECG test, and an event recorder ECG test, and may provide respective exercise content for measuring the ECG function based on each test. In one embodiment, the exercise content determination unit (310) may provide at least one exercise content based on the user's preference to the user terminal (110) through an input of the user terminal (110) for measuring the ECG function. In one embodiment, the exercise content determination unit (310) may provide exercise content according to the user's ECG function to the user terminal (110). For example, the exercise content determination unit (310) can provide customized exercise content to the user terminal (110) by dividing the user's electrocardiogram function into upper, middle, and lower levels.

[0069] In one embodiment, the exercise content determination unit (310) may determine exercise content based on the user's health status. Here, the exercise content determination unit (310) may analyze the user's health status based on the electrocardiogram function, but is not necessarily limited thereto, and may analyze the user's health status based on the judgment of a medical professional. The exercise content determination unit (310) may request the user to perform exercise to measure the electrocardiogram function. In one embodiment, the exercise content determination unit (310) may measure the user's electrocardiogram based on a sensor capable of performing an electrocardiogram test, but is not necessarily limited thereto, and may measure the user's electrocardiogram based on a wearable device worn by the user. The exercise content determination unit (310) may estimate the user's health status based on the user's electrocardiogram status and provide customized exercise content according to the health status to the user terminal (110). In one embodiment, the exercise content determination unit (310) may store the user's electrocardiogram function into before / after exercise and store it in the database (150).

[0070] In one embodiment, the exercise content determination unit (310) can estimate the user's health status based on the user's activity level through a wearable device. Here, the exercise content determination unit (310) can measure the user's activity level in real time and compare it with a reference activity level to provide customized exercise content according to the user's activity level to the user terminal (110). The exercise content determination unit (310) is not limited thereto, and can measure the activity level at weekly intervals, monthly intervals, and yearly intervals according to the user's settings and provide exercise content according to the user's activity level status. In one embodiment, the exercise content determination unit (310) can change the intensity of the exercise content if it is determined that the user's current health status is not suitable for the current exercise content.

[0071] The exercise content guide unit (330) can sequentially guide steps of exercise content in response to user interaction. Here, the user interaction may correspond to a movement of the user performing the exercise content, and is not necessarily limited thereto, and may correspond to analyzing the degree of movement and movement action of the user based on the user's movement pattern. In one embodiment, the exercise content guide unit (330) can provide the first step of the exercise content to the user terminal (110) in the process of providing the exercise content. Here, the exercise content guide unit (330) can provide the next step when receiving a user interaction for the first step, and by repeating this, can sequentially guide the steps of the exercise content.

[0072] In one embodiment, the exercise content guide unit (330) can curate steps of exercise content and confirm the start, middle, and end of exercise through user interaction. Here, curation may correspond to selecting one or more exercise contents from the user and displaying each step of the exercise contents, and is not necessarily limited thereto, and may correspond to confirming the steps of the exercise contents to the user by displaying one or more steps of the exercise contents on the user terminal (110). The exercise content guide unit (330) can initiate exercise contents and provide the first step of the exercise contents according to the input of the user terminal (110). In one embodiment, the exercise content guide unit (330) can determine that the user is exercising when it detects movement of the user terminal (110). In addition, the exercise content guide unit (330) can determine that exercise is finished when it does not detect movement of the user terminal (110) for a certain period of time or longer and can terminate the exercise contents.

[0073] In one embodiment, the exercise content guide unit (330) can check the user's activity level through a wearable device during exercise and guide accurate exercise performance through video and voice. In one embodiment, the exercise content guide unit (330) can measure the user's activity level by analyzing the user's interaction during the exercise content performance process, and for example, can measure the user's activity level by measuring the distance the user has moved. In one embodiment, the exercise content guide unit (330) can provide the user terminal (110) with an accurate method for performing exercise content at regular intervals based on voice. For example, the exercise content guide unit (330) can provide guidance text on how to perform exercise content every 30 seconds, but is not necessarily limited thereto.

[0074] The step-by-step exercise evaluation report generation unit (350) can perform an exercise evaluation for each step of the exercise content to generate a step-by-step exercise evaluation report. Here, the step-by-step exercise evaluation report may correspond to heart rate or distance traveled data measured while performing the exercise content, and is not necessarily limited thereto, and may correspond to an evaluation of the user's exercise performance level. In one embodiment, the step-by-step exercise evaluation report generation unit (350) can receive user interaction for each step of the exercise content from the user terminal (110) and compare the steps of each exercise content with each user interaction. Here, the step-by-step exercise evaluation report generation unit (350) can determine the user's exercise content performance level for each exercise content step and generate an exercise evaluation report for each step.

[0075] In one embodiment, the step-by-step exercise evaluation report generation unit (350) may receive user motion estimation through a wearable device. Here, the user motion estimation may correspond to an evaluation of user interaction in the process of performing each step of each exercise content, and may correspond to determining the degree of user exercise content performance based on the exercise content step, without necessarily being limited thereto. For example, the step-by-step exercise evaluation report generation unit (350) may receive user interaction for each step of each exercise content from the user terminal (110). Here, the step-by-step exercise evaluation report generation unit (350) may compare each step of each exercise content with each user interaction and determine the degree of performance. In one embodiment, the step-by-step exercise evaluation report generation unit (350) may compare each received user interaction with each step of each exercise content and display the parts that require modification on the user terminal (110).

[0076] In one embodiment, the step-by-step exercise evaluation report generation unit (350) may evaluate exercise performance for each step of exercise content based on user motion estimation to generate a step-by-step exercise evaluation report. For example, the step-by-step exercise evaluation report generation unit (350) may display performance evaluation criteria for each step on the user terminal (110) and confirm the degree of exercise performance for each step. Here, the step-by-step exercise evaluation report generation unit (350) may generate a step-by-step exercise evaluation report and provide other exercise content to the user terminal (110) based on the step-by-step exercise evaluation report. That is, the step-by-step exercise evaluation report generation unit (350) may provide customized exercise content by evaluating user interaction based on the step-by-step exercise evaluation report.

[0077] In one embodiment, the step-by-step exercise evaluation report generation unit (350) can generate a step-by-step exercise guide based on the step-by-step exercise evaluation report and generate user-customized exercise content. Here, the step-by-step exercise evaluation report generation unit (350) can provide feedback for each user interaction based on each step-by-step exercise evaluation report. For example, the step-by-step exercise evaluation report generation unit (350) can provide an interface for selecting at least one exercise content step and receive input from the user terminal (110) to provide feedback for the corresponding exercise content. In one embodiment, the step-by-step exercise evaluation report generation unit (350) can display user interactions for at least one exercise content on the user terminal (110) and separately display a part requiring feedback.

[0078] The RPE (Ratings of Perceived Exertion) check unit (370) can check the RPE (Ratings of Perceived Exertion) through user control during the process of generating an exercise evaluation report for each step. Here, the RPE may correspond to a method of measuring the intensity level of physical activity, and may correspond to a subjective exercise intensity grade based on the Borg Scale, for example. The RPE check unit (370) can provide an interface through which the user can input the RPE for the exercise content performed. Here, the RPE check unit (370) can evaluate the user's exercise performance ability and provide the user with customized exercise content.

[0079] In one embodiment, the exercise awareness check unit (370) can evaluate the user's exercise performance ability based on the following table.

[0080]

[0081] Borg Scale Activity Examples No exertion at all 6 Lying on the sofa Extremely light 7 to 8 Bending over Very light 9 to 10 Housework Light 11 to 12 Leisurely walking without increasing heart rate Somewhat hard 13 to 14 Moderate activity that raises heart rate without getting out of breath Hard (Heavy) 15 to 16 Jogging, cycling, swimming Very hard 17 to 18 Highest level of exercise you can continue without stopping Maximum exertion 19 to 20 Sprinting

[0082] Here, the exercise perception check unit (370) can provide an interface for inputting RPE exercise perception for exercise content based on Table 1.

[0083] In one embodiment, the RPE rating check unit (370) can update the user's health status based on the RPE rating and allow the exercise content determination unit (310) to re-determine the exercise content. That is, the RPE rating check unit (370) can transmit the RPE rating received from the user terminal (110) to the exercise content determination unit (310), thereby providing the user terminal (110) with new exercise content based on the RPE rating.

[0084] The control unit (390) controls the overall operation of the cardiac rehabilitation customized exercise content service device (130) and can manage the control flow or data flow between the exercise content determination unit (310), the exercise content guide unit (330), the step-by-step exercise evaluation report generation unit (350), and the exercise perception check unit (370).

[0085]

[0086] Figure 4 is a flowchart explaining the functional configuration of a cardiac rehabilitation customized exercise content service device according to the present invention.

[0087] Referring to FIG. 4, the cardiac rehabilitation customized exercise content service device (130) can determine exercise content for measuring electrocardiogram function through the exercise content determination unit (310) (step S410). Here, the cardiac rehabilitation customized exercise content service device (130) can analyze the user's health status based on the user's electrocardiogram function and determine exercise content according to the user's health status. The cardiac rehabilitation customized exercise content service device (130) can sequentially guide the steps of the exercise content in response to user interaction through the exercise content guide unit (330). Here, the cardiac rehabilitation customized exercise content service device (130) can curate the steps of the exercise content and confirm the user's activity level through a wearable device to guide accurate exercise performance through video and voice.

[0088] The cardiac rehabilitation customized exercise content service device (130) can perform exercise evaluation for each step of the exercise content through the step-by-step exercise evaluation report generation unit (350) to generate a step-by-step exercise evaluation report. Here, the cardiac rehabilitation customized exercise content service device (130) can receive user motion estimation through a wearable device and evaluate exercise performance for each step of the exercise content based on the user motion estimation to generate a step-by-step exercise evaluation report. The cardiac rehabilitation customized exercise content service device (130) can check the RPE (Ratings of Perceived Exertion) through user control during the process of generating the step-by-step exercise evaluation report through the RPE check unit (370). Here, the cardiac rehabilitation customized exercise content service device (130) can update the user's health status based on the RPE, so that the exercise content determination unit (310) can re-determine the exercise content.

[0089]

[0090] FIG. 5 is a drawing illustrating one embodiment of a cardiac rehabilitation customized exercise content service device according to the present invention.

[0091] In FIG. 5, the cardiac rehabilitation customized exercise content service device (130) can determine exercise content according to the user's health status and provide it to the user terminal (110). For example, the cardiac rehabilitation customized exercise content service device (130) can provide STS (Sit-to-Stand) as exercise content to the user terminal (110), but is not necessarily limited thereto and can provide various exercise contents for cardiac rehabilitation. In one embodiment, the cardiac rehabilitation customized exercise content service device (130) can measure heart rate and stress generated during exercise content performance and check the user's health status based on the measured heart rate and stress.

[0092] In one embodiment, the cardiac rehabilitation customized exercise content service device (130) can check the start, middle, and end of exercise of the exercise content through the user terminal (110) or user interaction. In addition, the cardiac rehabilitation customized exercise content service device (130) can provide information including the exercise content execution time, the exercise content remaining time, and the exercise content posture to the user terminal (110) in the process of providing the exercise content. The cardiac rehabilitation customized exercise content service device (130) can receive user interaction according to the exercise content execution result from the user terminal (110) and check the user's health status.

[0093]

[0094] Although the present invention has been described above with reference to preferred embodiments thereof, it will be understood by those skilled in the art that various modifications and changes may be made to the present invention without departing from the spirit and scope of the present invention as set forth in the claims below.

[0095]

[0096] Assignment ID: ITAS2005220110100001000200200

[0097] Ministry: Ministry of Science and ICT

[0098] Research Management Specialist Organization: National IT Industry Promotion Agency

[0099] Support Project Name: 2022-23 Regional Software Service Commercialization Support Project

[0100] Project Name: Development and Commercialization of a Digital Care System to Promote Customized Physical Fitness for Patients with Heart Disease

[0101] Contribution rate: 1 / 1

[0102]

[0103] Assignment ID: 2023-GJ-RD-0006-01-101

[0104] Ministry: Ministry of Science and ICT

[0105] Research Management Specialist Organization: Research and Development Special Zone Promotion Foundation

[0106] Support Project Name: 2023 Research and Development Special Zone Promotion (R&D) (Commercialization of Special Zone Research Results)

[0107] Project Name: Development and Commercialization of Exercise Prescription-Based Cardiac Rehabilitation Digital Therapeutics

[0108]

[0109] [Explanation of symbols]

[0110] 100: Customized Cardiac Rehabilitation Exercise Content Service System

[0111] 110: User terminal

[0112] 130: Customized exercise content service device for cardiac rehabilitation

[0113] 150: Database

[0114] 210: Processor 230: Memory

[0115] 250: User input / output section 270: Network input / output section

[0116] 310: Exercise Content Decision Department

[0117] 330: Exercise Content Guide

[0118] 350: Step-by-step exercise evaluation report generation section

[0119] 370: Perceived exercise level check section

[0120] 390: Control Unit

Claims

1. An exercise content determination unit that determines exercise content for measuring electrocardiogram function; An exercise content guide section that sequentially guides steps of the exercise content in response to user interaction; A step-by-step exercise evaluation report generation unit that performs exercise evaluation for each step of the above exercise content and generates an exercise evaluation report for each step; and A cardiac rehabilitation customized exercise content service device including an exercise perception check unit that checks RPE (Ratings of Perceived Exertion) exercise perception through user control during the process of generating the above step-by-step exercise evaluation report.

2. In paragraph 1, the exercise content determination unit A cardiac rehabilitation customized exercise content service device characterized by determining the exercise content based on the user's health status.

3. In the second paragraph, the exercise content determination unit A cardiac rehabilitation customized exercise content service device characterized by estimating the user's health status based on the user's activity level through a wearable device.

4. In paragraph 1, the exercise content guide section A cardiac rehabilitation customized exercise content service device characterized by curating steps of the above exercise content and confirming the start, middle, and end of exercise through the user interaction.

5. In paragraph 4, the exercise content guide section A cardiac rehabilitation customized exercise content service device characterized by confirming the user's activity level through a wearable device during the above exercise process and guiding accurate exercise performance through video and voice.

6. In the first paragraph, the step-by-step exercise evaluation report generation unit A cardiac rehabilitation customized exercise content service device characterized by receiving user motion estimation through a wearable device.

7. In paragraph 6, the step-by-step exercise evaluation report generation unit A cardiac rehabilitation customized exercise content service device characterized in that it evaluates exercise performance for each step of the exercise content based on the user motion estimation and generates an exercise evaluation report for each step.

8. In the 7th paragraph, the step-by-step exercise evaluation report generation section A cardiac rehabilitation customized exercise content service device characterized by generating a step-by-step exercise guide and generating user-customized exercise content based on the above step-by-step exercise evaluation form.

9. In paragraph 1, the exercise awareness check section A cardiac rehabilitation customized exercise content service device that updates the user's health status based on the RPE perceived exertion level and causes the exercise content determination unit to re-determine the exercise content.

Citation Information

Patent Citations

  • Method, apparatus, and system for providing exercise guide information

    KR1020160091694A

  • Film and Method for producing cured product using the same

    KR1020230173614A

  • Apparatus and method for providing customized content for cardiac rehabilitation

    KR102538856B1

  • Hydrophobic-treated metallic gas diffusion layer, membrane-electrode assembly and fuel cell

    KR102771200B1

  • Device and method for ai exercise guide

    WO2023128621A1