Cervical vertebra monitoring method, cervical vertebra monitoring device and system thereof

By comparing the user's cervical spine status information with the standard range, and determining and sending cervical spine training information, the vicious cycle of cervical spine problems caused by poor sitting habits is solved, and the effect of targeted improvement of sitting habits and cervical spine problems is achieved.

CN115645837BActive Publication Date: 2025-05-27XIAN TCL SOFTWARE DEV
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202211351044.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-10-31
Publication Date
2025-05-27
Estimated Expiration
2042-10-31

AI Technical Summary

Technical Problem

Cervical spine problems caused by poor sitting habits cannot be effectively improved, forming a vicious cycle.

Method used

By obtaining the user's cervical spine status information and comparing it with reference information (the standard range of cervical spine status information), the cervical spine training information is determined, and information guiding cervical spine training is sent to the user.

Benefits of technology

Targeted improvements to bad sitting habits, prevent vicious cycles, and effectively improve users' cervical spine problems.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115645837B_ABST
    Figure CN115645837B_ABST
Patent Text Reader

Abstract

The present application provides a cervical vertebra monitoring method, a cervical vertebra monitoring device and a system thereof. The method includes: obtaining reference information and the cervical vertebra state information of a user, where the reference information is the standard range of the cervical vertebra state information, and determining cervical vertebra training information according to the reference information and the cervical vertebra state information, and sending the cervical vertebra training information to the user. The cervical vertebra training information is used to guide the user to perform cervical vertebra training, so as to guide the user to specifically perform cervical vertebra training on the current cervical vertebra state, thereby timely stopping the vicious cycle of such bad sitting postures, and helping to improve the user's cervical vertebra problems.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the technical fields of artificial intelligence and human body posture monitoring, and particularly relates to a cervical vertebra monitoring method, a cervical vertebra monitoring device, and a system thereof. Background Art

[0002] Currently, there is a trend of younger people suffering from cervical spondylosis. Among them, people who often engage in desk work or have poor sitting postures and long-term bow their heads to use smart electronic devices are the main causes of the disease. However, for people with poor sitting postures, they cannot make targeted adjustments according to their own sitting postures, resulting in the inability to effectively improve bad sitting postures, thus causing a vicious cycle of cervical problems. Summary of the Invention

[0003] The purpose of this application is to provide a cervical vertebra monitoring method, a cervical vertebra monitoring device, and a system thereof, so as to improve the problem that people with poor existing sitting postures cannot make targeted adjustments according to their own sitting postures, resulting in a vicious cycle of cervical problems.

[0004] The embodiments of this application provide a cervical vertebra monitoring method, including:

[0005] Obtain reference information and the cervical vertebra state information of a user, where the reference information is the standard range of the cervical vertebra state information;

[0006] Determine cervical vertebra training information according to the reference information and the cervical vertebra state information;

[0007] Send the cervical vertebra training information to the user, where the cervical vertebra training information is used to guide the user to perform cervical vertebra training.

[0008] In one embodiment, the reference information includes multiple sub-reference information, the cervical vertebra state information includes multiple sub-cervical vertebra state information corresponding to the multiple sub-reference information, and the sub-reference information is the standard range of the corresponding sub-cervical vertebra state information;

[0009] Among them, the step of determining the cervical vertebra training information according to the reference information and the cervical vertebra state information includes:

[0010] Determine the cervical vertebra training information according to at least one of the sub-reference information and the corresponding at least one of the sub-cervical vertebra state information.

[0011] In one embodiment, the step of determining the cervical vertebra training information according to at least one of the sub-reference information and the corresponding at least one of the sub-cervical vertebra state information includes:

[0012] Determine the corresponding sub-cervical vertebra training information according to each of the sub-reference information and the corresponding sub-cervical vertebra state information;

[0013] Generate the cervical spine training information according to the multiple pieces of the sub-cervical spine training information.

[0014] In one embodiment, the multiple pieces of the sub-reference information include a first sub-reference information and a second sub-reference information, and the multiple pieces of the sub-cervical spine state information include a first sub-information corresponding to the first sub-reference information and a second sub-information corresponding to the second sub-reference information.

[0015] Wherein, the step of determining the cervical spine training information according to at least one piece of the sub-reference information and the corresponding at least one piece of the sub-cervical spine state information includes:

[0016] Judge whether the first sub-information is abnormal according to the first sub-reference information and the corresponding first sub-information, and judge whether the second sub-information is abnormal according to the second sub-reference information and the corresponding second sub-information.

[0017] If both the first sub-information and the second sub-information are abnormal, determine the corresponding first sub-training information according to the first sub-reference information and the corresponding first sub-information, and / or determine the corresponding second sub-training information according to the second sub-reference information and the corresponding second sub-information.

[0018] Determine the cervical spine training information according to the first sub-training information and / or the second sub-training information.

[0019] In one embodiment, one of the first sub-reference information and the second sub-reference information is an angle reference information, and the other is a first duration reference information.

[0020] The first sub-information is an angle information corresponding to the angle reference information, and the second sub-information is a first duration information corresponding to the first duration reference information.

[0021] Wherein, the angle information includes the angle at which the user's cervical spine deviates from a preset position, and the first duration information includes the duration at which the user's cervical spine deviates from the preset position.

[0022] In one embodiment, the multiple pieces of the sub-reference information further include an acceleration reference information and a second duration reference information.

[0023] The multiple pieces of the sub-cervical spine state information include an acceleration information corresponding to the acceleration reference information and a second duration information corresponding to the second duration reference information.

[0024] Wherein, the acceleration information includes the acceleration of the user's cervical spine movement, and the second duration information includes the duration at which the user's cervical spine moves at the acceleration.

[0025] In one embodiment, after the step of obtaining the reference information and the cervical spine status information of the user, and before the step of sending the cervical spine training information to the user, where the cervical spine training information is used to guide the user to perform cervical spine training, it includes:

[0026] According to the reference information and the cervical spine status information, determine whether the cervical spine status information is abnormal;

[0027] If the cervical spine status information is abnormal, send a prompt message to the user.

[0028] The embodiment of the present application also provides a cervical spine monitoring device, including:

[0029] An acquisition module, configured to acquire reference information and the cervical spine status information of the user, where the reference information is the standard range of the cervical spine status information;

[0030] A determination module, configured to determine cervical spine training information according to the reference information and the cervical spine status information;

[0031] A sending module, configured to send the cervical spine training information to the user, where the cervical spine training information is used to guide the user to perform cervical spine training.

[0032] The embodiment of the present application also provides a cervical spine monitoring system, including a headphone terminal and a display terminal. The headphone terminal is configured to acquire the cervical spine status information of the user and transmit the cervical spine status information to the display terminal;

[0033] The display terminal is configured to acquire reference information and the cervical spine status information, where the reference information is the standard range of the cervical spine status information, and determine cervical spine training information according to the reference information and the cervical spine status information;

[0034] The display terminal is further configured to send the cervical spine training information to the user, where the cervical spine training information is used to guide the user to perform cervical spine training.

[0035] In one embodiment, the headphone terminal includes:

[0036] A sensor module, configured to acquire the cervical spine status information;

[0037] A microprocessor module, configured to acquire the cervical spine status information from the sensor module and acquire the reference information from the display terminal, or the microprocessor module stores the reference information, and is further configured to determine whether the cervical spine status information is abnormal according to the reference information and the cervical spine status information;

[0038] A prompt module, configured to send a prompt message to the user when the cervical spine status information is abnormal.

[0039] This application provides a cervical spine monitoring method, a cervical spine monitoring device, and a system thereof. By comparing and analyzing the cervical spine status information of a user with reference information (the standard range of cervical spine status information), cervical spine training information is determined. That is, it can be considered that the cervical spine training information is related to the current user's cervical spine status information, that is, it is set for the current user's cervical spine status information, and this cervical spine training information is sent to the user to guide the user to perform cervical spine training. That is, it can guide the user to specifically perform cervical spine training on the current cervical spine status to specifically improve the current bad sitting posture habit, thereby timely stopping the vicious cycle of this bad sitting posture habit, which helps to improve the user's cervical spine problem. Description of the Drawings

[0040] To more clearly illustrate the technical solutions in the embodiments of this application, the following will briefly introduce the drawings required for the description of the embodiments. Obviously, the following described drawings are only some embodiments of the present invention. For those skilled in the art, without creative efforts, other drawings can also be obtained based on these drawings.

[0041] Figure 1 It is the first flowchart of the cervical spine monitoring method provided by the embodiment of this application;

[0042] Figure 2 It is the second flowchart of the cervical spine monitoring method provided by the embodiment of this application;

[0043] Figure 3 It is the third flowchart of the cervical spine monitoring method provided by the embodiment of this application;

[0044] Figure 4 It is the fourth flowchart of the cervical spine monitoring method provided by the embodiment of this application;

[0045] Figure 5 It is the fifth flowchart of the cervical spine monitoring method provided by the embodiment of this application;

[0046] Figure 6 It is the structural schematic diagram of the cervical spine monitoring device provided by the embodiment of this application;

[0047] Figure 7 It is the structural schematic diagram of the cervical spine monitoring system provided by the embodiment of this application;

[0048] Figure 8 It is the flowchart of the method executed by the cervical spine monitoring system provided by the embodiment of this application;

[0049] Figure 9 It is the structural schematic diagram of the electronic device provided by the embodiment of this application. Detailed Embodiments

[0050] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a 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 those skilled in the art without creative efforts belong to the scope of protection of the present invention.

[0051] In the description of the present invention, it should be understood that the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of the described features. In the description of the present invention, "a plurality" means two or more unless otherwise specifically defined.

[0052] In this application, words such as "embodiment" and "for example" are used to mean "serving as an example, illustration, or explanation". Any embodiment described as an "embodiment", "for example", etc. in this application is not necessarily construed as being more preferred or having more advantages than other embodiments. In order to enable any person skilled in the art to implement and use the present invention, the following description is given. In the following description, details are set forth for the purpose of explanation. It should be understood that those of ordinary skill in the art can recognize that the present invention can be implemented without using these specific details. In other instances, well-known structures and processes are not described in detail to avoid unnecessary details from obscuring the description of the present invention. Therefore, the present invention is not intended to be limited to the embodiments shown, but is consistent with the broadest scope that conforms to the principles and features disclosed in this application.

[0053] In the past, cervical spondylosis mainly occurred in middle-aged and elderly people or those engaged in physical labor for a long time. However, people who often engage in desk work or have poor sitting postures and use smart electronic devices with their heads down for a long time have now become a large part of the group suffering from cervical spondylosis, resulting in a trend of younger onset of cervical spondylosis. However, for people with poor sitting postures, they cannot make targeted adjustments according to their own sitting postures, resulting in the inability to effectively improve poor sitting postures, thus causing a vicious cycle of cervical problems.

[0054] To solve the above problems, the embodiments of the present application provide a cervical spine monitoring method, a cervical spine monitoring device, and a system thereof, which will be described in detail below.

[0055] The embodiments of the present application provide a cervical spine monitoring method, which can be applied to the cervical spine monitoring device and system provided by the present application. The cervical spine monitoring method may include the following steps: obtaining reference information and the cervical spine status information of the user, where the reference information is the standard range of the cervical spine status information; determining cervical spine training information according to the reference information and the cervical spine status information; and sending the cervical spine training information to the user, where the cervical spine training information is used to guide the user to perform cervical spine training.

[0056] After receiving the cervical spine status information of the user, the present application compares and analyzes it with the reference information (the standard range of the cervical spine status information) to determine the cervical spine training information. That is, it can be considered that the cervical spine training information is related to the current cervical spine status information of the user, that is, it is set for the current cervical spine status information of the user, and the cervical spine training information is sent to the user to be used to guide the user to perform cervical spine training, that is, it can guide the user to specifically perform cervical spine training on the current cervical spine status to specifically improve the current bad sitting posture habit, thereby timely stopping the vicious cycle of the bad sitting posture habit, which helps to improve the user's cervical spine problem.

[0057] In one embodiment, as Figure 1 shown, it is a schematic flowchart of the embodiment of the cervical spine monitoring method provided by the embodiments of the present application, which may include but is not limited to steps S1 to S3.

[0058] S1. Obtain reference information and the cervical spine status information of the user, where the reference information is the standard range of the cervical spine status information.

[0059] Among them, when the user is in a certain sitting posture, there will also be a corresponding cervical spine status. For example, whether the cervical spine moves or deviates. Each cervical spine status can be described by at least one piece of cervical spine status information. Similarly, for the standard cervical spine status, it can also be represented by reference information. Therefore, the reference information and the cervical spine status information obtained in step S1 can specifically describe the current cervical spine status of the user and the standard cervical spine status. The reference information provides a reference for the position of the cervical spine status information and can be used to compare and illustrate how the current cervical spine status of the user is.

[0060] S2. Determine cervical spine training information according to the reference information and the cervical spine status information.

[0061] It can be understood that, in combination with the above discussion, since the reference information is the standard range of the cervical spine status information, that is, the reference information provides a reference for the position of the cervical spine status information, the bad category and severity of the current cervical spine status of the user can be determined, and thus the cervical spine training information can be determined. This cervical spine training information can be considered to be set specifically for the current cervical spine status of the user based on the standard cervical spine status.

[0062] Specifically, the specific content of the cervical spine training information can correspond to the specific content of both the reference information and the cervical spine status information, or can include several fixed training items, and the specific values of each training item can be determined according to the reference information and the cervical spine status information.

[0063] S3. Send the cervical spine training information to the user, where the cervical spine training information is used to guide the user to perform cervical spine training.

[0064] Among them, in step S3, the cervical spine training information can be sent to the user every time a piece of cervical spine training information is generated, or the time or frequency of sending the cervical spine training information to the user can be preset to avoid disturbing the user by sending it immediately every time a piece of cervical spine training information is generated.

[0065] Specifically, the form of the cervical spine training information can include at least one of cervical spine training voice, cervical spine training picture, and cervical spine training video. The database of the cervical spine training information can be a network database or a local database. Further, the user can set which database to generate the cervical spine training information from, and can also set to play the cervical spine training information in the form of voice, picture, or video. Furthermore, during the process of playing the cervical spine training information, the user can also switch the database and form of the cervical spine training information according to needs, so that the cervical spine training information has high flexibility in guiding the user to perform cervical spine training.

[0066] In one embodiment, the reference information includes multiple sub-reference information, and the cervical spine status information includes multiple sub-cervical spine status information corresponding to the multiple sub-reference information. The sub-reference information is the standard range of the corresponding sub-cervical spine status information; among them, as Figure 2 shown, step S2 can include but is not limited to the following steps: S201. Determine the cervical spine training information according to at least one of the sub-reference information in the reference information and the corresponding at least one of the sub-cervical spine status information in the cervical spine status information.

[0067] Among them, in combination with the above discussion, the reference information is the standard range of the cervical spine status information. Further, the multiple sub-reference information in the reference information in this embodiment and the multiple sub-cervical spine status information in the cervical spine status information correspond one by one. Similarly, it can further specifically describe each current cervical spine sub-status of the user and the standard cervical spine sub-status, and can understand the user's current cervical spine status from different cervical spine sub-status perspectives, so as to improve the comprehensiveness of mastering the user's current cervical spine status.

[0068] Specifically, as discussed above, the multiple sub-reference information may include, but is not limited to, at least two of the angle reference information, the first duration reference information, the acceleration reference information, and the second duration reference information. Among them, the angle information includes the angle by which the user's cervical vertebra deviates from the preset position, the first duration information includes the duration for which the user's cervical vertebra deviates from the preset position, the acceleration information includes the acceleration of the user's cervical vertebra movement, and the second duration information includes the duration for which the user's cervical vertebra moves at this acceleration. Correspondingly, since the multiple sub-reference information corresponds one-to-one with the multiple sub-cervical vertebra state information, the multiple sub-cervical vertebra state information may also correspondingly include at least two of the angle information, the first duration information, the acceleration information, and the second duration information.

[0069] Among them, since it can be considered that the cervical vertebra should remain upright (parallel to the plumb line) or the angle with the plumb line is within the preset angle range when the user is in a normal sitting position, the "preset position" here may be, but is not limited to, the plumb line; based on the "preset position" being the plumb line, it can be considered that the angle reference information (the standard angle by which the cervical vertebra deviates from the preset position) is 0 or equal to the preset angle range. The preset angle ranges for the user to deviate in different directions may be the same or different. If different, the angle by which the cervical vertebra deviates from the preset position included in the angle information may also include multiple angles deviating from the preset position along multiple directions.

[0070] For example, in this embodiment, the cervical vertebra training information can be determined according to at least one sub-reference information (angle reference information) and the corresponding at least one sub-cervical vertebra state information (angle information). Combining the above discussion, when the angle information exceeds the angle reference information, there is a difference between the angle information and the angle reference information, and the degree of difference can also be obtained. Further, at least the cervical vertebra training information regarding the angle can be determined accordingly. The "cervical vertebra training information regarding the angle" may at least include compensating for the cervical vertebra injury caused by "the angle by which the cervical vertebra deviates from the preset position" of the user, without considering the cervical vertebra injuries caused by other factors. As for the parameters such as the duration for which the single cervical vertebra training information is used to guide the user to perform cervical vertebra training, they may not be limited either.

[0071] However, users may occasionally have short-term postures such as lowering the head, raising the head, or tilting the head sideways. If the amplitude of such occasional postures is too large (beyond the preset angle range), it will also cause the angle information to exceed the angle reference information. Further, in this embodiment, there is also provided first duration information for indicating the duration of the user's cervical spine deviating from the preset position and corresponding first duration reference information. The first duration reference information can be equal to the duration of a general occasional posture. That is, it can be determined whether the current angle reference information "truly" exceeds the angle reference information based on whether the first duration information is within the first duration reference information, rather than simply judging whether the angle reference information "truly" exceeds the angle reference information based on the angle reference information and the angle information. This further improves the reliability of judging whether the sub-cervical spine state information "truly" exceeds the corresponding sub-reference information.

[0072] Specifically, the multiple sub-reference information includes first sub-reference information and second sub-reference information, and the multiple sub-cervical spine state information includes first sub-information corresponding to the first sub-reference information and second sub-information corresponding to the second sub-reference information. Among them, as Figure 3 shown, step S201 may include but is not limited to the following steps.

[0073] S2011, according to the first sub-reference information and the corresponding first sub-information, judge whether the first sub-information is abnormal, and according to the second sub-reference information and the corresponding second sub-information, judge whether the second sub-information is abnormal. Among them, the first sub-reference information and the first sub-reference information are included in the multiple sub-reference information in the reference information, and the first sub-cervical spine state information and the second sub-cervical spine state information are included in the multiple sub-cervical spine state information in the cervical spine information.

[0074] It can be understood that, in combination with the above discussion, the judgment criterion of "abnormal" here can be understood as the first sub-information exceeding the first sub-reference information. For example, the first sub-information and the first sub-reference information can be the first duration information and the first duration reference information respectively. That is, when the first duration information exceeds the first duration reference information, it can be determined that the current cervical spine state information is no longer "occasional", but the cervical spine posture corresponding to the corresponding angle information is "truly" present. Another example is that the first sub-information and the first sub-reference information can also be the angle information and the angle reference information respectively. That is, when the angle information exceeds the angle reference information, it can be determined that the current cervical spine state information is no longer "normal", but the corresponding cervical spine posture is "bad" present.

[0075] It can be understood that based on the first sub-information and the second information being angular information and the first duration information respectively, or being the first duration information and the angular information respectively, when either of the two is non-abnormal, for example, it can characterize the current cervical spine status information as "occasionally" or "normal". At this time, it indicates that the user's cervical spine status is normal, and there is no need to perform step S2 to step S3.

[0076] In this embodiment, based on both the first sub-information and the second sub-information being abnormal, the following steps can be executed, including but not limited to:

[0077] S2012, determine the corresponding first sub-training information according to the first sub-reference information and the corresponding first sub-information, and / or determine the corresponding second sub-training information according to the second sub-reference information and the corresponding second sub-information;

[0078] S2013, determine the cervical spine training information according to the first sub-training information and / or the second sub-training information.

[0079] Combined with the above discussion, based on both the first sub-information and the second sub-information being abnormal, that is, it indicates that the user's cervical spine status is normal, then it is necessary to determine the cervical spine training information, and then guide the user to perform cervical spine training. Similarly, at this time, multiple sub-reference information at least includes the first sub-reference information and the second sub-reference information. Correspondingly, multiple sub-cervical spine status information at least includes the first sub-information and the second sub-information. Since it has been determined in step S2011 that, for example, both the first duration information and the angular information are abnormal, that is, the angle by which the user's current cervical spine deviates from the preset position has exceeded the preset angle range. At this time, the cervical spine training information (that is, including the first sub-training information and / or the second sub-training information here) for compensating for the cervical spine injury caused by the angle by which the cervical spine deviates from the preset position can be determined according to at least one of the degree and duration of the angle by which the cervical spine deviates from the preset position.

[0080] Specifically, the first sub-training information may include sub-information corresponding to the training angle, and further may include sub-information corresponding to the training duration. The second sub-training information may include sub-information corresponding to the training duration, and further may include sub-information corresponding to the training angle.

[0081] For example, when step S2012 at least includes "determine the corresponding first sub-training information according to the first sub-reference information (angle reference information) and the corresponding first sub-information (angle information)", if the degree of the angle by which the cervical spine deviates from the preset position is greater, then at least one of the value of the sub-information corresponding to the training angle and the value of the sub-information corresponding to the training duration in the generated first sub-training information can be set larger.

[0082] For another example, when step S2012 at least includes "determining corresponding second sub-training information according to the second sub-reference information (first duration reference information) and the corresponding second sub-information (first duration information)", if the duration of the angle at which the cervical vertebra deviates from the preset position is longer, then at least one of the value of the sub-information corresponding to the training angle and the value of the sub-information corresponding to the training duration in the generated second sub-training information can be set to be larger.

[0083] In one embodiment, as Figure 4 shown, step S201 may include but is not limited to the following steps:

[0084] S2014, determining corresponding sub-cervical vertebra training information according to each of the sub-reference information in the reference information and the corresponding sub-cervical vertebra state information in the cervical vertebra state information;

[0085] S2015, generating the cervical vertebra training information according to the multiple sub-cervical vertebra training information.

[0086] Specifically, when the number of sub-cervical vertebra training information and sub-reference information is both 2, the descriptions of steps S2012 to S2013 for "generating and determining the cervical vertebra training information according to the first sub-training information and the second sub-training information" can be referred to, so as to implement steps S2014 to S2015 in this embodiment.

[0087] Among them, the types of sub-information included in the sub-cervical vertebra training information in this embodiment are not limited either. For example, when the type of sub-information in each sub-cervical vertebra training information is 1, it can be understood that, for example, according to the first sub-reference information (angle reference information) and the corresponding first sub-information (angle information), to determine the degree of the angle at which the cervical vertebra deviates from the preset position, so as to generate only the first sub-information including the sub-information corresponding to the training angle. Further, at the same time, according to the second sub-reference information (first duration reference information) and the corresponding second sub-information (first duration information), to determine the duration of the angle at which the cervical vertebra deviates from the preset position, so as to generate only the second sub-information including the sub-information corresponding to the training duration.

[0088] Based on this, the cervical vertebra training information in this embodiment may include the first sub-information of the sub-information corresponding to the training angle and the second sub-information of the sub-information corresponding to the training duration, and can guide the user to perform cervical vertebra training according to the corresponding training angle and training duration.

[0089] Further, for the multiple sub-parameter information further including the acceleration reference information and the second duration reference information discussed above, correspondingly, for the multiple sub-cervical vertebra state information also including the acceleration information and the second duration information, there may also be an embodiment of steps S2014 to S2015.

[0090] Among them, if the user exercises in a normal sitting posture, cervical problems caused by maintaining the same state for a long time can be effectively avoided. Further, if the acceleration is greater than a certain preset acceleration range, it can be considered that the user has exercised in a normal sitting posture that can "effectively avoid cervical problems caused by maintaining the same state for a long time". Similarly, this exercise may be occasional and short-term, so the second duration information can be further combined to determine whether the user has "truly" exercised in a normal sitting posture that can "effectively avoid cervical problems caused by maintaining the same state for a long time".

[0091] Similarly, if it is determined whether the user has "truly" exercised in a normal sitting posture that can "effectively avoid cervical problems caused by maintaining the same state for a long time", the degree of acceleration can also be determined based on the acceleration reference information and the acceleration information, and the duration of acceleration can be determined based on the second duration reference information and the second duration information, so as to characterize the duration of the user's good posture (exercise). Further, in the process of determining the cervical spine training information later, the degree and / or duration of the corresponding cervical spine training can be reduced according to the duration of this good posture (exercise).

[0092] In one embodiment, as Figure 5 shown, between step S1 and step S2, the following steps may be included but are not limited to.

[0093] S401, according to the reference information and the cervical spine state information, determine whether the cervical spine state information is abnormal.

[0094] Among them, the number of sub-reference information in the reference information in this embodiment is not limited (it can be 1), and correspondingly, the number of sub-cervical spine state information in the cervical spine state information is not limited (it can be 1). Specifically, the method for determining whether the cervical spine state information is abnormal can refer to the discussion on step S2011 above.

[0095] If the cervical spine state information is abnormal, then execute:

[0096] S402, send a prompt message to the user.

[0097] It can be understood that in this embodiment, when the cervical spine state information is abnormal, sending a prompt message to the user can immediately prompt the user that the current posture is bad, so as to ensure that the user makes an immediate adjustment, thereby preventing the user from continuing to maintain the current bad posture for a long time, and further enhancing the inhibitory effect on the bad posture. It should be noted that the order of steps S401 to S402 and step S2 in this embodiment is not limited.

[0098] To better implement the cervical spine monitoring method in the embodiments of the present application, on the basis of the cervical spine monitoring method, a cervical spine monitoring device is also provided in the embodiments of the present application, such asFigure 6 As shown in the figure, the cervical spine monitoring device 100 includes:

[0099] An acquisition module 101, configured to acquire reference information and the user's cervical spine status information, where the reference information is the standard range of the cervical spine status information;

[0100] A determination module 102, configured to determine cervical spine training information according to the reference information and the cervical spine status information;

[0101] A sending module 103, configured to send the cervical spine training information to the user, and the cervical spine training information is used to guide the user to perform cervical spine training.

[0102] Wherein, the reference information includes a plurality of sub-reference information, the cervical spine status information includes a plurality of sub-cervical spine status information corresponding to the plurality of sub-reference information, and the sub-reference information is the standard range of the corresponding sub-cervical spine status information;

[0103] The determination module 102 is specifically configured to determine the cervical spine training information according to at least one of the sub-reference information and the corresponding at least one of the sub-cervical spine status information.

[0104] The determination module 102 is specifically configured to determine the corresponding sub-cervical spine training information according to each of the sub-reference information and the corresponding sub-cervical spine status information; and

[0105] Generate the cervical spine training information according to the plurality of sub-cervical spine training information.

[0106] Wherein, the plurality of sub-reference information includes a first sub-reference information and a second sub-reference information, and the plurality of sub-cervical spine status information includes a first sub-information corresponding to the first sub-reference information and a second sub-information corresponding to the second sub-reference information;

[0107] The determination module 102 is specifically configured to determine whether the first sub-information is abnormal according to the first sub-reference information and the corresponding first sub-information, and determine whether the second sub-information is abnormal according to the second sub-reference information and the corresponding second sub-information;

[0108] If the first sub-information is abnormal, the determination module 102 is specifically configured to determine the corresponding first sub-training information according to the first sub-reference information and the corresponding first sub-information, and / or determine the corresponding second sub-training information according to the second sub-reference information and the corresponding second sub-information; and

[0109] Determine the cervical spine training information according to the first sub-training information and / or the second sub-training information.

[0110] Among them, the cervical vertebra monitoring device 100 is further configured to determine whether the cervical vertebra state information is abnormal according to the reference information and the cervical vertebra state information; and

[0111] if the cervical vertebra state information is abnormal, it is used to send a prompt message to the user.

[0112] To better implement the cervical vertebra monitoring method in the embodiments of the present application, on the basis of the cervical vertebra monitoring method, a cervical vertebra monitoring system is further provided in the embodiments of the present application. As Figure 7 shown, the cervical vertebra monitoring system 200 includes a headphone terminal 201 and a display terminal 202. The headphone terminal 201 is configured to obtain the cervical vertebra state information of the user and transmit the cervical vertebra state information to the display terminal 202; the display terminal 202 is configured to obtain the reference information and the cervical vertebra state information, where the reference information is the standard range of the cervical vertebra state information, and determine cervical vertebra training information according to the reference information and the cervical vertebra state information; the display terminal 202 is further configured to send the cervical vertebra training information to the user, and the cervical vertebra training information is used to guide the user to perform cervical vertebra training.

[0113] Among them, the headphone terminal 201 can be worn to contact the user, so as to obtain the cervical vertebra state information of the user. The headphone terminal 201 can communicate with the display terminal 202 by means of wireless communication to send the cervical vertebra state information to the display terminal 202, and the reference information can be input to the display terminal 202 by means including but not limited to direct input by the user. The headphone terminal 201 can present the reference information and the cervical vertebra state information to the user by means including but not limited to voice, picture or video through statistics and analysis.

[0114] Specifically, the cervical vertebra monitoring system 200 in this embodiment includes a headphone terminal 201 and a display terminal 202. The headphone terminal 201 can not only realize the function of a conventional headphone, but also jointly realize the cervical vertebra monitoring method in combination with the display terminal 202.

[0115] Among them, as Figure 7 shown, the headphone terminal 201 includes: a sensor module 2011, configured to obtain the cervical vertebra state information; a microprocessor module 2012, configured to obtain the cervical vertebra state information from the sensor module, and obtain the reference information from the display terminal 202, or the microprocessor module stores the reference information, and is further configured to determine whether the cervical vertebra state information is abnormal according to the reference information and the cervical vertebra state information; a prompt module 2013, configured to send a prompt message to the user when the cervical vertebra state information is abnormal.

[0116] Specifically, as Figure 8 shown, the cervical vertebra monitoring system 200 can be used to perform but not limited to the following steps.

[0117] At S501, the sensor module 2011 detects whether the earphone terminal 201 is in a worn state.

[0118] Specifically, the sensor module 2011 may include a six-axis inertial sensor. The six-axis inertial sensor may include a three-axis accelerometer and a three-axis gyroscope, and the extended Kalman filter algorithm may be used to fuse the data respectively output by the three-axis accelerometer and the three-axis gyroscope. The sensor module 2011 may also include a nine-axis motion sensor, and the nine-axis motion sensor may include a three-axis gyroscope, a three-axis accelerometer, and a three-axis magnetometer.

[0119] Among them, the capacitance change information and the angular acceleration information may be obtained and analyzed by the sensor module 2011 to detect whether the earphone terminal 201 is in a worn state.

[0120] If the earphone terminal 201 is in a worn state, then execute:

[0121] At S502, the sensor module 2011 obtains the cervical spine state information and transmits it to the microprocessor module 2012.

[0122] Among them, communication between the sensor module 2011 and the microprocessor module 2012 may be performed by means of line transmission. As discussed above, the sensor module 2011 may obtain, including but not limited to, angle information, acceleration information, first duration information, and second duration information as the cervical spine state information. Specifically, the above technical features may refer to the relevant descriptions above.

[0123] At S503, the microprocessor module 2012 determines whether the cervical spine state information is abnormal according to the reference information and the cervical spine state information, and the reference information is the standard range of the cervical spine state information.

[0124] Among them, as discussed above, the microprocessor module 2012 may obtain the reference information from the display terminal 202 by means of wireless communication, or the microprocessor module 2012 may pre-store the reference information. Specifically, for example, it may be determined whether the angle information exceeds the angle reference information and whether the first duration information exceeds the first duration reference information respectively. If either of them exceeds, it is determined that the cervical spine state information is abnormal. Of course, referring to the relevant descriptions above, there may also be other sub-cervical spine state information and judgment methods for whether they are abnormal.

[0125] If the cervical spine state information is abnormal, then execute:

[0126] At S504, the prompt module 2013 sends a prompt message to the user.

[0127] Among them, the prompt information can be, but is not limited to, voice prompts. That is, when the cervical spine status information is abnormal, the prompt module 2013 in the earphone terminal 201 can directly send the prompt information to the user to immediately prompt the user that the current posture is bad, so as to ensure that the user makes immediate adjustments.

[0128] Specifically, the specific volume and content of the prompt information can be transmitted to the microprocessor module 2012 and the prompt module 2013 in sequence after being entered by the user on the display terminal 202 for personalized settings.

[0129] Of course, after step S502, the following can also be executed:

[0130] S505, the microprocessor module 2012 caches the cervical spine status information and transmits it to the display terminal 202.

[0131] Among them, the earphone terminal 201 can communicate with the display terminal 202 through wireless communication. For example, the earphone terminal 201 can include a radio frequency module to communicate with the display terminal 202 wirelessly. The radio frequency module can be, but is not limited to, a Bluetooth communication module. Specifically, since there may be differences in the data exchange speed between the earphone terminal 201 and the display terminal 202, the microprocessor module 2012 can pre-cache the cervical spine status information to adapt to the data reception speed of the display terminal 202.

[0132] S506, the display terminal 202 determines the cervical spine training information according to the cervical spine status information and the reference information, and sends the cervical spine training information to the user. The cervical spine training information is used to guide the user to perform cervical spine training.

[0133] Among them, the specific method of determining the cervical spine training information according to the cervical spine status information and the reference information can refer to the relevant discussions above about steps S2 to S3.

[0134] In another embodiment of the present application, the present application also provides an electronic device 300, as Figure 9 shown, which shows the structural schematic diagram of the electronic device involved in the embodiment of the present application. Specifically:

[0135] The electronic device may include a processor 301 with one or more processing cores, a memory 302 with one or more storage media, a power supply 303, an input unit 304 and other components. Those skilled in the art can understand that Figure 9 the structure of the electronic device shown in does not constitute a limitation on the electronic device, and may include more or fewer components than shown, or combine certain components, or different component arrangements.

[0136] Among them:

[0137] The processor 301 is the control center of the electronic device, connecting various parts of the entire electronic device through various interfaces and circuits. By running or executing software programs and / or modules stored in the memory 302, and by invoking the data stored in the memory 302, it executes various functions of the electronic device and processes data, thereby monitoring the entire electronic device. Optionally, the processor 301 may include one or more processing cores; the processor 301 may be a Central Processing Unit (CPU), or it may also be other general-purpose processors, Digital Signal Processors (DSPs), Application Specific Integrated Circuits (ASICs), Field-Programmable Gate Arrays (FPGAs), or other programmable logic devices, discrete gate or transistor logic devices, discrete hardware components, etc. The general-purpose processor may be a microprocessor or the processor may also be any conventional processor, etc. Preferably, the processor 301 may integrate an application processor and a modem processor. Among them, the application processor mainly processes the operating system, user interface, application programs, etc., and the modem processor mainly processes wireless communication. It can be understood that the above-mentioned modem processor may not be integrated into the processor 301 either.

[0138] The memory 302 can be used to store software programs and modules. The processor 301 executes various functional applications and data processing by running the software programs and modules stored in the memory 302. The memory 302 may mainly include a program storage area and a data storage area. Among them, the program storage area may store the operating system, application programs required for at least one function (such as the sound playback function, image playback function, etc.), etc.; the data storage area may store the data created according to the use of the electronic device, etc. In addition, the memory 302 may include high-speed random access memory, and may also include non-volatile memory, such as at least one magnetic disk storage device, flash memory device, or other volatile solid-state storage devices. Correspondingly, the memory 302 may also include a memory control device to provide the processor 301 with access to the memory 302.

[0139] The electronic device also includes a power supply 303 that supplies power to each component. Preferably, the power supply 303 may be logically connected to the processor 301 through a power management system, so as to realize functions such as management of charging, discharging, and power consumption management through the power management system. The power supply 303 may also include any components such as one or more DC or AC power supplies, a recharge system, a power failure detection circuit, a power converter or inverter, a power status indicator, etc.

[0140] The electronic device may further include an input unit 304, which may be used to receive input digital or character information, and generate keyboard, mouse, joystick, optical or trackball signal inputs related to user settings and function controls.

[0141] Although not shown, the electronic device may further include a display unit, etc., which will not be elaborated here. Specifically, in this embodiment, the processor 301 in the electronic device will load the executable files corresponding to the processes of one or more application programs into the memory 302 according to the following instructions, and the processor 301 will run the application programs stored in the memory 302 to implement various functions as follows:

[0142] Obtain reference information and the user's cervical spine status information, where the reference information is the standard range of the cervical spine status information;

[0143] Determine cervical spine training information according to the reference information and the cervical spine status information;

[0144] Send the cervical spine training information to the user, where the cervical spine training information is used to guide the user to perform cervical spine training.

[0145] Those of ordinary skill in the art can understand that all or part of the steps in the various methods of the above embodiments can be completed by instructions, or by controlling relevant hardware through instructions. The instructions can be stored in a storage medium and loaded and executed by a processor.

[0146] In some embodiments of the present application, the present application also provides a storage medium, which may include: read-only memory (ROM, Read Only Memory), random access memory (RAM, Random Access Memory), magnetic disk or optical disc, etc. A computer program is stored thereon, and the computer program is loaded by a processor to execute the steps in the message forwarding method provided by the embodiments of the present application. For example, when the computer program is loaded by a processor, the following steps can be executed:

[0147] Obtain reference information and the user's cervical spine status information, where the reference information is the standard range of the cervical spine status information;

[0148] Determine cervical spine training information according to the reference information and the cervical spine status information;

[0149] Send the cervical spine training information to the user, where the cervical spine training information is used to guide the user to perform cervical spine training.

[0150] In the above embodiments, the descriptions of the various embodiments have their own focuses. For the parts not elaborated in a certain embodiment, reference can be made to the detailed descriptions of other embodiments above, which will not be elaborated here.

[0151] The cervical spine monitoring method, cervical spine monitoring device and system provided by the embodiments of the present application have been introduced in detail above. Specific examples are used in this article to elaborate on the principles and implementation manners of the present invention. The description of the above embodiments is only used to help understand the method and its core idea of the present invention. At the same time, for those skilled in the art, according to the idea of the present invention, there will be changes in the specific implementation manners and application scopes. In summary, the content of this specification should not be construed as a limitation to the present invention.

Claims

1. A cervical vertebra monitoring method, characterized in that, it includes: Obtaining reference information and the cervical vertebra state information of the user, where the reference information is the standard range of the cervical vertebra state information; According to the reference information and the cervical vertebra state information, determining whether the cervical vertebra state information is abnormal. The reference information includes multiple sub-reference information, and the cervical vertebra state information includes multiple sub-cervical vertebra state information corresponding to the multiple sub-reference information. The sub-reference information is the standard range of the corresponding sub-cervical vertebra state information, and the cervical vertebra state information is obtained by the earphone terminal acquiring acceleration reference information; According to the reference information and the cervical vertebra state information, determining cervical vertebra training information, where the cervical vertebra training information is used to improve the current bad sitting posture habit of the user; Sending the cervical vertebra training information to the user, where the cervical vertebra training information is used to guide the user to perform cervical vertebra training; Among them, the step of determining the cervical vertebra training information according to the reference information and the cervical vertebra state information includes: Determining the cervical vertebra training information according to at least one of the sub-reference information and the corresponding at least one sub-cervical vertebra state information.

2. The cervical vertebra monitoring method according to claim 1, characterized in that, the step of determining the cervical vertebra training information according to at least one of the sub-reference information and the corresponding at least one sub-cervical vertebra state information includes: Determining the corresponding sub-cervical vertebra training information according to each of the sub-reference information and the corresponding sub-cervical vertebra state information; Generating the cervical vertebra training information according to the multiple sub-cervical vertebra training information.

3. The cervical vertebra monitoring method according to claim 1, characterized in that, the multiple sub-reference information includes first sub-reference information and second sub-reference information, and the multiple sub-cervical vertebra state information includes first sub-information corresponding to the first sub-reference information and second sub-information corresponding to the second sub-reference information; Among them, the step of determining the cervical vertebra training information according to at least one of the sub-reference information and the corresponding at least one sub-cervical vertebra state information includes: Judging whether the first sub-information is abnormal according to the first sub-reference information and the corresponding first sub-information, and judging whether the second sub-information is abnormal according to the second sub-reference information and the corresponding second sub-information; If both the first sub-information and the second sub-information are abnormal, then determining the corresponding first sub-training information according to the first sub-reference information and the corresponding first sub-information, and / or determining the corresponding second sub-training information according to the second sub-reference information and the corresponding second sub-information; Determining the cervical vertebra training information according to the first sub-training information and / or the second sub-training information.

4. The cervical vertebra monitoring method according to claim 3, characterized in that, one of the first sub-reference information and the second sub-reference information is angle reference information, and the other is first duration reference information; the first sub-information is angle information corresponding to the angle reference information, and the second sub-information is first duration information corresponding to the first duration reference information; Wherein, the angle information includes the angle by which the user's cervical vertebra deviates from the preset position, and the first duration information includes the duration for which the user's cervical vertebra deviates from the preset position.

5. The cervical vertebra monitoring method according to claim 4, characterized in that, the multiple sub-reference information further includes acceleration reference information and second duration reference information; the multiple sub-cervical vertebra state information includes acceleration information corresponding to the acceleration reference information and second duration information corresponding to the second duration reference information; wherein, the acceleration information includes the acceleration of the user's cervical vertebra movement, and the second duration information includes the duration for which the user's cervical vertebra moves at the acceleration.

6. The cervical vertebra monitoring method according to claim 1, characterized in that, after the step of obtaining the reference information and the user's cervical vertebra state information, and before the step of sending the cervical vertebra training information to the user, where the cervical vertebra training information is used to guide the user to perform cervical vertebra training, includes: if the cervical vertebra state information is abnormal, a prompt message is sent to the user.

7. A cervical vertebra monitoring device, characterized in that, comprises: an acquisition module, configured to acquire reference information and the user's cervical vertebra state information, where the reference information is the standard range of the cervical vertebra state information, the reference information includes multiple sub-reference information, the cervical vertebra state information includes multiple sub-cervical vertebra state information corresponding to the multiple sub-reference information, the sub-reference information is the standard range of the corresponding sub-cervical vertebra state information, and the cervical vertebra state information is obtained by the earphone terminal acquiring acceleration reference information; a determination module, configured to determine cervical vertebra training information according to the reference information and the cervical vertebra state information, wherein the cervical vertebra training information is used to improve the user's current bad sitting posture habit; a sending module, configured to send the cervical vertebra training information to the user, where the cervical vertebra training information is used to guide the user to perform cervical vertebra training; the cervical vertebra monitoring device is further configured to judge whether the cervical vertebra state information is abnormal according to the reference information and the cervical vertebra state information; wherein, the step of determining the cervical vertebra training information according to the reference information and the cervical vertebra state information includes: determining the cervical vertebra training information according to at least one of the sub-reference information and the corresponding at least one of the sub-cervical vertebra state information.

8. A cervical vertebra monitoring system, characterized in that, comprises an earphone terminal and a display terminal, the earphone terminal is configured to acquire the user's cervical vertebra state information and transmit the cervical vertebra state information to the display terminal; the display terminal is configured to acquire reference information and the cervical vertebra state information, the reference information is the standard range of the cervical vertebra state information, and determine cervical vertebra training information according to the reference information and the cervical vertebra state information, wherein the cervical vertebra training information is used to improve the user's current bad sitting posture habit, the reference information includes multiple sub-reference information, the cervical vertebra state information includes multiple sub-cervical vertebra state information corresponding to the multiple sub-reference information, the sub-reference information is the standard range of the corresponding sub-cervical vertebra state information, and the cervical vertebra state information is obtained by the earphone terminal acquiring acceleration reference information; The display terminal is further configured to send the cervical vertebra training information to the user, and the cervical vertebra training information is used to guide the user to perform cervical vertebra training; The headphone terminal includes a microprocessor module, configured to determine whether the cervical vertebra state information is abnormal according to the reference information and the cervical vertebra state information; Wherein, the step of determining the cervical vertebra training information according to the reference information and the cervical vertebra state information includes: Determining the cervical vertebra training information according to at least one of the sub-reference information and the corresponding at least one of the sub-cervical vertebra state information.

9. The cervical vertebra monitoring system according to claim 8, characterized in that The headphone terminal includes: A sensor module, configured to acquire the cervical vertebra state information; The microprocessor module is further configured to acquire the cervical vertebra state information from the sensor module and acquire the reference information from the display terminal, or the microprocessor module stores the reference information; A prompt module, configured to send a prompt message to the user when the cervical vertebra state information is abnormal.

Citation Information

Patent Citations

  • Wearable device for cervical vertebra monitoring and cervical vertebra monitoring system

    CN106859655A

  • Cervical vertebra rehabilitation training monitoring method and device

    CN111921161A