A multi-player competitive work rehabilitation training method and system
By using a multi-person adversarial rehabilitation training group approach, and utilizing a display interface and role matching model, the problem of patients not being able to monitor their training in real time during traditional rehabilitation training is solved, thereby improving training efficiency and engagement while reducing costs.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ANYANG XIANGYU MEDICAL EQUIP
- Filing Date
- 2024-02-01
- Publication Date
- 2026-05-05
AI Technical Summary
In traditional rehabilitation training, patients cannot monitor their training progress in real time, the training effect is affected by the therapist's skill level, and there is a lack of objective data, resulting in low training efficiency and high costs.
By forming multi-person adversarial rehabilitation training groups, using a display interface to monitor training data in real time, and using a role matching model to group people for adversarial training, the fun and efficiency of training are improved.
It enables patients to monitor training data in real time, improves training motivation and efficiency, and reduces rehabilitation training costs.
Smart Images

Figure CN117942551B_ABST
Abstract
Description
Technical Field
[0001] This invention generally relates to the field of medical rehabilitation training technology. More specifically, this invention relates to a multi-person adversarial occupational rehabilitation training method and system. Background Technology
[0002] Rehabilitation training refers to a series of exercises and activities designed to help injured or ill individuals regain physical function and daily living abilities. The content of rehabilitation training varies from person to person and needs to be individualized based on the patient's physical condition and rehabilitation goals.
[0003] In traditional rehabilitation training, therapists provide one-on-one rehabilitation training to patients, which has a long training cycle and slow results. This makes it difficult for patients to understand their own training progress, and patients often experience anxiety and low mood. This can seriously affect the patient's enthusiasm for rehabilitation training and the efficiency of the training.
[0004] In addition, some current rehabilitation medical systems cannot monitor patients' training in real time. The training effect is affected by the therapist's skill level, and there is a lack of objective data to evaluate the relationship between training parameters and rehabilitation effects. It is difficult to optimize training parameters to obtain the best treatment plan. Therefore, they cannot provide real-time professional rehabilitation training guidance, which makes rehabilitation training extremely costly in the case of relatively scarce rehabilitation medical resources.
[0005] Therefore, how to obtain timely and accurate information about patients' training, reduce rehabilitation training costs, and improve patients' training enthusiasm and efficiency are urgent problems to be solved in the current rehabilitation training process. Summary of the Invention
[0006] To address one or more of the aforementioned technical problems, this invention proposes a multi-person adversarial occupational rehabilitation training method and system. By forming multiple adversarial rehabilitation training groups, patients engage in adversarial rehabilitation training, thereby improving the efficiency of rehabilitation training while patients complete tasks. To this end, this invention provides solutions in the following two aspects.
[0007] In a first aspect, the present invention provides a method for occupational rehabilitation training involving multiple participants, comprising the following steps:
[0008] Obtain multiple rehabilitation training groups, wherein the at least one rehabilitation training group includes at least one patient requiring rehabilitation training;
[0009] In response to the set target task, the system enables adversarial training of multiple rehabilitation training groups; during the adversarial training, the system acquires the training data of the patients requiring rehabilitation training in real time; in response to the training data, the system acquires the training results of the patients requiring rehabilitation training and displays them through the display interface.
[0010] The specific steps for obtaining multiple rehabilitation training groups are as follows:
[0011] Obtain the role information of each rehabilitation training group in the set target task;
[0012] Obtain team request information for at least one patient requiring rehabilitation training. The team request information includes patient identity information and training matching information. The training matching information includes the patient's rehabilitation level, type of rehabilitation equipment, and age information.
[0013] In response to the role information and the patient's training matching information, role matching is performed on the patients who need rehabilitation training to obtain a rehabilitation training group.
[0014] Optionally, the role information includes the number of roles and role matching information, wherein the role matching information is the same as the training matching information.
[0015] Optionally, the steps of role matching for patients requiring rehabilitation training to obtain rehabilitation training groups include:
[0016] Obtain a preset matching model; the matching model includes sub-models with priorities, and each sub-model has different matching conditions;
[0017] Based on the preset matching model, the role matching of patients who need rehabilitation training is performed to obtain the rehabilitation training group that has been added to the patients. Among them, according to the priority relationship, the sub-model with lower priority is used to match the training matching information that still failed to match after the matching process of the sub-model with higher priority.
[0018] When the number of rehabilitation training groups that have been joined by patients is less than the total number of rehabilitation training groups in the set target task, and when the number of patients in the rehabilitation training groups that have been joined by patients is less than the number of roles, a robot is used to replace the roles corresponding to the missing number to obtain the final rehabilitation training group.
[0019] Optionally, the preset matching model includes three sub-models; wherein, in order of priority, the sub-models include the patient's rehabilitation level, rehabilitation equipment type, and age information.
[0020] Optionally, the display interface includes an information display area and a task publishing area. The information display area is used to display the training data of patients and rehabilitation training groups to monitor and display the training data of each patient and rehabilitation training group. The task publishing area is used to publish team tasks and set target tasks for rehabilitation training.
[0021] Optionally, the information display area includes multiple menu options, each of which is used to select the rehabilitation training group for displaying training data.
[0022] Optionally, the training data includes one or more combinations of training times, training time, or training speed.
[0023] Optionally, the training results are the ranking of the rehabilitation training group to which the patient requiring rehabilitation training belongs, and the ranking of the patients requiring rehabilitation training.
[0024] In the second aspect, a multi-person adversarial occupational rehabilitation training system includes:
[0025] processor;
[0026] The memory stores computer instructions for multi-person adversarial occupational rehabilitation training, which, when executed by the processor, cause the device to perform the aforementioned multi-person adversarial occupational rehabilitation training method.
[0027] The beneficial effects of this invention are as follows:
[0028] The present invention divides patients into rehabilitation training groups through matching, and realizes competitive training between the groups. This not only increases the fun of rehabilitation training, but also improves patients' enthusiasm for rehabilitation training and improves training efficiency.
[0029] Furthermore, this invention sets up a preset matching model and uses multiple priority sub-models to match all patients, resulting in different rehabilitation training groups, thus ensuring the stability of the matched rehabilitation training group teams. Attached Figure Description
[0030] The above and other objects, features, and advantages of exemplary embodiments of the present invention will become readily apparent upon reading the following detailed description with reference to the accompanying drawings. In the drawings, several embodiments of the invention are illustrated by way of example and not limitation, and like or corresponding reference numerals denote like or corresponding parts, wherein:
[0031] Figure 1 This schematic diagram illustrates the structure of a multi-person adversarial occupational rehabilitation training device in this embodiment.
[0032] Figure 2This schematically illustrates the steps of a matched adversarial rehabilitation training group in a multi-person adversarial occupational rehabilitation training method according to this embodiment.
[0033] Figure 3 The schematic diagram illustrates the structural block diagram of a multi-person adversarial occupational rehabilitation training system in this embodiment. Detailed Implementation
[0034] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0035] The specific embodiments of the present invention will now be described in detail with reference to the accompanying drawings.
[0036] The present invention provides a multi-person competitive occupational rehabilitation training method, which divides patients into groups to form rehabilitation training groups. Through the rehabilitation training groups, training competition is realized between different patients. Patients can also clearly understand their rehabilitation training status through the operation interface, thereby improving training efficiency.
[0037] Figure 1 The schematic diagram illustrates the structure of a multi-person adversarial occupational rehabilitation training device according to this embodiment.
[0038] Taking a rehabilitation medical center as an example, there may be multiple patients using rehabilitation equipment for rehabilitation training in a certain rehabilitation area of the rehabilitation medical center.
[0039] Specifically, such as Figure 1 As shown, a multi-person adversarial occupational rehabilitation training device of the present invention includes a display device, a terminal and n rehabilitation devices, wherein n is greater than 1.
[0040] Among them, n rehabilitation devices are connected to the terminal respectively, and the training data of the rehabilitation devices corresponding to each patient are uploaded to the terminal respectively.
[0041] It should be noted that the above connection is a wired connection. For example, a camera can be placed near each device to collect data on the patient's training progress. Alternatively, sensors can be pre-installed in each device to collect training data and upload it to the terminal device. Of course, another possible implementation is a wireless connection, such as installing wireless communication modules on both the rehabilitation device and the terminal.
[0042] The terminal is connected to the display device, and the terminal transmits the collected training data to the display device for display.
[0043] The display interface includes an information display area and a task assignment area. The task assignment area is used to assign tasks, providing patients with various training tasks, such as completing a set number of rehabilitation training sessions within a set time, or completing a set number of rehabilitation training sessions. The information display area displays the training data of each patient and the training data of the same rehabilitation training group, enabling monitoring and display of training data for each patient and the rehabilitation training group; the training data includes the number of training sessions, training duration, or training rate, etc.
[0044] Specifically, the connected rehabilitation equipment is numbered to distinguish each patient.
[0045] Furthermore, the information display area also includes multiple menu options, each used to select a rehabilitation training group for displaying training data. Specifically, the system receives the menu option selected by the user and displays the training data of the corresponding rehabilitation training group on the operation interface. In one application scenario, the terminal in this embodiment can be a server or a client, and is used to perform data processing and main control operations of various devices, such as display devices and acquisition devices (sensors) within the rehabilitation area.
[0046] Furthermore, the terminal also groups the connected rehabilitation devices, that is, groups the patients corresponding to each connected rehabilitation device, to form rehabilitation training groups and conduct adversarial games. By issuing training tasks to patients, patients are encouraged to complete training tasks through adversarial games, which can improve the training efficiency of patients.
[0047] In one embodiment, the rehabilitation training group comprises multiple groups, with at least two groups forming a competitive match. Alternatively, there may be three, four, or more groups, with each group having a maximum of five participants. Furthermore, the specific number of groups and participants can be determined based on actual circumstances.
[0048] It should be noted that the above-mentioned rehabilitation equipment may include a hand and foot roller trainer, finger ladder, finger beading, arc-shaped wrist coordination exerciser, flexion wrist coordination exerciser, and vertical rotating ring toss board. That is, the above-mentioned rehabilitation equipment focuses on the rehabilitation training of the patient's hands and wrists.
[0049] The above combination Figure 1 The present invention has been briefly described. It is understood that the above description is merely exemplary and not restrictive. Those skilled in the art can interpret the present invention in accordance with its teachings. Figure 1The scenarios shown can be modified without departing from the spirit and essence of the invention. For example, the solutions of the invention can be applied to rehabilitation training of patients' lower limbs, rehabilitation training of patients' lumbar spine, etc.
[0050] Figure 2 The flowchart illustrating the steps of a multi-person adversarial occupational rehabilitation training method in this embodiment is shown schematically. It is understood that... Figure 2 The method flow shown can be... Figure 1 Implemented in the exemplary scenario shown, therefore regarding Figure 1 The content described also applies to Figure 2 .
[0051] According to the present invention, the task publishing area in the display interface of the display device includes at least a plurality of rehabilitation training options, each rehabilitation training option corresponding to a team unit. The team unit includes the number of rehabilitation training groups and the number of roles within each rehabilitation training group, used for publishing team tasks. The rehabilitation training options are designed to facilitate adjustments to rehabilitation training groups based on the number of patients.
[0052] In one embodiment, the rehabilitation training group in the information display area of the display device can be displayed using image elements, which can be graphics of color and shape to facilitate identification and operation by staff. In some embodiments, the image element may also include a rehabilitation training group number, or it may be a graphic containing the rehabilitation training group number and parameter information.
[0053] Specifically, such as Figure 2 As shown, this embodiment of a multi-person adversarial occupational rehabilitation training method includes the following steps:
[0054] In step S1, multiple rehabilitation training groups are obtained, wherein the at least one rehabilitation training group includes at least one patient requiring rehabilitation training.
[0055] In one embodiment, the team formation in this embodiment can also be automatically assigned based on the number of people.
[0056] Furthermore, in order to obtain a more stable rehabilitation training group, this embodiment also matches different patients to obtain a relatively stable rehabilitation training group, as detailed below:
[0057] First, obtain the role information for each rehabilitation training group in the set target task. The role information includes the number of roles and role matching information.
[0058] Secondly, obtain the team-up request information of at least one patient who needs rehabilitation training. The team-up request information includes the patient's identity information and training matching information. The training matching information includes the patient's rehabilitation level, type of rehabilitation equipment, and age information.
[0059] Then, in response to the role information and the patient's training matching information, role matching processing is performed on the patients who need rehabilitation training to obtain a rehabilitation training group.
[0060] In this embodiment, the role matching information is the same as the training matching information of the team request information of the patient who needs rehabilitation training.
[0061] Furthermore, the steps for role matching of patients requiring rehabilitation training to obtain rehabilitation training groups include:
[0062] First, a preset matching model is obtained. The matching model includes sub-models with priorities, and each sub-model has different matching conditions.
[0063] In one embodiment, the preset matching model includes multiple sub-models, each of which has a priority. The priority can be set according to the importance of specific matching conditions. Specifically, the importance of the matching conditions can be determined based on the actual situation, or by statistically analyzing historical data and its impact on patients to determine the priority.
[0064] For example, there can be three or two sub-models. For instance, when the matching model includes three sub-models, namely sub-model a, sub-model b, and sub-model c, their corresponding priorities are highest, middle, and lowest, respectively. When matching patients with roles, patients can be matched according to their priority. In this embodiment, the sub-models may include the patient's rehabilitation level, rehabilitation equipment type, age information, etc.
[0065] The rehabilitation level is an assessment of the patient's rehabilitation progress by medical personnel, based on the patient's illness and current condition after rehabilitation treatment. Specifically, the rehabilitation levels include Level 1, Level 2, Level 3, and Level 4, with higher levels indicating better rehabilitation outcomes.
[0066] For example, taking patient s as an example, patient s has hand motor dysfunction. After a period of rehabilitation treatment, the hand can move slowly. Medical personnel set patient s' rehabilitation level as level two; when the hand can move freely, its rehabilitation level can be defined as level four.
[0067] The age information is used to differentiate patients by age group, which facilitates better teamwork and communication during team formation.
[0068] The rehabilitation equipment is categorized into hand, wrist, foot, and limb rehabilitation equipment. In this embodiment, different types of rehabilitation equipment are distributed as evenly as possible during grouping to ensure that each group has the same type of rehabilitation equipment, thereby improving the stability of each rehabilitation training group.
[0069] Furthermore, the sub-model can also include the complexity of the rehabilitation equipment; the complexity of the rehabilitation equipment is defined by medical personnel through statistics on the rehabilitation time, number of rehabilitation sessions within a set time, or training rate within a set time when conducting rehabilitation training on historical patients. This is to make the complexity of the rehabilitation equipment more balanced when forming teams and fairer when competing.
[0070] For example, the complexity of rehabilitation equipment can be assessed by using the number of rehabilitation sessions completed within a set time as an evaluation indicator. The fewer the number of rehabilitation sessions completed within the set time, the higher the complexity of the rehabilitation equipment is considered, and vice versa.
[0071] Secondly, based on a preset matching model and role information, roles are matched for patients requiring rehabilitation training, resulting in rehabilitation training groups for which patients have joined. In this process, according to priority, lower-priority sub-models are used to match training matching information that failed to find a match after processing by higher-priority sub-models. Specifically, in this embodiment, the decision to add a patient to a rehabilitation training group is made by matching the patient with roles within the defined target task.
[0072] It should be noted that the rehabilitation training groups in the above-mentioned target tasks include single-person group mode and multi-person team mode; the single-person group mode includes a role, which is to group individual patients together so that patients requiring rehabilitation training can compete against each other. In this embodiment, in single-person mode, there are usually 3-5 people competing against each other; it should be noted that the maximum number of people can be 20.
[0073] In the multiplayer team mode, each rehabilitation training group has at least two roles.
[0074] It should be noted that, since each rehabilitation training group in the target task of this embodiment has corresponding setting requirements based on different modes, such as single-player mode, the role matching information of each character should be basically similar during the battle. That is, the training matching information between patients in the required rehabilitation training groups should also be similar. This ensures that the abilities of patients in the required rehabilitation training groups are basically the same in single-player mode, with little difference, thus increasing the fun of the competitive match. Similarly, in multiplayer team mode, the abilities of each rehabilitation training group should be basically the same. For example, rehabilitation training group A includes characters A1 and A2, and rehabilitation training group B includes characters B1 and B2. The training matching information of characters A1 and A2 (or characters B1 and B2) may not be similar, but rehabilitation training group A with characters A1 and A2 should have a basically similar overall ability to rehabilitation training group B with characters B1 and B2, thus making the competition fairer. Therefore, when matching, in single-player mode, a preset matching model can be used to select patients who need rehabilitation training and match the role to participate in the competition. Compared with random allocation, this can avoid the situation where the competition data is meaningless due to large differences in the training of patients who need rehabilitation training.
[0075] In the multi-person team mode, since the comprehensive abilities of the rehabilitation training groups in the set target tasks are similar, a preset matching model can be used to select patients who match the required rehabilitation training roles to participate in the competition, so that the abilities of each group are relatively stable and the groups are comparable.
[0076] Then, in response to the number of rehabilitation training groups that have been joined by patients being less than the total number of rehabilitation training groups in the set target task, and in response to the number of patients that have been joined by patients being less than the number of roles, robots are used to replace the roles corresponding to the missing number to obtain the final rehabilitation training groups.
[0077] In this embodiment, when forming teams, each set target task corresponds to a different number of rehabilitation training groups and the number of roles in each rehabilitation training group. Therefore, when forming teams, given the set total number of rehabilitation training groups and / or the number of roles in each rehabilitation training group, there may be situations where rehabilitation training groups are missing and / or roles are missing. In this case, it is necessary to introduce robots (NPCs, non-player characters) to replace the missing roles and assist in completing the competitive match. At this time, the robots still need to be matched with the roles.
[0078] For example, by default, there are 4 rehabilitation training groups, with 3 people in each group. There are 5 patients in total. Through matching, 2 patients enter the first group, 2 patients enter the second group, and 1 patient enters the fourth group. At this point, the first group is missing 1 patient, the second group is missing 1 patient, the third group is missing 3 patients, and the fourth group is missing 2 patients. Therefore, the corresponding robot needs to provide assisted training to complete the competitive matches for the patients requiring rehabilitation training. Alternatively, in this embodiment, the role of each rehabilitation training group can be assumed to be a robot. In this case, during matching, the patients needing rehabilitation training must be matched with a robot. Successfully matched patients can directly replace the robot; those who cannot be matched or whose matching is unsuccessful will have the current robot assist in completing the competitive matches.
[0079] For example, by default, there are 4 rehabilitation training groups, with 3 people in each group. The initial situation can be 1 patient and 11 NPCs. During the matching process, when a patient joins, one NPC is replaced, thus forming a team for competitive matches. It should be noted that whether all NPCs in a team are replaced depends on the patient's matching situation. For single-player mode, 3-5 characters are entered by default, with patients replacing NPCs.
[0080] In one embodiment, the task release area also includes a team setting option, which is used to add or remove the total number of rehabilitation training groups and the number of characters (or NPCs) in each existing target task, so as to meet the needs of different numbers of patients.
[0081] In step S2, in response to setting a target task, multiple rehabilitation training groups engage in adversarial training; during the adversarial training, training data of the patients requiring rehabilitation training is acquired in real time; in response to the training data, the training results of the patients requiring rehabilitation training are acquired and displayed through a display interface.
[0082] Specifically, for rehabilitation training groups in different team units, the terminal can process the training data to evaluate the ranking of each rehabilitation training group and the patients requiring rehabilitation training, and display it on the display interface; of course, it can also display the training data of the patients requiring rehabilitation training in each rehabilitation training group separately.
[0083] When multiple rehabilitation training groups are formed, each group needs to complete the assigned target tasks, and the groups form a competitive battle to carry out team battles.
[0084] For example, there are four rehabilitation training groups by default: rehabilitation training group A, rehabilitation training group B, rehabilitation training group C, and rehabilitation training group D. After the staff issues tasks to the patients through the terminal, the four rehabilitation training groups receive the target tasks and complete them. For example, they complete m rehabilitation training sessions within a set time. When each rehabilitation training group reaches the set time, the display interface of the display device can display the ranking of each patient's number of rehabilitation training sessions and the ranking of the total number of rehabilitation training sessions for the corresponding rehabilitation training group.
[0085] Based on the number of rehabilitation training sessions for each patient and the total number of rehabilitation training sessions for the corresponding rehabilitation training group, the ranking of the best rehabilitation training group and the best rehabilitation trainer can be determined and displayed through the display interface of the display device.
[0086] It should be noted that this invention implements rehabilitation training in the form of a competitive game, which is displayed through a screen interface. This allows patients who need rehabilitation training to understand their own rehabilitation training data and the data of their team in a timely manner. While increasing the fun, it also monitors the training data, improves the patient's training enthusiasm, and enables them to achieve better training results.
[0087] Figure 3 The schematic diagram illustrates the structural block diagram of a multi-person adversarial occupational rehabilitation training system in this embodiment.
[0088] This invention also provides a multi-person adversarial occupational rehabilitation training system. For example... Figure 3 As shown, the system includes a processor and a memory, the memory storing computer program instructions, which, when executed by the processor, implement a multi-person adversarial occupational rehabilitation training method according to the first aspect of the present invention.
[0089] The system also includes other components well known to those skilled in the art, such as communication buses and communication interfaces, the settings and functions of which are known in the art and therefore will not be described in detail here.
[0090] In this invention, the aforementioned memory can be any tangible medium containing or storing a program that can be used or combined with an instruction execution system, apparatus, or device. For example, a computer-readable storage medium can be any suitable magnetic or magneto-optical storage medium, such as Resistive Random Access Memory (RRAM), Dynamic Random Access Memory (DRAM), Static Random Access Memory (SRAM), Enhanced Dynamic Random Access Memory (EDRAM), High-Bandwidth Memory (HBM), Hybrid Memory Cube (HMC), etc., or any other medium that can be used to store desired information and can be accessed by an application, module, or both. Any such computer storage medium can be part of a device or accessible to or connected to a device. Any application or module described in this invention can be implemented using computer-readable / executable instructions that can be stored or otherwise maintained by such a computer-readable medium.
[0091] In the description of this specification, "multiple" means at least two, such as two, three or more, etc., unless otherwise expressly and specifically defined.
[0092] While this specification has shown and described numerous embodiments of the invention, it will be apparent to those skilled in the art that such embodiments are provided by way of example only. Many modifications, alterations, and alternatives will occur to those skilled in the art without departing from the spirit and essence of the invention. It should be understood that various alternatives to the embodiments of the invention described herein may be employed in the practice of this invention.
Claims
1. A multi-person adversarial occupational rehabilitation training method, characterized in that, Includes the following steps: Obtain multiple rehabilitation training groups, wherein at least one rehabilitation training group includes at least one patient requiring rehabilitation training; In response to the set target task, the system enables adversarial training of multiple rehabilitation training groups; during the adversarial training, the system acquires the training data of the patients requiring rehabilitation training in real time; in response to the training data, the system acquires the training results of the patients requiring rehabilitation training and displays them through the display interface. The specific steps for obtaining multiple rehabilitation training groups are as follows: Obtain the role information of each rehabilitation training group in the set target task; Obtain team request information for at least one patient requiring rehabilitation training. The team request information includes patient identity information and training matching information. The training matching information includes the patient's rehabilitation level, type of rehabilitation equipment, and age information. In response to the role information and the patient's training matching information, role matching is performed on the patients who need rehabilitation training to obtain a rehabilitation training group; The steps for role-matching patients requiring rehabilitation training to obtain rehabilitation training groups include: Obtain a preset matching model; the matching model includes sub-models with priorities, and each sub-model has different matching conditions; Based on the preset matching model, the role matching of patients who need rehabilitation training is performed to obtain the rehabilitation training group that has been added to the patients. Among them, according to the priority relationship, the sub-model with lower priority is used to match the training matching information that still failed to match after the matching process of the sub-model with higher priority. When the number of rehabilitation training groups that have been joined by patients is less than the total number of rehabilitation training groups in the set target task, and when the number of patients in the rehabilitation training groups that have been joined by patients is less than the number of roles, a robot is used to replace the roles corresponding to the missing number to obtain the final rehabilitation training group. The sub-model includes the complexity of rehabilitation equipment; the complexity of the rehabilitation equipment is defined by the statistics of rehabilitation time, number of rehabilitation sessions within a set time, or training rate within a set time when medical personnel conduct rehabilitation training on historical patients, and the complexity of the rehabilitation equipment is defined by the completion status of rehabilitation training.
2. The multi-person adversarial occupational rehabilitation training method according to claim 1, characterized in that, The character information includes the number of characters and character matching information, wherein the character matching information is the same as the training matching information.
3. The multi-person adversarial occupational rehabilitation training method according to claim 1, characterized in that, The preset matching model includes three sub-models; in order of priority, the sub-models include the patient's rehabilitation level, rehabilitation equipment type, and age information.
4. The multi-person adversarial occupational rehabilitation training method according to claim 1, characterized in that, The display interface includes an information display area and a task publishing area. The information display area is used to display the training data of patients and rehabilitation training groups to monitor and display the training data of each patient and rehabilitation training group. The task publishing area is used to publish team tasks and set goals for rehabilitation training.
5. A multi-person adversarial occupational rehabilitation training method according to claim 4, characterized in that, The information display area includes multiple menu options, each of which is used to select the rehabilitation training group for displaying training data.
6. The multi-person adversarial occupational rehabilitation training method according to claim 1, characterized in that, The training data includes one or more combinations of training times, training time, or training speed.
7. The multi-person adversarial occupational rehabilitation training method according to claim 1, characterized in that, The training results are the ranking of the rehabilitation training group to which the patients requiring rehabilitation training belong, and the ranking of the patients requiring rehabilitation training.
8. A multi-person adversarial occupational rehabilitation training system, characterized in that, include: processor; A memory storing computer instructions for multi-person adversarial occupational rehabilitation training, which, when executed by the processor, cause the system to perform a multi-person adversarial occupational rehabilitation training method according to any one of claims 1-7.
Citation Information
Patent Citations
Multi-person interactive virtual reality rehabilitation training and evaluation system
CN106420254A