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Knee, ankle and plantar pressure data integration method and system

A technology of plantar pressure and data integration, which is applied in the field of data integration to achieve accurate evaluation

Active Publication Date: 2021-06-22
上海橙捷健康科技有限公司 +1
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003]In the prior art, the plantar pressure, calcaneus angle and joint motion are analyzed separately, and they are not correlated

Method used

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  • Knee, ankle and plantar pressure data integration method and system
  • Knee, ankle and plantar pressure data integration method and system
  • Knee, ankle and plantar pressure data integration method and system

Examples

Experimental program
Comparison scheme
Effect test

no. 1 example

[0066] Such as figure 1 As shown, the present embodiment provides a knee, ankle and plantar pressure data integration method, comprising the following steps:

[0067] S1: Continuous monitoring of foot movement.

[0068] Specifically, in this embodiment, when it is necessary to score the movement state of the foot and lower limbs, it is necessary to let the foot move and perform continuous monitoring for a period of time.

[0069] In order to record the parameters of each state during foot movement and improve the accuracy of subsequent scoring, it is necessary to include at least one movement cycle of the foot during continuous monitoring of the foot movement, wherein the foot The movement cycle is the time interval from when any part of the sole of the foot touches the ground to when the sole of the foot is completely off the ground.

[0070] It should be noted that in actual monitoring, generally multiple motion cycles are included to improve the accuracy of parameter acqu...

no. 2 example

[0114] This embodiment provides a specific embodiment based on the steps in the first embodiment, specifically as follows:

[0115] First, 200 healthy volunteers were collected, 100 males and 100 females, and the age ratio of each gender: 25 under 20 years old, 25 between 20-40 years old, 25 40-60 years old, 25 over 60 years old.

[0116] (1) Establish the maximum valgus and valgus angle of the knee joint, the maximum valgus and valgus angle of the knee joint, the maximum valgus and valgus angle of the calcaneus, the maximum valgus and valgus angle of the calcaneus, the maximum pressure average and the plantar Scoring scale for parameters including pressure peaks

[0117] A normal distribution test was performed on the data corresponding to the above parameters of a large number of healthy people, and the mean and standard deviation were calculated. A scoring scale was established according to the doctor's suggestion, and each parameter was divided into a score range of 1-5 poin...

no. 3 example

[0140] Such as Figure 6 As shown, this embodiment provides a system for implementing the method for integrating knee, ankle joint and plantar pressure data in the first embodiment, including:

[0141] The continuous monitoring module 1 is used for continuous monitoring of foot movement;

[0142] The knee joint parameter acquisition module 2 is used to acquire the maximum knee joint internal and external rotation angle and the maximum knee joint internal and external rotation angle during foot movement;

[0143] The calcaneus parameter acquisition module 3 is used to obtain the maximum calcaneus valgus and maximum calcaneus valgus during foot movement;

[0144] The foot pressure obtaining module 4 is used to obtain the maximum pressure average value and the plantar pressure peak value of each pressure zone on the sole during foot movement;

[0145] The parameter scoring module 5 is used to establish the maximum valgus and varus angle of the knee joint, the maximum valgus and...

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Abstract

The invention relates to the technical field of data integration, and provides a knee, ankle and plantar pressure data integration method and system. The method comprises the steps: S1, carrying out the continuous monitoring of foot movement; s2, the maximum knee joint inward and outward turning angle and the maximum knee joint inward and outward turning angle in the foot movement process are obtained; s3, the maximum calcaneus inward and outward turning angle and the maximum calcaneus inward and outward turning angle in the foot movement process are obtained; s4, the maximum pressure mean value and the plantar pressure peak value of each plantar pressure partition in the foot movement process are obtained; s5, establishing a score table of each parameter, and scoring each parameter according to the score table; s6, the pain degree in the foot movement process is scored; and S7, performing overall scoring in combination with the scores of the parameters in the step S5 and the score of the pain degree in the step S6. The relation among the dynamic plantar pressure, the calcaneus angle and the joint movement can be jointly analyzed, and the health state during foot movement can be jointly evaluated.

Description

technical field [0001] The present invention relates to the technical field of data integration, in particular to a method and system for integrating knee, ankle and plantar pressure data. Background technique [0002] When the human foot moves, there is a certain degree of correlation between the plantar pressure and the angle of the calcaneus, as well as between the plantar pressure and the joint movement. When it is necessary to evaluate the health of the human foot during exercise, it is of great significance to jointly analyze the plantar pressure, calcaneus angle and joint movement data, and jointly analyze the movement from multiple angles. [0003] In the prior art, the plantar pressure, calcaneus angle and joint motion are analyzed separately, and they are not correlated. Contents of the invention [0004] In view of the above problems, the purpose of the present invention is to provide a knee, ankle and plantar pressure data integration method and system. It ca...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G16H50/30G16H20/30
CPCG16H50/30G16H20/30
Inventor 蔡宗远胡项俊杨洋洋
Owner 上海橙捷健康科技有限公司
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