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Posture stability evaluating and training device having dynamic interference and physiological feedback

A training device and stability technology, which can be used in electrical digital data processing, diagnostic recording/measurement, special data processing applications, etc.

Inactive Publication Date: 2007-05-30
杨世伟
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0010] 1. The platform only provides swing and movement in the front and rear directions
[0011] 2. The swinging angle and moving range of the platform are fixed
[0012] 3. There is only one speed control knob to adjust the speed by percentage, which is less accurate
[0018] 1. The platform only rotates forward and backward
[0019] 2. No complete and safe suspension protection system
[0025] 1. The platform is too high, almost the height of a person, which will make people afraid of heights
[0026] 2. The wearable plantar pressure sensor is too simple to display the exact foot pressure

Method used

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  • Posture stability evaluating and training device having dynamic interference and physiological feedback
  • Posture stability evaluating and training device having dynamic interference and physiological feedback
  • Posture stability evaluating and training device having dynamic interference and physiological feedback

Examples

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Embodiment Construction

[0045]The present invention provides a postural stability evaluation and training device with dynamic interference and physiological feedback, as shown in Figure 1, Figure 1a and Figure 2 to Figure 6, is to stand on the upper movable flat plate 6 with both feet of the body for exercise. Translation and rocking, load sensor 7 is placed at four ends between this upper movable flat plate 6 and lower movable flat plate 6a, and the spherical socket of hemispherical head and support base 9 is provided with below movable flat plate 6a, forms a ball socket (one end is ball The other end of the head is a ball socket combination), and a position sensor 82 can be provided with the azimuth coordinates of the movable flat panel in real time in the ball socket seat 8. The electromechanical configuration and components of the position sensor 82 are similar to the rolling ball mouse of a computer. Set an air cushion 81 on the periphery of the ball socket 8 to adjust the swing angle of the mova...

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PUM

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Abstract

The invention discloses a gesture stability gauging and exercising device with dynamic interference and physiological feedback, which comprises the following parts: servo motor control mode controlled by computer, mechanism ode with connecting rod device, load gauging mode to gauge real-time gravity and plantar pressure distribution, programmed interface, motor controller box, position sensor, computer and other balance table hard rack, wherein the mechanism mode of balance table is composed of several groups of connecting rod, mobile boards, ball and socket shaped support bearings, air cushions and other racks; the load sensor is set on four ends of mobile boards, which meters real-time gravity coordinate; the position sensor is set in the ball and socket seat, which monitors the coordinate of real-time mobile board; the pressure aerating mode is set under the mobile board, which controls the stability of mobile board at starting time; when the detector stands on the center of mobile board, the gas cushion leaks not to influence the movement of board.

Description

technical field [0001] The invention relates to a posture stability evaluation and training device, in particular to a posture stability evaluation and training device with dynamic interference and physiological and biological feedback. Background technique [0002] The development of human balance control begins in infancy. In infants, it can be found that when the posture is disturbed, the limbs will have a reflex response, but the balance ability will gradually slow down with the body's aging or organ damage. Factors such as delayed muscle triggering, poor sensory ability, reduced sensitivity, and gender-dependent differences in balance ability; for example, neuroskeletal muscle motor function caused by brain cell damage or disease in patients with cerebral palsy and stroke As a result, motor control and sensory motor function are disabled, neuron damage leads to muscle tension or weakness, and balance ability is reduced. Therefore, people with dynamic and static balance...

Claims

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Application Information

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IPC IPC(8): A61B5/00G06F19/00
Inventor 杨世伟
Owner 杨世伟
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