Device and method for testing autonomous balance ability of human body in multi-dimensional mode
A balanced, multi-dimensional technology, applied in diagnostic recording/measurement, medical science, sensors, etc., can solve problems such as large test limitations, inapplicability for adults, and large impact, to reduce the difficulty of testing and avoid accidental falls. Effect
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Embodiment 1
[0049] like Figure 1-Figure 6 As shown, this embodiment proposes a multi-dimensional device for testing the autonomous balance ability of the human body, including a test bench 10, a support column 11, a pedal 12, a stand 20, a vertical guide rail 21, a slider 30, a visual recognition camera 31, The target bracelet 32 and the brain wave patch 40, wherein the support column 11 is horizontally installed on the top surface of the test platform 10, the part of the support column 11 exposed to the test platform 10 is cylindrical, the main body of the pedal 12 is a flat plate, and the middle part of the pedal 12 Protrude upwards to form an arc-shaped accommodation groove 121, the pedal 12 overlaps the arc surface of the support column 11 through the accommodation groove 121, and the pedal 12 forms a stepping position for the tester on the left and right sides of the accommodation groove 121, The inner ring surface of the accommodation groove 121 matches the curvature of the outer...
Embodiment 2
[0057] like Figure 7-Figure 10 As shown, this embodiment proposes a multi-dimensional test method for testing the human body's autonomous balance ability, using the device for multi-dimensional testing of the human body's autonomous balance ability in Example 1, including the following steps,
[0058] Step 1. Prepare for the test: guide the tester to step on the left and right sides of the pedal 12, wear the target wristband 32 on the wrists of both hands of the tester, attach the brain wave patch 40 to the tester's forehead, and test it on the computer. Input the age information of the tester in 50, and the computer 50 controls the electromagnet 111 to generate magnetic force to adjust the friction between the supporting column 11 and the pedal 12 according to the age information of the tester and the corresponding preset value, adjust the slider 30 and the visual Identify the height of the camera 31, make the visual recognition camera 31 correspond to the tester's waist pos...
Embodiment 2
[0064] The device and the method will be described in detail below in conjunction with Embodiment 1 and Implementation 2.
[0065] Before the test, first enter the age of the tester, the age of the tester is preset into three groups, namely the youth group (15-30 years old), the middle-aged group (31-60) and the elderly group (over 61 years old), three groups The corresponding age data factor λ is 1 for the youth group, 1.1 for the middle-aged group, and 1.4 for the elderly group. The above-mentioned age data factor λ is introduced because the tester’s balance ability declines with age. In the test process, such as when the elderly are tested, the state of loss of balance often occurs, resulting in too much invalid time and correspondingly generating too much Invalid test data set for .
[0066] For example, when the tester's input age is 65 years old, the tester's age falls into the elderly group, and the corresponding age data factor λ of the elderly group is 1.4, the targe...
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